IVF0001299 (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.ATGGCGACGTTTAATTTCTCTACTGGAGTTCCTCTCTTGAAATCTGATTCTACCAGAGTCGCCGACCGCCTTGCCTCGTGTAGAATTGTTTCTGATGCTTTTGGTCTTGACGTGAAGAGTGGAAAGATGTGTTTGCAATCGAAACAAATCGCTTTGGTTAGATGCTTGAGAATAGTCGAGCAGCGGGAAGTTGCGTCCTATAATGGCTCTGTGGATACTGTGAGTTTGTGTTTTCTTCTTGTTTTTTTTTTTTTTTTTTGTTTTTTTTGTTTTTTTTTTTATGTTTACTTTGGTGCTCGTATTGGCTGCTGATGATGTTTCTCTCTGTCTTGTTCTGGACATAATACTTATGTTGGCTCTTCTACGAGCATAGAGTTTTATGGATATTATGAGAATGTTGTCTTCTTCGATTTTACTTTGTGTAAATTTAATTTGTTATGTTTGGATTGTGCTGGAAAGATTAATGAATATTTGACGCTGGAGTTCAATGCTGATTATTCACTTTTTTCCTTTTTTTCAGTTTAACTAAAACGGAATGTTTTGTTATTTCTTATTGCTATTGTTGATGCATCACGGTCCTAAGAGTGAGATTTTTGTTGGGTTCAGGATCAGGACGTTTCGAACTCTACCTTTGAGCTTCAGTCTAATGCATTCCATTTTAGCAGGACGAAGTTAACGACAAAGTCTAGAAGGAAAACTAAGATAGTATGCACGATTGGCCCTTCGACAAGTTCACGGGAAATGATATGGAAATTGGCAGAGACTGGGATGAATGTGGCGCGTTTAAATATGTCACATGGAGACCATTCTTCCCACCAGAAAACAATTGATTTGGTTAAGGAATATAACGCCCAATTTAATGACAAAGTTATAGCCATTATGCTTGATACGAAGGTATGTTTCTACCCTCTATATGCTTATTGAATGTTGAATTATGACTCGTCCAGAAGGAACCAAAGTTAAAACTTCAGATTGATCTGTAACTCTTAACCAAACGATACTTGAATAAATGATTACGAAATTTTCTAGAACCTATTATTCATAAGTAAGTATGCTTTGATTGGTTAGTGAGATTTTTGAAGCTAATTTCAATTCGATCTTCTATAGAATTGTTCATTACTGTTCAATTTGCCTACTGGTACCCAAAATTTATTCTACTCATGGAAATATGATTTAATGATTGATGCTTTTAATTACTGCACTATTTTTCTATTTGTTTCATTCAGGGTCCCGAGGTTCGAAGTGGAGATGTACCTAAACCAATCTTGCTCAAAGAGGGACAAGAATTTAACTTCACAATCAGAAGAGGAGTCAGCACAGAAGACACTGTTAGTGTCAACTATGACGACTTTGTAAATGATGTAGAAGTTGGAGATACTTTACTTGTTGACGGTGAGTATATTGCTCTTGTTTGTTTCACATTGTACTGCAAATATATGATACAACTTTTCTCAATCAGCGATTTGTTTTATGTAATGATCAGCCAATCGAAGTAAAAGTTTAACTGCCTATAAACACTTTTAATGATTGGGAACTCACTTTAAAATATTATTCTTGTGGCATGTGGGTTGAGAGGAGGCGCTTCAAGATAACCTTACTTCAGTTAGAATTACAAGTCTTATGCTTTTACGATTTTTTGAGTTATGGTGGAAATTCTCTACTATATTTTTGAGACTATAGCCTTCTCCTACTACACATTGACATTCTTTATCGCTTTTAGATGATGAGTTATAGAATCACAGTTGACTATTTTACTGCCTCAAAGAAAAACTTTATCTTCCATACTCTAGGTGGAATGATGTCATTGGCTGTTCAATCAAAGACCGATGATTCGGTTAAGTGTGTAGTCATTGATGGCGGTGAACTCAAATCAAGGCGTCATTTGAATGTTCGTGGAAAAAGTGCAACTTTGCCTTCTATAACAGGTATTTTCGGTATTTAACTTCAGTGTTGCATTATAGAATTTCCGTTAATTATTTTGTTAAAGAGTTATATAATTGCTATGATACAATCACAATGTAAAAGATGAAGTGTTAACTTGGTATGTCGCACGAACAAAAAGAAGTGGCAACATATCAGTATTGAATTGGTGTTATGACAACCTTTATTACTTCTTCAAAAGTCAAAATACAAAGAATTAATAAGTAAAAAAAAAAATACATAGGAAAAATATAAGAGCAACAAGGACAATGCAAAATAGTAAAGAGAGCCTAGGCCTTCAAAAACTATTTGAGACTTCAGCACTGTTTCAAAATTTCACGAGACAAAATATACTTTCTTCCAACTGAAGAAACTTCCAGCAAGGGCAGAACTTGTAACTCAACGATTTAAGAGCGTTGACTACTTCCAGCAGAGGGCAAAACTTGGGGCTTTGGCCGTTTTGGGTGCTCCAGTTTGAAATTTGAAGATTTTCTTATTTTGAATGCTTCTGCCTTTGTTATGATTTAAATGGATAATTGACTTAAAGGACTGAATTGGTATGTCCACAAAACATTTCCAAAATGAAACAAATGCAAGGATAGAGACCCAAATATAAAATATGGGAAAGGATGAGGACCATAACTATAAAATAACTTTGAATTTAGTATCTTCTAAATATATTTATATATAATATCAACTTTTAATCTATTAATCTTTTGTGGTGCAGACAAGGACTGGGAAGATATAAAGTTTGGGGTGGATAATCAGGTTGATTTATGCTGTTTCTTTTGTGAAGGATGCTAGAGTGGTTCATGAGCTGAAAGACTATCTGAAAAGTACATTTTTGTATATATCTATTAGTTGCCCGTTATGTACCTCTTTAGTACATCTATGCTTCCTCTCATTCTGATAGCAAGTATATGTATACTTTTTGTAGGCTGCAATGCAGATATTCATGTGATTGTAAAATTGAAAGTGCAGACTCCATACCTAATCTTCATCGATACTTTCAGCATCAGATGGGGTTAGCTTTTTACACCATTAGAATAGTATTATTCCTTTTTTATCTTTTAGGATAAGACACAATTAGAATGGGAGTGAGATTGGTATTTGCTATATCTGATTGGATGACTCTCGTATTATTTAAAAATAGCCATAGTTTTTGCACCAAAATTCATCCTTTTCTTTTGTTTTCATGAACAACCATAATGATTGGAAGTTTTATTACTTGGACACTGATTAGTAGTTTATAACTTTATAATGTAGAATTGTAACTGTATACTTTTGACCACTATTTCTGTGATGTAGATTTGAATTTATGCATGACAGTTTATGGAATTTGGCTGAATAGTTATATCCTTTACTACATTCTGAAGCAGCATATCTTTAATCATTTCTGCAAATACGTTCTTGGCTCTCTTATTTGTCACATGTAGTCGTTCATGCTCATCATGGTGTTCTGAGTTGCAACTTAATTAGTTTATTTGACTTGTTAGGCAATGGTTGCTCGTGGAGACCTTGGGGCTGAACTTCCAATCGAGGAAGTTCCATTATTGCAGGTAAAAACTCTAACGTTAATAGAACTCTCATCCCATTACTCTTCCATTGCAACATTAGTTCCAGATAAACTTTTTAGTGACTTTATGGCTTGTGTCTTGACGTAGAAAAAACCATAATTGGCATTGATAATAAATTAATAATATTTTACAGAATTTGGTAAAGTATTCTAGTTAAAAGCCAAAGCTAGCTTCCAGACACAACCTCAAGAACTCTTGCGGTATATGTTGCAAGTCTTATTGCTTTCTACCTCATCCCAGAAAAATACCTTTGACTTAATAGTGGAGTGGATAACCCTAGACGCTAATGCGAACTGAATCAACCTAGGAACTTGATCCAACCATTGCAGATAAAAGGACAGTGACACAAAGGTGAGCATTTGGTCTTCTCACAGGAGAGTCTTGCGCATAATATACTAGTTCGGGAAAGTTATCACAGGAAATTTCCATTGAATTAAATTACTAGTGATAAAACGGCCAAAAAATTAACCAAAGAGCGTTCCAAACTAATTTTAATTTATAAAGGTTGTAAAACTTTTACATACGTGCCTGTAATTATGTATCCCTTGCCTTATGTTTGTTTAACCATGAATAAATAGCGGAATCATAGGGAGAAAAGTCCTTGCAAACTTGGGTCTTTTGATGCTAAATTAGAAGCAAATGAATTATCCCCTTTGAACTCGTAATTGTCTTGCTGTCAAGTCAATGGAGAAATCAAGGAGTTGTACAAATCTTATGAACAGAGTTTTGTAAATTGAATTGGTTGGAATTATGGATGAAAATTTTAGTTTTTTCATCGGTTTGAGGCAATTCCAGCCAATAAGAGGAAAAAAACTTGATCATTGAAATACTTTCTAGCAACGTGGTAGTGGTACCTCTTCTCAATTTAGAGATATTGAGCAAGAAATATTGAGCTTCTATTCTTTATATCATAAAGTTCCAGGATTATTTGAATGAAAACTTTGAGCATTAGCTTCTTACATTATTTGAATGAAATTTATGTCACACTCACACACACTCACTTCTGTTAATTATCAAAAGTAAGAGGTTGTGGTGGAAGGATTGTTATGTTAATAGGATAATAGGATTAGTATTCTATCATAGCCATCATATAACAGTAACTTTTCTGTCAGGAGGATATATCAAAAGATGTCGTAGCATGCAGAAAACAGTTATTGTGGCAACAAACATGCTGGAAAGCATGATTGATCATCCCACACCAACTAGAGCTGAGGTTTCTGATATTGCTATTGCCGTACGTGAAGGTGCCGATGCAGTCAGCTTTCAGGAGAAACTGCTCATGGGAAGTACGTTCCTAGCCCATTACCTGGGAGTTTTTTTTTGGTGGGCAATTTGTATACGTTTTGATTTAGGTCAAAATCTTATTTTCCCCTTGGAACCTATTGGTAGGGAGTGAGGCTCTTTGATCTTTCAAGGGCAATCGATATGTAGGTGTTTTTGTTTCATTTCTTGTTTTGTAATTGCAATTATAAATATTGAAATATGCGATGTCCTGTATGGCTGTATGCATAGTGTGTTATGCGCATTCCTCTAGTTTGATTAAAATTGATAAAAAAATTTGTCATTCTTGATGATGTCGTAGCATCATTCCAACTTTTGTGTCTTCTTGTTCTGCATTAAGCTTGAAGTCATTGACTTATTGTTAACATCGAGGAAGTTCAGGCTGTTTTCTGTTTGCTCATGCTATACAAATTACCTCCTTTTATCCCTTTTTGATTTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGATTATTGAAGTGGAGGATACAAGAGAAAGAGTCATAATGACCAAAGATTTTGTTAATATTGATACAATCTAAAAGATTGGGCTTCGTTCACACACTTGTCTTGCAAAGACCATGAAAATAGAGAGATGATATTATTGTGTTATATGGCAAAACCAGAGGAGACAGAAAAACATACATCTTTTCAAAAGAAATGGATCAACTGTCCATATGAATACAAAAATCAACGTTTGGAATTATATTGTAGACCATTTGCTTTACTCAAGCCCATCGATACTAATGAATCTTTGACACACACTTCTGTTCAAGATTTGAAGACCTTTCACATTTCACTGTATATGATAGAGAGAGTCAAGAGATGAAGCCAATGTTTAAGAAGAGAGATTTTCAAAAGTCTGATGTGAACAACTAATGCATTCTATTAACGAATCATTCTCTCCTCTGCTTACGTTTTCTCTTTCTCTGCATTTATTTTAGTCAGTGTCCTCTTGAATTTGGCAAAATTTCTAACAATTTACTGTCTCTACTCTTACCAAGTTTACTATATTTGTAATACTTTGAATCTGATAATTATTTTTGCAACCCTCCGTAATCGGTTAGAATATGATTTTTTTTTCTTTTCCTTATTTGAATAAGATTAATTTAAGAAACTTATCCTACTTAATATGGGTCCATCAATAATTTTCGTGATTAAATTTTCAACTTCTCACATTTTTTTACTTTGTTTCAAAAGCCCTAAAATTTTAAAGTTTTATATTTAATAGGCCTTTAAATTTAGGTCTCTCTATAATACTCAGAGTACACAAAAGTATACATAAACAAATTAAAATCACATTCCAAAGAGAGATATAACCAAAGAATATGCAAAGTATGATCGAAAAAGAAAGGTACAAAAAAGAGTTTATAGTTATTATATCTACGCCTCCGATCGATAACAAGATATCCATCATCCTTAATTTTAATTGTAAAAATTCAAAAGATAAGAGTAAACAACTCTCTTCATTTGCATGTAAACGTAACTTACATATACTGTGTTAATAAACTACATAAATCTTTGTATTGATTACATACTTACACTATTGATGTTTCTTTTCTTTTCTTTTTAAATTAATTAATTTCATTATTAATAAGTAAGACATCGTTTAGGTTTAGATATATTAATAATTTAATCAATATTCAGCTGTTACATGAGGTGGCTTGAATATTCATTTGGAAGGCTATATAAAAGACTTAGTGGGGGAAGGTTCTCATAATTGAGAAAACATCCAAATTAAATAAATCGAAGATGATGGAAATGTTACGTGTTTGTGTGATTATTGGAAGTGTTCGAAGGGTTTACCCTTTTTTGTGAGGAAACTAATGGAATAGGGTATTTGGTTAAGCATGACTAATACCCTTATTTAGTGAACTAAGTAAGATATATTTTTTCTTTAGTAATAAATAACTCTCTTCATTTGCATGTAAACATAACTTACATATGTTAATAAACTATACAAATCTTTGTATAGATCATATGCATCGTTAATGTTTCTTATTTCTTTTTTGGTTGTTGATTGGGCAATTAACAAGTAAGACATCATAGCTAGAAAAATAAAAGTGGATAAGGGTATATATATATATATATCCAATAATATAACAATGAATTGAATATTCTTATCAAAGCTGTTACATGAGTGTTGACTTCAATTGATTTGGGGCTATATAAAAGGACATAGAGGGGTGGAGGGTTCTCATAACATAAAGCAAATTAAATATATATCCAAATAAAGATGATGGAAATGTTAAGTGTTTGTGTGATTGTTGGAAGTGTTTTAGGGGTTTACTTCTTTGTGAGGAAACTAAATGAAATATGGCATTTGGTTAAGTTAGGAAGAAGAGTTTACAAATCACTTCCTCCTGGTGATTTGGGATGGCCATTTATTGGCTCTTCGTTGTCCTTTTACAGAGCGTTTAAAGCTGGTGGTGATCCAGATTCTTTCATTCATCGTCTTATTTCAAGGTATATTTCTTCATCTCTATTTCACTCTCTTGTCTTTAGATTATTCTTCCAATATATATTAACCCAAATATATATTCAAGTATTATTTAATGATGTCGTTATGAGTGTGATGAGAGTGTTACGAGATGTGTCAACTTAACTAAGATATGTTTTGGTACATCTACGGTTTTTCATCTTATATCATTTTGCTTAAAAAAATGGGTATCATGACCTATCCACTTAAGTTTTTAGATTTAACAATGTTATATTAGAGTAAAATGTTTTTGACCGATGACTATCATTTATAATCTGATTATTGTTTTGCTTTATTGACATATTTGAACACGTATTAAGGTTTTAAGAAAGTCGTAAAAAACCAATATCTTTTAAGTGTAAAATCAAAGATCGACGGCTCTAATAATTAACTATTTGTTTAGAAAACCTTAGCCTATAATTGATCATTTAACTCCTATTTTTTATTACTAATGTTTTAAATAATTAAGTAAACGATTTGAAAAATAAAAAAAGTTTTTTTTAAGACCTCATTCTTACAAATAATTTGTGGTTATTTTCTCTATCTAAGCAGGAAAGGAAGAGTTGGAATGTACAAAAGCCACCTCTACGGAAGACCAACGATCATCGTAACAGACCAGAAATATGTAGACGAATATACTTAGACGACGAAAAGTTCAAACCAAATTATCCAAAATCAGTGAAATTATTAAAAGTAAATGGTCTTTTCTCAAGGATGGATCACAAAACGGCCTATAGAATAATGGCGTCTTCCTTGAATGGGTATGAGTATTATCTAAACATGTGAGTTTCATTGATGAAATAATGAGTAAAGGGTTAGAGGAATGGAGCACAATGAAAGAACCCATTGAATTGTTGAGTGAAATTGGAAGTTTACTCTTTAAAGCCATTGTTCGTATCTTTTTAGGGAATGAAATTCCTATCCCTACATTGAATAAGCTTGAAGCGATGTACAAACACTTGGGTCCAGCAATTTTGTCCATTCTTCCTTACGATTTGCCTGTCACTCAAGGTATATGGTATACAATTTAATTCAATATCTGGTATTCTTTTATGTTTATCTCTTTCGTCCTTTTTTGGGCTTGAAAATAGGATAGAATCATGATTGCAGGAATCAGATCGCAAGCATTAGAATATATAAATTATATTGAGATAAAGTTTAAGATGATCTATTGTCATATGAATTTAATTTTTAATCTTTAGTATTATTATTATTATTATTCTTTTAACAAACTTCTTGATTAGAAAGAAATTAGCCTGTTTTATAAGAGTCTCAAGTCCTTGTGATATATGATATCGAATTAAAAACACTTTAGGTTTTCTTGATAATTAACATTATGTTTCTTTTATTCGGTTCAAAGAGATATGTTCTGTGCTTTTTTCATAAATAACAAATCTATGTTATTAGCGTAAATAAAAAGAGTAATTTTATAGTTGATATTTAATTTTAAAAATTTGTTTTGAATCTCTTTATTTATTATTATTATTTTTTTAAAAAAGTTATGATTTGTTTTGACGTAGAATCTTGACGTATTTAATTTAGAATTTCTTAAGAAAATAACACGAAACAATTTTTTAAAAATATATTACCAATCAAATAAGTTTATATTTGTCGGAAGCATAGAGACAAAAATTAGACACAATAAAAATTATAAAGACGAGAATTGAACAAACTTCAAAATATACTTTACGTTAGTTATCGAGACGTATCTTTTTTTTCCAAAAAATATTATCAACTAATAGAGATTTATAAATGACACTCTTAATTAAACTTTAGAAAAGTATAATCAAAATCATAATGCTATATTAAAATTATTATCTCAAATAGCTAGGCAAAAGAAGAAGAAGTAGCTCTATTTTAATATTCTCTTTTCTCTTTTTATCAATTCTTTTTTTAAGTGCATGGAATTGAATGATTTTTACTTGTATACACAAATGGATGTAATAGGATCAAAAGATATAAATTCCAATGTTAATTAATTCACTGTACAGTATGATATTGTTGTTGTTGGTTGACAGGCAAGAAAAGAGATAGGAAATATCTTAGACTGTGTGATAGAGGAAAAAAGAAGAGTTCTAGAAAGGAAGAAAGAAACGAAGGATCAATTAGTGCAATGCCAAATGGACAAACTAATTGTGGCAATCGATGA ATGGCGACGTTTAATTTCTCTACTGGAGTTCCTCTCTTGAAATCTGATTCTACCAGAGTCGCCGACCGCCTTGCCTCGTGTAGAATTGTTTCTGATGCTTTTGGTCTTGACGACGTTTCGAACTCTACCTTTGAGCTTCAGTCTAATGCATTCCATTTTAGCAGGACGAAGTTAACGACAAAGTCTAGAAGGAAAACTAAGATAGTATGCACGATTGGCCCTTCGACAAGTTCACGGGAAATGATATGGAAATTGGCAGAGACTGGGATGAATGTGGCGCGTTTAAATATGTCACATGGAGACCATTCTTCCCACCAGAAAACAATTGATTTGGTTAAGGAATATAACGCCCAATTTAATGACAAAGTTATAGCCATTATGCTTGATACGAAGGGTCCCGAGGTTCGAAGTGGAGATGTACCTAAACCAATCTTGCTCAAAGAGGGACAAGAATTTAACTTCACAATCAGAAGAGGAGTCAGCACAGAAGACACTGTTAGTGTCAACTATGACGACTTTGTAAATGATGTAGAAGTTGGAGATACTTTACTTGTTGACGGTGGAATGATGTCATTGGCTGTTCAATCAAAGACCGATGATTCGGTTAAGTGTGTAGTCATTGATGGCGGTGAACTCAAATCAAGGCGTCATTTGAATGTTCGTGGAAAAAGTGCAACTTTTTTGGGGTGGATAATCAGGTTGATTTATGCTGTTTCTTTTGTGAAGGATGCTAGAGTGGTTCATGAGCTGAAAGACTATCTGAAAAGTACATTTTTATATTCATGTGATTGTAAAATTGAAAGTGCAGACTCCATACCTAATCTTCATCGATACTTTCAGCATCAGATGGGGTTAGCTTTTTACACCATTAGAATAGCAATGGTTGCTCGTGGAGACCTTGGGGCTGAACTTCCAATCGAGGAAGTTCCATTATTGCAGGTAAAAACTCTAACCCATCATATAACAGTAACTTTTCTGTCAGGAGGATATATCAAAAGATGTCGTAGCATGCAGAAAACAGTTATTGTGGCAACAAACATGCTGGAAAGCATGATTGATCATCCCACACCAACTAGAGCTGAGGTTTCTGATATTGCTATTGCCGTACGTGAAGGTGCCGATGCAGTCAGCTTTCAGGAGAAACTGCTCATGGGAAGTACGTTCCTAGCCCATTACCTGGGAAGGAGACAGAAAAACATACATCTTTTCAAAAGAAATGGATCAACTGTCCATATGAATACAAAAATCAACGTTTGGAATTATATTGTAGACCATTTGCTTTACTCAATTTTTTTTAAGACCTCATTCTTACAAATAATTTGTGGTTATTTTCTCTATCTAAGCAGGAAAGGAAGAGTTGGAATGTACAAAAGCCACCTCTACGGAAGACCAACGATCATCGTAACAGACCAGAAATATGAATGGAGCACAATGAAAGAACCCATTGAATTGTTGAGTGAAATTGGAAGTTTACTCTTTAAAGCCATTGTTCGTATCTTTTTAGGGAATGAAATTCCTATCCCTACATTGAATAAGCTTGAAGCGATGTACAAACACTTGGGCAAGAAAAGAGATAGGAAATATCTTAGACTGTGTGATAGAGGAAAAAAGAAGAGTTCTAGAAAGGAAGAAAGAAACGAAGGATCAATTAGTGCAATGCCAAATGGACAAACTAATTGTGGCAATCGATGA ATGGCGACGTTTAATTTCTCTACTGGAGTTCCTCTCTTGAAATCTGATTCTACCAGAGTCGCCGACCGCCTTGCCTCGTGTAGAATTGTTTCTGATGCTTTTGGTCTTGACGACGTTTCGAACTCTACCTTTGAGCTTCAGTCTAATGCATTCCATTTTAGCAGGACGAAGTTAACGACAAAGTCTAGAAGGAAAACTAAGATAGTATGCACGATTGGCCCTTCGACAAGTTCACGGGAAATGATATGGAAATTGGCAGAGACTGGGATGAATGTGGCGCGTTTAAATATGTCACATGGAGACCATTCTTCCCACCAGAAAACAATTGATTTGGTTAAGGAATATAACGCCCAATTTAATGACAAAGTTATAGCCATTATGCTTGATACGAAGGGTCCCGAGGTTCGAAGTGGAGATGTACCTAAACCAATCTTGCTCAAAGAGGGACAAGAATTTAACTTCACAATCAGAAGAGGAGTCAGCACAGAAGACACTGTTAGTGTCAACTATGACGACTTTGTAAATGATGTAGAAGTTGGAGATACTTTACTTGTTGACGGTGGAATGATGTCATTGGCTGTTCAATCAAAGACCGATGATTCGGTTAAGTGTGTAGTCATTGATGGCGGTGAACTCAAATCAAGGCGTCATTTGAATGTTCGTGGAAAAAGTGCAACTTTTTTGGGGTGGATAATCAGGTTGATTTATGCTGTTTCTTTTGTGAAGGATGCTAGAGTGGTTCATGAGCTGAAAGACTATCTGAAAAGTACATTTTTATATTCATGTGATTGTAAAATTGAAAGTGCAGACTCCATACCTAATCTTCATCGATACTTTCAGCATCAGATGGGGTTAGCTTTTTACACCATTAGAATAGCAATGGTTGCTCGTGGAGACCTTGGGGCTGAACTTCCAATCGAGGAAGTTCCATTATTGCAGGTAAAAACTCTAACCCATCATATAACAGTAACTTTTCTGTCAGGAGGATATATCAAAAGATGTCGTAGCATGCAGAAAACAGTTATTGTGGCAACAAACATGCTGGAAAGCATGATTGATCATCCCACACCAACTAGAGCTGAGGTTTCTGATATTGCTATTGCCGTACGTGAAGGTGCCGATGCAGTCAGCTTTCAGGAGAAACTGCTCATGGGAAGTACGTTCCTAGCCCATTACCTGGGAAGGAGACAGAAAAACATACATCTTTTCAAAAGAAATGGATCAACTGTCCATATGAATACAAAAATCAACGTTTGGAATTATATTGTAGACCATTTGCTTTACTCAATTTTTTTTAAGACCTCATTCTTACAAATAATTTGTGGTTATTTTCTCTATCTAAGCAGGAAAGGAAGAGTTGGAATGTACAAAAGCCACCTCTACGGAAGACCAACGATCATCGTAACAGACCAGAAATATGAATGGAGCACAATGAAAGAACCCATTGAATTGTTGAGTGAAATTGGAAGTTTACTCTTTAAAGCCATTGTTCGTATCTTTTTAGGGAATGAAATTCCTATCCCTACATTGAATAAGCTTGAAGCGATGTACAAACACTTGGGCAAGAAAAGAGATAGGAAATATCTTAGACTGTGTGATAGAGGAAAAAAGAAGAGTTCTAGAAAGGAAGAAAGAAACGAAGGATCAATTAGTGCAATGCCAAATGGACAAACTAATTGTGGCAATCGATGA MATFNFSTGVPLLKSDSTRVADRLASCRIVSDAFGLDDVSNSTFELQSNAFHFSRTKLTTKSRRKTKIVCTIGPSTSSREMIWKLAETGMNVARLNMSHGDHSSHQKTIDLVKEYNAQFNDKVIAIMLDTKGPEVRSGDVPKPILLKEGQEFNFTIRRGVSTEDTVSVNYDDFVNDVEVGDTLLVDGGMMSLAVQSKTDDSVKCVVIDGGELKSRRHLNVRGKSATFLGWIIRLIYAVSFVKDARVVHELKDYLKSTFLYSCDCKIESADSIPNLHRYFQHQMGLAFYTIRIAMVARGDLGAELPIEEVPLLQVKTLTHHITVTFLSGGYIKRCRSMQKTVIVATNMLESMIDHPTPTRAEVSDIAIAVREGADAVSFQEKLLMGSTFLAHYLGRRQKNIHLFKRNGSTVHMNTKINVWNYIVDHLLYSIFFKTSFLQIICGYFLYLSRKGRVGMYKSHLYGRPTIIVTDQKYEWSTMKEPIELLSEIGSLLFKAIVRIFLGNEIPIPTLNKLEAMYKHLGKKRDRKYLRLCDRGKKKSSRKEERNEGSISAMPNGQTNCGNR Homology
BLAST of IVF0001299 vs. ExPASy Swiss-Prot
Match: Q40546 (Pyruvate kinase isozyme G, chloroplastic OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 452.6 bits (1163), Expect = 6.5e-126 Identity = 273/450 (60.67%), Postives = 302/450 (67.11%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy Swiss-Prot
Match: Q93Z53 (Plastidial pyruvate kinase 3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PKP3 PE=1 SV=1) HSP 1 Score: 421.8 bits (1083), Expect = 1.2e-116 Identity = 263/457 (57.55%), Postives = 306/457 (66.96%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy Swiss-Prot
Match: Q9FLW9 (Plastidial pyruvate kinase 2 OS=Arabidopsis thaliana OX=3702 GN=PKP2 PE=1 SV=1) HSP 1 Score: 404.8 bits (1039), Expect = 1.6e-111 Identity = 226/328 (68.90%), Postives = 245/328 (74.70%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy Swiss-Prot
Match: P55964 (Pyruvate kinase isozyme G, chloroplastic (Fragment) OS=Ricinus communis OX=3988 PE=2 SV=1) HSP 1 Score: 323.9 bits (829), Expect = 3.5e-87 Identity = 210/372 (56.45%), Postives = 237/372 (63.71%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy Swiss-Prot
Match: Q40545 (Pyruvate kinase isozyme A, chloroplastic OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 214.2 bits (544), Expect = 3.9e-54 Identity = 151/399 (37.84%), Postives = 215/399 (53.88%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy TrEMBL
Match: A0A5D3E4W6 (Pyruvate kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G004170 PE=3 SV=1) HSP 1 Score: 583.2 bits (1502), Expect = 1.2e-162 Identity = 335/437 (76.66%), Postives = 340/437 (77.80%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy TrEMBL
Match: A0A5A7T5H5 (Pyruvate kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold92G00670 PE=3 SV=1) HSP 1 Score: 582.0 bits (1499), Expect = 2.6e-162 Identity = 334/437 (76.43%), Postives = 340/437 (77.80%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy TrEMBL
Match: A0A0A0LHC9 (Pyruvate kinase OS=Cucumis sativus OX=3659 GN=Csa_3G904080 PE=3 SV=1) HSP 1 Score: 558.1 bits (1437), Expect = 4.1e-155 Identity = 326/458 (71.18%), Postives = 336/458 (73.36%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy TrEMBL
Match: A0A6J1DQ72 (Pyruvate kinase OS=Momordica charantia OX=3673 GN=LOC111023306 PE=3 SV=1) HSP 1 Score: 531.6 bits (1368), Expect = 4.1e-147 Identity = 312/453 (68.87%), Postives = 327/453 (72.19%), Query Frame = 0
BLAST of IVF0001299 vs. ExPASy TrEMBL
Match: A0A6J1GMS3 (Pyruvate kinase OS=Cucurbita moschata OX=3662 GN=LOC111455395 PE=3 SV=1) HSP 1 Score: 525.8 bits (1353), Expect = 2.2e-145 Identity = 305/449 (67.93%), Postives = 326/449 (72.61%), Query Frame = 0
BLAST of IVF0001299 vs. NCBI nr
Match: TYK31137.1 (pyruvate kinase isozyme G [Cucumis melo var. makuwa]) HSP 1 Score: 583 bits (1502), Expect = 3.36e-201 Identity = 338/451 (74.94%), Postives = 347/451 (76.94%), Query Frame = 0
BLAST of IVF0001299 vs. NCBI nr
Match: KAA0038540.1 (pyruvate kinase isozyme G [Cucumis melo var. makuwa]) HSP 1 Score: 582 bits (1499), Expect = 9.57e-201 Identity = 337/451 (74.72%), Postives = 347/451 (76.94%), Query Frame = 0
BLAST of IVF0001299 vs. NCBI nr
Match: XP_038877819.1 (pyruvate kinase isozyme G, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 551 bits (1421), Expect = 1.27e-188 Identity = 324/458 (70.74%), Postives = 333/458 (72.71%), Query Frame = 0
BLAST of IVF0001299 vs. NCBI nr
Match: XP_022156410.1 (pyruvate kinase isozyme G, chloroplastic [Momordica charantia]) HSP 1 Score: 531 bits (1367), Expect = 1.81e-180 Identity = 312/457 (68.27%), Postives = 327/457 (71.55%), Query Frame = 0
BLAST of IVF0001299 vs. NCBI nr
Match: KAG6571832.1 (hypothetical protein SDJN03_28560, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 526 bits (1355), Expect = 1.22e-178 Identity = 306/449 (68.15%), Postives = 327/449 (72.83%), Query Frame = 0
BLAST of IVF0001299 vs. TAIR 10
Match: AT1G32440.1 (plastidial pyruvate kinase 3 ) HSP 1 Score: 421.8 bits (1083), Expect = 8.8e-118 Identity = 263/457 (57.55%), Postives = 306/457 (66.96%), Query Frame = 0
BLAST of IVF0001299 vs. TAIR 10
Match: AT5G52920.1 (plastidic pyruvate kinase beta subunit 1 ) HSP 1 Score: 404.8 bits (1039), Expect = 1.1e-112 Identity = 226/328 (68.90%), Postives = 245/328 (74.70%), Query Frame = 0
BLAST of IVF0001299 vs. TAIR 10
Match: AT3G22960.1 (Pyruvate kinase family protein ) HSP 1 Score: 213.0 bits (541), Expect = 6.2e-55 Identity = 152/405 (37.53%), Postives = 214/405 (52.84%), Query Frame = 0
BLAST of IVF0001299 vs. TAIR 10
Match: AT5G08570.1 (Pyruvate kinase family protein ) HSP 1 Score: 173.7 bits (439), Expect = 4.2e-43 Identity = 128/346 (36.99%), Postives = 179/346 (51.73%), Query Frame = 0
BLAST of IVF0001299 vs. TAIR 10
Match: AT3G55650.1 (Pyruvate kinase family protein ) HSP 1 Score: 173.3 bits (438), Expect = 5.4e-43 Identity = 125/348 (35.92%), Postives = 186/348 (53.45%), 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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