MELO3C015266 (gene) Melon (DHL92) v4
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.AATTTCAGGTACGTGAGGAGGTGGATGCACAGCTTAAAGCTCACTCGGTTGATGTTGAAGAGGGAAAAAAAGTTGGTGGTGGTGGTGGTGGTGGTGAATCTGGAGGAACAAACGAGAATTTGAGGCTACGTTTGACGAACAAGATTCCATCCATCATCTACACTTCAAATGACATCGAAGCCGAGAACGGGGAGGAGCTGCGTGTTGAATTATTTGATGTTGTCAATGATCGCATCATTGACGTTACTCATCCTTTGTCGTCGGCGTGGATTGAGATTGTTGTCCTCGATGGAGAATTATTCGACCACGGCGAAGCAATAAATCACTTGGATTTCGACACAAGTGTTGTAGCTCAAAGGCCGGAAGAAGGACCTTGGTTGGTTGGTGATGACAAGAGGTTTCGGTTACAAAATGGTGTTTATTCCATCACCAATTTGTCATTCACTAGAAACACCTTCAGGAGCAGGACTAAGAAGATTCGTTTAGGATTAAGGATTATATATGACTCCAACAATAACTACCCCACAATCCGACCTGCCGTTTCTAACTCTTTTAGAGTGATGGATCATCGAAGCCAACGTACGTATCTTCTTGAATCCTCATTCTACTAGAGCTGAGCTGCATCCATCTTTCCATTTCTATTTATAATATCCTAATTATTTTTTATATGTATATCTAACAGTGAACAAGAAACATCATACTCCGAGAGGAGAAGATGAAGTATGGAGATTGAAAGGGATCGGGCGAAATGGCAAATATCAGAAGCGCCTAACTTCCCGTGGTATCCTAAATGTGGAAGCCTTTGTGAAGGCTTATCAAAAGGACTCTCGTTCTCTAAGAAAGGTATAACATATATATGTGTGTGTGTATAAATAAATAGCCAAGAAAATAAGAAATTGATAATCATATATATTGTCTCTAATGTGGTTTAATAATAAGTTAAATTATTGTAGTAAAACAATATATAAGATATTAATTAATTTGGGTTATTTTGATGCACAGTTGTTAGGGAATAGACTTTCAGACAGGAAATGGAAGACAATGGTAGAGCAAGCTCTTCAGTATGTTCCTATCACCATCCCCACTTTTCATCCACCAAACGTACAGGTATTTCTTCTTACTATTTAGATTGAATGAACTATAAAAAGATGGTGGATGCAGTCTGATATGCATTAACTACTTAGAATATTAATTTCATGATAATTGTTTTGACAATATTATATGTAAAAAATAAAGCAGGAAAATTTGGAGCAAAATGCAGGCATGGATCAAAATGAAGCTGTTTTCAACCAAAACATTTATGCAAGTAATGGAAATTATGAGTTCCAAGATCAAACAGTTTTGGACAATTTTCAAGACTCTCTCTTTATATAATCCCTTATTTGGAGGTATGGTTTCTCTCTCTCTCTCTCTCTCTCTCTCTTTAAATTGATCATCATTGGAAAACCATACAATAACAATTGTGTGTGTTTTCTTTTATTAATTTTGTAGATCATTATAATTACACAATGCCAACGTTGTTGTCACGTGGAGAAGCTTCAACATCAAATGCCCAAAACACATAAACAATCATGTTGAATAGACAAGTACATGTAACCAATACTTCCAATGGATCATGCAGCAAGTTGGTTCCCAAACCTAAATGATGCCAAAAAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAATGGTCACAAAATCAAATTTGAAATATACATGTGACGATTAAGATCATGCTTTTTTATTTTTTTACAAAGAAAAAGAGCAAATAATCAAAATTGAGTCAAGACATGTTTGTAAGACTAAATGTTCATGTATGTGTCAACCCTAGTTGTCTAATATATGTTTACTTTTAGTTTAAGATACGATGAAAATGTTAAGAATAATTGAGATATCTTGATGTAAGTATGGATTCCCATATACTTTAATATCTTGTAAAAAAGAAAGTAAAACTAAAGTTTTATTATCATTTTCATAGTTTTCTTACTATTTGTTCACTTCTAAGAATCTGCTCCCATTTGTTCTTTCATGTACATAAATATTTAGAGATAATTTTAAGGGACAAAATCATTAAATATTTTCTTTCAAAGTATACATAATTAAAACAAAAAAAGCCATTTCAACAAGTTATTTTTTTTTTCTCATTTTACTATATTTGTAAATAAGTTGACCTAAGGATTTTAAATAATTAACTTAATTGACAACTTTTAATATTTATAATTGTTTGGTTTTTTGTGTTTGAAAAACTAAGTATACTTTTCCTTTCAATTTCGTTTGCATCTATTTTTTTCTTTTCACAATAATAATGGTTTGTATCTTTCTTAGGTTGAATTCTTAACTAGTTTTTAAAATTAAACATCTTTTTAGCTTTTAAATTTTGGTTTGTTTTTAAAATGTTCACACCAATTTAGATTCATTTTTGGTAACCTTTAAACTTCCAACATTCAAATCCATTAAGTTCATGAATTTGATGACTCGCCAATCCTCTAAATTTTTGTTTGTTTTTAAAATATTAGTGGAGACTAAATAAAAACTCCATAATAATTCCAATATTTTAGAGATTGTTATGAGTAGCAAAATATTGAAAATATTTACAAAATATAACAAAAAAAAAAAAAAAAAAGACTATTAGGAAGTTTGATAGATTTATATACCTTTTGTAAATAGTTTTAATATTATGTTATTTTCAAAAATCTTCATATTTAAAATAGTTTTGTATTAATCTACCGATTAAAAATTTCTCTAAAAAATAAAATTAAATAACACTTAATTTTTATATTAAGCGTAGATATTTTGTCGATTTTTTTTTTTATTTTTGACAATTTTCTTTTTAAACAACGTGAAGATCAAATAATTATTATATTCTATTTAAGATCATACTCTCACATTCTCCTTTTATTTTTTTCCCCAAACACATAGGTAGGTGTGTGTGTATATGCATATTATATGATTTACATTGCTTTATATCAAATAGTATTTATATTGTTCCATTCTTATTAGACTTTGCCTATAATAACCAATAAAAAGTAATCTCCCATTTTTTCACCAATCAACCCTTTTTTTTTTTTTTTATCTAAACTTATAGTTAAAAATAAAATAATAAATAAGGTGACCTCATGGCCAAAAACAATTGTTACTTTAAATAGCAAATCAATAATCTACTATAAGAGTTTAATTTGATACCTTATCGTGGGTAGATTTTTTTTTTTAGATGAAGATATTTGTGATATAGTAGCATAAGAAGCTTTGTGATATCGTGGATAGGAAATTAATGTTTACTTTCTATATGTTGATAAAACTTTACGAATAGTTTTTATTCTTGGTAGAATTCTTATAAAGAGCTAGTTTCCATTTTGGAGATCGATTATAAATGATAAAATTGTTCAAAATATTTACATAGTACAATAAAATTTCAAATTCTATCAATGATAAATATTAATAAACTTCTATCCATTTTTATAAGTCATAGATATCAAATTTTACTATATTTGATAAATATCTTTTAGGGGTTTAAAAAAACTACTAAATAACAAAAAATCCATTACATCTAATTTTGCCATAAAGTATAAATAGTTTTCATTTTTAACGATTTCCCTCTTTTATTTTTATTTTGCTATATATAAATATGTTATATTTTATACAAAATTTACCATTTAATCATAGAAAAAAAAGATAGTATTAATAAAATTAAAAAAGGAAAGAGAAGAGGTTCTGGATATACGTGGAATTGAGCAAAGATTTGACAAGTCTTATATATATATATATATATAATAAACAAAGTGATAGAGATAGAGAAAGATGATGGTTATGTTTTTTTAACTTTAAATGTCACATCTAAACTTTAATGTATACTTGAAAGGCCTATGCTGAATAGGATGGTCTATGTGTGAAAAATATAAGAATTCATCTCATCATCTCATCAAATTCATCCCCCCTTTTTAAATTATAATATATACAATACAATGTTTGTTATTGTTTGATTTAGTAAGTTGTGAAAGGATTCATAATTATTCAAATATGGAAACCCCAATATGTATTATAAGATTTGTGATATATCATTGGGGATTGATTTCAAATATAGTATATTATTAAATTTGTAACTTGTTTGTTACACTGATCTTCATCAACTTCCAAATTTTTGTGGGTGGGGGGCCTGGTGGCATCATCAATATCATCACCAACCAACATCATAGTCAATGTCAAGAATGGAGGTCAAATTTAGGAGAATAATATTATTAGTTCTAATTATTTTTATTTTTCAATGTTTGGTTGTATATATTATGTTCATGAATTTGATGACTCACCAATGCTCTAAAATTCCTTTATAGTTGATTTTTAAAGGTTGATTAAATTTGAAATTTTATGTCATGAACACACTTGATGTTCACACCAACTAATTTTTAGATCAACTTTTGATATCCTTCAAACTTTCAACATTCAAATCAATTAGATGATGTCGTCATGCAAATAACGTAACCATTGAAATTAACTCCATGTAAAGAAACAAATTATGCACTTTAAATTGTATGGTTCATAGAATTATATAATAATATACACAAAAAAAAAAATCTAAATTAAGCACACAAGGGAAGTGAAAGGGATGAGGATAATTAGTATATTTTAGTTTAATATTTGTTTAGATGTTAATTTAGTTTAATTAGTATTTTTAGTTTGTTATAATTCCTTGTATTACTCTATAAATAGCCATTTTAGAATTGCAATCACTTTTAAATCTTCTTTGGGCTATTTATAGCTTGAGGAGAAGATATAACTAATTAGTTAATTCTAAAAACATTAATTGAACTTAATTAACAACTAAACAAATATTAAACTAAAATATAATCATTATCATTTAAGTCTAAATTAAAGATCAACCAGAAAAGTTACAAAATCAGTCTCTCTCACAAAAAATATTTATTTTTGTTAGAATGTAAATAAAAACATTAAGAAAAAAGAAAGTGTGCTTAATTAAAAGTTATTGTTTTAATGTTTAATTATGGAGATAATTTTCTGTTTCAACAACTTTTCTTTAGAACAACGAATATAAGTCTTAAGATTATTGCAACTTTAGGGTTTTAATTAAGTCTCTCTTAGCCCATTATTAATTCACAAACTAATATATTTCCATGTGCACGTGTTTCCCCCATCAACTCAATTTAATGAAAAATCTTCTTTTACTTCATCACAAATTTAATAACATAAAGAATCAATTAATTAATCAATACAAAAGTTTAGACATTATGTTATTATATTCCAACACTACCTTTGTTGAAACCCAACCTTTTTTAATTCTTGGAATTTCTCTAGAAACCATAGGACAAGGAAATTATAAAGAAATTAAACAAGAAATTGCAGATGGATTCTCATCCACATTAACTTTTTTTTTTTTTTTTTTAATTTTATGATTTTAATTTTTTAGTGGGAGAGTAAGAAAGTCTACCCTTAGTCTAATGTTTGATTAGTAATTTTAATTTTGGTCAAAAGCAAAGACGCCTACAATTAATTTTCTTCTCTTTTCTACTTTGTTCTCTCAAAAATTAATAAATATAAAGTTTTAGATACATTATATTTTAAATATTAAATCTTTAAAATCTATCATCTTTTTGAAAAATATTTATATGATTACTCTAGAAATTACATACAATATTTACATTCTCGATATCATCGTAATTTCTTTCTCCTCATCTTCATATATTTAATTATTGTCGTGGTAAATACTAATCATAATGTTGTTGTTGTGTTGTTGTTATTTTATGAATTTATTATGTGTGCATGATTTGAAAAATCCCATTATAAATGAATAATCAAAATTCTCTTCTTTTATCATTAAGTTTAATTTTTAAAATAATTGTCCATGGAGACGATGTTGAAATTTATATAGATATTGTTTGATTCTCGAATTGGTTGACATGAACAGACTATTGACAGTGATATTAATCTTGTAGAAAATTTTCCCATTGAAAAGAACAAAGCTAATTAATCAAAAAGAAGTTTGAAGTTGGTGAACCCTACTATACCCCTAATTAAAGAATGATAACGATGGTTAACAATGTTTGACATTAAAGTTGTGTACCTCTTTTTTTCAAGCTATATTGTTTTTCATTATTTTTTTCTTTAAATTTTGTGTTCGTAAACACTCCAAAAAATTCCAACAAAGCATCAATTTGACTAAAGAATTCCAATCTTTTATAAAAAAAAAGGGACGAAATAAACCACGATAACGAACGCAATATTTTGCATTAAAAAATAATTAATACCAAAGTCATGGATGAAACAAGTTTAAATTTTAATTATAATTTTCTAAAAAGTAGTTTGTAGCCTTTAAAGCAAATTTTAATTGCATCAACAATTTTCATATATAACTTGGGGTGCAATTTAGAGATGAAAATCAATTTAAATAACTTATATATGATTAATTTTTGTTTTAGTTTTCATATTGAAAAAGTGGAAAAAGAATATATTGTTTTTCAAAGTTTTCAAAGGTTTGAAAATATTAGAAAAGAAATAGAGACGTAATGTAATCTTAATTTGGGTTGGAAGAGTATTTCAACAACTCCCAAACATTATCTACCAAACACATTATCTATTTGTCTTTTAAATGTGAAACAAGAAAAATAATCTTATTTAGTTAAAAGTAAGCTTATATTGACTAAAATTTATTTAACAAAATAAAAAGGAAACTTTTCATAAATATAAAAAATTAAATATTTGATCCGATTTTTTTTTCTTTTCTTTCATCTCTTCCTTTATTTATTTTTCAAAACTGTTATTTAGTTCAAAATCGTGAAAAAAAAAATTGTTTACCCAAATTTAATCGATCAACTATAAATGATTTATATTTGGTATTTTTTATTATGGGTGTGTGAATTTTTTTCGTTTTTGAAACTTTATTATATTTTTGAAAAGCCACTCCGAAAAAGCTATATTAAATAATATATATATATAGAAAAAATTCATATATTTTTGTTTTCTTACGTGAGATAGGACTAAAAATATAAAGGTGTCATTTTGTTAAATAAAGTAATATAATTAAATTAATAATGTGAAAGGAATCTATGTCCTTCACCTTTAATTAGAATCATAAATTAAGGAATGTTATATTATTAGCACAACCTTTGTTTGTACATTTAGATTATGAGTTTTTTTTTTTTCTTCTTTAACATCTTTATCAATATTGAATATAGTAACTAAATGTATAATCGTATCAACCCAACTAAAATTATATTGAAATTAACCATTTGATTATAATTATCCATACATCAACTAAAACTATATATATAACAATGAGCAAAGTAGTTTGAATATTTAAATAAAAACATCTAAATGAATTATTTTCATCTTTGTCATAGTTTGTCTTTAAGGGCATTTTTAAATATAACAAATTCTTAGATTCTCTGTAACTTCTTTGAATTGTTTTGGCTGTATTATATATATATATAATATATATATATATATATATATATATATGAAAATTCCTTTTTATGTATTTATTTATTTATTACTTTTGAAGAAAAGAGAAAAGACGAATTGATTGGGCAAAGAAGATTTGAAACCTTATATAGAAAAGTACACGAAAGTGGACAGTTTGTTAATAATTTTATAAGAGACACAAACTTTATGGTGGACGGTCTCTTGAAAGGAAATAACAAAGACTCCAATTACCATCTCATCAAATGCTCCATATGCACCTCTCCCAACATTTACGGTGCACTAATCCTTACAAAAGTTAGGAACACAAACTTTGCCCTTTTAAGCAAATGGTTTTGGCAGTACCATCATGAAAATAACTCTTTTCGGAAGAAAATAACTGATGTAAAATATACGAAAAGGTACCGGCGAGAGTAAAGAAAAAAATAATACAAAATATTCAGTAATCCAATTCGGTGATAAACAGTACAACTACATTTAGGGATCGGCTACGCCAAGTTAAGAAGATATATTCACTAGAGAATATATATATACATGGATTACAAGTATTGAACTCGTCTTTAGTAGATAATCTTGAAGTACGGAAAGATTAAGCTAGATGATCACTAATTAGGCTCCACCTAAGTAGTTGATACTTGATTGATTCTCCTTGCAAAAACTTAGAATTCCCTGGCGATTAATTCAATTCCAATACTATAGTATGATTAGGCTCCCCCTAAACACTATAATAATCCAACTTCTTAGTCAACGTTGAATTAACAACACACGTCAACAACAAACAGTCTTTCATATATAAAATATAATAATAACAAACTATCTTCGAAACAAATAAGCTTTGATCATGAACACAAAAAATATGTAGCTACACAACTCTCAGCTAGGTTAAAACTTTTTCTCAGTAAAAACCCAAGTTATGGAGAACACACAACCAAATAAATGGACCAACACCAACAAGGAAAGACAAGAATCAACCGGTCATTAAGTCAATCATACTATGACTAAAGTAACAAAGAAAGTTTTCTTTTTTCTACAAGAAAACAAATAAAAGAAGACTTTTACGGCCAACAAAACATTAACAATCTTATAAAATCAACTTAAAAGAAATGAGTTGTTTTCTAGGGGAACATCTTCTCATTTATTGTTTGTTGCCCATGAGAGTCGGTGCTAGCCTTCATGATACGACATTCATGTTTAATTTAGAAAGATAATAGTGGAAAAGCAATATACACACACACACACACACACACACTAAAGATGATGAGTAGGTTCTGTGCTTACTACCAAGTGAAGTGATGGATTGAGGTGACAAGTGCAAGTTTAAAAAGATAAATATTTGGAATCTAAAAGTGATGAGTTCTTTAAAGATAGGATCTCAAAAAACACAAAAAAAAAAAAAAAGTTTTATGTTAAATTCTATAGCTGAGGCAAGAGAGATCAAAGCACCCCAAAACATCTCAATTAGGGAGATAAAATTATCTACCTAGATATATCAATGACATTTCGTTACATATTTGTTACATTTGTTGATTTTTCTAGAATATGCTAACATATCCGTATCGATTGTATAGAAAAACATGAAAATATATATCCACGAAAATATTGATTGGTCAGAAAAAGTTTCATGAGATAATTACAAATATAGCAATTAGATTCAAAATAATTAAATATATAGTAAAATTTTAAAAAATTGCCAATATAGCAAAATCTATCAGAAGTTTATAACTAATAGAGCAAAAATATTGTCTATCACTGGTAGATTATAAGAATCTATCAAGAATTATCGACCATTTCTATTAAAGTTTGGTTAAGAAAGAGAGATGGTTTATTAAAAAATATTAAAAAAAAAAGGAATTAATTAAGTTGGTGTATCGGTGAGTTGTGGGGTTTAGGGAATTAGTGATAGAATTAAGAGAAGACCGGTTTTGTGTGGTCGTCTTTTCCATTTGCGCGTCCTCCCAAAGGTCGTCTTTCCCATTTGCGCGTTCTTCAAAACGTATTCTTTATCTCTTACTCTCTTTCTCTTCTCTCTCTCTTACTCTCTCATCAAACACGTTCACTTCTCTCTCTCTCTTACCAAATTTTCAACCCCACTACTCTTTCTCAATCTATACATATATACCATACTCACACATGTATATATTTACGTCCCCCGCAAATAACTAACGCGTGGCAGCATGAGAATGGTGGCGTATGAGTCAGGTGAAGGTAGGATTACGAGACCACACGCCCTTTAGTATAAAATGAAATAGGAAAGTTCATGGCAAGTTCTCTTCTTGTTTTATTTCATGGAAATTACTCAGTCATTTATCATACATGTTTCCTCTATTAAATACCTTCATTTTTATTGCGGCTGTTCTTCACCTCCATCGAAACATCCACTTACCTTCCTCTTTCACATTTCTTATTCAATTTTCAATACAAAAAACATGGTACAAAACACAAACTCTCCTCCTCCCTTTGATCATCTTCAAAATCCACCCAAGAGAATCTGCCTCTCTTTTCCTTATGGGTACAGTCTGATCTCTCTTTTAATTTCATTTTTGGACTATAATGTATGGATCTAGGCCTAATTCATTGTTTTCTCTCCTTGTATTTTCACAGCTCTGGAGTTGGAGCTGAGCTTTCAAGTCCTCGATCTTTGGCTTATCTTGAAAAAAAATTTCGTGGGGTGGTATGCATGTTATGCCTAACTATTTCACACTTTTTGTTAGTTATTAAGCTGATGTGTGTTATGGTAAATTTAATTTCAGATACGCGAGGTGGTGGAGGCAAAGGTTGAGGCTCACTTTTTTAGGGTCAAAGAAGGAGAAGAAGTTGGTGGTGGTGGATCTGGGGGAACAAACGAGAATTTGAGGCTACGTTTCACGAACAGGATTCCATCCACCGTCTCAACTGGAAATAACATCGAAACCGAGAATGGGGAGGAGCTGCGTGTTGAATTATTTGATGCTGTTACTGGTCGCATCATTGACGTTACTCATCCTTTGTCGTCGGCGTGGATTGAGGTTGTTGTCCTCGATGGAGAATTCGACGACGAGGAAGCAATAACTCAATCGGATTTCAACAGAAGTGTTGTGCCACAAAGGCTGGGAGAACGACCTTTGCTGGTTGGTGATGATAAGGGGTTTCGTTTAGAAAATGGAGTTCATTCCATCACCAATTTGTCATTCACTAGAAACTCAAGCAGAAGCAGAACTAAGAATGTTCGTTTGGGACTAAGGGTTAAACATGACTCCAACAACAACTATCCCACAATCGGATACGCTGTGTCTAATCCTTTTAGAGTGAAGGATCAGCGAGGCCAACGTACGTATCTTGAACCGTCATTCTGCTAGAGCTGAGCTGCATCCACCTTTTCATTTTTATAATTACATTATCCTAATTACTTTTTTATATGTATATCTAACAGTGAACAAGAAACACCATCCTCCAAGAGGAGAAGATGAAGTATGGAGATTGGAAGGGATCGGGCGAAATGGCGAATATCACAAGCGCCTAACTTCCCATGGTATCCTAAATGTGGAAGCCTTTGTGAAGGCTTATCAAAAGGACTCTCGTTCTCTAAGAAAGGTATAGTATATATACATATTTATATAGATAGATAGCCAAGAAAATAAGAAATTGATAATCATATATATTATCTCTAATGTGGTTTTAATTGTAGTAAAACAATATATATAGATAGAATAGTTGTGATATTAATTAACTTGGGTAATTTTGATGCACAGTGGTTAGGGAATAGACTTTCAGAGAAGACATGGAAGACAATGGTAAAGCAAGCTCTTCAATATGTTCCTATCACCATCCCCACTTTTGATCGACCATACCTACAGGTATTTTTTTGTTATGCAATAAACTCATCTTTCTTCCTTAAAATTCATGATAATTATTTTGATAAATGTAAAAAATAAAGCAGGAAAATCTGGAGCTGCAAAATGAAGCCATGGATCAAAATGAAAAAGCTGTTTTCAACCAAAACATTGGTGCAATTAATGGAAATTATGAGTTCCAAGAGCAAACATTGTTGGGCAATTTTCACTTCTTTTGTAATCCCACATTTGAAGGTATGGTTTTTCTTCTTCTTCTTCTTTTAATTGATCATCATAAAAAAAATAAAAAAAAAAAAGAAAAGAAAAATCACTGTCTTGAAATTATTTACTTGATGT AATTTCAGGTACGTGAGGAGGTGGATGCACAGCTTAAAGCTCACTCGGTTGATGTTGAAGAGGGAAAAAAAGTTGGTGGTGGTGGTGGTGGTGGTGAATCTGGAGGAACAAACGAGAATTTGAGGCTACGTTTGACGAACAAGATTCCATCCATCATCTACACTTCAAATGACATCGAAGCCGAGAACGGGGAGGAGCTGCGTGTTGAATTATTTGATGTTGTCAATGATCGCATCATTGACGTTACTCATCCTTTGTCGTCGGCGTGGATTGAGATTGTTGTCCTCGATGGAGAATTATTCGACCACGGCGAAGCAATAAATCACTTGGATTTCGACACAAGTGTTGTAGCTCAAAGGCCGGAAGAAGGACCTTGGTTGGTTGGTGATGACAAGAGGTTTCGGTTACAAAATGGTGTTTATTCCATCACCAATTTGTCATTCACTAGAAACACCTTCAGGAGCAGGACTAAGAAGATTCGTTTAGGATTAAGGATTATATATGACTCCAACAATAACTACCCCACAATCCGACCTGCCGTTTCTAACTCTTTTAGAGTGATGGATCATCGAAGCCAACTGAACAAGAAACATCATACTCCGAGAGGAGAAGATGAAGTATGGAGATTGAAAGGGATCGGGCGAAATGGCAAATATCAGAAGCGCCTAACTTCCCGTGGTATCCTAAATGTGGAAGCCTTTGTGAAGGCTTATCAAAAGGACTCTCGTTCTCTAAGAAAGTTGTTAGGGAATAGACTTTCAGACAGGAAATGGAAGACAATGGTAGAGCAAGCTCTTCAGTATGTTCCTATCACCATCCCCACTTTTCATCCACCAAACGTACAGCAGGAAAATTTGGAGCAAAATGCAGGCATGGATCAAAATGAAGCTGTTTTCAACCAAAACATTTATGCAAGTAATGGAAATTATGAGTTCCAAGATCAAACAGTTTTGGACAATTTTCAAGACTCTCTCTTTATATAATCCCTTATTTGGAGATCATTATAATTACACAATGCCAACGTTGTTGTCACGTGGAGAAGCTTCAACATCAAATGCCCAAAACACATAAACAATCATGTTGAATAGACAAGTACATGTAACCAATACTTCCAATGGATCATGCAGCAAGTTGGTTCCCAAACCTAAATGATGCCAAATTATATAATAATATACACAAAAAAAAAAATCTAAATTAAGCACACAAGGGAAATGTTAATTTAGTTTAATTAGTATTTTTAGTTTGTTATAATTCCTTGTATTACTCTATAAATAGCCATTTTAGAATTGCAATCACTTTTAAATCTTCTTTGGGCTATTTATAGCTTGAGGAGAAGATATAACTAATTAGTTAATTCTAAAAACATTAATTGAACTTAATTAACAACTAAACAAATATTAAACTAAAATATAATCATTATCATTTAAGTCTAAATTAAAGATCAACCAGAAAAGTTACAAAATCAGTCTCTCTCACAAAAAATATTTATTTTTGTTAGAATTCTTTTAATTGATCATCATAAAAAAAATAAAAAAAAAAAAGAAAAGAAAAATCACTGTCTTGAAATTATTTACTTGATGT TTTCAGGTACGTGAGGAGGTGGATGCACAGCTTAAAGCTCACTCGGTTGATGTTGAAGAGGGAAAAAAAGTTGGTGGTGGTGGTGGTGGTGGTGAATCTGGAGGAACAAACGAGAATTTGAGGCTACGTTTGACGAACAAGATTCCATCCATCATCTACACTTCAAATGACATCGAAGCCGAGAACGGGGAGGAGCTGCGTGTTGAATTATTTGATGTTGTCAATGATCGCATCATTGACGTTACTCATCCTTTGTCGTCGGCGTGGATTGAGATTGTTGTCCTCGATGGAGAATTATTCGACCACGGCGAAGCAATAAATCACTTGGATTTCGACACAAGTGTTGTAGCTCAAAGGCCGGAAGAAGGACCTTGGTTGGTTGGTGATGACAAGAGGTTTCGGTTACAAAATGGTGTTTATTCCATCACCAATTTGTCATTCACTAGAAACACCTTCAGGAGCAGGACTAAGAAGATTCGTTTAGGATTAAGGATTATATATGACTCCAACAATAACTACCCCACAATCCGACCTGCCGTTTCTAACTCTTTTAGAGTGATGGATCATCGAAGCCAACTGAACAAGAAACATCATACTCCGAGAGGAGAAGATGAAGTATGGAGATTGAAAGGGATCGGGCGAAATGGCAAATATCAGAAGCGCCTAACTTCCCGTGGTATCCTAAATGTGGAAGCCTTTGTGAAGGCTTATCAAAAGGACTCTCGTTCTCTAAGAAAGTTGTTAGGGAATAGACTTTCAGACAGGAAATGGAAGACAATGGTAGAGCAAGCTCTTCAGTATGTTCCTATCACCATCCCCACTTTTCATCCACCAAACGTACAGCAGGAAAATTTGGAGCAAAATGCAGGCATGGATCAAAATGAAGCTGTTTTCAACCAAAACATTTATGCAAGTAATGGAAATTATGAGTTCCAAGATCAAACAGTTTTGGACAATTTTCAAGACTCTCTCTTTATATAA FQVREEVDAQLKAHSVDVEEGKKVGGGGGGGESGGTNENLRLRLTNKIPSIIYTSNDIEAENGEELRVELFDVVNDRIIDVTHPLSSAWIEIVVLDGELFDHGEAINHLDFDTSVVAQRPEEGPWLVGDDKRFRLQNGVYSITNLSFTRNTFRSRTKKIRLGLRIIYDSNNNYPTIRPAVSNSFRVMDHRSQLNKKHHTPRGEDEVWRLKGIGRNGKYQKRLTSRGILNVEAFVKAYQKDSRSLRKLLGNRLSDRKWKTMVEQALQYVPITIPTFHPPNVQQENLEQNAGMDQNEAVFNQNIYASNGNYEFQDQTVLDNFQDSLFI Homology
BLAST of MELO3C015266 vs. NCBI nr
Match: XP_016900963.1 (PREDICTED: calmodulin-binding protein 60 C-like isoform X1 [Cucumis melo]) HSP 1 Score: 648.3 bits (1671), Expect = 3.6e-182 Identity = 324/324 (100.00%), Postives = 324/324 (100.00%), Query Frame = 0
BLAST of MELO3C015266 vs. NCBI nr
Match: XP_008450564.1 (PREDICTED: calmodulin-binding protein 60 C-like isoform X2 [Cucumis melo] >KAA0050939.1 calmodulin-binding protein 60 C-like isoform X2 [Cucumis melo var. makuwa] >TYK10286.1 calmodulin-binding protein 60 C-like isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 641.7 bits (1654), Expect = 3.4e-180 Identity = 323/324 (99.69%), Postives = 323/324 (99.69%), Query Frame = 0
BLAST of MELO3C015266 vs. NCBI nr
Match: XP_011659636.1 (calmodulin-binding protein 60 C isoform X1 [Cucumis sativus]) HSP 1 Score: 471.9 bits (1213), Expect = 4.6e-129 Identity = 255/322 (79.19%), Postives = 274/322 (85.09%), Query Frame = 0
BLAST of MELO3C015266 vs. NCBI nr
Match: XP_011659640.1 (calmodulin-binding protein 60 C isoform X2 [Cucumis sativus]) HSP 1 Score: 469.2 bits (1206), Expect = 3.0e-128 Identity = 253/322 (78.57%), Postives = 273/322 (84.78%), Query Frame = 0
BLAST of MELO3C015266 vs. NCBI nr
Match: XP_008450560.1 (PREDICTED: calmodulin-binding protein 60 B-like isoform X1 [Cucumis melo]) HSP 1 Score: 453.8 bits (1166), Expect = 1.3e-123 Identity = 240/320 (75.00%), Postives = 267/320 (83.44%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy Swiss-Prot
Match: C0SV51 (Calmodulin-binding protein 60 C OS=Arabidopsis thaliana OX=3702 GN=CBP60C PE=2 SV=1) HSP 1 Score: 142.5 bits (358), Expect = 8.4e-33 Identity = 92/270 (34.07%), Postives = 151/270 (55.93%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy Swiss-Prot
Match: Q0WVV6 (Calmodulin-binding protein 60 D OS=Arabidopsis thaliana OX=3702 GN=CBP60D PE=2 SV=1) HSP 1 Score: 137.1 bits (344), Expect = 3.5e-31 Identity = 93/269 (34.57%), Postives = 145/269 (53.90%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy Swiss-Prot
Match: Q9FKL6 (Calmodulin-binding protein 60 B OS=Arabidopsis thaliana OX=3702 GN=CBP60B PE=2 SV=1) HSP 1 Score: 134.0 bits (336), Expect = 3.0e-30 Identity = 88/265 (33.21%), Postives = 141/265 (53.21%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy Swiss-Prot
Match: C0SVV6 (Calmodulin-binding protein 60 A OS=Arabidopsis thaliana OX=3702 GN=CBP60A PE=2 SV=1) HSP 1 Score: 133.7 bits (335), Expect = 3.9e-30 Identity = 82/248 (33.06%), Postives = 139/248 (56.05%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy Swiss-Prot
Match: F4IPM3 (Calmodulin-binding protein 60 E OS=Arabidopsis thaliana OX=3702 GN=CBP60E PE=2 SV=1) HSP 1 Score: 130.2 bits (326), Expect = 4.3e-29 Identity = 78/227 (34.36%), Postives = 124/227 (54.63%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy TrEMBL
Match: A0A1S4DYB4 (calmodulin-binding protein 60 C-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103492123 PE=3 SV=1) HSP 1 Score: 648.3 bits (1671), Expect = 1.7e-182 Identity = 324/324 (100.00%), Postives = 324/324 (100.00%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy TrEMBL
Match: A0A5A7UBM7 (Calmodulin-binding protein 60 C-like isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold16G004370 PE=3 SV=1) HSP 1 Score: 641.7 bits (1654), Expect = 1.6e-180 Identity = 323/324 (99.69%), Postives = 323/324 (99.69%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy TrEMBL
Match: A0A1S3BQ55 (calmodulin-binding protein 60 C-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103492123 PE=3 SV=1) HSP 1 Score: 641.7 bits (1654), Expect = 1.6e-180 Identity = 323/324 (99.69%), Postives = 323/324 (99.69%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy TrEMBL
Match: A0A1S3BPG1 (calmodulin-binding protein 60 B-like isoform X3 OS=Cucumis melo OX=3656 GN=LOC103492122 PE=3 SV=1) HSP 1 Score: 453.8 bits (1166), Expect = 6.3e-124 Identity = 240/320 (75.00%), Postives = 267/320 (83.44%), Query Frame = 0
BLAST of MELO3C015266 vs. ExPASy TrEMBL
Match: A0A1S3BQH7 (calmodulin-binding protein 60 B-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103492122 PE=3 SV=1) HSP 1 Score: 453.8 bits (1166), Expect = 6.3e-124 Identity = 240/320 (75.00%), Postives = 267/320 (83.44%), Query Frame = 0
BLAST of MELO3C015266 vs. TAIR 10
Match: AT2G18750.1 (Calmodulin-binding protein ) HSP 1 Score: 142.5 bits (358), Expect = 5.9e-34 Identity = 92/270 (34.07%), Postives = 151/270 (55.93%), Query Frame = 0
BLAST of MELO3C015266 vs. TAIR 10
Match: AT2G18750.2 (Calmodulin-binding protein ) HSP 1 Score: 142.5 bits (358), Expect = 5.9e-34 Identity = 92/270 (34.07%), Postives = 151/270 (55.93%), Query Frame = 0
BLAST of MELO3C015266 vs. TAIR 10
Match: AT2G18750.3 (Calmodulin-binding protein ) HSP 1 Score: 142.5 bits (358), Expect = 5.9e-34 Identity = 92/270 (34.07%), Postives = 151/270 (55.93%), Query Frame = 0
BLAST of MELO3C015266 vs. TAIR 10
Match: AT4G25800.1 (Calmodulin-binding protein ) HSP 1 Score: 137.1 bits (344), Expect = 2.5e-32 Identity = 93/269 (34.57%), Postives = 145/269 (53.90%), Query Frame = 0
BLAST of MELO3C015266 vs. TAIR 10
Match: AT4G25800.2 (Calmodulin-binding protein ) HSP 1 Score: 137.1 bits (344), Expect = 2.5e-32 Identity = 93/269 (34.57%), Postives = 145/269 (53.90%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (DHL92) v4
Date Performed: 2022-08-06
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.
|