PI0013180 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTTAAAAAACACAAAAACGCCGCCGTAATTCACTTCAAGAGAGAGCGAAATAGCCGGAGAAAATGTATACCAACTCCGGCCACATTAACGGCTTCCACGACGGCAGCTCCTCCTCTTCCGAGAAGCGGCCTGGAACCGTTCAGAAGGGTCGGCCTCGCCGGGGAAGAGGTAGCCGGTCATCCAGTGGCGGCGGAATGAGGGTTTCTGAAGACAAGCAGCCGACGCAAGTGGAGGGACCTCCTTGTACTGACTTCGACATGGCCTACTTCCAATCCTACTCCCACGTTGGTATTCACGAAGAAATGATCAAGGTCTGTTTGGTTTCTTGTTTCTTTACTTGTGAGAATTACTAAATGATGCCAATTTCCTGCATTTATTTTGTTCTGTACTAGAACCGATGAAACTTTTCCTGGCATCTTGTAGGATATCTTTTCTAGACTTCGTAATTGATATCAAAACTTTGAAGAAAGACTGACTAATGAAAGACCTTACACTTATTGGGACTTTTGTATGTATAAGAATTCTGAGATGATGTCCTCCCTAGCAAATGACAACAAGAACACCCACTAAGGAGCTGATGGTGAAGGAACTAGGTTGATTGAGCTCTAGTCGTATTTTGGTTTAGGGAAAGAATAAATGCTGTCAAGATTTGCCAAAATGAAGAGGCTCTTCTCTGTTTATCTGTCCCCAATGGTCTTCTCGATGAAAAATAATTTCAAGAAACTGAGTTATATTTTCAGATATACATATACTTTGACTACAAAGTGCAACCTCTTTAGAAATTAGAACAGCATTTAAAGCCATTTGAAGACATCATAAGTGAGGCTTCCTTGTCAGCCATATTCTTGAAATTTAACTGAAACCCAGTTTCCGAAATTGAAAGAAAGATGCTTGGAAATATTGGAGAGCTTGGACATGTGATGGTATGAGCTTTTCCATAGTAGAACACAGACCAACACAAGAAAAATCCATACCATATCCACATTATTCTTATGGCTGCATCCAAGAGTAGCCTTTCTAAATGTTTGGAGTTCTTTTTAATGAATTTATGTTAATTATTTAGAATGAATGAATTATATTAGCTAAAGTACACTTAAATTTAGAAATTTTACTGCAATCATGTTGTTCTTTCTTTACATTGATATATATTATGTATGAAATACCTATTTTCAGGATAGTGTACGGACGGAAACTTATAGGGCGGCAATTATGCAACATCAGAGTTCTATTGCTGGCAAAGTAATAATTTTGTGCTTAATGTTATTAAATTTGTTTCTTTGTCATATGTTTAATGAAATAGTTTGGTTAAAACATGATTTTGGTCCCATTACTTTGGGACTTGTTCTATTTTAGTCTGTTTATTTTCATAGTCCGTATACTTTTGATAATCTTAAGAATAGTCCCTATTATTAGTTTGTTGTTGATTTTTCCATAAACATCTAGTCTTTATTAGCCTTCCCTCCATGAATTTTGGAATCATATTCACAGTGTTTATTCTTACCAAAATTATTATTGTTATTTAATCAATATTGATAAACATTAACTTTGAAGGATCAAATTTAGGATTTATTGAAAGTGCATGGACTGAAGTTTGAATATGGCCTAGTTGTCTCGGTTAGAATACGACCAAGAAATGGATTGAAGTCCAAAGTACAAAAACCAAAATGATATTCTAACATGATAGTCTCTTATCCATTTTTTTTGTCTTTTTCTTTTCTTTTCAAATAAAAGAAATAGAAATTATCATCAATAATTAAAAAGTTACAGATGGATAATGAAAAGACATCTTCCTTTAGGAGAAGACAATCCTCCTAAACACAGGCAATTACAATTTCATATTATGAGAAAGAAAAACTTAACTTTTTTTAAGAACCAAAACATCATGAAAATTCCTCTCGTCCCCAACTGGGAATAATTACATTATGAGATGAATTACAAGGAAGAATTGGAACAAAACACCACAAAAAAGTTTGTCCCTTTGGCTAAATCCACACTTTTCACCCCTACAAAAAAAAAAAAAAAATTGTTTCAGATGTCCCAAATAATAGTGTTTAGTTTATGGCATTTATCCATCAAAGCACCATGCCACAAAGTGGCTGAAAAATATTGTCATTTCCTCTTTTTTCAAACACTCATGTAACACAAAAAATTCTTAAAACCTATTCCAAAACTTGCTGCTGTATAAACACCGAAAGTTAAGTGTTTTTGTTTTTTTGGCTCCTTTTTCTTTGTGCTTTCATTTTTGTGCTGTTCTTATATTTTCTTTTCTTCCCATTTCTTTAATGAAAGTTTGTTTTTTTTTTATTTTAAAAAATATGATCGCAGAAAAAATAGATGTATTTGGTCACCATCAGACCTCTGCTTTAATATAGAGTAGAGCAATTAAAGAACTGAATTACATACACGGATATTTCTTTGATACTATGCCACCCAAGAAAGGAAAACAGTCGACAATTAGTAAATTTTGATCTAATCTATGATCTTTGATCTTTCTCTGCTATTCTGCTGTTCACGAAGTTTCATGCATCTGTTGTCTTTGACTCTTGCACTCACTATGCATTATTTTACTCTATCAAAACAGTGTTAAGACACCGGTCTTTCATTTGTATAGCTCCTTATACCCATATCTGGATCTGTACTTGGTTTCCTGTTTATTTACTAAAGTCAGTTGAATACAGGTTGTAATGGATGTTGGCTGTGGCACTGGAATTCTCTCCATATTTTGTGCGCAGGCTGGTGCAAGGCGGGTGAGCTATGCTGTGTCTAAATGTGTTTTTTTTGAAAAAAATTTATTGAAAAAATGCGGGTGATCTATTTTGAAATTGTACTTGGACTCTTAGCTTTTCTAATGGTGGAGGTATTTTCATTTTTGAATGTTGGTTGAATTGCTTCAAACACCTGCTGTAGGGTCCTAGACATCCCTCTCTTAATTCCAATTCCTTGAAACCCCCTTTTTTCATCGTACTTTTCTATAAAAAATTGCTTAGTTATTACTAAACAAAAAATTTATGCATGAAACAAAAGGGAGTGCGCATCTATCAAAGCTTGATACGTGTTATTTTCCAAATTTTGGGCAGAAAATAGGAAAAATCAAGAGTATTTTAAGAAGTGGGAGTGGTGTTAGATCATTCTCCCATTTGTTTTGTTTTTATTTAAATAAACAGATTGGGTCGAGTGGAAAGCCTGTTTTAGGGATTTAGCTTGATGTACCTTTTACTAGTACTATGAAAATTCAATTCTGTTGTTTTGTTCTGCTTTTAAAAATTTTAAAAATAAACTTAATTTGTTAATCCGAGATTTGGAGTAACAAATACTTATCACTGCACAACTTTCTTGAATGCTTGTTGTTTCTCGCTTTTGTCAGGTTTATGCAGTTGATGCAAGTGACATAGCCGTGCAGGTATTATTCCAGTACGGTATTAGTATCTTAGTTATTATTATGGTTGTAAATAGTATACTGTGGGGCTTTAAACACTTGTGTGTTTCTAGATACCACTTTCTTGATTCTTGCTACCTGAAAATTCTTTTTGTAATATCCCTCACCCATATATTGCTTTATTCGTAATTATCACTTCTTGCATTACGTTACCCTAAGCTCTTTTATGTTCGACATGTTTTTTGTATGTTCTTTTAATTTTTTCAATTTTCTCAATGAAAGCTTGCTTTCTTACCCAAAAAAAGAAAAAAAAAAAAAGGAAAACTGTTCTTACCAATTTTTCTTTTAGTGGTTTAGTATCAATTGCAATCCTATTGGATTAAACCACAGCCTCACATCGTCATTACAATAAAAAAAAATCTCACATATTGATGCATTTAGTTTCTTTCTTAGGTATCAGTGTGTGCTCCACCTGCAATTGTTATATTATGAATTTTATAAACGTATTTTTATTGAAGATCCTACTTAGACATCTATGAATCATGCAAGAAGCAGAATTTGAGCTTTGGGCCTGAGTTGATTTTGCTTTTCTTTGCAGGCCTCAGAAGTTGTTAAGGCTAACAATCTATCGGATACAATCATTGTATTGCATAGTAGAGTTGAGGTGAGCTCTTTAAGTTGCAAAATGGTCTTTGCTCTTATTGATCTGTTTAAAATGTTTCCATTATTTGAAGAGTAGATTAACGATTGGAGTCGTTTCTGGTGACCTTTTTTTTAAAAAATACAAAACTTTTCATTAAGGAAATTAAAGAAATTAATGCTTAAAACACACAATATTAAGTAAACAAATAGAGAAAAAGATCCTCAGGACAAATAGAAGACAAAACAAAACTAGCAAGGTAAATGAAAAACAAGACTAATAAGACCCTTTTTTTGTTCTCGATAAGAAGACTTAGAAGACTTTTAGAAAGGGCAAAGGAAGCATCCCAACTTTTGACTCCTTGCTTTGGTTGCCATTGCCTTTTTCATTCTTCAAGTTGGTTAAAGTGTTTCTATTCTAAGTTATTGGGAATACGTGTAAATTAGCCAATCTTCAACTAAATAGTGAAACTCTGAAAGTAAATCTCTCTAAATTTACAATTATAGTTTCTGTTCCTATTGGCATCACAAGTACATGGAGTTTTTCATTTTTTTTCTCCCTTTTTTCCTTTCAGTAAAAGGAAAGAGAGTTTTAATATTAGTTAATACAACATTAGGTTATTACTATAATACTTAGTTATTGCCAAGTTGAGTACAACTCAACTGGTTAAGACATTTGCCAACAAACGTTACCGGTTTAAATACCCACCTTTACATTTTTTAATGCAACTGGTATCAAATCCCCACCCCCTAAACCCCCTACTTGTTGATAACACATACATCACTTAGCTTTTTATAATTAATTATTTAATAGTTTTGATTAATTTGTTAATAAATATCAGTACCAGTTGCATTGTTGACCTTTTTCTCCTAAAATCATGCAGGATGTTCAAATTGATGAAGGTGTGGATGTTATCATTTCTGAGTGGATGGGATATATGCTTTTATATGAGGTGATTATGTTTATCGACTTGTAAAGCTGGAAATAATTACCTTATCTGCATGTTAACCTTAATGCTTTTAATGAACGAACCATTTTTACTTTATTCTCTTTATTGAATAGTGGAGTTTTTGCTATTGCAGAGCATGCTTGGAAGTATAATTTATGCTAGAGATCGGTGGTTAAAACGTGAAGGCCTGATACTACCTTCAAATGCAACAGTATCTTGCTTTTCTTATATTTTCTTCAGTTTTGATCTGTTGTGTAATACTGGTGGCAAATTTTTACCCTTTGTGGCTTTTACTTTCATCGAGTTATACTATGAGACATGTCTTGCACTATCACTCTATCAGCATCTATATTACATATTTTCTGTAGAATCTCGTTGTGGTTTGGGTGCTTCATTTTGTAATGAGAAATGAAACATTCATCTAGAAAGATGCAAGCTGTGAAAAGAACAGCTAGAGCTATTGAAGTAGCAAAGCTTCAAATGATCAGCACAGCACACCTGTGCAAAATGAAAAACTATGCAAAAAGATTCCCCCTGCATGTATAACCTGTCTATCAGCACACACACACACACACACATATATATTTATATATATATATTCCTGTAGAAAAGGGGAAAAATGAGAAATGGAACTTTAATAGAAAAAGATGAAAGCAGTTGAAATGACAGCAAGACCTATCAAAATGAGAAAATTTAAATGATCAGCGTACTGTGCAAAATGAAGGAATAATGCTAAAACTTTGGGTAACTGGATGTTGGGAATCAAAGCTTGTTTTATGTTGTGCTTGTTTGTGTGTGCATGTGCTTTGTTTAAAAAGCTTGAGTTGCTTGGCAGATACTGTTCTGATTATATCTATCTTGCTCGCAGTTGTACATGGCACCTGTTACTCACAGTGATAGATACAATGCAAGCATCGATTTTTGGCGCAGTGTATATGGAATTGATAGTAAGGACCTGTTTATTTTTATTTATTTTTTTTTTTTAAAAAGGAAGTAGGTACATGTTGAAGCTATGAGTTTCTGTTTGTGTGTTCTCTGTGTGTGTGTGTGTCTACAGTTTTTGTTGCTTGCCGTCTTGTTATTTAAATGTGTACTCCTGGATCTCGTGTGCCGTTATGAGTTAGGTTTTTGTTTCTCTATCTCAGCAGTTTATCTAGAATTATTTGTACGTGATTGAATATATAAGTTATCGGATCTGTTAAATTAATGGGAAGATTTTTTTAATCTAAATTTGGCAGCTTCATGGTAGTACTGTTTTCAATGAGATTAGGAACCAAAGATCTTTCAGTGATGGCTCAATTCCCTTCTAGAGTACAAATTCTAAAGTCTTGCTGGGCTTCTTGGATAATGATTAGCAAGGACGATGTGGAGGCCTATTCCTCCATCTCTGGACCAGAAAAGTTTCTCCTTAAACTGAGGTCCCCACCTGTAAAGGAATCTGACCAGCATTAGCACATTGCGAGACCTTCTGAATTAGCCACCCTATAAATCCTTTGGAAAGCTATTTGAAGACAATCATTGATTTGCTAAGGCTCTTCCCAAAAAAGGAGTCTTGTCTCTCCTGCCAACATCAACCCTGTACTGTATTGGCCATTTCACAACAATCTGAAATTTGGACCCGAGGGCACTTAGAATTTACAGGAGTCGATTGGGGTAGGGATCCATTCCTTATAGGAGAGCTGGGTATTTGCTGACCATGTTTCTCCCCATTGCATTTTTGTCTGTGACGAAACATCAGCTCATTTTCATAAATGAGCTATGTTCTAGGGAAGAGAGGTACTTTGCCGATGAATGAGGTTGGATCCCCTTCATTCATAGCCTTACTAGAGAATAGAAAGGATTATTACCATCCCAAGAAGCTAATTAACAAACTAATAAAACGAACAAAAATTTTCAACTTGACTAAATTAATTACTAGATAAAAATAAACTAAAAATCCATAATATTCCAATAGACTAAACTGCTAACCTATTTCCTACTGAATGATTCAATAGGCTTATCAGTACCTCATTCTTCTAATTTTTTCAATTACTTATCTATTTTTTGTAAAAAACCAAACTCGTTGAAAAAATTGTAGAAAACAAGGGGTAGACGTTTATTTTTTTTTTTGTACTGAACCCATTTTTGTTCAGTTGGTTTGGGTTTTGTTTTGGTTCAGTTAAAATATGTATCATATAGGCAGATTAAGTGATGAGGAGAATCTAACTTTTCTTCATGGTTGGGGTTTTTTGTGGGCTTAGTTTCTTGTATGCCTTTTTTTTATTTCCATTTTTTTCTCAATGAAAGTTCTTTCTAAAAAAACACTTTTTCTTTGTAGTGAGTGGTACATATGTGCCATTGTTTTGTACGATGTAATAATATATATACACGGATTCACAAATTTTCATTTTAGACAAGCTTGATAAAGTAAGAATGTCGCAGAATTCATGTGGCTTTTGTTGACAGAAAAAGGATGGGTCTTGTAGTTCTATAAATTCTAGATCCAAGGTAGAGGAAGAATCATATGTTAATCTTTTATAATAATGATTGTTTCCTTTTCTTAAAGTTCTCTTTCTTTTGTTTAGTTTTTTCCCCTTCATCTTCTTTCACGAGAATGTTTAAGCAAAACTACCATGTGTCTGTTCTCTTCCTGAATAGACAACCTGCACATTTTCAACATCAATTTAATTTGATCTCTAGTTCATCATGGGAAATAGTAAATCCGTTATTCTCTTTGGGCTTCAAATTCAAATGTTATTTACCAGGCACAATAATATTTTTGTATATTCTTTTATATGAGCTCCAAATTTTTGTTTTGTTCTTTAGGAGATCTCGTTTAAGTTTTCCTACTAAAAGTGCACGGGAGACCTGTTTGTTTATTACTATTTGAGTAACAATTCATATAGAACTTGTGCATTTATAAATTACACATTTCTTTGGCATATAGTATATCTAAAGGGAGGAAGTTGTTTCTGCCATTTGTTCCTTGTGTTGTGTTCTTGTTGATAATTATTATTTGTTGCTCAATAATCGGTATATAAACTTAACTCTCTTTTCTTTTTTCCCTCCGGTGCTGGGGGAGTTGGGGTTTGCAGTGTCAGCAATGTTGCCATTAGCAAAACAGTGCGCGTTTGAAGAGCCATCAATTGAGACAATATCAGGAGAGAATGTTTTGACATGGCCGGAAGTGGTGAGGACTCCAAGTTTCCTTCTGTTTTAAGTTAGATTATATAAATTGTTAACCACAGTGAAAAGGCAAATACGGTGCTTGTGATGGATTAACCACCCAATGGCATAGAAGCAATGTAAGAAAGATTGCATCTCCTCAGTTAATATTATTTTCAAAAGTCCAACTAACGATGAGAAAGAGAGTGGATCAACCTGACTAAATCTTTACCATGAGAACTTTAGTGTAAAAGCGAAGCAATAGAATAACTTTTGGTTGTGAAAGAACTACTAGTTGATTCCTTACTTGAAGGGAGGCAGGCTTTAGAGTAATCTAAAAATGTTCACCTTTACAGGTAAAACATATAGACTGTTATACAGTTTCAATTAGCGAGCTTGAGTCTGTCACAAAAAGTTACAAGTTCAAGTCAATGATGCGAGGTAATGTCTCTCTGACCATTCTTTCCTCTTGTCTTGTGGTATTCACGTACATTCACACATGAACTTCTGTAGCTGGTTGTCATATGATATGAAGTCACTGTAGAGAATTCTTTTAGCCTCTAGTTTTCTAGCTTGTGTTGTTTACGTAGAATGTAGAGTGTGGATTTCATGGGCGTTGCATTAAGTTGGACCATATGGATATGTTTTAACCATCGTTCGCTATTTATCGTTTGTGCCTTTTTAGAGTCCAAATAATCTTTTTCTCATGTCACAGATCCATTTTTATGCTTTTTATGGGTAGTTTTCCTGTTGATACATTATTCTTCGATTTTGAATTTTGTGCCAATGCCATTAAAAATTCTTCTTAATTTCCAGCTCCCTTGCATGGTTTTGCATTCTGGTTTGACGTGGAGTTTTATGGGCCTGGTACCGCCATGCATGGTCTAATTCCATCAAATCCTGATGATAATCAAGTGAATGAAGGCAGCCAGAGGAAGAAGCGTGCAAATCCAAATGACGCACTCGTACTGTCCACTGCACCTGAGGACCCTCCAACCCATTGGCAACAGGTCCGTTATAACTAATAATAACAAATTTTTTAAAACAAAATTAATTATAATAATACTATTATAATAAAACAATATTTTAAGGAGAATTATTGTAAATGGCAAACCTGTTAAAAATATTTACAAAATATAGCAAAATTTCAGATTATCATGATTGAAGTTGTTTCTCCCATTTCTGGTTCTTTTTTACTGAATAGAAAACAAGATAAATTAAAATAAAGAATATTGAGAAGAAAAAAAGGGTCGAAAAATCTTTAGCCGTACAGGTATAAAATTAAATATTGAAATTAATTTTTCCATCTTGTGTACTAGATACAAAAGTAAAACCAAGATCTAGAAATCAAACACATTTTGTACTAAGAATTATGTGTCTGTGTGTCTGTCCGTGTGTGTGTGTTGACACTGCTTAGCTATTTTTTCTTGACTAAAGTCCACTTTTCACATTATGGTATTAACGTGATAAATGAGTGCTTGGGGAAAGGGGTGAAGTGTGTGGAGATCTTTTTTTGCCCAAAACTCCACAGATAGTTATTATTTAGCTCGAAACATGCTGTCTTAATCTTATAGTTTAATTCCCCTTTGGTCAGCAGAATATCTGATTTCTTTTGCAGACCATAGTCTATTTCTATGACCCATTAGAGGTTGAACAAGACCAACTAATTGAAGGTTCTGTTACTCTATCACAAAGCAGAGAAAACCGTCGGTTCATGAATATTCGCCTCGAATACGTGTGAGTTATATTTGGTACATTTATTCAACAAGCATTTCTCCGGTCACTGCTTTGATATACACATCTCATTTGGTTTTCGTATTTGATCTTGTAGTTCTGGTGGGCGGTCCTTTGTAAAAGAGTCGGTGATGAGGTGATTTCTATTCTTTGCTTTATTTCATGATGTGAAGTCCCATTGACTCTCTTCTCAAGGCTTAACCTTCCTGAAACGGCAACTTTCCAAGAAACTGTAGGAACTATTACTTAACTAACATTTATAGAAATTGAAGCGTCTTGAAGCTGCTGGTTTGGTTGATTGCATACCAAAAGCCTAAAAGACAGTTGACTCTTGATCGTGTTTGTGCTTTGCGATTGCTTGATTGGCCTTCTTCACATTCTCATTTCTCCTTTGGAGATTGATTGATACAAGATTCCATGAAGAATTCTTTTATTGTAATGTAACTCTACTTTGAGATTACAACTATAGGACTTACTTAGCATTTTGATGATTATGATTCAAATTTTCCATTGTGTAAAAGTAGAATTCCCAAACTAGAAGTATGATGGCTTCCTTTTCCTCTCATCTCTTCGTGATTCTCAATACCTTCATCCTTCTTGTACTAACATTTTAGTGCTCCAATTATGAACTGTTCTATGATGGTTGAAACCAATGAAGTATTAAGTTTGTGAA GTTAAAAAACACAAAAACGCCGCCGTAATTCACTTCAAGAGAGAGCGAAATAGCCGGAGAAAATGTATACCAACTCCGGCCACATTAACGGCTTCCACGACGGCAGCTCCTCCTCTTCCGAGAAGCGGCCTGGAACCGTTCAGAAGGGTCGGCCTCGCCGGGGAAGAGGTAGCCGGTCATCCAGTGGCGGCGGAATGAGGGTTTCTGAAGACAAGCAGCCGACGCAAGTGGAGGGACCTCCTTGTACTGACTTCGACATGGCCTACTTCCAATCCTACTCCCACGTTGGTATTCACGAAGAAATGATCAAGGATAGTGTACGGACGGAAACTTATAGGGCGGCAATTATGCAACATCAGAGTTCTATTGCTGGCAAAGTTGTAATGGATGTTGGCTGTGGCACTGGAATTCTCTCCATATTTTGTGCGCAGGCTGGTGCAAGGCGGGTTTATGCAGTTGATGCAAGTGACATAGCCGTGCAGGCCTCAGAAGTTGTTAAGGCTAACAATCTATCGGATACAATCATTGTATTGCATAGTAGAGTTGAGGATGTTCAAATTGATGAAGGTGTGGATGTTATCATTTCTGAGTGGATGGGATATATGCTTTTATATGAGAGCATGCTTGGAAGTATAATTTATGCTAGAGATCGGTGGTTAAAACGTGAAGGCCTGATACTACCTTCAAATGCAACATTGTACATGGCACCTGTTACTCACAGTGATAGATACAATGCAAGCATCGATTTTTGGCGCAGTGTATATGGAATTGATATGTCAGCAATGTTGCCATTAGCAAAACAGTGCGCGTTTGAAGAGCCATCAATTGAGACAATATCAGGAGAGAATGTTTTGACATGGCCGGAAGTGGTAAAACATATAGACTGTTATACAGTTTCAATTAGCGAGCTTGAGTCTGTCACAAAAAGTTACAAGTTCAAGTCAATGATGCGAGCTCCCTTGCATGGTTTTGCATTCTGGTTTGACGTGGAGTTTTATGGGCCTGGTACCGCCATGCATGGTCTAATTCCATCAAATCCTGATGATAATCAAGTGAATGAAGGCAGCCAGAGGAAGAAGCGTGCAAATCCAAATGACGCACTCGTACTGTCCACTGCACCTGAGGACCCTCCAACCCATTGGCAACAGACCATAGTCTATTTCTATGACCCATTAGAGGTTGAACAAGACCAACTAATTGAAGGTTCTGTTACTCTATCACAAAGCAGAGAAAACCGTCGGTTCATGAATATTCGCCTCGAATACTTCTGGTGGGCGGTCCTTTGTAAAAGAGTCGGTGATGAGGTGATTTCTATTCTTTGCTTTATTTCATGATGTGAAGTCCCATTGACTCTCTTCTCAAGGCTTAACCTTCCTGAAACGGCAACTTTCCAAGAAACTGTAGGAACTATTACTTAACTAACATTTATAGAAATTGAAGCGTCTTGAAGCTGCTGGTTTGGTTGATTGCATACCAAAAGCCTAAAAGACAGTTGACTCTTGATCGTGTTTGTGCTTTGCGATTGCTTGATTGGCCTTCTTCACATTCTCATTTCTCCTTTGGAGATTGATTGATACAAGATTCCATGAAGAATTCTTTTATTGTAATGTAACTCTACTTTGAGATTACAACTATAGGACTTACTTAGCATTTTGATGATTATGATTCAAATTTTCCATTGTGTAAAAGTAGAATTCCCAAACTAGAAGTATGATGGCTTCCTTTTCCTCTCATCTCTTCGTGATTCTCAATACCTTCATCCTTCTTGTACTAACATTTTAGTGCTCCAATTATGAACTGTTCTATGATGGTTGAAACCAATGAAGTATTAAGTTTGTGAA ATGTATACCAACTCCGGCCACATTAACGGCTTCCACGACGGCAGCTCCTCCTCTTCCGAGAAGCGGCCTGGAACCGTTCAGAAGGGTCGGCCTCGCCGGGGAAGAGGTAGCCGGTCATCCAGTGGCGGCGGAATGAGGGTTTCTGAAGACAAGCAGCCGACGCAAGTGGAGGGACCTCCTTGTACTGACTTCGACATGGCCTACTTCCAATCCTACTCCCACGTTGGTATTCACGAAGAAATGATCAAGGATAGTGTACGGACGGAAACTTATAGGGCGGCAATTATGCAACATCAGAGTTCTATTGCTGGCAAAGTTGTAATGGATGTTGGCTGTGGCACTGGAATTCTCTCCATATTTTGTGCGCAGGCTGGTGCAAGGCGGGTTTATGCAGTTGATGCAAGTGACATAGCCGTGCAGGCCTCAGAAGTTGTTAAGGCTAACAATCTATCGGATACAATCATTGTATTGCATAGTAGAGTTGAGGATGTTCAAATTGATGAAGGTGTGGATGTTATCATTTCTGAGTGGATGGGATATATGCTTTTATATGAGAGCATGCTTGGAAGTATAATTTATGCTAGAGATCGGTGGTTAAAACGTGAAGGCCTGATACTACCTTCAAATGCAACATTGTACATGGCACCTGTTACTCACAGTGATAGATACAATGCAAGCATCGATTTTTGGCGCAGTGTATATGGAATTGATATGTCAGCAATGTTGCCATTAGCAAAACAGTGCGCGTTTGAAGAGCCATCAATTGAGACAATATCAGGAGAGAATGTTTTGACATGGCCGGAAGTGGTAAAACATATAGACTGTTATACAGTTTCAATTAGCGAGCTTGAGTCTGTCACAAAAAGTTACAAGTTCAAGTCAATGATGCGAGCTCCCTTGCATGGTTTTGCATTCTGGTTTGACGTGGAGTTTTATGGGCCTGGTACCGCCATGCATGGTCTAATTCCATCAAATCCTGATGATAATCAAGTGAATGAAGGCAGCCAGAGGAAGAAGCGTGCAAATCCAAATGACGCACTCGTACTGTCCACTGCACCTGAGGACCCTCCAACCCATTGGCAACAGACCATAGTCTATTTCTATGACCCATTAGAGGTTGAACAAGACCAACTAATTGAAGGTTCTGTTACTCTATCACAAAGCAGAGAAAACCGTCGGTTCATGAATATTCGCCTCGAATACTTCTGGTGGGCGGTCCTTTGTAAAAGAGTCGGTGATGAGGTGATTTCTATTCTTTGCTTTATTTCATGA MYTNSGHINGFHDGSSSSSEKRPGTVQKGRPRRGRGSRSSSGGGMRVSEDKQPTQVEGPPCTDFDMAYFQSYSHVGIHEEMIKDSVRTETYRAAIMQHQSSIAGKVVMDVGCGTGILSIFCAQAGARRVYAVDASDIAVQASEVVKANNLSDTIIVLHSRVEDVQIDEGVDVIISEWMGYMLLYESMLGSIIYARDRWLKREGLILPSNATLYMAPVTHSDRYNASIDFWRSVYGIDMSAMLPLAKQCAFEEPSIETISGENVLTWPEVVKHIDCYTVSISELESVTKSYKFKSMMRAPLHGFAFWFDVEFYGPGTAMHGLIPSNPDDNQVNEGSQRKKRANPNDALVLSTAPEDPPTHWQQTIVYFYDPLEVEQDQLIEGSVTLSQSRENRRFMNIRLEYFWWAVLCKRVGDEVISILCFIS Homology
BLAST of PI0013180 vs. ExPASy Swiss-Prot
Match: Q08A71 (Probable protein arginine N-methyltransferase 6 OS=Arabidopsis thaliana OX=3702 GN=PRMT6 PE=2 SV=1) HSP 1 Score: 547.4 bits (1409), Expect = 1.5e-154 Identity = 288/425 (67.76%), Postives = 326/425 (76.71%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy Swiss-Prot
Match: A2Z8S0 (Probable protein arginine N-methyltransferase 6.2 OS=Oryza sativa subsp. indica OX=39946 GN=PRMT6.2 PE=3 SV=2) HSP 1 Score: 483.8 bits (1244), Expect = 2.0e-135 Identity = 235/373 (63.00%), Postives = 292/373 (78.28%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy Swiss-Prot
Match: Q75G68 (Probable protein arginine N-methyltransferase 6.2 OS=Oryza sativa subsp. japonica OX=39947 GN=PRMT6.2 PE=2 SV=1) HSP 1 Score: 483.8 bits (1244), Expect = 2.0e-135 Identity = 235/373 (63.00%), Postives = 292/373 (78.28%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy Swiss-Prot
Match: A2XYY8 (Probable protein arginine N-methyltransferase 6.1 OS=Oryza sativa subsp. indica OX=39946 GN=PRMT6.1 PE=3 SV=1) HSP 1 Score: 451.1 bits (1159), Expect = 1.4e-125 Identity = 223/378 (58.99%), Postives = 276/378 (73.02%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy Swiss-Prot
Match: Q7XKC0 (Probable protein arginine N-methyltransferase 6.1 OS=Oryza sativa subsp. japonica OX=39947 GN=PRMT6.1 PE=3 SV=2) HSP 1 Score: 450.3 bits (1157), Expect = 2.4e-125 Identity = 223/378 (58.99%), Postives = 276/378 (73.02%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy TrEMBL
Match: A0A1S3CNE7 (probable protein arginine N-methyltransferase 6 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103502890 PE=4 SV=1) HSP 1 Score: 792.7 bits (2046), Expect = 7.4e-226 Identity = 395/401 (98.50%), Postives = 399/401 (99.50%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy TrEMBL
Match: A0A5D3CUM1 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold790G00400 PE=4 SV=1) HSP 1 Score: 767.3 bits (1980), Expect = 3.3e-218 Identity = 386/401 (96.26%), Postives = 390/401 (97.26%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy TrEMBL
Match: A0A5A7VLD3 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold21G001280 PE=4 SV=1) HSP 1 Score: 746.9 bits (1927), Expect = 4.6e-212 Identity = 378/402 (94.03%), Postives = 384/402 (95.52%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy TrEMBL
Match: A0A6J1CII5 (probable protein arginine N-methyltransferase 6 OS=Momordica charantia OX=3673 GN=LOC111011914 PE=4 SV=1) HSP 1 Score: 744.6 bits (1921), Expect = 2.3e-211 Identity = 367/402 (91.29%), Postives = 388/402 (96.52%), Query Frame = 0
BLAST of PI0013180 vs. ExPASy TrEMBL
Match: A0A6J1JLT2 (probable protein arginine N-methyltransferase 6 OS=Cucurbita maxima OX=3661 GN=LOC111487043 PE=4 SV=1) HSP 1 Score: 740.7 bits (1911), Expect = 3.3e-210 Identity = 370/401 (92.27%), Postives = 384/401 (95.76%), Query Frame = 0
BLAST of PI0013180 vs. NCBI nr
Match: XP_008465235.1 (PREDICTED: probable protein arginine N-methyltransferase 6 isoform X1 [Cucumis melo]) HSP 1 Score: 792.7 bits (2046), Expect = 1.5e-225 Identity = 395/401 (98.50%), Postives = 399/401 (99.50%), Query Frame = 0
BLAST of PI0013180 vs. NCBI nr
Match: XP_038874306.1 (probable protein arginine N-methyltransferase 6 [Benincasa hispida]) HSP 1 Score: 771.9 bits (1992), Expect = 2.8e-219 Identity = 386/401 (96.26%), Postives = 393/401 (98.00%), Query Frame = 0
BLAST of PI0013180 vs. NCBI nr
Match: TYK15172.1 (putative protein arginine N-methyltransferase 6 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 767.3 bits (1980), Expect = 6.9e-218 Identity = 386/401 (96.26%), Postives = 390/401 (97.26%), Query Frame = 0
BLAST of PI0013180 vs. NCBI nr
Match: KAA0066129.1 (putative protein arginine N-methyltransferase 6 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 746.9 bits (1927), Expect = 9.6e-212 Identity = 378/402 (94.03%), Postives = 384/402 (95.52%), Query Frame = 0
BLAST of PI0013180 vs. NCBI nr
Match: XP_022141585.1 (probable protein arginine N-methyltransferase 6 [Momordica charantia]) HSP 1 Score: 744.6 bits (1921), Expect = 4.8e-211 Identity = 367/402 (91.29%), Postives = 388/402 (96.52%), Query Frame = 0
BLAST of PI0013180 vs. TAIR 10
Match: AT3G20020.1 (protein arginine methyltransferase 6 ) HSP 1 Score: 547.4 bits (1409), Expect = 1.0e-155 Identity = 288/425 (67.76%), Postives = 326/425 (76.71%), Query Frame = 0
BLAST of PI0013180 vs. TAIR 10
Match: AT3G20020.2 (protein arginine methyltransferase 6 ) HSP 1 Score: 504.6 bits (1298), Expect = 7.7e-143 Identity = 271/425 (63.76%), Postives = 308/425 (72.47%), Query Frame = 0
BLAST of PI0013180 vs. TAIR 10
Match: AT4G29510.1 (arginine methyltransferase 11 ) HSP 1 Score: 250.8 bits (639), Expect = 2.0e-66 Identity = 138/343 (40.23%), Postives = 202/343 (58.89%), Query Frame = 0
BLAST of PI0013180 vs. TAIR 10
Match: AT2G19670.1 (protein arginine methyltransferase 1A ) HSP 1 Score: 246.1 bits (627), Expect = 5.0e-65 Identity = 132/335 (39.40%), Postives = 203/335 (60.60%), Query Frame = 0
BLAST of PI0013180 vs. TAIR 10
Match: AT1G04870.2 (protein arginine methyltransferase 10 ) HSP 1 Score: 210.7 bits (535), Expect = 2.3e-54 Identity = 141/394 (35.79%), Postives = 211/394 (53.55%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) 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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