Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Mupr9456g00002 ATGCGAACTAACATGCAAGGCAATAATACACTAATGTTGCATTTATTCTACACTCTCTTGCTGTTTCTTGGAGTGTCAAGGTCATTAGCAGAGAATGGTAGTAACGATGATACTAACCGTAAACAAGTTTACATCGTCTATATGGGAGCCGCGGATTCCACAAATGCTTCTCTTCGGAATGACCATGCTCAGGTTCTCAATTCAGTGCTAAGAAGGAATGATAAGGCTCTAGTACGGAACTATAAATACGGGTTCTCAGGCTTCGCAGCTCGTCTATCAAAAGAGGAGGCAACCTCAATTGCTCAAAAACCTGGTGTCGTGTCTGTTTTCCCTGACCCTCTTCTGAAGCTCCACACTACACGTTCCTGGGATTTCCTCAAATACCAAACTCACGTCAAAATTGACACCACACCAAACACTGTCTCCAATTCTTCTTCCTCCTCAGATATCGTCCTTGGCATCTTAGACACAGGTATATGGCCAGAGGCGGCGAGTTTTAGCGACGAGGGAATGGGTCCTGTTCCATCCAGTTGGAAAGGCACCTGCATGAAATCACAAGACTTCAATTCCTCTAATTGTAACAGGAAGCTAATTGGCGCAAGATATTACGCTGACCCTAATGGGAACGATGATGGGAGCGACAACACGCCGAGGGATTCGCTTGGTCACGGGACCCACGTGGCATCGACGGCGGTGGGTGCCGCCGTGAGTAACGCATCGTACTACGGTCTGGCAGCGGGGAGTGCAAAGGGTGGGTCCACAGAGTCAAGATTGGCAGTTTACAGAGTGTGTTCTAACTTTGGGTGTCGTGGGTCGGCCATTCTGTCGGCGTTCGATGATGCCATTGCCGACGGAGTGGATGTGCTGTCGCTGTCGCTCGGTGCATCCCCTGGCTTCCGACCCGATTTCACGTCCGACCCCATTGCGATCGGAGCATTCCACGCCGTCGAACGCGGCATCGTGGTGGTCTGCTCCGCCGGGAATTCTGGACCGAGCTCGTACACGGTTGTCAACGACGCACCTTGGATTTTAACCGTTGCAGCTTCCACCATCGACAGGGATTTTCAGTCCAATCTTGTCTTGGGTGGTAACAAAGTCATCAAGGGGAGAGCCATAAATTTCTCTCCTCTTTCAAATTCTGCGGAGTATCCAATGATATATGGTGAGTCTGGCAAGGCGAATAGCACCACCTTAAATGAAGCAAGACAATGCCACCCAGATTCATTAGATGGAAATAAAGTCAAAGGGAAGATTGTGATTTGTGATGGCCAAAATGATGATGAATATTCAACCAGTGACAAAATTGACACGGTGAAAGCGGTGGGAGGAATAGGTCTGGTTCATATTAGTGAAGAAAATGAAGCAATAGCGTCAAATTATGGGGATTTCCCAGCAACAGTAATAAGCTCAAAAGATGGCGCTACAATACTCCAGTACATCAATTCAACCAGCAATCCAGTGGCAACAATTCTACCAACAGCTACAGTTATTGATTATAAGCCTGCTCCCGTGGTGCCAAGCTTTTCATCAAGAGGACCTTCAACGCTTTCAAGCAATATTCTCAAGCCTGATATTGCAGCACCGGGAGTTAACATTCTCGCGGCATGGATTGGAAATGACGCAGGATATGTTCCAAAAGGAAGAAAACGTTCACTTTACAACATAATCTCAGGGACTTCCATGGCTTGTCCACATGTTTCAGGGCTTGCAAGCACTGTCAAAACACGCAACCCCACCTGGAGTGCCTCCGCAATCAAATCTGCCATCATGACTTCAGCAATTCAAAATGACAACATGAAGGCACCCATAACAACGGATTCAGGATCGGTAGGCACACCTTATGACTATGGAGCAGGGGAAATGACAACATCTGAATCATTGCAGCCAGGGCTAGTTTACGAAACCGACACCATTGACTACTTGAACTTCTTGTGTTACATTGGACTTAACGTAACCACGGTTAAGGTTATCTCCAGAACTGTCCCTAATAGCTTCAGTTGCCCCGAGGATTCCAGTTCTGATCTCATCTCCAACATCAACTACCCTTCCATAGCAGTAAACTTCACTGGCAAAGGAGCTGTGAACGTGAGTAGAACTGTTACAAACGTTGGTGAAGAAGATGAAACTGTGTACTCCCCCGTTATCGATGCTCCCAGTGGAGTAAAAGTCACATTAACTCCAGCAAAACTTGAGTTTACCAAAAGTAGTAAAAAAGTAAGCTACCAAGTTATTTTCTCCTCAACTTTGACCTCCTTAAAGGAAGATCTGTTTGGATCTATTACTTGGAGTAACGCGCCAAGGTCATCAGCGGGGAATGCTAATAACGATGACACCAACCATAAAGGAGTTTATATCGTGTATATGGGAGCCGCCAAGGATTCAACAACTTCTCTTCGGAATGACCACGCTGAGATTCTTAATTCAGTGCTAAGAAAGAATGAGAAGGCTCTAGTACGGAACTACAGACACGGGTTCTCAGGGTTCGCAGCTCATCTATCAAAAGAGGAGGCAACCTCAATTGCTCAAAAACCTGGTGTCGTGTCTGTTTTCCCTGATCCCATTCTGCAGCTCCACACTACACGTTCCTGGGATTTCCTCAAAAACCAAACATACGTCCAAATGGACACCAAACCAAACACGGTCTCCAATTCTTCTTCCTCCTCAGACATCATCCTTGGCGTATTGGACACAGGTATATGGCCAGAGGCGGCGAGTTTTAGCGACGAGGGAATGGGTCCTGTTCCATCCCGTTGGAAAGGCATCTGCATGGAATCACATAACTTCAATTCCTCCAATTGTAACAGGAAGCTAATTGGGGCAAGGTTTTACCCTGACTTTGGTAATACCGGCGACGACACTCCAAGGGATTCGGATGGGCATGGGACCCACGTGGCGTCTACGGCGGTGGGTGCCATCGTGAACAACGTAACGTTCTACGACCTGGCGACGGGGAACGTAAAGGGTGGGTCCCCGGAGTCAAGATTGGCGGTTTACCGAGTGTGTAAGTCAAATGGGTGTATTGGGTCGGCCATTCTGGCGGCGTTTGACGATGCCATTGCCGACGGAGTGGATGTGCTGTCGCTGTCGCTTGGTCCATTCCCTTCTATGAATCCCGACTTGACGTCCAACGTGGTTGCCATCGGAGCATTCCACGCCGTCGATCGGGGCATCGTGGTGGTCTGCGCCGCCGGGAATTCCGGAACGAGCTCCTACACGGTTGTCAACGACGCACCTTGGATTTTAACCGTTGCAGCTTCCACCATCGACAGGGATTTTCAGTCCAACGTTGTCTTGGGTGGTAACTTAATCATCAAGGGCAGAGCCATAAATTTCTCTCCTCTTTCAAATTCTCCCGTGTATCCAATCATATATGCTGAGTCTGCCAAGGCGAATAAGAGCACCTTAGATGAAGCAAGACAATGCCAGCTAGAATCATTAGATAGAAATGAAGTCGAAGGGAAGATTGTGGTTTGCGTAGGCGGAGATAATGAATATCTTTATTCAACTGTGGACAAATTTAACACGGTGAAAGGTGCGGGAGGAATAGGTATGGTTCATATTAGTGATTATCCTGGATCAGTTGCAGAAAATTATGTGGACTTACCAGCAACGGTGGTAAGATCCAAATATAGCGACACAATCCTCCAATATATCCGGTCAACCAGCAATCCAGTGGCAACAATTCTACCAACAGTTACAGTTCTTGATTATTTCCCCGCTCCCGTGGTGCCAAATTTTTCATCAAGAGGGCCTTCACCGCTTTCCAGCAATATTCTCAAGCCTGATATTGCAGCACCGGGAGTTAACATTCTCGCGGCATGGATTGGAAATTACCTACAAAATGTTCCACAAGGAAGAAAGCCCTCACCATACAACATAGACTCAGGGACTTCCATGGCTTGCCCACATGTTTCAGGGCTTGCATGCAGTATCAAAACACGCAACCCCACTTGGAGTGCCTCCGCAATCAAATCTGCCATCATAACTACAGCAACTCAAGTCGACAACTTGAAGTCACACATAACAACGGATTCGGAATTGGAAGGCACACCTTATGACTTTGGGGCAGGGGAAATAAAAACAACCGAATCATTGCAACCAGGGCTAGTTTACGAAACCAGCATCATTGACTACTTGAACTTCTTGTGTTACATTGGACTTAACACAACCACAATTAAGCTCATCTCTGGAACTCTCCCTGATGATTTCAGTTGCCCCGAGGATTCCAGTTCCGATCTCATCTCCAACATCAACTACCCTTCCATAGCAATAAACATCACTGGAAAAGCAACCGTGAGCGTCACCAGAACTGTCACAAACGTAGCTGAAGAAGATGAAACAGTGTACTTCTCCTCAGTCGATGCTCCCACTGGAGTAAATGTCACATTAATTCCAAGAGCACTTGAGTTTACCAAAAGTAGGAAAAAAATAAGCTACCAAGTTATTTTCTCCTCAACTTTAACCTCCTTGAAGGAAGATCTGTTTGGATCTATTACTTGGAAGAACGGTGAATATATAGTTCGAAGTCCTTTTGTATTAACTAAATAG 4548 0.4666 MRTNMQGNNTLMLHLFYTLLLFLGVSRSLAENGSNDDTNRKQVYIVYMGAADSTNASLRNDHAQVLNSVLRRNDKALVRNYKYGFSGFAARLSKEEATSIAQKPGVVSVFPDPLLKLHTTRSWDFLKYQTHVKIDTTPNTVSNSSSSSDIVLGILDTGIWPEAASFSDEGMGPVPSSWKGTCMKSQDFNSSNCNRKLIGARYYADPNGNDDGSDNTPRDSLGHGTHVASTAVGAAVSNASYYGLAAGSAKGGSTESRLAVYRVCSNFGCRGSAILSAFDDAIADGVDVLSLSLGASPGFRPDFTSDPIAIGAFHAVERGIVVVCSAGNSGPSSYTVVNDAPWILTVAASTIDRDFQSNLVLGGNKVIKGRAINFSPLSNSAEYPMIYGESGKANSTTLNEARQCHPDSLDGNKVKGKIVICDGQNDDEYSTSDKIDTVKAVGGIGLVHISEENEAIASNYGDFPATVISSKDGATILQYINSTSNPVATILPTATVIDYKPAPVVPSFSSRGPSTLSSNILKPDIAAPGVNILAAWIGNDAGYVPKGRKRSLYNIISGTSMACPHVSGLASTVKTRNPTWSASAIKSAIMTSAIQNDNMKAPITTDSGSVGTPYDYGAGEMTTSESLQPGLVYETDTIDYLNFLCYIGLNVTTVKVISRTVPNSFSCPEDSSSDLISNINYPSIAVNFTGKGAVNVSRTVTNVGEEDETVYSPVIDAPSGVKVTLTPAKLEFTKSSKKVSYQVIFSSTLTSLKEDLFGSITWSNAPRSSAGNANNDDTNHKGVYIVYMGAAKDSTTSLRNDHAEILNSVLRKNEKALVRNYRHGFSGFAAHLSKEEATSIAQKPGVVSVFPDPILQLHTTRSWDFLKNQTYVQMDTKPNTVSNSSSSSDIILGVLDTGIWPEAASFSDEGMGPVPSRWKGICMESHNFNSSNCNRKLIGARFYPDFGNTGDDTPRDSDGHGTHVASTAVGAIVNNVTFYDLATGNVKGGSPESRLAVYRVCKSNGCIGSAILAAFDDAIADGVDVLSLSLGPFPSMNPDLTSNVVAIGAFHAVDRGIVVVCAAGNSGTSSYTVVNDAPWILTVAASTIDRDFQSNVVLGGNLIIKGRAINFSPLSNSPVYPIIYAESAKANKSTLDEARQCQLESLDRNEVEGKIVVCVGGDNEYLYSTVDKFNTVKGAGGIGMVHISDYPGSVAENYVDLPATVVRSKYSDTILQYIRSTSNPVATILPTVTVLDYFPAPVVPNFSSRGPSPLSSNILKPDIAAPGVNILAAWIGNYLQNVPQGRKPSPYNIDSGTSMACPHVSGLACSIKTRNPTWSASAIKSAIITTATQVDNLKSHITTDSELEGTPYDFGAGEIKTTESLQPGLVYETSIIDYLNFLCYIGLNTTTIKLISGTLPDDFSCPEDSSSDLISNINYPSIAINITGKATVSVTRTVTNVAEEDETVYFSSVDAPTGVNVTLIPRALEFTKSRKKISYQVIFSSTLTSLKEDLFGSITWKNGEYIVRSPFVLTK 1515
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Mupr9456g00002 1515 ProSitePatterns Serine proteases, subtilase family, serine active site. 558 568 IPR023828 -
Mupr9456g00002 1515 Gene3D Peptidase S8 propeptide/proteinase inhibitor I9 769 858 IPR037045 -
Mupr9456g00002 1515 Gene3D Peptidase S8 propeptide/proteinase inhibitor I9 26 118 IPR037045 -
Mupr9456g00002 1515 Gene3D Peptidase S8/S53 domain 889 1378 IPR036852 GO:0004252|GO:0006508
Mupr9456g00002 1515 ProSiteProfiles Serine proteases, subtilase domain profile. 862 1365 - -
Mupr9456g00002 1515 SUPERFAMILY Subtilisin-like 118 629 IPR036852 GO:0004252|GO:0006508
Mupr9456g00002 1515 MobiDBLite consensus disorder prediction 209 223 - -
Mupr9456g00002 1515 Gene3D - 1089 1235 - -
Mupr9456g00002 1515 Gene3D - 352 497 - -
Mupr9456g00002 1515 CDD Peptidases_S8_3 115 594 IPR034197 -
Mupr9456g00002 1515 ProSiteProfiles Serine proteases, subtilase domain profile. 122 628 - -
Mupr9456g00002 1515 Pfam Subtilase family 887 1343 IPR000209 GO:0006508|GO:0008236
Mupr9456g00002 1515 Pfam Fibronectin type-III domain 678 766 IPR041469 -
Mupr9456g00002 1515 Pfam Fibronectin type-III domain 1416 1512 IPR041469 -
Mupr9456g00002 1515 Gene3D Peptidase S8/S53 domain 149 640 IPR036852 GO:0004252|GO:0006508
Mupr9456g00002 1515 Gene3D - 644 768 - -
Mupr9456g00002 1515 Gene3D - 1382 1515 - -
Mupr9456g00002 1515 FunFam Subtilisin-like protease SBT5.3 772 858 - -
Mupr9456g00002 1515 MobiDBLite consensus disorder prediction 204 224 - -
Mupr9456g00002 1515 SUPERFAMILY Subtilisin-like 858 1368 IPR036852 GO:0004252|GO:0006508
Mupr9456g00002 1515 ProSitePatterns Serine proteases, subtilase family, histidine active site. 223 233 IPR022398 -
Mupr9456g00002 1515 ProSitePatterns Serine proteases, subtilase family, serine active site. 1296 1306 IPR023828 -
Mupr9456g00002 1515 FunFam Subtilisin-like protease SBT1.5 889 1099 - -
Mupr9456g00002 1515 FunFam subtilisin-like protease SBT1.5 352 497 - -
Mupr9456g00002 1515 Pfam Subtilase family 147 619 IPR000209 GO:0006508|GO:0008236
Mupr9456g00002 1515 Pfam PA domain 404 476 IPR003137 -
Mupr9456g00002 1515 CDD PA_subtilisin_like 358 490 - -
Mupr9456g00002 1515 PRINTS Subtilisin serine protease family (S8) signature 887 906 IPR015500 -
Mupr9456g00002 1515 PRINTS Subtilisin serine protease family (S8) signature 956 969 IPR015500 -
Mupr9456g00002 1515 PRINTS Subtilisin serine protease family (S8) signature 1295 1311 IPR015500 -
Mupr9456g00002 1515 ProSitePatterns Serine proteases, subtilase family, histidine active site. 960 970 IPR022398 -
Mupr9456g00002 1515 CDD PA_subtilisin_like 1095 1228 - -
Mupr9456g00002 1515 PANTHER PROPROTEIN CONVERTASE SUBTILISIN/KEXIN 44 764 IPR045051 -
Mupr9456g00002 1515 FunFam Subtilisin-like protease SBT1.5 149 361 - -
Mupr9456g00002 1515 Pfam Peptidase inhibitor I9 783 858 IPR010259 -
Mupr9456g00002 1515 Pfam Peptidase inhibitor I9 43 118 IPR010259 -
Mupr9456g00002 1515 CDD Peptidases_S8_3 855 1332 IPR034197 -
Mupr9456g00002 1515 FunFam subtilisin-like protease SBT1.5 1089 1235 - -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Mupr9456g00002 Mupr-Chr9456 6738 23970 Dispersed/Tandem
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Mupr9456g00002 37 765 Subtilisin-like Serine Gene Family AT1G20150 53.476 0.0 771
       

Pathway information


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Mupr9456g00002 K25898 - gmx:100820194 1302.73