
Pay0012897 (gene) Melon (Payzawat) 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.GGAAAATTATTTTGGTTTAATTATTATTTTAAGGAAAGTTTAAGGAACGGAAAATGTTTTTAACATTTAATAATAATAACAAAAAGAAAAAAAAAAAAAGAAAAAAAAAGAAACTAAGTGAACGGTAAAGTTAAATTCGGAGAAAAAAATTGTATTAATCCAAAAGAAAAGAAAAAATAAAAACTTTTACACACGATCCGATTGCGACGTCGTCGTTTCAATTCCCCAAGTTGAAGAGACTTTTCCTTCTTCTTCTTCTTCTCCTTCTCGACATTGTAGTTATGGCGGCAATCGATCAACAACAGAAAAAAAGAAGATGATGTCAAAACCCTATAAATCAACCGCGAATTGCAAAACTGGATCTCCCTCTTTCACCGGAATCAGATCCACCGTCTGTGGTTTCGACTGCCATGAGCTCCTCGGAACCACTGGTCCCAGTTCACATCCGTCGGACCGATTGTTCTGTATGTTTTCGAACATTCTTCCTCGATTAGTACTAGATATTTTCAGTTATATTCTAAGATAAGATCGAGAACTAATGTTAATGGCGATATGATGTTCTTACTCTGGAAGCAAAGGATCTGGAATCGATTCAACGCTGGAGATGAATCTGTACGGAAAATAGGTAAAGAAAGAAATTAAAGCCCTAAAGAAATGGAGAAGACGATTGATTCTAATTTATTTATAAACGAATTAGAAATTTTTTGAAACCCTAATGAATTTGATTAATCTTCTTTACTTACCCTGCGCAGACGGTAGAAGATTCACCAATATTCTCGAGCTGTTGCAATTCTTCCTGCATCATTTCATAACGATTTATCACGAAAAAAACGAAGGAAATGGCAAAGCGATTAAGGTAAAATCTATGAAATAGCGATTTACTTTGATGATATTGATTTCGTTTTGGAGTCTGTTTATGGCTGCTGTGATTCTATGTCTGCCAAAGAAGGTGTTGTTCTTACATCGAGACTTGGATTTGATTTCTGGATTGACTTCTTCTTGTTCTTCTTTCGGTGACTGTCGAGGCGGCGGCGGTGACGGCGACGGCGAGGGAGAGGACGGTGGGTGTGATTGGTGGAGTTCATCAGCCATTGTTGGAGAGTTAGAGGTAAGAAATCAAATTGAATGTTCTTTTTCTTCCTTTTCTATGGGAAATTGATGAAGAAATTTTGGGAATTAAAGGGAAGAACAGAGAGAAAATGGGGAAATTGAGATGAAGAAGAGAAGAAATAAAAAGGGATTTCTTTTGGAGGGGTGGGGGAGGGAAGGTGAGGAGATTTTTAAAACATTCAAAAAGGAGAAGAAATGGACCAAAGAAAGCTGGAAACAAATGATGAGGGCAAGGTGGTTTTTTTTTTATATATAATTATTATTATTTAAAAACAAACAAAGAAAGAGAGAAATAAAAATAAAATCTTTTTTTCTTGTTGATGTATTTGGAATAATTGAAGGAAAAAGGCAAGAGATGAGATTGTGATGAAAAGGAATAAAGTGGATAGTCAAAACTCTGTGAAAAAGTAGACCAAAAGATCAGAACATACAAAATAATAATAATTAACAAATAATTAATAAAAAAAATACTTTTTTTTTTGTTCTTTAGGTTTTTTGGTTTACCCAAGTTTTTGGTTCAATGGGTAAGAATAATCCAAATAGTCCGACAACCTGAATTACCTACCCATATTATATAGATTTTGTTGGGTTAGTTTAAAATGTAGGTTGGATTGGGTTGAAAATTTTAATAATTTTCGAGTTGGAGGGTTGAAAAGTTCAGGTCAACCCAAATTAATATTATATATATATATATTTATTTATTTATTTATATGGATGTTCAAAACTTGGAAGGTACAATAATTTTGAAGGAACAATTTTGAACTTTAGAAACATTTGAAATTAGAAACGAAAAAAAAATAGTAATACAACCCGATAACCTAACCCAACTCATATTTTACGGTGTTGGGTTGAGTTAAAAACTTAATTTGGGCTCTTCGAGTTGCCAACCCGTTTACAATCCTAGTTTAATTATAAAAAAATTGAAATAGTTGCAAAATAACAATTATGACTTAAAATATTTGTAGATACAATATAATGGAAGAGAAAAAGATTGTAATAAAGCAAAAAATTAAACTTAACTTTAGAAGTCCATTTATGATATACCGTATTATTGATGGGAGTAACTCCTAATTGTCGTACCCAATACAAAAAAAGTGAGATCGTGTAGGTATGAGTGATAAAGTTTATCTTGAATATATTTTGTTATGTTTGCAATTCTTTACAAATATTGTTATACACTCAATTATTGTACTTAAAAATGATGCTAAATGCAATTAGCTTAAGTTTAACAATTATAGTTTGGAAAAAGTTAGAATCGAGATGTTCACAAATAGTTCGCATGGTTTGACAAGATACTCCTTTAAGTAGTCATATGGACTATTCATTATAAGTTTTAATACTATAAGTTTTTATTTAGCTTTCAAGTCTGAAAACATTACCATTTTAGTCTTAAACTTTTAGTTTAATTTTTCAAAAGGTTAGGATTTTGGTATGAATATTTGAGTTTTATTTCAATTTGATGTTTATGTTTCAAATCTTACGTTTTAAATATTTCTTTACTAAATATTCTAATCCAATTTTTTACATTAAAAAATAATAAAACTTAAACATTTTGAAACCTAAGATTAACATGGAACTAAGCATAAAATTTAGGTTATAGGAAGGAAATGGAAAGGAAATGAAAGGAAAAAAAAAAAAAAAAAGTTAAAAAGTGATTTGTGAAGTAGAACTTTGAATCTTATTCTATTTGGTTTCTAAGTTTAATTTCTAAAGAAGTATTTATTTTAGTCTCTCATAATTAAAGTTATGTTAACTATTCAACACAAATGTATAGAACGTTATATCTTTTAATGATTGGTCTCTATACGTATTGAGTAGATAAAGGTGAAGTAAAGTGCCAACAATCGACACATCAAAATACTTTAACTACCAAAAACTCGAAGTAAAAATGTTTTTTAAATTCTCCCGCTTTGCCACCTTATTTAAAATATAAACTCTATCGTTACTAGCTATCAAAAAATACAAGTTATCTCGTCGTTTTATTAAAGAGCTAACAAAATCTTAATAGACATCAAAATAAAAACTTTATATCAACTAAAACAAACATTTCTAAAAGTTTAAAAACAAAATTCAAGGACTAAAAGAAGGTTATAACAAATTTAGAGACGAAAATAGAAGATTATTAATAGAAGTATAGATGTATTTTAATAGTGTTATTTGGGAAGATGAATATAATATAAGGATGAAACTTAGGGAAGAATAGAGAGAGAATGGTTTTGAATCGAAGAGGTCAAAGCTTGAAAGTTTGAAACCCCATCAAAGCCGCCAAGTCCACCTCTTCATTATTGTTTAATTAATATCTTACTCACAGACTCACTCTATTTTCCTTCGTTTTTTTGTCAATTTGTGTGATGTTCATGGGAGGTTGATGTGTATGCCTTTTTCCATCTTTATTCCATTTTCAATCAAATTTTTCGTTTGATTTCGTGGGAATTGGGACAAAGATTCTCCGGGGATTGAATTGTCGTGTAAAACTATTAAACTTTTTATCTTGTTCTATTTTCTGGGTTTTCTAAATTGAGTCTATTTTAGTCTTATGTCATTAAGATTTTATTAACTTATTTCGACGATTGGATTGCGAAATAAGATAATTACTCAAATTTTAATTTTTAGTTAAAGCGGTGATTTGGTGTTTTATTAGAAAAAAAAAACTCAAAAAATCACTTCGACTTCAAGATTTTGACTGTAACCATTATCTCAACCCAACTCATATGCTAAATGCAATTCATCCACGTATAATTTTTTTTTAGATGTGTTGTAATTAGTTTTTTTTTCTAGTTTATTTTACTTTGCCATAGATGTAAACATCAATATATTAGGTTTATTTTATTTTTCTTAATCTACTCAATGTTGTTATTTTGATTTGTTTTAATATTCCAATATGAAAAAATAAATAAAGAGTGGGGAAGCGAGAGGATGCGAGAGATTTAAGTTTTTGAATAAAAAAAGAACAGTTAAATTTAAATTTGTGTTTATTTTCACGTTGATTATGTTTTTGTATTGGTATAAAAGATTTATAGAATAAATTAATCAGATGTTTTTGCATAATCATTAACAGAAATTCTTTTTTTGTTCAAAAGTTTATATATAAAAACAAACACTTTTAAAACTTTAGGAATCAAAATAGAATTTTAATCCTTTTCTTTTTATGAAATGTTTACAAAAATCAATCCTCGTTTGAGTGGTTAAGTCCTTATCTATCATTCATTGAATAAAAATTAAATTTCTTGTTAGCTTGTTTTATTATTCATATATAAATGAGTAAAATTGGTTCAAACTTGTGATGGAAAATGCATTTCTTGTACCCATCCTCGTTTTGTTCGTATAGAATTTTCTTCCTTTTGTTTCCCCTCCATTCTTCGCATTGCCTAAATAGGTGGGGTAGGATCCACGGAGCCTCAACTTTGATGGAAAAATAAGTATATTTAAATATCAAGTTTTATGTCAGTTGAGTATTGTTTTGGCTGACAGATTACTTTTACTTTAGAACATAAGTACTTTTGTTTTCTAAAAATTTATTTTATGTATATTTCAATTGATTACGATGTATATTTCATTGTCATGCTGTTTTTTGCACAACTTACTAGAAAAGTGTAAGATTTGTCTATTGGAATATTTGTGTATAAGGTTCAGAATATTTGGTTAAAAAGTGTTAGATTACATTATCATTTTAGTTACTATACTTTTTAGTTTTTACTGCCTAAAAACTACCTCTATCGCAATGAAAAAATATCTAGGGATTGTTTGGAGAGGTGTAATGTAATCATTATTACTAAGAATTGTGGGAGTATTGAAATGCACAAGGTCTTGTAATTACGTTTCATTCTTTTTGAAAAAATTATATTACTCCCAATCTTCGATCTTATACTTTTAGATTTGGTTATTTTCGATTCCTATACTTTTTTTTTTTTACTTTATTCTACTTTGGTTTACATACTTCAAAACATTCTTTTATGATCAACTCATTTTTATTTTCAGAGAACCAATTGTCACTCTTGAAAAATTAAGTGCTAAAATGAACCAAAGTATAAAAACTAAAGCAAAAAGTATAGAAATAAAAAAAATAGTTCTATACTTTTTATCTGAGCTAAACTTTGATGGACTCATAGATGTATACTATATATGTTTTTCAAACAAGGAGTGGGTGTGAAGGGTATTATTATTGTATGCTTTTCGTGGTTTATCTCTTCTCGAGTCGTCGACTCTATAGCAAAAACTCTTTTTTCGTCGAAGGAGTAACATTTTAGGTGGTAGTTATTTTTTACTTCTTTTGTTGTTTGATTGTCTTTAATATCGACGTACTTTCTTTATCTAATATCTATTTAGTCTATCACGATCTCCTTAAATAAAAATAAATTTTTGTTACATTTGAAAATTGTTTGATTTTTTTTTTTTTTAATTAATGTTGGCGGGTATAAGATGAGGATAAGAGTTATTATCAAGCGGGCAATTAGGGCTCGGAAATGTGAAATTCCCCATTTCCCTCCATTTTCAGACTATGCCGAAGAACTCTCCCATTTGAACTTCAAGATTTCATCGCTTTCCAGCTTCAACGATCTCATTCTCTCTTCATCTGATGTAATCGGAGCTGTAGGAAATGGCATTTAGATCATCAATCGCGAAGTTCTCCTTGTTTTCTTCTTCGTCGCAATCTCTCCATTTTCACCATTTGTTCTTCACATGTACTACTCCGCCGCCGAGAATTTTCCGGTTCTGCTCCATTTCTACTGCTTCTGGTGTTAAGAACAAGACAAAGAAGGAGAAGCATAAGAAATCGAAGAATCTCAAGGCGAGTACCTTGGTTTCGAAATCGTCGGAGTCTGCTTCTTTATCTTCGAAGTTAGCTTTGGTGAAGGAGAAAAGGAGGACTCGGTCCACTAAGGAGTTTGATGAGAACGCTATCCCGATTGGCGACACAGCTGCTCACATTCCGGTGATGCTTGCGGAAGTATTGGACGTATTCTCTAGTTCATCCGGAAGGCCGCTACGCTCCTTTGTAGATTGTACCGTCGGTGCCGGTGGACATTCCTCAGCGGTTAGTCTCTATCTGTACATGTTTTTCTTCTTGTTTTGTTCATCGCAAATGATTGATTAGGTGCATTTTCCTTGATAGCAATTATTATTCGAATGTGTTTGGTGATTGTGTTTCTTGAAGTAGTTCTGTGCCTGCTCGTCAATTTTTCTGAAATATATTATTGTTCGTGTATAAGTGTAGCCGTAATAAATGCTCACTCAATCTTTAATCCAAATGTTTAATCAATGAGCAGAATATTATGTGCTGATTTGGATATTGAGTTGTGTATTGTATTCTATCTAAAGCTATACGTGGCTTTATTCAAGCGATTGATCTTATCTAAGTGCTTCTTTCTCTACTCTTGCTTCGTAAACAGAATTGTGGAGTAACTTTCGATCTTTCATCCTGTGTCTTTCAGTTGATGTTGTTGCATGAAGATGTGGTGTTGATAACTGCTTCTTTATGTGGCTGTATTCGTTTTCTTTTTTCATGATGCCCAGTTCTGATCTCATGTCCTGGAAAACAGATAATTCAAGCGCATCCAGAGTTAAATTTTTACATGGGAATGGATGTTGATCCAATTGCTCTTGACAAGGCTCAAGATCGGATAAGTGATTTCTTCAGTGAGGATTCTGATTTGAAAGCATATATAGTTCTGAAGAACTTTAAATATTTGAAATCACTACTGGCTGATTCAGATGAGAAACCGTTAGATCCTGGAGTTGATGGAATTTTGATGGATTTGGGAATGTCATCCATGCAGGTTTGTGAAAGGAAATCCATTAATATTCAAAACACTCAACTCAGCGTAGTAGAGAGTAAACTTGTATGCTCTTCCATTTAAGGTGCTAATGGAATATATGGCAAAAACATAACAATACACTATAAATGTTCTGCACACTGATCAGGAAAAGAACATAAAATTTCTACTAATAGTGTACTAGTTAGTAGTATTTGACATCTTTGAAAACATAGAGAAATATTAAAGTGCTATTATTTATTATTACTGTTGGGGTCCACTGTGATGAGTGGTATGGTCCATTTAACAAAGCTATGTTTCTATTTTTCATCTCATAGAGTATATCGATGCTATCAGTTATGTTGTTTATTTTCTCATATACAATGTAACCTTTTTCCCGGTTGCTTAGGTGGACGACCCTGAAAGAGGATTTAGAGTCCTTGGTGATGGACCTCTTGATATGCGAATGGATCCTCAGGTATAAACTACTTTAAGGGTGTTTGATTAGCAATAAAAACAAAGAGTTGAGTTGGTAATGATTATAAGTAAGTAATTGAGGGAGTTGACACGGATAACAAAGTGAGAAATGTGAGTTGCTATGAATAACAAGGTAATAAACCTCTTTAATTATTGGTGAACCAAACGGGAAGTTGGTTTTTCTTTACCCACCCAACTCAACTCTCCCAAATAAGGTCTGAATCTGTTTCTAACTATTCCATTGTTTACCCTTGATGAACTCTTACTTAACTGAAGTATCTGCGACCTATTCACTTCCATTTTCCTTTGTAATAGTCCATGCGCTTTTTGTTCACCCTTGATTATGGGAACACGCATACTGAATTAAAACTTCTTTTTCTTTGATAGATTGATTTCCCATTGAATGTCTCTTTTTTCTTTGTTTTCTCTTTTCTTTTGTTGGATAAGATACCAAAGAATATTTCTATAACTGTCTGCTGGACGGACTGCAGATTACCGACTTCCTTTTGAATACTGTCCTCTGTTCTCTTTATAGCTGAATGAAACGTACATTTCTCTGCAGTCCTCACTAGGCCACCACCCATCCTCGAAAAGAAAGGGGAAAAGCCATAAGTGAAAAAAGGAAAAAGAAACCTATGTCGACGGTTAGAATATAATTTTGGTCCAGTACTTCGAGAATTGTTTCATATTAGTCCATGAACTTTCAACAAATCTCAAGTTCAGTTTTTCACTATAAAATTTTGGAACATTTTTAATCAATTTCGGTAAAAGTTAATATTTTAGGATTATTTTAATTTCTTCGCCGAGTTGAAAGATACATAAGAATTTAAGGCAGAAATAAATTTTATGGGTTAATTATTTAATTATGTGGGTTCCTTACTGATTGAAACAGGTTTATGGCAGGCAAGTCTAAAAGCAGAGGACATATTGAACAATTGGCCGGAAATAGAAGTGGGTCGTATCTTGCGGGATTATGGAGAAGAAAGCAATTGGTATTCTCTTCAGAATAAAATCGTAAAAGCTCGATCACAGGGTGGATTGCATTCCACCACTCAATTACTTGATCTTATCCGCAAATCTACTCCAGGATTTAAAGGTAACCTACTCCTCCATTTCATTAATCTTTATTTTTATTTATCATTTTCTTTTGCCTATGATCTGAACCACATTCATCTTTGTTTATTATGTTCCCTGCGATATCATTATGATTGTCTCTCCTATCAATTATAGGCACTTTCTTTTTACCCTGTCTTTTTGTTATTTCATATATCACATCAACGTCAGGCCTTGTTTTTTAATATCTATTTGTTCTTTTAATTTTTTGTTTTTGTAAATTTTGCTGCTAAACACTTTCTCAGTTATAAGTTTATACATTTTGTTATCCAATTTCTATTAATATTTTCAAAAACAAGGCCAAATTTTTTAAATAAAAAAGAAATTTTTTTTTGCTTTTAGAATATGTGTAGTAATCCATGTGTTTCTTTGATATTTTGATGACAGTCATAGGGATGAAACAACCATAAACTTCTAAAATTAAAAACAAAAAGTAAAATTGTTATCAAATGAAGTTGGACTTTTTAGTTTCTTTTTTCTTGCTAAATATATGATGTTATTTACTTATCGAAATTGCTTCCCTACAATTTAATTGACTAAGCATCCTTCAACCTCTACTCGGTAGTCATTTGGTTCATTGTGTTTCACATTTTTTACGTAAACTTTTAAACTTTTTGGCCTAATTTAAAAAAAAAAAAAACAGAAACAAGTTTTTCTTACGATGATGTGCATGTTTCTTATTTTTTATTCTACTCATTTGGTTTTAAATTTTTTGAAAATGATATCTCTTTCTTCATTTTCTTTCGATGATGTGCATGTTTCTTAGGGGTATAAGACAAACTTTCAAAAACAACTTTTATTATTTATTGTTTTTTTAGTTTCGAAAGCTCTGGCGTGATTTTCTAAAACATTTGTAAAAATAAATGTAGGGTTGGAAATGGTATTTTCTAGGCTAAACTTTTACAAACTAACAATTGAAATACCAAAAAGTTACGAAACGGGATTTTTACTTTTCAAAATGAGGCTTTGAATTTATATAATCATAACATAAAAACCACCGGTGGGCTTAGTAGGTCCAACGGATTCCTCACATGATTGGTTTTTGTATTTTAATATTAGTTTTGAAGTGTCATATTACAATATATATTAAATAATATTTTATTTTAACCAAAGTATGGTTGTAGTATAGTGGTTGTGCTTTCACCCTCACAACCATCAAGTCAAATGAAAAGGCAAAAAAAAGAAAAACCAACCGAGGCTAAATTACCGGAAGACGACGTGTAAAGAAGTTAAAAAATACGTAATTTTTAAGTTGATATTTAGTAATAATATCGGGTGTGAAATATATATATATAATGGAAACAGGAGGAAGACAAGGGTGGATAAAGACAGCGACCAGGGTATTCCAAGCTCTAAGGATTGCTGTTAATGATGAACTCAATGTATTACAAAACTCCCTGTATACCTGTTTTGATTGCCTTGCTCCCGGCGGTCGACTTGCTGTCATCTCCTTCCACAGTTTGGAGGATAGGGTTGTGAAGCAAACATTTCTAGACATCATTAACCCCAAAACAGAAGGAGATGAAGTCGCAAAGATTATCGACGAAAAAGAAGAATGGATTAAGCAAACTGTCAAGGGTTCCAAAGGCAGAGTCCTCACGAAAAGGCCTATAACTCCATCGGAGGAGGAAGAGAGGTTGAATCGACGTTCTAGGAGTGCTAAGCTCAGAGTAATTCAGAAGAATATTGTTCTTTGCTGATGGAAAAAACCAATTGGCATTCTGACTTCTTTGCTATATTAAGGTTAGTACTTCTACATACCAAAGACTCTTTCTCATTTGTAGCTTTTTCTCCATTTTTTCTGGATTTTTATTTACCAGTTCTTTAGAAAATTGTTTATTTATCTAACAATGTTGAAGAGGATTATAATGATAAGCACCTACTTTGTTAGATGTAAGTTAGAGGTCCTTTTGAAATATTCACAAGTACTAAAAAAAGGAAACTGCTTAGATCAAATCTAGAATTTATGGTCACTCTAGGTCTTAAGACTATCCTTAGGAATAGTTTGATCAAAGATTAATTGATTTTTAACATCAAATCTAAAGCAAGTTTTGAAAAAAAAAATATCAAAAAAAGTTGAATAAAGTTTTTTAATGTTGATATTCTAATTTTTCAAGAGCATTACAAATCATTCTATAGGTTAAAGAAAATAAAAGTTTAATAGTCATCCAAG GGAAAATTATTTTGGTTTAATTATTATTTTAAGGAAAGTTTAAGGAACGGAAAATGTTTTTAACATTTAATAATAATAACAAAAAGAAAAAAAAAAAAAGAAAAAAAAAGAAACTAAGTGAACGGTAAAGTTAAATTCGGAGAAAAAAATTGTATTAATCCAAAAGAAAAGAAAAAATAAAAACTTTTACACACGATCCGATTGCGACGTCGTCGTTTCAATTCCCCAAGTTGAAGAGACTTTTCCTTCTTCTTCTTCTTCTCCTTCTCGACATTGTAGTTATGGCGGCAATCGATCAACAACAGAAAAAAAGAAGATGATGTCAAAACCCTATAAATCAACCGCGAATTGCAAAACTGGATCTCCCTCTTTCACCGGAATCAGATCCACCGTCTGTGGTTTCGACTGCCATGAGCTCCTCGGAACCACTGGTCCCAGTTCACATCCGTCGGACCGATTGTTCTCAAAGGATCTGGAATCGATTCAACGCTGGAGATGAATCTGTACGGAAAATAGACGGTAGAAGATTCACCAATATTCTCGAGCTGTTGCAATTCTTCCTGCATCATTTCATAACGATTTATCACGAAAAAAACGAAGGAAATGGCAAAGCGATTAAGGTAAAATCTATGAAATAGCGATTTACTTTGATGATATTGATTTCGTTTTGGAGTCTGTTTATGGCTGCTGTGATTCTATGTCTGCCAAAGAAGGTGTTGTTCTTACATCGAGACTTGGATTTGATTTCTGGATTGACTTCTTCTTGTTCTTCTTTCGGTGACTGTCGAGGCGGCGGCGGTGACGGCGACGGCGAGGGAGAGGACGGTGGGTGTGATTGGTGGAGTTCATCAGCCATTGTTGGAGAGTTAGAGACTATGCCGAAGAACTCTCCCATTTGAACTTCAAGATTTCATCGCTTTCCAGCTTCAACGATCTCATTCTCTCTTCATCTGATGTAATCGGAGCTGTAGGAAATGGCATTTAGATCATCAATCGCGAAGTTCTCCTTGTTTTCTTCTTCGTCGCAATCTCTCCATTTTCACCATTTGTTCTTCACATGTACTACTCCGCCGCCGAGAATTTTCCGGTTCTGCTCCATTTCTACTGCTTCTGGTGTTAAGAACAAGACAAAGAAGGAGAAGCATAAGAAATCGAAGAATCTCAAGGCGAGTACCTTGGTTTCGAAATCGTCGGAGTCTGCTTCTTTATCTTCGAAGTTAGCTTTGGTGAAGGAGAAAAGGAGGACTCGGTCCACTAAGGAGTTTGATGAGAACGCTATCCCGATTGGCGACACAGCTGCTCACATTCCGGTGATGCTTGCGGAAGTATTGGACGTATTCTCTAGTTCATCCGGAAGGCCGCTACGCTCCTTTGTAGATTGTACCGTCGGTGCCGGTGGACATTCCTCAGCGATAATTCAAGCGCATCCAGAGTTAAATTTTTACATGGGAATGGATGTTGATCCAATTGCTCTTGACAAGGCTCAAGATCGGATAAGTGATTTCTTCAGTGAGGATTCTGATTTGAAAGCATATATAGTTCTGAAGAACTTTAAATATTTGAAATCACTACTGGCTGATTCAGATGAGAAACCGTTAGATCCTGGAGTTGATGGAATTTTGATGGATTTGGGAATGTCATCCATGCAGGTGGACGACCCTGAAAGAGGATTTAGAGTCCTTGGTGATGGACCTCTTGATATGCGAATGGATCCTCAGGCAAGTCTAAAAGCAGAGGACATATTGAACAATTGGCCGGAAATAGAAGTGGGTCGTATCTTGCGGGATTATGGAGAAGAAAGCAATTGGTATTCTCTTCAGAATAAAATCGTAAAAGCTCGATCACAGGGTGGATTGCATTCCACCACTCAATTACTTGATCTTATCCGCAAATCTACTCCAGGATTTAAAGGAGGAAGACAAGGGTGGATAAAGACAGCGACCAGGGTATTCCAAGCTCTAAGGATTGCTGTTAATGATGAACTCAATGTATTACAAAACTCCCTGTATACCTGTTTTGATTGCCTTGCTCCCGGCGGTCGACTTGCTGTCATCTCCTTCCACAGTTTGGAGGATAGGGTTGTGAAGCAAACATTTCTAGACATCATTAACCCCAAAACAGAAGGAGATGAAGTCGCAAAGATTATCGACGAAAAAGAAGAATGGATTAAGCAAACTGTCAAGGGTTCCAAAGGCAGAGTCCTCACGAAAAGGCCTATAACTCCATCGGAGGAGGAAGAGAGGTTGAATCGACGTTCTAGGAGTGCTAAGCTCAGAGTAATTCAGAAGAATATTGTTCTTTGCTGATGGAAAAAACCAATTGGCATTCTGACTTCTTTGCTATATTAAGGTTAGTACTTCTACATACCAAAGACTCTTTCTCATTTGTAGCTTTTTCTCCATTTTTTCTGGATTTTTATTTACCAGTTCTTTAGAAAATTGTTTATTTATCTAACAATGTTGAAGAGGATTATAATGATAAGCACCTACTTTGTTAGATGTAAGTTAGAGGTCCTTTTGAAATATTCACAAGTACTAAAAAAAGGAAACTGCTTAGATCAAATCTAGAATTTATGGTCACTCTAGGTCTTAAGACTATCCTTAGGAATAGTTTGATCAAAGATTAATTGATTTTTAACATCAAATCTAAAGCAAGTTTTGAAAAAAAAAATATCAAAAAAAGTTGAATAAAGTTTTTTAATGTTGATATTCTAATTTTTCAAGAGCATTACAAATCATTCTATAGGTTAAAGAAAATAAAAGTTTAATAGTCATCCAAG ATGGCATTTAGATCATCAATCGCGAAGTTCTCCTTGTTTTCTTCTTCGTCGCAATCTCTCCATTTTCACCATTTGTTCTTCACATGTACTACTCCGCCGCCGAGAATTTTCCGGTTCTGCTCCATTTCTACTGCTTCTGGTGTTAAGAACAAGACAAAGAAGGAGAAGCATAAGAAATCGAAGAATCTCAAGGCGAGTACCTTGGTTTCGAAATCGTCGGAGTCTGCTTCTTTATCTTCGAAGTTAGCTTTGGTGAAGGAGAAAAGGAGGACTCGGTCCACTAAGGAGTTTGATGAGAACGCTATCCCGATTGGCGACACAGCTGCTCACATTCCGGTGATGCTTGCGGAAGTATTGGACGTATTCTCTAGTTCATCCGGAAGGCCGCTACGCTCCTTTGTAGATTGTACCGTCGGTGCCGGTGGACATTCCTCAGCGATAATTCAAGCGCATCCAGAGTTAAATTTTTACATGGGAATGGATGTTGATCCAATTGCTCTTGACAAGGCTCAAGATCGGATAAGTGATTTCTTCAGTGAGGATTCTGATTTGAAAGCATATATAGTTCTGAAGAACTTTAAATATTTGAAATCACTACTGGCTGATTCAGATGAGAAACCGTTAGATCCTGGAGTTGATGGAATTTTGATGGATTTGGGAATGTCATCCATGCAGGTGGACGACCCTGAAAGAGGATTTAGAGTCCTTGGTGATGGACCTCTTGATATGCGAATGGATCCTCAGGCAAGTCTAAAAGCAGAGGACATATTGAACAATTGGCCGGAAATAGAAGTGGGTCGTATCTTGCGGGATTATGGAGAAGAAAGCAATTGGTATTCTCTTCAGAATAAAATCGTAAAAGCTCGATCACAGGGTGGATTGCATTCCACCACTCAATTACTTGATCTTATCCGCAAATCTACTCCAGGATTTAAAGGAGGAAGACAAGGGTGGATAAAGACAGCGACCAGGGTATTCCAAGCTCTAAGGATTGCTGTTAATGATGAACTCAATGTATTACAAAACTCCCTGTATACCTGTTTTGATTGCCTTGCTCCCGGCGGTCGACTTGCTGTCATCTCCTTCCACAGTTTGGAGGATAGGGTTGTGAAGCAAACATTTCTAGACATCATTAACCCCAAAACAGAAGGAGATGAAGTCGCAAAGATTATCGACGAAAAAGAAGAATGGATTAAGCAAACTGTCAAGGGTTCCAAAGGCAGAGTCCTCACGAAAAGGCCTATAACTCCATCGGAGGAGGAAGAGAGGTTGAATCGACGTTCTAGGAGTGCTAAGCTCAGAGTAATTCAGAAGAATATTGTTCTTTGCTGA MAFRSSIAKFSLFSSSSQSLHFHHLFFTCTTPPPRIFRFCSISTASGVKNKTKKEKHKKSKNLKASTLVSKSSESASLSSKLALVKEKRRTRSTKEFDENAIPIGDTAAHIPVMLAEVLDVFSSSSGRPLRSFVDCTVGAGGHSSAIIQAHPELNFYMGMDVDPIALDKAQDRISDFFSEDSDLKAYIVLKNFKYLKSLLADSDEKPLDPGVDGILMDLGMSSMQVDDPERGFRVLGDGPLDMRMDPQASLKAEDILNNWPEIEVGRILRDYGEESNWYSLQNKIVKARSQGGLHSTTQLLDLIRKSTPGFKGGRQGWIKTATRVFQALRIAVNDELNVLQNSLYTCFDCLAPGGRLAVISFHSLEDRVVKQTFLDIINPKTEGDEVAKIIDEKEEWIKQTVKGSKGRVLTKRPITPSEEEERLNRRSRSAKLRVIQKNIVLC Homology
BLAST of Pay0012897 vs. ExPASy Swiss-Prot
Match: Q6MEG4 (Ribosomal RNA small subunit methyltransferase H OS=Protochlamydia amoebophila (strain UWE25) OX=264201 GN=rsmH PE=3 SV=1) HSP 1 Score: 231.9 bits (590), Expect = 1.4e-59 Identity = 137/331 (41.39%), Postives = 193/331 (58.31%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy Swiss-Prot
Match: Q8GE08 (Ribosomal RNA small subunit methyltransferase H (Fragment) OS=Heliobacillus mobilis OX=28064 GN=rsmH PE=3 SV=1) HSP 1 Score: 228.8 bits (582), Expect = 1.2e-58 Identity = 142/329 (43.16%), Postives = 196/329 (59.57%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy Swiss-Prot
Match: B0TGB2 (Ribosomal RNA small subunit methyltransferase H OS=Heliobacterium modesticaldum (strain ATCC 51547 / Ice1) OX=498761 GN=rsmH PE=3 SV=1) HSP 1 Score: 226.1 bits (575), Expect = 7.8e-58 Identity = 139/329 (42.25%), Postives = 195/329 (59.27%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy Swiss-Prot
Match: C6D563 (Ribosomal RNA small subunit methyltransferase H OS=Paenibacillus sp. (strain JDR-2) OX=324057 GN=rsmH PE=3 SV=1) HSP 1 Score: 223.0 bits (567), Expect = 6.6e-57 Identity = 136/333 (40.84%), Postives = 188/333 (56.46%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy Swiss-Prot
Match: Q65JY8 (Ribosomal RNA small subunit methyltransferase H OS=Bacillus licheniformis (strain ATCC 14580 / DSM 13 / JCM 2505 / NBRC 12200 / NCIMB 9375 / NRRL NRS-1264 / Gibson 46) OX=279010 GN=rsmH PE=3 SV=1) HSP 1 Score: 216.1 bits (549), Expect = 8.1e-55 Identity = 128/329 (38.91%), Postives = 187/329 (56.84%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy TrEMBL
Match: A0A5A7T697 (Ribosomal RNA small subunit methyltransferase H OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G006930 PE=3 SV=1) HSP 1 Score: 862.8 bits (2228), Expect = 6.1e-247 Identity = 443/443 (100.00%), Postives = 443/443 (100.00%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy TrEMBL
Match: A0A1S3CR02 (ribosomal RNA small subunit methyltransferase H OS=Cucumis melo OX=3656 GN=LOC103503773 PE=3 SV=1) HSP 1 Score: 862.8 bits (2228), Expect = 6.1e-247 Identity = 443/443 (100.00%), Postives = 443/443 (100.00%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy TrEMBL
Match: A0A0A0LDT0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G881630 PE=3 SV=1) HSP 1 Score: 815.1 bits (2104), Expect = 1.5e-232 Identity = 424/448 (94.64%), Postives = 431/448 (96.21%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy TrEMBL
Match: A0A6J1FNN0 (uncharacterized protein LOC111445901 OS=Cucurbita moschata OX=3662 GN=LOC111445901 PE=3 SV=1) HSP 1 Score: 704.1 bits (1816), Expect = 3.6e-199 Identity = 373/450 (82.89%), Postives = 400/450 (88.89%), Query Frame = 0
BLAST of Pay0012897 vs. ExPASy TrEMBL
Match: A0A6J1IWR1 (uncharacterized protein LOC111481293 OS=Cucurbita maxima OX=3661 GN=LOC111481293 PE=3 SV=1) HSP 1 Score: 694.5 bits (1791), Expect = 2.9e-196 Identity = 370/450 (82.22%), Postives = 397/450 (88.22%), Query Frame = 0
BLAST of Pay0012897 vs. NCBI nr
Match: XP_008466336.1 (PREDICTED: ribosomal RNA small subunit methyltransferase H [Cucumis melo] >KAA0038770.1 ribosomal RNA small subunit methyltransferase H [Cucumis melo var. makuwa] >TYK31385.1 ribosomal RNA small subunit methyltransferase H [Cucumis melo var. makuwa]) HSP 1 Score: 862.8 bits (2228), Expect = 1.3e-246 Identity = 443/443 (100.00%), Postives = 443/443 (100.00%), Query Frame = 0
BLAST of Pay0012897 vs. NCBI nr
Match: XP_031739414.1 (uncharacterized protein LOC101221749 [Cucumis sativus] >KGN60150.1 hypothetical protein Csa_002039 [Cucumis sativus]) HSP 1 Score: 815.1 bits (2104), Expect = 3.0e-232 Identity = 424/448 (94.64%), Postives = 431/448 (96.21%), Query Frame = 0
BLAST of Pay0012897 vs. NCBI nr
Match: XP_038896155.1 (ribosomal RNA small subunit methyltransferase H [Benincasa hispida]) HSP 1 Score: 754.2 bits (1946), Expect = 6.3e-214 Identity = 395/448 (88.17%), Postives = 413/448 (92.19%), Query Frame = 0
BLAST of Pay0012897 vs. NCBI nr
Match: XP_022940206.1 (uncharacterized protein LOC111445901 [Cucurbita moschata] >XP_022940207.1 uncharacterized protein LOC111445901 [Cucurbita moschata] >XP_022940208.1 uncharacterized protein LOC111445901 [Cucurbita moschata]) HSP 1 Score: 704.1 bits (1816), Expect = 7.5e-199 Identity = 373/450 (82.89%), Postives = 400/450 (88.89%), Query Frame = 0
BLAST of Pay0012897 vs. NCBI nr
Match: KAG7037555.1 (rsmH, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 703.0 bits (1813), Expect = 1.7e-198 Identity = 372/450 (82.67%), Postives = 400/450 (88.89%), Query Frame = 0
BLAST of Pay0012897 vs. TAIR 10
Match: AT5G10910.1 (mraW methylase family protein ) HSP 1 Score: 461.8 bits (1187), Expect = 6.0e-130 Identity = 257/416 (61.78%), Postives = 310/416 (74.52%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Payzawat) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
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.
|