Report for Sequence Feature Glyma15g40460
Feature Type: gene_model
Chromosome: Gm15
Start: 47458373
stop: 47467151
Source: JGI
Version: Wm82.a1.v1.1
High confidence: yes
A newer version of this gene model can be found here:
Annotations for Glyma15g40460
Database ID Annotation Type Annotation Description Annotation Source Match Score Evidence Code
AT1G20960 AT
Annotation by Michelle Graham. TAIR10: U5 small nuclear ribonucleoprotein helicase, putative | chr1:7302591-7309914 REVERSE LENGTH=2171
SoyBase E_val: 0 ISS
GO:0006259 GO-bp
Annotation by Michelle Graham. GO Biological Process: DNA metabolic process
SoyBase N/A ISS
GO:0009165 GO-bp
Annotation by Michelle Graham. GO Biological Process: nucleotide biosynthetic process
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:0033044 GO-bp
Annotation by Michelle Graham. GO Biological Process: regulation of chromosome organization
SoyBase N/A ISS
GO:0005634 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: nucleus
SoyBase N/A ISS
GO:0005730 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: nucleolus
SoyBase N/A ISS
GO:0005829 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: cytosol
SoyBase N/A ISS
GO:0016020 GO-cc
Annotation by Michelle Graham. GO Cellular Compartment: membrane
SoyBase N/A ISS
GO:0000166 GO-mf
Annotation by Michelle Graham. GO Molecular Function: nucleotide binding
SoyBase N/A ISS
GO:0003676 GO-mf
Annotation by Michelle Graham. GO Molecular Function: nucleic acid binding
SoyBase N/A ISS
GO:0004386 GO-mf
Annotation by Michelle Graham. GO Molecular Function: helicase activity
SoyBase N/A ISS
GO:0005524 GO-mf
Annotation by Michelle Graham. GO Molecular Function: ATP binding
SoyBase N/A ISS
GO:0008026 GO-mf
Annotation by Michelle Graham. GO Molecular Function: ATP-dependent helicase activity
SoyBase N/A ISS
GO:0017111 GO-mf
Annotation by Michelle Graham. GO Molecular Function: nucleoside-triphosphatase activity
SoyBase N/A ISS
KOG0951
KOG
RNA helicase BRR2, DEAD-box superfamily
JGI ISS
PTHR11752 Panther
HELICASE SKI2W
JGI ISS
PTHR11752:SF7 Panther
U5 SMALL NUCLEAR RIBONUCLEOPROTEIN 200 KDA HELICASE
JGI ISS
PF00270 PFAM
DEAD/DEAH box helicase
JGI ISS
PF00271 PFAM
Helicase conserved C-terminal domain
JGI ISS
PF02889 PFAM
Sec63 Brl domain
JGI ISS
UniRef100_G7IJ55 UniRef
Annotation by Michelle Graham. Most informative UniRef hit: U5 small nuclear ribonucleoprotein 200 kDa helicase n=1 Tax=Medicago truncatula RepID=G7IJ55_MEDTR
SoyBase E_val: 0 ISS
UniRef100_I1MJ51 UniRef
Annotation by Michelle Graham. Best UniRef hit: Uncharacterized protein n=1 Tax=Glycine max RepID=I1MJ51_SOYBN
SoyBase E_val: 0 ISS
Expression Patterns of Glyma15g40460
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 Glyma15g40460
Paralog Evidence Comments
Glyma08g18490 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 Glyma15g40460 Gene Call Version Wm82.a1.v1.1
Corresponding Name Annotation Version Evidence Comments
Glyma.15g253800 Wm82.a2.v1 IGC As supplied by JGI
References for Glyma15g40460
Transcripts of Glyma15g40460
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NT Limit To All Plant Sequences
>Glyma15g40460.3 sequence type=transcript gene model=Glyma15g40460 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
TCAAAACTATCGATATTGTGCTAGGTGTAGAAAGTAATTGCGTTTACATTACCACTCTCCGGTTCCCCCCAAGCCCTTAATCCATTTCTCTCCCTCTTCTTCTTCTTCTTCGATACGTTCACTGCATCTCAATTCTCAACACCATCAGTAGCAGTATTAGTCCCTCCGTGCAGGTTTTTCTAGGGTTTCGCAAATGGCGCACCTAGGAGGAGGCGCTGAAGCGCACGCGCGTTTCAAGCAGTACGAGTACCGCGCGAATTCGAGCCTGGTCCTCACCACCGACTCGCGCCCCCGCGACACACACGAGCCCACCGGCGAGCCCGAGTCCTTGTGGGGGAAAATCGATCCCAAGAGCTTCGGCGACCGCGCCTACCGCGGCCGGCCGCCGGAGCTCGACGAGAAGCTCGAGAAGGCGAAGAACAAGAAGAAGAAGAAAGACCGTGATGCTGCCGCTGATGACGCCGCAGCTGTCCCCTCGAAGCGGCGCCGAGTGCAGCATGACAGCGTGCTCTCCGCCTCCGACGACGGCGTGTACCAGCCGAAGACAAAGGAGACCCGTGCCGCCTACGAGGCGATGCTCAGCGTCATCCAGAACCAGCTCGGCGGCCAGCCCCTCAGCATTGTCAGCGCTGCCGCCGATGAGATCCTCGCCGTGCTAAAAAATGACGTCGTAAAGAACCCTGATAAGAAGAAAGACATTGAGAAGCTTTTGAACCCTATACCTGGCCATGTTTTTGACCAGCTTGTGTCCATTGGGAAGTTAATTACTGATTTTCAGGAGGCTGTGGATGTTCCCAATGGGAGTTCCGCGATGGATGGTGAGGAGGGGCTTGATGATGATGTTGGTGTTGCTGTTGAGTTTGAGGAGAATGAGGATGATGATGAGGAGAGTGATTTGGATATTGTGCAGGATGAGGAGGAAGAGGATGAGGATGTCACAGAGCCGAACAGTTCTGGGGCTATGCAGATGGGTGGAATTGATGATGAGGATATGGAAGAGGGTAATGAAGGGATGGGTTTGAATGTGCAGGATATTGATGCTTATTGGCTTCAGAGGAAAATCTCTCAGGCTTTTGAGCAGCAGATTGATCCACAGCACTGCCAGAAGCTCGCAGAGGAGGTGCTCAAGATTCTTGCTGAGGGGGATGATAGAGAGGTGGAGAACAAGCTTTTGTTTCATCTTGAGTTTGATAAGTTCAGCCTCATTAAGTTTTTGTTGCGGAATAGGTTGAAGATTGTGTGGTGCACGCGGTTGGCGAGGGCACAGGACCAAGAGGAGAGGGAGAGGATTGAGGAGGAGATGAAGGGGACAGAGTTGCAGCCGATTTTGGAACAGTTGCATGCGACAAGGGCTTCTGCGAAGGAGAGGCAGAAGAATTTGGAGAAGAGTATTAGGGAAGAGGCTAGGAGGTTGAAGGATGATACTGGTGGAGATGGAGATAAGGAAAGTAGGGATAGGAGCAGGAGGGTGGTTGCTGATAGAGATGGGGAGAGTGGATGGTTGAAGGGTCAGCGCCAGATGCTTGATCTTGATAGTATTGCTTTTGCTCAAGGTGGTTTTTTCATGGCTAAGAAGAAGTGTGACCTGCCCGATGGGTCTTATAGGCATCTCAGTAAGGGTTATGAAGAGATTCATGTGCCTGCCTTGAAGGCTAAACCGCTTGATCCTAATGAGAAGCTCGTGAAAATATCTTCTATGCCTGATTGGGCACAGCCAGCTTTCAAAGGAATGACGCAGTTGAATAGGGTGCAGAGCAAGGTTTATGAGACTGCCCTTTTCCAGCCTGATAATCTTCTGCTCTGTGCTCCAACTGGGGCTGGAAAAACTAATGTTGCAGTGCTGACAATACTTCAACAAATTGCCCGGCACAGGAATCCTAAGGATGGTTCTATTGACCATAGTGCTTATAAGATTGTTTATGTTGCACCTATGAAAGCTCTTGTGGCTGAAGTAGTTGGGAATTTGTCCAATAGATTGCAGGATTATGATGTTAAAGTTAGGGAGCTCAGTGGAGATCAGTCACTAACCCGGCAACAGATAGAAGAGACTCAAATTATTGTGACAACTCCTGAGAAGTGGGATATTATCACTCGAAAGTCGGGTGACCGCACTTATACACAGCTTGTAAAGCTTCTTATCATTGATGAAATTCATCTACTTCATGATAACAGAGGGCCTGTACTGGAAAGTATTGTTGCTAGAACAGTAAGGCAGATTGAAACCACAAAGGACTATATTCGGTTGGTGGGATTGTCTGCTACTCTCCCTAATTATGAAGATGTTGCATTGTTTTTGCGTGTTGATCTGAAGAAGGGGCTGTTTTATTTTGATAATAGTTATAGACCTGTTCCTCTTTCTCAACAGTATGTTGGAATCACAGTGAAGAAGCCACTTCAGAGGTTCCAGTTGATGAATGATATCTGTTATGAGAAAGTTATGGCTGTGGCTGGAAAACATCAGGTTCTTATCTTTGTACATTCCAGGAAAGAAACTGCCAAAACTGCTAGAGCCATCAGAGATACTGCACTTGCAAATGATACTCTTGGTAGGTTTCTTAAAGAAGACAGTGCGAGTCGTGAGATTCTTCATACTCATACTGATCTTGTGAAGAGCAATGATCTTAAAGATCTTCTTCCATATGGTTTTGCAATTCATCATGCTGGTATGACCAGGACAGATCGCCAGCTTGTTGAGGATCTCTTTGCTGATGGGCATGTGCAAGTGTTGGTTTCTACTGCGACCCTTGCTTGGGGCGTGAATCTACCTGCTCATACAGTGATAATTAAAGGGACACAGATTTATAATCCCGAAAAGGGGGCCTGGACTGAACTAAGTCCTCTTGATGTGATGCAGATGCTGGGTCGTGCTGGAAGGCCCCAATATGACTCATATGGTGAGGGAATAATTGTTACTGGTCATAGTGAGTTGCAGTATTACCTCTCTCTCATGAACCAACAACTTCCGATTGAGAGTCAGTTTGTGTCCAAGCTGGCTGATCAGCTGAATGCAGAAATTGTTCTTGGTACTGTACAAAATGCCAGGGAGGCCTGTAATTGGATTGGATACACTTACTTGTATGTCCGTATGTTGAGGAATCCTTCATTATATGGTATAGCACCTGACGTCCTAACAAGAGATATAACATTGGAAGAGAGGAGGGCTGATTTGATTCATACAGCTGCAACCATCTTGGACAGAAATAATTTGGTGAAGTATGATAGGAAGAGTGGGTATTTCCAAGTCACAGATTTGGGTCGTATTGCTAGCTACTACTACATAACACACGGATCCATATCCACATATAATGAGCATTTGAAGCCTACAATGGGGGACATAGAGCTTTGTCGATTGTTCTCTTTGAGTGAAGAATTCAAGTATGTAACAGTAAGACAAGATGAGAAGATGGAGCTAGCCAAGCTCTTGGACCGTGTTCCCATCCCCATCAAGGAAAGTCTGGAAGAGCCAAGTGCCAAGATCAATGTTTTATTGCAAGCATACATTTCACAATTAAAGCTTGAAGGACTCTCGCTGACATCTGATATGGTCTTTATCACTCAGAGTGCTGGACGTCTTTTGCGGGCACTTTTTGAGATTGTCTTGAAACGTGGCTGGGCGCAGTTGGCTGAGAAGGCTTTGAACTTGTGCAAAATGGTGACCAAGAGGATGTGGAGTGTCCAGACACCTCTGCGTCAGTTCAACGGAATTCCTAGTGATTTGTTAACGAAGTTGGAGAAGAAAGATTTGGCTTGGGAAAGGTATTATGACCTATCATCACAAGAGATAGGTGAACTCATTCGTGCACCGAAGATGGGAAGGACTCTTCATAAATTTATACATCAGTTTCCTAAACTGAACCTTGCAGCACATGTGCAGCCAATTACTCGCACAGTTTTGAGGGTTGAGCTGACGATAACTCCAGACTTTGCCTGGGATGACAGAATTCATGGATATGTTGAACCATTCTGGGTGATTGTTGAGGATAATGATGGAGAATATATTCTTCACCACGAATATTTTATGCTGAAAAAGCAGTATATTGATGAGGACCACACACTGAATTTCACTGTGCCGATATATGAGCCTCTTCCCCCTCAGTACTTTATCCGTGTTGTTTCAGATAGATGGCTTGGATCACAAACCGTTTTACCCGTTTCTTTCAGGCATCTAATCTTACCTGAGAAGTACCCTCCACCAACTGAACTACTGGATCTGCAACCACTTCCTGTGACTGCCTTGCGAAATCCATCATATGAATCTCTTTATAAGGATTTTAAGCATTTTAATCCTGTTCAGACACAAGTCTTCACAGTTCTGTATAATTCTGATGACAATGTCTTAGTTGCTGCTCCAACAGGGAGTGGTAAGACTATATGTGCAGAATTTGCTATTTTGAGGAATCATCAAAAATGGCCTGATAGTGTCATGCGTGTAGTTTATGTTGCGCCCATTGAATCTCTTGCCAAGGAGCGTTATCGTGATTGGGAGAAGAAATTTGGAGGTGGTCTTAAGTTGAGGGTGGTTGAATTGACTGGAGAAACTGCGACAGACTTGAAACTTCTTGAGAAGGGTCAGATTATTATTAGTACCCCTGAGAAATGGGATGCTTTATCTCGCCGCTGGAAACAGCGGAAACATGTTCAACAAGTTAGTCTTTTCATCATTGATGAGCTCCACTTGATTGGAGGTCAAGGTGGTCCTATTTTAGAGGTTGTAGTTTCCAGGATGAGATATATTGCTAGTCAGGTTGAAAACAAGATTCGTGTTGTGGCTTTGTCTACCTCTCTTGCAAATGCTAAAGATCTGGGCGAATGGATTGGAGCTACCTCCCATGGCCTTTTCAATTTCCCCCCTGGTGTTCGTCCTGTGCCTTTGGAAATTCACATTCAGGGTATAGATATTGCTAATTTTGAGGCAAGGATGCAGGCAATGACCAAGCCAACTTACACTGCAATTGTTCAACATGCCAAGAATGGAAAACCTGCCCTCGTATTTGTACCTACAAGGAAACATGTCCGACTGACAGCTGTGGATCTGATTACATACTCAGGTGCAGACAGTGGGGAGAAGCCATTTTTATTGCGGTCAGCAGAAGAGCTTGAACCTTTTCTTGACAAGATTACTGACGAAATGTTGAAAGTTACTTTACGTGAAGGAGTTGGATACTTGCATGAGGGCTTGAACAGTCTTGATCGTGACATTGTGACTCAGCTATTTGAAGCTGGCTGGATTCAAGTCTGTGTTTTAAACAGTTCCATGTGTTGGGGAGTGACATTGTCGGCTCATTTGGTAGTTGTGATGGGCACGCAATACTATGATGGGCGAGAGAATGCACAGACAGATTACCCCGTTACTGATCTTCTGCAGATGATGGGTCATGCCAGCCGTCCTTTGGTAGACAATTCTGGAAAATGTGTCATCTTGTGCCATGCTCCTCGTAAGGAGTACTACAAGAAGTTCTTATATGAAGCATTCCCGGTTGAAAGCCATCTTCATCACTTCTTGCATGATAACTTGAACGCTGAAATTGTTGCTGGAATTATTGAGAACAAGCAAGATGCTGTAGATTATCTTACATGGACATTCATGTACAGGCGGCTCACGCAGAATCCCAATTATTACAATTTACAAGGAGTTAGTCACAGACATCTTTCTGATCACCTCTCAGAGATGGTGGAAAATACTTTGAGTGATTTAGAAGCGGGCAAGTGCATTACGATTGAGGATGATATGGAGCTTGCTCCTCTCAATCTTGGAATGATAGCATCCTATTATTACATCAGCTACACAACAATTGAAAGGTTTTCATCATCTGTGACTTCAAAAACTAAAATGAAGGGTCTTTTGGAGATTCTGTCTTCAGCTTCAGAGTATGCTCAGCTTCCAATACGACCTGGAGAGGAAGAGGTCGTTCGTAAGTTAATTAATCACCAGAGGTTTTCCTTTGAAAACCCCAAGGTTACAGATCCACATGTTAAAACTAATGCTTTGCTTCAGGCCCATTTCTCTAGACAATTCGTAGGTGGGAACCTTGCATTGGACCAGAAGGAGGTGCTTCTTTCTGCAAATAGACTGCTTCAGGCAATGGTAGATGTGATATCCAGCAATGGTTGGCTGGGCCTGGCCCTTCTTGCTATGGAAGTTAGTCAAATGGTGACACAGGGAATGTGGGAACGTGACTCCATGCTGCTTCAACTACCTCATTTCACAAAGGATCTGGCTAAGAAATGCCAGGAGAACCCAGGGAAGAGTATAGAAACTGTGTTTGATTTATTAGAGATGGAAGATAATGAGAGGCAAGAATTGTTGGGCATGTCAGATTCACAGTTGTTGGATATTGCCCGATTTTGCAACCGGTTCCCTAATATTGATTTGTCATATGAGGTGCTGGACAGTGACAATGTTCGGGCTGGGGAGGTTGTCACTGTGCTGGTCACTCTTGAGCGGGATCTTGAGGGAAGGACAGAAGTAGGACCTGTTGATGCTCCCAGGTATCCAAAAGCCAAGGAAGAAGGGTGGTGGCTCATTGTTGGTGATACCAAAACCAATCTGTTGCTTGCCATTAAACGGGTTTCCCTGCAGCGGAGGTTAAAAGCCAAACTGGAATTTGATGCTCCTGCTGATGCTGGAAGGAAATCCTATTCGCTTTATTTCATGTGTGATTCATACCTGGGTTGTGATCAGGAGTATGGTTTCACAATTGATGTTAATGCTGATGGTGGTGATCAAGATAGCGGCAGAGAATGAAAAGTTTTGTGAAGCTTCAAATGCAAGGAGGGACACTATAGCACTGCTGAAGATTGTATCTTATTCTGGCATAGGAGGATAAAATTGCAGCAGTAGGAAATGAAGTAGCATTAGGAAGTAACACACTTGTTGAAACACCATAGCTGGCGGCTCCACTAGTTGCAGCATTAGGAAGTGGATAGTTCGCTTATTGAGACGCTAATTTTCGTTTTGGAAATGAACAGTAAATTGTATCATCGAAGGACGAAAGCAGAGTTTTTTCCTCTTTGGTCCCATCCCGTGGGTGTTAGATATAATTAATGTCTGAATGCATGTTGTACGGCAGCTTGTATAGAAAGTTAATTTTGCTGTTTGGTTATCAAAGTTTTAACTCGAGAGTTGACAGTTGCTACTGTCTTTTCTTCTCAACCATTTGATTTGTGTTCAATAATCTGTATAAACATGAAAGTAACTACATTGTCACTAGTTCCTGTTTAGGATCTTACTGAGGATGTTTTTTGGAATCTCTATTGGTGACTTCCATGTACTGGACGATACCTTGAAGTTAGTATTAAAATCAACTATTTTTTTCTTTCCTATAGGTTTGATTATTGTTGACGCAGAGGTTTATCTGTTTTGGTTATTGTTTATAAGAATGCTTTTGAAATTATAATTATTGGCTATGCT
Coding sequences of Glyma15g40460
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NT Limit To All Plant Sequences
>Glyma15g40460.2 sequence type=CDS gene model=Glyma15g40460 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGCACCTAGGAGGAGGCGCTGAAGCGCACGCGCGTTTCAAGCAGTACGAGTACCGCGCGAATTCGAGCCTGGTCCTCACCACCGACTCGCGCCCCCGCGACACACACGAGCCCACCGGCGAGCCCGAGTCCTTGTGGGGGAAAATCGATCCCAAGAGCTTCGGCGACCGCGCCTACCGCGGCCGGCCGCCGGAGCTCGACGAGAAGCTCGAGAAGGCGAAGAACAAGAAGAAGAAGAAAGACCGTGATGCTGCCGCTGATGACGCCGCAGCTGTCCCCTCGAAGCGGCGCCGAGTGCAGCATGACAGCGTGCTCTCCGCCTCCGACGACGGCGTGTACCAGCCGAAGACAAAGGAGACCCGTGCCGCCTACGAGGCGATGCTCAGCGTCATCCAGAACCAGCTCGGCGGCCAGCCCCTCAGCATTGTCAGCGCTGCCGCCGATGAGATCCTCGCCGTGCTAAAAAATGACGTCGTAAAGAACCCTGATAAGAAGAAAGACATTGAGAAGCTTTTGAACCCTATACCTGGCCATGTTTTTGACCAGCTTGTGTCCATTGGGAAGTTAATTACTGATTTTCAGGAGGCTGTGGATGTTCCCAATGGGAGTTCCGCGATGGATGGTGAGGAGGGGCTTGATGATGATGTTGGTGTTGCTGTTGAGTTTGAGGAGAATGAGGATGATGATGAGGAGAGTGATTTGGATATTGTGCAGGATGAGGAGGAAGAGGATGAGGATGTCACAGAGCCGAACAGTTCTGGGGCTATGCAGATGGGTGGAATTGATGATGAGGATATGGAAGAGGGTAATGAAGGGATGGGTTTGAATGTGCAGGATATTGATGCTTATTGGCTTCAGAGGAAAATCTCTCAGGCTTTTGAGCAGCAGATTGATCCACAGCACTGCCAGAAGCTCGCAGAGGAGGTGCTCAAGATTCTTGCTGAGGGGGATGATAGAGAGGTGGAGAACAAGCTTTTGTTTCATCTTGAGTTTGATAAGTTCAGCCTCATTAAGTTTTTGTTGCGGAATAGGTTGAAGATTGTGTGGTGCACGCGGTTGGCGAGGGCACAGGACCAAGAGGAGAGGGAGAGGATTGAGGAGGAGATGAAGGGGACAGAGTTGCAGCCGATTTTGGAACAGTTGCATGCGACAAGGGCTTCTGCGAAGGAGAGGCAGAAGAATTTGGAGAAGAGTATTAGGGAAGAGGCTAGGAGGTTGAAGGATGATACTGGTGGAGATGGAGATAAGGAAAGTAGGGATAGGAGCAGGAGGGTGGTTGCTGATAGAGATGGGGAGAGTGGATGGTTGAAGGGTCAGCGCCAGATGCTTGATCTTGATAGTATTGCTTTTGCTCAAGGTGGTTTTTTCATGGCTAAGAAGAAGTGTGACCTGCCCGATGGGTCTTATAGGCATCTCAGTAAGGGTTATGAAGAGATTCATGTGCCTGCCTTGAAGGCTAAACCGCTTGATCCTAATGAGAAGCTCGTGAAAATATCTTCTATGCCTGATTGGGCACAGCCAGCTTTCAAAGGAATGACGCAGTTGAATAGGGTGCAGAGCAAGGTTTATGAGACTGCCCTTTTCCAGCCTGATAATCTTCTGCTCTGTGCTCCAACTGGGGCTGGAAAAACTAATGTTGCAGTGCTGACAATACTTCAACAAATTGCCCGGCACAGGAATCCTAAGGATGGTTCTATTGACCATAGTGCTTATAAGATTGTTTATGTTGCACCTATGAAAGCTCTTGTGGCTGAAGTAGTTGGGAATTTGTCCAATAGATTGCAGGATTATGATGTTAAAGTTAGGGAGCTCAGTGGAGATCAGTCACTAACCCGGCAACAGATAGAAGAGACTCAAATTATTGTGACAACTCCTGAGAAGTGGGATATTATCACTCGAAAGTCGGGTGACCGCACTTATACACAGCTTGTAAAGCTTCTTATCATTGATGAAATTCATCTACTTCATGATAACAGAGGGCCTGTACTGGAAAGTATTGTTGCTAGAACAGTAAGGCAGATTGAAACCACAAAGGACTATATTCGGTTGGTGGGATTGTCTGCTACTCTCCCTAATTATGAAGATGTTGCATTGTTTTTGCGTGTTGATCTGAAGAAGGGGCTGTTTTATTTTGATAATAGTTATAGACCTGTTCCTCTTTCTCAACAGTATGTTGGAATCACAGTGAAGAAGCCACTTCAGAGGTTCCAGTTGATGAATGATATCTGTTATGAGAAAGTTATGGCTGTGGCTGGAAAACATCAGGTTCTTATCTTTGTACATTCCAGGAAAGAAACTGCCAAAACTGCTAGAGCCATCAGAGATACTGCACTTGCAAATGATACTCTTGGTAGGTTTCTTAAAGAAGACAGTGCGAGTCGTGAGATTCTTCATACTCATACTGATCTTGTGAAGAGCAATGATCTTAAAGATCTTCTTCCATATGGTTTTGCAATTCATCATGCTGGTATGACCAGGACAGATCGCCAGCTTGTTGAGGATCTCTTTGCTGATGGGCATGTGCAAGTGTTGGTTTCTACTGCGACCCTTGCTTGGGGCGTGAATCTACCTGCTCATACAGTGATAATTAAAGGGACACAGATTTATAATCCCGAAAAGGGGGCCTGGACTGAACTAAGTCCTCTTGATGTGATGCAGATGCTGGGTCGTGCTGGAAGGCCCCAATATGACTCATATGGTGAGGGAATAATTGTTACTGGTCATAGTGAGTTGCAGTATTACCTCTCTCTCATGAACCAACAACTTCCGATTGAGAGTCAGTTTGTGTCCAAGCTGGCTGATCAGCTGAATGCAGAAATTGTTCTTGGTACTGTACAAAATGCCAGGGAGGCCTGTAATTGGATTGGATACACTTACTTGTATGTCCGTATGTTGAGGAATCCTTCATTATATGGTATAGCACCTGACGTCCTAACAAGAGATATAACATTGGAAGAGAGGAGGGCTGATTTGATTCATACAGCTGCAACCATCTTGGACAGAAATAATTTGGTGAAGTATGATAGGAAGAGTGGGTATTTCCAAGTCACAGATTTGGGTCGTATTGCTAGCTACTACTACATAACACACGGATCCATATCCACATATAATGAGCATTTGAAGCCTACAATGGGGGACATAGAGCTTTGTCGATTGTTCTCTTTGAGTGAAGAATTCAAGTATGTAACAGTAAGACAAGATGAGAAGATGGAGCTAGCCAAGCTCTTGGACCGTGTTCCCATCCCCATCAAGGAAAGTCTGGAAGAGCCAAGTGCCAAGATCAATGTTTTATTGCAAGCATACATTTCACAATTAAAGCTTGAAGGACTCTCGCTGACATCTGATATGGTCTTTATCACTCAGAGTGCTGGACGTCTTTTGCGGGCACTTTTTGAGATTGTCTTGAAACGTGGCTGGGCGCAGTTGGCTGAGAAGGCTTTGAACTTGTGCAAAATGGTGACCAAGAGGATGTGGAGTGTCCAGACACCTCTGCGTCAGTTCAACGGAATTCCTAGTGATTTGTTAACGAAGTTGGAGAAGAAAGATTTGGCTTGGGAAAGGTATTATGACCTATCATCACAAGAGATAGGTGAACTCATTCGTGCACCGAAGATGGGAAGGACTCTTCATAAATTTATACATCAGTTTCCTAAACTGAACCTTGCAGCACATGTGCAGCCAATTACTCGCACAGTTTTGAGGGTTGAGCTGACGATAACTCCAGACTTTGCCTGGGATGACAGAATTCATGGATATGTTGAACCATTCTGGGTGATTGTTGAGGATAATGATGGAGAATATATTCTTCACCACGAATATTTTATGCTGAAAAAGCAGTATATTGATGAGGACCACACACTGAATTTCACTGTGCCGATATATGAGCCTCTTCCCCCTCAGTACTTTATCCGTGTTGTTTCAGATAGATGGCTTGGATCACAAACCGTTTTACCCGTTTCTTTCAGGCATCTAATCTTACCTGAGAAGTACCCTCCACCAACTGAACTACTGGATCTGCAACCACTTCCTGTGACTGCCTTGCGAAATCCATCATATGAATCTCTTTATAAGGATTTTAAGCATTTTAATCCTGTTCAGACACAAGTCTTCACAGTTCTGTATAATTCTGATGACAATGTCTTAGTTGCTGCTCCAACAGGGAGTGGTAAGACTATATGTGCAGAATTTGCTATTTTGAGGAATCATCAAAAATGGCCTGATAGTGTCATGCGTGTAGTTTATGTTGCGCCCATTGAATCTCTTGCCAAGGAGCGTTATCGTGATTGGGAGAAGAAATTTGGAGGTGGTCTTAAGTTGAGGGTGGTTGAATTGACTGGAGAAACTGCGACAGACTTGAAACTTCTTGAGAAGGGTCAGATTATTATTAGTACCCCTGAGAAATGGGATGCTTTATCTCGCCGCTGGAAACAGCGGAAACATGTTCAACAAGTTAGTCTTTTCATCATTGATGAGCTCCACTTGATTGGAGGTCAAGGTGGTCCTATTTTAGAGGTTGTAGTTTCCAGGATGAGATATATTGCTAGTCAGGTTGAAAACAAGATTCGTGTTGTGGCTTTGTCTACCTCTCTTGCAAATGCTAAAGATCTGGGCGAATGGATTGGAGCTACCTCCCATGGCCTTTTCAATTTCCCCCCTGGTGTTCGTCCTGTGCCTTTGGAAATTCACATTCAGGGTATAGATATTGCTAATTTTGAGGCAAGGATGCAGGCAATGACCAAGCCAACTTACACTGCAATTGTTCAACATGCCAAGAATGGAAAACCTGCCCTCGTATTTGTACCTACAAGGAAACATGTCCGACTGACAGCTGTGGATCTGATTACATACTCAGGTGCAGACAGTGGGGAGAAGCCATTTTTATTGCGGTCAGCAGAAGAGCTTGAACCTTTTCTTGACAAGATTACTGACGAAATGTTGAAAGTTACTTTACGTGAAGGAGTTGGATACTTGCATGAGGGCTTGAACAGTCTTGATCGTGACATTGTGACTCAGCTATTTGAAGCTGGCTGGATTCAAGTCTGTGTTTTAAACAGTTCCATGTGTTGGGGAGTGACATTGTCGGCTCATTTGGTAGTTGTGATGGGCACGCAATACTATGATGGGCGAGAGAATGCACAGACAGATTACCCCGTTACTGATCTTCTGCAGATGATGGGTCATGCCAGCCGTCCTTTGGTAGACAATTCTGGAAAATGTGTCATCTTGTGCCATGCTCCTCGTAAGGAGTACTACAAGAAGTTCTTATATGAAGCATTCCCGGTTGAAAGCCATCTTCATCACTTCTTGCATGATAACTTGAACGCTGAAATTGTTGCTGGAATTATTGAGAACAAGCAAGATGCTGTAGATTATCTTACATGGACATTCATGTACAGGCGGCTCACGCAGAATCCCAATTATTACAATTTACAAGGAGTTAGTCACAGACATCTTTCTGATCACCTCTCAGAGATGGTGGAAAATACTTTGAGTGATTTAGAAGCGGGCAAGTGCATTACGATTGAGGATGATATGGAGCTTGCTCCTCTCAATCTTGGAATGATAGCATCCTATTATTACATCAGCTACACAACAATTGAAAGGTTTTCATCATCTGTGACTTCAAAAACTAAAATGAAGGGTCTTTTGGAGATTCTGTCTTCAGCTTCAGAGTATGCTCAGCTTCCAATACGACCTGGAGAGGAAGAGGTCGTTCGTAAGTTAATTAATCACCAGAGGTTTTCCTTTGAAAACCCCAAGGTTACAGATCCACATGTTAAAACTAATGCTTTGCTTCAGGCCCATTTCTCTAGACAATTCGTAGGTGGGAACCTTGCATTGGACCAGAAGGAGGTGCTTCTTTCTGCAAATAGACTGCTTCAGGCAATGGTAGATGTGATATCCAGCAATGGTTGGCTGGGCCTGGCCCTTCTTGCTATGGAAGTTAGTCAAATGGTGACACAGGGAATGTGGGAACGTGACTCCATGCTGCTTCAACTACCTCATTTCACAAAGGATCTGGCTAAGAAATGCCAGGAGAACCCAGGGAAGAGTATAGAAACTGTGTTTGATTTATTAGAGATGGAAGATAATGAGAGGCAAGAATTGTTGGGCATGTCAGATTCACAGTTGTTGGATATTGCCCGATTTTGCAACCGGTTCCCTAATATTGATTTGTCATATGAGGTGCTGGACAGTGACAATGTTCGGGCTGGGGAGGTTGTCACTGTGCTGGTCACTCTTGAGCGGGATCTTGAGGGAAGGACAGAAGTAGGACCTGTTGATGCTCCCAGGTATCCAAAAGCCAAGGAAGAAGGGTGGTGGCTCATTGTTGGTGATACCAAAACCAATCTGTTGCTTGCCATTAAACGGGTTTCCCTGCAGCGGAGGTTAAAAGCCAAACTGGAATTTGATGCTCCTGCTGATGCTGGAAGGAAATCCTATTCGCTTTATTTCATGTGTGATTCATACCTGGGTTGTGATCAGGAGTATGGTTTCACAATTGATGTTAATGCTGATGGTGGTGATCAAGATAGCGGCAGAGAATGA
>Glyma15g40460.3 sequence type=CDS gene model=Glyma15g40460 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
ATGGCGCACCTAGGAGGAGGCGCTGAAGCGCACGCGCGTTTCAAGCAGTACGAGTACCGCGCGAATTCGAGCCTGGTCCTCACCACCGACTCGCGCCCCCGCGACACACACGAGCCCACCGGCGAGCCCGAGTCCTTGTGGGGGAAAATCGATCCCAAGAGCTTCGGCGACCGCGCCTACCGCGGCCGGCCGCCGGAGCTCGACGAGAAGCTCGAGAAGGCGAAGAACAAGAAGAAGAAGAAAGACCGTGATGCTGCCGCTGATGACGCCGCAGCTGTCCCCTCGAAGCGGCGCCGAGTGCAGCATGACAGCGTGCTCTCCGCCTCCGACGACGGCGTGTACCAGCCGAAGACAAAGGAGACCCGTGCCGCCTACGAGGCGATGCTCAGCGTCATCCAGAACCAGCTCGGCGGCCAGCCCCTCAGCATTGTCAGCGCTGCCGCCGATGAGATCCTCGCCGTGCTAAAAAATGACGTCGTAAAGAACCCTGATAAGAAGAAAGACATTGAGAAGCTTTTGAACCCTATACCTGGCCATGTTTTTGACCAGCTTGTGTCCATTGGGAAGTTAATTACTGATTTTCAGGAGGCTGTGGATGTTCCCAATGGGAGTTCCGCGATGGATGGTGAGGAGGGGCTTGATGATGATGTTGGTGTTGCTGTTGAGTTTGAGGAGAATGAGGATGATGATGAGGAGAGTGATTTGGATATTGTGCAGGATGAGGAGGAAGAGGATGAGGATGTCACAGAGCCGAACAGTTCTGGGGCTATGCAGATGGGTGGAATTGATGATGAGGATATGGAAGAGGGTAATGAAGGGATGGGTTTGAATGTGCAGGATATTGATGCTTATTGGCTTCAGAGGAAAATCTCTCAGGCTTTTGAGCAGCAGATTGATCCACAGCACTGCCAGAAGCTCGCAGAGGAGGTGCTCAAGATTCTTGCTGAGGGGGATGATAGAGAGGTGGAGAACAAGCTTTTGTTTCATCTTGAGTTTGATAAGTTCAGCCTCATTAAGTTTTTGTTGCGGAATAGGTTGAAGATTGTGTGGTGCACGCGGTTGGCGAGGGCACAGGACCAAGAGGAGAGGGAGAGGATTGAGGAGGAGATGAAGGGGACAGAGTTGCAGCCGATTTTGGAACAGTTGCATGCGACAAGGGCTTCTGCGAAGGAGAGGCAGAAGAATTTGGAGAAGAGTATTAGGGAAGAGGCTAGGAGGTTGAAGGATGATACTGGTGGAGATGGAGATAAGGAAAGTAGGGATAGGAGCAGGAGGGTGGTTGCTGATAGAGATGGGGAGAGTGGATGGTTGAAGGGTCAGCGCCAGATGCTTGATCTTGATAGTATTGCTTTTGCTCAAGGTGGTTTTTTCATGGCTAAGAAGAAGTGTGACCTGCCCGATGGGTCTTATAGGCATCTCAGTAAGGGTTATGAAGAGATTCATGTGCCTGCCTTGAAGGCTAAACCGCTTGATCCTAATGAGAAGCTCGTGAAAATATCTTCTATGCCTGATTGGGCACAGCCAGCTTTCAAAGGAATGACGCAGTTGAATAGGGTGCAGAGCAAGGTTTATGAGACTGCCCTTTTCCAGCCTGATAATCTTCTGCTCTGTGCTCCAACTGGGGCTGGAAAAACTAATGTTGCAGTGCTGACAATACTTCAACAAATTGCCCGGCACAGGAATCCTAAGGATGGTTCTATTGACCATAGTGCTTATAAGATTGTTTATGTTGCACCTATGAAAGCTCTTGTGGCTGAAGTAGTTGGGAATTTGTCCAATAGATTGCAGGATTATGATGTTAAAGTTAGGGAGCTCAGTGGAGATCAGTCACTAACCCGGCAACAGATAGAAGAGACTCAAATTATTGTGACAACTCCTGAGAAGTGGGATATTATCACTCGAAAGTCGGGTGACCGCACTTATACACAGCTTGTAAAGCTTCTTATCATTGATGAAATTCATCTACTTCATGATAACAGAGGGCCTGTACTGGAAAGTATTGTTGCTAGAACAGTAAGGCAGATTGAAACCACAAAGGACTATATTCGGTTGGTGGGATTGTCTGCTACTCTCCCTAATTATGAAGATGTTGCATTGTTTTTGCGTGTTGATCTGAAGAAGGGGCTGTTTTATTTTGATAATAGTTATAGACCTGTTCCTCTTTCTCAACAGTATGTTGGAATCACAGTGAAGAAGCCACTTCAGAGGTTCCAGTTGATGAATGATATCTGTTATGAGAAAGTTATGGCTGTGGCTGGAAAACATCAGGTTCTTATCTTTGTACATTCCAGGAAAGAAACTGCCAAAACTGCTAGAGCCATCAGAGATACTGCACTTGCAAATGATACTCTTGGTAGGTTTCTTAAAGAAGACAGTGCGAGTCGTGAGATTCTTCATACTCATACTGATCTTGTGAAGAGCAATGATCTTAAAGATCTTCTTCCATATGGTTTTGCAATTCATCATGCTGGTATGACCAGGACAGATCGCCAGCTTGTTGAGGATCTCTTTGCTGATGGGCATGTGCAAGTGTTGGTTTCTACTGCGACCCTTGCTTGGGGCGTGAATCTACCTGCTCATACAGTGATAATTAAAGGGACACAGATTTATAATCCCGAAAAGGGGGCCTGGACTGAACTAAGTCCTCTTGATGTGATGCAGATGCTGGGTCGTGCTGGAAGGCCCCAATATGACTCATATGGTGAGGGAATAATTGTTACTGGTCATAGTGAGTTGCAGTATTACCTCTCTCTCATGAACCAACAACTTCCGATTGAGAGTCAGTTTGTGTCCAAGCTGGCTGATCAGCTGAATGCAGAAATTGTTCTTGGTACTGTACAAAATGCCAGGGAGGCCTGTAATTGGATTGGATACACTTACTTGTATGTCCGTATGTTGAGGAATCCTTCATTATATGGTATAGCACCTGACGTCCTAACAAGAGATATAACATTGGAAGAGAGGAGGGCTGATTTGATTCATACAGCTGCAACCATCTTGGACAGAAATAATTTGGTGAAGTATGATAGGAAGAGTGGGTATTTCCAAGTCACAGATTTGGGTCGTATTGCTAGCTACTACTACATAACACACGGATCCATATCCACATATAATGAGCATTTGAAGCCTACAATGGGGGACATAGAGCTTTGTCGATTGTTCTCTTTGAGTGAAGAATTCAAGTATGTAACAGTAAGACAAGATGAGAAGATGGAGCTAGCCAAGCTCTTGGACCGTGTTCCCATCCCCATCAAGGAAAGTCTGGAAGAGCCAAGTGCCAAGATCAATGTTTTATTGCAAGCATACATTTCACAATTAAAGCTTGAAGGACTCTCGCTGACATCTGATATGGTCTTTATCACTCAGAGTGCTGGACGTCTTTTGCGGGCACTTTTTGAGATTGTCTTGAAACGTGGCTGGGCGCAGTTGGCTGAGAAGGCTTTGAACTTGTGCAAAATGGTGACCAAGAGGATGTGGAGTGTCCAGACACCTCTGCGTCAGTTCAACGGAATTCCTAGTGATTTGTTAACGAAGTTGGAGAAGAAAGATTTGGCTTGGGAAAGGTATTATGACCTATCATCACAAGAGATAGGTGAACTCATTCGTGCACCGAAGATGGGAAGGACTCTTCATAAATTTATACATCAGTTTCCTAAACTGAACCTTGCAGCACATGTGCAGCCAATTACTCGCACAGTTTTGAGGGTTGAGCTGACGATAACTCCAGACTTTGCCTGGGATGACAGAATTCATGGATATGTTGAACCATTCTGGGTGATTGTTGAGGATAATGATGGAGAATATATTCTTCACCACGAATATTTTATGCTGAAAAAGCAGTATATTGATGAGGACCACACACTGAATTTCACTGTGCCGATATATGAGCCTCTTCCCCCTCAGTACTTTATCCGTGTTGTTTCAGATAGATGGCTTGGATCACAAACCGTTTTACCCGTTTCTTTCAGGCATCTAATCTTACCTGAGAAGTACCCTCCACCAACTGAACTACTGGATCTGCAACCACTTCCTGTGACTGCCTTGCGAAATCCATCATATGAATCTCTTTATAAGGATTTTAAGCATTTTAATCCTGTTCAGACACAAGTCTTCACAGTTCTGTATAATTCTGATGACAATGTCTTAGTTGCTGCTCCAACAGGGAGTGGTAAGACTATATGTGCAGAATTTGCTATTTTGAGGAATCATCAAAAATGGCCTGATAGTGTCATGCGTGTAGTTTATGTTGCGCCCATTGAATCTCTTGCCAAGGAGCGTTATCGTGATTGGGAGAAGAAATTTGGAGGTGGTCTTAAGTTGAGGGTGGTTGAATTGACTGGAGAAACTGCGACAGACTTGAAACTTCTTGAGAAGGGTCAGATTATTATTAGTACCCCTGAGAAATGGGATGCTTTATCTCGCCGCTGGAAACAGCGGAAACATGTTCAACAAGTTAGTCTTTTCATCATTGATGAGCTCCACTTGATTGGAGGTCAAGGTGGTCCTATTTTAGAGGTTGTAGTTTCCAGGATGAGATATATTGCTAGTCAGGTTGAAAACAAGATTCGTGTTGTGGCTTTGTCTACCTCTCTTGCAAATGCTAAAGATCTGGGCGAATGGATTGGAGCTACCTCCCATGGCCTTTTCAATTTCCCCCCTGGTGTTCGTCCTGTGCCTTTGGAAATTCACATTCAGGGTATAGATATTGCTAATTTTGAGGCAAGGATGCAGGCAATGACCAAGCCAACTTACACTGCAATTGTTCAACATGCCAAGAATGGAAAACCTGCCCTCGTATTTGTACCTACAAGGAAACATGTCCGACTGACAGCTGTGGATCTGATTACATACTCAGGTGCAGACAGTGGGGAGAAGCCATTTTTATTGCGGTCAGCAGAAGAGCTTGAACCTTTTCTTGACAAGATTACTGACGAAATGTTGAAAGTTACTTTACGTGAAGGAGTTGGATACTTGCATGAGGGCTTGAACAGTCTTGATCGTGACATTGTGACTCAGCTATTTGAAGCTGGCTGGATTCAAGTCTGTGTTTTAAACAGTTCCATGTGTTGGGGAGTGACATTGTCGGCTCATTTGGTAGTTGTGATGGGCACGCAATACTATGATGGGCGAGAGAATGCACAGACAGATTACCCCGTTACTGATCTTCTGCAGATGATGGGTCATGCCAGCCGTCCTTTGGTAGACAATTCTGGAAAATGTGTCATCTTGTGCCATGCTCCTCGTAAGGAGTACTACAAGAAGTTCTTATATGAAGCATTCCCGGTTGAAAGCCATCTTCATCACTTCTTGCATGATAACTTGAACGCTGAAATTGTTGCTGGAATTATTGAGAACAAGCAAGATGCTGTAGATTATCTTACATGGACATTCATGTACAGGCGGCTCACGCAGAATCCCAATTATTACAATTTACAAGGAGTTAGTCACAGACATCTTTCTGATCACCTCTCAGAGATGGTGGAAAATACTTTGAGTGATTTAGAAGCGGGCAAGTGCATTACGATTGAGGATGATATGGAGCTTGCTCCTCTCAATCTTGGAATGATAGCATCCTATTATTACATCAGCTACACAACAATTGAAAGGTTTTCATCATCTGTGACTTCAAAAACTAAAATGAAGGGTCTTTTGGAGATTCTGTCTTCAGCTTCAGAGTATGCTCAGCTTCCAATACGACCTGGAGAGGAAGAGGTCGTTCGTAAGTTAATTAATCACCAGAGGTTTTCCTTTGAAAACCCCAAGGTTACAGATCCACATGTTAAAACTAATGCTTTGCTTCAGGCCCATTTCTCTAGACAATTCGTAGGTGGGAACCTTGCATTGGACCAGAAGGAGGTGCTTCTTTCTGCAAATAGACTGCTTCAGGCAATGGTAGATGTGATATCCAGCAATGGTTGGCTGGGCCTGGCCCTTCTTGCTATGGAAGTTAGTCAAATGGTGACACAGGGAATGTGGGAACGTGACTCCATGCTGCTTCAACTACCTCATTTCACAAAGGATCTGGCTAAGAAATGCCAGGAGAACCCAGGGAAGAGTATAGAAACTGTGTTTGATTTATTAGAGATGGAAGATAATGAGAGGCAAGAATTGTTGGGCATGTCAGATTCACAGTTGTTGGATATTGCCCGATTTTGCAACCGGTTCCCTAATATTGATTTGTCATATGAGGTGCTGGACAGTGACAATGTTCGGGCTGGGGAGGTTGTCACTGTGCTGGTCACTCTTGAGCGGGATCTTGAGGGAAGGACAGAAGTAGGACCTGTTGATGCTCCCAGGTATCCAAAAGCCAAGGAAGAAGGGTGGTGGCTCATTGTTGGTGATACCAAAACCAATCTGTTGCTTGCCATTAAACGGGTTTCCCTGCAGCGGAGGTTAAAAGCCAAACTGGAATTTGATGCTCCTGCTGATGCTGGAAGGAAATCCTATTCGCTTTATTTCATGTGTGATTCATACCTGGGTTGTGATCAGGAGTATGGTTTCACAATTGATGTTAATGCTGATGGTGGTGATCAAGATAGCGGCAGAGAATGA
Predicted protein sequences of Glyma15g40460
Show Sequence BLAST Sequence at SoyBase BLAST Sequence against GenBank NR Limit To All Plant Sequences
>Glyma15g40460.2 sequence type=predicted peptide gene model=Glyma15g40460 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MAHLGGGAEAHARFKQYEYRANSSLVLTTDSRPRDTHEPTGEPESLWGKIDPKSFGDRAYRGRPPELDEKLEKAKNKKKKKDRDAAADDAAAVPSKRRRVQHDSVLSASDDGVYQPKTKETRAAYEAMLSVIQNQLGGQPLSIVSAAADEILAVLKNDVVKNPDKKKDIEKLLNPIPGHVFDQLVSIGKLITDFQEAVDVPNGSSAMDGEEGLDDDVGVAVEFEENEDDDEESDLDIVQDEEEEDEDVTEPNSSGAMQMGGIDDEDMEEGNEGMGLNVQDIDAYWLQRKISQAFEQQIDPQHCQKLAEEVLKILAEGDDREVENKLLFHLEFDKFSLIKFLLRNRLKIVWCTRLARAQDQEERERIEEEMKGTELQPILEQLHATRASAKERQKNLEKSIREEARRLKDDTGGDGDKESRDRSRRVVADRDGESGWLKGQRQMLDLDSIAFAQGGFFMAKKKCDLPDGSYRHLSKGYEEIHVPALKAKPLDPNEKLVKISSMPDWAQPAFKGMTQLNRVQSKVYETALFQPDNLLLCAPTGAGKTNVAVLTILQQIARHRNPKDGSIDHSAYKIVYVAPMKALVAEVVGNLSNRLQDYDVKVRELSGDQSLTRQQIEETQIIVTTPEKWDIITRKSGDRTYTQLVKLLIIDEIHLLHDNRGPVLESIVARTVRQIETTKDYIRLVGLSATLPNYEDVALFLRVDLKKGLFYFDNSYRPVPLSQQYVGITVKKPLQRFQLMNDICYEKVMAVAGKHQVLIFVHSRKETAKTARAIRDTALANDTLGRFLKEDSASREILHTHTDLVKSNDLKDLLPYGFAIHHAGMTRTDRQLVEDLFADGHVQVLVSTATLAWGVNLPAHTVIIKGTQIYNPEKGAWTELSPLDVMQMLGRAGRPQYDSYGEGIIVTGHSELQYYLSLMNQQLPIESQFVSKLADQLNAEIVLGTVQNAREACNWIGYTYLYVRMLRNPSLYGIAPDVLTRDITLEERRADLIHTAATILDRNNLVKYDRKSGYFQVTDLGRIASYYYITHGSISTYNEHLKPTMGDIELCRLFSLSEEFKYVTVRQDEKMELAKLLDRVPIPIKESLEEPSAKINVLLQAYISQLKLEGLSLTSDMVFITQSAGRLLRALFEIVLKRGWAQLAEKALNLCKMVTKRMWSVQTPLRQFNGIPSDLLTKLEKKDLAWERYYDLSSQEIGELIRAPKMGRTLHKFIHQFPKLNLAAHVQPITRTVLRVELTITPDFAWDDRIHGYVEPFWVIVEDNDGEYILHHEYFMLKKQYIDEDHTLNFTVPIYEPLPPQYFIRVVSDRWLGSQTVLPVSFRHLILPEKYPPPTELLDLQPLPVTALRNPSYESLYKDFKHFNPVQTQVFTVLYNSDDNVLVAAPTGSGKTICAEFAILRNHQKWPDSVMRVVYVAPIESLAKERYRDWEKKFGGGLKLRVVELTGETATDLKLLEKGQIIISTPEKWDALSRRWKQRKHVQQVSLFIIDELHLIGGQGGPILEVVVSRMRYIASQVENKIRVVALSTSLANAKDLGEWIGATSHGLFNFPPGVRPVPLEIHIQGIDIANFEARMQAMTKPTYTAIVQHAKNGKPALVFVPTRKHVRLTAVDLITYSGADSGEKPFLLRSAEELEPFLDKITDEMLKVTLREGVGYLHEGLNSLDRDIVTQLFEAGWIQVCVLNSSMCWGVTLSAHLVVVMGTQYYDGRENAQTDYPVTDLLQMMGHASRPLVDNSGKCVILCHAPRKEYYKKFLYEAFPVESHLHHFLHDNLNAEIVAGIIENKQDAVDYLTWTFMYRRLTQNPNYYNLQGVSHRHLSDHLSEMVENTLSDLEAGKCITIEDDMELAPLNLGMIASYYYISYTTIERFSSSVTSKTKMKGLLEILSSASEYAQLPIRPGEEEVVRKLINHQRFSFENPKVTDPHVKTNALLQAHFSRQFVGGNLALDQKEVLLSANRLLQAMVDVISSNGWLGLALLAMEVSQMVTQGMWERDSMLLQLPHFTKDLAKKCQENPGKSIETVFDLLEMEDNERQELLGMSDSQLLDIARFCNRFPNIDLSYEVLDSDNVRAGEVVTVLVTLERDLEGRTEVGPVDAPRYPKAKEEGWWLIVGDTKTNLLLAIKRVSLQRRLKAKLEFDAPADAGRKSYSLYFMCDSYLGCDQEYGFTIDVNADGGDQDSGRE*
>Glyma15g40460.3 sequence type=predicted peptide gene model=Glyma15g40460 sequence assembly version=Glyma 1.0 annotation version=1.1 JGI Gene Call confidence=high
MAHLGGGAEAHARFKQYEYRANSSLVLTTDSRPRDTHEPTGEPESLWGKIDPKSFGDRAYRGRPPELDEKLEKAKNKKKKKDRDAAADDAAAVPSKRRRVQHDSVLSASDDGVYQPKTKETRAAYEAMLSVIQNQLGGQPLSIVSAAADEILAVLKNDVVKNPDKKKDIEKLLNPIPGHVFDQLVSIGKLITDFQEAVDVPNGSSAMDGEEGLDDDVGVAVEFEENEDDDEESDLDIVQDEEEEDEDVTEPNSSGAMQMGGIDDEDMEEGNEGMGLNVQDIDAYWLQRKISQAFEQQIDPQHCQKLAEEVLKILAEGDDREVENKLLFHLEFDKFSLIKFLLRNRLKIVWCTRLARAQDQEERERIEEEMKGTELQPILEQLHATRASAKERQKNLEKSIREEARRLKDDTGGDGDKESRDRSRRVVADRDGESGWLKGQRQMLDLDSIAFAQGGFFMAKKKCDLPDGSYRHLSKGYEEIHVPALKAKPLDPNEKLVKISSMPDWAQPAFKGMTQLNRVQSKVYETALFQPDNLLLCAPTGAGKTNVAVLTILQQIARHRNPKDGSIDHSAYKIVYVAPMKALVAEVVGNLSNRLQDYDVKVRELSGDQSLTRQQIEETQIIVTTPEKWDIITRKSGDRTYTQLVKLLIIDEIHLLHDNRGPVLESIVARTVRQIETTKDYIRLVGLSATLPNYEDVALFLRVDLKKGLFYFDNSYRPVPLSQQYVGITVKKPLQRFQLMNDICYEKVMAVAGKHQVLIFVHSRKETAKTARAIRDTALANDTLGRFLKEDSASREILHTHTDLVKSNDLKDLLPYGFAIHHAGMTRTDRQLVEDLFADGHVQVLVSTATLAWGVNLPAHTVIIKGTQIYNPEKGAWTELSPLDVMQMLGRAGRPQYDSYGEGIIVTGHSELQYYLSLMNQQLPIESQFVSKLADQLNAEIVLGTVQNAREACNWIGYTYLYVRMLRNPSLYGIAPDVLTRDITLEERRADLIHTAATILDRNNLVKYDRKSGYFQVTDLGRIASYYYITHGSISTYNEHLKPTMGDIELCRLFSLSEEFKYVTVRQDEKMELAKLLDRVPIPIKESLEEPSAKINVLLQAYISQLKLEGLSLTSDMVFITQSAGRLLRALFEIVLKRGWAQLAEKALNLCKMVTKRMWSVQTPLRQFNGIPSDLLTKLEKKDLAWERYYDLSSQEIGELIRAPKMGRTLHKFIHQFPKLNLAAHVQPITRTVLRVELTITPDFAWDDRIHGYVEPFWVIVEDNDGEYILHHEYFMLKKQYIDEDHTLNFTVPIYEPLPPQYFIRVVSDRWLGSQTVLPVSFRHLILPEKYPPPTELLDLQPLPVTALRNPSYESLYKDFKHFNPVQTQVFTVLYNSDDNVLVAAPTGSGKTICAEFAILRNHQKWPDSVMRVVYVAPIESLAKERYRDWEKKFGGGLKLRVVELTGETATDLKLLEKGQIIISTPEKWDALSRRWKQRKHVQQVSLFIIDELHLIGGQGGPILEVVVSRMRYIASQVENKIRVVALSTSLANAKDLGEWIGATSHGLFNFPPGVRPVPLEIHIQGIDIANFEARMQAMTKPTYTAIVQHAKNGKPALVFVPTRKHVRLTAVDLITYSGADSGEKPFLLRSAEELEPFLDKITDEMLKVTLREGVGYLHEGLNSLDRDIVTQLFEAGWIQVCVLNSSMCWGVTLSAHLVVVMGTQYYDGRENAQTDYPVTDLLQMMGHASRPLVDNSGKCVILCHAPRKEYYKKFLYEAFPVESHLHHFLHDNLNAEIVAGIIENKQDAVDYLTWTFMYRRLTQNPNYYNLQGVSHRHLSDHLSEMVENTLSDLEAGKCITIEDDMELAPLNLGMIASYYYISYTTIERFSSSVTSKTKMKGLLEILSSASEYAQLPIRPGEEEVVRKLINHQRFSFENPKVTDPHVKTNALLQAHFSRQFVGGNLALDQKEVLLSANRLLQAMVDVISSNGWLGLALLAMEVSQMVTQGMWERDSMLLQLPHFTKDLAKKCQENPGKSIETVFDLLEMEDNERQELLGMSDSQLLDIARFCNRFPNIDLSYEVLDSDNVRAGEVVTVLVTLERDLEGRTEVGPVDAPRYPKAKEEGWWLIVGDTKTNLLLAIKRVSLQRRLKAKLEFDAPADAGRKSYSLYFMCDSYLGCDQEYGFTIDVNADGGDQDSGRE*