Csor.00g252750 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGGACTTCAATTACGCCTTCATCTCTCTGGTTGTTCTTCTTCCTCTTGCACTACTCATTTTCCTATACCTAATTGTTCGTCCTCGCTCCGTTAAAATTCCTTTGAAGAATCGCCATGTCTTCATTACCGGCGGATCGAGCGGAATCGGGCTGGCGTTGGCACACCAGGCCGCATCGGAGGGCGCGCGAGTCTCCATTCTTGCGCGCTCTCTCAAGAAGCTCGAGGAAGCGAAGGACGCGATCAGACTCTCCACTGGTATTGATGTGGCGGTCTTCGCTGCCGATGTTCGAGATTACGATGCTATTTCCAAGGCTGTAGATGAAGCCGGGCCGATTGACGTTCTTGTTGTGAATCAAGGCGTGTTCGTACCTCAGGAGCTGGCAGAGCAAGATATGGATGAGGTGAAATTCATGTTAGATGTTAATTTGTTGGGCGCATTTCACATGATTAAGGCTGCCCTGCCTACGATGAAGAATAGAGTAGACCGTCGACCCGCCTCGATCGCTCTCATGTCTTCTCAGGCCGGTCAGGTAGTTGTGTTTCTATCTGCTTTCTACTTTATTGGGCAATTGCATTGATTATTTTTTAATATTCAAGTGACGCTTTAACATGTTGAAGGGTCAATTAATGAGCTCTCGTGGTGGTATGAGGTATGCGAGTAAATTATGTGCGCACACATAAAGGAGGGCGAATTAAGGCGCATAGATTGTTTACTGCTAGTATATAGGGTGTGCTTGGTCATAGTCATAGTGTTTAATCACCTCAAGTCTTTTTGATAGTATGAAAATACTTTGAATGGTTTGAGAGGAAGCATTTGATCAAGTACAAATAGAAAAAGTGTTGCCAAGTGCCAACTACTACTCTAGAGTGAACTTCTTCGATTGTTAGGGTCAATTTAATGACATTGATAACGTGCAGACACTCGCTGAGTTGAAAATTCAGTAGAAGTGGTAATCCTTTACTCACGAATTCCTATTGTAAATATGAGTAGGTGGGTGTTTATGGCTACACGGCGTATTCAGCTAGTAAGTTTGGGCTTCGTGGTTTGGCAGAAGCCTTGCAACAGGAGGTTATAGGAGATAACATACATATTTCTCTTATATTCCCTCCAGACACTGACACTCCTGGATTAGTAGAAGGTATGTATAAAGCAAGACCTGGTTTACCTTATTTTATTGTTCTGCTAGTCCTCAAGCAGGGTTTTAATATTTACTCAGTGGGTTGGATTTTTTAGCTCAGTTTTCAGCCCATTGGTTTAGGTTAGGATATGAGGTAAATGGTTGAAAGATAAACTAATTAGGGTATTACATGGCTAGGATTTATTTGAGCTAGTAGCCCTCTTCTTTGGATATCTCAGGTTATATGCTATTTTGAAGGTTGCATTGACAGAAATCCTTCAATTTATTATATAGAATTTTTTTTTAGTTTGTTTCTCCTTTTAAAAGTTACCTATCCTTAATCGCAGAGGAAAAGAAAAGGCCTGAATTGACCAATATCATTGCCGCTGGAGGAGGCAGGATGAAAGCTGAGTTAGTTGCCAAAAAAGCTTTGAATGGCATTAAATCTGGTAGCTTTATAATTCCCTGCAACTTTGAAGGAGCATTATTGTCCGTAGCAACTGCTGGCTTATCTCCTCAGAGATCTTGCTTGATGGCTTTCCTTGAAGTTGTTACTGCTGGGATAATAAGGATTGTGGGCTTGTGTTTTCAATGGGTTTGGTATGATAGTATTCAAAAATGGCATGCACAGAAAAAAAGTAAGTATTCATTCAAGTGATGAAACTATGAGCTTGTTCAATCCCTTGATTAATGTTAAGTTCTATAATTGTTTTTCTTTTATGGCACTCATTATTGCGCAAGAGATCTGGTTAAAATGCAGTCAAACTTTCACATAGTATCAAAAACTAATCAGATTTTGAATTACACAGTTATGCTATCACAGGTTCTTGTTTTTATTTATTTAATTTTTTTTTCCTTAAGATCACAATCTTCTTTGTCGTCTAATTTCTAGCATATGACGATGCGAGTGGTTTTGTTGTCCTGATTTCTCGTCAGCTGCCTTTCTAAACTCACTCCATTTTGAATGTCATATTACATCAGTATACTAATTATCTTATCTTTTGCCTTAAATTCTTATACCCTCAATGTCTGTTACAACGCCTCTAAGGCTGATCTATGCAGTGAATTAACTAGTGACAAATATCTGGATAATCCTGGAACTTGACACTGTCTTTTCAGTTTGCTCATTGATAGAAAACGGCTAGACTTGCATATAGTGCATTTGTTTTTGCATTTCTCCATCTGATTGTAACTTCAAGCCATTTGTTGAGTAACCTTATCCATGTCCTATTGCCAGGAATCTAGAAGATACGGCTGGTTTTTTCACAACAATTTCTTTCATTTATGGTTATTAGCTCCAAGTTCTCTCCTCCGAATTCTGAAACAACTGGAAGTAAAGGCTCGAGCCCGCTCTGATAAGTCGAACATTAGTTCAATATTTGGTGGGCAAAAGGTCAGGGATGACAGATTCAGTAGCAGTTCTCTCTCTTCCCCCAGTTTGACAGTAAGGCTTTCACGGTTGTTTACTCTTTTTCTCTCATGTTTTTTTAAGGTAGATCAGCAGCTGTAGGAACTGGATTTTCATCCCATCTTGTTAGGGTATCTTTTCTTACTGTATGCCATAGGGGGAAGTTGAATTAAGTTTCAAGAACATAATTTGATCAAGTTTAGACCTTTATGAGAGCTTTATCTTACTACAAACGGCAGAATAAGAGATTTTTCTTAGCAAATTAGTTGTGTTATTTGACAATTAGGCGTACACCAACGCCACTGCAAAACCATATCGAGTCTATTACAATTCTTGCTTGCTTCTTTTAATTTGACAGGAAGCAGCTGGAGATGGAGGGATTCTATGTATTGACTATTCTGACATGTTATTTCTAATACCAATTTCATAGTTAAATGTTAAATGAAAAGTGGGGACTTGGGAAATAATAAGTCTTCTAAATTCAGCCCCTATATGAACATGGGCTGAAATCTAATCTCATTCAACCATGATAGCTTGACCTTTGTAAAGGCAACTTAGGATTATGTTGTGTACCTTTACGAAGGAACTGCCATTGTTTGTTTTTTACAGGAAAGCCTGCATCAGAGCCCTTCAGTTATGTCTGATAGCCCGTACGTGGGGATCGACAAGTTTCTCTCTAGTATTGTCTATACGTGCAAGTAGGCTTATTGACTGAGCTCATGTTACGTCAATTATGTCGATTTCAACTAGCCAAATTGACTTTTCGTTTTGCTTTGCTCACTTCTAGTTCATAAACTATTTTGAATGGTCAAGTTTGAAATGAAACTTTCGATGACAGTACAAGCGCATAATCAAAATTTGTTACATATACCATTATTTTACAAGTTGCCATATTATATCTCTTTACCATTAATTTTTAATAAAAATTTTAATGAAAAAATAATTTTTTTTGAAGACTAATAACGGAATTAAAATTTATGTATTTTAAGAATTAATAATCAATTCAAGCAAAACTCAAGTAGGATCTATGCATTATCAACAAATTATAAAATAAATTCATTTTTTATAATTCTTTTAAATTGAAAAATTGGTATGAAGTAAATGTTTCTGTAAACTTAATTTTGAAATTAACAAATAAAAAATGTAATTTTTTTTTGTTTAAAAAAAAGTAAAAAAAAGTTTTAAAAATGTGATAATTTACCCAAAATTTTACCTTATCCAATACCCTTCTGAACTTATTTGAGACGATTGGGTTCCACAGTGCTCCGCCGCTCGCAGAAGCAAGACGGCGGTTGCTTCACCACCGGCGCCGGGAACTCTCCATTACGACCCGACTCCCCATTTTTCTTACACCCTCTTCATCTCCTCTTTCCTCCTTAATAACCCATCCTGTATTGCGTAGGCGCGGGATTCCATTTCCAATGGCCGCAACGCTTCTTCCGTCTACCAAAATTCCTCCCCCTTGGCTGCCCGTCTCATCTGAACGCCGCTATCCAATTTATTTACCCAAACTTATCAATAGCAATGGACCCATATGCTCCACCCCCAAATTTAGGCCTCTGAAAGCATTTATGAGCTCATCTTCTTTAAACAATGCCGTCGATTCTAATTTCGAGGCTTCCTCTCTCCGCGAGATCTGTAATGGATATGTTCCCGATCATATATTGGACAGGTAAGTGTCCATATTCCTCCATATCATGTGGGTTCCTTCTTAATTTATCATTTCTAATATTATGTCTTCTGGGGTGTTTTCTTTTCCCTTAATTTTCTTCTCTAAAATGATGTAGAGCTGAGGAAATTGGATTTGTTGCCCCAACTGGTGTGCAGAGGCAAGCTCTTCCAGTTCTGTTTTCTGGTCGGGATTGCGTGCTTCATGCGCAGGTCAAATCTATGTATTTCAAGTAAAATTCCTGCAGAATGTGGATGCTTAGTATTGTTTGTTTGTGTAAATTCTGTATATGGTTCTTTGCTTACTCTTATCCTTTTAGACAGGTTCTGGGAAGACGCTGACATATTTGCTATTGATATTTTCTGTAATCAACGCCCAGAAATCAGCTGTACAAGCACTGATTGTAGTACCCACCCGGGAGCTTGGAATTCAAGTAAGATTGGACTTTGTATCTTCCACTAATTTCATTTGTACTTATCTTTCATTCTGTAGTTCTGAAATCTGTTTTCTATTGCTGTTCTAAATGTGGGGGCGGGGTGTTTGGTTGATGCTTCTTATATGTTGATGGTAATGTTGTATTTGACCTGGTGGAATGGATGCCAGGTTACTAAAGTTGCTAGGATGTTAGCTGCAAAGCCTGCAACGGCGGATGAAGTTGGGGAGAAATCTTATGTTGTCATGGCTCTTTTAGATGGAGGCTTGTTGAGAAGACACAAGACTTGGTTGAAGGTGCTGCATTTGTCTCTTTTCTTCGTGCATAAAGTTTATTTGCATAAGTAGAAGTGTTTTGGCTAGATGGTTTGCAAAAAGTTGAATTACTTGTTGACAACATACGTTGTCTTGGCTTCTAATTGCATTGTCATCGGGTTTCGTTTCGAATTTCTTCAATTCGACACATGACGTTTGTAACGGCTCAAACCCACCGCTAACAGATACTGTCCTCTTTGGGTTTTCCCTTTCGGACTTCCCCTCAAACCTTTAAAACACGTCTACTAGGAAAAGGTTTCCACACCCATATAATGGGTGTTTCATTCTCCTCCTCAACCAATGTAGGATATCACAATCCACCCCCCTTCAGGGCCCAACGTCCTCGCTGACACTCGTTCCTTTCTACAATCGATGTGGAACCCTCACCAAATCCACTTCCCTTCAGGGCCTAACATCCTTAACTGGCACACCGTCTCGTATCTACCCCCTTTCGGGGAACAACCTCCTTGCTGGCACATCGCTTGATGTCTGGCTCTGATACCATTTGTAACAGCCCAAGCCCACCGCTAGCAGATATTATCTTCTTTAGGCTTTCCCTTTTGGGCTTCCCCTCAAGACTTTAAAACGTGTCTGCTAGGGAAAGGTTTCTACACCCTTATAAAAGTTGTTTCGTTCTCCTCCCCAACCAACGTGGGATATCACAACCTTAGATTGTTTCTTTCCGATTCTCTTCACTTTCTTGGCTTGTGGTTAATAGTAAAGAAGTTTTCATCTAGATGGTAAGTTTGAGATATTAAAATTTTCAGGCAGATCCCCCTTCTATACTGGTGGCAACAGTAGGAAGCTTGTGTCAAATGGTTGAGAGGCGATTTCTTGATCTCGCCTCACTAAAGGTGCTGATAATTGACGAGGTACTTGCACAAAAAAAAGTTATTTTCAGTAAGCTTTTGGGTCATACTTTCATGACAAATCACGTAATTGGAAGGTCGTGTAGCTATAAACTGCTGATGAAGTAAGCTCATTCGAAACGTTTATTTCAAGGAATTGACGTTTTTTTTCCGCTCGTTTGCCAGGTTGATTTCATGTTTAGTTCCTCAAAGCAAGTTAGTTCTCTGAAGAAAATCTTGACATCATATTCTATGTTCAGTAATCGTCAGACTGTGTTTGCAAGTGCATCAATTCCCCAGCACAGGCATTTTCTTCAGGAATGCATACAGCAGAAGTGGACAAAGGTGTGTATATGGATGTCTTTTTGGTTACTTCCAATATGTGATGCAATTCAGCCATTAGTTTTATCTGCTTGTTAGAACTTTCCCTCTCTGTCTTGCAGAATAATGTAATCCATGTTCATATTAACGCCGTTCAGCCCATGCCATCGTGTCTACTCCATAGATTTGTGGTAAGAGATTTTATTGCTCATTCAGAAGTAATTATCCTCGGCCATCTCACTGGATATAGAGTTTCTTCTTTCTAATCATTTTGAGATGTAACTTGCTTAGATATTACCTTTTGTTTGACAGATGTGTGACAAGAACAAAAAACACCAAACCTTCCTGAGGGTACTACTCACAGATAAACCTCAGTCTGCAATCATTTTTGTCAGTGAGCAGGTTCGTGTTGATTGCCTTTTAAGTGAGATAAATAAGTACAATATTCCAAACTGCTATTGTAACAATTCAAGCCTATCGCTAGCAAATATTGTCCTCTTTGGTGTTTCTGTTTCGGGTTTGTTCTCAAGGTTTTTAAAACGCATCTTCTAAGGAGAGGTTTCCACACCCTTATAAGGAATTCTTCGTTCCCCTATCCAACCGATGTGGGATCTCACAATTCACCCCCCTTAGGAGCCCAGCGTCCTTGTTGGTACACCACCCGATGTCCGACTTTGATACCATTTGTAACAGCCGAAACCCACCACAGATATTGTCCTCTTTGGGCTTTCCCTTCCGAGTTTCCCTTCGAAGTTTTTTAAGATGCGTATTCTAGGGAGATATTTCCACACCCTTATAAGGAATGCTTCGTTCCCCTCTCCAACCGATGTGGGATCTCACAATCCACCCCTCTTGGGAGCCTAGCGTCCTTGTTGGTACATCGCCCGGTGTCTGACTTTGATACCATTTGTAACAGCTCAAGCCCACCGCATATATTGTCCTCTTTGGGCTTTTCTTTCCGGGTTTCCCTTCAAGGTTTTTAAAACGTGTGTTCTAGGGAGAGGTTTTCACACCCTTATAAGGAATGCTTCGTTTCCCTCTCCAACCAATGTGGGATCTCACAGCTATTTTCGCTTGAAGCTTTCAGATTGTTCATGGTTTACTATGCCATATCATATTTGCTACAAATCATCAATGAATCGAGGATCTTTTTTTCTTATGGGCTTTTTTTGTAATGTGGTTCCAAATATCATCTTCTATCGCCCTTGAAAGATTAAAATCGAGAAAACGTTTAATCGCAAATCATATTAAACTATAAGCATGTCTGTAGCTACATATCAATGCCCATTATAGGTTCATATTTTTTAGTCTTGAACTCTGGATTTGAGGCAAATCTAGTTCTAGAAAGCCAGTGCAATTTATTTGATCCTGTTACATTGGATTATCCTCTCTGCTCAATTTACTGAGCTCTTATTTTCAGTCAGAGAGGTCAAAGAAGGCTGGAAAGATTCCACCAGCAACCTTGATGATTGATTTCTTAAAGACTTCATATGATGGTTGTTCTGATGTCGTCCTTCTCGACGAAGACGTAAATTTCAATTCACGAGCAGCTTCCCTATCGGTTAGTATGCAATCTTTCTCCAACCATTAACTGAGCGCGGTGTTAGAACTGCAGTAGGATCATTTAACTGGGATGTGATATCTGATGATTCTGATCTGATATTCTAGCTAACTGTTTAAATAAGCATGTGTTCTGAACCTCTATATCATCTTCGTTTTTCATACCGATAGAGGTTAAGCATATTCTCGTTCCCTCTCCCTTCTTTCACTCTAAAGCAATTATGATCGGAGAGAATTTACACTCACAGATTTGTAAGAAACGGTTCATTGTCGATCTTGTTTACTCTTTACATAATTATATATATATCATCACTTTTTGTCCATTGGGTCGGTCCAAAGCACGACATTGTATATTGAGAAAAAACGAACTACGAATATCTCAATATTTGTTGCATAAGGAGAGAAAATGGAAAAGGAGAGTGAAACCCAATAGATGAATAAGCTTGTATTCAAAATCTCAGTATTTAATGTTGACTTGTAACATGTTTGTATTTGTGTTCTTGATTGTTTTGCAATGCAGGAAGTGAGACAAGGAGGAAGTTATCTTATTGTAGCAACTGACTTAGTGGCCAGGGGAATCGACTTACCCGAAACGACTCATATATACAACTTTGATCTACCTCAAACTGCCATCGACTATCTTCATCGAGCTGGACGAACAGGTAGGAAACCGTTTTCCGAGGATAAATGTATGGTTACTAATCTTATAACCTCAGTAGAGAGATTTGTTCTGCAAAAGTTTGAAAATGAACTACTGTTTACCTGTGATGAACTGGTTGTTTAG ATGGCGGACTTCAATTACGCCTTCATCTCTCTGGTTGTTCTTCTTCCTCTTGCACTACTCATTTTCCTATACCTAATTGTTCGTCCTCGCTCCGTTAAAATTCCTTTGAAGAATCGCCATGTCTTCATTACCGGCGGATCGAGCGGAATCGGGCTGGCGTTGGCACACCAGGCCGCATCGGAGGGCGCGCGAGTCTCCATTCTTGCGCGCTCTCTCAAGAAGCTCGAGGAAGCGAAGGACGCGATCAGACTCTCCACTGGTATTGATGTGGCGGTCTTCGCTGCCGATGTTCGAGATTACGATGCTATTTCCAAGGCTGTAGATGAAGCCGGGCCGATTGACGTTCTTGTTGTGAATCAAGGCGTGTTCGTACCTCAGGAGCTGGCAGAGCAAGATATGGATGAGGTGAAATTCATGTTAGATGTTAATTTGTTGGGCGCATTTCACATGATTAAGGCTGCCCTGCCTACGATGAAGAATAGAGTAGACCGTCGACCCGCCTCGATCGCTCTCATGTCTTCTCAGGCCGGTCAGGTGGGTGTTTATGGCTACACGGCGTATTCAGCTAGTAAGTTTGGGCTTCGTGGTTTGGCAGAAGCCTTGCAACAGGAGGTTATAGGAGATAACATACATATTTCTCTTATATTCCCTCCAGACACTGACACTCCTGGATTAGTAGAAGAGGAAAAGAAAAGGCCTGAATTGACCAATATCATTGCCGCTGGAGGAGGCAGGATGAAAGCTGAGTTAGTTGCCAAAAAAGCTTTGAATGGCATTAAATCTGGATTGTGGGCTTGTGTTTTCAATGGGTTTGGTATGATAGTATTCAAAAATGGCATGCACAGAAAAAAAGAATCTAGAAGATACGGCTGGTTTTTTCACAACAATTTCTTTCATTTATGGTTATTAGCTCCAAGTTCTCTCCTCCGAATTCTGAAACAACTGGAAGTAAAGGCTCGAGCCCGCTCTGATAAGTCGAACATTAGTTCAATATTTGGTGGGCAAAAGGTCAGGGATGACAGATTCAGTAGCAGTTCTCTCTCTTCCCCCAGTTTGACAGAAAGCCTGCATCAGAGCCCTTCAGTTATGTCTGATAGCCCGTACGTGGGGATCGACAAGTTTCTCTCTAGTATTGTCTATACGTGCAATGCTCCGCCGCTCGCAGAAGCAAGACGGCGGTTGCTTCACCACCGGCGCCGGGAACTCTCCATTACGACCCGACTCCCCATTTTTCTTACACCCTCTTCATCTCCTCTTTCCTCCTTAATAACCCATCCTGTATTGCGTAGGCGCGGGATTCCATTTCCAATGGCCGCAACGCTTCTTCCGTCTACCAAAATTCCTCCCCCTTGGCTGCCCGTCTCATCTGAACGCCGCTATCCAATTTATTTACCCAAACTTATCAATAGCAATGGACCCATATGCTCCACCCCCAAATTTAGGCCTCTGAAAGCATTTATGAGCTCATCTTCTTTAAACAATGCCGTCGATTCTAATTTCGAGGCTTCCTCTCTCCGCGAGATCTGTAATGGATATGTTCCCGATCATATATTGGACAGAGCTGAGGAAATTGGATTTGTTGCCCCAACTGGTGTGCAGAGGCAAGCTCTTCCAGTTCTGTTTTCTGGTCGGGATTGCGTGCTTCATGCGCAGACAGGTTCTGGGAAGACGCTGACATATTTGCTATTGATATTTTCTGTAATCAACGCCCAGAAATCAGCTGTACAAGCACTGATTGTAGTACCCACCCGGGAGCTTGGAATTCAAGTTACTAAAGTTGCTAGGATGTTAGCTGCAAAGCCTGCAACGGCGGATGAAGTTGGGGAGAAATCTTATGTTGTCATGGCTCTTTTAGATGGAGGCTTGTTGAGAAGACACAAGACTTGGTTGAAGGCAGATCCCCCTTCTATACTGGTGGCAACAGTAGGAAGCTTGTGTCAAATGGTTGAGAGGCGATTTCTTGATCTCGCCTCACTAAAGGTGCTGATAATTGACGAGGTTGATTTCATGTTTAGTTCCTCAAAGCAAGTTAGTTCTCTGAAGAAAATCTTGACATCATATTCTATGTTCAGTAATCGTCAGACTGTGTTTGCAAGTGCATCAATTCCCCAGCACAGGCATTTTCTTCAGGAATGCATACAGCAGAAGTGGACAAAGAATAATGTAATCCATGTTCATATTAACGCCGTTCAGCCCATGCCATCGTGTCTACTCCATAGATTTGTGATGTGTGACAAGAACAAAAAACACCAAACCTTCCTGAGGGTACTACTCACAGATAAACCTCAGTCTGCAATCATTTTTGTCAGTGAGCAGTCAGAGAGGTCAAAGAAGGCTGGAAAGATTCCACCAGCAACCTTGATGATTGATTTCTTAAAGACTTCATATGATGGTTGTTCTGATGTCGTCCTTCTCGACGAAGACGTAAATTTCAATTCACGAGCAGCTTCCCTATCGGAAGTGAGACAAGGAGGAAGTTATCTTATTGTAGCAACTGACTTAGTGGCCAGGGGAATCGACTTACCCGAAACGACTCATATATACAACTTTGATCTACCTCAAACTGCCATCGACTATCTTCATCGAGCTGGACGAACAGGTAGGAAACCGTTTTCCGAGGATAAATGTATGGTTACTAATCTTATAACCTCAGTAGAGAGATTTGTTCTGCAAAAGTTTGAAAATGAACTACTGTTTACCTGTGATGAACTGGTTGTTTAG ATGGCGGACTTCAATTACGCCTTCATCTCTCTGGTTGTTCTTCTTCCTCTTGCACTACTCATTTTCCTATACCTAATTGTTCGTCCTCGCTCCGTTAAAATTCCTTTGAAGAATCGCCATGTCTTCATTACCGGCGGATCGAGCGGAATCGGGCTGGCGTTGGCACACCAGGCCGCATCGGAGGGCGCGCGAGTCTCCATTCTTGCGCGCTCTCTCAAGAAGCTCGAGGAAGCGAAGGACGCGATCAGACTCTCCACTGGTATTGATGTGGCGGTCTTCGCTGCCGATGTTCGAGATTACGATGCTATTTCCAAGGCTGTAGATGAAGCCGGGCCGATTGACGTTCTTGTTGTGAATCAAGGCGTGTTCGTACCTCAGGAGCTGGCAGAGCAAGATATGGATGAGGTGAAATTCATGTTAGATGTTAATTTGTTGGGCGCATTTCACATGATTAAGGCTGCCCTGCCTACGATGAAGAATAGAGTAGACCGTCGACCCGCCTCGATCGCTCTCATGTCTTCTCAGGCCGGTCAGGTGGGTGTTTATGGCTACACGGCGTATTCAGCTAGTAAGTTTGGGCTTCGTGGTTTGGCAGAAGCCTTGCAACAGGAGGTTATAGGAGATAACATACATATTTCTCTTATATTCCCTCCAGACACTGACACTCCTGGATTAGTAGAAGAGGAAAAGAAAAGGCCTGAATTGACCAATATCATTGCCGCTGGAGGAGGCAGGATGAAAGCTGAGTTAGTTGCCAAAAAAGCTTTGAATGGCATTAAATCTGGATTGTGGGCTTGTGTTTTCAATGGGTTTGGTATGATAGTATTCAAAAATGGCATGCACAGAAAAAAAGAATCTAGAAGATACGGCTGGTTTTTTCACAACAATTTCTTTCATTTATGGTTATTAGCTCCAAGTTCTCTCCTCCGAATTCTGAAACAACTGGAAGTAAAGGCTCGAGCCCGCTCTGATAAGTCGAACATTAGTTCAATATTTGGTGGGCAAAAGGTCAGGGATGACAGATTCAGTAGCAGTTCTCTCTCTTCCCCCAGTTTGACAGAAAGCCTGCATCAGAGCCCTTCAGTTATGTCTGATAGCCCGTACGTGGGGATCGACAAGTTTCTCTCTAGTATTGTCTATACGTGCAATGCTCCGCCGCTCGCAGAAGCAAGACGGCGGTTGCTTCACCACCGGCGCCGGGAACTCTCCATTACGACCCGACTCCCCATTTTTCTTACACCCTCTTCATCTCCTCTTTCCTCCTTAATAACCCATCCTGTATTGCGTAGGCGCGGGATTCCATTTCCAATGGCCGCAACGCTTCTTCCGTCTACCAAAATTCCTCCCCCTTGGCTGCCCGTCTCATCTGAACGCCGCTATCCAATTTATTTACCCAAACTTATCAATAGCAATGGACCCATATGCTCCACCCCCAAATTTAGGCCTCTGAAAGCATTTATGAGCTCATCTTCTTTAAACAATGCCGTCGATTCTAATTTCGAGGCTTCCTCTCTCCGCGAGATCTGTAATGGATATGTTCCCGATCATATATTGGACAGAGCTGAGGAAATTGGATTTGTTGCCCCAACTGGTGTGCAGAGGCAAGCTCTTCCAGTTCTGTTTTCTGGTCGGGATTGCGTGCTTCATGCGCAGACAGGTTCTGGGAAGACGCTGACATATTTGCTATTGATATTTTCTGTAATCAACGCCCAGAAATCAGCTGTACAAGCACTGATTGTAGTACCCACCCGGGAGCTTGGAATTCAAGTTACTAAAGTTGCTAGGATGTTAGCTGCAAAGCCTGCAACGGCGGATGAAGTTGGGGAGAAATCTTATGTTGTCATGGCTCTTTTAGATGGAGGCTTGTTGAGAAGACACAAGACTTGGTTGAAGGCAGATCCCCCTTCTATACTGGTGGCAACAGTAGGAAGCTTGTGTCAAATGGTTGAGAGGCGATTTCTTGATCTCGCCTCACTAAAGGTGCTGATAATTGACGAGGTTGATTTCATGTTTAGTTCCTCAAAGCAAGTTAGTTCTCTGAAGAAAATCTTGACATCATATTCTATGTTCAGTAATCGTCAGACTGTGTTTGCAAGTGCATCAATTCCCCAGCACAGGCATTTTCTTCAGGAATGCATACAGCAGAAGTGGACAAAGAATAATGTAATCCATGTTCATATTAACGCCGTTCAGCCCATGCCATCGTGTCTACTCCATAGATTTGTGATGTGTGACAAGAACAAAAAACACCAAACCTTCCTGAGGGTACTACTCACAGATAAACCTCAGTCTGCAATCATTTTTGTCAGTGAGCAGTCAGAGAGGTCAAAGAAGGCTGGAAAGATTCCACCAGCAACCTTGATGATTGATTTCTTAAAGACTTCATATGATGGTTGTTCTGATGTCGTCCTTCTCGACGAAGACGTAAATTTCAATTCACGAGCAGCTTCCCTATCGGAAGTGAGACAAGGAGGAAGTTATCTTATTGTAGCAACTGACTTAGTGGCCAGGGGAATCGACTTACCCGAAACGACTCATATATACAACTTTGATCTACCTCAAACTGCCATCGACTATCTTCATCGAGCTGGACGAACAGGTAGGAAACCGTTTTCCGAGGATAAATGTATGGTTACTAATCTTATAACCTCAGTAGAGAGATTTGTTCTGCAAAAGTTTGAAAATGAACTACTGTTTACCTGTGATGAACTGGTTGTTTAG MADFNYAFISLVVLLPLALLIFLYLIVRPRSVKIPLKNRHVFITGGSSGIGLALAHQAASEGARVSILARSLKKLEEAKDAIRLSTGIDVAVFAADVRDYDAISKAVDEAGPIDVLVVNQGVFVPQELAEQDMDEVKFMLDVNLLGAFHMIKAALPTMKNRVDRRPASIALMSSQAGQVGVYGYTAYSASKFGLRGLAEALQQEVIGDNIHISLIFPPDTDTPGLVEEEKKRPELTNIIAAGGGRMKAELVAKKALNGIKSGLWACVFNGFGMIVFKNGMHRKKESRRYGWFFHNNFFHLWLLAPSSLLRILKQLEVKARARSDKSNISSIFGGQKVRDDRFSSSSLSSPSLTESLHQSPSVMSDSPYVGIDKFLSSIVYTCNAPPLAEARRRLLHHRRRELSITTRLPIFLTPSSSPLSSLITHPVLRRRGIPFPMAATLLPSTKIPPPWLPVSSERRYPIYLPKLINSNGPICSTPKFRPLKAFMSSSSLNNAVDSNFEASSLREICNGYVPDHILDRAEEIGFVAPTGVQRQALPVLFSGRDCVLHAQTGSGKTLTYLLLIFSVINAQKSAVQALIVVPTRELGIQVTKVARMLAAKPATADEVGEKSYVVMALLDGGLLRRHKTWLKADPPSILVATVGSLCQMVERRFLDLASLKVLIIDEVDFMFSSSKQVSSLKKILTSYSMFSNRQTVFASASIPQHRHFLQECIQQKWTKNNVIHVHINAVQPMPSCLLHRFVMCDKNKKHQTFLRVLLTDKPQSAIIFVSEQSERSKKAGKIPPATLMIDFLKTSYDGCSDVVLLDEDVNFNSRAASLSEVRQGGSYLIVATDLVARGIDLPETTHIYNFDLPQTAIDYLHRAGRTGRKPFSEDKCMVTNLITSVERFVLQKFENELLFTCDELVV Homology
BLAST of Csor.00g252750 vs. ExPASy Swiss-Prot
Match: Q3E9C3 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=RH58 PE=2 SV=1) HSP 1 Score: 584.7 bits (1506), Expect = 1.8e-165 Identity = 281/419 (67.06%), Postives = 350/419 (83.53%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy Swiss-Prot
Match: Q0JFN7 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os01g0970600 PE=2 SV=2) HSP 1 Score: 523.5 bits (1347), Expect = 4.8e-147 Identity = 259/435 (59.54%), Postives = 341/435 (78.39%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy Swiss-Prot
Match: Q0WRJ2 (3-dehydrosphinganine reductase TSC10A OS=Arabidopsis thaliana OX=3702 GN=TSC10A PE=1 SV=1) HSP 1 Score: 355.9 bits (912), Expect = 1.3e-96 Identity = 185/272 (68.01%), Postives = 230/272 (84.56%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy Swiss-Prot
Match: F4JZN6 (3-dehydrosphinganine reductase TSC10B OS=Arabidopsis thaliana OX=3702 GN=TSC10B PE=1 SV=1) HSP 1 Score: 344.4 bits (882), Expect = 4.0e-93 Identity = 182/277 (65.70%), Postives = 224/277 (80.87%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy Swiss-Prot
Match: Q06136 (3-ketodihydrosphingosine reductase OS=Homo sapiens OX=9606 GN=KDSR PE=1 SV=1) HSP 1 Score: 156.8 bits (395), Expect = 1.2e-36 Identity = 96/257 (37.35%), Postives = 156/257 (60.70%), Query Frame = 0
BLAST of Csor.00g252750 vs. NCBI nr
Match: KAG6597460.1 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1744 bits (4516), Expect = 0.0 Identity = 906/906 (100.00%), Postives = 906/906 (100.00%), Query Frame = 0
BLAST of Csor.00g252750 vs. NCBI nr
Match: KAG7028919.1 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1644 bits (4257), Expect = 0.0 Identity = 879/977 (89.97%), Postives = 890/977 (91.10%), Query Frame = 0
BLAST of Csor.00g252750 vs. NCBI nr
Match: XP_023539234.1 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1051 bits (2717), Expect = 0.0 Identity = 540/560 (96.43%), Postives = 550/560 (98.21%), Query Frame = 0
BLAST of Csor.00g252750 vs. NCBI nr
Match: XP_022933736.1 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic [Cucurbita moschata]) HSP 1 Score: 1051 bits (2717), Expect = 0.0 Identity = 540/553 (97.65%), Postives = 546/553 (98.73%), Query Frame = 0
BLAST of Csor.00g252750 vs. NCBI nr
Match: XP_022973672.1 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic [Cucurbita maxima]) HSP 1 Score: 1018 bits (2631), Expect = 0.0 Identity = 522/553 (94.39%), Postives = 540/553 (97.65%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy TrEMBL
Match: A0A6J1EZV7 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111441060 PE=4 SV=1) HSP 1 Score: 1051 bits (2717), Expect = 0.0 Identity = 540/553 (97.65%), Postives = 546/553 (98.73%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy TrEMBL
Match: A0A6J1I860 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111472257 PE=4 SV=1) HSP 1 Score: 1018 bits (2631), Expect = 0.0 Identity = 522/553 (94.39%), Postives = 540/553 (97.65%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy TrEMBL
Match: A0A7G2F8P4 ((thale cress) hypothetical protein OS=Arabidopsis thaliana OX=3702 GN=AT9943_LOCUS19548 PE=4 SV=1) HSP 1 Score: 864 bits (2232), Expect = 1.11e-303 Identity = 481/891 (53.98%), Postives = 600/891 (67.34%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy TrEMBL
Match: A0A6J1C9C7 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic isoform X1 OS=Momordica charantia OX=3673 GN=LOC111009507 PE=4 SV=1) HSP 1 Score: 778 bits (2009), Expect = 2.43e-274 Identity = 394/474 (83.12%), Postives = 436/474 (91.98%), Query Frame = 0
BLAST of Csor.00g252750 vs. ExPASy TrEMBL
Match: A0A1S3AX19 (DEAD-box ATP-dependent RNA helicase 58, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103483729 PE=4 SV=1) HSP 1 Score: 776 bits (2003), Expect = 1.97e-273 Identity = 397/474 (83.76%), Postives = 428/474 (90.30%), Query Frame = 0
BLAST of Csor.00g252750 vs. TAIR 10
Match: AT5G19210.2 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 584.7 bits (1506), Expect = 1.3e-166 Identity = 281/419 (67.06%), Postives = 350/419 (83.53%), Query Frame = 0
BLAST of Csor.00g252750 vs. TAIR 10
Match: AT5G19210.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 448.0 bits (1151), Expect = 1.8e-125 Identity = 212/319 (66.46%), Postives = 267/319 (83.70%), Query Frame = 0
BLAST of Csor.00g252750 vs. TAIR 10
Match: AT3G06060.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 355.9 bits (912), Expect = 9.5e-98 Identity = 185/272 (68.01%), Postives = 230/272 (84.56%), Query Frame = 0
BLAST of Csor.00g252750 vs. TAIR 10
Match: AT5G19200.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 344.4 bits (882), Expect = 2.9e-94 Identity = 182/277 (65.70%), Postives = 224/277 (80.87%), Query Frame = 0
BLAST of Csor.00g252750 vs. TAIR 10
Match: AT1G12770.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 137.1 bits (344), Expect = 6.9e-32 Identity = 121/453 (26.71%), Postives = 190/453 (41.94%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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