PI0000175 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCGCATGCTTAAGAAGGTTTGCTAGTTAGTGTTCCTTTTCTCTGTAACTTGCTAGTGAGTGCATCTTACATTTAGGGGTGTTTGGGGTAAGGTGTAGAGTTGTTAATTCTGGAGAGTTATGTAGTTATGGTGTCCACGAAGGGTTGGCCAGGAGTGGAGTTTAATTCCTCTCCTCCAACTCTAACCCCTTGGGTTAACACCCTCTTTAAGAGTTAAATAGTACCATAAGTTCAAAATATTTTTGGCTGTCCATAGGCCATTTGAACAAGTCCACAATGGGCAAGTAGAATCAAAGGTATAATATCTTAAGATTTCATTAGAGCAACAATGTTGCTGTTTTGTGTATCCTCAATCACCTTTTATCGTGTGGATTTATGTTATATTTTAATATTAGAAACTAAACTATCGTATGAACTTATGTTAAGATGAGCTTTTTGCGTGATTGAGAACTCCACCACATTGAAGTGATCATCTGCAAGTTTTGAAAGGAACCATATATCTTTTCTAAGGAAACAAGATTGTTTGATCATTCAAAAGTTTGCAGATAAAAAATCTCTCTTCAAGCATATTACAACATGTAGAGCTGTGTAGTGCATAATTGTGTTTAGATTAAAGTATTAGTCTTTTATCTTTTAATTATTTTTTTCTTTGATAATTAGCATACAAAGTAGAAATTTCTCTTGTATTATAGTTTATATTTACTCATTATTATGTTCTTTGTCTAATGAAAAGTTATTCCCAACACGGCAAAGCACCCCAACAAAAAGAAAAATCCTTGAAGGATAATTGGAAAACAACCCCTTTTGATGTAGCCTAAGTACTAAAAGGAGAGAAATCTCCAAGAAACTAACAAAGTCTTCTTTATTATGAATGAGAAGATACGTAACACAAGGGGGAGACTCTATTATAGAGAATTACAAGAATCCTAAAAAGATAACTAAAGGAGATTATAAACTAATTTGGTAATTAAAATGTAATTAATCAATGATTAACTAAGATTTACTTGATTTTACCAAAAATATCCCAGTCCTATTACATCACTTCTTACGACCTTACTTGAAAAGAATTTGTTCTATAAGTTGAGCAACAATATCCTTGAGATCTTTTTTCTGAAACGGAGATAAGCCTTTTTATTATTGATATTATATGAGACTTAAGCTCAAATACAAGAGTATTGTACTAAGAGCAAAAGAAATAAGGGAGAATACAGTTTAAAGTGAAAACTTAGGCAAAAAAAAAAAAAGAAGACAACCTAAACAAATAAAGCCAAACAGAAAAGTAACAAACAGAGCAAAGCCTTTCCAAGGTGAAACATCCGTAGAAACCTAAATACAAAGCAAAACTTGGCAACTCTCTCAAGAGGAGTCCATTCGAATATAATAACTTGCACACCCAAAACTTCAATATGAGAGAAGAAAGAGAGGCGTCAAAGAGAAGTAGCCGGCCTCCTCCAAACTGTTCTTGTCAGTGCCACCTAGAACCGAGAGGAACTCGAATAAATCTTCCAAAGAAAGCCAAATTGATTCCAAAAGAACTCCCCAGAAAATACTCCTTTGGCAAGCCATAAAAACGGAGACCAAAACACAAAAATAAAACCAAGTAGGCTACCACAAACAACAAGGCTTAAACTCATCCACCCACGCGAGAGAAATCTGGGAAAGGCAGCACGCTTCAACAATTGGAGGGGCTACAATGGACGTCTAAAGGATCATACTAGAATAAGACCGCAAACAACAACTATTGACTTTAGATGATCTAGTATTTCGCAAGGCTGGGGAAAAGGGCGAGTAGCAGGGGCAGTTTTTCAAAAATTGGGTCTTCCTCGCACTAGAAAAGGGCATTAAGATCTGTTTCTAGAGGCTCAAAATGCTCCATTTCCTCACTACTAACGCTGAAAGGAGAGTCGAAAGAGGACTCTCCTTTTTTTCTAGAGAGATGGAGAGGGGTTTGCTCGAGGAGCCAATCAAGAATTTCGAGTTGGGTACAGAAAACTCAGCACGCTTAAACTGTGTAGGATGAGAGGAAATAGAACCTGACTTTGCGGAACGGGCTGGAGCTTGCAATTGGTACAACTAACTTCCAATAAATCTGGATTCGTCTCTAAAAACTCCTTGAAACTGCTGGAATGAACTGAGGGATGAGCAAAGACACGGTCTACCACTAACAAGTTTGGAGCTTCAGACAAAAGTCTTGGCCGTAATTTTCTCTCTCCTTAATGATTGCAACTCTTCGTCTCTTCAGACAATTTCCCTCCAAAATTGAATTTCTCTTTCAAATTTACATTAGCGAGATGAGGATTCTGGCGGAATGAGGAAGGATACCCGACTGGAAAAGCTTGCATAGAGTTACTAATGAGATCAACAAAATGGTTTCTTGAGAAGCTTGGCTTTGAAACGAATGAAGTGAGAAAATCCTATTCCGGATTTAAGACATTCAAATCTAAACCTTCATCTTTCAAAACTTTATTAATTCTTACTAAGTCAATCGGATTCGAGAAATCCTTGATAAAAATGGGATTTTGAACGACTGAAGGTTCTTCAATAACTTCAATATCACCAAAATTAAGATAGAAGTTTCCACGAGATTCATCCTTCAATTCGATTGTTGCCAGTAAAAAACCACATAGATTTTCCTTCACCTTAATTTTAGCTTTTGACACATTAATCATATTCAATGTATCTAAGGATATGCTCTTGAGGCCACCAAAATAATTCCCAATTGCAGCAAAGACATCCTTTTTCCAATAATCCAGTGGTAAGTTGTTGATGGATAACCACCCTCTGAATCCTTGAATAACTTCCGGTCTGCCATGTTTGAACTTGTTCCATTTTTCGACTAAAATATGGAAGAGTCCAATACGCTGCCATTTACCTGGAGTCTCAACCAAATCTTCCAAATTCCTTCGGGAGAGGCGGATTAATCCCTTATCAGCATACAAAGGAGCCTAGAAATAATCCAGAGTGCTGAAATCTTCCACGAAAACCTCTTCATTCTTATGCACCCAATAAGGAGAGGCCGGAGGAATCTGTACTCCTGACTTCGAAACCGGGGAGGGCTGTAAGGATTCAAGCTCGCCTTTGCTATGTCTCAGGTTCCCTATATTCTGGTCAATATCTGTAAAATCCATGGACTTAACTTTATCAGCATAAGATGATCTTTTGAGTTAGAAGGCAATGGCTCGAGAACCATTTCTTATACTCCAAGTTTGATAAGAACTGTTCCAACATCTAGAGGAAGGACGACCACCCCTTTTTGTCTTCCCTTGAAAAAACCCTGATGGTTGAACGACCACCGGAAGCCGGCCAGAAGTCGCAACATAAAACCCAGCCAATGTCGGATCTGAACTTTGAGAGCTTCATTCTCCCACGGTCAAGCTCCCCAAATTTCAGTAAGAAACAATCCTCTGGGCCTCCTAGGAAGCACAAATACCGACATGTGACATGGCGACACGCCATTTTTCAAAAAAGTAGGACACAACACGTCGGGGACACATCAAATTTTTAGTAAAAAAATTTAAATATATGTCATGCATATAAACATATTACATAACAAGGATTCCAATTAAAAACATCAAAATAACAAGTTTGGAGCCATAAAACATAACAAATTTTAGTAGAGTAGTTTGTTCAACACAACAAAAGCCAAAGGTAAAAACTACAAGTGGACAGAAACTGGTGACTAGGTTGGTGGCGACCGGCGAGAGAGATGAACGGCGATGGCGACCGGCGAGAGGGTGGTGACGGTTAGGGCAAAGAGTGTTTGTGGGGAGAATTGGAGAATAGAGGGTGGAGTTCGTGAAACTTTTGTTTTGACATTGGGCTGGACTAATGGACCATTTCTATGGGTTTGTTTGCTCCAGCCTGTCCTGGCCGTGTCGGAAATTTTAAAAAAAAAAATTTGACATGCCAGCTGGCTTGTCGGGGTCGGAAACGTGTCCAACACTGATACTTGGCCATCTTAAAAGTGCCGGTGCTTCTTAGCGGGCCTCTAACTAACTCTGCTATCGCTGCAAGGAACCAAATCAGATGGTCTTCTGATACGACTAGAGATCGTTGAGCTTCCACATCCTCCACATGAAAGTGGTTGTTTTCCAGCCAAACGCAAAAGTGCATATGAAGTATTTTGCAACTTGCTACTTCCATTGTGCAAGAACTAAGCCAAAGAAAACCCTAGAGAAGACTGAAAAAGATGCTGGAGAAATCACTGGAAAGGTGCAGAAAATCAATGGAGAAGACAATGGAGGAAAGAGAGAGGAGAGAGGAGAGACGAGAGACGAGAGAGCATACTTACCCCATTGATGTCATGCTTAGACTAACGTTCTAAAGGTATAAAGTCTTTGAGCGAATGAATGGTAGAAAAACTGACCTGGCATGTGTTCGGTGTCCTTGAGTTCTTAAAAAGACATCTCCCCTTTAGAACTATTTCTACACAAAAAATCTCAGAAACCCTTCATCACTCAACACTACAATTTTCTCCCTACCAACTCCACATAAACTTAAAAAAGAATTGAAATTTGTTCTCCAAAAAACTCAAGGTCTCTTAACCTTCCTAAAGAATCTTGGAAATTTTTATGGACTCTACTAAAGTGGGGAAATGAAGGTATTGAGCATTTCCGAGAGGAAGCCTGAACTTGGACCAAAAAACTGAAAACCTCTTATACTACTCCTAGAAGAAGCCTGAAACTTCACCCGAAGCCCAAAAACTTTGAGCCAACAACGGAGCCTTCAAGTTCCCTAGTAAACCAAGAAGATAATAAAAGACAATTTATTTCCACCAGTAAGTTTTAAATCAAACCATTGAAGAGGTGATTGAATTATTAGCAAGAAGTTGGATCGCTTCAGTCTGAAACGGCTAACTGTGTGATTCAAGCTTTCTCAGACCTACTATCAATTCACTCACTAGACTTGTGTACTTTTTGCATGTTTATCTGATGTTTCTTCCATACTTCTTTCGAGGTCTCAGAATTGCAATAGCAGCATGAGAAAGGATGATCTTGTTGCCTCTCTTTTGTCCCCTTATGAAGATGGGTTGTGGTATATATGCCTTTCCTTTTTGTTGAAGACATCAACTATGTTGTATAATAAGAAATTAGAAATTTTTTATTTTCTTTCACATTGTTTCTGTAGTCCACTACTTCCAGATCTAATTCTGGGCATAGCTGGTATCTGTGCTAGGATATCATCTAAAGCTGAACTGCTTATCTGGCGTGCTGAGGTAGCTGTTATCTGCGTTATGTTTTCAATTTTTCATCTTTGCATTAACTTTCATCAGAAAATTTTAGCCTGGCCTATTTTTTAACGCAAAATGTCAATTTTGTTCCTTGTGCAGAGGCTTTTCTTCCTCAATGGAGAGCAGGATTTGTCAGCCTTTCTGCTTGTTGATATGGGAGTAATCAAGTATCCAACTTACAGCTGCATAGTCTCAGATCAGATTTTCTTGGATCGAAATGATTTGCTTGCTTATGAAGAGGTTTAACTTTTTTCTTATGCTAATTTTGTTTTGTTGTTGACTCTTGTGATATTTTGCTTTATGTAATGCTTATACTTTATAGGCTATGGAAGTTGCACAACTAATTGATCAAGCTCTCGATGAGAAGGACGAAAAAATGGTTTTAAGATGTGTATCAGTTGCTGACTCTCGTGTGCAGCCAAATCAGTGCACTACCTCTGAATCAGTTCCATTCTTTTCATGCTTTTCAGCATCATGGATCTATTCAAAAGTAGTGTCTCTTGGAGTTTCCTTTCTTGAGCGTGAGAATAGGTCAATCTGCATCTTAAAATTTCTGCTTCAGCCCCATTTTATTTACACATACACAGAGACACGTATATGCACGGATACATATTCTTTTTTTTTTTTTGGCTGCAGCGACGTCGCTTTGGCCTGCAGGGATACATATTCATGCTCTGACATATACACATATTCATGCTTTGGCCTACCATCTTGGCCTTTGCTGCACTTTGATATTGAACTTCCATTGACTACTAAAAAAATTAGTTGTATTGGATGAAATATCACCATTCATGCATGAATTGATCGTAAAGGCAGTAAGAAAGGATAGTATGAATGCTATTGGAGTGTTATGTTAACGCACCAGAGGAGAAGAAAGGAAATAGAGAACACTCCATACATCCTTGCCTTGAGAGCACAACACTTTGCATTTTGACATGAGCCGTTAATGTAAATAGAATGAGTAAATCCACACTTGGCTAGAACCTTATCTATCCTTCCTTTGTTTTGGCAGAATTTGAGATCCCCTTACCCTTGGCATTCAACAAACTGTTGGGCCTTCGAGATTTCCATATAATTTGATTATATCTAACATTTTCTTCTTTATACTACTTGTTGTACTCATTTAAACATCAATATTTTTGTATGGATTTTTTTTATTTTTATTTTTTCCAACTCGTAATGTATATTTATTTTATATTACCACTCATTACATTTATTACTGTTGAAAGTAGAATTCTTCCCCTTTTTATCAACCCTGAGTGCCAACATTTTGACAAGACTGTTATCGGCTTTACCCATTCTTGCTACCCCAGTTTTTATCCCTGGATTTTTCTCGCTTTGCTCCCTACTGATCAGTAATACGAGCAAGCTATCAGAATTAGTTTTATGTCTTTTAGCTTGATAATCAGAAGGCTATTCTATTTGGTCAATTAAATGTGTTGTTATCAGGGAGTAAAGGTAAAGTTTGTAAAGTTTGGTGTCCAGTAACTACCTTTCTAATTGCCAATTTGATAAATCATGCAGAAAAGGCTTTATAGAGTGATCATTACAAAAAATGGTCAAATATGTTAATTGGAAATAGTGACCTGCTCATGTAACTTCATCATTAGGGACTAAAAAGGAACGTGTATTTCTGAGTAGGTACAATGATGCAGTGCTACTACTAAAGCGTTTGCTAAATTGTTACACTCGTGATGGAAGAAGAGGATATTGGACCTTAAGGTTGTCAATTGATTTGGAGCATTTGGGCTATCCCAGTGAGAGCCTTTCAGTTGCTGAGAATGGATTGTTAGATCCATGGGTTCGAGCTGGTTCAAGAATGGGATTGCAAAGGCGCATCCTTCGGTTAGGAAAACCACCACGGCGGTGGAAAATCCCTAGTTTTGCTGAGTCTATCAAGAGGAAAATCACAGAGGTATTAACATATACATGGCTGTTATTCTGAGGTTTAATGTCTATTGGATCTATTATCAAAGTTGTTGGTTCTGGTATATGTTAGTAACTGTAGCCTTGTATTGCAAACAAGTAGGTACGCATCCAAGGGCGACCATTGAACTGTGAAACAGGTATGAAGAGCAGGTATTATGGAGAAAGTGGCGAACAATGCTCAGTGGAGCAGCTTGCCCTTGAGTATTATAGTGCGGAGGGAGGTGGATGGCAAGGTGTTCATTCAGAAAGTGGCATTTGGTTAACCATTTTTGGGCTTCTCTTGTGGGATGTCATATTTTCTGATGTCCCAAATGTCTTCCGTACAAAATTTCAGGTATGTTTTAGTAAAGAAAGCCAATAAACACTAGTCTCAATTTACAAAGTCTGATCTGCACTCTCTTAGGGGTACATAGTTGGCAATGCAGACGGTGGGTGAGCTGGTCAGCTATATTTATTTAGTGGGTCTTACAGTCCTTGCACTCTCATGGAAGTCAATAAAGCTCGAGTCAGAGTGACGTGCACTTTTAATTGTCATTAAAGGTGTCATGCTGAAACTATGTAAGATAAATGTTATGCATTGGAAAAATGATCTATTCAACTTACTAAGCTTTTATTATGTAAAAGCTGAAAGCCGCATTCGTATTAGTATTTTACCGGGTCTGTTGCAGAAATGGTGGATGAGCAAGGGCGGTAACAAAGTCTTTTCGTGATATTGAAAGGGTTATACTGGGTTTTTATGAAGACCTTTATAAAAGACTTCCAGGAGTCAGATACTTACCTTTTATGGCAGACTGGCCTTGCGTCTCTGTTTCTCAAAACATATCACTTGTCAACAGTTTCTCTGAGGGGGAAATTTTCAAGGCAATTAAGGCATTAGTTGGCAATAAAGCTCCTAGTCCGAATGGCCTTACCACGGAATTTTTAGTGAAACATTGGCCAAATCTTAAAGGAAGCTTCAAAAAAATGTTTGATGATTTTTATAGAAATGGAAAGCTTAATGCTTGCATTCAAGAGAACTTCATTTGCCTAATTCAAAAAAAAGAAGACGCGATTCATGTAAGAGACTTCAGACCCATTATCCTCACAACCATCACCTACAAAGTGGTTGCCAAGGTGCTAGCAGATTGACTCAAAGTGGTTATGGACTCAATCATCAACCAATTCCAAAGTGCTTTCATCGAAGGTAGATAGATTTCAGACCCGATTCTTATAGCTAATGAGGCTGTTGAAGATTACCGTGCCAAAAAGAAAAGAGGGTGGATTTTGAAATTAGATCTTGAAAAAGCCTTCGATAGGGTAGATTGGGGCTTCCTCGAAAAGGTAATGCACTGCAAAAAGTTTAGTCATAAATGGTCCTCTTGGATATTGGGCTGCCTTAAAAATCCTAAGTTCTCCATCTTCATCAATGGCAAGCTAAGAGGAAGGATAATGGCTTCAAGAGGTATTCGACAAGGAGATCCACTTTCTCCTTCCTTTTTCTGCTCGTCAGTGAAGTACTAGTAGAAATCATTAACAAGCTGCATTTGAACGGCCACTTTGAGGGATTTATGGTTGGTAAAGACAGAATACACATCCCCATTCTTCAATACGCCGATGATACCATACTGTTTTGTAAAGACGATGAAGGTGTGCTGCTTAAGCTAAAGGAGGCCATTAATCTGTTTGAATGGTGCTCGGGTCAGAAAGTGAATTGGAACAGGTCAGCGCTTAGCAGAATTAATATGGGAGATGATGAGTTATCTCACATGGCTGGAAAATTGAGCTGTAAAGTGGAAAAGCTCCCTTTTCTGTACCTAGGTCTTCTGTTGGGAGGCTATCCTAGGCAGAAAATATTTTGGCAGCCCGTAATCAATAAAGTTTATAAAAAATTGGATAGATGGAAAAGGTTCAATATTTCGAGAGGTGGAAGGCAAACATTAAGCAATTCAGTCTTGGCCAATCTTCCAACCTACTACCTGTCCATCTTTGCCATTCTAGAAAAGTTTTTGATTTTGAAAAGCTAATTCGAAATTTCTTTTGGGAAGGGAATTCAGGTTGCAAGATAAACCACTTGGTGTCTTGGAAAAAGGTCATACCTTCCCAGCTGGATGGGGGGTTGGGATTGGGTGGTATCAAAAATAAAAATAAGGCTCTCCTTGCTAAATGGGAATGGAGGTACATGAAGGAAGATACTGCGTTGTGGCGGCAAGTGATCAAAAGCATTCATGGCAGTGAAAAATTTGATTGGCAGACCCAAAGTAAATCAGGAAACAGCTTAAGAAGTCCGTGGATCAGCATATCAAGAGAATGGAATAAGGTCCTTCAAGATTGGTAATGGCAGAAGGGTGGCTTTCTGGACAAATTCTTGGGTTGGAGAAATCCCTTTAAATATTCAGTTTCCAAAACTATTCAGAATAACCTTGCTACCTAACGACTCAGCTGCTGCCCAATGGGATTGTGTCACAAATTCTTGGTCTATAGTGTTCCGAAGATTGCTGAAAGATGAAGAAATCCAAGAATTCCAACTCCTATTAACCCTCCTATCCTCGAGAAGATTGACAGAACTGGAGGATAGGAGAGTTTGGTCCTTAGAGGCCTCGGGTCATTTTTTAGTTAAACCTCTATCGATTCACCTCTCTCCATCTTCCCCTTTGGAAAAAGATTGCTTTATAGCCCTTTGGAAAACCAGCAGCCCAAGGAGAATAAATGTTCTGGTTTGGATTATGGCAGTTGGTCTTCTTGATTGCTCTGAGCCTATGCAAATGAGACTTCCCAATAAATGTTTGCTGCCATCGGTGTGTCCCCTTTGTTTAAAGGGCAGTGAGCACCTAATACACCTATTCATTCTTTGCCCCTACTCATCTAAATGCTGGTATAGCATTTTTTCTATGTTCAAAATAGTTTGGGTCTTTGATGGATCTCTAAGCTCCAATGTGTTTCAGCTGCTGAGGGCCCCCTTCTTATCAAAGAAACCTTTTCTAATATGGATTAATTTGATAAAAGCGTTGCTAGCAGAGATTTGGTTTGAGCGCAACCAGTGCATTTTTCATGATAAAAGAAAGGGCTTGGGTTGACATTGTAGATACGTCAAAGAGAAATGCAGCAACTTGGTGTTCCTCGAGTTAAAAGAGTATTCAATTTAGGACATTTGCCTCAACTGGACTGCCTTCATCTGCCCTTCAGATTAAGAGAGAATTAGGACTGTTAATTTCCAGATTGTTAGGCTTTGCTTTGTATCTTTCCTTGTGTTTTATTATTCTTCAGCTTTGAATTTTTCTACATGGTAGTTTGTATTGTTATTTTCGGTCTTTTCACGACCTTAGGATCGTTTCTTTTATTTTGGATATGATGAGAGTGCTAAAGGGGTGTCAACCTAGTTGAGATGTCCAGGTGCACCTACTGATCTTCTCTCTTTCTAGGCTTCTCTATTACTCTCACTGTATTATTCTCTTATACTTTGAGATTTCAAAAAATATATATATAAGGTTTTATGAGTTCTAATATTTGTCTTTTTTGAGTTAAGAGGATCTTTAACATTGGAAACCTGTCATTTGCAGACTGCTCCCCTGGATTTTGGAACAGATAGCTTTTATATATTGAGACAGAACAGTATAGAATCTCAACTTCAGAAAATTCAAGATGGCATGGGTGAGGAGATCCTCATTACGTCTTGGGAATCACACAAGGGAACATCATGTAATGGAGTTAACTGGGACCGACACTCACTAGCCGAGCTTCGGGCAGCTGTCACATGTATTGGTGGCCCTTGTATGGCTTCACTATGTCGGCATCTTGCACAAGATTATCGAAGTTGGTCGAGTGGAATGCCAGATTTGTTGTTGTGGCGCTTTAATAGTGAATACAGTGGTGAAGCTAAACTTGTTGAAGTAAAAGGTCCAAAAGACAGACTCTCTGAACAGCAGCGGGCATGGCTATTACTTTTAATGGATTGTGGCTTCATAACAGAAGTCTGCAAAATCATCCCCATGCTAAAATCAGCTTAA ATGCGCATGCTTAAGAAGAATTGCAATAGCAGCATGAGAAAGGATGATCTTGTTGCCTCTCTTTTGTCCCCTTATGAAGATGGGTTGTGTCCACTACTTCCAGATCTAATTCTGGGCATAGCTGGTATCTGTGCTAGGATATCATCTAAAGCTGAACTGCTTATCTGGCGTGCTGAGAGGCTTTTCTTCCTCAATGGAGAGCAGGATTTGTCAGCCTTTCTGCTTGTTGATATGGGAGTAATCAAGTATCCAACTTACAGCTGCATAGTCTCAGATCAGATTTTCTTGGATCGAAATGATTTGCTTGCTTATGAAGAGGCTATGGAAGTTGCACAACTAATTGATCAAGCTCTCGATGAGAAGGACGAAAAAATGGTTTTAAGATGTGTATCAGTTGCTGACTCTCGTGTGCAGCCAAATCAGTGCACTACCTCTGAATCAGTTCCATTCTTTTCATGCTTTTCAGCATCATGGATCTATTCAAAAGTAGTGTCTCTTGGAGTTTCCTTTCTTGAGCGTGAGAATAGGTACAATGATGCAGTGCTACTACTAAAGCGTTTGCTAAATTGTTACACTCGTGATGGAAGAAGAGGATATTGGACCTTAAGGTTGTCAATTGATTTGGAGCATTTGGGCTATCCCAGTGAGAGCCTTTCAGTTGCTGAGAATGGATTGTTAGATCCATGGGTTCGAGCTGGTTCAAGAATGGGATTGCAAAGGCGCATCCTTCGGTTAGGAAAACCACCACGGCGGTGGAAAATCCCTAGTTTTGCTGAGTCTATCAAGAGGAAAATCACAGAGGTACGCATCCAAGGGCGACCATTGAACTGTGAAACAGGTATGAAGAGCAGGTATTATGGAGAAAGTGGCGAACAATGCTCAGTGGAGCAGCTTGCCCTTGAGTATTATAGTGCGGAGGGAGGTGGATGGCAAGGTGTTCATTCAGAAAGTGGCATTTGGTTAACCATTTTTGGGCTTCTCTTGTGGGATGTCATATTTTCTGATGTCCCAAATGTCTTCCGTACAAAATTTCAGACTGCTCCCCTGGATTTTGGAACAGATAGCTTTTATATATTGAGACAGAACAGTATAGAATCTCAACTTCAGAAAATTCAAGATGGCATGGGTGAGGAGATCCTCATTACGTCTTGGGAATCACACAAGGGAACATCATGTAATGGAGTTAACTGGGACCGACACTCACTAGCCGAGCTTCGGGCAGCTGTCACATGTATTGGTGGCCCTTGTATGGCTTCACTATGTCGGCATCTTGCACAAGATTATCGAAGTTGGTCGAGTGGAATGCCAGATTTGTTGTTGTGGCGCTTTAATAGTGAATACAGTGGTGAAGCTAAACTTGTTGAAGTAAAAGGTCCAAAAGACAGACTCTCTGAACAGCAGCGGGCATGGCTATTACTTTTAATGGATTGTGGCTTCATAACAGAAGTCTGCAAAATCATCCCCATGCTAAAATCAGCTTAA ATGCGCATGCTTAAGAAGAATTGCAATAGCAGCATGAGAAAGGATGATCTTGTTGCCTCTCTTTTGTCCCCTTATGAAGATGGGTTGTGTCCACTACTTCCAGATCTAATTCTGGGCATAGCTGGTATCTGTGCTAGGATATCATCTAAAGCTGAACTGCTTATCTGGCGTGCTGAGAGGCTTTTCTTCCTCAATGGAGAGCAGGATTTGTCAGCCTTTCTGCTTGTTGATATGGGAGTAATCAAGTATCCAACTTACAGCTGCATAGTCTCAGATCAGATTTTCTTGGATCGAAATGATTTGCTTGCTTATGAAGAGGCTATGGAAGTTGCACAACTAATTGATCAAGCTCTCGATGAGAAGGACGAAAAAATGGTTTTAAGATGTGTATCAGTTGCTGACTCTCGTGTGCAGCCAAATCAGTGCACTACCTCTGAATCAGTTCCATTCTTTTCATGCTTTTCAGCATCATGGATCTATTCAAAAGTAGTGTCTCTTGGAGTTTCCTTTCTTGAGCGTGAGAATAGGTACAATGATGCAGTGCTACTACTAAAGCGTTTGCTAAATTGTTACACTCGTGATGGAAGAAGAGGATATTGGACCTTAAGGTTGTCAATTGATTTGGAGCATTTGGGCTATCCCAGTGAGAGCCTTTCAGTTGCTGAGAATGGATTGTTAGATCCATGGGTTCGAGCTGGTTCAAGAATGGGATTGCAAAGGCGCATCCTTCGGTTAGGAAAACCACCACGGCGGTGGAAAATCCCTAGTTTTGCTGAGTCTATCAAGAGGAAAATCACAGAGGTACGCATCCAAGGGCGACCATTGAACTGTGAAACAGGTATGAAGAGCAGGTATTATGGAGAAAGTGGCGAACAATGCTCAGTGGAGCAGCTTGCCCTTGAGTATTATAGTGCGGAGGGAGGTGGATGGCAAGGTGTTCATTCAGAAAGTGGCATTTGGTTAACCATTTTTGGGCTTCTCTTGTGGGATGTCATATTTTCTGATGTCCCAAATGTCTTCCGTACAAAATTTCAGACTGCTCCCCTGGATTTTGGAACAGATAGCTTTTATATATTGAGACAGAACAGTATAGAATCTCAACTTCAGAAAATTCAAGATGGCATGGGTGAGGAGATCCTCATTACGTCTTGGGAATCACACAAGGGAACATCATGTAATGGAGTTAACTGGGACCGACACTCACTAGCCGAGCTTCGGGCAGCTGTCACATGTATTGGTGGCCCTTGTATGGCTTCACTATGTCGGCATCTTGCACAAGATTATCGAAGTTGGTCGAGTGGAATGCCAGATTTGTTGTTGTGGCGCTTTAATAGTGAATACAGTGGTGAAGCTAAACTTGTTGAAGTAAAAGGTCCAAAAGACAGACTCTCTGAACAGCAGCGGGCATGGCTATTACTTTTAATGGATTGTGGCTTCATAACAGAAGTCTGCAAAATCATCCCCATGCTAAAATCAGCTTAA MRMLKKNCNSSMRKDDLVASLLSPYEDGLCPLLPDLILGIAGICARISSKAELLIWRAERLFFLNGEQDLSAFLLVDMGVIKYPTYSCIVSDQIFLDRNDLLAYEEAMEVAQLIDQALDEKDEKMVLRCVSVADSRVQPNQCTTSESVPFFSCFSASWIYSKVVSLGVSFLERENRYNDAVLLLKRLLNCYTRDGRRGYWTLRLSIDLEHLGYPSESLSVAENGLLDPWVRAGSRMGLQRRILRLGKPPRRWKIPSFAESIKRKITEVRIQGRPLNCETGMKSRYYGESGEQCSVEQLALEYYSAEGGGWQGVHSESGIWLTIFGLLLWDVIFSDVPNVFRTKFQTAPLDFGTDSFYILRQNSIESQLQKIQDGMGEEILITSWESHKGTSCNGVNWDRHSLAELRAAVTCIGGPCMASLCRHLAQDYRSWSSGMPDLLLWRFNSEYSGEAKLVEVKGPKDRLSEQQRAWLLLLMDCGFITEVCKIIPMLKSA Homology
BLAST of PI0000175 vs. ExPASy Swiss-Prot
Match: Q5XVJ4 (Fanconi-associated nuclease 1 homolog OS=Arabidopsis thaliana OX=3702 GN=FAN1 PE=2 SV=2) HSP 1 Score: 662.1 bits (1707), Expect = 4.8e-189 Identity = 316/486 (65.02%), Postives = 390/486 (80.25%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy Swiss-Prot
Match: Q5SNL7 (Fanconi-associated nuclease 1 homolog OS=Oryza sativa subsp. japonica OX=39947 GN=Os06g0171800 PE=3 SV=1) HSP 1 Score: 630.2 bits (1624), Expect = 2.0e-179 Identity = 302/497 (60.76%), Postives = 389/497 (78.27%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy Swiss-Prot
Match: Q9Y2M0 (Fanconi-associated nuclease 1 OS=Homo sapiens OX=9606 GN=FAN1 PE=1 SV=4) HSP 1 Score: 254.6 bits (649), Expect = 2.3e-66 Identity = 165/447 (36.91%), Postives = 251/447 (56.15%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy Swiss-Prot
Match: Q69ZT1 (Fanconi-associated nuclease 1 OS=Mus musculus OX=10090 GN=Fan1 PE=2 SV=2) HSP 1 Score: 254.6 bits (649), Expect = 2.3e-66 Identity = 168/447 (37.58%), Postives = 246/447 (55.03%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy Swiss-Prot
Match: D2HNY3 (Fanconi-associated nuclease 1 OS=Ailuropoda melanoleuca OX=9646 GN=FAN1 PE=3 SV=2) HSP 1 Score: 254.2 bits (648), Expect = 3.0e-66 Identity = 172/485 (35.46%), Postives = 259/485 (53.40%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy TrEMBL
Match: A0A1S3CAT9 (Fanconi-associated nuclease OS=Cucumis melo OX=3656 GN=LOC103498718 PE=3 SV=1) HSP 1 Score: 968.0 bits (2501), Expect = 1.5e-278 Identity = 474/488 (97.13%), Postives = 480/488 (98.36%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy TrEMBL
Match: A0A1S3CAQ8 (Fanconi-associated nuclease OS=Cucumis melo OX=3656 GN=LOC103498718 PE=3 SV=1) HSP 1 Score: 968.0 bits (2501), Expect = 1.5e-278 Identity = 474/488 (97.13%), Postives = 480/488 (98.36%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy TrEMBL
Match: A0A0A0KUX0 (Fanconi-associated nuclease OS=Cucumis sativus OX=3659 GN=Csa_5G651670 PE=3 SV=1) HSP 1 Score: 958.4 bits (2476), Expect = 1.2e-275 Identity = 469/483 (97.10%), Postives = 477/483 (98.76%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy TrEMBL
Match: A0A5D3BKT7 (Fanconi-associated nuclease OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold169G00220 PE=3 SV=1) HSP 1 Score: 958.0 bits (2475), Expect = 1.5e-275 Identity = 469/483 (97.10%), Postives = 476/483 (98.55%), Query Frame = 0
BLAST of PI0000175 vs. ExPASy TrEMBL
Match: A0A1S4E2H4 (Fanconi-associated nuclease OS=Cucumis melo OX=3656 GN=LOC103498718 PE=3 SV=1) HSP 1 Score: 958.0 bits (2475), Expect = 1.5e-275 Identity = 468/483 (96.89%), Postives = 475/483 (98.34%), Query Frame = 0
BLAST of PI0000175 vs. NCBI nr
Match: XP_008459670.1 (PREDICTED: fanconi-associated nuclease 1 homolog isoform X2 [Cucumis melo]) HSP 1 Score: 968.0 bits (2501), Expect = 3.1e-278 Identity = 474/488 (97.13%), Postives = 480/488 (98.36%), Query Frame = 0
BLAST of PI0000175 vs. NCBI nr
Match: XP_008459669.1 (PREDICTED: fanconi-associated nuclease 1 homolog isoform X1 [Cucumis melo]) HSP 1 Score: 968.0 bits (2501), Expect = 3.1e-278 Identity = 474/488 (97.13%), Postives = 480/488 (98.36%), Query Frame = 0
BLAST of PI0000175 vs. NCBI nr
Match: XP_011656117.1 (fanconi-associated nuclease 1 homolog isoform X3 [Cucumis sativus]) HSP 1 Score: 965.3 bits (2494), Expect = 2.0e-277 Identity = 473/488 (96.93%), Postives = 481/488 (98.57%), Query Frame = 0
BLAST of PI0000175 vs. NCBI nr
Match: XP_011656116.1 (fanconi-associated nuclease 1 homolog isoform X1 [Cucumis sativus] >KAE8649017.1 hypothetical protein Csa_008796 [Cucumis sativus]) HSP 1 Score: 965.3 bits (2494), Expect = 2.0e-277 Identity = 473/488 (96.93%), Postives = 481/488 (98.57%), Query Frame = 0
BLAST of PI0000175 vs. NCBI nr
Match: XP_031741119.1 (fanconi-associated nuclease 1 homolog isoform X4 [Cucumis sativus]) HSP 1 Score: 965.3 bits (2494), Expect = 2.0e-277 Identity = 473/488 (96.93%), Postives = 481/488 (98.57%), Query Frame = 0
BLAST of PI0000175 vs. TAIR 10
Match: AT1G48360.2 (zinc ion binding;nucleic acid binding;hydrolases, acting on acid anhydrides, in phosphorus-containing anhydrides ) HSP 1 Score: 662.1 bits (1707), Expect = 3.4e-190 Identity = 316/486 (65.02%), Postives = 390/486 (80.25%), Query Frame = 0
BLAST of PI0000175 vs. TAIR 10
Match: AT1G48360.1 (zinc ion binding;nucleic acid binding;hydrolases, acting on acid anhydrides, in phosphorus-containing anhydrides ) HSP 1 Score: 451.1 bits (1159), Expect = 1.2e-126 Identity = 215/342 (62.87%), Postives = 272/342 (79.53%), Query Frame = 0
BLAST of PI0000175 vs. TAIR 10
Match: AT1G48360.3 (zinc ion binding;nucleic acid binding;hydrolases, acting on acid anhydrides, in phosphorus-containing anhydrides ) HSP 1 Score: 121.3 bits (303), Expect = 2.1e-27 Identity = 62/109 (56.88%), Postives = 78/109 (71.56%), 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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