Clc11G03870 (gene) Watermelon (cordophanus) v2
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTGAGAGAAAGTTTTGGGCTTTGGGGACATGTTCTATAATTTAGCCTTTAAAGATGATTTTCACTTCAATTTTTCGTTGAAATTAGTTGTATTGAATTTTCTCAATCCTTCTTCTGTTGAGTATACACCACTAAAATCCCCTTCACCGTTATCCTCAGCTTCCGTCACTGCATTTGCAGTTTCTCATGGTTTGATCACAGTTCAACCCAAGCAACAATGGTGGCCACTTCACTTTCTTCCCTACAATCAACCAATGTCTCTTCCACACCCTCCATCTCGCCGCTTTCCATATCTTCTCTATCTTCTACTTCTTCTTCTTCTTCTTCGTCTCTTTCTCTTCAACTATCCTCACTTCGCCCTACTCGCCTTCGCTCGACCTCTGTCTTTGCTCACCCCCATTTGACTCGAAGCCCTAAATTCAAGGTTCCGTTTCTGGATTTTCGGATTTCTGAATTTTTCGTTGTGTGTTTCGTTCTGTGATTTCAGCTTTTCTGTTTGTTAGGGGCTGAAGGTGAATTGTGCAGCTGCGGAGCCGCTGAAGGTGATGATATCAGGGGCGCCGGCCTCCGGTAAAGGAACTCAGTGTGAGTTGATCGTTCAGAAGGTAATTGAAATTAACATTAGTAATCTGACAAGAAGGAAATCATATCAGTTGCTAGAACATACTAAAAAATGCTCTGTTTGAGTATATGTAATTTATCCTGCAATGTGAATCATGAACGCTTAATGCTTGGTTTTTCACTTAAGTAGGGACAAAGAAGTTGAAGTTTCACTGAGGATCTCGTTGTGGAATCTGAAGTAAATGGCAGTTCTAACTTGCATGTGCAATTTAATTTGTCTTCTACTCAACCATATTCTAGATCTTACTTGATTTGCGTAGCCTAAAGTTTGTTTGTTAGCCATGTAGAATATTCAAATAAAATTGTTCCAATATCATGTAAATAAATTAGCGAGAAAGTTTTAAACTATTACATGAGTTAGCCTAGTGGTAAAAAAGGACCATGTAAATAATAAAGGCTTTGTGAAAAGGAGTTTATGTTGTCGTGGCCACTTGCTTAGGATTTTATATCCTACATGTTACCTTGGCAATCAAATGCAGTGTGATAAATTACGCACTCTTTTTTTCGAGCTAGGCTATCATGTTGTATAAGTGTCCTGTATCCGTGTCCCGGTTTGAATACATGTTTGATCGAAGACTGTGAGTTGTCTTGCTGAAATTCTGTTCTTTAGGTAGAAAATTGTATTGCTGATAATGTTAATGTTAGCACAAGCATGATATTTCCATATTCTCATATTTTGGTGGAGGATAAAAGGTTGCAATTATTATTACGCTATAATGTTGGCATAATTCAAACTGGGTATTGAGAATTGAGATTACTGAAAAATTCAGCAATTACTCATACAAGTACAGGAGAAAGGAGAGAAAAAATGGGAAAGTACACCTTCAGAAAACTGGTTTTTTATCATTCTTAATTTGTCTTGAAGAAAATATCAAAAAGCTAAGAGGTCCTAAGTTTCTATAGTATCATACTTACTTCCTTGACTATTTCTACTCATTCTCCAGTTTGGCCTCATGCACATATCGACTGGTGACATATTAAGAGCAGAAATTTCAGCTGGGTCAGAAATTGGAAACAAAGCGAAAGAGTTCATGAATTCTGGACGGCTAGTTCCTGATGAAATTGTGACTGCTGTAAGACATGGATCTAAGCTCTTTCTAGCTTAAAATTGACGTAATTGTCTGTATGGTATTCATGATGTGAGCTTGTTTTGGTTTATAGATGGTGACAGCACGATTATCATGCGAGGATGCAACAGAAAAGGGATGGCTTTTAGATGGATATCCGCGGACCCTTTCGCAAGCAGAAAGTTTGCAGAAGTTGCAGATTAGACCAGATATTTATCTTATTTTAGATGTATGTACTTCACATACTAATCTCCATTTGTTAGGGCATCCATTTTGTCATCATCATCGTCATCATCATCGCCATCATCATTATTTAAAATAATAATTAAACTAAACATCTAAGGCTTCTAAATATTTCGATATCCTGGAGTACTACACTTCATTCAGGTTCACAACAGGATATTATTATTGGGCTTGGTATTCCGAACATGGTTCTATCTTAAAGTTAGGAGAGAATTTAGACCATTTGTATATCTACAAGAACCGCCCATTTATACTACTACTTGTGGATCTATCCATTGAACTTTTTGCTCATCTCTTCAACCTGTTATTTAAATTATGACACTACCTAGAAGGAGCATTTAAGATAACCCCTTAGAGCAAAATACATACCTTTTGATTTTATCAACAATGTACACTATCTTTATGTTTGAGATAAGATTCAGTTTAATGCCTTTACACTCATGGCCTTGATTATCATAGAATCTAGATACATTCCTTGTCTCTCTCTCTTTCTCACTGTGTGTATATGTGTTTATATTTTCCCCCTTTTGTGGGGAGCTCTGTCCCAATAAAATTGTGAATCTGCCACAAGTGTATTTGAGGTAGATGTTTTATATGTTAATCGCACAATAAGTTGGCTCTCATTTTGAGCAAATTCAAATTTTGTCATCAGTATAACAGTGATAATGAACATTTTGTTTGTGTTTAGATTACTATTTCTATATTTTATGTTTGATTTTACATTTCTAATACTCAGGTTCCTGATGAAATTCTAATCGACAGATGCATTGGTCGAAGGCTTGACCCAGAGACAGGGAAGATTTACCATCTGAAGTATTTTCCCCCAGAAACAGAGGAAATTGAAGGCAGGCTTGTCATTCGGCCTGATGACACTGAGGAAAAGGTTAGTTACTTCTAAGAAATTGTTTAAATATTTCCGGAATGCGATCCTGTGTGCTGTTTTCACATGTCTTAGTGACTGATCATGCGTTTTAGGCATTCTAACATTTATTTGATGTGATTTCTGTTTAGGTGAAGCAGCGTTTGGAAATTTATAAGCGTAATGCAGAAGCAATAGCACCAGTGTACTTAAATATTACAAAGAAGGTCGTTAATTATGTGTGTGCTTGTCATACTTATGCATGTCTATTCTGTTTAATTCCAGCATTTATTTCTAACCTCCGTGTCTTCCATGCATATAAATTTTAGTGATCTTTCTTAACAACCCTGTGAATACAGATTGATGGAAGCCGTCCTAAAGAAGAAATTTTTGAAAAAATATCATCATTGTTATCACAGATACAAAAAGAAAAGGCTACAAAGTCGGGTAATTCTTTGTGTTCTGTGGAATTGACTACAATTTCTACAGAGTAGCTTGTATTTACAATTTTATATTTAATGATATTTAGTCAATGCTCATTCTTTGAAATGTTTAATCTGATCTTACTCAGACATCTTTTTGCTTATATGAAAAGCCATTTATTCTCGAATGTCTGAACTATTTATTTGTACATTTATCAAATCGCACCCTACATTTCCTGTGTATTAGGGAAATCAACCCTCAGATTCAAGAGTACTTCAACTCAGGTATGCTCTGTATGATTGAGAATAGGAAATTTGAAATGTTTATTATTTTTGAGAAATCATGTATTTGTAATAGACATTAAAATAAGATGCTCATTAGAAAAAATAAAGTTATAATAAGATTCTCTTCAATATATAAGCTTATATTTGATATTATAATAAGAATCCCTCTAATATATAGATAGATATACATGTGTACGTAATTATCTATTCTCTTTTAACAGGATAGCTGGAGAGGGATACCAACTAGATTGAATAACATTCCTCACTCGAGAGAAATCAGGAAATACTTTTACGATGATGTGCTTGAAGCCACCAAACGTGCTGTACAAGCCGGTAGAACTAGATTAAAGGTTTGGTGTTATTTTTATTCAGACAGTTTATCTTCCTGTGTTACAGAATTCAGCTGTGGATTCTTTTGAATGAAATATCAGATAGAGTCATACGTTTTAGTAAAATTTGAGGTTAAATATCCTGCCCGTAAACTCTAAATGAGTCATAATTGTGTGACACTGTGACTATGGCATGAAGCCTTAAATGGTATACTTCTGCAAGTACAGACTAGGAAATTGAAAATGATAATGGGCATCCATAAGTTGCAGATTTATCACATAGATTTTCACATTGTCATCAAAATGTGTACCTTCAGAGGCTGATCATTTTTGTTTGTTTTGAATCTAAATGAACAGGTGGAGATTAATATTCCTGAGCTTAATCCTGAAATGGTAGGAAGCTTATTCCTCCTGATTCCCCTAAAAATGATCTGAGTTAACCGCGTCTGCAATGTACAGGATGTCTATCGAATAGGCACACTTATGGAACTTATTCGGACCATTGCCCTTTCATTTGCTGATGATGGAAGACGTGTCAAGGTAATTTCTCTGATTTCTCTCAAGACCAGAGTGCTGGTACCCAACCATCTAACATTTTATCTCCAAGGTATGCATACAAGGATCCATGGGGGAAGGTGCACTTTCTGGAATGCCACTGCAGCTTGCTGGGACTCGGAGGATATTAGAATACATGGACTGGGGAGACTATGGGGCTCTGGGGACTTTTGTCAAGATTGGTTCAATTGGTACTGAACTCAATATATGAAAGATTAGTTTATGCATTTTAGTTTGCACCTGCATGTTAATCTCATAGGACTGGAGTGTGTGCTTCGGTGACCTTCATGAATGGAAAGGTAATTCAAAAGGCAAGGATGATAAAAGAATTTACAAAGAGGTTGAGCGGCTTTGACTCCGTGATTCATTTTCTATTCTAGAATCCATGATTCTCTCCGTCTGTTCACCCTCCTCATCAGTTTCTTCTAGCGGTATTCCATCTTTCATTCGAGTAGTGAAGGGTTAGGAACAATCCAAGCATCTTTCTGTTCCTGTTAGCATTAATGTTTTAGCTCGGAATTCAATCAATTCAAAAGGAAGCATGGTGAATTTTTCTCTTTCTAAGATCAACGGAAATAAGGTCATCGTTCTCAGTACAATATAGGCATTCTGTCTTTGGCTTCGCTACATAGTTTCTTAAAATCCCTTTCTTCCTCTTTGGAGTTCTTTGGACGAGCCTCCTTTACGTTTATTTGATTCTAATAGTCGGTAGAAGAGGTCTCTTTTTTATGAAATTCTAAAACTTGAGAAGTGTAGTAAGGGTAGTTTCTAATTCTTGTAGGCAAGAATCAACGTGAATCTGTAGTGTTTTTGGCTCCATATTAGTCTCGCATCGGAGCGTTTCCGCGGTCGAATCCATTTTGAATTTGATAAATGTATTGTTTGTGAAGTATGTGTTCGTGTAGGAATTCTTGCATCTTCTTCCCTATTCTTAAGTTTCGTTTTCGTTATTTGGTGTTCTTGGCTACGGAAGAGTTGTAATGGAAATTCGTTGAGAAATTATTTAGGAAGGGAAGGCTCTGCCAAATTTCTTGTTAAGTCCCCTTCCCAATATGTGGTGCAACAGAGTTTGGAAAGGGACGTATCTTACGTCACCTTCTTTGAAAAGACAACTCGTTTTGGACTCCTTAGACGGCCACTAGTATTCCCACTCTCGTGAAAATCAAGACCTTAAGCAGCTTAGACCTGAGCAGGTCCTAATTAGTTCCAGCTAAGAACCCAACAAGACGTATGCACTTGAAGTTAATCATTAACGTATTGAGATTCTCGCACTATGGGTACATTAATTCAAATGTCAATCAAGCCACTGCCGGATTTTATTCTATTTGCAGGAGACTTGACTTTCATATGATTCTGTGTTCATTTTGTAATTGCAGGTGCAAAAGAAGTTGACGAGCAAGATGACATGTTTATCTTAGTAGCTCCTCAAAATGCTGTTGGAAATTGTATCATTGATGTAAGCGGACTTCATGGACATTATCAACTCCATTTAATATGAAAATGAAACTCTTTGATTTAGGATGAAGCTTTGTAAATTGTAAAAGTCATGTTGTTAAGTAAATGCAGGATATGAAAGCGATGACAGATGCAGCTGGCGACCGACCTGTTATTCTTGTAAATCCCAGGCTCAAGGTTTGTTTCCAACTGACACTAAATTAGAATCCATCAAGTTCATTTGTATTGGGATTTGTATCGAACATTTGGGAATGAACTGGAGACTAGTATCCATCAATACTTATTCTTCCCAAACATATATGAAATGTTGAGTAATTGAGCTTTATTATTACCAATGATTTGTGAACCACCAATAATGGCAAGAAATCACAGGAGATCTAAGTAAATTGTAGATGGCCATTGAAACATCACCTGAAATTACGAGATAATGGAAAGAAAGAAAAAGAAAGGCATGGTGAATGTGTTTTAAGCAGGCATTCATTATCAGTTAGTTAATTGACCCCAACTATGTAGTCTCTTTTTTGTGTAATTTGATGATGAACTTGTTTCCATTTTTTAGGACTTACCTGGTTCGAGTGGAATAATGCAAGTGAGTATTAAAAACATCGATTTGGAATGAGTTCTGAGCAGAATACATTCTGATGCTTCACATTCTTATTAGACAATGGGCCGTGAGAAAAGGCTGGAGTATGCAGCATCGTTCGAAATCTGCTACTTCTTCCGGCTTCTCTATTATGCAGGAACACAGTATCCGATCATGGGGGCTCTCAGGTAAAATAAAAAGGACATTTGTGTGGTGGGATTAATATGTTAGAATTATGAAATTCTGGAATTGCTCCATAAATGTAAGAAATATACATACAACCTTATTTGATAAATATACAAACTTCAACAGTGTTCTTAAACAACCAATTTGAAGTTGGTGTACCAAATAGTGCACACACAATTATCGAATAAGTCAAGTCTTTTTATCAGTTCAGTTGCCAAACCGCCCAAGCCGGCCAAGGTAATACCATTTTCCTTTTGGAAACAAAATGGGGAGCTTGAACCTGACAACTTCTGTTGGAAAACCCATGTAACAACTTCCATCTCACCCTATTAGAACATGAATGTAAATCATTCCCAAAGAAAATGTTAGATCTATTAGAATAGGGGGTTGTAACCGTATTGAACCTGGCAATGCAACATGTTCCCAATGAGTTTCCCTCAACATCAAGATTGATTTTAAACTTAAAACGTTCAAAATTATGGATTTTGCTTTGATCATATCTTATTGTTTGTTTTAGGATGTCTTACCCATACGGGTATGAACTCTACAAAAGGGTAGATGACCCTTCGGGAAAGGAAAGATATGTTGAACTATCCAAGTATCCCAACAGGCCATCTACAGATGATATTAATGATGCTTTTCAAGGAAACAAAAGGTAAAAAAGAAGAAAAGAAACCTTCCTTCTTCACCTCCTTATTTTACAAAATCTGTCGTTGTCTAATCCAATCTCTGCTATATTTCATTTGAAATTCTTTTGCAGAAATGAAGTGAAGAAGTCATCAGGAATCTGGTAAGAACAGTAACCCTGTGCAATACAAATTTACTAATAGCATTTGTTAGATAAGTCCAGTTACATTCAATCATTTTACAAATTCAGGGGCTTCCTGAGTGGAATTTTTTGAGCTTATGATGGACAATTGGAACAAGAGATAAGCTGCAAGCAACATAAATTCATAGGCACAATCATGTACAGAGAATGGAAGCAAATTCAGCATGTATTTATACATTGACAAAGGAAAGGGGGTACAAACAACTCCAAATTCTGGATATCTAGCATAGTCAAAGTATTACACTACTATCATATCTAAGAACTCCTAAAGTTTAAAAGCCCACACCCAAACGTAAATGCTATTTCATCTTTCTAAGAAAACACACACCAAGCCACCAACAAAAACCCACTACATAGGGAAGCTGAAACAGCTATATTAGCTATATAGAAGAAACCCCACCTATAAACCCTAATCGTTCTGAGTAATATAAACCTAGAAGAACTGTCATGTTGCTTCACTTCAGCCAGTTCATCTGCTCGCAAACTCAAACATCTTCCTGTTGAAAAAATAAAGGGAGATGCCGAGGTAAAACCGAACAATCACCATCGAAAGTAAGAACATACTAAATTCTGAAGTAACCAACCGAATCAATTCCCAATCGTCTGTCCCAAATCATTTCAGGTTCGCTCACTTCTTTGATTCGACTTGATCAGCCTAGATCAAGTCGAAGCAACCGCCTCAGATCGCTTGTTGCAGTGCCGTTCTTACCTAGAAAAGACGGCAAGGGCACCGAACTCGGAGGCGGCGAAGCGAAGAACGCACCCGATCCCGCATAGATACCATCAACAACCTTGAACTCCGTTAACACAATCTGCTTCTGCATCAAATCAGGGTCTGGACCCAACCGATCAGTGGATCCCAAAACCATATCCACATCCTCACCCTTCGACTCCAATCTCCTTTTACCACAAGAATCATCACCATCACCAACTCCTGGATCGGGAGTCAACGTCTCTCCACGCCTTAGGATCTTAACCTGTCCCATAATCAAATTCTTCGACGAAATTTTCGCCGCTGTAGACGGCTCTCCCGCCCGGCTCCGTCCTTTATTGACTTGACGGTTAGCCTTAATTCCCACCGCTGCACTTCTCCTCCGTCTGCCGGAACAAGTCGTATCGTCATGATTGAAGTTAGGGTTTGTGGAAGAACTAATACTATTAGGGTTAGAATTTCGCCGTGATTTTAACGGAGGCGATAGAACTAGACCTTGGTGGCGAAGGCCTTTCCCAAGACAGTCCTGCGGCGGAAGAATCACGGTAGCCATGTATTCAAACTCACAAAAGCCAGAACACGAAAAAGAAGATGAAGAAAAAGAAGAAAGAGAATAAGGATGAAGAGAGAAAAAAAAAATGTTGTCTTCTTTCTTTAATAGAGAATTTTGAGGGATGCAAAATCGAGAGATGTTATGGGAGTTTATATAGAGACTTCTCGGGAGGGTTTCGCACGAACCACGCGTGTGATCGTGAACCGCCTCATGGGTATGACGTGGATTACCCGTCGTTGATATAAAACATGTCACGGACGAATTTGATTGGTGGAGTTATACGATCGTTTACTTGCTCCGTAATTTATGAAATTTTCTTTTGGAAATTCCTTTTTCTAGGTGTATTCCTTTCTCTTTTAACCCTTCTAAAAGGTATATTTTAGTATGTAAATTTTTTTCCCTTAAAAATTATCTTATTCTTCACAATATTATACTCAGATAAGAAA TTGAGAGAAAGTTTTGGGCTTTGGGGACATGTTCTATAATTTAGCCTTTAAAGATGATTTTCACTTCAATTTTTCGTTGAAATTAGTTGTATTGAATTTTCTCAATCCTTCTTCTGTTGAGTATACACCACTAAAATCCCCTTCACCGTTATCCTCAGCTTCCGTCACTGCATTTGCAGTTTCTCATGGTTTGATCACAGTTCAACCCAAGCAACAATGGTGGCCACTTCACTTTCTTCCCTACAATCAACCAATGTCTCTTCCACACCCTCCATCTCGCCGCTTTCCATATCTTCTCTATCTTCTACTTCTTCTTCTTCTTCTTCGTCTCTTTCTCTTCAACTATCCTCACTTCGCCCTACTCGCCTTCGCTCGACCTCTGTCTTTGCTCACCCCCATTTGACTCGAAGCCCTAAATTCAAGGGGCTGAAGGTGAATTGTGCAGCTGCGGAGCCGCTGAAGGTGATGATATCAGGGGCGCCGGCCTCCGGTAAAGGAACTCAGTGTGAGTTGATCGTTCAGAAGTTTGGCCTCATGCACATATCGACTGGTGACATATTAAGAGCAGAAATTTCAGCTGGGTCAGAAATTGGAAACAAAGCGAAAGAGTTCATGAATTCTGGACGGCTAGTTCCTGATGAAATTGTGACTGCTATGGTGACAGCACGATTATCATGCGAGGATGCAACAGAAAAGGGATGGCTTTTAGATGGATATCCGCGGACCCTTTCGCAAGCAGAAAGTTTGCAGAAGTTGCAGATTAGACCAGATATTTATCTTATTTTAGATGTTCCTGATGAAATTCTAATCGACAGATGCATTGGTCGAAGGCTTGACCCAGAGACAGGGAAGATTTACCATCTGAAGTATTTTCCCCCAGAAACAGAGGAAATTGAAGGCAGGCTTGTCATTCGGCCTGATGACACTGAGGAAAAGGTGAAGCAGCGTTTGGAAATTTATAAGCGTAATGCAGAAGCAATAGCACCAGTGTACTTAAATATTACAAAGAAGATTGATGGAAGCCGTCCTAAAGAAGAAATTTTTGAAAAAATATCATCATTGTTATCACAGATACAAAAAGAAAAGGCTACAAAGTCGGGGAAATCAACCCTCAGATTCAAGAGTACTTCAACTCAGGATAGCTGGAGAGGGATACCAACTAGATTGAATAACATTCCTCACTCGAGAGAAATCAGGAAATACTTTTACGATGATGTGCTTGAAGCCACCAAACGTGCTGTACAAGCCGGTAGAACTAGATTAAAGGTGGAGATTAATATTCCTGAGCTTAATCCTGAAATGGATGTCTATCGAATAGGCACACTTATGGAACTTATTCGGACCATTGCCCTTTCATTTGCTGATGATGGAAGACGTGTCAAGGTATGCATACAAGGATCCATGGGGGAAGGTGCACTTTCTGGAATGCCACTGCAGCTTGCTGGGACTCGGAGGATATTAGAATACATGGACTGGGGAGACTATGGGGCTCTGGGGACTTTTGTCAAGATTGGTTCAATTGGTGCAAAAGAAGTTGACGAGCAAGATGACATGTTTATCTTAGTAGCTCCTCAAAATGCTGTTGGAAATTGTATCATTGATGATATGAAAGCGATGACAGATGCAGCTGGCGACCGACCTGTTATTCTTGTAAATCCCAGGCTCAAGGACTTACCTGGTTCGAGTGGAATAATGCAAACAATGGGCCGTGAGAAAAGGCTGGAGTATGCAGCATCGTTCGAAATCTGCTACTTCTTCCGGCTTCTCTATTATGCAGGAACACAGTATCCGATCATGGGGGCTCTCAGGATGTCTTACCCATACGGGTATGAACTCTACAAAAGGGTAGATGACCCTTCGGGAAAGGAAAGATATGTTGAACTATCCAAGTATCCCAACAGGCCATCTACAGATGATATTAATGATGCTTTTCAAGGAAACAAAAGAAATGAAGTGAAGAAGTCATCAGGAATCTGGGGCTTCCTGAGTGGAATTTTTTGAGCTTATGATGGACAATTGGAACAAGAGATAAGCTGCAAGCAACATAAATTCATAGGCACAATCATGTACAGAGAATGGAAGCAAATTCAGCATGTATTTATACATTGACAAAGGAAAGGGGGTACAAACAACTCCAAATTCTGGATATCTAGCATAGTCAAAGTATTACACTACTATCATATCTAAGAACTCCTAAAGTTTAAAAGCCCACACCCAAACGTAAATGCTATTTCATCTTTCTAAGAAAACACACACCAAGCCACCAACAAAAACCCACTACATAGGGAAGCTGAAACAGCTATATTAGCTATATAGAAGAAACCCCACCTATAAACCCTAATCGTTCTGAGTAATATAAACCTAGAAGAACTGTCATGTTGCTTCACTTCAGCCAGTTCATCTGCTCGCAAACTCAAACATCTTCCTGTTGAAAAAATAAAGGGAGATGCCGAGGTAAAACCGAACAATCACCATCGAAAGTAAGAACATACTAAATTCTGAAGTAACCAACCGAATCAATTCCCAATCGTCTGTCCCAAATCATTTCAGGTTCGCTCACTTCTTTGATTCGACTTGATCAGCCTAGATCAAGTCGAAGCAACCGCCTCAGATCGCTTGTTGCAGTGCCGTTCTTACCTAGAAAAGACGGCAAGGGCACCGAACTCGGAGGCGGCGAAGCGAAGAACGCACCCGATCCCGCATAGATACCATCAACAACCTTGAACTCCGTTAACACAATCTGCTTCTGCATCAAATCAGGGTCTGGACCCAACCGATCAGTGGATCCCAAAACCATATCCACATCCTCACCCTTCGACTCCAATCTCCTTTTACCACAAGAATCATCACCATCACCAACTCCTGGATCGGGAGTCAACGTCTCTCCACGCCTTAGGATCTTAACCTGTCCCATAATCAAATTCTTCGACGAAATTTTCGCCGCTGTAGACGGCTCTCCCGCCCGGCTCCGTCCTTTATTGACTTGACGGTTAGCCTTAATTCCCACCGCTGCACTTCTCCTCCGTCTGCCGGAACAAGTCGTATCGTCATGATTGAAGTTAGGGTTTGTGGAAGAACTAATACTATTAGGGTTAGAATTTCGCCGTGATTTTAACGGAGGCGATAGAACTAGACCTTGGTGGCGAAGGCCTTTCCCAAGACAGTCCTGCGGCGGAAGAATCACGGTAGCCATGTATTCAAACTCACAAAAGCCAGAACACGAAAAAGAAGATGAAGAAAAAGAAGAAAGAGAATAAGGATGAAGAGAGAAAAAAAAAATGTTGTCTTCTTTCTTTAATAGAGAATTTTGAGGGATGCAAAATCGAGAGATGTTATGGGAGTTTATATAGAGACTTCTCGGGAGGGTTTCGCACGAACCACGCGTGTGATCGTGAACCGCCTCATGGGTATGACGTGGATTACCCGTCGTTGATATAAAACATGTCACGGACGAATTTGATTGGTGGAGTTATACGATCGTTTACTTGCTCCGTAATTTATGAAATTTTCTTTTGGAAATTCCTTTTTCTAGGTGTATTCCTTTCTCTTTTAACCCTTCTAAAAGGTATATTTTAGTATGTAAATTTTTTTCCCTTAAAAATTATCTTATTCTTCACAATATTATACTCAGATAAGAAA ATGGTGGCCACTTCACTTTCTTCCCTACAATCAACCAATGTCTCTTCCACACCCTCCATCTCGCCGCTTTCCATATCTTCTCTATCTTCTACTTCTTCTTCTTCTTCTTCGTCTCTTTCTCTTCAACTATCCTCACTTCGCCCTACTCGCCTTCGCTCGACCTCTGTCTTTGCTCACCCCCATTTGACTCGAAGCCCTAAATTCAAGGGGCTGAAGGTGAATTGTGCAGCTGCGGAGCCGCTGAAGGTGATGATATCAGGGGCGCCGGCCTCCGGTAAAGGAACTCAGTGTGAGTTGATCGTTCAGAAGTTTGGCCTCATGCACATATCGACTGGTGACATATTAAGAGCAGAAATTTCAGCTGGGTCAGAAATTGGAAACAAAGCGAAAGAGTTCATGAATTCTGGACGGCTAGTTCCTGATGAAATTGTGACTGCTATGGTGACAGCACGATTATCATGCGAGGATGCAACAGAAAAGGGATGGCTTTTAGATGGATATCCGCGGACCCTTTCGCAAGCAGAAAGTTTGCAGAAGTTGCAGATTAGACCAGATATTTATCTTATTTTAGATGTTCCTGATGAAATTCTAATCGACAGATGCATTGGTCGAAGGCTTGACCCAGAGACAGGGAAGATTTACCATCTGAAGTATTTTCCCCCAGAAACAGAGGAAATTGAAGGCAGGCTTGTCATTCGGCCTGATGACACTGAGGAAAAGGTGAAGCAGCGTTTGGAAATTTATAAGCGTAATGCAGAAGCAATAGCACCAGTGTACTTAAATATTACAAAGAAGATTGATGGAAGCCGTCCTAAAGAAGAAATTTTTGAAAAAATATCATCATTGTTATCACAGATACAAAAAGAAAAGGCTACAAAGTCGGGGAAATCAACCCTCAGATTCAAGAGTACTTCAACTCAGGATAGCTGGAGAGGGATACCAACTAGATTGAATAACATTCCTCACTCGAGAGAAATCAGGAAATACTTTTACGATGATGTGCTTGAAGCCACCAAACGTGCTGTACAAGCCGGTAGAACTAGATTAAAGGTGGAGATTAATATTCCTGAGCTTAATCCTGAAATGGATGTCTATCGAATAGGCACACTTATGGAACTTATTCGGACCATTGCCCTTTCATTTGCTGATGATGGAAGACGTGTCAAGGTATGCATACAAGGATCCATGGGGGAAGGTGCACTTTCTGGAATGCCACTGCAGCTTGCTGGGACTCGGAGGATATTAGAATACATGGACTGGGGAGACTATGGGGCTCTGGGGACTTTTGTCAAGATTGGTTCAATTGGTGCAAAAGAAGTTGACGAGCAAGATGACATGTTTATCTTAGTAGCTCCTCAAAATGCTGTTGGAAATTGTATCATTGATGATATGAAAGCGATGACAGATGCAGCTGGCGACCGACCTGTTATTCTTGTAAATCCCAGGCTCAAGGACTTACCTGGTTCGAGTGGAATAATGCAAACAATGGGCCGTGAGAAAAGGCTGGAGTATGCAGCATCGTTCGAAATCTGCTACTTCTTCCGGCTTCTCTATTATGCAGGAACACAGTATCCGATCATGGGGGCTCTCAGGATGTCTTACCCATACGGGTATGAACTCTACAAAAGGGTAGATGACCCTTCGGGAAAGGAAAGATATGTTGAACTATCCAAGTATCCCAACAGGCCATCTACAGATGATATTAATGATGCTTTTCAAGGAAACAAAAGAAATGAAGTGAAGAAGTCATCAGGAATCTGGGGCTTCCTGAGTGGAATTTTTTGA MVATSLSSLQSTNVSSTPSISPLSISSLSSTSSSSSSSLSLQLSSLRPTRLRSTSVFAHPHLTRSPKFKGLKVNCAAAEPLKVMISGAPASGKGTQCELIVQKFGLMHISTGDILRAEISAGSEIGNKAKEFMNSGRLVPDEIVTAMVTARLSCEDATEKGWLLDGYPRTLSQAESLQKLQIRPDIYLILDVPDEILIDRCIGRRLDPETGKIYHLKYFPPETEEIEGRLVIRPDDTEEKVKQRLEIYKRNAEAIAPVYLNITKKIDGSRPKEEIFEKISSLLSQIQKEKATKSGKSTLRFKSTSTQDSWRGIPTRLNNIPHSREIRKYFYDDVLEATKRAVQAGRTRLKVEINIPELNPEMDVYRIGTLMELIRTIALSFADDGRRVKVCIQGSMGEGALSGMPLQLAGTRRILEYMDWGDYGALGTFVKIGSIGAKEVDEQDDMFILVAPQNAVGNCIIDDMKAMTDAAGDRPVILVNPRLKDLPGSSGIMQTMGREKRLEYAASFEICYFFRLLYYAGTQYPIMGALRMSYPYGYELYKRVDDPSGKERYVELSKYPNRPSTDDINDAFQGNKRNEVKKSSGIWGFLSGIF Homology
BLAST of Clc11G03870 vs. NCBI nr
Match: XP_038890385.1 (adenylate kinase 5, chloroplastic isoform X2 [Benincasa hispida]) HSP 1 Score: 1107.8 bits (2864), Expect = 0.0e+00 Identity = 566/594 (95.29%), Postives = 583/594 (98.15%), Query Frame = 0
BLAST of Clc11G03870 vs. NCBI nr
Match: XP_038890384.1 (adenylate kinase 5, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 1097.8 bits (2838), Expect = 0.0e+00 Identity = 566/609 (92.94%), Postives = 583/609 (95.73%), Query Frame = 0
BLAST of Clc11G03870 vs. NCBI nr
Match: XP_008456801.1 (PREDICTED: adenylate kinase 5, chloroplastic [Cucumis melo]) HSP 1 Score: 1087.0 bits (2810), Expect = 0.0e+00 Identity = 557/596 (93.46%), Postives = 576/596 (96.64%), Query Frame = 0
BLAST of Clc11G03870 vs. NCBI nr
Match: XP_011648720.1 (adenylate kinase 5, chloroplastic [Cucumis sativus] >KGN60737.1 hypothetical protein Csa_019392 [Cucumis sativus]) HSP 1 Score: 1081.6 bits (2796), Expect = 0.0e+00 Identity = 555/594 (93.43%), Postives = 574/594 (96.63%), Query Frame = 0
BLAST of Clc11G03870 vs. NCBI nr
Match: XP_022937909.1 (adenylate kinase 5, chloroplastic isoform X1 [Cucurbita moschata]) HSP 1 Score: 1042.7 bits (2695), Expect = 1.2e-300 Identity = 540/595 (90.76%), Postives = 565/595 (94.96%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy Swiss-Prot
Match: Q8VYL1 (Adenylate kinase 5, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At5g35170 PE=1 SV=1) HSP 1 Score: 784.6 bits (2025), Expect = 7.7e-226 Identity = 399/591 (67.51%), Postives = 482/591 (81.56%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy Swiss-Prot
Match: Q0J6P7 (Probable adenylate kinase 5, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os08g0288200 PE=2 SV=2) HSP 1 Score: 729.6 bits (1882), Expect = 2.9e-209 Identity = 375/613 (61.17%), Postives = 479/613 (78.14%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy Swiss-Prot
Match: Q9FIJ7 (Adenylate kinase 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At5g47840 PE=1 SV=1) HSP 1 Score: 272.3 bits (695), Expect = 1.3e-71 Identity = 151/277 (54.51%), Postives = 195/277 (70.40%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy Swiss-Prot
Match: P43188 (Adenylate kinase, chloroplastic OS=Zea mays OX=4577 GN=ADK1 PE=1 SV=1) HSP 1 Score: 270.0 bits (689), Expect = 6.3e-71 Identity = 136/215 (63.26%), Postives = 161/215 (74.88%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy Swiss-Prot
Match: Q6ZC69 (Probable adenylate kinase 2, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os08g0109300 PE=2 SV=1) HSP 1 Score: 251.1 bits (640), Expect = 3.0e-65 Identity = 147/290 (50.69%), Postives = 197/290 (67.93%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy TrEMBL
Match: A0A1S3C4S3 (ATP:AMP phosphotransferase OS=Cucumis melo OX=3656 GN=LOC103496638 PE=3 SV=1) HSP 1 Score: 1087.0 bits (2810), Expect = 0.0e+00 Identity = 557/596 (93.46%), Postives = 576/596 (96.64%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy TrEMBL
Match: A0A0A0LJ30 (ATP:AMP phosphotransferase OS=Cucumis sativus OX=3659 GN=Csa_2G008770 PE=3 SV=1) HSP 1 Score: 1081.6 bits (2796), Expect = 0.0e+00 Identity = 555/594 (93.43%), Postives = 574/594 (96.63%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy TrEMBL
Match: A0A6J1FCJ5 (ATP:AMP phosphotransferase OS=Cucurbita moschata OX=3662 GN=LOC111444160 PE=3 SV=1) HSP 1 Score: 1042.7 bits (2695), Expect = 5.8e-301 Identity = 540/595 (90.76%), Postives = 565/595 (94.96%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy TrEMBL
Match: A0A6J1CNA6 (ATP:AMP phosphotransferase OS=Momordica charantia OX=3673 GN=LOC111013160 PE=3 SV=1) HSP 1 Score: 1040.4 bits (2689), Expect = 2.9e-300 Identity = 534/595 (89.75%), Postives = 563/595 (94.62%), Query Frame = 0
BLAST of Clc11G03870 vs. ExPASy TrEMBL
Match: A0A6J1HPB0 (ATP:AMP phosphotransferase OS=Cucurbita maxima OX=3661 GN=LOC111465483 PE=3 SV=1) HSP 1 Score: 1037.3 bits (2681), Expect = 2.4e-299 Identity = 539/600 (89.83%), Postives = 563/600 (93.83%), Query Frame = 0
BLAST of Clc11G03870 vs. TAIR 10
Match: AT5G35170.1 (adenylate kinase family protein ) HSP 1 Score: 784.6 bits (2025), Expect = 5.4e-227 Identity = 399/591 (67.51%), Postives = 482/591 (81.56%), Query Frame = 0
BLAST of Clc11G03870 vs. TAIR 10
Match: AT5G35170.2 (adenylate kinase family protein ) HSP 1 Score: 773.5 bits (1996), Expect = 1.3e-223 Identity = 394/584 (67.47%), Postives = 476/584 (81.51%), Query Frame = 0
BLAST of Clc11G03870 vs. TAIR 10
Match: AT5G47840.1 (adenosine monophosphate kinase ) HSP 1 Score: 272.3 bits (695), Expect = 9.1e-73 Identity = 151/277 (54.51%), Postives = 195/277 (70.40%), Query Frame = 0
BLAST of Clc11G03870 vs. TAIR 10
Match: AT5G63400.1 (adenylate kinase 1 ) HSP 1 Score: 130.2 bits (326), Expect = 5.6e-30 Identity = 72/223 (32.29%), Postives = 125/223 (56.05%), Query Frame = 0
BLAST of Clc11G03870 vs. TAIR 10
Match: AT5G50370.1 (Adenylate kinase family protein ) HSP 1 Score: 129.8 bits (325), Expect = 7.3e-30 Identity = 71/223 (31.84%), Postives = 130/223 (58.30%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (cordophanus) v2
Date Performed: 2022-01-31
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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