Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Glsi12g2607 ATGTTGGACCGATTATTACCTAAGTTGAAGGCGACAGATCATCGGGTTCTTTTCTTCTCAACAATGACTAGACTTCTTGATGTTATGGAGGAATACTTAACCTTAAAACAGTACCGTTACCTCCGGCTGGATGGGCATACATCTGGAAGTGATCGTGGTGCCCTAATTGACCTTTTTAACCGACCTGGTTCTCCATATTTTATATTCTTGCTCAGCATTCGAGCTGGTGGAGTTGGAGTGAATCTTCAAGCTGCTGACACAGTTGATCTGCAAGCACAAGCAAGGGCTCATAGAATTGGTCAAAAGAGGGATGTTCTAGTTCTTCGCTTTGAAACAGTTCAAACTGTTGAAGAACAAGTCAGAGCTGCAGCCGAGCACAAACTGGGTGTTGCTAATCAGAGCATTACTGCTGGTTTTTTTGACAACAATACAAGTGCTGAAGATCGAAGAGAATATTTGGAGTCCCTCCTGCGGGAGTGTAAGAAAGAGGAGGCATCACCTGTTTTGGATGATGATGCTCTAAATGATCTCTTAGCCCGAAGTGAAACAGAGTTAGATGTATTTGAGGCAGTTGACAAAAAAAGGAGGGAAGATGAGATGGCTATATGGAAGAAATTGGTACTTGGGCAGGCAACTGATGGTTCTGAGCTTATGATTCCTCTTCCTTCTCGTCTTGTAACTGATGGTGACCTGAAAAATTTCTATGAAGCAATGAAGATATATGATGTGCCCAAGGGTGGGGTAGCATCTAATGTAGTAAAGCGGAAAGGTGAATATCTTGGGGGCCTGGATACTCAACACTATGGCAGAGGAAAACGTACAAGAGAGGTGCGTTCTTACGAAGAGCAATGGACAGAGGAGGAATTTGAGAAGATGTGTCAGGTTGAATCTCCAGATTCACCCAAAGTGAAAGAAGAAGTGGTAGAAACAAGTTGCCCAACAAATGCTTCCAGCTCTATTGCAGCTACTTCTAACGCAGAACCTGTGGCCATCCCTCCTGTAGTCCCGACACTGCCCTCTGTGGAGAGTTTGCCAGTACAGCAAACCAAGGAGATAACCCCGCCAGCCAAACGTGGCCGCGGAAGGCCAAAAAGAATAACATCAGATAAGTCACCAGCGGTGGTGGTCCCTCAGGCGCCTTCTGCAACTGGTGAAGTGGACATGCAGTTAGAGAAAGGAACTTCGTCTGGGCCTTTAACATCATCTCGTTCTGATTCTTTTGTTTGTTCTGCTGAGGTCGTAGGTACAGTAGGACCCATGAAGCAGTCTGATACAGGGATTGCTCCTAGCTCACAGCCTGCCATCCCTTTATCTACTGGTGTATCCAATTCTCAATCTACTGCTACTTCTGTCTCTGTACCTATACAAGCAAGAGGACAAGGGCGGAAAAATCAAAGTGGAGGGGAAGGACCTAGACGTAGAGGGAAGAAACAGGGTGTGTTGTCATCTCCTAACCTTGGTGGTTCTGTTGGTCCTGATATGAAGGTGAATGAGCAATTAGAAGATAAATCCATGAATCAACCTTCAGCTCAAGCTATCTCTCAGAGTGAAACTGTTTCCAGCATTGCTCCAGTACACTGTCCAAATAATGTATCAGTTTCTGCTTCTTTAAACAGTGGAAAGGATCACCATTTGGGTGTTGGGATGACTTTGAATTCTCAAATTTCCCCTCCTTTGTCCTCTGTAACTCCGGTCACTCAAACTGACTCTACTTGCTCCACTGTTCCTATACAAAGTAAGGGGCAAAGTCGGAAGTCGCAAAATGGAGCAGGAGCTCCCAGGCGCAGGGGAAAGAAACAGGAATCAATATTGCCTGTTATTTCAGATATATCAGGTCATCAGAAATTACATGTAAATTCTAGTCTACAGGTATTGTCAGGCAGTGCATTGGGTGATAAAGCCACTGATGTAAAAAGCTTGCAAGAGAATGATGTTCAAGAATCAAAACATGTTGTCCAGGAGCAGGCATCTCAGAACCTTGTTGATCAGGATCTAAAACTATCAGTAACAACAATTGATTTATCCAAGCAGACAGCGATCTTTTCATCAACTGATGACTCTACTACCAAAGCTCCAGGGCCAGATGTGGAGAGGGTTCAGAATTCCAATGTTCATGATTTTGCTTCTGTGGAAAAGGAGAGTGCTTTTGAAATCACTTCATCCAAGATTAAAATTACTGAGAATTCTGGGAATGAAACTGTCATTGTCCCAACTTTACCTGTTACTGAGGTGCCAAAGGACCAGAATACAGAGGGCAGATCTCATCAAGCTTTAGAAGCTTCAAAAACTGTCCCTTCAATTATTGTTCCTCCAACCAATTCCATGCCTGGTAGTGCAACTATGGAAAGCATTGGTATGCCTTTAGATCATATGACTGCAAAGGTTGTTCCCAGTGTCCCATCAAGCATTTCTTGTCCTTCTACTCTGGGCTCTGAATCTATTCGTCCTTGTCCATCTGAATCTGTGCCAGTGAAAAGGCAAGGTCGTAAAACTCAAAACCGAATGGAGCCACCACGGCGTAGGGGAAAAAAATCAGCTATGGCATTACCTGTTGCTCTTGATGCTCATGCTGGTCAGGATCCTAAACTGAGTCAGCATTCCCATAATTCATCTGGGGATTCAATGATGGGTAAAGCAACTACCCTTGGTAAGCAAGGAGGTGAGGTTGAGGAACAGACAAATGCCACTCAAACTCAACTTTTCCAGATCCATTTGCCAAGTGGTGCAGCTGTTAATGATTCAAAAAGAAAAGAGAGAACCTCCAATTCTGCCCTAACTAAACAGCAGAAAGGTGCATCTACAAGGACTGATAGTGCTCCTGGATCCTCAGATAAGGTTGCTGCTTTTGGCCGAATTCAGAATGTTAATGATGTTGCTCGAGTGATGAAGGAAGTCTTCTCTGGAACTTGCTTGACAATGCCTAGAGCACAGGATTCTGTCCGGAATGAAGATAGGAACAACCCTATAGTACATGTAACATCTAATGCTGCGGTGGAAGCATTGAAAAACCATAGTTTGGAGGGCAAAGAATGTTCTGATATACCAACTGCTGGAGCAGCATGTCTAACTTCAGCCCTTTCGGTGAACAATCTTGATAAACAATCAAAGGAGGTATCCAATAATCAGAAGACTGAGGATAAAGCAAATTCAGATATACCTACTAGTGGAGCAGTGTGTCTGACTTCAGTTGTTCCTTTGGATGGGAATGAAAAACAATCTGGGCCTACATCTGATTCAAAAGTAGTAGTTTTGAATGAGATGCTGACTAATTTCAGTAAACCTGAAACCAGTGCTGGTCGTGGTGATGTTAAAGAAAAGGATGAAGGGACACAAGATCATATTGAACTCTCAACCACTCAGAGTGAGATGGAGGCTCTACAAGCAGGTAATGCCGCCCAAGAGACTGGTGGTTCTTTTAAGATTCTTCCTACTGGTGATGGGTCTTCTTTAGAGAAGTCTTCAAGCTCCTCTCCCCTTGATGTTGGTGGCACTGGATATCCATCAATTCCCTTGAAAACTGACAATTCTAGTAATACTCTTGAATCTAGCCAGGTTGATACTTTCAATCTGGACCATTCAGCCATAGCAGAACCTTCTGGAATCACTGAGAATACTTCTGATAAAAATTTGGCTCCTTATGCTGAATATTCTTCAAAATCTTCACCTCTTGCTTCTTGTAATGATGACTCTGGGTTATTGATGCAGCCTGAAATTGTTGGCGATCAACCTGTAGTGACCCCTTCTAGTCCTGCAACAACCCCTCATTCAAGGACAATGGTAGTTTCTAGTATGTCTAAATGTGCTGAAATTAATTCTGAAAAGGAAACTGAGTATTCTTTACAAGCATCTGCTGAACTTTCTATTGATGTGTCCAAAATTTCCACATCAGCCAACTTTGATAATAATAGTACTGCAGAACCTCCAATCAGGAGCTTGTATCCTACCCCTTCGGGTTTGTTGGAGCCTGAGATTCAGATTACAAATGAAAATAATTCTCAAAATGCATTAGAATCTCACATGAAACGTGGCTCAGAATCACCTGAAATGGAAGGCCTTGGGAGCCCCAAAATTGTTCTTGCAGATCAGAAGCTTTCAGGTCTTGATAATTTTGATGGGGGTAATTCTCAGAAGTTAGGAGAATCTTCAGTGCAATCTCAATTTACCAAATGCCCTGTTGAAGCCACTGTGGAGGGTCCATCGAGTTTTCAGGAAGTTATTGATTTTGAAACTGCTCCTACATCAGCTGCTACTACTTCCATTTTGTGTGAGACTCCACTCCTCAAGGGCCACTCAGAATCCCTCTGCGAGGAAAGAAGGGATAAAGGAGATTCCATATGTGAACAGTTGCATTCAGTTGTTGCTAATCCTTCCAGTAGTGACATGGAAATTGACACATCTGACAGTAACAGAATTAATGTTCCTCATGGTGAGATTGTGCCTGACAATATTTCGTCAAGCATAAATATGTCTTCTTCCTCAGCAAACGAGGGAGAAAAATTCAACAACCATTCCCATGAGGATCTTGTTGATAGGTCAATGTTGTCACGACCTTTTGGGTCAGAAGTTGTAGTGAATGATTCTTTAGGTGTTTCTCAGGTTGATAATCTTGTAGAGGAAATAGTATCTGACACTGCAGTTCTACCCTCATCATCCTTGCTGGAAGAGGAAAATAGGGGATCATCTGAAACAAGTCTAATTAAGAGTTCAGAACCTCTGGAAGAGTCAATGGAGAAGGTTGTGGGCAACAGCTCTATAGTCCTGGAGGAAGCAAAAGTTACTAAAGCAGAAACTGATGTTCAGATGGACTTATCTGATAGTCAGATCTTGCATGAAATTAGACCTGACGCTGCAGTTCTGCCGTCATCATCCTTGGTGAAAGAGGAAAATCATGGATCATCTGAAACAAGCCTAACGAAGGGCTCAGAAGCTCTGGAAGATTCAATGGAGAAGGATGTGGACAACAGCTCTGCAGTCCTGGAGGAAATAAAAGTGAATGAAGCAGAAACTGATGTTCAGATGGACTCATCTGATAGTCAGATCTTGCATGAAAGTTTTGAGGTTTCGGAAGAAAATTTGAATTTTCCTTGTTTGACAAGAAAGGAAGAAAAATCAGGAGGCTCGTCGATGAGGAGCCTATCTAGCAGTTCATTACCATTGGATGAATTGAATGATTCTAAAATCGAGTTGGGCAATGGAAGTATATCTCAGGTTGGTGATGTTCTCCCTGGAGATGATACATCAAAGTTGTGTTTGCCTTCATCTTCCTTGGTGAGTAAGGAAGAAAGGATTAGTTGTATGTCTGATGATGCTTCACAAGGCAATTCATTGTCTCCAAGAGTTCTAGATCGCTCTGATGACTTAAGTGATAAGTTGGCTGTTCCTCAGGTTGACCAGGTTGAGACTATGACTGTCCAGCCTTCATCTTCCCAAGTGGAAGTGGAAGTGGAAGAACAGGCAGGGGTATCTTCTGAGAATAATTCTGTTATGAGATCTGTGCTCCAGGAGGATATGGAAGGCTCCAAGGTGGATCAGAGTAATTGTAAGGTTACATGGCAAGCTGGTTATCTTTTGCCAGAAAAATCAGGTTTGGAAATCATAAACAAACGTTCAAATTCCTCAGTGACTGAATGTGATGACATTGCCAGCCACTCTGAGGAGGGTGATTTATCATTGAAAGAAGCAAAAAATTCTGAAGTTGAAACTAGTGATCAAATGGTGGCATCTAAGGTGTCAGAGGTTGATCCAGAAAGAGATTCTTCCAAAAACATGGAGAAACCTTCATCTTCCTTGGAGACAGAGGAAGATGAGGCTGTTGTGTCATCTGACAAGGTTCCTCTCTGCAGTCCACTAGCACTAAGGGAATCAAGAAAATTTTTGACTCAAGGAGAGAGTTGCAGGGATTCCACTGAGGGTCCTATTACGATTCCATTATCACAACAGGAATCAGATAATTCTGAAGTTGAGACGGCTACTGAAATGGAGACAGCTCAGGTTCCTGGGGTTGATCCCGTGAGACTTACATCCCAAAACATAGATGTAACTTCTTCCTTGGTTATGGTGCAACATAAGACTGATGTGTCATATGATAAGGGTCACCTCTGCACTCCACTAGCTGTTGGGGAACCAAAAGATTGTCTTGATGGTGAGAAGAGTCGTAGTGATGCTGCTGAGGGTCCCATTATGAATCCATCACTACTGCAGGAGTCAAATCATTGTGAAGCTGAGATGGGGGATCAAATGGAGTCATCCCAGGTTGCTGGAATTAGTCCAGAAAGACTTGCAACCAGAGATGTGGATATCCCTTCATCTTCCTTGGGGATTGAGGAAAGTAAGATTGATGTGCCATATGAAAGGGGTCCTCTATGCAGTTTAATAGTGCCAGGGGAACCAAAAGGTTGCGTTACTGGAGAGGAGAGTTGTAGTGATGCCATTGTGGGTAACATTACAAATCCATCACCACTGCAGGAATCAAATCATTGTGAAGCTGAGATGTTTGATCAAATGGAGTCAGCTCAGATTGCTGGAAATAAATCTGAAAGATTTGCATTGAGAAACCTGGTTGTACCTTCATCTTCTGTGGGGTCTGAGGAAAGCAAGATTGATGTGTCATATGAGGGCCTGCTCTGCAGTTCACTAGCACCAGGGGAACCAAAAGGTTGTTTGACCGAAGAGAATTGTAGGGATGCCACTGTGGGTCCCATTACTAACCTTTCATCGCTCCAGGAATCAAGCACTTCTGATGCTGAGATGAGTGAAGGAAACGAGTCACTGGTTGATGGGATGCCTGTAGATGACAAATCTGGAGATGCGGCTGTGACTCCTACTGCAGGAGAGGGAAAAAATGAGTTGGAGGCCTTGTGTGATAAGGGCCCAGCAGGCACCTCTGAAGCACAGTATGAATCAAAAGATTGTAAAGCTGATATGGAGGAGCAGGCAGATATTATTGAGAACTGTGCAGCTGAGAGAGCAAATGTATCACAAACTCCATGTTCCTCAGCCTCAGGCGAAAGGGGAGAGTGCTTATCTGAGAAGGGTATAGTTGGCAGCGAAGTAAGAATGCAGGTATTGAAAGAATCTGAAGCTGACATTGGTGATGAAAAGGATGTTATTAAGGGTTGTTCGGCTGTGCCAGAGACAGCATCAATAGACGGAGTTTCACCTCCATGTCCTTCAGCAGCAGAGGATGATCATGTGGAGAGCTCGGAAGCTGATGTCGCTAACAAAGATAGTGATTTAATGCCTGAAAACGCATTGGAAGACATGGACCAACCATGTTCTTTAGCAGAGAGCTCGAAAGCTGATGTTGCTGACAAGGGTAATCATGTCATGCTAGAAAACTCATTGAAAGACGTAGACCAACCTTGTTCTTCAGAAGTGGAGGGTGAACATGTTGAGAGCTTGGAAGCTGATGTTGCTAACAAGGATAATCGGGTCATGCTAGAAAATGCATCGAAAGACATGGACCAACCTTGTTCTTCAGCTGCAGAGGGTGAAATTGCAGAGGGCTTGGGGGTAGAGCAAGAATTAAAGGAACGTGAAGTGACTGACGATGGAAGGAACATTATTCAAGACTCTGAAATTGTAGACGCAAAAGCACCGGAGAACATGAATCCAGGGGAGGGTGATAATGAACAGAGCTTATCTGAGAATCCAGTGGCTCCGGAAGTCAAAGAACCTGAAACTGAGTAA 7689 0.4339 MLDRLLPKLKATDHRVLFFSTMTRLLDVMEEYLTLKQYRYLRLDGHTSGSDRGALIDLFNRPGSPYFIFLLSIRAGGVGVNLQAADTVDLQAQARAHRIGQKRDVLVLRFETVQTVEEQVRAAAEHKLGVANQSITAGFFDNNTSAEDRREYLESLLRECKKEEASPVLDDDALNDLLARSETELDVFEAVDKKRREDEMAIWKKLVLGQATDGSELMIPLPSRLVTDGDLKNFYEAMKIYDVPKGGVASNVVKRKGEYLGGLDTQHYGRGKRTREVRSYEEQWTEEEFEKMCQVESPDSPKVKEEVVETSCPTNASSSIAATSNAEPVAIPPVVPTLPSVESLPVQQTKEITPPAKRGRGRPKRITSDKSPAVVVPQAPSATGEVDMQLEKGTSSGPLTSSRSDSFVCSAEVVGTVGPMKQSDTGIAPSSQPAIPLSTGVSNSQSTATSVSVPIQARGQGRKNQSGGEGPRRRGKKQGVLSSPNLGGSVGPDMKVNEQLEDKSMNQPSAQAISQSETVSSIAPVHCPNNVSVSASLNSGKDHHLGVGMTLNSQISPPLSSVTPVTQTDSTCSTVPIQSKGQSRKSQNGAGAPRRRGKKQESILPVISDISGHQKLHVNSSLQVLSGSALGDKATDVKSLQENDVQESKHVVQEQASQNLVDQDLKLSVTTIDLSKQTAIFSSTDDSTTKAPGPDVERVQNSNVHDFASVEKESAFEITSSKIKITENSGNETVIVPTLPVTEVPKDQNTEGRSHQALEASKTVPSIIVPPTNSMPGSATMESIGMPLDHMTAKVVPSVPSSISCPSTLGSESIRPCPSESVPVKRQGRKTQNRMEPPRRRGKKSAMALPVALDAHAGQDPKLSQHSHNSSGDSMMGKATTLGKQGGEVEEQTNATQTQLFQIHLPSGAAVNDSKRKERTSNSALTKQQKGASTRTDSAPGSSDKVAAFGRIQNVNDVARVMKEVFSGTCLTMPRAQDSVRNEDRNNPIVHVTSNAAVEALKNHSLEGKECSDIPTAGAACLTSALSVNNLDKQSKEVSNNQKTEDKANSDIPTSGAVCLTSVVPLDGNEKQSGPTSDSKVVVLNEMLTNFSKPETSAGRGDVKEKDEGTQDHIELSTTQSEMEALQAGNAAQETGGSFKILPTGDGSSLEKSSSSSPLDVGGTGYPSIPLKTDNSSNTLESSQVDTFNLDHSAIAEPSGITENTSDKNLAPYAEYSSKSSPLASCNDDSGLLMQPEIVGDQPVVTPSSPATTPHSRTMVVSSMSKCAEINSEKETEYSLQASAELSIDVSKISTSANFDNNSTAEPPIRSLYPTPSGLLEPEIQITNENNSQNALESHMKRGSESPEMEGLGSPKIVLADQKLSGLDNFDGGNSQKLGESSVQSQFTKCPVEATVEGPSSFQEVIDFETAPTSAATTSILCETPLLKGHSESLCEERRDKGDSICEQLHSVVANPSSSDMEIDTSDSNRINVPHGEIVPDNISSSINMSSSSANEGEKFNNHSHEDLVDRSMLSRPFGSEVVVNDSLGVSQVDNLVEEIVSDTAVLPSSSLLEEENRGSSETSLIKSSEPLEESMEKVVGNSSIVLEEAKVTKAETDVQMDLSDSQILHEIRPDAAVLPSSSLVKEENHGSSETSLTKGSEALEDSMEKDVDNSSAVLEEIKVNEAETDVQMDSSDSQILHESFEVSEENLNFPCLTRKEEKSGGSSMRSLSSSSLPLDELNDSKIELGNGSISQVGDVLPGDDTSKLCLPSSSLVSKEERISCMSDDASQGNSLSPRVLDRSDDLSDKLAVPQVDQVETMTVQPSSSQVEVEVEEQAGVSSENNSVMRSVLQEDMEGSKVDQSNCKVTWQAGYLLPEKSGLEIINKRSNSSVTECDDIASHSEEGDLSLKEAKNSEVETSDQMVASKVSEVDPERDSSKNMEKPSSSLETEEDEAVVSSDKVPLCSPLALRESRKFLTQGESCRDSTEGPITIPLSQQESDNSEVETATEMETAQVPGVDPVRLTSQNIDVTSSLVMVQHKTDVSYDKGHLCTPLAVGEPKDCLDGEKSRSDAAEGPIMNPSLLQESNHCEAEMGDQMESSQVAGISPERLATRDVDIPSSSLGIEESKIDVPYERGPLCSLIVPGEPKGCVTGEESCSDAIVGNITNPSPLQESNHCEAEMFDQMESAQIAGNKSERFALRNLVVPSSSVGSEESKIDVSYEGLLCSSLAPGEPKGCLTEENCRDATVGPITNLSSLQESSTSDAEMSEGNESLVDGMPVDDKSGDAAVTPTAGEGKNELEALCDKGPAGTSEAQYESKDCKADMEEQADIIENCAAERANVSQTPCSSASGERGECLSEKGIVGSEVRMQVLKESEADIGDEKDVIKGCSAVPETASIDGVSPPCPSAAEDDHVESSEADVANKDSDLMPENALEDMDQPCSLAESSKADVADKGNHVMLENSLKDVDQPCSSEVEGEHVESLEADVANKDNRVMLENASKDMDQPCSSAAEGEIAEGLGVEQELKEREVTDDGRNIIQDSEIVDAKAPENMNPGEGDNEQSLSENPVAPEVKEPETE 2562
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 862 878 - -
Glsi12g2607 2562 Pfam Snf2-ATP coupling, chromatin remodelling complex 194 290 IPR029295 GO:0042393
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 423 463 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 388 404 - -
Glsi12g2607 2562 SMART SnAC_2 193 290 IPR029295 GO:0042393
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1129 1183 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 827 843 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1456 1500 - -
Glsi12g2607 2562 Coils Coil 143 163 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1625 1642 - -
Glsi12g2607 2562 SMART helicmild6 27 100 IPR001650 -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1961 1984 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 555 589 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 905 944 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1766 1785 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1962 1984 - -
Glsi12g2607 2562 Pfam Helicase conserved C-terminal domain 3 88 IPR001650 -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1643 1670 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 2503 2524 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 802 893 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1550 1572 - -
Glsi12g2607 2562 ProSiteProfiles Superfamilies 1 and 2 helicase C-terminal domain profile. 1 178 IPR001650 -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1033 1055 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 2380 2408 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 345 404 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 2483 2562 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1871 1943 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1092 1113 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1766 1781 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 2286 2305 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1098 1113 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1910 1940 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1671 1686 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1147 1162 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1479 1498 - -
Glsi12g2607 2562 Gene3D - 1 196 IPR027417 -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 420 495 - -
Glsi12g2607 2562 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 2 159 IPR027417 -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1879 1899 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1169 1183 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 924 941 - -
Glsi12g2607 2562 CDD SF2_C_SNF 1 110 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1620 1718 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1550 1570 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 1456 1472 - -
Glsi12g2607 2562 PANTHER SNF2/RAD54 HELICASE FAMILY 1 88 - -
Glsi12g2607 2562 MobiDBLite consensus disorder prediction 555 602 - -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Glsi12g2607 Glsi-ChrGlsi12 39649319 39664699 Transposed
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Glsi12g2607 2 158 RAD5 or RAD16-like Gene Family AT5G43530 34.706 1.23e-16 85.1