IVF0002751 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTGAACAAGTCGCAAGCATTTTCTTGGTCGCGTCTCCTTCTCAACCAGGTCGTTCACCAAAACCTCATCAAAACCCCACTTCATATTTCCCGCAAAATCTCCTGTCTCCAACGCTTACCTATCGATAAAATTTCGAAGATTTCGTTGACGCGGTGTTACTCCACTGCTCATTCTAGAGTTGTGCACGATCTTCTCGCAGAGGTGGAGAAGGAGAAGAAGAGAGAAAGGGAGATGAGGATAAGGGCTGGTCTTGATACCAAGGATATTGACAATGAAGATGAAGAGGATTATATGGGTGTTGGGCCATTGATAGAGAAGCTCGACAAGAAAAATTCAAGGGTCACTGGGGACTTGAACGCTATGAAGAACCCTCTGATTCTGATAGTGATGAAGACGATGAAAGGTTTAGTACTGAATCTGTCAGAAAGAGGTTTCAAAACTTTCAGAGGAAATTCGAGAGGCACAAGGAATTGCTGAAGAACTTCACTGATGCTGGTATGACCAATGATGGAGAGTGCCTTCGTTTCCTACTTGTTTTAATTTCTTAACATTGGAAGTAGTTTTGTTAATGCATATTGGCTCAAATTTTGGAGGACTCCGAATATAGTGGCATCTTTTAACTTCTGTTTTTCTTAATTTTTTTTGTTGTTTTTTTTTCCGTTATTTGATACTTTGTTGCAATGGATTAAGCGAAACATGAACAAATGTATTGAAATGTTGCAAGAGTTCAGCAGTTTTTGATGGGGTTCTTCGATCTTAACATTGGAATATGTTCTCTCTTTCTTTCTATCTTAACCAAAAGAAAATTCATTTGACCATTTTTTTCGTTTGTTCAACATTTTGGACTTGTGTTAAAATATGCCAACATCGCCAACATGTGTTTGACAGATAACATCGATGATGCTTTCAAATGGATGAGTAAAATCGACAGGTTTGAGCAAAAACACTTCCAGCTTCGTCCTGAATATCGGGTAATTGGTGAATTGATGAACCGCTTGAAAGTAGCGGAGGGCAAGGAAAAGTTCATGCTTCAGCAGAAATTAAATAGGGCTATGCGAATTGTGGAGTGGAAGGAAGCTTATGACCCAAATGATCCTGCCAACTATGGAGCCATTCAACGCAGACAAGGAGGTCCATCAGTTAATCTTGAGGAACAATCAGAATTTGCAAAACAGAAGCAAACCATACAGGGGATTGATGATGATGATGAGGAAGAGTTTGATGACATGAAAGAAAGGGATGATATACTACTGGAGAAGCTCAATGCTATAGATAAGAAACTCGAAGAGAAGCTAGCAGAGCTGGATCATACCTTTGGAAAGAAAGGAAAGGTTCTAGAAGAGGAAATCCGAGATCTTGCGGAGGAGAGAAACTCGTTAACTGAGAAGAAGAGAAGGCCACTTTATCGAAAAGTATGTTACTCCTCAGCTTGTTTGTGTGTGCCTTTTACTTTGTCGTCTTCTCTCTTCTTTTGGCAGTTGATAGTTTCCAACTAAGTTTGCAGATTCAATAGGTAATTGTTTTTTCTTGATCATCAAATTTCAATGTCGTGCTCGAGGATTCAAAGGTCTAAGATGAGGCTTTCTCTCTTACTTTTGCTTATTCTTAGGACCTGACAAATTTGTTAGAAATTAGGCATGAGCTTTTCTCTGTTTCCTTAAATCTTTATGTTGTGTGTGTGTGTGTATATATATATATATATATATATTTATGTATTTATGTGTGTATATATGGCTTTTTGCTTAGTTTAAAAGCAAAGTATTTGTAACTATAGCTCTAAAAAGAGCTTCTTTGTTTCTGATTTGCGGCCTATTGCATTTTTTTTGACAATGTTCCTATACCATGTTTTGGAAAAGACAAGGAAAAAAAAGAACCATATGTTTCGGTATCAAATACAATTTAATACTGAAACTGATTGAATGTCTTAAATCACCAATTCAACTCAAAAGCTTAAGTTGATGGGGTGAAAGCAAATTATCTAACAAAATGTAACATTTCATTATTTGTGATTAGATTATTGCTCAACAATTTTATAATTGGGTTCAGGAAAAACACTTTTACAATTGGGTTTATTAACACATATACGAAGTATACTTTTATTGTGATTATTCTTGGAAGTACTATTGATCCAAAAATTTGTAGGTACTTTTATCGCAGACAGGCTGAACAGATGCAATTGTGGTGCATTTTATTGTCTGTAATGTGGGCGGAGTTCACAATTTTAATTGTTATTTTCTTGAAAAGAGCATAAAATATTATGTTACTCGTTTATATATCTTTATACTTCTATAAATTATTATTATAGTTTAGGAAATGTTAATATTTCACTTTGGGCGCTAGTGACGAGTTCTTTTTATATTCATTAGGTCATATTTTCTAGATTAGAGACCCTTCTTCTTGGGTGGTCCTTTTGTGGGCTTGAGTTTTTTGGATGCCTAAGTATTTTTTAGTTCGCCTTTTTGTCAATAAAGAAAAGAGTGTTAATATTTGAACTTTTTAATGGAAAATATTAACTTTAATTGTTACATAATGATGGCAGGGCTTGATGTGAAATTAATTGATGTGAACAGAACTTGTAAAGTTACAAAGGTATGCAAAACCACCCTTCTAAATATCCTATTCAAATAAATAGTTTTTGATGATTGTACACTTTGATCTAGGGAGGAAAAGTTGTCAAATACACTGCTATCTTGGCTTGTGGGAACTACCATGGCATTGTTGGTTATGCAACAGCCAAAGGACCGGCAGTCCCGATTGCTTTACAAAAGGCATGTTGCTTGTACTATTGTAGATTCCTTTTCTTTCTCGTTTGGTTTTATTGAAATTTGAGAATTTCATCAAATGCTTAAAGTTCGAGTTCTTAAATGCCACAGAGTGAATTGATTTTTAAGGTGCTCAATGAGTGTTTTGCTTGAGTTGCTTTGAAAATATTTAGCTATGTTTTATCTGAAATCAAATAGTCAATGGATCGAAGCATCTGGATTGATCTATGTAAATGAGATAGAAATTGAATATGTGGTGATGCAAAAGTGAGAGAAACAAAAATTTATAGAAATATTTTTATACTCTCAATTATTGTTATTATTGTTTTTAAAATGAAACAGAAACTGTTCATTGATATATGAAATGGGTGACAAAAGAAGTTAGTTTGAATAACATTTACAAAAGATTGTGGGGAGGAGAAGGGAGTTTATCAAGGGCCTCGAGGAATGGTAGAGTTCCACTAAAAAATGAATTTGAAGTCTTAATTAGGACTCTAGTTTGAGACAAAGACAAAGGTTAAGTGGGCTTAAGAGGGGGATGAAAGTTCTTTTTTCCATAGTATCACTAGAGGAGGAGAAAAACGAACTTGATTGAGTTCTTGGAGCAGTGGTCGTGGAGGAAAGGGAGATTGAAGAGATTTTTTCATTTCTCTCTTGACTGAGCCCCCTCCTAGTGTGTTCCTAGACCTGTCCACAATGGTTTAGATTGGTGCCCCATCCTAGAAAGGGAGAGAGAAGAGTTGGAAGCTTCTTTCACATTAGAGGAAATTCAAAAGGTGGTATTTGGCTTTAGGAATAAATCACTTGGTCGGGCCACTGACCTCAACTTGGAGATGGGACACAGCTCCATACTTTTGCTCAGTAAGTTGTTATCTTTTACTTCCATACCTAACTCTAATCAATTTTCTCTCTTCCAAAAAGACTTAACAATTGCCATTTAACCAAAGAGTAAACCAAATTCATCACCGGGACTAAATTGACAATCATCACCGACCCAATCTATCTGACCACAAAGATCTCTCCATCAACCCTCTCGACCCTTTTCGTGGCTCCCCTGATACCCTTTTCTGTTCCTCCTCTCACTTGTTATCAGTCTACAAAACACAATGGTATTGATGACCTTAATCATTAATGGAAGAAAAGTGCACAAACCTTGACAATGAACTGATGCAGAAAAGTATCTTTAGACTGTTCTTAGTACCAATGTCATATTCTTTCTTGGCCAATGGAAAACAAATTATGTAAAGGATATTAAGGAATTAGATGGGCTTGTTTCGTCTATATGTTGAGTTTTCTCTAAGACCCAAGGATGGGTTGACCTCCATTGTATGGTCATCATCTCATAGAATTTATGAGGTTAGGGTGCTTGGAAAAAGCATGTACTTGTGAAAAACCTTATTTTAAACCATATCCTTGTTTTGGTTATCTTACAACAAACTAAGCTTCAGTTAGTTGATAGAGTCACCATTAATTCCCTCCAAAGCTGTAGGCGCATTGGTTAGACCACTATTGAAGGGTTGAGTGCCTTGGGAAGTATTGTCATCATTTGAAACGACTCTTCCCACACTTCAAGGGTGGTCATTAAAAGGTGTTATCTCCCTTACCATTTACTTCTCCCTTGCTCCTTTACCTCTTTCTTTTTTTTTTTTTTGGACAGAAAAAACAACTTTCATTGAGAAAAAATGAAAGAATACTAGGGCATACAAAAAATAAAATAAAATAAAAACGAGTCCACCAAAATACCCCGACCAAATCAAAGGGGTCCAACTGAGTAAAATGTTACCAATGAAATAATTCCAAAAGGTCTTCGAAATCGAAGTCCAAAAGAATATATGAAATCTAATAAAAGACCAAACCTCAAATGATCCCTTTCCATACCATGAAACACCTGATCGTACATCTCCCCCAAATGTCCCACAAAATAGCACATGTTCCTGCAAGCCATTAAAAACTCCCCATCTCTCTGAAGGGTGGATGGAAGAGAAACTCCTTGATTGTTGTACGAACACCTTGATGGCCAGCATGGCTCGCACTGAACTCCTGCAAAAAAAAAAAAAAAAAAAGCTCCACACATCCCCAACATACTGGCAATCCCAAGAAAAATGATTAAGGTTTTCCTTTGCCTTCTGACAAAGCATACAACAAAAAGGCCCCACAAGCAAAGTCCTCCTAACAAGCCTATGAACAATGTTAACCCGACCTAGCAAAACTTGCCACTTGACTTTCTTAGGATACTTTTGTCAAGATTTCTTTGGCTCACTATTTTATAATTGAAATATTTCATCACGACAAGGATGAAAGAATTCGAGGGCGTACTAAAAACTACGCTAAACCCCTAAAGAAAGGGGTTACAAAAGGGGTTACAACTGCTTTCTTTGACTCAGCTTTTGTAGGGCTCTCCTCTGGTCTCTTTGGAATGAAAAGAACACACTCACCTTTGGGGACAAGGAACATTATTTTGATAGTTTTGTTGAAGATTTCTATTTCTAGAAGAGCATAGCTGACATTTTGGATGCTGAAATCATGGTTGAAATTGAATTTTAGTAGAGATTTTTATGAGAACTTGAAATCATAGAATAGGCCAAGTGTCTTGCATGATCTTGGAACAGGATGTGCAATCATCAATCAAGCCTAAAGCTAGGATAGTGTTAAGCCGCCATTGCTTTTCACATATAATAGAAGAAATAAGGGTAAGTTGGCACGTGAGAAGGAGGACGGAAATAAGGGAGGAGGGGACCATCATGGTGGGCCCAACAGTTAGTTAGTAGTGGGAGTTATAAGCCGTGGTGATAGGAGAGAGAAGGTGTGCAGAATTTTGGTGAAGGAAAGGGGTGCCTCACTCCTTGAGAGTTAGGAGGAGCAGAAGGATCAGGTTCCATTGTTCTTTGTTATTTTGTATTTTCGTTTCTCTTGTTCTTCTTTTCTGTTTTTGTGTTAGTAGATTGTTTTGGTTAGGGAAGGAGTGTTTTCGTAGTGCTTGGATTAAGAACTATATTTGCTTTCTTATATTGTTATTACGTTCGAGATATCAATAAAGTCGAAACACCACACTGGTGTTCTATCAATTTGGTAGAGCAACTGAATCTAGGCAAGCGAGGTGAAGAAAGGAGATGATCGGCTGGATCTTGTTGAGCAAGAAATATTGGAAATGAGAACAGAGATGAAGAAGTTACCTACTATAGAGATTGAATAGACCTTTGGGTTAATTCACATTCAAGAAGAAAATGCAAATGTTGAGATTGAAGCAGTATACCTGATTTCCCTTTTCAAAGTGGAAGGTGGTGATTTTAGTAATTTCCCTTGCTTCTCTCCAATCAAATCAGCAGAAATTTCAAAGGAATTGTTGCCCGTTATTAACGGCTGTGAAGTTGTGTTGGTTTAAGTAAGTCTGTCTCTGTGTAATTCATATGCTCAGAATTTTCACCCATGAAGATCATTTCTTGGAACACAAGAGGCCTAAAAGACCCATCCAAACATTCTGCTCTTAAGAAGTTTATAAAAAATCATCACCCAGACGTGGTACTGATTCAAGAATAAAAAATGAAAATTCTGGAATTAAATTTCATTAAAACAATTTGGAGCTTATGGATATAGGTTGGGAATCACTAGATTCATTTGGCGCATCTAGAGGCATCCTTACTTCAAGGGATAACAGTAAAATCACAGTGATGGAAACCATATGAGGGCGATATTCTCTCTGAAGGAGGATATCCTAGGCGGAAATTGTTTTGGCAGCCAGTTGTAGACAGAGTTTACAAAAAATTGGATAGATGGAAAAGGTTTAATATATCAAGATGTGGAAGACAAATTATTTGATACTCAGTATTGGCCCGCCTCCCAACTTACGACCTATCCATCTTTGTCATTTTAGAAAAGGTAATCTTTGATTTTGAAAAGCTAATTCGAAAATTCTTTTGAGAGGGGAATTCGAGAAGCAAGATCAATCATTTGGCTTCCTGGAAAAAGGTCAAGCCTTCTAAATTAGATGGGGGCTAGGTTTGGGCGGCTTAAAAAATAAAAACAAGGCCTTCCTTGCTAAATGGGGCTGAAGGTTTCTGAAAGAAGATTCCGTGTTGTGGCAACAAGTATTAAAAGTATCCATGGCTGCAAAAAATTTGATTGGCAGACTCTAAACAAATCAGGAAACAGCCTTTGAAGTTTGTGGATCAGTATCTCTAGAGTATGGGAAAAGGTGGTTGAGTTGGCAACTTTCGAAATAGGGAACAGAAGGAGAGTAGCTTTCTGAACACATTCGTGGGTTGGTGATCTCCCTCTTAAATCTCAGTTTCCAAATCTATTCAGATTAGCTCAGCAGCCCAATGATTCAGTTGCTCCCTATGGGGACTATTTCACTAATTCTTGGGCAGATTGCTAAAAGATGAAGAAATCCAAGATTTCCAAAGGCTATTAACACTCAAATCTCTGAAAGATCTAACGGATTTGGATGATAAGCGTAGTTTGGTCATTAGAATACTCGGGCCATTTTTCAGTTAGGTCCCTTTTGAAGCACCTCTCTCCCTCCTCTCCTTTTGGAAAAAGATTGCTTTAAAGCACCTTGGAAAACCAGCAGTCCAAGGAGAATAAATCTCCTGGTTTGGATTATGGCAGTTGGTTCTCTATACTGTTCCGAGACTATGCAAAGGAAGCTTACCAATATGTGTTTGTTGCCATCAGTGTGCCCCCTTATTCATTTTCTGTCCCTTCTCAACAATGCTCAAAACAGCACCAATGTGTTCCAATTATGAGGGGGCCTTATCAAAAAAACCTTTTCTAATTTGGGTTAATTTGACAAAAGCGCTTCTAGCTGAGATTTGGTTTGAACGCAACCAACGCATCTTCCATGACAAAAAAAAAGGGTTTGGGTTGACATCGTAGACACTTCTAAAAAAAACGCTGCAACCTGGTGCTCTTCAAATGCAGAATTTAAAACTTACTCCATACAAGATATTTGCCTCAACTGGACTGCCTTCATCTGAAGAGATTCAATGCAGTTTTCCCCTGATTGCTAGTTCATATTTTGAGATTTTGTAGTTTTGAAGGGCTTTTATATATATTCCTACTGTTGAGTTATTACTTTTCAGCTTTGCTTTTGTCTACAGTAGATAGCTTATATTGTTATTTTGGTCTTTACATGACCTTAGTACTGTTTTTGTATTTAGGGTGTTAAGAGGGTGTCAACCTAGTTAAGATGTCCGGATGCACTTACTGATTCTCTCTCTCTCCCCCCATTTCTAGGCTTCTCTATTATTCTCACTGTATAATTCTCTTGTATTTTGAGTTTATTAATAATAAAGAAGCTTGTCTCCTTCCAAAAAAAAAACCTCCCTCTTGAGTACTCTCACCCAAGTTCTAGATCAATCCACAAAATATTCTCCCCACTCACTTATGTTCCCTTTATTTATAACATGTAGTAACAACCCTTATTCAATGACTACCAGTAACTCCCTATTTATGTAATTACCTTATGCCCATTAACTAACACAAACTTAATATCTAGTACCTAAGGTTATCCCGTCCTTCAAATACACCTTATCCTCAATGTGTGCTTACAAACTTGATCACAAAATCATACACCTTTTTCTTACTTTTAATATAATAAAAACACAAAACCAACATCCTTCTTTTTAGTCTCCAAAATGAATTGGAGTGAAGCCCAATAAGCAATCAAACTACCGCATTTGCTTGAATTTGAATTTGAAGCTTTTCTTCTCTTTGTGTCGATTGCATGTTTATTGGTAGGTTCTTCTCTTTTTTTCTTCATGCTGTCCCATTTGACCACTCGATTGTTTTTTTTCATGTCTCCTTGCGTTGGTATTTTACTCCTTCCCTTCCTCCTCTCACTAAGATTCAACATTTTTAAAGATCGAATATTCTGACCTTCCCCTTCTGGTTGTGTTTTTGACTCCGTGTTTGCGGATTCTTCTTTCTTTTTGTCCCTCTTGCCTTGCCATTTGCTTTTCCCCAACTTTTTCAGAGGGATACTTGGGTATGATTGTCGTCTTCCTGCCACTCTTCGAACTTGACCAGATAGCTTTCGAATCAAGTTTTCTTCTTTGCTTTGATAGCTGCTAATCTTTTCTCTTCTCTTTCCGCCCATCTTTGCTGGTATCCCTGATCCTTTGTCTTATTTCTCTCATTTCTCTTTGTATCTCTAAGAATATGTTAATTCCTTGATCACGATCCATTACTAAAATTGATGTTCCAAGATGAATGGTTCTGATACCAATTTGTTAGGATACTTCGTAACAAGAACAATATTCGAAGTTAATGAAATATAACTATAAAGAAATTCAAGATAACCCTAAGTATAAGGCACTTGGAACCTCCCTCTTGAGTACTCTCTCACCCACGCCCTAGATCATTCCACAAAATAACCTCCCCTCACTCACTTGCCCTCCCTCTATTTATAACAAGTATAACGACCCTTATTCAATGACTATCAGTATCTCCCTATCTATGTGATTACCCTTATGCCCCTTAACTAACACAAACTAAATATCTAATACTTAATCCTTCAGAAATAAATCCGGTTACTTGGAAGGAGCACACTCACAGTTTACAACTACATGTTATCTCTCTATCTAAATCAAACCAGTGCATAGTACTTATAATTTCAGCTTACATTGTTAATGTGTATATGATGCTATTAAGCAGGCGTATGAGAAATGTTTCCAAAATCTTCATTACGTGGAACGGCATGAGGAGCACACAATTGCACATGCAGTACAGACGGCATACAAGAAAACAAAGGTATTCAACCATTTCTAATGTTCTTCTTTCTGCATCAAAAGTTCCCTCGACCTCTAATCATGGATTGAAGGGTCCTGCCCCCTCCAGCACCTGGGAAACACTAGAGTAAAGAGTAAGGACACTAAATCATTTCGCAGTATTTACAATTGGAGGCCTAACAGATAAATACCACACCGGTGGATGCAGCTGATGGGTTGCAACCCAACAATGTATACTGACTGCTGGACGACTCTCTCTTTCTCTAGTTTTAGATGATCCATATGGAGTCCTTCCAACAAAAATTACCTTTTCTTTTATTGCTTATATTTCATTTGATGGAAATTAATGATTCCTTTCTTAAATCTCCTTGTTTTTGTTGTCTGTTAAGGTATATCTTTGGCCAGCATCAACTACCACAGGCATGAAAGCAGGGAAAACTGTTCAAACTGTTTTGAATCTGGCTGGTTTTAAAAACGTCAAATCTAAGGTAATATATTCCTGTCCTCTATTATGGAGGTTAACGTAAATCTAAGGTAATATTTCTTCGTTCCTCTGCTGCCTCTAACTTGAGTTCAAATAACAGGTTGTTGGCTCAAGAAACCCCCTGAACACTATGAGGGCCCTCTTCAAAGCTCTAAATGCAGTAAGTAGCCATTGAATTAAGATTGTTATCTTTGCCTTCCACAAGGGACATTCTAGTTACGTTCTGATCATATGTCGTGTTTCTCCAGATTGAGACTCCGAAGGATATTCAAGAAAAGTTCGGACGGACCGTTGTTGAGAAGTACTTGCTATGA ATGGTGAACAAGTCGCAAGCATTTTCTTGGTCGCGTCTCCTTCTCAACCAGGTCGTTCACCAAAACCTCATCAAAACCCCACTTCATATTTCCCGCAAAATCTCCTGTCTCCAACGCTTACCTATCGATAAAATTTCGAAGATTTCGTTGACGCGGTGTTACTCCACTGCTCATTCTAGAGTTGTGCACGATCTTCTCGCAGAGGTGGAGAAGGAGAAGAAGAGAGAAAGGGAGATGAGGATAAGGGCTGGTCTTGATACCAAGGATATTGACAATGAAGATGAAGAGGATTATATGGGTGGTCACTGGGGACTTGAACGCTATGAAGAACCCTCTGATTCTGATAGTGATGAAGACGATGAAAGGTTTAGTACTGAATCTGTCAGAAAGAGGTTTCAAAACTTTCAGAGGAAATTCGAGAGGCACAAGGAATTGCTGAAGAACTTCACTGATGCTGATAACATCGATGATGCTTTCAAATGGATGAGTAAAATCGACAGGTTTGAGCAAAAACACTTCCAGCTTCGTCCTGAATATCGGGTAATTGGTGAATTGATGAACCGCTTGAAAGTAGCGGAGGGCAAGGAAAAGTTCATGCTTCAGCAGAAATTAAATAGGGCTATGCGAATTGTGGAGTGGAAGGAAGCTTATGACCCAAATGATCCTGCCAACTATGGAGCCATTCAACGCAGACAAGGAGGTCCATCAGTTAATCTTGAGGAACAATCAGAATTTGCAAAACAGAAGCAAACCATACAGGGGATTGATGATGATGATGAGGAAGAGTTTGATGACATGAAAGAAAGGGATGATATACTACTGGAGAAGCTCAATGCTATAGATAAGAAACTCGAAGAGAAGCTAGCAGAGCTGGATCATACCTTTGGAAAGAAAGGAAAGGTTCTAGAAGAGGAAATCCGAGATCTTGCGGAGGAGAGAAACTCGTTAACTGAGAAGAAGAGAAGGCCACTTTATCGAAAAGTATGGCTTGATGTGAAATTAATTGATGTGAACAGAACTTGTAAAGTTACAAAGGGAGGAAAAGTTGTCAAATACACTGCTATCTTGGCTTGTGGGAACTACCATGGCATTGTTGGTTATGCAACAGCCAAAGGACCGGCAGTCCCGATTGCTTTACAAAAGGCGTATGAGAAATGTTTCCAAAATCTTCATTACGTGGAACGGCATGAGGAGCACACAATTGCACATGCAGTACAGACGGCATACAAGAAAACAAAGGTATATCTTTGGCCAGCATCAACTACCACAGGCATGAAAGCAGGGAAAACTGTTCAAACTGTTTTGAATCTGGCTGGTTTTAAAAACGTCAAATCTAAGGTTGTTGGCTCAAGAAACCCCCTGAACACTATGAGGGCCCTCTTCAAAGCTCTAAATGCAATTGAGACTCCGAAGGATATTCAAGAAAAGTTCGGACGGACCGTTGTTGAGAAGTACTTGCTATGA ATGGTGAACAAGTCGCAAGCATTTTCTTGGTCGCGTCTCCTTCTCAACCAGGTCGTTCACCAAAACCTCATCAAAACCCCACTTCATATTTCCCGCAAAATCTCCTGTCTCCAACGCTTACCTATCGATAAAATTTCGAAGATTTCGTTGACGCGGTGTTACTCCACTGCTCATTCTAGAGTTGTGCACGATCTTCTCGCAGAGGTGGAGAAGGAGAAGAAGAGAGAAAGGGAGATGAGGATAAGGGCTGGTCTTGATACCAAGGATATTGACAATGAAGATGAAGAGGATTATATGGGTGGTCACTGGGGACTTGAACGCTATGAAGAACCCTCTGATTCTGATAGTGATGAAGACGATGAAAGGTTTAGTACTGAATCTGTCAGAAAGAGGTTTCAAAACTTTCAGAGGAAATTCGAGAGGCACAAGGAATTGCTGAAGAACTTCACTGATGCTGATAACATCGATGATGCTTTCAAATGGATGAGTAAAATCGACAGGTTTGAGCAAAAACACTTCCAGCTTCGTCCTGAATATCGGGTAATTGGTGAATTGATGAACCGCTTGAAAGTAGCGGAGGGCAAGGAAAAGTTCATGCTTCAGCAGAAATTAAATAGGGCTATGCGAATTGTGGAGTGGAAGGAAGCTTATGACCCAAATGATCCTGCCAACTATGGAGCCATTCAACGCAGACAAGGAGGTCCATCAGTTAATCTTGAGGAACAATCAGAATTTGCAAAACAGAAGCAAACCATACAGGGGATTGATGATGATGATGAGGAAGAGTTTGATGACATGAAAGAAAGGGATGATATACTACTGGAGAAGCTCAATGCTATAGATAAGAAACTCGAAGAGAAGCTAGCAGAGCTGGATCATACCTTTGGAAAGAAAGGAAAGGTTCTAGAAGAGGAAATCCGAGATCTTGCGGAGGAGAGAAACTCGTTAACTGAGAAGAAGAGAAGGCCACTTTATCGAAAAGTATGGCTTGATGTGAAATTAATTGATGTGAACAGAACTTGTAAAGTTACAAAGGGAGGAAAAGTTGTCAAATACACTGCTATCTTGGCTTGTGGGAACTACCATGGCATTGTTGGTTATGCAACAGCCAAAGGACCGGCAGTCCCGATTGCTTTACAAAAGGCGTATGAGAAATGTTTCCAAAATCTTCATTACGTGGAACGGCATGAGGAGCACACAATTGCACATGCAGTACAGACGGCATACAAGAAAACAAAGGTATATCTTTGGCCAGCATCAACTACCACAGGCATGAAAGCAGGGAAAACTGTTCAAACTGTTTTGAATCTGGCTGGTTTTAAAAACGTCAAATCTAAGGTTGTTGGCTCAAGAAACCCCCTGAACACTATGAGGGCCCTCTTCAAAGCTCTAAATGCAATTGAGACTCCGAAGGATATTCAAGAAAAGTTCGGACGGACCGTTGTTGAGAAGTACTTGCTATGA MVNKSQAFSWSRLLLNQVVHQNLIKTPLHISRKISCLQRLPIDKISKISLTRCYSTAHSRVVHDLLAEVEKEKKREREMRIRAGLDTKDIDNEDEEDYMGGHWGLERYEEPSDSDSDEDDERFSTESVRKRFQNFQRKFERHKELLKNFTDADNIDDAFKWMSKIDRFEQKHFQLRPEYRVIGELMNRLKVAEGKEKFMLQQKLNRAMRIVEWKEAYDPNDPANYGAIQRRQGGPSVNLEEQSEFAKQKQTIQGIDDDDEEEFDDMKERDDILLEKLNAIDKKLEEKLAELDHTFGKKGKVLEEEIRDLAEERNSLTEKKRRPLYRKVWLDVKLIDVNRTCKVTKGGKVVKYTAILACGNYHGIVGYATAKGPAVPIALQKAYEKCFQNLHYVERHEEHTIAHAVQTAYKKTKVYLWPASTTTGMKAGKTVQTVLNLAGFKNVKSKVVGSRNPLNTMRALFKALNAIETPKDIQEKFGRTVVEKYLL Homology
BLAST of IVF0002751 vs. ExPASy Swiss-Prot
Match: Q493J1 (30S ribosomal protein S5 OS=Blochmannia pennsylvanicus (strain BPEN) OX=291272 GN=rpsE PE=3 SV=1) HSP 1 Score: 116.3 bits (290), Expect = 9.6e-25 Identity = 61/154 (39.61%), Postives = 96/154 (62.34%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy Swiss-Prot
Match: Q1LTC1 (30S ribosomal protein S5 OS=Baumannia cicadellinicola subsp. Homalodisca coagulata OX=374463 GN=rpsE PE=3 SV=1) HSP 1 Score: 114.0 bits (284), Expect = 4.8e-24 Identity = 58/154 (37.66%), Postives = 94/154 (61.04%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy Swiss-Prot
Match: Q65QX2 (30S ribosomal protein S5 OS=Mannheimia succiniciproducens (strain MBEL55E) OX=221988 GN=rpsE PE=3 SV=1) HSP 1 Score: 114.0 bits (284), Expect = 4.8e-24 Identity = 64/154 (41.56%), Postives = 95/154 (61.69%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy Swiss-Prot
Match: Q1IFU9 (30S ribosomal protein S5 OS=Pseudomonas entomophila (strain L48) OX=384676 GN=rpsE PE=3 SV=1) HSP 1 Score: 114.0 bits (284), Expect = 4.8e-24 Identity = 62/151 (41.06%), Postives = 93/151 (61.59%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy Swiss-Prot
Match: B4RT45 (30S ribosomal protein S5 OS=Alteromonas mediterranea (strain DSM 17117 / CIP 110805 / LMG 28347 / Deep ecotype) OX=1774373 GN=rpsE PE=3 SV=1) HSP 1 Score: 113.6 bits (283), Expect = 6.2e-24 Identity = 63/151 (41.72%), Postives = 92/151 (60.93%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy TrEMBL
Match: A0A5D3BRU3 (Putative 37S ribosomal protein S5 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold602G001480 PE=3 SV=1) HSP 1 Score: 908.7 bits (2347), Expect = 1.1e-260 Identity = 478/501 (95.41%), Postives = 480/501 (95.81%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy TrEMBL
Match: A0A1S3CJC3 (probable 37S ribosomal protein S5, mitochondrial OS=Cucumis melo OX=3656 GN=LOC103501082 PE=3 SV=1) HSP 1 Score: 908.7 bits (2347), Expect = 1.1e-260 Identity = 478/501 (95.41%), Postives = 480/501 (95.81%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy TrEMBL
Match: A0A5A7VKZ9 (Putative 37S ribosomal protein S5 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold21G003700 PE=3 SV=1) HSP 1 Score: 899.4 bits (2323), Expect = 6.5e-258 Identity = 478/514 (93.00%), Postives = 480/514 (93.39%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy TrEMBL
Match: A0A6J1FXC7 (DEAD-box ATP-dependent RNA helicase 42 OS=Cucurbita moschata OX=3662 GN=LOC111448419 PE=3 SV=1) HSP 1 Score: 800.8 bits (2067), Expect = 3.1e-228 Identity = 419/501 (83.63%), Postives = 449/501 (89.62%), Query Frame = 0
BLAST of IVF0002751 vs. ExPASy TrEMBL
Match: A0A6J1KZ96 (uncharacterized protein LOC111499608 OS=Cucurbita maxima OX=3661 GN=LOC111499608 PE=3 SV=1) HSP 1 Score: 792.0 bits (2044), Expect = 1.5e-225 Identity = 412/501 (82.24%), Postives = 445/501 (88.82%), Query Frame = 0
BLAST of IVF0002751 vs. NCBI nr
Match: XP_008462792.1 (PREDICTED: probable 37S ribosomal protein S5, mitochondrial [Cucumis melo] >TYK00966.1 putative 37S ribosomal protein S5 [Cucumis melo var. makuwa]) HSP 1 Score: 907 bits (2345), Expect = 0.0 Identity = 478/501 (95.41%), Postives = 481/501 (96.01%), Query Frame = 0
BLAST of IVF0002751 vs. NCBI nr
Match: KAA0066311.1 (putative 37S ribosomal protein S5 [Cucumis melo var. makuwa]) HSP 1 Score: 898 bits (2321), Expect = 0.0 Identity = 478/514 (93.00%), Postives = 481/514 (93.58%), Query Frame = 0
BLAST of IVF0002751 vs. NCBI nr
Match: XP_004151847.1 (probable 37S ribosomal protein S5, mitochondrial [Cucumis sativus] >KAE8652337.1 hypothetical protein Csa_022447 [Cucumis sativus]) HSP 1 Score: 887 bits (2291), Expect = 0.0 Identity = 466/501 (93.01%), Postives = 476/501 (95.01%), Query Frame = 0
BLAST of IVF0002751 vs. NCBI nr
Match: XP_038902106.1 (uncharacterized protein LOC120088744 [Benincasa hispida] >XP_038902107.1 uncharacterized protein LOC120088744 [Benincasa hispida] >XP_038902108.1 uncharacterized protein LOC120088744 [Benincasa hispida]) HSP 1 Score: 811 bits (2095), Expect = 2.18e-293 Identity = 427/501 (85.23%), Postives = 451/501 (90.02%), Query Frame = 0
BLAST of IVF0002751 vs. NCBI nr
Match: KAG6571211.1 (hypothetical protein SDJN03_30126, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 805 bits (2080), Expect = 4.18e-291 Identity = 422/501 (84.23%), Postives = 451/501 (90.02%), Query Frame = 0
BLAST of IVF0002751 vs. TAIR 10
Match: AT1G64880.1 (Ribosomal protein S5 family protein ) HSP 1 Score: 566.6 bits (1459), Expect = 1.9e-161 Identity = 301/444 (67.79%), Postives = 355/444 (79.95%), Query Frame = 0
BLAST of IVF0002751 vs. TAIR 10
Match: AT2G33800.1 (Ribosomal protein S5 family protein ) HSP 1 Score: 79.3 bits (194), Expect = 9.2e-15 Identity = 68/226 (30.09%), Postives = 104/226 (46.02%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) 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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