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Report for Sequence Feature Glyma02g26670

Feature Type:gene_model
Chromosome:Gm02
Start:27673700
stop:27678109
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A newer version of this gene model can be found here: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
AT3G11980AT Annotation by Michelle Graham. TAIR10: Jojoba acyl CoA reductase-related male sterility protein | chr3:3814484-3816927 FORWARD LENGTH=616 SoyBaseE_val: 0ISS
GO:0009556GO-bp Annotation by Michelle Graham. GO Biological Process: microsporogenesis SoyBaseN/AISS
GO:0010584GO-bp Annotation by Michelle Graham. GO Biological Process: pollen exine formation SoyBaseN/AISS
GO:0055114GO-bp Annotation by Michelle Graham. GO Biological Process: oxidation-reduction process SoyBaseN/AISS
GO:0000166GO-mf Annotation by Michelle Graham. GO Molecular Function: nucleotide binding SoyBaseN/AISS
GO:0016620GO-mf Annotation by Michelle Graham. GO Molecular Function: oxidoreductase activity, acting on the aldehyde or oxo group of donors, NAD or NADP as acceptor SoyBaseN/AISS
GO:0016628GO-mf Annotation by Michelle Graham. GO Molecular Function: oxidoreductase activity, acting on the CH-CH group of donors, NAD or NADP as acceptor SoyBaseN/AISS
GO:0080019GO-mf Annotation by Michelle Graham. GO Molecular Function: fatty-acyl-CoA reductase (alcohol-forming) activity SoyBaseN/AISS
KOG1221 KOG Acyl-CoA reductase JGI ISS
PTHR11011Panther MALE STERILITY PROTEIN 2-RELATED JGI ISS
PTHR11011:SF1Panther MALE STERILITY PROTEIN 2 JGI ISS
PF03015PFAM Male sterility protein JGI ISS
PF07993PFAM Male sterility protein JGI ISS
UniRef100_H6WYS1UniRef Annotation by Michelle Graham. Most informative UniRef hit: Male sterility protein 2 (Fragment) n=2 Tax=Lycium barbarum RepID=H6WYS1_LYCBA SoyBaseE_val: 0ISS
UniRef100_I1JFV2UniRef Annotation by Michelle Graham. Best UniRef hit: Uncharacterized protein (Fragment) n=2 Tax=Glycine max RepID=I1JFV2_SOYBN 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
Glyma09g15875 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.02g169100 Wm82.a2.v1IGC As supplied by JGI

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

>Glyma02g26670.1   sequence type=CDS   gene model=Glyma02g26670   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
ATGGGGGTCTTGTCCATAGGTTATTCTTTTTCCTCAAGTTTACTCACCAAACTCATATTTGGAGTGCCACAAAACAATGAGCGGTGCCCTTCAAGGAGGAAGGCATGTGTTGTGTATTGCCAAGGGGGTGGGAATGTAATTAAGTCCTCCTCAGGCTTGTCTTCTGTGTTGACAGAAAGATCAGCATTGGTTGGCACAGATCATGCAGCTGCAGTTCTAATGGATGCAGGAAGCTTGGTCTTGTCACAAAATGGGAAAAGCCAGGCAGAGATTTTGGTGAAGGATTTGGTGCCTTATGATGGACCAACAACATTGATAGGGGTGGAAGATGGAATAGGCATTGTCAAGTTTCTTGGAGGGAAAAAGTTTTTCATTACTGGGGCAACTGGGTTTCTAGCCAAAGTTTTTATTGAGAAGATTCTAAGGACAGAGCCAGATGTGGGGAAAATGTACCTTTTGATCAAGGCAAAGAATAAGCAAGCTGCAATGGAGAGATTGCAAAACGAAATCATAAACACAGAACTTTTCAGATGCCTTCAAGAAATCCATGGAAAATCATACCAAGCCTTTATGTTGAGCAAGCTAGTTCCTGTTGTAGGCAATATTTGTGAACATAATCTTGGACTAGATGAGGGTATATCTGATGTTATAGCAGAGGAGGTAGATGTCATTGTAAATTCTGCAGCTAATACCACATTTGATGAAAGATATGACACTGCTATCAACATAAACACCATAGGGCCATGCCGCCTTATGAACATTGCCAAAAAGTGCAAGAAGCTCAAGCTCTTTCTGCATGTTTCAACAGCATATGTCAATGGACAAAGGCAAGGTAGGATCATGGAGAGACCATTTAGCATTGGAGAGTGCATAGCAAGAGAAAAATATATATCTGAAGTTTCCCCAAAATACCTTCCCACATTGGACATTGAAGGAGAAATAAATCTGGTTTCAAATTACAAAGGGGACATTGAAGACAACTTACTAGCTCAGAAAATGAAGGAGATTGGTCTAGAGAGGGCCAGAAGATATGGGTGGCAGGATACATATGTGTTCACAAAGGCTATGGGAGAAATGATGATTGACAAATTGAGAGGGGATATTCCAGTTGTTGTAATGCGACCAAGTGTTATTGAGAGCACTTTCAGTGAACCATTTCCTGGATGGATGGAAGGAAATAGGATGATGGATCCAATAGTTCTCTGCTATGGGAAAGGGCAGCTAACAGGTTTTCTGGTAGATCCAAATGGAGTACTAGATGTGGTCCCAGCTGACATGGTTGTTAATGCAACCTTAGCTGCAATGGCAAGGCATGGAGTGAGCCAAAAGCCAGATATCAATGTGTACCAAATTGCTTCATCTGTGGTGAACCCTCTAGTTTTCCAAGACCTGGCAAGGCTTCTCTATGAACATTACAGCTCCTCACCATGCATTGACTCAAAGGGTAGGCCAATTCAAGTTCCACTGATGAAGTTGTTTAGCTCCACAGAAGAATTCTCTGGCCACCTGTGGAGAGATGCTATTCAGAAAAGAGGCCTCACAGCTGTGGCCTCCTCAAAGGGGAAGATGTCTCAAAAACTTGAAAACATGTGCAGAAAATCAGTGGAGCAAGCAAAGTACTTGGCCAACATTTATGAACCATACACATTTTACGGTGGAAGGTTTGATAACAGTAACACACAAAGATTAATGGAAAGCATGTCTGAAAAAGAAAAAAGGGAGTTTGGCTTTGATGTAAAGAGCATTGATTGGAATGACTACATCACCAATGTCCATATACCTGGCCTAAGGAGACATGTCATGAAGGGACGAGGAATGGGGAGTCAGTGA

>Glyma02g26670.1   sequence type=predicted peptide   gene model=Glyma02g26670   sequence assembly version=Glyma 1.0   annotation version=1.1   JGI Gene Call confidence=high
MGVLSIGYSFSSSLLTKLIFGVPQNNERCPSRRKACVVYCQGGGNVIKSSSGLSSVLTERSALVGTDHAAAVLMDAGSLVLSQNGKSQAEILVKDLVPYDGPTTLIGVEDGIGIVKFLGGKKFFITGATGFLAKVFIEKILRTEPDVGKMYLLIKAKNKQAAMERLQNEIINTELFRCLQEIHGKSYQAFMLSKLVPVVGNICEHNLGLDEGISDVIAEEVDVIVNSAANTTFDERYDTAININTIGPCRLMNIAKKCKKLKLFLHVSTAYVNGQRQGRIMERPFSIGECIAREKYISEVSPKYLPTLDIEGEINLVSNYKGDIEDNLLAQKMKEIGLERARRYGWQDTYVFTKAMGEMMIDKLRGDIPVVVMRPSVIESTFSEPFPGWMEGNRMMDPIVLCYGKGQLTGFLVDPNGVLDVVPADMVVNATLAAMARHGVSQKPDINVYQIASSVVNPLVFQDLARLLYEHYSSSPCIDSKGRPIQVPLMKLFSSTEEFSGHLWRDAIQKRGLTAVASSKGKMSQKLENMCRKSVEQAKYLANIYEPYTFYGGRFDNSNTQRLMESMSEKEKREFGFDVKSIDWNDYITNVHIPGLRRHVMKGRGMGSQ*







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