Cmc06g0170361 (gene) Melon (Charmono) v1.1
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.AAAGTTCGAACACTATATTACTACTTTTTTCAAATTTACCAAATTATTAGTATTCAACAAATTTTGCTAATTATTTTTTTTTTACTTACAACGATGGATCAATTTTGCTTTGTCTTCTTCATCCTCTTCCTATCTCGGATTTCCACTTTTCAAGCTTCAGGCCGCAGAGAAATGGAAGTGGTTTCCATAGCTATATTGAGTTCTCTCATTGTCTTCACTTTAAAACTCTCTAATATTTGATTCCTCTTTTTTGTTCTTCACAAATGGCCTCCATTGATTCACTGTTATCTCCAAGGGCCTTCCTTCAAAATCCTCCTTCAACCAACTCACTCCTCGTCTGAACCATCTACAAACTAAGCGTTTCAATTTCACTCGGAATTCCAGAACGGCATTTTTGTTTCTTCACCGAAACAGGTTTGCTTTCTGTTTGGCAATTTCAAATTCTTCGGATTCACCGTCACAGTCCTCCGGTGGGCCGTGGCGATAAAGCTGCCCGAGATGATTTTGTAACCAGGGTTTTGAAGGAAAATCCCAGCCAATTGGAACCCAGGTATTTATTGGCGATAAATTGTGTACTTCGAAAGAGAAAGAGTATTTGAGTCCATAATCGGAGGTGGGTTTGTTTGATTTTGTGGTCAAGTGGTTGGATTCGAGAAAGAAATCGAAGGAGGAGGTAATTGAGGGTCATAATGAGGGTGGAAATAAGAGTGAGAACGTGTATTTGAAAGACATTTTGAGATATAAAGGGAAGCTTTATGTGCCTAAGCAGGTTTTCAATACAGAGTTATCGGAGGAAGAAGAATTTTATAGAAGTCTTGAGGCGTTGCCGAAAATGAGCTTCGAGGATTTTGTGAAAGCCATGGAGAGCGAAAAAGTCAAATTGTTAATTTCAAAGGAGAATAGCTACCTCTTATGGCAACAGGTTCAGAGAATTTATTGTGGATTTAAAGGAAATTCCAGGCGAAAAGAGCTTGCAAAGAACTAGATGGTAAACTTGACTAGCTTACATCCTTTCTTCTTGATTCTTTCTCCATTTGTTCTAATAAATATGCTTTTACCAGGGCGTTAAGGCTTGATGAGAGTAAAGCCCAAACAGTATTGGAGCAGTATACAGGTCCGCAATACCAAATTGAGGCGCATACCTCGGTGGGCAATCAATTCCTCAAACTATTTCTAGTTTTGACAGGTTGAGTTAAGATTTTTAATGTTGCAGAATCTCTTTGCTCTGAATTTTTTTTCACTTTTATTAGGAATTGCCATTTCATGTACGATCTTACTTGAAGACGACATGTTCTGTAGATTGTACGGTTATCTTTATTCATCCAAACCCGATAGTGAGGGGTTTTTCTCTTATACAAAATAATATACATGCGTTTTTTCTAATCAGAGTTTAACCTTTCCTGGGATTGTGTGTTTCAATTGGAATGTGTATCCTAGCTTTTGTACCGGGTTTTTCATCATTAGTCTATCCCTTCTTTACATAAAAATGATTTTCTATTTCCTTTTGTCCAAAAGGAATATGAAAAGAGGCTAGAAGATTTTCTGTTTATCTTCCTTGATATCTTGATTCTTATGATACAAGTGTTAGAGATAAAAATAATATTGACATCTTTCTTACTTCTTCGTCACCTTCTTCAAAGATCAATGAGAAAGAAAGAATTTCTTATTTTGATGGAAAGTGTATGAAATATTATCGTTTCCTTTCTCTCTTTATCATGTAGGAATTTTTGCAAGGGATTGATTTTTCACGCTCCAGCTCCAAAGCAGAAGCTCGTGTTAATGTTAGTACTCATTTCAAGTTCTTATAGTCCTCTTAGAGTAGAGGATGTAAATCCTAAGCATCATCCTATTGCTCTTGAATGAAAAATTGCAGGGTTCAGCCGGAGTCAAGTTCAGTGATGTAGCAGGAATTGACGAAGCTGTAGAGGATCTCCAAGAGGTACATAGCCATCAGTTGAGGCCTTGTCCATCGTTCCTTTCCTTTATTAATTTCATTTCTATCACTCTATGCTCAAAATAAACAATGGGATCTTTCATAATTTTGTCTTACAAAGAGAGAATCACATTTCAACCATTATCTCATAATATTTAGGATGAAATTTGAACCAGTATGTGGAACTTTCTTTCCTTGCTTGTAATGTGAGTGCTCAGGCTCTTTATTATATTTTTAATGTTATATAGATGAAGATGCATGGGAAATGGGAAAGGATGGGAATGATGGAAGAGTTGGAATTCGTAAGCCAGATGTCCTGATACTGACAACAACTACATTTTTCTTAACAGAAATGGAAATGTAAACTTTTATTAGGACATATGAAAGAGGAGCCGTGCAAAATTAAAAAAAGAAAAAGAAAAGAATACAAGTCACAATAAAAGGCTTCAGTTGTTGATAAAACTATATTCGTTCCTAAGTATTAAAGGATTTCAATCCGAATTTTACGCCTTCTCCATGTGAATTCCCTGGGAATAAGAGTTCACTTCTATGGCATTTATCTTGTCGTGGGTTGTAATTTTGTATCTGGTTGATAGGCTTCTCACCTCAATTTACTATTTCAACAATGTACATTGATATATTTATTGTTGATTGAAAGCCATAAGTTTTAATCAAGTGGTGGATTTACCCTTTTATTATTTTCCTGTTTAGTTGGTGAGATACTAAGAATCCTGAAGTGCTTGACAAAGTAGGAATAAAGCCTCCTCATGGAGTTCTTTCTGAAGGACCTCCCGGCTGTGGTAAGGTTAGTTTCACTTCCTCTAGATCTGGAAATATTTGAGCTGTACAATATTTCATTTACACAAGTTTAACTCCAGTCACATATTTCAGACGTTGGTAGCAAAGGCCATAGCTGGTGAAGCTGGCGTTCCATTTTACCAATGGCTGGATCTGAGATTGTTGAGGTTGTAGTTGGTGTTGGTTCTGCTCGTATTAGAGATCTATTTTAGAGAGCGAAGGTGATACTTCAGTTCTTGGAACCTTGGCACTTTTCTATTAACAGTATGAAGTATCCTCTTATATTCAATAAGTTATATGAGTTCAAGCCATCAGTAAAAGCAACTTTAACTCTTCCAATAGTATATTAGTTTCTTGGGTCATTCATTATCATTTTTGGAAATCCTTAACTGTGATAAGCTAGTAGGACCTTGTATAAGGTTTTTGTTTTTAAGGTTTGACGGTTTGCCTCATTGGCTAATCTTTGTCCGGCTTTTGGAGAAAGTTGGGGTCTTCCCAGTAGTAGTTTGGAAATGAAAAAATTTCTCAGCTTACCTGTTATCAAATAACTATGTATGTAGTTTAAGTGCAGAGTTTCACTTGTCCATTGTTTCTAAAGTCAGTTCTCTATGTTATCTCTATGCAGGTCAGTTATCTTCATGGATGGAATTCATGCCTTGGCGACTAGGTATTCAGGACATTGAACTTCTTTGGTTTATTTTAGTTAATAGATTACATTTAATGCATCACACTATATGACATGTTATCTTATGACTAAGGCAAGTGTCTATCATAGGGCCTTTGGGGTCCACGCCCCCATGTTGAGAACTTAATAATTTGGTGAAATCTCTCTGAAAATTAGTGGGGTCTCAACATCCCATGTTATTGGATATTAGATGTCATTTATTCTGTTAATCTTTTTCATGTCTTTTCTTTTAAGCAACAGCCAAAAGATCAGACTATTTATTTTCATCCGTCTTCATTCTTATAAATACTATTATGTCTCAGGCGTCAGGGAATTTTCAAGAAATCTACGGATCTTCTCTACAATGCAGCTACCCTAGAGAGGGAAACCACATTGAACCAACTTCTTGTAGAGCTTGATGGATTCGATACTGGAAAGGGTGTTATACTTTTAGCTGCCACGACTAGAAGAGATCTGTTAGATCCTCCGCTTCTCCGACCGGGTCCTTTTGATGAAAGGTTCAACTTTTTGATTCATGAATCATGAATGTGCAATTGCTTGTTTTTCTGCCTGGGGAAAATGAATACAGAAAGATATCAAGTGTGCTTTTCAAATATTCTTGAAATCAATTGTTTCTAAATGCATGACATCATTTAAGAATTTGAATACCTGCATTTCTTGTGATAGAGAAATTGCAGTGCAATTCAAATTAAAGATTATTCATGATAATGACCTTCTAATTCTTTTAAATATGTTTTCCCTCGGCAAGTAAACTAAATTTTCTTGCTAATGTTAGGTGTTGTGTTCATACATGTAATATATAAAACTTAAAAGGTATACAGCATGTGAGCATACTTTTATGATTCTATATCTTGTTTGTCTATAATGTTGAGTACCTTCATGGGGCATTCTGTGCAGACAAAAATTCGTCCCCGGGCGCAAAAGGGAGACTCGGTATCTTGAAAATTCATGCAAGCAAAGTGAAGATGTCGCACTCTGTTGATCTAAGCACCACGAAATTTACCTGGTTTGTTCTTTTTTTGCTTTTTATTATTGATCTGTAACTTTGTTTCTTGAAATGATATATCAAATGACCAGGTTGGTCGGGAGCGAAGTTGGCTCAACTTGTCCAGGAATCTGCTCTTGTTGCTGTCAGGAAAGGCATGAATCTATTGTCCAGTCAGACATGGATGATGCAGTTGACTGGCATAGAGTTAGGTCATCAGGGGGACAATGCCGTAGAGCTACCACAGAAATGGGTGTTGCTATAACTTCACATTTGCTTAGGAGATATGAGAGTGCAAAAGTTGAATGCTGCGATCGCATTTCAATCATTCCTCGTGGTCAAGTCTGTTCAAATGTGCTAGGCCACCAATCCTATTTACATACCATAGGAAAAATAAGAAGAAACATGAAGCCAACGAAAGAGAGACAAGTGGCAAGAAGGATCATGGCCATGAGACCAACCCAGAGGTAACACGTGTTGAAGGGGAGGAAAGCAAGGAGGATGGGGGACCAGAAAGTGGGACCCACAGTTAGTTAGTCGTGGGCAATAAAAAGGGGACAGGAGGGCAGAGAAGGGTACGAATGTTTTGATGCGTTAGTGCAGGAGCAGGCACCTCCAGAAAGGGGAGGGTGGCACCAGGTTACCGTTTCTTTTTGTGTGCTTAAGTAGCCGTAGATTGTAGGAGAGGAGGAAGGCATTATTCCGAGTGTTCTTGTTTACGTCTGTGTTCTTGGTTATTACATACTGTGTGTGTTTTACTTTATCAGCTGGGTTGTTTTGTCAATCTTAGAAAGGCTATTGTCATTAGTCTTTGAAGTGTTTTATTTCTTGATTTTGTGCTGTACTCTGTTCTTCTGGAAAGTAAAAGAAAGGAACGAGGAAGTGTCTTAACATTTTGGTATCAGAGCTTCATACCTGGGCAGATCATGTCAACGACGAAGGCAACGGAGGAACGGTTGGAGGCGGTTGAGATGGAAATGAAAAGGCTGCCGATGATCGAGGAGAATATAGCATTACTAGCCAAAAGCATCACGGAAATGAACTCTCAAATTGATAAGCAGGCACAGCAGCAACAAGTGATACTGAAGTATATTGAAGGAATCGTTAAGGATGATTCTCCTGTACGAAGGACCGAAGAAGGGTCCACGAGCAAGGTCACCATGGCCGAAGCAATATATCCAGCGACTGTTGAAGAGCCGAAGTTAGAAGTAAAAACAGAGGAGGAGCGACCCGTGGATCGGAGCAAATTTAAGAAAGTTGAAATGCCAGTCTTCGACGGGACAGACCCCGACTCGTGGCTGTTCCGGGCCGACCGATACTTCAAGATACATAACTTGACGGATTCAGAGAGACTTACCGTGGCAGTAATCAGCTTCGATGGGCCGGCGTTGGACTGGTATCGATCACAAGAAGAGAGGGAAGCTTTCACCGGTTGGGATGACTTGAAGCTAAAGATGCTGGTGAGGTTCCGCGCAACTAGGGAAGGTACATTGGTGGGCCGGTTCTTAACGATCAAACAGGAGTCCACTGTCGAGGAGTACCGGAATCGTTTCGATAAACTATTGGCACCGGTGGCTTCCCTGCCGACGGTGGTGCTAGAGGAAACATTCATGAATGGGTTAAATCCATGGTTGAAGTTGGAGGTAGAAACACTGGAGCCCATTGGGCTGGCCCAAATGATGAAGTTGGCCTTGAAGATAGAAAATAGAGAGCTGGTCCGAAGGGAATGCGGGCTGATCAGCGCCTACGACAGCAAAATGGGCCATAAACAACAGCAGGCTAAGAGCCCCATCACAGCAGCCACGAAGGAAGGAACGGTCAGTGGGAGTTGGCCAATGAGAACGATAACACTGAGAGAGGTGGGTACGGGAGACAACCGTCGGGAAGGGCCCATGAAACGATTATCTGACGCCGAGTTCCAAGCTCGAAGGGAAAAAGGGTTATGTTTTCGCTGTGGGGAGAAGTATTTCGCCGGACATCGGTGCAAGTCGAAGGAGCATAAGGAGCTTCGAATGCTGGTAGTCAAAGAAGGAGGGGAGGAACTGGAAATTGTGGAGGAAGAGTTTTTCGATGCCGAAACTGAGATGAAACCAGCTGAAGTACCGAACGTGGAAAATTTAAACATAGAACTGTCGCTCAACTCCGTGGTGGGACTGAACAATCCGGGAACCATGAAAGTAAAAGGGAAGGTGGGAGAAGAAGAAGTGGTGATCTTGATCGATTGTGGGGCGACCCACAACTTCATCGCAGAAGACTTGGTGACCAGGTTAGTATTGACATTGCAGGAGACTCCAAACTATGGAGTAATCCTGGGCTCAGGAACGGCAGTAAAAGGTAAGGGGATGTGCCGAAGTGTTGAAGTGCAATTGGACGGCTGGAAGGTAACTGATAGCTTCCTACCACTGCAGTTGGGGGGAGTTGACATGATCCTAGGAATGCAGTGGCTTCATTCTCTTGGGGTGACCGAAGTCGACTGGAAGAGGTTAGTACTTACTTTTCATCACCAGGGGAGGAAGGTTGTGATACGAGGGGATCCAAGCCTGATTAAGACAAGGGTGAGTTTGAAGAATCTAGTGAAAACGTGGGGGGCGGACGATCAGGGATTCCTGGTGGAATGCCGAACATTAGAATGCGGGAAGTTGGAAGATGAACAGGATCAGGGGCGGGGAAAGGTCGACGCTGAACCCATAGCGACACTACTCCAGCAATTCGCCCGCGTGTTTGAATGGCCTGCGACCCTTCCACCCCAGCGCAGCATTGAACACCACATATACCTGAAGAGTGGGACTGACCCAGTGAACGTTCGGCCATATCGATACGCGCATCATCAGAAGGAGGAAATGGAGAGATTGGTGGATGAGATGCTATCTTCAGGGATCATACGACCGAGTAAAAGCCCATACTCTAGCCCTGTGCTGTTAGTAAGGAAGAAAGACGGGAGTTGGAGGTTCTGCGTAGATTACCGAGCTTTGAACAATGTCACGATACCAGACAAATTTCCCATACCAGTGATAGAAGAATTATTTGACGAACTAAAGGGGGCCAGCGTATTCTCCAAGTTAGACCTCAAAGCCGGATATCACCAAATTAGGATGTGCCCTGAAGATATCGAAAAGACCGCGTTCAGAACTCACGAGGGGCACTATGAGTTCTTGGTAATGCCGTTCGGATTAACAAATGCCCCCTCTACATTCCAGGCACTGATGAACCAAGTGTTCAAGCCATACTTAAGAAGGTTTGTGCTGGTATTTTTTGATGATATCCTAATCTACAGCCAAGGGATGGACGAACATGTTCAGCACTTAGAAGTGGTTTTAGGACTACTGCAAGACCGGGAGTTATATGTGAATATGGAAAAGTGCAGTTTCGCCAAACCACGGATTAGTTACTTGGGACACTTCATCTCGGAACAGGGCTTGGAAGCAGATCCAGAAAAGATAAGGGCAGTGAGTGACTGGCCAACCCCAACCAATGTGAGAGAGGTTAGAGGCTTCCTTGGCCTGACTGGCTATTATAGGCGTTTCGTTAAGAACTATGGGGCCATAGCCGCACCACTCACCCAACTACTTAAGAAAGGAGCGTACAAATGGGATGCAGAAGCCGAGGGCGCTTTTAACAAACTGAAAAAGGCTATGATGACTCTCCCTGTGCTCACCATGCCGGATTTCAACCTGCCTTTCGAAATTAAATCAGATGCTTCGGGAGTGGGAGTGGGGGCTGTGCTGACTCAATGCCGGAAACCAGTGGCTTATTTCAGCAAGACCTTAAGTATGCGGGACAGAGCACGACCTGTATACGAAAGAGAATTACTTTCTGTAGTGCTTGCAGTCCAAAGATGGAGACCTTACCTACTAGGGAGGAAATTCACGGTGAAAACAGACCAAAGGTCGCTTAAGTTCTTATTGGAACAACGGGTTGTGCAGCCTCAATATCAAAAATGGGTAGCGAAGCTCCTGGGGTACTCATTTGAAGTGGTTTACCAACCAGGACTGGAGAATAAGGCGGCTGACGCATTATCCAGGATATCCCCAGCAGTACACTTGAGTCAAATTACAGCTCCCCCGATGATAGACATGGAAATTATTAAGGAAGAAACAAGGCTTGACCCTGCACTGCGAGAAATCACCCGAATACTAGAAGAAGGGATGGAGATACCCCATTACACCCTGCAGCAAGGGGTATTGAAGTTTAAGGGCCGTTTGGTGATTCCAAGCAAGTTTACGTTGCTACCTACGATACTCCACACATACCACGACTCTGTGTTTGGGGGGCACTCAGGATTCTTGAGAACTTATAAACAGTTGACCGGAGAAATCTATTGGAAGGGAATGAAGAAAGACATCATGCGGTACTGTGAAGAATGTGCAATCTGCCAGCGTAATAAGTCATCGGCTCTATCTCCAGCTGGGTTACTGATGCCCTTAGAGATTCCAGACGCCATATGGAGTGATATATCCATGGATTTCATAGAAGGACTGCCAAAATCCAAGGGATGGGATGTGATATTCGTGGTGGTAGATAGGCTGAGTAAATATGGGCATTTTCTGTTGCTTAAGCACCCGTTTTCGGCCAAGATGGTAGCTGAAACATTTGTAAAGGAGGTGGTCCGACTTCATGGATACCCAAGATCGATAGTGTCTGACAGGGACAAGGTTTTTTTAAGCCATTTCTGGAAGGAACTCTTCCGCTTGGCAGGAACTAAGTTGAACCGGAGCTCTTCCTATCACCCCCAATCAGATGGCCAAACCGAGGTGGTAAATAAGAGTATTGAAACCTATCTAAGGTGTTTTTGTGGGGAAAAACCGAAAGAGTGGAGCCAATGGTTACATTGGGCAGAATATTGGTATAATACAACCTATCATAGTTCCATTGGAATTACACCTTTTCAAGCTGTGTATGGACGCCTTCCCCCTCCTTTGATTTACTATGGGGATATGGAGACACCTAACTCAACACTAGACCAGCAGCTGAAAGACAGAGATATAACATTGGGAGCCCTGAAGGAACATTTGAAACTAGCCCAAGAAAGGATGAAGAAACACGCTGACAATAAGAGAAGAGAAGTCGAGTTCCAGGAAGGGGATCTGGTATTCCTCAAACTGCGGCCTTACCGGCAGACCTCCCTCAGAAAGAAGAGAAATGAAAAGCTATCACCTAAGTATTTCGGGCCTTATCGAGTCTTAGAAAGGATCGGAAAGGTAGCATATAAACTAGAACTCCCCGCAGCTGCTGCTATTCACCCCGTGTTCCATGTATCACAATTGAAGAAGGCTGTAGGAAGAGGAGAGACTGCACAACCACTGAACCCGTACATGAATGCAAACCATGAATGGATCACACGACCGGAGGAGGTATATAGTTATCGCAAGAATCCAGTAACGAAGGAGTGGGAAGCCCTGATCAGTTGGAAGGGATTACCCCCACACGAGGCAACATGGGAAAGCTGCAATGACATGAAATATCAGTTTCCAGATTTTCACCTTGAGGACAAGGTGGATTTGGAAGAGGAGAGTGATGCTAGGCCACCAATCCTATTTACATACCATAGGAAAAATAAGAAGAAACATGAAGCCAACGAAAGAGAGACAAGTGGCAAGAAGGATCATGGCCATGAGACCAACCCAAAGGTAACACGTGTTGAAGGGGAGGAAAGCAAGGAGGATGGGGGACCAGAAAGTGGGACCCACAGTTAGTTAGTCGTGGGCAATAAAAAGGGGACAGGAGGGCAGAGAAGGGTACGAATGTTTTGATGCGTTAGTGCAGGAGCAGGCACCTCCAGAAAGGGGAGGGTGGCACCAGGTTACCGTTTCTTTTTGTGTGCTTAAGTAGCCGTAGATTGTAGGAGAGGAGGAAGGCATTATTCCGAGTGTTCTTGTTTACGTCTGTGTTCTTGGTTATTACATACTGTGTGTGTTTTACTTTATCAGCTGGGTTGTTTTGTCAATCTTAGAAAGGCTATTGTCATTAGTCTTTGAAGTGTTTTATTTCTTGATTTTGTGCTGTACTCTGTTCTTCTGGAAAGTAAAAGAAAGGAACGAGGAAGTGTCTTAACAAAATGCTTCCTTATTTGTTTGTTGTGATAAAATTTTCTTTACTTGCATCGGTGTCAAACTGACATGCTCGGCTTAAATAATCCAACCGTGTCTAAAAGCAGTCATGGTTTGAGTCTTTTGTTTTACAGTTCGTTTTTGACCTTGAACCTTTTTCTGGAACTGAATGGCAGGTTCTCATCTTCCATGAGGAAATAATTGGAGAAGAAATCGACTTCATTCTAGACAATTACCCTCCACAAACACCTATTAGTGTTCTTTTTCAAGAGGAAAACCCTGGAAGACTACCTAGCCATGGATCAGTGGAGCCTGGGAAGGATGCAAAACCTGTATGTGAAATTGGAAACTGATGATGAGGCTCCATGACCTCTCTTTTCCCTTCATGCCCTTGCGTTACATTAGCAGTTTTTTTAGGCTCGAAGATGGTAGCAGAGATGGCATGTATTATTGCCATATTATTTTCTCAAAATTCACATTTTTTATAACAAATTCTCATAGGTTAAATTTACAATTATGAAGTCAATTTTATATATTCTGCACTTTTGATCTTTATATACTATATTTAATATATTGTTTTTCTTATATACTTGGTAGTTTCAAATTCAACTTCTTGGTTCAA AAAGTTCGAACACTATATTACTACTTTTTTCAAATTTACCAAATTATTAGTATTCAACAAATTTTGCTAATTATTTTTTTTTTACTTACAACGATGGATCAATTTTGCTTTGTCTTCTTCATCCTCTTCCTATCTCGGATTTCCACTTTTCAAGCTTCAGGCCGCAGAGAAATGGAAGTGGTTTCCATAGCTATATTGAGTTCTCTCATTGTCTTCACTTTAAAACTCTCTAATATTTGATTCCTCTTTTTTGTTCTTCACAAATGGCCTCCATTGATTCACTGTTATCTCCAAGGGCCTTCCTTCAAAATCCTCCTTCAACCAACTCACTCCTCGTCTGAACCATCTACAAACTAAGCGTTTCAATTTCACTCGGAATTCCAGAACGGCATTTTTGTTTCTTCACCGAAACAGGTTTGCTTTCTGTTTGGCAATTTCAAATTCTTCGGATTCACCGTCACAGTCCTCCGGTGGGCCGTGGCGATAAAGCTGCCCGAGATGATTTTGTAACCAGGGTTTTGAAGGAAAATCCCAGCCAATTGGAACCCAGGTATTTATTGGCGATAAATTGTGTACTTCGAAAGAGAAAGAGTATTTGAGTCCATAATCGGAGGTGGGTTTGTTTGATTTTGTGGTCAAGTGGTTGGATTCGAGAAAGAAATCGAAGGAGGAGGTAATTGAGGGTCATAATGAGGGTGGAAATAAGAGTGAGAACGTGTATTTGAAAGACATTTTGAGATATAAAGGGAAGCTTTATGTGCCTAAGCAGGTTTTCAATACAGAGTTATCGGAGGAAGAAGAATTTTATAGAAGTCTTGAGGCGTTGCCGAAAATGAGCTTCGAGGATTTTGTGAAAGCCATGGAGAGCGAAAAAGTCAAATTGTTAATTTCAAAGGAGAATAGCTACCTCTTATGGCAACAGGTTCAGAGAATTTATTGTGGATTTAAAGGAAATTCCAGGCGAAAAGAGCTTGCAAAGAACTAGATGGGCGTTAAGGCTTGATGAGAGTAAAGCCCAAACAGTATTGGAGCAGTATACAGGTCCGCAATACCAAATTGAGGCGCATACCTCGGTGGGCAATCAATTCCTCAAACTATTTCTAGTTTTGACAGGAATTTTTGCAAGGGATTGATTTTTCACGCTCCAGCTCCAAAGCAGAAGCTCGTGTTAATGGTTCAGCCGGAGTCAAGTTCAGTGATGTAGCAGGAATTGACGAAGCTGTAGAGGATCTCCAAGAGTTGGTGAGATACTAAGAATCCTGAAGTGCTTGACAAAGTAGGAATAAAGCCTCCTCATGGAGTTCTTTCTGAAGGACCTCCCGGCTGTGGTAAGACGTTGGTAGCAAAGGCCATAGCTGGTGAAGCTGGCGTTCCATTTTACCAATGGCTGGATCTGAGATTGTTGAGGTTGTAGTTGGTGTTGGTTCTGCTCGTATTAGAGATCTATTTTAGAGAGCGAAGGTCAGTTATCTTCATGGATGGAATTCATGCCTTGGCGACTAGGCGTCAGGGAATTTTCAAGAAATCTACGGATCTTCTCTACAATGCAGCTACCCTAGAGAGGGAAACCACATTGAACCAACTTCTTGTAGAGCTTGATGGATTCGATACTGGAAAGGGTGTTATACTTTTAGCTGCCACGACTAGAAGAGATCTGTTAGATCCTCCGCTTCTCCGACCGGGTCCTTTTGATGAAAGACAAAAATTCGTCCCCGGGCGCAAAAGGGAGACTCGGTATCTTGAAAATTCATGCAAGCAAAGTGAAGATGTCGCACTCTGTTGATCTAAGCACCACGAAATTTACCTGGTTCTCATCTTCCATGAGGAAATAATTGGAGAAGAAATCGACTTCATTCTAGACAATTACCCTCCACAAACACCTATTAGTGTTCTTTTTCAAGAGGAAAACCCTGGAAGACTACCTAGCCATGGATCAGTGGAGCCTGGGAAGGATGCAAAACCTGTATGTGAAATTGGAAACTGATGATGAGGCTCCATGACCTCTCTTTTCCCTTCATGCCCTTGCGTTACATTAGCAGTTTTTTTAGGCTCGAAGATGGTAGCAGAGATGGCATGTATTATTGCCATATTATTTTCTCAAAATTCACATTTTTTATAACAAATTCTCATAGGTTAAATTTACAATTATGAAGTCAATTTTATATATTCTGCACTTTTGATCTTTATATACTATATTTAATATATTGTTTTTCTTATATACTTGGTAGTTTCAAATTCAACTTCTTGGTTCAA ATGGATGGAATTCATGCCTTGGCGACTAGGCGTCAGGGAATTTTCAAGAAATCTACGGATCTTCTCTACAATGCAGCTACCCTAGAGAGGGAAACCACATTGAACCAACTTCTTGTAGAGCTTGATGGATTCGATACTGGAAAGGGTGTTATACTTTTAGCTGCCACGACTAGAAGAGATCTGTTAGATCCTCCGCTTCTCCGACCGGGTCCTTTTGATGAAAGACAAAAATTCGTCCCCGGGCGCAAAAGGGAGACTCGGTATCTTGAAAATTCATGCAAGCAAAGTGAAGATGTCGCACTCTGTTGA MDGIHALATRRQGIFKKSTDLLYNAATLERETTLNQLLVELDGFDTGKGVILLAATTRRDLLDPPLLRPGPFDERQKFVPGRKRETRYLENSCKQSEDVALC Homology
BLAST of Cmc06g0170361 vs. NCBI nr
Match: TYK00786.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 138.3 bits (347), Expect = 3.8e-29 Identity = 69/69 (100.00%), Postives = 69/69 (100.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. NCBI nr
Match: KAA0060543.1 (Ty3/gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 138.3 bits (347), Expect = 3.8e-29 Identity = 69/69 (100.00%), Postives = 69/69 (100.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. NCBI nr
Match: XP_038877975.1 (probable inactive ATP-dependent zinc metalloprotease FTSHI 1, chloroplastic [Benincasa hispida]) HSP 1 Score: 131.0 bits (328), Expect = 6.0e-27 Identity = 72/105 (68.57%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. NCBI nr
Match: MBA0826401.1 (hypothetical protein [Gossypium armourianum]) HSP 1 Score: 128.3 bits (321), Expect = 3.9e-26 Identity = 70/105 (66.67%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. NCBI nr
Match: EOY25060.1 (FtsH extracellular protease family isoform 1 [Theobroma cacao]) HSP 1 Score: 128.3 bits (321), Expect = 3.9e-26 Identity = 70/105 (66.67%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy Swiss-Prot
Match: O22993 (Probable inactive ATP-dependent zinc metalloprotease FTSHI 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=FTSHI1 PE=1 SV=1) HSP 1 Score: 121.7 bits (304), Expect = 4.8e-27 Identity = 66/105 (62.86%), Postives = 76/105 (72.38%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy Swiss-Prot
Match: B4U7U4 (ATP-dependent zinc metalloprotease FtsH OS=Hydrogenobaculum sp. (strain Y04AAS1) OX=380749 GN=ftsH PE=3 SV=1) HSP 1 Score: 77.0 bits (188), Expect = 1.4e-13 Identity = 38/60 (63.33%), Postives = 47/60 (78.33%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy Swiss-Prot
Match: O67077 (ATP-dependent zinc metalloprotease FtsH OS=Aquifex aeolicus (strain VF5) OX=224324 GN=ftsH PE=1 SV=1) HSP 1 Score: 76.3 bits (186), Expect = 2.3e-13 Identity = 39/60 (65.00%), Postives = 45/60 (75.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy Swiss-Prot
Match: Q67LC0 (ATP-dependent zinc metalloprotease FtsH 1 OS=Symbiobacterium thermophilum (strain T / IAM 14863) OX=292459 GN=ftsH1 PE=3 SV=1) HSP 1 Score: 75.1 bits (183), Expect = 5.1e-13 Identity = 48/105 (45.71%), Postives = 63/105 (60.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy Swiss-Prot
Match: C1F8X6 (ATP-dependent zinc metalloprotease FtsH OS=Acidobacterium capsulatum (strain ATCC 51196 / DSM 11244 / JCM 7670 / NBRC 15755 / NCIMB 13165 / 161) OX=240015 GN=ftsH PE=3 SV=1) HSP 1 Score: 73.9 bits (180), Expect = 1.1e-12 Identity = 42/77 (54.55%), Postives = 49/77 (63.64%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy TrEMBL
Match: A0A5A7UX59 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold22G004050 PE=4 SV=1) HSP 1 Score: 138.3 bits (347), Expect = 1.8e-29 Identity = 69/69 (100.00%), Postives = 69/69 (100.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy TrEMBL
Match: A0A5D3BRA0 (Ty3/gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold420G00550 PE=4 SV=1) HSP 1 Score: 138.3 bits (347), Expect = 1.8e-29 Identity = 69/69 (100.00%), Postives = 69/69 (100.00%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy TrEMBL
Match: A0A6J1B8A4 (probable inactive ATP-dependent zinc metalloprotease FTSHI 1, chloroplastic OS=Herrania umbratica OX=108875 GN=LOC110425161 PE=3 SV=1) HSP 1 Score: 128.3 bits (321), Expect = 1.9e-26 Identity = 70/105 (66.67%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy TrEMBL
Match: A0A061G6M0 (FtsH extracellular protease family isoform 4 (Fragment) OS=Theobroma cacao OX=3641 GN=TCM_016490 PE=4 SV=1) HSP 1 Score: 128.3 bits (321), Expect = 1.9e-26 Identity = 70/105 (66.67%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. ExPASy TrEMBL
Match: A0A061G668 (FtsH extracellular protease family isoform 2 OS=Theobroma cacao OX=3641 GN=TCM_016490 PE=3 SV=1) HSP 1 Score: 128.3 bits (321), Expect = 1.9e-26 Identity = 70/105 (66.67%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Cmc06g0170361 vs. TAIR 10
Match: AT4G23940.1 (FtsH extracellular protease family ) HSP 1 Score: 121.7 bits (304), Expect = 3.4e-28 Identity = 66/105 (62.86%), Postives = 76/105 (72.38%), Query Frame = 0
BLAST of Cmc06g0170361 vs. TAIR 10
Match: AT3G47060.1 (FTSH protease 7 ) HSP 1 Score: 68.6 bits (166), Expect = 3.4e-12 Identity = 37/73 (50.68%), Postives = 46/73 (63.01%), Query Frame = 0
BLAST of Cmc06g0170361 vs. TAIR 10
Match: AT5G58870.1 (FTSH protease 9 ) HSP 1 Score: 68.2 bits (165), Expect = 4.5e-12 Identity = 37/73 (50.68%), Postives = 45/73 (61.64%), Query Frame = 0
BLAST of Cmc06g0170361 vs. TAIR 10
Match: AT1G07510.1 (FTSH protease 10 ) HSP 1 Score: 65.1 bits (157), Expect = 3.8e-11 Identity = 31/47 (65.96%), Postives = 37/47 (78.72%), Query Frame = 0
BLAST of Cmc06g0170361 vs. TAIR 10
Match: AT2G29080.1 (FTSH protease 3 ) HSP 1 Score: 65.1 bits (157), Expect = 3.8e-11 Identity = 31/47 (65.96%), Postives = 37/47 (78.72%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Charmono) v1.1
Date Performed: 2022-10-13
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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