SoyBase SoyBase transitions to NEW site on 10/1/2024
Integrating Genetics and Genomics to Advance Soybean Research



Report for Sequence Feature Glyma02g15340

Feature Type:gene_model
Chromosome:Gm02
Start:13835717
stop:13851085
Source:JGI
Version:Wm82.a1.v1.1
High confidence:yes



A newer version of this gene model can be found here:

Database IDAnnotation TypeAnnotation DescriptionAnnotation SourceMatch ScoreEvidence Code
AT3G19050AT Annotation by Michelle Graham. TAIR10: phragmoplast orienting kinesin 2 | chr3:6578047-6590106 FORWARD LENGTH=2771 SoyBaseE_val: 0ISS
GO:0000910GO-bp Annotation by Michelle Graham. GO Biological Process: cytokinesis SoyBaseN/AISS
GO:0007018GO-bp Annotation by Michelle Graham. GO Biological Process: microtubule-based movement SoyBaseN/AISS
GO:0005737GO-cc Annotation by Michelle Graham. GO Cellular Compartment: cytoplasm SoyBaseN/AISS
GO:0003777GO-mf Annotation by Michelle Graham. GO Molecular Function: microtubule motor activity SoyBaseN/AISS
GO:0005524GO-mf Annotation by Michelle Graham. GO Molecular Function: ATP binding SoyBaseN/AISS
KOG4280 KOG Kinesin-like protein JGI ISS
PTHR24115Panther FAMILY NOT NAMED JGI ISS
PTHR24115:SF82Panther SUBFAMILY NOT NAMED JGI ISS
PF00225PFAM Kinesin motor domain JGI ISS
UniRef100_G7JMI4UniRef Annotation by Michelle Graham. Most informative UniRef hit: Kinesin-like protein KIF15 n=1 Tax=Medicago truncatula RepID=G7JMI4_MEDTR SoyBaseE_val: 0ISS
UniRef100_UPI0002336C2EUniRef Annotation by Michelle Graham. Best UniRef hit: UPI0002336C2E related cluster n=1 Tax=unknown RepID=UPI0002336C2E SoyBaseE_val: 0ISS

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
Libault et al. 2010, Plant Phys 152(2):541-552.
Complete Transcriptome of the Soybean Root Hair Cell, a Single-Cell Model, and Its Alteration in Response to Bradyrhizobium japonicum Infection
Severin et al. 2010, BMC Plant Biology 10:160
RNA-Seq Atlas of Glycine max: A guide to the soybean transcriptome

To see more experiments click HERE

ParalogEvidenceComments
Glyma07g33111 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.

Corresponding NameAnnotation VersionEvidenceComments
Glyma.02g135700 Wm82.a2.v1IGC As supplied by JGI

Schmutz et al. 2010
  Genome sequence of the palaeopolyploid soybean
  Nature 2010, 463:178-183

>Glyma02g15340.2   sequence type=transcript   gene model=Glyma02g15340   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
TTTCAAATCAAAAACTCCTCACAAGCAACAACAAGAGAGCGAGAGTGAGAGAGTGAGTGTGTGAGTGAATGAATAACTTTGGATCTCTGTTGAAATTGAACGTTCCAGTTCAATCTCAAATCCCTAACTCAGATTGAAGCAACGCAACAAAAACCAAAGTAAAATTCACCACTCTTCAAATTCGTCGGTTCGGAATCTTGTTCTGCAACGACTCCTTCAGAATGCTGAGGGATTTCAAGCTCCCGCGCCGAAACCCTAGCAAGCACGAAGAACCTGAGAATGTAGATCCTTATGATTCATCCACCACAGTTCAGAGGCACGCGGAAAGTTCTAGACCTCCGTTGAACACAATTCAAGGGCCCGATGCGCATTGTGAAAGCAAGATTGAGAAGACTCCTTCGAAGAGAGGAAGAGGAGGAGCTGAGCTTCGCACGCCGGATAAGCACGGCGGAGGGAGCATGATTGTGAAGCACCGGTTTGGTTGGAATCACAAGCACGACGGAGGAGTTTCGTCGTTCGGTGATGATAGGAGAGCATCTGGTGTTGGGAATGTGACTCCTCGCGTGCCTCGCACTGTGGGGAGAGCTTCTTCGAGTGTTACTGCCTATTCTGAGAGCAACTCCACGCAGAGCACTCCGACTAAGAGTGTGACAAAGCCACCTCCTGGCTCGAGCGTTCGGAGCAAGGCGGATGGAGGAGGCTTCAGTGCTCGCTTGGGGAACTATGCTGCATTATATAAAGGGGTTCCCAGTTCGGCTTGCTCCACCCCCACGGTTGTTAACACGGTCGAAGTGCCTCACTTTGATCTCAAGGAAGATTCTTCGTTTTGGATTAACCACAATGTACAGGTTATTATTCGTGTTCGTCCTCTCAATAGCATGGAGCGGTGTACACAAGGGTATAACAGATGCCTGAAGCAAGAAGGCTCTCAGAGCATTACTTGGATTGGGCAACCGGAGAACCGGTTCAACTTTGACCATGTTGCATGTGAAACCATAGACCAGGAAATGATTTTCAGATTGGCTGGTCTTCCAATGGTAGAGAACTGCCTTTCAGGGTATAATAGCTGCATGTTTGCATACGGACAGACTGGAAGCGGGAAAACATATACAATGCTTGGTGACATTGAAGATTTAGATGTGATGCCTAGTCCTCATCGTGGAATGACACCGCGTATATTTGAGTTTTTGTTTGCCCGGATCCAAGCTGAAGAGGAAAGCCGAAGAGATGAGAGCTTAAAATACAACTGCAAGTGTTCCTTCTTGGAGATTTACAATGAACAAATTACAGATCTACTTGATCCCTCCTCTACTAATTTGCTACTGCGTGAGGATGTCAAGAAGGGTGTTTACGTTGAAAATTTATCTGAGTTCGAGGTTCAAAGTGTGAGTGACATTATAAGGCTTCTAATTCAGGGTTCTGCTAATAGAAAAGTTGCAGCAACAAATATGAATAGAGAGAGCAGTAGGTCCCATAGTGTTTTTACATGTGTAATTGAGAGCACATGGGAAAAGGATTCTACAACTAATTATCGTTTTGCAAGGTTAAACCTGGTTGATCTGGCTGGCTCAGAAAGACAGAAGACTTCTGGTGCTGAGGGGGAGCGTTTAAAAGAAGCAGCTAACATCAATAAATCATTATCTACCTTGGGTCATGTTATTATGATACTAGTGGATGTGGCAAATGGGAAGCAGAGGCATATCCCTTACAGAGACTCTAGACTAACTTTTCTTCTTCAGGACTCTCTTGGCGGAAACTCGAAAACAATGATCATTGCCAATGTCAGCCCTTCTATCTGCTGCGCTGCTGAAACATTGAATACACTTAAATTTGCTCAGAGAGCAAAACTTATTCAAAATAATGCTGTGGTGAACGAAGATTCTACTGGGGATGTAATTGCTTTACAACATCAAATTCGACTTTTGAAGGAAGAGCTTTCTATCCTCAAACGACGTCAGAATGTCTCTAGGTCTTTGTCATTTTCTTTGTCATCGATCAGAGATATAAAACAATCACTAGAACTAGAAGACTGTTGCCTAGAAAATGCAACTGACATGGTTGACCAACATGAAGATAACATGCCGGATTATGAATCCAAGGGCATCAGAATGTCCCACAAACAGTTGCATTCATTGGAGACAACTCTTGCGGGTGCTTTGAGAAGGGAACAAATGGCAGAAATTTCTATTAAGCAACTAGAAGCTGAAATTGAACAATTAAATCGTTTGGTTCGTCAAAGAGAGGAGGACACTAGGAGTTGCAAAATGATGCTTAGGTTTCGCGAAGACAAAATTCATAGATTGGAGTCCCAACTTGCTGGTTCGATTCCTACGGACACATTTTTGCAGGAAGAGAATAAAGCACTTTCTGATGAGATTCAAATACTTCAGAGCAGACTTGACCGAAATCCTGAAGTCACTCGGTTTGCTGTAGAGAATATCAGGCTTCTAGACCAACTTAGAAGATATCAAGAGTTTTATGAAGAAGGGGAGAGAGAGATTTTATTGACTGAAGTGTCTTCTTTGAGGGATCAGTTGCTTCAATATCATGGAAGAAACTCCATGCAGGGTAATTCAAATCATGATATTCAACCTCAGAAAGCTCAGTGCTGCAATAAAGAAAATAACCTTGTTGATCTAGAGCTAAGAAACACCCTCGATGAGTTACAGGAATGCAGGCGCAATTTAAATTATTGCTTAGAGGAGAATGCAAAACTCAATAGGGAAGTAGACTCTCTTCACTCAATGTTAAGCAGCACAAATAGTACAAAGGTTTCTACCAAAGGACCATTTATTGAAGCTCAGGCAGTTCCAAGGATGGGGGTCAAGCATGAAACTCATCTGTCACAACACACAGATGATATTTTAAATCTGCAGTTGGAATTAGATATAATAAATGTCATTCTGAAGGAAGAGAGGTCTTTCCGTGGCATATTGGAAGAGCAAAAAATATGCTTAAATAAGGATTTTATGATGGCAAAAGACAAGCTTGAGCAAACAAGCAAACAATTAGAAGATGCAAAGGACGAGCTTGGAGAGGCAAAATCTGTCATTGAAGCCTTAGAATTGCAGCAAATATTATCTATCAAAGAGATAGAAGAGATGAGGAACAAGAACAGCCATTTTATGGAGCTTATGGGGAAACAAGAGCATGAAATCATGACCTTGAAGAACCAACTTGCATCTAAAGAGTTCAGAGATAATTTGCTTTCAAATAATCCAGAGTTTGAAAACAAGTCCCCCTTACAGGTAAAACTCAGAAGGATGCATGATTCTCTTGAAAAAGCGAAGCAACTGAACATGTCGTACCAAAGTGATCATGCATTCCAGATATCCAATGAGGAAGAGAGGGATGAAATCCGTCGGCAGGCCGAGGCTGAAACTGTTGAGGTAATTGTCTGTATGCAAGAAGAACTTGCCCAGCTCCAGCATCAAGTAAATGATAGTCATTTGAAGGAAACAGAAATGGAAGAGAGTATGCTGCATCTGGAAACTGAATTGAAGGAGTTGCAGAAAAAAATGCTTACTACTATTGATGATAATAGAAGTTTAAAGGAGGAGCTTGGCCAAAAAGATATAGAACTCACATCACTGGCAGAAGAATGGGAACTGTTAACCTCTGAGATTGAAGAGGTTCTTCTTGATGGATGTGAGGCAATAGTTGATGCCTCTGAAGAACTTGGGAATATAAGGAATTCATTTCCACAGAAAAGGATCTGGATTTCTGAACAAGTTGGCATGATAGTTAGAAAAATTTCTGAGAATGAATTATTAATTGATGAACTTAGAAGATGTTTGGAAGATGCAAGCAATAAAAGAAGTGATATGGAGTGTATGCTGAAGTCCTTAAGAAGTGCAGCGTTAGTCATTACTGAATCCCACCAGAAGGAGTGTGCTGAAAATGAAAAAGAAATTCTCCTATTGACCTCACAATTGAGTGAAAAAACATCTACTGTGGCACAACTGAAGGAGCATTTGGTAATGGCAGAAGATCATATCAGAAAAGCATCAAATTGTTCAACAGTGGCTTTTGTAGTTGTGAATAGATTGTCAGAAGTGAATCTTGGTTACCTGGATGATCTAAAGCATAAGGATATTCTGCTTAGTGAATTAGCAGAAACTAATAATAGGAAGGATGTCCTTCTCAGTGACCAATCCACTTCATTTGTTCAAGCAGAGAGACAGATAACAGAGTTGCAGGAAAGATGTAATGATTTATGGCAGAAGCTGTCTGAGGAGCAAGAGCATTCTCGTGCTTTGGAACAAAAGCTTGAAGATATTGAAAAGAATGCCATTTCAAAGACAAGGGAGCAGCTAGTGACATTACAAGATGGTGTCTCTTCAATCAGATCATGCATGGCCTCTTTTGCAGACCATCCAGGAAGTCTTGATAATAGAAATTCATTGGATGCATGCACATCAGACTATGATGATATTGGTGAACAAAGGCATACAAGTTCGGAAACACATCAAAACAGTGATTCAGATCCGCTTTCTGTTGAAGAACATATAGTTGACCTGACTGACTTACAGTTGGTCAAAAGTGGATATGATACGAAAGACCTGAAATCAAGAAAAGTTGGCAAGAATGTGCTTGAAAGAGATGCTACTATTAGGCTTTTGAGAAAAGAAATCGAATGTGCTCTTGAAAGCTTAAAAGAAGTGCAATATGAGATGGCCAGATTACATGAAGAAAAAAAAGAGATGTCCGTGTCTGAAAAGAAGAGTCGGCAAAGCATAGAGTGCCTCACAAATCAGATACTTTTCCTGCAAGAAGCTATGTATCACTTTGAGGAGAAATCTAAAGTCAAGATTGATGTACTCAGTCACAAACTTAGAGGCCTGGAGAAACCTCTGAAAGAAGCCAGCTCCCATTGGTACCAAAGGAAAGAGACACTTGAACTTGAAGTTGGAGAGGCAAAGATCATTCAAGCTCAGAAAGCCCAAGAGGCATCTTGTATTCTTGCTAAATTTGAAGAAGCACAAGATACAATGAGAGAAGCAGATATTATGATCAATGGATTGGTGATAGCTAATGAGTCAATGAAGATAGATATAGAAAGACTGAAAGACAGAGAAATGACTTTACTCAATGAGAAGGGTACATTAGTCAGCAATATTGAAAGCTTACAAACTGTTGTTGATTTGAAGCATCAGGAGATAGAGAACCTTGTTGAATCAAGTCTAGTAGAAACAAGGGATCTAATTGTTACGTTGGATGATGTCATTAAAGACGTCCAATTGACGATGGCAGAAAATTTCAAGTCTTTAGCTTGTGATTTAGAGTGCTTGAAGTCTCAATGTTTATATTCCACTAAATTGATACAGCCATGGCTTGAGAAGATATGGTCTGAGATAGTTTTTAAAGATTGTGCTATGTCTGTGCTACATCTCTGTCACATGGGTATTTTACTGGAAACAGTAACAGGGATGCATGCAGAAAATGGTTTGCTTTCACACGGCTTGTGTGAATCGAACTCTGTCATAAGTGATTTGAAGGAACATAATTATAGGACAAAGCAAGAGCTTGATATGTGCAGAATCTTGAAAGGGAAACTGCTGGCTGACATCAAGAACAGTTTTGATCGTATTAATAAGAAAGAAGTTGAAGCTGGAGAAATCACCATCAAGCTAAATAATTTTGCTAAAAGCATATCAGACCTACAACTTCAGGAGGAGATGATGCTGCAAAGGTCGAATGAAATGGGATCCCAACTTGCTAAACTGATGAGGGAATTGGATGTGAGTAATACAGATATTGTGACATCCCTTTTAGATCAAGAGAAACTACTGAAACAGAAAGTAGTGGCCATTGAATGTGAGGCCGAATTTTTTATGGCAGATTGGTATGCCAAAGACTTTGAATCACTTATCCATGCATCTGAATTGAAAAATATGTCATGTAATATAGCTAATATGGAGGAGCATTTTGTCAAGTACTCCATATTAATTGAGCAACTGAAGAAAGAAACAATCTTTTCCCAAGTAGAAACTGAGTTTGCAAAACAAATTTTGATGGATAAGGAAGTTGAAGTTTCCCTATTAGAAAGAGAAGTTCAGCAGGGAAAAGTGGAAAGGAAGGACCTAGTAACAGAATTAAACCGGAATGTCTTAAGGATTACAGAGATGGGTGAAGTAAACAAGGTCCTTGAACAAAATATTGAGTTTCTAAAGGATGTTACTTGTTCTAATCATGCATTGAAGGGTGAACTTGTTGAAGCTAACAAGGCAAAGAAAAGACTGCTGGATAGGATTCTTGATCTAGAAGCTGATTATGATAAAGTAATTGGTGATGTCATTGGGAAGGATGTGGCTTCTGAATTTTCTTTCCAACAGGTTTATTTTCTTGAACATCAAAACACAGAGTTAAAGAAAGTAAACTATATGTTGGAAAATTCATCTTGCAGACTAAAGAATGAGCTGAACCTAAAGGATTCGGACTTAACCAGAATGCAGAACTTACTGGAGGTTGAGTTATCCAGAAAGGATGATGTAGTAAAAGGACTGTTGTATGATCTGAGCTTACTACAGGAATCTGCCTCAAACAATAAAGACCAAAAAGATGAAGTTGAAAAAATTGTGGCTACAATGGAGGCATTAGAAGTGGAGCTAGCTGTTAAATCAGGTGAACTTGCTGATGTTGTTGCAAACTGTCAATTGCTTGAAGCTCAGTTGCAGGACAAATCAGACATAATTAGAGCTCTTGAGTTGGATCTCTCAAAAGAACGTGAGGCTCTAGTGTTGCAAGTCAGTGAAAATCAAGAACTTAGAACTCATATTGAAGGCGCCTTGACAGCGAGAAAACTGGCTGACAATGAGCTAACAGAAAGAATGAAGATAACAGAGAGCTTAGAAGATGAAATCCTGGAAATGAACAGTGTTTTTAGCCAAATGAATGATTCATTTAAAAATCTGAGTAGTGATCTGGATGATGTCACTAATGAGAGGGATCAGCTTCAGGGTCAAGTAATTTGCCTCAAAAACAGGCTTGAAAAAGCTGAAGCACAAGCTGAAGCTAATGAAGCAATTGTTCAAGAAGCTCAGAAGGTGGCAGAATCGAGAAAAATTTATGCTGAAGACAGGGAAGAAGAGGTGAAACTTCTAGCGAGATCAGTTGAAGAGCTGGAAAGTACTGTAAATGTACTAGAAAACCAAGTTGACATCCTTAAAGGAGAAGCAGAACGACAGAGGCTACAACGAGAAGATCTAGAGTTGGAGCTACATGCATTAAAAGATCAGATGCAAAATGTCAGAAATGTCGATGGTGACATGAGAAGATTTTTGGATGAAAAAGAGAAAAGCCTCAATGAAGCCCTAAATCACATACAGGTTCTTAAGAGGGAGTTAGCAGGAAAGGATGCAGAGATTCGACAAATAAAAGCTCATATTTCAGAGCTAAATTTGCATGCTGAAGCACAGGCCATGGAGTACAAGCAGAAATTCAAAGCATTGGAAGCCATGGCTGAGCAAGTCAAACCGGAGGGCCTTTCTAGTCATTCCACCAGTGCTAATTCCCACAATGCATTGTCAAACAAGTCTGAGAAGAATGCCACCAAGTCTCGAGGTTCTAGTTCTCCTTTCAAATGCATTGGGTTGGGCTTGGCACAACAGGTAAAATATGAGAAGGTTGAAGAGCTGTCTGCTGCAAGACTGCGCATTGAAGAACTAGAAGCCCAGGCAGCATGTCGACAGAGAGAGATATTTGCACTGAATGCCAAATTAGCATCTGCTGAGAGCATGACACATGATGTAATTCGAGACTTACTTGGAGTGAAGTTGGATATGACCTCTTATGCGTCACTAATTGATGATGAACAAGCGGAGAAGATTACAGAGAAAGTTAAATTTCTTACTCTGGAGTCTCAAGACAAGGAGGTTATTAAGCTAAAGAAGCAGCTGAATGAATTCATTGAAGAGAGACAAGGATGGCTACAAGAAATGGATAGGAAACAATCAGAGTTGGTAGCTGTCCAAATTGCATTGGAAAACCTTCGGCAGCGAGATCAGTTACTAAAAACAGAAAATGAAATGCTGAAGATTGAAAATGCAAGTAAGAAGAATAAAGTAGTGGAACTGGAGGAAGAAATTAAAAAGTTGTCTGGTCAGCAAAACCTTCAGCAGCGTATTCATCACCATGCTAAAATTAAGGAGGAAAATAACAAGTTAAAGATACAGAACGAAGAACTCAGTGCAAAGCTCCGGAAGTCAGACATCTTCCATTCGCGTGTCAAAGAAGACCTTGCACGTCTTCGTGCTTCTACTGGCGCAAAAAAAAGCATTAATTTGGATGAGGAACAACGTCTGATGATAAAGCTGAAGGTCAGTTACCAAAGAAGTAATGTGATGTGTTGTACTTTGAAGTAGCTAAATATGACGTAAATTTTACATACATGAGTGAATAATGCCACAGGAGATCGAGGAAGAGAAAGTACAACTAGCCCAGCAATTACTGAGATTGTCCACTAATGTTCTAAAGGTGGCTGGAATAGCAAGACCAACATCAGATGTAAATCCTTCTATGGCTGAGGAAGCCCTACAGGACCTCAAGAATAGGATAACTACCCTGGAAATGGAACAAGAAGATTTGAAGTTTAAGAATAAAATTATTAAGGAAAAGATTCGATTATCCGAGCTCATGCCACAAGCTTCTCCTTTGAACCCGAGATCTGAGGAGAATCGTTTAACTCCACCAAGGGTTTCCCTGGCTCCATTCCTTTCCAGTTTTGATCGATAGTGAAGCGTGCTATTGTATTTTGTCGTGTTTAGCCATTCATGTTATATTCTTTAATTAAGCTGTAAATAACATGTATGTAGTCTACGTTGTAAATAATCTTTATGCACAATTTTCGGAAAGCTATTTAAAGAGAAATTATTTTGCGAGATATTCAGTATAATTGATGATGTATACTTCATTTATTT

>Glyma02g15340.1   sequence type=CDS   gene model=Glyma02g15340   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
ATGCTGAGGGATTTCAAGCTCCCGCGCCGAAACCCTAGCAAGCACGAAGAACCTGAGAATGTAGATCCTTATGATTCATCCACCACAGTTCAGAGGCACGCGGAAAGTTCTAGACCTCCGTTGAACACAATTCAAGGGCCCGATGCGCATTGTGAAAGCAAGATTGAGAAGACTCCTTCGAAGAGAGGAAGAGGAGGAGCTGAGCTTCGCACGCCGGATAAGCACGGCGGAGGGAGCATGATTGTGAAGCACCGGTTTGGTTGGAATCACAAGCACGACGGAGGAGTTTCGTCGTTCGGTGATGATAGGAGAGCATCTGGTGTTGGGAATGTGACTCCTCGCGTGCCTCGCACTGTGGGGAGAGCTTCTTCGAGTGTTACTGCCTATTCTGAGAGCAACTCCACGCAGAGCACTCCGACTAAGAGTGTGACAAAGCCACCTCCTGGCTCGAGCGTTCGGAGCAAGGCGGATGGAGGAGGCTTCAGTGCTCGCTTGGGGAACTATGCTGCATTATATAAAGGGGTTCCCAGTTCGGCTTGCTCCACCCCCACGGTTGTTAACACGGTCGAAGTGCCTCACTTTGATCTCAAGGAAGATTCTTCGTTTTGGATTAACCACAATGTACAGGTTATTATTCGTGTTCGTCCTCTCAATAGCATGGAGCGGTGTACACAAGGGTATAACAGATGCCTGAAGCAAGAAGGCTCTCAGAGCATTACTTGGATTGGGCAACCGGAGAACCGGTTCAACTTTGACCATGTTGCATGTGAAACCATAGACCAGGAAATGATTTTCAGATTGGCTGGTCTTCCAATGGTAGAGAACTGCCTTTCAGGGTATAATAGCTGCATGTTTGCATACGGACAGACTGGAAGCGGGAAAACATATACAATGCTTGGTGACATTGAAGATTTAGATGTGATGCCTAGTCCTCATCGTGGAATGACACCGCGTATATTTGAGTTTTTGTTTGCCCGGATCCAAGCTGAAGAGGAAAGCCGAAGAGATGAGAGCTTAAAATACAACTGCAAGTGTTCCTTCTTGGAGATTTACAATGAACAAATTACAGATCTACTTGATCCCTCCTCTACTAATTTGCTACTGCGTGAGGATGTCAAGAAGGGTGTTTACGTTGAAAATTTATCTGAGTTCGAGGTTCAAAGTGTGAGTGACATTATAAGGCTTCTAATTCAGGGTTCTGCTAATAGAAAAGTTGCAGCAACAAATATGAATAGAGAGAGCAGTAGGTCCCATAGTGTTTTTACATGTGTAATTGAGAGCACATGGGAAAAGGATTCTACAACTAATTATCGTTTTGCAAGGTTAAACCTGGTTGATCTGGCTGGCTCAGAAAGACAGAAGACTTCTGGTGCTGAGGGGGAGCGTTTAAAAGAAGCAGCTAACATCAATAAATCATTATCTACCTTGGGTCATGTTATTATGATACTAGTGGATGTGGCAAATGGGAAGCAGAGGCATATCCCTTACAGAGACTCTAGACTAACTTTTCTTCTTCAGGACTCTCTTGGCGGAAACTCGAAAACAATGATCATTGCCAATGTCAGCCCTTCTATCTGCTGCGCTGCTGAAACATTGAATACACTTAAATTTGCTCAGAGAGCAAAACTTATTCAAAATAATGCTGTGGTGAACGAAGATTCTACTGGGGATGTAATTGCTTTACAACATCAAATTCGACTTTTGAAGGAAGAGCTTTCTATCCTCAAACGACGTCAGAATGTCTCTAGGTCTTTGTCATTTTCTTTGTCATCGATCAGAGATATAAAACAATCACTAGAACTAGAAGACTGTTGCCTAGAAAATGCAACTGACATGGTTGACCAACATGAAGATAACATGCCGGATTATGAATCCAAGGGCATCAGAATGTCCCACAAACAGTTGCATTCATTGGAGACAACTCTTGCGGGTGCTTTGAGAAGGGAACAAATGGCAGAAATTTCTATTAAGCAACTAGAAGCTGAAATTGAACAATTAAATCGTTTGGTTCGTCAAAGAGAGGAGGACACTAGGAGTTGCAAAATGATGCTTAGGTTTCGCGAAGACAAAATTCATAGATTGGAGTCCCAACTTGCTGGTTCGATTCCTACGGACACATTTTTGCAGGAAGAGAATAAAGCACTTTCTGATGAGATTCAAATACTTCAGAGCAGACTTGACCGAAATCCTGAAGTCACTCGGTTTGCTGTAGAGAATATCAGGCTTCTAGACCAACTTAGAAGATATCAAGAGTTTTATGAAGAAGGGGAGAGAGAGATTTTATTGACTGAAGTGTCTTCTTTGAGGGATCAGTTGCTTCAATATCATGGAAGAAACTCCATGCAGGGTAATTCAAATCATGATATTCAACCTCAGAAAGCTCAGTGCTGCAATAAAGAAAATAACCTTGTTGATCTAGAGCTAAGAAACACCCTCGATGAGTTACAGGAATGCAGGCGCAATTTAAATTATTGCTTAGAGGAGAATGCAAAACTCAATAGGGAAGTAGACTCTCTTCACTCAATGTTAAGCAGCACAAATAGTACAAAGGTTTCTACCAAAGGACCATTTATTGAAGCTCAGGCAGTTCCAAGGATGGGGGTCAAGCATGAAACTCATCTGTCACAACACACAGATGATATTTTAAATCTGCAGTTGGAATTAGATATAATAAATGTCATTCTGAAGGAAGAGAGGTCTTTCCGTGGCATATTGGAAGAGCAAAAAATATGCTTAAATAAGGATTTTATGATGGCAAAAGACAAGCTTGAGCAAACAAGCAAACAATTAGAAGATGCAAAGGACGAGCTTGGAGAGGCAAAATCTGTCATTGAAGCCTTAGAATTGCAGCAAATATTATCTATCAAAGAGATAGAAGAGATGAGGAACAAGAACAGCCATTTTATGGAGCTTATGGGGAAACAAGAGCATGAAATCATGACCTTGAAGAACCAACTTGCATCTAAAGAGTTCAGAGATAATTTGCTTTCAAATAATCCAGAGTTTGAAAACAAGTCCCCCTTACAGGTAAAACTCAGAAGGATGCATGATTCTCTTGAAAAAGCGAAGCAACTGAACATGTCGTACCAAAGTGATCATGCATTCCAGATATCCAATGAGGAAGAGAGGGATGAAATCCGTCGGCAGGCCGAGGCTGAAACTGTTGAGGTAATTGTCTGTATGCAAGAAGAACTTGCCCAGCTCCAGCATCAAGTAAATGATAGTCATTTGAAGGAAACAGAAATGGAAGAGAGTATGCTGCATCTGGAAACTGAATTGAAGGAGTTGCAGAAAAAAATGCTTACTACTATTGATGATAATAGAAGTTTAAAGGAGGAGCTTGGCCAAAAAGATATAGAACTCACATCACTGGCAGAAGAATGGGAACTGTTAACCTCTGAGATTGAAGAGGTTCTTCTTGATGGATGTGAGGCAATAGTTGATGCCTCTGAAGAACTTGGGAATATAAGGAATTCATTTCCACAGAAAAGGATCTGGATTTCTGAACAAGTTGGCATGATAGTTAGAAAAATTTCTGAGAATGAATTATTAATTGATGAACTTAGAAGATGTTTGGAAGATGCAAGCAATAAAAGAAGTGATATGGAGTGTATGCTGAAGTCCTTAAGAAGTGCAGCGTTAGTCATTACTGAATCCCACCAGAAGGAGTGTGCTGAAAATGAAAAAGAAATTCTCCTATTGACCTCACAATTGAGTGAAAAAACATCTACTGTGGCACAACTGAAGGAGCATTTGGTAATGGCAGAAGATCATATCAGAAAAGCATCAAATTGTTCAACAGTGGCTTTTGTAGTTGTGAATAGATTGTCAGAAGTGAATCTTGGTTACCTGGATGATCTAAAGCATAAGGATATTCTGCTTAGTGAATTAGCAGAAACTAATAATAGGAAGGATGTCCTTCTCAGTGACCAATCCACTTCATTTGTTCAAGCAGAGAGACAGATAACAGAGTTGCAGGAAAGATGTAATGATTTATGGCAGAAGCTGTCTGAGGAGCAAGAGCATTCTCGTGCTTTGGAACAAAAGCTTGAAGATATTGAAAAGAATGCCATTTCAAAGACAAGGGAGCAGCTAGTGACATTACAAGATGGTGTCTCTTCAATCAGATCATGCATGGCCTCTTTTGCAGACCATCCAGGAAGTCTTGATAATAGAAATTCATTGGATGCATGCACATCAGACTATGATGATATTGGTGAACAAAGGCATACAAGTTCGGAAACACATCAAAACAGTGATTCAGATCCGCTTTCTGTTGAAGAACATATAGTTGACCTGACTGACTTACAGTTGGTCAAAAGTGGATATGATACGAAAGACCTGAAATCAAGAAAAGTTGGCAAGAATGTGCTTGAAAGAGATGCTACTATTAGGCTTTTGAGAAAAGAAATCGAATGTGCTCTTGAAAGCTTAAAAGAAGTGCAATATGAGATGGCCAGATTACATGAAGAAAAAAAAGAGATGTCCGTGTCTGAAAAGAAGAGTCGGCAAAGCATAGAGTGCCTCACAAATCAGATACTTTTCCTGCAAGAAGCTATGTATCACTTTGAGGAGAAATCTAAAGTCAAGATTGATGTACTCAGTCACAAACTTAGAGGCCTGGAGAAACCTCTGAAAGAAGCCAGCTCCCATTGGTACCAAAGGAAAGAGACACTTGAACTTGAAGTTGGAGAGGCAAAGATCATTCAAGCTCAGAAAGCCCAAGAGGCATCTTGTATTCTTGCTAAATTTGAAGAAGCACAAGATACAATGAGAGAAGCAGATATTATGATCAATGGATTGGTGATAGCTAATGAGTCAATGAAGATAGATATAGAAAGACTGAAAGACAGAGAAATGACTTTACTCAATGAGAAGGGTACATTAGTCAGCAATATTGAAAGCTTACAAACTGTTGTTGATTTGAAGCATCAGGAGATAGAGAACCTTGTTGAATCAAGTCTAGTAGAAACAAGGGATCTAATTGTTACGTTGGATGATGTCATTAAAGACGTCCAATTGACGATGGCAGAAAATTTCAAGTCTTTAGCTTGTGATTTAGAGTGCTTGAAGTCTCAATGTTTATATTCCACTAAATTGATACAGCCATGGCTTGAGAAGATATGGTCTGAGATAGTTTTTAAAGATTGTGCTATGTCTGTGCTACATCTCTGTCACATGGGTATTTTACTGGAAACAGTAACAGGGATGCATGCAGAAAATGGTTTGCTTTCACACGGCTTGTGTGAATCGAACTCTGTCATAAGTGATTTGAAGGAACATAATTATAGGACAAAGCAAGAGCTTGATATGTGCAGAATCTTGAAAGGGAAACTGCTGGCTGACATCAAGAACAGTTTTGATCGTATTAATAAGAAAGAAGTTGAAGCTGGAGAAATCACCATCAAGCTAAATAATTTTGCTAAAAGCATATCAGACCTACAACTTCAGGAGGAGATGATGCTGCAAAGGTCGAATGAAATGGGATCCCAACTTGCTAAACTGATGAGGGAATTGGATGTGAGTAATACAGATATTGTGACATCCCTTTTAGATCAAGAGAAACTACTGAAACAGAAAGTAGTGGCCATTGAATGTGAGGCCGAATTTTTTATGGCAGATTGGTATGCCAAAGACTTTGAATCACTTATCCATGCATCTGAATTGAAAAATATGTCATGTAATATAGCTAATATGGAGGAGCATTTTGTCAAGTACTCCATATTAATTGAGCAACTGAAGAAAGAAACAATCTTTTCCCAAGTAGAAACTGAGTTTGCAAAACAAATTTTGATGGATAAGGAAGTTGAAGTTTCCCTATTAGAAAGAGAAGTTCAGCAGGGAAAAGTGGAAAGGAAGGACCTAGTAACAGAATTAAACCGGAATGTCTTAAGGATTACAGAGATGGGTGAAGTAAACAAGGTCCTTGAACAAAATATTGAGTTTCTAAAGGATGTTACTTGTTCTAATCATGCATTGAAGGGTGAACTTGTTGAAGCTAACAAGGCAAAGAAAAGACTGCTGGATAGGATTCTTGATCTAGAAGCTGATTATGATAAAGTAATTGGTGATGTCATTGGGAAGGATGTGGCTTCTGAATTTTCTTTCCAACAGGTTTATTTTCTTGAACATCAAAACACAGAGTTAAAGAAAGTAAACTATATGTTGGAAAATTCATCTTGCAGACTAAAGAATGAGCTGAACCTAAAGGATTCGGACTTAACCAGAATGCAGAACTTACTGGAGGTTGAGTTATCCAGAAAGGATGATGTAGTAAAAGGACTGTTGTATGATCTGAGCTTACTACAGGAATCTGCCTCAAACAATAAAGACCAAAAAGATGAAGTTGAAAAAATTGTGGCTACAATGGAGGCATTAGAAGTGGAGCTAGCTGTTAAATCAGGTGAACTTGCTGATGTTGTTGCAAACTGTCAATTGCTTGAAGCTCAGTTGCAGGACAAATCAGACATAATTAGAGCTCTTGAGTTGGATCTCTCAAAAGAACGTGAGGCTCTAGTGTTGCAAGTCAGTGAAAATCAAGAACTTAGAACTCATATTGAAGGCGCCTTGACAGCGAGAAAACTGGCTGACAATGAGCTAACAGAAAGAATGAAGATAACAGAGAGCTTAGAAGATGAAATCCTGGAAATGAACAGTGTTTTTAGCCAAATGAATGATTCATTTAAAAATCTGAGTAGTGATCTGGATGATGTCACTAATGAGAGGGATCAGCTTCAGGGTCAAGTAATTTGCCTCAAAAACAGGCTTGAAAAAGCTGAAGCACAAGCTGAAGCTAATGAAGCAATTGTTCAAGAAGCTCAGAAGGTGGCAGAATCGAGAAAAATTTATGCTGAAGACAGGGAAGAAGAGGTGAAACTTCTAGCGAGATCAGTTGAAGAGCTGGAAAGTACTGTAAATGTACTAGAAAACCAAGTTGACATCCTTAAAGGAGAAGCAGAACGACAGAGGCTACAACGAGAAGATCTAGAGTTGGAGCTACATGCATTAAAAGATCAGATGCAAAATGTCAGAAATGTCGATGGTGACATGAGAAGATTTTTGGATGAAAAAGAGAAAAGCCTCAATGAAGCCCTAAATCACATACAGGTTCTTAAGAGGGAGTTAGCAGGAAAGGATGCAGAGATTCGACAAATAAAAGCTCATATTTCAGAGCTAAATTTGCATGCTGAAGCACAGGCCATGGAGTACAAGCAGAAATTCAAAGCATTGGAAGCCATGGCTGAGCAAGTCAAACCGGAGGGCCTTTCTAGTCATTCCACCAGTGCTAATTCCCACAATGCATTGTCAAACAAGTCTGAGAAGAATGCCACCAAGTCTCGAGGTTCTAGTTCTCCTTTCAAATGCATTGGGTTGGGCTTGGCACAACAGGTAAAATATGAGAAGGTTGAAGAGCTGTCTGCTGCAAGACTGCGCATTGAAGAACTAGAAGCCCAGGCAGCATGTCGACAGAGAGAGATATTTGCACTGAATGCCAAATTAGCATCTGCTGAGAGCATGACACATGATGTAATTCGAGACTTACTTGGAGTGAAGTTGGATATGACCTCTTATGCGTCACTAATTGATGATGAACAAGCGGAGAAGATTACAGAGAAAGTTAAATTTCTTACTCTGGAGTCTCAAGACAAGGAGGTTATTAAGCTAAAGAAGCAGCTGAATGAATTCATTGAAGAGAGACAAGGATGGCTACAAGAAATGGATAGGAAACAATCAGAGTTGGTAGCTGTCCAAATTGCATTGGAAAACCTTCGGCAGCGAGATCAGTTACTAAAAACAGAAAATGAAATGCTGAAGATTGAAAATGCAAGTAAGAAGAATAAAGTAGTGGAACTGGAGGAAGAAATTAAAAAGTTGTCTGGTCAGCAAAACCTTCAGCAGCGTATTCATCACCATGCTAAAATTAAGGAGGAAAATAACAAGTTAAAGATACAGAACGAAGAACTCAGTGCAAAGCTCCGGAAGTCAGACATCTTCCATTCGCGTGTCAAAGAAGACCTTGCACGTCTTCGTGCTTCTACTGGCGCAAAAAAAAGCATTAATTTGGATGAGGAACAACGTCTGATGATAAAGCTGAAGGAGATCGAGGAAGAGAAAGTACAACTAGCCCAGCAATTACTGAGATTGTCCACTAATGTTCTAAAGGTGGCTGGAATAGCAAGACCAACATCAGATGTAAATCCTTCTATGGCTGAGGAAGCCCTACAGGACCTCAAGAATAGGATAACTACCCTGGAAATGGAACAAGAAGATTTGAAGTTTAAGAATAAAATTATTAAGGAAAAGATTCGATTATCCGAGCTCATGCCACAAGCTTCTCCTTTGAACCCGAGATCTGAGGAGAATCGTTTAACTCCACCAAGGGTTTCCCTGGCTCCATTCCTTTCCAGTTTTGATCGATAG

>Glyma02g15340.2   sequence type=CDS   gene model=Glyma02g15340   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
ATGCTGAGGGATTTCAAGCTCCCGCGCCGAAACCCTAGCAAGCACGAAGAACCTGAGAATGTAGATCCTTATGATTCATCCACCACAGTTCAGAGGCACGCGGAAAGTTCTAGACCTCCGTTGAACACAATTCAAGGGCCCGATGCGCATTGTGAAAGCAAGATTGAGAAGACTCCTTCGAAGAGAGGAAGAGGAGGAGCTGAGCTTCGCACGCCGGATAAGCACGGCGGAGGGAGCATGATTGTGAAGCACCGGTTTGGTTGGAATCACAAGCACGACGGAGGAGTTTCGTCGTTCGGTGATGATAGGAGAGCATCTGGTGTTGGGAATGTGACTCCTCGCGTGCCTCGCACTGTGGGGAGAGCTTCTTCGAGTGTTACTGCCTATTCTGAGAGCAACTCCACGCAGAGCACTCCGACTAAGAGTGTGACAAAGCCACCTCCTGGCTCGAGCGTTCGGAGCAAGGCGGATGGAGGAGGCTTCAGTGCTCGCTTGGGGAACTATGCTGCATTATATAAAGGGGTTCCCAGTTCGGCTTGCTCCACCCCCACGGTTGTTAACACGGTCGAAGTGCCTCACTTTGATCTCAAGGAAGATTCTTCGTTTTGGATTAACCACAATGTACAGGTTATTATTCGTGTTCGTCCTCTCAATAGCATGGAGCGGTGTACACAAGGGTATAACAGATGCCTGAAGCAAGAAGGCTCTCAGAGCATTACTTGGATTGGGCAACCGGAGAACCGGTTCAACTTTGACCATGTTGCATGTGAAACCATAGACCAGGAAATGATTTTCAGATTGGCTGGTCTTCCAATGGTAGAGAACTGCCTTTCAGGGTATAATAGCTGCATGTTTGCATACGGACAGACTGGAAGCGGGAAAACATATACAATGCTTGGTGACATTGAAGATTTAGATGTGATGCCTAGTCCTCATCGTGGAATGACACCGCGTATATTTGAGTTTTTGTTTGCCCGGATCCAAGCTGAAGAGGAAAGCCGAAGAGATGAGAGCTTAAAATACAACTGCAAGTGTTCCTTCTTGGAGATTTACAATGAACAAATTACAGATCTACTTGATCCCTCCTCTACTAATTTGCTACTGCGTGAGGATGTCAAGAAGGGTGTTTACGTTGAAAATTTATCTGAGTTCGAGGTTCAAAGTGTGAGTGACATTATAAGGCTTCTAATTCAGGGTTCTGCTAATAGAAAAGTTGCAGCAACAAATATGAATAGAGAGAGCAGTAGGTCCCATAGTGTTTTTACATGTGTAATTGAGAGCACATGGGAAAAGGATTCTACAACTAATTATCGTTTTGCAAGGTTAAACCTGGTTGATCTGGCTGGCTCAGAAAGACAGAAGACTTCTGGTGCTGAGGGGGAGCGTTTAAAAGAAGCAGCTAACATCAATAAATCATTATCTACCTTGGGTCATGTTATTATGATACTAGTGGATGTGGCAAATGGGAAGCAGAGGCATATCCCTTACAGAGACTCTAGACTAACTTTTCTTCTTCAGGACTCTCTTGGCGGAAACTCGAAAACAATGATCATTGCCAATGTCAGCCCTTCTATCTGCTGCGCTGCTGAAACATTGAATACACTTAAATTTGCTCAGAGAGCAAAACTTATTCAAAATAATGCTGTGGTGAACGAAGATTCTACTGGGGATGTAATTGCTTTACAACATCAAATTCGACTTTTGAAGGAAGAGCTTTCTATCCTCAAACGACGTCAGAATGTCTCTAGGTCTTTGTCATTTTCTTTGTCATCGATCAGAGATATAAAACAATCACTAGAACTAGAAGACTGTTGCCTAGAAAATGCAACTGACATGGTTGACCAACATGAAGATAACATGCCGGATTATGAATCCAAGGGCATCAGAATGTCCCACAAACAGTTGCATTCATTGGAGACAACTCTTGCGGGTGCTTTGAGAAGGGAACAAATGGCAGAAATTTCTATTAAGCAACTAGAAGCTGAAATTGAACAATTAAATCGTTTGGTTCGTCAAAGAGAGGAGGACACTAGGAGTTGCAAAATGATGCTTAGGTTTCGCGAAGACAAAATTCATAGATTGGAGTCCCAACTTGCTGGTTCGATTCCTACGGACACATTTTTGCAGGAAGAGAATAAAGCACTTTCTGATGAGATTCAAATACTTCAGAGCAGACTTGACCGAAATCCTGAAGTCACTCGGTTTGCTGTAGAGAATATCAGGCTTCTAGACCAACTTAGAAGATATCAAGAGTTTTATGAAGAAGGGGAGAGAGAGATTTTATTGACTGAAGTGTCTTCTTTGAGGGATCAGTTGCTTCAATATCATGGAAGAAACTCCATGCAGGGTAATTCAAATCATGATATTCAACCTCAGAAAGCTCAGTGCTGCAATAAAGAAAATAACCTTGTTGATCTAGAGCTAAGAAACACCCTCGATGAGTTACAGGAATGCAGGCGCAATTTAAATTATTGCTTAGAGGAGAATGCAAAACTCAATAGGGAAGTAGACTCTCTTCACTCAATGTTAAGCAGCACAAATAGTACAAAGGTTTCTACCAAAGGACCATTTATTGAAGCTCAGGCAGTTCCAAGGATGGGGGTCAAGCATGAAACTCATCTGTCACAACACACAGATGATATTTTAAATCTGCAGTTGGAATTAGATATAATAAATGTCATTCTGAAGGAAGAGAGGTCTTTCCGTGGCATATTGGAAGAGCAAAAAATATGCTTAAATAAGGATTTTATGATGGCAAAAGACAAGCTTGAGCAAACAAGCAAACAATTAGAAGATGCAAAGGACGAGCTTGGAGAGGCAAAATCTGTCATTGAAGCCTTAGAATTGCAGCAAATATTATCTATCAAAGAGATAGAAGAGATGAGGAACAAGAACAGCCATTTTATGGAGCTTATGGGGAAACAAGAGCATGAAATCATGACCTTGAAGAACCAACTTGCATCTAAAGAGTTCAGAGATAATTTGCTTTCAAATAATCCAGAGTTTGAAAACAAGTCCCCCTTACAGGTAAAACTCAGAAGGATGCATGATTCTCTTGAAAAAGCGAAGCAACTGAACATGTCGTACCAAAGTGATCATGCATTCCAGATATCCAATGAGGAAGAGAGGGATGAAATCCGTCGGCAGGCCGAGGCTGAAACTGTTGAGGTAATTGTCTGTATGCAAGAAGAACTTGCCCAGCTCCAGCATCAAGTAAATGATAGTCATTTGAAGGAAACAGAAATGGAAGAGAGTATGCTGCATCTGGAAACTGAATTGAAGGAGTTGCAGAAAAAAATGCTTACTACTATTGATGATAATAGAAGTTTAAAGGAGGAGCTTGGCCAAAAAGATATAGAACTCACATCACTGGCAGAAGAATGGGAACTGTTAACCTCTGAGATTGAAGAGGTTCTTCTTGATGGATGTGAGGCAATAGTTGATGCCTCTGAAGAACTTGGGAATATAAGGAATTCATTTCCACAGAAAAGGATCTGGATTTCTGAACAAGTTGGCATGATAGTTAGAAAAATTTCTGAGAATGAATTATTAATTGATGAACTTAGAAGATGTTTGGAAGATGCAAGCAATAAAAGAAGTGATATGGAGTGTATGCTGAAGTCCTTAAGAAGTGCAGCGTTAGTCATTACTGAATCCCACCAGAAGGAGTGTGCTGAAAATGAAAAAGAAATTCTCCTATTGACCTCACAATTGAGTGAAAAAACATCTACTGTGGCACAACTGAAGGAGCATTTGGTAATGGCAGAAGATCATATCAGAAAAGCATCAAATTGTTCAACAGTGGCTTTTGTAGTTGTGAATAGATTGTCAGAAGTGAATCTTGGTTACCTGGATGATCTAAAGCATAAGGATATTCTGCTTAGTGAATTAGCAGAAACTAATAATAGGAAGGATGTCCTTCTCAGTGACCAATCCACTTCATTTGTTCAAGCAGAGAGACAGATAACAGAGTTGCAGGAAAGATGTAATGATTTATGGCAGAAGCTGTCTGAGGAGCAAGAGCATTCTCGTGCTTTGGAACAAAAGCTTGAAGATATTGAAAAGAATGCCATTTCAAAGACAAGGGAGCAGCTAGTGACATTACAAGATGGTGTCTCTTCAATCAGATCATGCATGGCCTCTTTTGCAGACCATCCAGGAAGTCTTGATAATAGAAATTCATTGGATGCATGCACATCAGACTATGATGATATTGGTGAACAAAGGCATACAAGTTCGGAAACACATCAAAACAGTGATTCAGATCCGCTTTCTGTTGAAGAACATATAGTTGACCTGACTGACTTACAGTTGGTCAAAAGTGGATATGATACGAAAGACCTGAAATCAAGAAAAGTTGGCAAGAATGTGCTTGAAAGAGATGCTACTATTAGGCTTTTGAGAAAAGAAATCGAATGTGCTCTTGAAAGCTTAAAAGAAGTGCAATATGAGATGGCCAGATTACATGAAGAAAAAAAAGAGATGTCCGTGTCTGAAAAGAAGAGTCGGCAAAGCATAGAGTGCCTCACAAATCAGATACTTTTCCTGCAAGAAGCTATGTATCACTTTGAGGAGAAATCTAAAGTCAAGATTGATGTACTCAGTCACAAACTTAGAGGCCTGGAGAAACCTCTGAAAGAAGCCAGCTCCCATTGGTACCAAAGGAAAGAGACACTTGAACTTGAAGTTGGAGAGGCAAAGATCATTCAAGCTCAGAAAGCCCAAGAGGCATCTTGTATTCTTGCTAAATTTGAAGAAGCACAAGATACAATGAGAGAAGCAGATATTATGATCAATGGATTGGTGATAGCTAATGAGTCAATGAAGATAGATATAGAAAGACTGAAAGACAGAGAAATGACTTTACTCAATGAGAAGGGTACATTAGTCAGCAATATTGAAAGCTTACAAACTGTTGTTGATTTGAAGCATCAGGAGATAGAGAACCTTGTTGAATCAAGTCTAGTAGAAACAAGGGATCTAATTGTTACGTTGGATGATGTCATTAAAGACGTCCAATTGACGATGGCAGAAAATTTCAAGTCTTTAGCTTGTGATTTAGAGTGCTTGAAGTCTCAATGTTTATATTCCACTAAATTGATACAGCCATGGCTTGAGAAGATATGGTCTGAGATAGTTTTTAAAGATTGTGCTATGTCTGTGCTACATCTCTGTCACATGGGTATTTTACTGGAAACAGTAACAGGGATGCATGCAGAAAATGGTTTGCTTTCACACGGCTTGTGTGAATCGAACTCTGTCATAAGTGATTTGAAGGAACATAATTATAGGACAAAGCAAGAGCTTGATATGTGCAGAATCTTGAAAGGGAAACTGCTGGCTGACATCAAGAACAGTTTTGATCGTATTAATAAGAAAGAAGTTGAAGCTGGAGAAATCACCATCAAGCTAAATAATTTTGCTAAAAGCATATCAGACCTACAACTTCAGGAGGAGATGATGCTGCAAAGGTCGAATGAAATGGGATCCCAACTTGCTAAACTGATGAGGGAATTGGATGTGAGTAATACAGATATTGTGACATCCCTTTTAGATCAAGAGAAACTACTGAAACAGAAAGTAGTGGCCATTGAATGTGAGGCCGAATTTTTTATGGCAGATTGGTATGCCAAAGACTTTGAATCACTTATCCATGCATCTGAATTGAAAAATATGTCATGTAATATAGCTAATATGGAGGAGCATTTTGTCAAGTACTCCATATTAATTGAGCAACTGAAGAAAGAAACAATCTTTTCCCAAGTAGAAACTGAGTTTGCAAAACAAATTTTGATGGATAAGGAAGTTGAAGTTTCCCTATTAGAAAGAGAAGTTCAGCAGGGAAAAGTGGAAAGGAAGGACCTAGTAACAGAATTAAACCGGAATGTCTTAAGGATTACAGAGATGGGTGAAGTAAACAAGGTCCTTGAACAAAATATTGAGTTTCTAAAGGATGTTACTTGTTCTAATCATGCATTGAAGGGTGAACTTGTTGAAGCTAACAAGGCAAAGAAAAGACTGCTGGATAGGATTCTTGATCTAGAAGCTGATTATGATAAAGTAATTGGTGATGTCATTGGGAAGGATGTGGCTTCTGAATTTTCTTTCCAACAGGTTTATTTTCTTGAACATCAAAACACAGAGTTAAAGAAAGTAAACTATATGTTGGAAAATTCATCTTGCAGACTAAAGAATGAGCTGAACCTAAAGGATTCGGACTTAACCAGAATGCAGAACTTACTGGAGGTTGAGTTATCCAGAAAGGATGATGTAGTAAAAGGACTGTTGTATGATCTGAGCTTACTACAGGAATCTGCCTCAAACAATAAAGACCAAAAAGATGAAGTTGAAAAAATTGTGGCTACAATGGAGGCATTAGAAGTGGAGCTAGCTGTTAAATCAGGTGAACTTGCTGATGTTGTTGCAAACTGTCAATTGCTTGAAGCTCAGTTGCAGGACAAATCAGACATAATTAGAGCTCTTGAGTTGGATCTCTCAAAAGAACGTGAGGCTCTAGTGTTGCAAGTCAGTGAAAATCAAGAACTTAGAACTCATATTGAAGGCGCCTTGACAGCGAGAAAACTGGCTGACAATGAGCTAACAGAAAGAATGAAGATAACAGAGAGCTTAGAAGATGAAATCCTGGAAATGAACAGTGTTTTTAGCCAAATGAATGATTCATTTAAAAATCTGAGTAGTGATCTGGATGATGTCACTAATGAGAGGGATCAGCTTCAGGGTCAAGTAATTTGCCTCAAAAACAGGCTTGAAAAAGCTGAAGCACAAGCTGAAGCTAATGAAGCAATTGTTCAAGAAGCTCAGAAGGTGGCAGAATCGAGAAAAATTTATGCTGAAGACAGGGAAGAAGAGGTGAAACTTCTAGCGAGATCAGTTGAAGAGCTGGAAAGTACTGTAAATGTACTAGAAAACCAAGTTGACATCCTTAAAGGAGAAGCAGAACGACAGAGGCTACAACGAGAAGATCTAGAGTTGGAGCTACATGCATTAAAAGATCAGATGCAAAATGTCAGAAATGTCGATGGTGACATGAGAAGATTTTTGGATGAAAAAGAGAAAAGCCTCAATGAAGCCCTAAATCACATACAGGTTCTTAAGAGGGAGTTAGCAGGAAAGGATGCAGAGATTCGACAAATAAAAGCTCATATTTCAGAGCTAAATTTGCATGCTGAAGCACAGGCCATGGAGTACAAGCAGAAATTCAAAGCATTGGAAGCCATGGCTGAGCAAGTCAAACCGGAGGGCCTTTCTAGTCATTCCACCAGTGCTAATTCCCACAATGCATTGTCAAACAAGTCTGAGAAGAATGCCACCAAGTCTCGAGGTTCTAGTTCTCCTTTCAAATGCATTGGGTTGGGCTTGGCACAACAGGTAAAATATGAGAAGGTTGAAGAGCTGTCTGCTGCAAGACTGCGCATTGAAGAACTAGAAGCCCAGGCAGCATGTCGACAGAGAGAGATATTTGCACTGAATGCCAAATTAGCATCTGCTGAGAGCATGACACATGATGTAATTCGAGACTTACTTGGAGTGAAGTTGGATATGACCTCTTATGCGTCACTAATTGATGATGAACAAGCGGAGAAGATTACAGAGAAAGTTAAATTTCTTACTCTGGAGTCTCAAGACAAGGAGGTTATTAAGCTAAAGAAGCAGCTGAATGAATTCATTGAAGAGAGACAAGGATGGCTACAAGAAATGGATAGGAAACAATCAGAGTTGGTAGCTGTCCAAATTGCATTGGAAAACCTTCGGCAGCGAGATCAGTTACTAAAAACAGAAAATGAAATGCTGAAGATTGAAAATGCAAGTAAGAAGAATAAAGTAGTGGAACTGGAGGAAGAAATTAAAAAGTTGTCTGGTCAGCAAAACCTTCAGCAGCGTATTCATCACCATGCTAAAATTAAGGAGGAAAATAACAAGTTAAAGATACAGAACGAAGAACTCAGTGCAAAGCTCCGGAAGTCAGACATCTTCCATTCGCGTGTCAAAGAAGACCTTGCACGTCTTCGTGCTTCTACTGGCGCAAAAAAAAGCATTAATTTGGATGAGGAACAACGTCTGATGATAAAGCTGAAGGTCAGTTACCAAAGAAGTAATGTGATGTGTTGTACTTTGAAGTAG

>Glyma02g15340.1   sequence type=predicted peptide   gene model=Glyma02g15340   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
MLRDFKLPRRNPSKHEEPENVDPYDSSTTVQRHAESSRPPLNTIQGPDAHCESKIEKTPSKRGRGGAELRTPDKHGGGSMIVKHRFGWNHKHDGGVSSFGDDRRASGVGNVTPRVPRTVGRASSSVTAYSESNSTQSTPTKSVTKPPPGSSVRSKADGGGFSARLGNYAALYKGVPSSACSTPTVVNTVEVPHFDLKEDSSFWINHNVQVIIRVRPLNSMERCTQGYNRCLKQEGSQSITWIGQPENRFNFDHVACETIDQEMIFRLAGLPMVENCLSGYNSCMFAYGQTGSGKTYTMLGDIEDLDVMPSPHRGMTPRIFEFLFARIQAEEESRRDESLKYNCKCSFLEIYNEQITDLLDPSSTNLLLREDVKKGVYVENLSEFEVQSVSDIIRLLIQGSANRKVAATNMNRESSRSHSVFTCVIESTWEKDSTTNYRFARLNLVDLAGSERQKTSGAEGERLKEAANINKSLSTLGHVIMILVDVANGKQRHIPYRDSRLTFLLQDSLGGNSKTMIIANVSPSICCAAETLNTLKFAQRAKLIQNNAVVNEDSTGDVIALQHQIRLLKEELSILKRRQNVSRSLSFSLSSIRDIKQSLELEDCCLENATDMVDQHEDNMPDYESKGIRMSHKQLHSLETTLAGALRREQMAEISIKQLEAEIEQLNRLVRQREEDTRSCKMMLRFREDKIHRLESQLAGSIPTDTFLQEENKALSDEIQILQSRLDRNPEVTRFAVENIRLLDQLRRYQEFYEEGEREILLTEVSSLRDQLLQYHGRNSMQGNSNHDIQPQKAQCCNKENNLVDLELRNTLDELQECRRNLNYCLEENAKLNREVDSLHSMLSSTNSTKVSTKGPFIEAQAVPRMGVKHETHLSQHTDDILNLQLELDIINVILKEERSFRGILEEQKICLNKDFMMAKDKLEQTSKQLEDAKDELGEAKSVIEALELQQILSIKEIEEMRNKNSHFMELMGKQEHEIMTLKNQLASKEFRDNLLSNNPEFENKSPLQVKLRRMHDSLEKAKQLNMSYQSDHAFQISNEEERDEIRRQAEAETVEVIVCMQEELAQLQHQVNDSHLKETEMEESMLHLETELKELQKKMLTTIDDNRSLKEELGQKDIELTSLAEEWELLTSEIEEVLLDGCEAIVDASEELGNIRNSFPQKRIWISEQVGMIVRKISENELLIDELRRCLEDASNKRSDMECMLKSLRSAALVITESHQKECAENEKEILLLTSQLSEKTSTVAQLKEHLVMAEDHIRKASNCSTVAFVVVNRLSEVNLGYLDDLKHKDILLSELAETNNRKDVLLSDQSTSFVQAERQITELQERCNDLWQKLSEEQEHSRALEQKLEDIEKNAISKTREQLVTLQDGVSSIRSCMASFADHPGSLDNRNSLDACTSDYDDIGEQRHTSSETHQNSDSDPLSVEEHIVDLTDLQLVKSGYDTKDLKSRKVGKNVLERDATIRLLRKEIECALESLKEVQYEMARLHEEKKEMSVSEKKSRQSIECLTNQILFLQEAMYHFEEKSKVKIDVLSHKLRGLEKPLKEASSHWYQRKETLELEVGEAKIIQAQKAQEASCILAKFEEAQDTMREADIMINGLVIANESMKIDIERLKDREMTLLNEKGTLVSNIESLQTVVDLKHQEIENLVESSLVETRDLIVTLDDVIKDVQLTMAENFKSLACDLECLKSQCLYSTKLIQPWLEKIWSEIVFKDCAMSVLHLCHMGILLETVTGMHAENGLLSHGLCESNSVISDLKEHNYRTKQELDMCRILKGKLLADIKNSFDRINKKEVEAGEITIKLNNFAKSISDLQLQEEMMLQRSNEMGSQLAKLMRELDVSNTDIVTSLLDQEKLLKQKVVAIECEAEFFMADWYAKDFESLIHASELKNMSCNIANMEEHFVKYSILIEQLKKETIFSQVETEFAKQILMDKEVEVSLLEREVQQGKVERKDLVTELNRNVLRITEMGEVNKVLEQNIEFLKDVTCSNHALKGELVEANKAKKRLLDRILDLEADYDKVIGDVIGKDVASEFSFQQVYFLEHQNTELKKVNYMLENSSCRLKNELNLKDSDLTRMQNLLEVELSRKDDVVKGLLYDLSLLQESASNNKDQKDEVEKIVATMEALEVELAVKSGELADVVANCQLLEAQLQDKSDIIRALELDLSKEREALVLQVSENQELRTHIEGALTARKLADNELTERMKITESLEDEILEMNSVFSQMNDSFKNLSSDLDDVTNERDQLQGQVICLKNRLEKAEAQAEANEAIVQEAQKVAESRKIYAEDREEEVKLLARSVEELESTVNVLENQVDILKGEAERQRLQREDLELELHALKDQMQNVRNVDGDMRRFLDEKEKSLNEALNHIQVLKRELAGKDAEIRQIKAHISELNLHAEAQAMEYKQKFKALEAMAEQVKPEGLSSHSTSANSHNALSNKSEKNATKSRGSSSPFKCIGLGLAQQVKYEKVEELSAARLRIEELEAQAACRQREIFALNAKLASAESMTHDVIRDLLGVKLDMTSYASLIDDEQAEKITEKVKFLTLESQDKEVIKLKKQLNEFIEERQGWLQEMDRKQSELVAVQIALENLRQRDQLLKTENEMLKIENASKKNKVVELEEEIKKLSGQQNLQQRIHHHAKIKEENNKLKIQNEELSAKLRKSDIFHSRVKEDLARLRASTGAKKSINLDEEQRLMIKLKEIEEEKVQLAQQLLRLSTNVLKVAGIARPTSDVNPSMAEEALQDLKNRITTLEMEQEDLKFKNKIIKEKIRLSELMPQASPLNPRSEENRLTPPRVSLAPFLSSFDR*

>Glyma02g15340.2   sequence type=predicted peptide   gene model=Glyma02g15340   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
MLRDFKLPRRNPSKHEEPENVDPYDSSTTVQRHAESSRPPLNTIQGPDAHCESKIEKTPSKRGRGGAELRTPDKHGGGSMIVKHRFGWNHKHDGGVSSFGDDRRASGVGNVTPRVPRTVGRASSSVTAYSESNSTQSTPTKSVTKPPPGSSVRSKADGGGFSARLGNYAALYKGVPSSACSTPTVVNTVEVPHFDLKEDSSFWINHNVQVIIRVRPLNSMERCTQGYNRCLKQEGSQSITWIGQPENRFNFDHVACETIDQEMIFRLAGLPMVENCLSGYNSCMFAYGQTGSGKTYTMLGDIEDLDVMPSPHRGMTPRIFEFLFARIQAEEESRRDESLKYNCKCSFLEIYNEQITDLLDPSSTNLLLREDVKKGVYVENLSEFEVQSVSDIIRLLIQGSANRKVAATNMNRESSRSHSVFTCVIESTWEKDSTTNYRFARLNLVDLAGSERQKTSGAEGERLKEAANINKSLSTLGHVIMILVDVANGKQRHIPYRDSRLTFLLQDSLGGNSKTMIIANVSPSICCAAETLNTLKFAQRAKLIQNNAVVNEDSTGDVIALQHQIRLLKEELSILKRRQNVSRSLSFSLSSIRDIKQSLELEDCCLENATDMVDQHEDNMPDYESKGIRMSHKQLHSLETTLAGALRREQMAEISIKQLEAEIEQLNRLVRQREEDTRSCKMMLRFREDKIHRLESQLAGSIPTDTFLQEENKALSDEIQILQSRLDRNPEVTRFAVENIRLLDQLRRYQEFYEEGEREILLTEVSSLRDQLLQYHGRNSMQGNSNHDIQPQKAQCCNKENNLVDLELRNTLDELQECRRNLNYCLEENAKLNREVDSLHSMLSSTNSTKVSTKGPFIEAQAVPRMGVKHETHLSQHTDDILNLQLELDIINVILKEERSFRGILEEQKICLNKDFMMAKDKLEQTSKQLEDAKDELGEAKSVIEALELQQILSIKEIEEMRNKNSHFMELMGKQEHEIMTLKNQLASKEFRDNLLSNNPEFENKSPLQVKLRRMHDSLEKAKQLNMSYQSDHAFQISNEEERDEIRRQAEAETVEVIVCMQEELAQLQHQVNDSHLKETEMEESMLHLETELKELQKKMLTTIDDNRSLKEELGQKDIELTSLAEEWELLTSEIEEVLLDGCEAIVDASEELGNIRNSFPQKRIWISEQVGMIVRKISENELLIDELRRCLEDASNKRSDMECMLKSLRSAALVITESHQKECAENEKEILLLTSQLSEKTSTVAQLKEHLVMAEDHIRKASNCSTVAFVVVNRLSEVNLGYLDDLKHKDILLSELAETNNRKDVLLSDQSTSFVQAERQITELQERCNDLWQKLSEEQEHSRALEQKLEDIEKNAISKTREQLVTLQDGVSSIRSCMASFADHPGSLDNRNSLDACTSDYDDIGEQRHTSSETHQNSDSDPLSVEEHIVDLTDLQLVKSGYDTKDLKSRKVGKNVLERDATIRLLRKEIECALESLKEVQYEMARLHEEKKEMSVSEKKSRQSIECLTNQILFLQEAMYHFEEKSKVKIDVLSHKLRGLEKPLKEASSHWYQRKETLELEVGEAKIIQAQKAQEASCILAKFEEAQDTMREADIMINGLVIANESMKIDIERLKDREMTLLNEKGTLVSNIESLQTVVDLKHQEIENLVESSLVETRDLIVTLDDVIKDVQLTMAENFKSLACDLECLKSQCLYSTKLIQPWLEKIWSEIVFKDCAMSVLHLCHMGILLETVTGMHAENGLLSHGLCESNSVISDLKEHNYRTKQELDMCRILKGKLLADIKNSFDRINKKEVEAGEITIKLNNFAKSISDLQLQEEMMLQRSNEMGSQLAKLMRELDVSNTDIVTSLLDQEKLLKQKVVAIECEAEFFMADWYAKDFESLIHASELKNMSCNIANMEEHFVKYSILIEQLKKETIFSQVETEFAKQILMDKEVEVSLLEREVQQGKVERKDLVTELNRNVLRITEMGEVNKVLEQNIEFLKDVTCSNHALKGELVEANKAKKRLLDRILDLEADYDKVIGDVIGKDVASEFSFQQVYFLEHQNTELKKVNYMLENSSCRLKNELNLKDSDLTRMQNLLEVELSRKDDVVKGLLYDLSLLQESASNNKDQKDEVEKIVATMEALEVELAVKSGELADVVANCQLLEAQLQDKSDIIRALELDLSKEREALVLQVSENQELRTHIEGALTARKLADNELTERMKITESLEDEILEMNSVFSQMNDSFKNLSSDLDDVTNERDQLQGQVICLKNRLEKAEAQAEANEAIVQEAQKVAESRKIYAEDREEEVKLLARSVEELESTVNVLENQVDILKGEAERQRLQREDLELELHALKDQMQNVRNVDGDMRRFLDEKEKSLNEALNHIQVLKRELAGKDAEIRQIKAHISELNLHAEAQAMEYKQKFKALEAMAEQVKPEGLSSHSTSANSHNALSNKSEKNATKSRGSSSPFKCIGLGLAQQVKYEKVEELSAARLRIEELEAQAACRQREIFALNAKLASAESMTHDVIRDLLGVKLDMTSYASLIDDEQAEKITEKVKFLTLESQDKEVIKLKKQLNEFIEERQGWLQEMDRKQSELVAVQIALENLRQRDQLLKTENEMLKIENASKKNKVVELEEEIKKLSGQQNLQQRIHHHAKIKEENNKLKIQNEELSAKLRKSDIFHSRVKEDLARLRASTGAKKSINLDEEQRLMIKLKVSYQRSNVMCCTLK*







Funded by the USDA-ARS. Developed by the USDA-ARS SoyBase and Legume Clade Database group at the Iowa State University, Ames, IA
 
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