Warning : Undefined variable $sxsome in
/var/www/html/include/SeqFeatClass.php on line
665
Warning : Undefined variable $sstart in
/var/www/html/include/SeqFeatClass.php on line
665
Warning : Undefined variable $send in
/var/www/html/include/SeqFeatClass.php on line
665
Warning : get_headers(): php_network_getaddresses: getaddrinfo for bar.utoronto.ca failed: Temporary failure in name resolution in
/var/www/html/include/SeqFeatClass.php on line
1018
Warning : get_headers(https://bar.utoronto.ca/api/efp_image/efp_soybean/soybean/Absolute/Glyma09g17220): Failed to open stream: php_network_getaddresses: getaddrinfo for bar.utoronto.ca failed: Temporary failure in name resolution in
/var/www/html/include/SeqFeatClass.php on line
1018
Warning : Trying to access array offset on false in
/var/www/html/include/SeqFeatClass.php on line
1019
Warning : get_headers(): php_network_getaddresses: getaddrinfo for bar.utoronto.ca failed: Temporary failure in name resolution in
/var/www/html/include/SeqFeatClass.php on line
1020
Warning : get_headers(https://bar.utoronto.ca/api/efp_image/efp_soybean/soybean_severin/Absolute/Glyma09g17220): Failed to open stream: php_network_getaddresses: getaddrinfo for bar.utoronto.ca failed: Temporary failure in name resolution in
/var/www/html/include/SeqFeatClass.php on line
1020
Warning : Trying to access array offset on false in
/var/www/html/include/SeqFeatClass.php on line
1021
Deprecated : preg_match(): Passing null to parameter #2 ($subject) of type string is deprecated in
/var/www/html/include/SeqFeatClass.php on line
1025
Deprecated : preg_match(): Passing null to parameter #2 ($subject) of type string is deprecated in
/var/www/html/include/SeqFeatClass.php on line
1031
Report for Sequence Feature Glyma09g17220
Feature Type: gene_model
Chromosome: Gm09
Start: 21033674
stop: 21050265
Source: JGI
Version: Wm82.a1.v1.1
High confidence: yes
A newer version of this gene model can be found here:
Annotations for Glyma09g17220
Database ID Annotation Type Annotation Description Annotation Source Match Score Evidence Code
AT3G12810 AT
Annotation by Michelle Graham. TAIR10: SNF2 domain-containing protein / helicase domain-containing protein | chr3:4065636-4073992 FORWARD LENGTH=2055
SoyBase E_val: 0 ISS
GO:0003002 GO-bp
Annotation by Michelle Graham. GO Biological Process: regionalization
SoyBase N/A ISS
GO:0006338 GO-bp
Annotation by Michelle Graham. GO Biological Process: chromatin remodeling
SoyBase N/A ISS
GO:0007155 GO-bp
Annotation by Michelle Graham. GO Biological Process: cell adhesion
SoyBase N/A ISS
GO:0009793 GO-bp
Annotation by Michelle Graham. GO Biological Process: embryo development ending in seed dormancy
SoyBase N/A ISS
GO:0009909 GO-bp
Annotation by Michelle Graham. GO Biological Process: regulation of flower development
SoyBase N/A ISS
GO:0009910 GO-bp
Annotation by Michelle Graham. GO Biological Process: negative regulation of flower development
SoyBase N/A ISS
GO:0010090 GO-bp
Annotation by Michelle Graham. GO Biological Process: trichome morphogenesis
SoyBase N/A ISS
GO:0010228 GO-bp
Annotation by Michelle Graham. GO Biological Process: vegetative to reproductive phase transition of meristem
SoyBase N/A ISS
GO:0022402 GO-bp
Annotation by Michelle Graham. GO Biological Process: cell cycle process
SoyBase N/A ISS
GO:0033043 GO-bp
Annotation by Michelle Graham. GO Biological Process: regulation of organelle organization
SoyBase N/A ISS
GO:0042742 GO-bp
Annotation by Michelle Graham. GO Biological Process: defense response to bacterium
SoyBase N/A ISS
GO:0045010 GO-bp
Annotation by Michelle Graham. GO Biological Process: actin nucleation
SoyBase N/A ISS
GO:0046686 GO-bp
Annotation by Michelle Graham. GO Biological Process: response to cadmium ion
SoyBase N/A ISS
GO:0048441 GO-bp
Annotation by Michelle Graham. GO Biological Process: petal development
SoyBase N/A ISS
GO:0048449 GO-bp
Annotation by Michelle Graham. GO Biological Process: floral organ formation
SoyBase N/A ISS
GO:0048451 GO-bp
Annotation by Michelle Graham. GO Biological Process: petal formation
SoyBase N/A ISS
GO:0048453 GO-bp
Annotation by Michelle Graham. GO Biological Process: sepal formation
SoyBase N/A ISS
GO:0048765 GO-bp
Annotation by Michelle Graham. GO Biological Process: root hair cell differentiation
SoyBase N/A ISS
GO:0071555 GO-bp
Annotation by Michelle Graham. GO Biological Process: cell wall organization
SoyBase N/A ISS
GO:0005618 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: cell wall
SoyBase N/A ISS
GO:0005634 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: nucleus
SoyBase N/A ISS
GO:0016514 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: SWI/SNF complex
SoyBase N/A ISS
GO:0003676 GO-mf
Annotation by Michelle Graham. GO Molecular Function: nucleic acid binding
SoyBase N/A ISS
GO:0003677 GO-mf
Annotation by Michelle Graham. GO Molecular Function: DNA binding
SoyBase N/A ISS
GO:0004386 GO-mf
Annotation by Michelle Graham. GO Molecular Function: helicase activity
SoyBase N/A ISS
GO:0005515 GO-mf
Annotation by Michelle Graham. GO Molecular Function: protein binding
SoyBase N/A ISS
GO:0005524 GO-mf
Annotation by Michelle Graham. GO Molecular Function: ATP binding
SoyBase N/A ISS
KOG0389
KOG
SNF2 family DNA-dependent ATPase
JGI ISS
KOG4439
KOG
RNA polymerase II transcription termination factor TTF2/lodestar, DEAD-box superfamily
JGI ISS
PTHR10799 Panther
ATP-DEPENDENT HELICASE SMARCA (SWI/SNF-RELATED MATRIX-ASSOCIATED ACTIN-DEPENDENT REGULATOR OF CHROMATIN A)-RELATED
JGI ISS
PTHR10799:SF92 Panther
SNF2 FAMILY CHROMODOMAIN-HELICASE-RELATED
JGI ISS
PF00176 PFAM
SNF2 family N-terminal domain
JGI ISS
PF00271 PFAM
Helicase conserved C-terminal domain
JGI ISS
PF07529 PFAM
HSA
JGI ISS
UniRef100_B9SBN6 UniRef
Annotation by Michelle Graham. Most informative UniRef hit: Helicase, putative n=1 Tax=Ricinus communis RepID=B9SBN6_RICCO
SoyBase E_val: 0 ISS
UniRef100_UPI000233C318 UniRef
Annotation by Michelle Graham. Best UniRef hit: UPI000233C318 related cluster n=1 Tax=unknown RepID=UPI000233C318
SoyBase E_val: 0 ISS
Expression Patterns of Glyma09g17220
Gene expression representations made with eFP at the University of Toronto.
Waese et al. 2017, Plant Cell 29(8):1806-1821 ePlant: Visualizing and Exploring Multiple Levels of Data for Hypothesis Generation in Plant Biology
To see more experiments click HERE
Paralogs of Glyma09g17220
Paralog Evidence Comments
Glyma02g29380 IGC Paralogs in soybean determined by Steven Cannon using BLAST, DAGChainer, PAML, and selection of gene pairs from synteny blocks with median Ks values of less than 0.3.
Gene model name correspondences to Glyma09g17220 Gene Call Version Wm82.a1.v1.1
Corresponding Name Annotation Version Evidence Comments
Glyma.09g112200 Wm82.a2.v1 IGC As supplied by JGI
References for Glyma09g17220
Transcripts of Glyma09g17220
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NT Limit To All Plant Sequences
>Glyma09g17220.3 sequence type=transcript gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
CATAAAACGCTGCGTTTTAGAGAAGTCAGCTGTGAAGAAAGAAGCTACGCTGTCTACCTCGCTTCGCGTGTGCGCGCGTGGCTTGTTCTAATTTTTTCTCTCGTCTTCTCCTCTTTCTTTCTTATTCTTTCCTTCCTTTCTCTGCGTTAGGTTTTTCCATAGCTACACTCTTTACACCCTCTTTTTTCTTCTTCTCCACCGACAACACTCTTTTCTTCTCGGCCCCTATTCCCCTCATCCGATGCGAACTCCAACGATTTCCTTTCCTCAAATTCTCGCGCGATAAGATATGTTTTTCGCCTTGTGAGGTTTTGGCTACCGCGATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGGTAAGAAAGGACTAGGATCAGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAAGACTCCAACACCAGGAGATTCGAAGCCCAAATCTAAAAAGAAACCCAAGAAGGCAAAGTTCAAATCTCTAAAGAAAGGTTCTTTAACCTCTGGCTTGAGACCTGTGAAAGAAGAGTCACAAGCACAGCCTATGAACATAGATGATGAGAATGTCCCTGGTCTAGATTTTCAGTCTCCAAATTCAACCATGCAGAAAAAACGTAAGAAATCTAAATTAACAACTGATGGTGAAGAAGAAAAGAGACTTAAGAAGTCCAAAAAGTCCAAGAGGGATTCTCCTGACATTTATGCTTCCGATTTGGAATCCAACTCATTAGTTGTGCAGGATGAACATGCAGAATCAAAGACTTGTGAAAGTCTGGTTGATTTAGAACAGAAAACAGCAAGCAGGAGTAAGATGGGAGGAAAAATATCCATCACTCCTATCCCTTTAAAACAGGTCTGGATGATAAAACCAGAAAAATTGAAAAAGGGAAATCATTGGTCCAAAGATTGTATTCCACCAGCTGATTTTTGGCTGCCTCAGGAGGATGCAATATTATGTGCTGTTGTTCATGAATATGGTCCTAACTGGAGTTTGGTTAGTGAAACACTTTATGGCATGAGTGGTGGTGGGTCATACAGGGGAAGATATCGTCATCCTGTCCAATGCTGTGAGAGGTTCAGAGAACTATTCCAAAAGTATGTCTTGCTGTCAATGGACAATGCAAATCATGAGAAGATCAACAGTCCGGGCTCTGGAAAGGCTCTGCTTAAAGTTACAGAGGATAACATTCGGATGCTGTTAGATGTTGCTTCTGAGCAGGTAAATAGGGAGTTACTGCTGCAGAAGCATTTTTTTGCATTGCTTTCATCTGTCTGGAAAGTGGCATCACACGTTGACCACAGGCGAAATCCATCACCCTCCTGTAATGGTCTCTATTTCGATCAGAGTTTCTATACTTCCATTGGCCAGCCTTCACAAAATTCCTTGAAGAAATCCTCTGAAAGGATGGCATTTGCAAATTTGGCCCCGAGCAAGAATTTAGTAGCAGCTGCACTTGATGATATCACAACTAGGCAAGTGAATGACAAAGTCATTCTGTCTAACCAAGGGGAAGACATGCCAGTGAGTGCAGATCAGCTGGATATAACACTGGAGTTTGCAAAAGAGGATAGCGACGTCCTATCTTCATTTCCATCTGTTATAAATTTATCAATACATGGGACTGAACCAACACCATCTTTAAATAAGCTAACAGGAGAAGATGATCTTAAAGTTGGTTTGTTCATTGCTGAGAATCGTTTCAGGGAGGCTGCAAGAGTTTGTGGAGAAGACAGCTCTGGATGGGCATCATCTGCATTCCCAACCAACGATACAAGGTCTCGACCTGGATCCAGGTTACAATCCTCCGGAAAGCGGAAGTCTTCTGTATCTGACTCTTCTAAGCCTTCTAGGTCAAAGTCCAAAAAAGCTTCAATGGATCGTAGTGAAATGCATCCCTATCAGGCTGACTCAATGTTCCAGTCAATGCCATCACTTAAAGATCTGAGAATTGATCTCACTTCATTAACTACTGATGAAGTTGGAATTGATGGTATGGATAGCATTTTCTCCTTTGACTTGAATGGGGAAAGTTCATTGGAAATGGAGAGTGTTGGAATGATCCCACATGATTATGTTGCTGGTTTAATCTCAGACCTTGATGATAGTACAGCATTCCCTGAATATACTGACATTAGATAAGGATGAAATCAAGCCTGAAATGCAGTTTTGAAATGACCTTTGGCTTACCAAGTGGCATACTCTTGGCAAGTTAGTCTTGATCAGTTCATGAATTGCTGTTGGCTTACAATTGGAAATGCATTCTTGCAGTTCGCTCCTTGGCATGCCATTTTTGGATATACAGACAAAACATTTCAAAGGCTAGCCTGCTGAAGGTTTCGATATGAAAATATAGAGATGTAGAACGCTGTCAATGATTTAATTTCTTACTTGGAATTATGTATTGGCTTGGTGGTTCAGCTCGAATTTTGACAGCGCCATTCTTCCATAGATCAGTGCTGATTGGAACGATGATAAGTGATTCTAACATCCCCAATCTGCAAGCCAAGTTGCCCAATCTGTGTTTCAAACCATATGTTTCGCTTTTTATGTGATAAGTCCTCACGACCTGAATTTGTCGGAACCATTTTCTAATGCAAATAGCATTTTTTGAATAGCAGACAAGTCACGAGTTTATGTAATCCATTGTCCACTGGGGTGAACTGATTTGTTAATATCATAGCAACAAAGTTAGCTTAATACAACTCTTATGATGCATTATTTCTTTTTTCAATTTATAACCAGTAATTCATTTATAATGCTGTAACTAAAAAAAAAATGATCAAATTGGCTTCACAAGTTACAACACATTTT
>Glyma09g17220.4 sequence type=transcript gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
CATAAAACGCTGCGTTTTAGAGAAGTCAGCTGTGAAGAAAGAAGCTACGCTGTCTACCTCGCTTCGCGTGTGCGCGCGTGGCTTGTTCTAATTTTTTCTCTCGTCTTCTCCTCTTTCTTTCTTATTCTTTCCTTCCTTTCTCTGCGTTAGGTTTTTCCATAGCTACACTCTTTACACCCTCTTTTTTCTTCTTCTCCACCGACAACACTCTTTTCTTCTCGGCCCCTATTCCCCTCATCCGATGCGAACTCCAACGATTTCCTTTCCTCAAATTCTCGCGCGATAAGATATGTTTTTCGCCTTGTGAGGTTTTGGCTACCGCGATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAAGACTCCAACACCAGGAGATTCGAAGCCCAAATCTAAAAAGAAACCCAAGAAGGCAAAGTTCAAATCTCTAAAGAAAGGTTCTTTAACCTCTGGCTTGAGACCTGTGAAAGAAGAGTCACAAGCACAGCCTATGAACATAGATGATGAGAATGTCCCTGGTCTAGATTTTCAGTCTCCAAATTCAACCATGCAGAAAAAACGTAAGAAATCTAAATTAACAACTGATGGTGAAGAAGAAAAGAGACTTAAGAAGTCCAAAAAGTCCAAGAGGGATTCTCCTGACATTTATGCTTCCGATTTGGAATCCAACTCATTAGTTGTGCAGGATGAACATGCAGAATCAAAGACTTGTGAAAGTCTGGTTGATTTAGAACAGAAAACAGCAAGCAGGAGTAAGATGGGAGGAAAAATATCCATCACTCCTATCCCTTTAAAACAGGTCTGGATGATAAAACCAGAAAAATTGAAAAAGGGAAATCATTGGTCCAAAGATTGTATTCCACCAGCTGATTTTTGGCTGCCTCAGGAGGATGCAATATTATGTGCTGTTGTTCATGAATATGGTCCTAACTGGAGTTTGGTTAGTGAAACACTTTATGGCATGAGTGGTGGTGGGTCATACAGGGGAAGATATCGTCATCCTGTCCAATGCTGTGAGAGGTTCAGAGAACTATTCCAAAAGTATGTCTTGCTGTCAATGGACAATGCAAATCATGAGAAGATCAACAGTCCGGGCTCTGGAAAGGCTCTGCTTAAAGTTACAGAGGATAACATTCGGATGCTGTTAGATGTTGCTTCTGAGCAGGTAAATAGGGAGTTACTGCTGCAGAAGCATTTTTTTGCATTGCTTTCATCTGTCTGGAAAGTGGCATCACACGTTGACCACAGGCGAAATCCATCACCCTCCTGTAATGGTCTCTATTTCGATCAGAGTTTCTATACTTCCATTGGCCAGCCTTCACAAAATTCCTTGAAGAAATCCTCTGAAAGGATGGCATTTGCAAATTTGGCCCCGAGCAAGAATTTAGTAGCAGCTGCACTTGATGATATCACAACTAGGCAAGTGAATGACAAAGTCATTCTGTCTAACCAAGGGGAAGACATGCCAGTGAGTGCAGATCAGCTGGATATAACACTGGAGTTTGCAAAAGAGGATAGCGACGTCCTATCTTCATTTCCATCTGTTATAAATTTATCAATACATGGGACTGAACCAACACCATCTTTAAATAAGCTAACAGGAGAAGATGATCTTAAAGTTGGTTTGTTCATTGCTGAGAATCGTTTCAGGGAGGCTGCAAGAGTTTGTGGAGAAGACAGCTCTGGATGGGCATCATCTGCATTCCCAACCAACGATACAAGGTCTCGACCTGGATCCAGGTTACAATCCTCCGGAAAGCGGAAGTCTTCTGTATCTGACTCTTCTAAGCCTTCTAGGTCAAAGTCCAAAAAAGCTTCAATGGATCGTAGTGAAATGCATCCCTATCAGGCTGACTCAATGTTCCAGTCAATGCCATCACTTAAAGATCTGAGAATTGATCTCACTTCATTAACTACTGATGAAGTTGGAATTGATGGTATGGATAGCATTTTCTCCTTTGACTTGAATGGGGAAAGTTCATTGGAAATGGAGAGTGTTGGAATGATCCCACATGATTATGTTGCTGGTTTAATCTCAGACCTTGATGATAGTACAGCATTCCCTGAATATACTGACATTAGATAAGGATGAAATCAAGCCTGAAATGCAGTTTTGAAATGACCTTTGGCTTACCAAGTGGCATACTCTTGGCAAGTTAGTCTTGATCAGTTCATGAATTGCTGTTGGCTTACAATTGGAAATGCATTCTTGCAGTTCGCTCCTTGGCATGCCATTTTTGGATATACAGACAAAACATTTCAAAGGCTAGCCTGCTGAAGGTTTCGATATGAAAATATAGAGATGTAGAACGCTGTCAATGATTTAATTTCTTACTTGGAATTATGTATTGGCTTGGTGGTTCAGCTCGAATTTTGACAGCGCCATTCTTCCATAGATCAGTGCTGATTGGAACGATGATAAGTGATTCTAACATCCCCAATCTGCAAGCCAAGTTGCCCAATCTGTGTTTCAAACCATATGTTTCGCTTTTTATGTGATAAGTCCTCACGACCTGAATTTGTCGGAACCATTTTCTAATGCAAATAGCATTTTTTGAATAGCAGACAAGTCACGAGTTTATGTAATCCATTGTCCACTGGGGTGAACTGATTTGTTAATATCATAGCAACAAAGTTAGCTTAATACAACTCTTATGATGCATTATTTCTTTTTTCAATTTATAACCAGTAATTCATTTATAATGCTGTAACTAAAAAAAAAATGATCAAATTGGCTTCACAAGTTACAACACATTTT
>Glyma09g17220.5 sequence type=transcript gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
CATAAAACGCTGCGTTTTAGAGAAGTCAGCTGTGAAGAAAGAAGCTACGCTGTCTACCTCGCTTCGCGTGTGCGCGCGTGGCTTGTTCTAATTTTTTCTCTCGTCTTCTCCTCTTTCTTTCTTATTCTTTCCTTCCTTTCTCTGCGTTAGGTTTTTCCATAGCTACACTCTTTACACCCTCTTTTTTCTTCTTCTCCACCGACAACACTCTTTTCTTCTCGGCCCCTATTCCCCTCATCCGATGCGAACTCCAACGATTTCCTTTCCTCAAATTCTCGCGCGATAAGATATGTTTTTCGCCTTGTGAGGTTTTGGCTACCGCGATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGGTAAGAAAGGACTAGGATCAGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAATATTCTTCTACAAACCATAGTAGTTAATTGTGCACAATAGTGACGCGATTGCGTCATTTTGTTGCGTTGCGGCACCCTGCTGCTCCTCCAAGGGCCATTGTGTTGCACCTGGCCGTTGTGGCTGGAGGGACGCTTTTTTCTGGCCAAAATCACGGAAAATGGAAGCCGGAGCGAGGAAATCGCGCCACACTAAAGATCTACAGCTTCTATTCACTGTGCCATTCTCATGGCTGTACTTGCTGCTAGTGTGTCAGAGAAGAGAGATGGCCCATTCACAATCCCCTATCTTTAAATGGGACACAAATCGTGTTTGGACTTGGACAGTCAGTTTTAACATCACCATTTGGACCATCACTGGACCCTAATTCATACTAGAGTAACTTGACTTTCTTATCTCTTTTAGTCAAAATTTACAAAATCAAAAATCAAAATTCAATTATGTTAGGACCTCGGTATTGGACTCTAGCCCAATATGGAGAGTGTATTCCAGAAGGAATAGAAAGGGGAACAAAGGATAATTGCTGAGCTGGCAGAGAGAGAAATTGAGTAGTGTGTTGGTTGTGAGGGGAATTCGGTTATAAGAGGGGTTTGTCATGAGTTAGTTATGGGCAGAGAGCATTTGTGCCTCTGAGAGCTGAGCTCTTGGCAGTAGGAATTGTGATTCCTCTGTATTTCCTTTTATGCATTCTTAGTACATCATATTTCATCAGTAGTATTTGTTTGACACTACCGTTTCTCTTATATGTGATTGTGGTTTCTAACAAGTTAT
>Glyma09g17220.6 sequence type=transcript gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
CATAAAACGCTGCGTTTTAGAGAAGTCAGCTGTGAAGAAAGAAGCTACGCTGTCTACCTCGCTTCGCGTGTGCGCGCGTGGCTTGTTCTAATTTTTTCTCTCGTCTTCTCCTCTTTCTTTCTTATTCTTTCCTTCCTTTCTCTGCGTTAGGTTTTTCCATAGCTACACTCTTTACACCCTCTTTTTTCTTCTTCTCCACCGACAACACTCTTTTCTTCTCGGCCCCTATTCCCCTCATCCGATGCGAACTCCAACGATTTCCTTTCCTCAAATTCTCGCGCGATAAGATATGTTTTTCGCCTTGTGAGGTTTTGGCTACCGCGATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAATATTCTTCTACAAACCATAGTAGTTAATTGTGCACAATAGTGACGCGATTGCGTCATTTTGTTGCGTTGCGGCACCCTGCTGCTCCTCCAAGGGCCATTGTGTTGCACCTGGCCGTTGTGGCTGGAGGGACGCTTTTTTCTGGCCAAAATCACGGAAAATGGAAGCCGGAGCGAGGAAATCGCGCCACACTAAAGATCTACAGCTTCTATTCACTGTGCCATTCTCATGGCTGTACTTGCTGCTAGTGTGTCAGAGAAGAGAGATGGCCCATTCACAATCCCCTATCTTTAAATGGGACACAAATCGTGTTTGGACTTGGACAGTCAGTTTTAACATCACCATTTGGACCATCACTGGACCCTAATTCATACTAGAGTAACTTGACTTTCTTATCTCTTTTAGTCAAAATTTACAAAATCAAAAATCAAAATTCAATTATGTTAGGACCTCGGTATTGGACTCTAGCCCAATATGGAGAGTGTATTCCAGAAGGAATAGAAAGGGGAACAAAGGATAATTGCTGAGCTGGCAGAGAGAGAAATTGAGTAGTGTGTTGGTTGTGAGGGGAATTCGGTTATAAGAGGGGTTTGTCATGAGTTAGTTATGGGCAGAGAGCATTTGTGCCTCTGAGAGCTGAGCTCTTGGCAGTAGGAATTGTGATTCCTCTGTATTTCCTTTTATGCATTCTTAGTACATCATATTTCATCAGTAGTATTTGTTTGACACTACCGTTTCTCTTATATGTGATTGTGGTTTCTAACAAGTTAT
Coding sequences of Glyma09g17220
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NT Limit To All Plant Sequences
>Glyma09g17220.1 sequence type=CDS gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGGTAAGAAAGGACTAGGATCAGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAAGACTCCAACACCAGGAGATTCGAAGCCCAAATCTAAAAAGAAACCCAAGAAGGCAAAGTTCAAATCTCTAAAGAAAGGTTCTTTAACCTCTGGCTTGAGACCTGTGAAAGAAGAGTCACAAGCACAGCCTATGAACATAGATGATGAGAATGTCCCTGGTCTAGATTTTCAGTCTCCAAATTCAACCATGCAGAAAAAACGTAAGAAATCTAAATTAACAACTGATGGTGAAGAAGAAAAGAGACTTAAGAAGTCCAAAAAGTCCAAGAGGGATTCTCCTGACATTTATGCTTCCGATTTGGAATCCAACTCATTAGTTGTGCAGGATGAACATGCAGAATCAAAGACTTGTGAAAGTCTGGTTGATTTAGAACAGAAAACAGCAAGCAGGAGTAAGATGGGAGGAAAAATATCCATCACTCCTATCCCTTTAAAACAGGTCTGGATGATAAAACCAGAAAAATTGAAAAAGGGAAATCATTGGTCCAAAGATTGTATTCCACCAGCTGATTTTTGGCTGCCTCAGGAGGATGCAATATTATGTGCTGTTGTTCATGAATATGGTCCTAACTGGAGTTTGGTTAGTGAAACACTTTATGGCATGAGTGGTGGTGGGTCATACAGGGGAAGATATCGTCATCCTGTCCAATGCTGTGAGAGGTTCAGAGAACTATTCCAAAAGTATGTCTTGCTGTCAATGGACAATGCAAATCATGAGAAGATCAACAGTCCGGGCTCTGGAAAGGCTCTGCTTAAAGTTACAGAGGATAACATTCGGATGCTGTTAGATGTTGCTTCTGAGCAGGTAAATAGGGAGTTACTGCTGCAGAAGCATTTTTTTGCATTGCTTTCATCTGTCTGGAAAGTGGCATCACACGTTGACCACAGGCGAAATCCATCACCCTCCTGTAATGGTCTCTATTTCGATCAGAGTTTCTATACTTCCATTGGCCAGCCTTCACAAAATTCCTTGAAGAAATCCTCTGAAAGGATGGCATTTGCAAATTTGGCCCCGAGCAAGAATTTAGTAGCAGCTGCACTTGATGATATCACAACTAGGCAAGTGAATGACAAAGTCATTCTGTCTAACCAAGGGGAAGACATGCCAGTGAGTGCAGATCAGCTGGATATAACACTGGAGTTTGCAAAAGAGGATAGCGACGTCCTATCTTCATTTCCATCTGTTATAAATTTATCAATACATGGGACTGAACCAACACCATCTTTAAATAAGCTAACAGGAGAAGATGATCTTAAAGTTGGTTTGTTCATTGCTGAGAATCGTTTCAGGGAGGCTGCAAGAGTTTGTGGAGAAGACAGCTCTGGATGGGCATCATCTGCATTCCCAACCAACGATACAAGGTCTCGACCTGGATCCAGGTTACAATCCTCCGGAAAGCGGAAGTCTTCTGTATCTGACTCTTCTAAGCCTTCTAGGTCAAAGTCCAAAAAAGCTTCAATGGATCGTAGTGAAATGCATCCCTATCAGGCTGACTCAATGTTCCAGTCAATGCCATCACTTAAAGATCTGAGAATTGATCTCACTTCATTAACTACTGATGAAGTTGGAATTGATGGTATGGATAGCATTTTCTCCTTTGACTTGAATGGGGAAAGTTCATTGGAAATGGAGAGTGTTGGAATGATCCCACATGATTATGTTGCTGGTTTAATCTCAGACCTTGATGATAGTACAGCATTCCCTGAATATACTGACATTAGATAA
>Glyma09g17220.3 sequence type=CDS gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGGTAAGAAAGGACTAGGATCAGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAAGACTCCAACACCAGGAGATTCGAAGCCCAAATCTAAAAAGAAACCCAAGAAGGCAAAGTTCAAATCTCTAAAGAAAGGTTCTTTAACCTCTGGCTTGAGACCTGTGAAAGAAGAGTCACAAGCACAGCCTATGAACATAGATGATGAGAATGTCCCTGGTCTAGATTTTCAGTCTCCAAATTCAACCATGCAGAAAAAACGTAAGAAATCTAAATTAACAACTGATGGTGAAGAAGAAAAGAGACTTAAGAAGTCCAAAAAGTCCAAGAGGGATTCTCCTGACATTTATGCTTCCGATTTGGAATCCAACTCATTAGTTGTGCAGGATGAACATGCAGAATCAAAGACTTGTGAAAGTCTGGTTGATTTAGAACAGAAAACAGCAAGCAGGAGTAAGATGGGAGGAAAAATATCCATCACTCCTATCCCTTTAAAACAGGTCTGGATGATAAAACCAGAAAAATTGAAAAAGGGAAATCATTGGTCCAAAGATTGTATTCCACCAGCTGATTTTTGGCTGCCTCAGGAGGATGCAATATTATGTGCTGTTGTTCATGAATATGGTCCTAACTGGAGTTTGGTTAGTGAAACACTTTATGGCATGAGTGGTGGTGGGTCATACAGGGGAAGATATCGTCATCCTGTCCAATGCTGTGAGAGGTTCAGAGAACTATTCCAAAAGTATGTCTTGCTGTCAATGGACAATGCAAATCATGAGAAGATCAACAGTCCGGGCTCTGGAAAGGCTCTGCTTAAAGTTACAGAGGATAACATTCGGATGCTGTTAGATGTTGCTTCTGAGCAGGTAAATAGGGAGTTACTGCTGCAGAAGCATTTTTTTGCATTGCTTTCATCTGTCTGGAAAGTGGCATCACACGTTGACCACAGGCGAAATCCATCACCCTCCTGTAATGGTCTCTATTTCGATCAGAGTTTCTATACTTCCATTGGCCAGCCTTCACAAAATTCCTTGAAGAAATCCTCTGAAAGGATGGCATTTGCAAATTTGGCCCCGAGCAAGAATTTAGTAGCAGCTGCACTTGATGATATCACAACTAGGCAAGTGAATGACAAAGTCATTCTGTCTAACCAAGGGGAAGACATGCCAGTGAGTGCAGATCAGCTGGATATAACACTGGAGTTTGCAAAAGAGGATAGCGACGTCCTATCTTCATTTCCATCTGTTATAAATTTATCAATACATGGGACTGAACCAACACCATCTTTAAATAAGCTAACAGGAGAAGATGATCTTAAAGTTGGTTTGTTCATTGCTGAGAATCGTTTCAGGGAGGCTGCAAGAGTTTGTGGAGAAGACAGCTCTGGATGGGCATCATCTGCATTCCCAACCAACGATACAAGGTCTCGACCTGGATCCAGGTTACAATCCTCCGGAAAGCGGAAGTCTTCTGTATCTGACTCTTCTAAGCCTTCTAGGTCAAAGTCCAAAAAAGCTTCAATGGATCGTAGTGAAATGCATCCCTATCAGGCTGACTCAATGTTCCAGTCAATGCCATCACTTAAAGATCTGAGAATTGATCTCACTTCATTAACTACTGATGAAGTTGGAATTGATGGTATGGATAGCATTTTCTCCTTTGACTTGAATGGGGAAAGTTCATTGGAAATGGAGAGTGTTGGAATGATCCCACATGATTATGTTGCTGGTTTAATCTCAGACCTTGATGATAGTACAGCATTCCCTGAATATACTGACATTAGATAA
>Glyma09g17220.4 sequence type=CDS gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAAGACTCCAACACCAGGAGATTCGAAGCCCAAATCTAAAAAGAAACCCAAGAAGGCAAAGTTCAAATCTCTAAAGAAAGGTTCTTTAACCTCTGGCTTGAGACCTGTGAAAGAAGAGTCACAAGCACAGCCTATGAACATAGATGATGAGAATGTCCCTGGTCTAGATTTTCAGTCTCCAAATTCAACCATGCAGAAAAAACGTAAGAAATCTAAATTAACAACTGATGGTGAAGAAGAAAAGAGACTTAAGAAGTCCAAAAAGTCCAAGAGGGATTCTCCTGACATTTATGCTTCCGATTTGGAATCCAACTCATTAGTTGTGCAGGATGAACATGCAGAATCAAAGACTTGTGAAAGTCTGGTTGATTTAGAACAGAAAACAGCAAGCAGGAGTAAGATGGGAGGAAAAATATCCATCACTCCTATCCCTTTAAAACAGGTCTGGATGATAAAACCAGAAAAATTGAAAAAGGGAAATCATTGGTCCAAAGATTGTATTCCACCAGCTGATTTTTGGCTGCCTCAGGAGGATGCAATATTATGTGCTGTTGTTCATGAATATGGTCCTAACTGGAGTTTGGTTAGTGAAACACTTTATGGCATGAGTGGTGGTGGGTCATACAGGGGAAGATATCGTCATCCTGTCCAATGCTGTGAGAGGTTCAGAGAACTATTCCAAAAGTATGTCTTGCTGTCAATGGACAATGCAAATCATGAGAAGATCAACAGTCCGGGCTCTGGAAAGGCTCTGCTTAAAGTTACAGAGGATAACATTCGGATGCTGTTAGATGTTGCTTCTGAGCAGGTAAATAGGGAGTTACTGCTGCAGAAGCATTTTTTTGCATTGCTTTCATCTGTCTGGAAAGTGGCATCACACGTTGACCACAGGCGAAATCCATCACCCTCCTGTAATGGTCTCTATTTCGATCAGAGTTTCTATACTTCCATTGGCCAGCCTTCACAAAATTCCTTGAAGAAATCCTCTGAAAGGATGGCATTTGCAAATTTGGCCCCGAGCAAGAATTTAGTAGCAGCTGCACTTGATGATATCACAACTAGGCAAGTGAATGACAAAGTCATTCTGTCTAACCAAGGGGAAGACATGCCAGTGAGTGCAGATCAGCTGGATATAACACTGGAGTTTGCAAAAGAGGATAGCGACGTCCTATCTTCATTTCCATCTGTTATAAATTTATCAATACATGGGACTGAACCAACACCATCTTTAAATAAGCTAACAGGAGAAGATGATCTTAAAGTTGGTTTGTTCATTGCTGAGAATCGTTTCAGGGAGGCTGCAAGAGTTTGTGGAGAAGACAGCTCTGGATGGGCATCATCTGCATTCCCAACCAACGATACAAGGTCTCGACCTGGATCCAGGTTACAATCCTCCGGAAAGCGGAAGTCTTCTGTATCTGACTCTTCTAAGCCTTCTAGGTCAAAGTCCAAAAAAGCTTCAATGGATCGTAGTGAAATGCATCCCTATCAGGCTGACTCAATGTTCCAGTCAATGCCATCACTTAAAGATCTGAGAATTGATCTCACTTCATTAACTACTGATGAAGTTGGAATTGATGGTATGGATAGCATTTTCTCCTTTGACTTGAATGGGGAAAGTTCATTGGAAATGGAGAGTGTTGGAATGATCCCACATGATTATGTTGCTGGTTTAATCTCAGACCTTGATGATAGTACAGCATTCCCTGAATATACTGACATTAGATAA
>Glyma09g17220.5 sequence type=CDS gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGGTAAGAAAGGACTAGGATCAGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAATATTCTTCTACAAACCATAGTAGTTAATTGTGCACAATAG
>Glyma09g17220.6 sequence type=CDS gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGTCCAAAGGTCCCAGGTCCAGGATTGATCACGAGAGCAGAGCCAAACGGCAGAAGGCTCTTGAAGCTCCAAGGGAGCCTCGGCGACCCAAAACTCATTGGGACCATGTCTTAGAAGAGATGGTTTGGCTATCAAAGGACTTTGAGTCAGAGAGGAAATGGAAATTAGCTCAGGCAAAAAAAGTAGCTTTAAGAGCCAGCAAAGGCATGTTAGATCAGGCTACAAGAGGTGAAAAAAAGATGAAGGAAGAGGAGCAGCGGTTAAGAAAGGTTGCACTTAATATTTCTAAGGATGTCAAGAAATTCTGGACAAAAATAGAAAAGCTGGTTCTTTACAAACATCAAATGGAACTCGATGAGAAGAAGAAAAAGGCACTTGACAAACAGCTTGAGTTTCTATTAGGGCAAACTGAGAGGTACTCAACAATGTTGGCTGAAAATCTTGGGGATCCTTATAAATCAGCAGAGAATAATTCTGCAGAGCACCGCAAGAGTATTCATTGCAAAGATGTACATGATGTTATTAATGAACCTAAGGAAGCTGATGTTGTGGAGTATCAATCAGATGCAGCTGACAATGATGAAGAGTATGATGTGCAATCTGATGATGAATTGGAGGATGATGAGCGAACAATTGAGCAAGATGAGGCTCTTATAACTAAAGAAGAAAGGCAAGAGGAATTGGCTGCTTTGCGTGATGAAATGGATCTTCCGATTCAGGAGTTACTTAAACGTTATGCTGGGGAGAAAGGAGAATCGGTAATGAAAGGAAGTAGTCCAGAGCATAGTGAAGATGGTGGGAAAATAGTTAGAGCTGGTGATGAAAACAGAGATGATCTTTTATCTGTCAGCAAAGTTGACACAAGCAACTCCAGCATGGTCTCTGGTCGACGTTGTGATGAAAGTAATGGTGATGTTGCTACACCAACAAACAATCTATCTCAATGTGAGGATGGTCAATCTGAAAATCTAAAAGAGACTCCCAGTGAGACAGCCAATGAAGATTTTGCATATGATTTTACCGATGAAGAGGAAGATGGTGACTTTTTGCTTGTCACAGAAGATAAGGATGATGAAACAACCTTATCTGAGGAGGAAAAAATGGAAAGAGTTGATACAATTGATCCCAAGGATGAGATTGCATTATTACAAAAGGAGAGTGACATGCCTGTCGAGGAACTGCTTGCAAGATATAAAAGGGACCCAAGTGACGATGAAGATGGGGAATATGAATCTGATTATGCTTCTGCTTTATCAGAGAAACATTCGGATTCTCCAGTCCATCAAGATGCTGGGCAGAAGGATCCTGCCATTCCTATGGATGAAGATATCAAGTCTGGTGAGCACCTGGCTGCCACCATACAGTTCCAGGAAGAACAGAGGGAATCACCTCGTGAAAATTTGGAAAAAAGAGAAAGTGAGGATATAATTGCTGATGCAGCTGCTGCTGCAAGATCAGCACAACCCACCGGAAACACCTTCTCCACAACTAATGTGCGTACAAAGTTCCCTTTTCTACTCAAGTACTCTCTTCGTGAGTATCAACATATTGGATTGGATTGGCTTGTCACGATGTATGAAAAAAGACTCAATGGAATTTTGGCAGATGAAATGGGGCTTGGAAAAACAATTATGACTATTTCTTTGCTTGCACATCTTGCTTGTGATAAAGGGATTTGGGGCCCACATTTAATTGTGGTACCAACTAGTGTAATGCTTAACTGGGAGACTGAATTTCTGAAATGGTGTCCTGCCTTTAAAATTTTGACTTATTTTGGAAGTGCAAAGGAGCGAAAACTTAAAAGGCAAGGATGGTTAAAACCTAACTCCTTTCATGTATGCATAACAACTTATAGATTAGTTATTCAGGACTCCAAAGTTTTCAAGCGCAAAAAGTGGAAATACTTGATCTTAGATGAAGCTCATCTCATTAAAAACTGGAAGTCACAAAGGTGGCAGACACTCTTGAATTTCAATTCAAAACGACGAATTCTCTTGACTGGTACGCCACTACAGAATGATCTCATGGAACTGTGGTCTCTCATGCATTTCTTAATGCCCCATGTTTTCCAGTCACATCAAGAGTTTAAGGATTGGTTTAGTAATCCTATATCAGGGATGGTAGATGGAGAAGAAAAAATTAATAAGGAGGTTGTTGATCGCCTTCATAATGTACTTCGTCCATTCTTACTCCGTCGACTTAAGCGAGATGTGGAGAAGCAACTTCCAATGAAGCACGAACATGTCATATACTGTAGACTATCAAAGAGGCAACGGAATTTGTATGAAGATTTCATTGCTAGTTCAGAGACCCAAGCCACTCTTGCAAGTGCCAATTTTTTTGGGATGATTAGTATTATCATGCAACTTCGTAAGGTTTGCAATCATCCCGACCTATTTGAGGGTCGTCCTATTGTCAGTTCTTTTGATATGTGTGGTATTGATATTCAGTTAAGTTCTTCTGTTTGCTCCATACTTTTGCCTAGTCCCTTTTCAACAGTGGACCTAAGAGGTTTGGGTCTTTTATTCACTCATCTTGACAGCATGGCTGCTTGGGAAAGTGATGAAGTACAAACTATTGAGACCCCTGCGACTTTAATCATGGAACGTACTGATATGACCGAACTAGAAGTAATTCGGCCACAGAAATGTCAAAAAAAGTTGCAAGGAACAAACATTTTTGAAGAAATCCAACGGGCAATCTGGGAAGAGAGGCTAAAAGAGGCCAAGGAACGTGCAGCAGCTATTGCATGGTGGAATTCCTTGAGATGTAAAAGAAGACCCATCTACTCGACAACTCTAAGGGATCTTGTTACCTTAAGACATCCTGTATATGATATTCATCAGGTTAAAGCAGACCCTGTTTCATACTTGTACTCATCAAAGCTAGCTGACATTGTTCTCTCCCCGGTTGAACGATTTCAGAAGATGACTGATGTGGTTGAGAGCTTCATGTTTTCAATTCCAGCTGCTCGGGCACCCTCTCCTGTTTGCTGGTGCAGTACAAGTGAGACAAATGTGTTTCTGCACCCATCTTACAAGCAGAAATGCTCTGAAGTTCTGTTACCGCTACTAGCACCAATCAGGCCTGCAATTGTCCGCCGGCAAGTGTATTTCCCCGATAGGCGTCTTATACAATTTGACTGTGGGAAACTGCAGGAACTAGCAATTTTGTTGAGGAAATTAAAATCAGAAGGTCACCGAGCTCTGATATTCACCCAGATGACAAAGATGCTTGACATATTAGAGGCATTCATTAATTTGTATGGGTATACATACATGCGCTTAGATGGATCAACCCAGCCGGAGGAGAGACAGACCTTAATGCAGCGCTTTAACACAAATCCCAAATATTTTCTTTTCATCTTGTCAACCCGTAGTGGGGGTGTTGGTATCAATCTAGTTGGAGCTGACACAGTTATTTTTTATGATAGTGACTGGAATCCTGCTATGGATCAACAGGCTCAAGATCGGTGCCACAGAATTGGTCAGACACGTGAAGTTCATATCTATAGATTGATTAGTGAAAGCACCATTGAGGAGAATATTTTGAAGAAAGCAAATCAGAAGCGTGCACTTGATAATCTAGTTATACAAAGTGGGGGTTATAATACCGAGTTCTTCAAGAAGCTCGATCCTATGGAACTATTTTCAGGTCATAGAACACTTTCAATAAAAAATATTGTGAAGGAAAAAGACCAGAACAATGGGGAAGTTTCTGTAACTAATGATGATGTTGAGGCTGCATTAAAATGTGTAGAAGATGAAGCAGATTATATGGCATTGAAGAAAGTTGAACTGGAAGAGGCTGTGGACAATCAGGAGTTTACAGAAGAAGCCATTGGGAGACTTGAAGAGGATGAATATGTAAATGAGGATGATGACACTGCAGAATTAGGTGAATCTGTTTCGAATTTAAATAAAGAGAATGTGTTAATGTTAAACGGAACTGATCATAAGGAAGATAGACCGACACACTCTGTTCCTGTCAAAGAAGATGATCCTGACATGTTGGCTGATGTCAAACAGATGGCCGCAGCTGCAGCTGCAGCTGGACAAGCTATCTCAGCATTTGAGAATGAGCTACGCCCTATTGATCAATATGCCATTCGTTTCCTGGAACTGTGGGATCCAATTATAGATAAAACAGCCTTGGAATCTGAAGTCAGGATTGAGGACACAGAATGGGAGTTGGATCGCATTGAAAAGTACAAGGAGGAGATGGAAGCCGAAATTGATGAAGATGAGGAACCTCTTGTATATGAAAGCTGGGATGCTGATTATGCAACTACGGCATATCGACAGCATGTAGAGGCCTTGGCTCAACATCAGTTAATGGAGGAACTCGAATATGAAGCTAGGCAGAAAGAAGCTGAGGAAGAAACCTGTGATTCTAAAAATATTCTTCTACAAACCATAGTAGTTAATTGTGCACAATAG
Predicted protein sequences of Glyma09g17220
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NR Limit To All Plant Sequences
>Glyma09g17220.1 sequence type=predicted peptide gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MASKGPRSRIDHESRAKRQKALEAPREPRRPKTHWDHVLEEMVWLSKDFESERKWKLAQAKKVALRASKGMLDQATRGEKKMKEEEQRLRKVALNISKDVKKFWTKIEKLVLYKHQMELDEKKKKALDKQLEFLLGQTERYSTMLAENLGDPYKSAENNSAEHRKSIHCKDVHDVINEPKEADVVEYQSDAADNDEEYDVQSDDELEDDERTIEQDEALITKEERQEELAALRDEMDLPIQELLKRYAGEKGESVMKGSSPEHSEDGGKIVRAGDGKKGLGSENRDDLLSVSKVDTSNSSMVSGRRCDESNGDVATPTNNLSQCEDGQSENLKETPSETANEDFAYDFTDEEEDGDFLLVTEDKDDETTLSEEEKMERVDTIDPKDEIALLQKESDMPVEELLARYKRDPSDDEDGEYESDYASALSEKHSDSPVHQDAGQKDPAIPMDEDIKSGEHLAATIQFQEEQRESPRENLEKRESEDIIADAAAAARSAQPTGNTFSTTNVRTKFPFLLKYSLREYQHIGLDWLVTMYEKRLNGILADEMGLGKTIMTISLLAHLACDKGIWGPHLIVVPTSVMLNWETEFLKWCPAFKILTYFGSAKERKLKRQGWLKPNSFHVCITTYRLVIQDSKVFKRKKWKYLILDEAHLIKNWKSQRWQTLLNFNSKRRILLTGTPLQNDLMELWSLMHFLMPHVFQSHQEFKDWFSNPISGMVDGEEKINKEVVDRLHNVLRPFLLRRLKRDVEKQLPMKHEHVIYCRLSKRQRNLYEDFIASSETQATLASANFFGMISIIMQLRKVCNHPDLFEGRPIVSSFDMCGIDIQLSSSVCSILLPSPFSTVDLRGLGLLFTHLDSMAAWESDEVQTIETPATLIMERTDMTELEVIRPQKCQKKLQGTNIFEEIQRAIWEERLKEAKERAAAIAWWNSLRCKRRPIYSTTLRDLVTLRHPVYDIHQVKADPVSYLYSSKLADIVLSPVERFQKMTDVVESFMFSIPAARAPSPVCWCSTSETNVFLHPSYKQKCSEVLLPLLAPIRPAIVRRQVYFPDRRLIQFDCGKLQELAILLRKLKSEGHRALIFTQMTKMLDILEAFINLYGYTYMRLDGSTQPEERQTLMQRFNTNPKYFLFILSTRSGGVGINLVGADTVIFYDSDWNPAMDQQAQDRCHRIGQTREVHIYRLISESTIEENILKKANQKRALDNLVIQSGGYNTEFFKKLDPMELFSGHRTLSIKNIVKEKDQNNGEVSVTNDDVEAALKCVEDEADYMALKKVELEEAVDNQEFTEEAIGRLEEDEYVNEDDDTAELGESVSNLNKENVLMLNGTDHKEDRPTHSVPVKEDDPDMLADVKQMAAAAAAAGQAISAFENELRPIDQYAIRFLELWDPIIDKTALESEVRIEDTEWELDRIEKYKEEMEAEIDEDEEPLVYESWDADYATTAYRQHVEALAQHQLMEELEYEARQKEAEEETCDSKKTPTPGDSKPKSKKKPKKAKFKSLKKGSLTSGLRPVKEESQAQPMNIDDENVPGLDFQSPNSTMQKKRKKSKLTTDGEEEKRLKKSKKSKRDSPDIYASDLESNSLVVQDEHAESKTCESLVDLEQKTASRSKMGGKISITPIPLKQVWMIKPEKLKKGNHWSKDCIPPADFWLPQEDAILCAVVHEYGPNWSLVSETLYGMSGGGSYRGRYRHPVQCCERFRELFQKYVLLSMDNANHEKINSPGSGKALLKVTEDNIRMLLDVASEQVNRELLLQKHFFALLSSVWKVASHVDHRRNPSPSCNGLYFDQSFYTSIGQPSQNSLKKSSERMAFANLAPSKNLVAAALDDITTRQVNDKVILSNQGEDMPVSADQLDITLEFAKEDSDVLSSFPSVINLSIHGTEPTPSLNKLTGEDDLKVGLFIAENRFREAARVCGEDSSGWASSAFPTNDTRSRPGSRLQSSGKRKSSVSDSSKPSRSKSKKASMDRSEMHPYQADSMFQSMPSLKDLRIDLTSLTTDEVGIDGMDSIFSFDLNGESSLEMESVGMIPHDYVAGLISDLDDSTAFPEYTDIR*
>Glyma09g17220.3 sequence type=predicted peptide gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MASKGPRSRIDHESRAKRQKALEAPREPRRPKTHWDHVLEEMVWLSKDFESERKWKLAQAKKVALRASKGMLDQATRGEKKMKEEEQRLRKVALNISKDVKKFWTKIEKLVLYKHQMELDEKKKKALDKQLEFLLGQTERYSTMLAENLGDPYKSAENNSAEHRKSIHCKDVHDVINEPKEADVVEYQSDAADNDEEYDVQSDDELEDDERTIEQDEALITKEERQEELAALRDEMDLPIQELLKRYAGEKGESVMKGSSPEHSEDGGKIVRAGDGKKGLGSENRDDLLSVSKVDTSNSSMVSGRRCDESNGDVATPTNNLSQCEDGQSENLKETPSETANEDFAYDFTDEEEDGDFLLVTEDKDDETTLSEEEKMERVDTIDPKDEIALLQKESDMPVEELLARYKRDPSDDEDGEYESDYASALSEKHSDSPVHQDAGQKDPAIPMDEDIKSGEHLAATIQFQEEQRESPRENLEKRESEDIIADAAAAARSAQPTGNTFSTTNVRTKFPFLLKYSLREYQHIGLDWLVTMYEKRLNGILADEMGLGKTIMTISLLAHLACDKGIWGPHLIVVPTSVMLNWETEFLKWCPAFKILTYFGSAKERKLKRQGWLKPNSFHVCITTYRLVIQDSKVFKRKKWKYLILDEAHLIKNWKSQRWQTLLNFNSKRRILLTGTPLQNDLMELWSLMHFLMPHVFQSHQEFKDWFSNPISGMVDGEEKINKEVVDRLHNVLRPFLLRRLKRDVEKQLPMKHEHVIYCRLSKRQRNLYEDFIASSETQATLASANFFGMISIIMQLRKVCNHPDLFEGRPIVSSFDMCGIDIQLSSSVCSILLPSPFSTVDLRGLGLLFTHLDSMAAWESDEVQTIETPATLIMERTDMTELEVIRPQKCQKKLQGTNIFEEIQRAIWEERLKEAKERAAAIAWWNSLRCKRRPIYSTTLRDLVTLRHPVYDIHQVKADPVSYLYSSKLADIVLSPVERFQKMTDVVESFMFSIPAARAPSPVCWCSTSETNVFLHPSYKQKCSEVLLPLLAPIRPAIVRRQVYFPDRRLIQFDCGKLQELAILLRKLKSEGHRALIFTQMTKMLDILEAFINLYGYTYMRLDGSTQPEERQTLMQRFNTNPKYFLFILSTRSGGVGINLVGADTVIFYDSDWNPAMDQQAQDRCHRIGQTREVHIYRLISESTIEENILKKANQKRALDNLVIQSGGYNTEFFKKLDPMELFSGHRTLSIKNIVKEKDQNNGEVSVTNDDVEAALKCVEDEADYMALKKVELEEAVDNQEFTEEAIGRLEEDEYVNEDDDTAELGESVSNLNKENVLMLNGTDHKEDRPTHSVPVKEDDPDMLADVKQMAAAAAAAGQAISAFENELRPIDQYAIRFLELWDPIIDKTALESEVRIEDTEWELDRIEKYKEEMEAEIDEDEEPLVYESWDADYATTAYRQHVEALAQHQLMEELEYEARQKEAEEETCDSKKTPTPGDSKPKSKKKPKKAKFKSLKKGSLTSGLRPVKEESQAQPMNIDDENVPGLDFQSPNSTMQKKRKKSKLTTDGEEEKRLKKSKKSKRDSPDIYASDLESNSLVVQDEHAESKTCESLVDLEQKTASRSKMGGKISITPIPLKQVWMIKPEKLKKGNHWSKDCIPPADFWLPQEDAILCAVVHEYGPNWSLVSETLYGMSGGGSYRGRYRHPVQCCERFRELFQKYVLLSMDNANHEKINSPGSGKALLKVTEDNIRMLLDVASEQVNRELLLQKHFFALLSSVWKVASHVDHRRNPSPSCNGLYFDQSFYTSIGQPSQNSLKKSSERMAFANLAPSKNLVAAALDDITTRQVNDKVILSNQGEDMPVSADQLDITLEFAKEDSDVLSSFPSVINLSIHGTEPTPSLNKLTGEDDLKVGLFIAENRFREAARVCGEDSSGWASSAFPTNDTRSRPGSRLQSSGKRKSSVSDSSKPSRSKSKKASMDRSEMHPYQADSMFQSMPSLKDLRIDLTSLTTDEVGIDGMDSIFSFDLNGESSLEMESVGMIPHDYVAGLISDLDDSTAFPEYTDIR*
>Glyma09g17220.4 sequence type=predicted peptide gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MASKGPRSRIDHESRAKRQKALEAPREPRRPKTHWDHVLEEMVWLSKDFESERKWKLAQAKKVALRASKGMLDQATRGEKKMKEEEQRLRKVALNISKDVKKFWTKIEKLVLYKHQMELDEKKKKALDKQLEFLLGQTERYSTMLAENLGDPYKSAENNSAEHRKSIHCKDVHDVINEPKEADVVEYQSDAADNDEEYDVQSDDELEDDERTIEQDEALITKEERQEELAALRDEMDLPIQELLKRYAGEKGESVMKGSSPEHSEDGGKIVRAGDENRDDLLSVSKVDTSNSSMVSGRRCDESNGDVATPTNNLSQCEDGQSENLKETPSETANEDFAYDFTDEEEDGDFLLVTEDKDDETTLSEEEKMERVDTIDPKDEIALLQKESDMPVEELLARYKRDPSDDEDGEYESDYASALSEKHSDSPVHQDAGQKDPAIPMDEDIKSGEHLAATIQFQEEQRESPRENLEKRESEDIIADAAAAARSAQPTGNTFSTTNVRTKFPFLLKYSLREYQHIGLDWLVTMYEKRLNGILADEMGLGKTIMTISLLAHLACDKGIWGPHLIVVPTSVMLNWETEFLKWCPAFKILTYFGSAKERKLKRQGWLKPNSFHVCITTYRLVIQDSKVFKRKKWKYLILDEAHLIKNWKSQRWQTLLNFNSKRRILLTGTPLQNDLMELWSLMHFLMPHVFQSHQEFKDWFSNPISGMVDGEEKINKEVVDRLHNVLRPFLLRRLKRDVEKQLPMKHEHVIYCRLSKRQRNLYEDFIASSETQATLASANFFGMISIIMQLRKVCNHPDLFEGRPIVSSFDMCGIDIQLSSSVCSILLPSPFSTVDLRGLGLLFTHLDSMAAWESDEVQTIETPATLIMERTDMTELEVIRPQKCQKKLQGTNIFEEIQRAIWEERLKEAKERAAAIAWWNSLRCKRRPIYSTTLRDLVTLRHPVYDIHQVKADPVSYLYSSKLADIVLSPVERFQKMTDVVESFMFSIPAARAPSPVCWCSTSETNVFLHPSYKQKCSEVLLPLLAPIRPAIVRRQVYFPDRRLIQFDCGKLQELAILLRKLKSEGHRALIFTQMTKMLDILEAFINLYGYTYMRLDGSTQPEERQTLMQRFNTNPKYFLFILSTRSGGVGINLVGADTVIFYDSDWNPAMDQQAQDRCHRIGQTREVHIYRLISESTIEENILKKANQKRALDNLVIQSGGYNTEFFKKLDPMELFSGHRTLSIKNIVKEKDQNNGEVSVTNDDVEAALKCVEDEADYMALKKVELEEAVDNQEFTEEAIGRLEEDEYVNEDDDTAELGESVSNLNKENVLMLNGTDHKEDRPTHSVPVKEDDPDMLADVKQMAAAAAAAGQAISAFENELRPIDQYAIRFLELWDPIIDKTALESEVRIEDTEWELDRIEKYKEEMEAEIDEDEEPLVYESWDADYATTAYRQHVEALAQHQLMEELEYEARQKEAEEETCDSKKTPTPGDSKPKSKKKPKKAKFKSLKKGSLTSGLRPVKEESQAQPMNIDDENVPGLDFQSPNSTMQKKRKKSKLTTDGEEEKRLKKSKKSKRDSPDIYASDLESNSLVVQDEHAESKTCESLVDLEQKTASRSKMGGKISITPIPLKQVWMIKPEKLKKGNHWSKDCIPPADFWLPQEDAILCAVVHEYGPNWSLVSETLYGMSGGGSYRGRYRHPVQCCERFRELFQKYVLLSMDNANHEKINSPGSGKALLKVTEDNIRMLLDVASEQVNRELLLQKHFFALLSSVWKVASHVDHRRNPSPSCNGLYFDQSFYTSIGQPSQNSLKKSSERMAFANLAPSKNLVAAALDDITTRQVNDKVILSNQGEDMPVSADQLDITLEFAKEDSDVLSSFPSVINLSIHGTEPTPSLNKLTGEDDLKVGLFIAENRFREAARVCGEDSSGWASSAFPTNDTRSRPGSRLQSSGKRKSSVSDSSKPSRSKSKKASMDRSEMHPYQADSMFQSMPSLKDLRIDLTSLTTDEVGIDGMDSIFSFDLNGESSLEMESVGMIPHDYVAGLISDLDDSTAFPEYTDIR*
>Glyma09g17220.5 sequence type=predicted peptide gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MASKGPRSRIDHESRAKRQKALEAPREPRRPKTHWDHVLEEMVWLSKDFESERKWKLAQAKKVALRASKGMLDQATRGEKKMKEEEQRLRKVALNISKDVKKFWTKIEKLVLYKHQMELDEKKKKALDKQLEFLLGQTERYSTMLAENLGDPYKSAENNSAEHRKSIHCKDVHDVINEPKEADVVEYQSDAADNDEEYDVQSDDELEDDERTIEQDEALITKEERQEELAALRDEMDLPIQELLKRYAGEKGESVMKGSSPEHSEDGGKIVRAGDGKKGLGSENRDDLLSVSKVDTSNSSMVSGRRCDESNGDVATPTNNLSQCEDGQSENLKETPSETANEDFAYDFTDEEEDGDFLLVTEDKDDETTLSEEEKMERVDTIDPKDEIALLQKESDMPVEELLARYKRDPSDDEDGEYESDYASALSEKHSDSPVHQDAGQKDPAIPMDEDIKSGEHLAATIQFQEEQRESPRENLEKRESEDIIADAAAAARSAQPTGNTFSTTNVRTKFPFLLKYSLREYQHIGLDWLVTMYEKRLNGILADEMGLGKTIMTISLLAHLACDKGIWGPHLIVVPTSVMLNWETEFLKWCPAFKILTYFGSAKERKLKRQGWLKPNSFHVCITTYRLVIQDSKVFKRKKWKYLILDEAHLIKNWKSQRWQTLLNFNSKRRILLTGTPLQNDLMELWSLMHFLMPHVFQSHQEFKDWFSNPISGMVDGEEKINKEVVDRLHNVLRPFLLRRLKRDVEKQLPMKHEHVIYCRLSKRQRNLYEDFIASSETQATLASANFFGMISIIMQLRKVCNHPDLFEGRPIVSSFDMCGIDIQLSSSVCSILLPSPFSTVDLRGLGLLFTHLDSMAAWESDEVQTIETPATLIMERTDMTELEVIRPQKCQKKLQGTNIFEEIQRAIWEERLKEAKERAAAIAWWNSLRCKRRPIYSTTLRDLVTLRHPVYDIHQVKADPVSYLYSSKLADIVLSPVERFQKMTDVVESFMFSIPAARAPSPVCWCSTSETNVFLHPSYKQKCSEVLLPLLAPIRPAIVRRQVYFPDRRLIQFDCGKLQELAILLRKLKSEGHRALIFTQMTKMLDILEAFINLYGYTYMRLDGSTQPEERQTLMQRFNTNPKYFLFILSTRSGGVGINLVGADTVIFYDSDWNPAMDQQAQDRCHRIGQTREVHIYRLISESTIEENILKKANQKRALDNLVIQSGGYNTEFFKKLDPMELFSGHRTLSIKNIVKEKDQNNGEVSVTNDDVEAALKCVEDEADYMALKKVELEEAVDNQEFTEEAIGRLEEDEYVNEDDDTAELGESVSNLNKENVLMLNGTDHKEDRPTHSVPVKEDDPDMLADVKQMAAAAAAAGQAISAFENELRPIDQYAIRFLELWDPIIDKTALESEVRIEDTEWELDRIEKYKEEMEAEIDEDEEPLVYESWDADYATTAYRQHVEALAQHQLMEELEYEARQKEAEEETCDSKNILLQTIVVNCAQ*
>Glyma09g17220.6 sequence type=predicted peptide gene model=Glyma09g17220 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MASKGPRSRIDHESRAKRQKALEAPREPRRPKTHWDHVLEEMVWLSKDFESERKWKLAQAKKVALRASKGMLDQATRGEKKMKEEEQRLRKVALNISKDVKKFWTKIEKLVLYKHQMELDEKKKKALDKQLEFLLGQTERYSTMLAENLGDPYKSAENNSAEHRKSIHCKDVHDVINEPKEADVVEYQSDAADNDEEYDVQSDDELEDDERTIEQDEALITKEERQEELAALRDEMDLPIQELLKRYAGEKGESVMKGSSPEHSEDGGKIVRAGDENRDDLLSVSKVDTSNSSMVSGRRCDESNGDVATPTNNLSQCEDGQSENLKETPSETANEDFAYDFTDEEEDGDFLLVTEDKDDETTLSEEEKMERVDTIDPKDEIALLQKESDMPVEELLARYKRDPSDDEDGEYESDYASALSEKHSDSPVHQDAGQKDPAIPMDEDIKSGEHLAATIQFQEEQRESPRENLEKRESEDIIADAAAAARSAQPTGNTFSTTNVRTKFPFLLKYSLREYQHIGLDWLVTMYEKRLNGILADEMGLGKTIMTISLLAHLACDKGIWGPHLIVVPTSVMLNWETEFLKWCPAFKILTYFGSAKERKLKRQGWLKPNSFHVCITTYRLVIQDSKVFKRKKWKYLILDEAHLIKNWKSQRWQTLLNFNSKRRILLTGTPLQNDLMELWSLMHFLMPHVFQSHQEFKDWFSNPISGMVDGEEKINKEVVDRLHNVLRPFLLRRLKRDVEKQLPMKHEHVIYCRLSKRQRNLYEDFIASSETQATLASANFFGMISIIMQLRKVCNHPDLFEGRPIVSSFDMCGIDIQLSSSVCSILLPSPFSTVDLRGLGLLFTHLDSMAAWESDEVQTIETPATLIMERTDMTELEVIRPQKCQKKLQGTNIFEEIQRAIWEERLKEAKERAAAIAWWNSLRCKRRPIYSTTLRDLVTLRHPVYDIHQVKADPVSYLYSSKLADIVLSPVERFQKMTDVVESFMFSIPAARAPSPVCWCSTSETNVFLHPSYKQKCSEVLLPLLAPIRPAIVRRQVYFPDRRLIQFDCGKLQELAILLRKLKSEGHRALIFTQMTKMLDILEAFINLYGYTYMRLDGSTQPEERQTLMQRFNTNPKYFLFILSTRSGGVGINLVGADTVIFYDSDWNPAMDQQAQDRCHRIGQTREVHIYRLISESTIEENILKKANQKRALDNLVIQSGGYNTEFFKKLDPMELFSGHRTLSIKNIVKEKDQNNGEVSVTNDDVEAALKCVEDEADYMALKKVELEEAVDNQEFTEEAIGRLEEDEYVNEDDDTAELGESVSNLNKENVLMLNGTDHKEDRPTHSVPVKEDDPDMLADVKQMAAAAAAAGQAISAFENELRPIDQYAIRFLELWDPIIDKTALESEVRIEDTEWELDRIEKYKEEMEAEIDEDEEPLVYESWDADYATTAYRQHVEALAQHQLMEELEYEARQKEAEEETCDSKNILLQTIVVNCAQ*