PI0010385 (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.ATGAGCGAATTAACAGCCAAGACGGTGTGTGTTACTGGTGGCTCAGGATACATAGCCTCTTGGATTGTTAAATTCCTTCTCCAACGAGGTTACACTGTTAGAGCCAGTGTTCGAGATCCCGGTTCGTATTTTGATTTACTTCAACTCCGCATTGATCATGTTTCTACTTCTTGTTTTCTTAGTTTAAAATGTTTTTTTAGTCAAAACCACCCTTTGAAGAGACAAGACGATTTTTTTTGACTTGTCGGTGTGTGTAGGGTGCTGTGGGTTTTGCGGGATGAGAGAAATGGAAGTGAGTTTACGGGTGTGGAGAGGAATCGTAGCAATCTATGGATCCTTTTTTCGTTTCCCATGTCTCTCTGATCTTTGATTTCGAAGACCTTTTAGAATCATTCCTGAGCCCCATCTTTTTTTTCTCTGGTCTTGGTTTTTGTATGTTCGTATGTTATTTCACTTTTTTTTCCCAATGAAAGTGGTTATTTTCATTAAAAAAAATGAACGTCCAAATTTACACGATTGTAACTACTATATAAGTTTGAGAGTTCAATTTTATCAATTTTTTGGTTCAATATTTTCTTTTATTCAATTTAATGGTCGTAAAGTCTACAAGCTTAGTTTCCTAACTGTGTTTGGATTTTGTTGGTATTAGATGATCCAATAAAAACTGCCCATTTGGTAGCATTGGAGGGAGCTGATGAGAGACTTCATTTGTTTAAAGCAAATTTGCTTGAGGAAGGTTCATTTGATTCTGCCATTGAGGGTTGCCAAGGAGTTTTTCATACTGCTTCTCCCTTCTTTCATTCTGTTTCAGATCCTCAGGTTTAATCATTTCCAATTACTCTAAATTATGGATGGATAGAAATGGTTATAACTTAATAGCTTCTTGTGATTTTAAAAGTTAGAATTTAGACTTTGTGTTTTCTTTTCAGGCTGAACTAATCGAACCAGCATTGAAAGGAACATTAAATGTTCTAAATTCAGTTGCAAAAGCTTCATCAGTGAAGAGGGTTGTGTTAACATCTTCTATGGCTGCTGTTTCTTATAATACAAAGCCTCAAACTCCCGAAACAATTGTTGATGAATCTTGGTTTTCTGATCCTGATATGTGCAAGGACCAAGGGGTATTCATATATATAATTAATTGATCATTCTTAAATGATTTCATTTTTATCTTCAAAATGAGCTTAGTTCAACGATCAAAAGTTTGTTATTATTTAAACAGATTTGGTATTGTCTCTCCAAGACTTTAGCTGAGGAGGCAGCATGGAATTTTGTGAAAGAAAAGGGAATAGATTTGGTTACTATAAACCCTGCCATGGTTATTGGTCCATTATTGCAACCGACCCTAAATACTAGTGCTCAAGCCATTCTCAACTTAATTTCTGGTAAAACCATTTATGATTTTGAGATGGTGAAAATCATTTTTCCTTAAAATGATTGTGTTTGACATGAAGTGAAATTGATTTTAAAAACATATATACATATATAATAGGTAATTACGAAACGGAATGAAATGATGACGGTTATAATATGATGCAGGAGGAGAAACATTTCCAAATTCAGCATTTGGTTGGGTTAATGTGAAAGATGTTGCAAATGCACACATTGAAGCATATGAGATTCCAACAGCCAACGGAAGATATTGTTTGGTTGAGAGAGCTCTTCACTATTCAGAAATAGTTAAAATTTTACATCAACTCTACCCTTCAATTCAACTTCCACAAAAGTAAGTCTTCCTCATCTATCATTTTACCAACAAGATAAAAAGATTATTCTAAATTGCACAAAAAAAATAAAATAAAATAAAATAAAAATACATGTCAATTTATTGTCGAGTTGGTTGAAACTAAAATTTAATCAAGCCGTTATTAACTGTTACGAGTTGTTGGAATTATTTCACTTATGAACTCAAGCACACATAGAAGTTACGAACATGACTAATCCTATGAGTTGACTTCCATATTTAAATGTAGGGCTGCTGATGAGAAGTTATTTGTATTGGCATATCAAGTCTCAATTGAGAAAGCAAAGAGCTTAGGCATTGATTTCATTCCTCTAGAGGACAGCTTGAAGGAAACAGTTGAGAGTTTGAAAGAAAAGAATTTTATAAGTTTTTAAGCCTGAACAGTCTCTCATGAAAATGCATCACTCGTTACTCTTAATTGTTATAAGCTATTTTTTTCTATGTGTGAAAGGACACTTTTCATTGTGGAAAAAAATGCAAAAGTCTTTAAAGTTTCTTTACCGTAATGTTGTCATAAGTACTCCTTAATTACAAAAGCATTTGAATTTATGATATATGAATTGAAGGTATATGTAAACTAAACCTAATTGAGCTATGTGTTCAGTTCTTCCAAGTTATAAATTGATATTGGAGTATTATGGTTACGGTGTTTTTGTCGATGGATTATAATTGATAGAATGTGTAATTGAAATTCATTAGTATGTAACCACGTGTCTTTACATGTACGGTTAACTATGAGAAAAACCGTAATCTTAAAAAAAAAAAAAATCAATTTTATCAATGGCTAAGTAATGATCTTTTTATAGTTATAGAAAACGAAAAGAAAGTTGTAAAAAGCAAATTGTTTTTCTCTTTGACCAACAACTTCAAAATTGATGAATAAAATACAAGTTGTTTTCTAAGTATAACAAAATAAACAAAAATATTTATAAAATATAACAAAATTTCAGAACCTATTGACAGTATCTATTATTGATATATTATAAAATTTTGTTATATCGGTAAATACTTAATAATTTTACATAAAATAATTGACATAACTTAAAAAAATGAAACCCAAGAATTAAGGAGGGTTAAAAATGTTAAACCCCTATAATTAATAATTTAAAATTACTCCATAGAATCATAAAATCAAAAGTTTGAATTTTTTTTAATAAATGTATTTTTAAAAAAATAATGACAAAAATAAGATAGGCGGGAAAGAAAGGTAAAAAATAGAGTAGTGAAATCGTGTACCGTGTACACAACTACGTTAAATCATGGACTAGGTACACGTCTATGGATTGAAATCGTGAATCTGGTCCACGACGTGTGGCTAGAGTCGTGTACCGGGTACACGACTTCGCTCACATGTATCCGTTCTAGCAGTCAACGCTGCAGTTGACTGCCACACTTGTCCGACATGCTAGAAGTATCGGGTACATGACTTCGTTGCATTATAACCTAGCCGCCGAGCCTTCTGCCTTCCATCTTGCTTTCCTTCCTTCAACCCATCTTGCTTTCTTTCCTTCAATCATCTGCCTTCCTCCACAAAAAATCACCAATCTTTTCATCTTTCACGAAAGATCAACAACCAAGAGCCTCCTTCAGTCCGTCTTCACGGAAAAAGTCTTCCTCCCCTCCCTTTTTGCTCTCCAATTTTGTCGCCACAAGGTATGTTTATTTCCTTGTATGGTTTTATTATTTAACTAAGTCGCAACCTAGGTACATGATTTTGTTGTAAAAATAATTTAATTTAGGTTTGTTATTTGCCTTTAGCAAAAATTATTTGATTTTGTTGTAAAAATAATTGGAATTTAGGGTTGTCATTTGATTTTAGTTATATTATTTTATTTTAGGGGTAAAAATTATTTGATTTTCGGTATGTTATTTGAGGGAAATTATTTGATTTTAGGGAAATTATTTGATTATAGCGAAATAATTTGATTTTAGGGAAATAATTTGATTTTAGGTATGCGATTGTATTGATTAAACATTATAGAGTTTAAATGTAATTTAGACATACGTAGAGTTTGAATTTGGGTATTGAACTATTAGACTTTATTAATTAGAGTGATGTATCTCTAATGGTGGTCCTCATATTTAACAGTTAATTAAATATGTTGATGCAACCTGAAGATCTAATTATTCTTGAACCTGATAATGATGGAGATAGTGCTATAAACGTAAGGTTGATGAATTATTCGGTAATGAAAAAAATATAGATCAAGAAAATGAAATGATACAATCTGAGATATTTGAGATTGAGACATTACGAATTTTGTTTGTGAACAAGGGTCTACATTGGGAGATAGAAATGTATTTGTAGACACATTTGTTTAATTCAAAAGAGAATGTTATTTGACTCTAAGGAAGACCTTCAGTTGGTTGTTAAAAAGTATTGTGTGAAAGAAGTATTGTTAAAAAGTATTAGTCATTACGAACATGACTAACCCTATGAGTTGACTTCCATATTTAAATGCATGGTTGCTGATGAGAAGCTATTTGTATTGGCATATCAAGTCTTAACTGAGAAAACAAAGAACTTAGACATTGATTTCATTCCTCTAGAGGATAGTTTGAAGGAAACAGTTGAGAGTTTGAAAGAAAAGAATTTTATAAGTTTTTAAACCTTAACAGTCTCTCATGAAAATTCATCACTCGTTACTCTTAATTGTCATAAGCTATTTTTTTTATGTGTGAAAGGATTCTTTTCATTGTGGAAAAGAAATGCTTTATGCAAAGTCTTTAAAGTTTCTTTACAGTAATGTTGTTTATGCAAAGTCTTTAAAGTTTCTTTACAGTAATGTTGTCATAAGTACTCCTTAATTACAAGAGCATTTGAATTTCTGATATATGAATTGAAGGTATATGTAAACTGAACCTAATTGAGCTATGTATTCAGTTCTTCCAAGTTATAAATTGATACTAGAGTATTATATTTACGGTGTTTTTGCCAATGCATTATAATTGATAGAATGTAATCAAAATTCATTAGCATGTAACCACATGTTTTTACATATACGATTAACTATGAGAAAAAACCGTAATCTTAAACAAAAAAAAAAAAGAAAATCAATTTTGTCGATGACTAAATAATGATCTTTTTATAGTTATAGAAAAGCAAAAAAAAAAAAAAAAAATTTGTAAAAAGCAAATTGTCTTTTCTCTTTGACCAACAACTCCAAAATTGATGAATAAAATACAAGTTGTTTTCAAATATAACAAAATGAACTAAAATGATTTCAATGATTTCTATGTCTATAAGTGGCATAGATAGAAGGGTAGATATTGATATATTCTAAAATTTTGATATATTAATAAATACTTAATAGTTTTACAATAATTTTACATAAAATAACTTACATAACTTATAAAAAAATGAAACCCAAGAATTAAGGAGGGTTAAAAATGTTAAACCCCTCTAATTAAGAATTTAAAATTACTCCATAGAATTAGGGGTGAGTATGATAGATCGAAAAACCGAGCCGATCGACCAAATCGAAGTCGGTCGGTCAGAGAACAAGAGGAGTCAGTTTAGAAAACTTTCAAATCGAGAATTTAAAAAAAAATTATCAAGGTATAAACTGACCCCATTAAACCGACAAAAACCGATCGACAGACTGACATTTACTCATAGATTTTCGATGTCAATTTGAACATTAACTAAATCGACTATGATCGGTTCGATGGCGGTTTGGTAAAAAAATCGACTCCGACCGATCGATGATCACACCTAGGTAGAATCATGAAATCAAAAGTTTTGTATAATTAATATAGTTTAGGAAATCAATTTGGTTTTGGCCAAAATATTTAAATAGTAAAAGAAATATTTAATTGCCAAGAATTGAGCCCACGTTATCTAATAATTAAATAAAACAAAGGAGACGTAGGGTCACTTTTATCCTTTACATATATCTTTTAAAAAAAAACACAAAAAACTTGTTAGAAAGATTAAGTTGGTATTTAATTTAACATTTTAAATATTTAAATTCAAAGATGAACCATTTTGGAAAAAAGAATTTACGTGTTTAGGGTTTGTTTGGTAGACTATTTGTTTCCTGTTTTTTAAAATTTTTGTATTTGAAATTCGTTTTAAAAAAATACATTTTATGGTTAAAAAACATAAAGAAAAATCAGTTACCAAACCTATATGATTTTTGTTTTTAATAAACAAAATTTAAAAACAAAATTTAAAAAATGAAAAAAAATAATTGAAATGATTACCAAATAGGACACAATCCCGCCTTTGAACAACTTTCATAATTTGTTTTAAACATGTTTTATCAAAAGGGTTTAAATGAAAATGACTTTTTGAAAAATAAACTTCTTTTCTTTCTTTCTAATCAATCCAAATAGACTATAAATTATTTTTTATGATTACTACACTCATGACTCATCGTCGTTCTTAAAAAATCAATAAACTTAAATATAATTAAATATGATCATTTGAGTTATTAGTTTTTTTATCAATCGAAAGTATGAAAATATAAAGATGAAAAATGAAACAACTCCAAGGTCTAAAATGAAATTTTAATTAAGATTAAATTCTATTACAAGTATTCCAACTAATAAATCTACATATAACTCTACCAATAAAAACATGGGTAAATTGCAAAAACCACATTTTGAAAGATGATATTAGTTGAAATTAGACCCACAAACTTTCAATTGTAAAAATTAAACCTACAAACTTATAGTAGAGGTAAAAATTGGACCGCAAATGATAAAAATTGAACCCTTTAACTTGTACAATGGTTACAATTTCTACATTTACGTAACTTTAAGGTACAAATTTTAACACTTAACACAAATTTGAGAAGTTTTTTTACATTTGAAAGTTTGAAGCTATAATTGCATCTTTTACCATACTTTAGAGATAGTTTTTGAGATTTACTATTAATTTATAATATACATGCACGTATTTATTCATACCGTTGTTGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAACAGCAATTATATGGATAGAAATCAAACCTTCAATCACTATAACTTTATTACCAAATCATCAACATCGTTTCTATTGTTTCTCTTCTTTTCTATTTAATATTAATGTCATTTAGAAAAAGGATATAACATTCATATTTTTAGTAATGAATTACCCAAAAAAGTAGTTTTTATTAATATGGTGCTAATTCATTCTCAATTAATTCTGCCCAAAAGAAAAGTCTTCCTCAATTAATAATAACAACATTGTTTGTCCTAACAAAGAAAGAAAAGAATATGGAGTTTATGATTAGCCTCATTTAATATTATTATTTCTATTTTTAGAAAATTGACCATTCCAACCTCATTTGAATTTTAAAGATTAATAAAAGAAGGGTAAAATTTGACAAAATATTTATATTTCATGGCAAAATTATTAATGAAACTAAAAAAATCAATACTAAGTATTTATAAAATAGGTTACTATATGTGTTTGACCGACCGATAGATTAGTTAGTCGTAATGATTGAGATATTTTGTTTGATTTAAAAATAAAAAGTTATATTTGGCAAAATTTTGGGAACCACACAGATAGGGAATTTTGTGATGAAATCAGAAGAAAACTAAAATCCAACGACTCATTCTTGTAAATTTGAAAACAGAGAGAAATTGTGAAACAAAATCAACCAAGGGAGGTCGAAGAAAATGAGCGGCGGAGCAGCGAAGACTGTGTGCGTCACCGGTGGCTCTGGATACATAGCTTCTTGGATTGTTAAATTCCTTCTCCAACGAGGTTACACCGTCAAAGCCAGTGTTCGAAATCCGGGTTTGTCTAATTTTACTTCTTTTAATCAAAATATTACTCTTCCCATATGAATGCTTGTGAATCGACAACCCCGCTTGGCAATATTGAGTTTTATAGCAAAATTTCCTTTGCTTTGGTGATTAGTTTCTTGATCGGTTTCTTTAATTTCTCTTCATTTACTTCCTTTAATCAAAATATTCTTCCCAAATGAATGCATATGAAAATGACAACCCCACTTGGGACTATTTAGTTTTGCAGCAAAATTTCCTTCTCTTTGGTGATTAGTTTCTTGATCGGTTTGTCTTTTTTCCCATAGCTGATCCAATCAAAACTGCCCATTTGCTTTCACTGGATGGAGCTGCTGAGAGACTTCATCTCTTTAAAGCCAATCTCCTAGAAGAAGGTTCCTTTGATTCTGCTATTGAGGGTTGTCAAGGGGTTTTTCATACTGCTTCTCCCTTTTTCCATAATGTTTCAGATCCTCAGGTTCGTTGATGAAGCCTCTTGTGGTGGATTGATCATATATTAAAAAGCAAGAAATCTTGGATGTATTATTCATTATAGTAGCAAGAAAGCTTGATTGCATGTGAGAGTACTAGTAAGGGTTATATTGGGAATACTAGTATGGCATTAGTAAGTGCATAAGGCTAATTAGTTAGGGAGTTAGTTTATGTATATTTGGTAATAAATAAAGGGAGGGCCAGACAATTCTTGAGTGATTTAGTGCTTGGCTGGGGTTATCATTATATTTCAATATATTTCGGATCTTGATTTCTGTTAGTGTTTGGTGGTATAATAACAATGTATTATTCTGTTGCTCTGGTTGATTTCTGGTTCTAGGAGCTATCTTTTTTATGTCTGTGATTATCTAGAACTCTATTTAACTCATTTTTAGTTCATGGGACCACTCGTTTTAGCTTGCTTACAAGTTAAAATTATATCTTAGTTTTGCTGCTCATTAGCTATCATGAGATGTTCCATGATGAAAGTTTCATTTTAGTCTTTTGATAAGATTATTCTTATCAGGCTGAACTTATTGATCCTGCATTGAAAGGGACACTGAACGTTCTAAAGTCAGTTGCAAAATCGTCATCTGTCAAGCGGGTTGTCTTGACATCTTCGATGGCTGCTGTTGCTTATAATGGACAGCCTCGCAATCCTGATACAGTAATGGATGAAACTTGGTTTTCTAACCCTGAGATTTGTAAGGAACTGAAGGTATCCATTTATTTCATTTTAAATGAGATAGGACTGAGCATAGCATACATTAATAGACTTGCTAATAAAATTTGAAAACTGTTGCCTTCTTTGTGCAGTGACCCTCATCTTCTACTGTGAGGTCATTCACAAATCATCTATCGTTTTTAACAATTCGAGCAATGGAAAAATTACATTCAAGTTACCATCAATTTACTGTTTTCTTGTAACTGTCTAAATCGTAAATTAGATAGTAAAGTGTGGAATTTTGAGTGTCTTTTTCGTCTTAGGATTATCTCCTTGATGAATATAAAGAGCCATGGTCATTTTCAGGAAATTTGATGAATGTTATTTTTCACAAACTAATAAAATGGCTTGAATTGAAGACAATGAAACATGAAAAAGTATTCTAAGATTGTTGAATATGCATATTCAAATTTTAGATCATGTACACAGATAATGAGTAGCCCCATAATCGACTTCAAACTACATTATGCATTCTCAATCTCCTAGAGCTTGTTCAGTTATGATATCAAAGAGATAAACTCTATCCTCCATTTCTCTTTGGATTTCAGCTTTGGTATGTGCTCTCCAAAACTTTAGCCGAGGAGGCAGCCTGGAATTTTGTAAGAGAAAAGGGAATAGATATGGTTACAATAAACCCGGCAATGGTTATTGGTCCATTATTGCAGCCAACACTGAATACTAGTGCTGAAGCTATTTTGAACTTAATATCTGGTATTTGTTTAATTATTTTGCAGTATATGCTCGCAACTTGTCATAGAATTTAAACTTAATTCTTCTTGGTGCTTAATGCTTGATATTTAATTTAGAGCAATGGATTGTGCAGGAGCACAAACATTTCCAAATTCCACATTTGGATGGGTTAATGTCAAAGATGTTGCTAATGCACACATTCTAGCTTATGAGGTTCCATCAGCCAATGGAAGATACTGTATGGTTGAAAGTGTTATTCACTACTCAGGAATTGTCAAAATATTGCATGATCTCTACCCTTCATTTCAACTTCCTGACAAGTAAGTCTTACTCAACCATCTTGATCCCCATAAGCATTTTTAAGAAAGCACTGCTTTCTCGACGACGATTTTTTAAAATTATATAAGCTCTCCTTCCATGTCAACGTTTCTTGATCTTATTTAATTTGTAAACTTCATTTCTTTATAGCTTCCTTCGCTTTGGTTTTGATTCCTACCATAGCATTTATTCTTTTCTTTACAGAAAGAATCAATATAACATTATCGGCAGACCCAACAACGTCACAACAGTAGGTTCACAACTAATTTGGTTATTCATACTAGTTAGAGAAGGCATATGGCACTCTTGATTGAATGAAGCATATTATGGAGGGAGGCTTTGAAATTTCATGGATGTTTTAAAAACTGTATGAATGTTGTCAAACCATTTCTTCTTGCATGAAAAAGCATCAAGAATCGCTCTTAGTTGTTTATAAGTCTGTTTTGGATTTTTTTATAAACTTAGGACAGAATGAAACATTTTGGAAATTATAAACCATCTACAAGTATTTTGCACAAACAATTCCACTGGTAACTCCATGATTTCATCTTGAAACTCTATGTATTGATACTTGATGTCAAACTAATGAGTATAATATTTTCAACTGCAGGTGTGCCGATGACAAACCGTTTACACCGGCATATCAGGTCTCAGTTGAGAAAGCAAAGAACTTAGGCATTCAATTCACTCCTTTAGCAGAAGGCCTGAAGGAAACTGTTGAGAGCTTGAAGGAAAAGAATTTTATCAACTTCTGA ATGAGCGAATTAACAGCCAAGACGGTGTGTGTTACTGGTGGCTCAGGATACATAGCCTCTTGGATTGTTAAATTCCTTCTCCAACGAGGTTACACTGTTAGAGCCAGTGTTCGAGATCCCGATGATCCAATAAAAACTGCCCATTTGGTAGCATTGGAGGGAGCTGATGAGAGACTTCATTTGTTTAAAGCAAATTTGCTTGAGGAAGGTTCATTTGATTCTGCCATTGAGGGTTGCCAAGGAGTTTTTCATACTGCTTCTCCCTTCTTTCATTCTGTTTCAGATCCTCAGGCTGAACTAATCGAACCAGCATTGAAAGGAACATTAAATGTTCTAAATTCAGTTGCAAAAGCTTCATCAGTGAAGAGGGTTGTGTTAACATCTTCTATGGCTGCTGTTTCTTATAATACAAAGCCTCAAACTCCCGAAACAATTGTTGATGAATCTTGGTTTTCTGATCCTGATATGTGCAAGGACCAAGGGATTTGGTATTGTCTCTCCAAGACTTTAGCTGAGGAGGCAGCATGGAATTTTGTGAAAGAAAAGGGAATAGATTTGGTTACTATAAACCCTGCCATGGTTATTGGTCCATTATTGCAACCGACCCTAAATACTAGTGCTCAAGCCATTCTCAACTTAATTTCTGGAGGAGAAACATTTCCAAATTCAGCATTTGGTTGGGTTAATGTGAAAGATGTTGCAAATGCACACATTGAAGCATATGAGATTCCAACAGCCAACGGAAGATATTGTTTGGTTGAGAGAGCTCTTCACTATTCAGAAATAGTTAAAATTTTACATCAACTCTACCCTTCAATTCAACTTCCACAAAAGGCTGCTGATGAGAAGTTATTTGTATTGGCATATCAAGTCTCAATTGAGAAAGCAAAGAGCTTAGGCATTGATTTCATTCCTCTAGAGGACAGCTTGAAGGAAACAGGTCACTTTTATCCTTTACATATATCTTTTAAAAAAAAACACAAAAAACTTGTTAGAAAGATTAAGTTGTTTCTTGATCGGTTTGTCTTTTTTCCCATAGCTGATCCAATCAAAACTGCCCATTTGCTTTCACTGGATGGAGCTGCTGAGAGACTTCATCTCTTTAAAGCCAATCTCCTAGAAGAAGGTTCCTTTGATTCTGCTATTGAGGGTTGTCAAGGGGTTTTTCATACTGCTTCTCCCTTTTTCCATAATGTTTCAGATCCTCAGGCTGAACTTATTGATCCTGCATTGAAAGGGACACTGAACGTTCTAAAGTCAGTTGCAAAATCGTCATCTGTCAAGCGGGTTGTCTTGACATCTTCGATGGCTGCTGTTGCTTATAATGGACAGCCTCGCAATCCTGATACAGTAATGGATGAAACTTGGTTTTCTAACCCTGAGATTTGTAAGGAACTGAAGCTTTGGTATGTGCTCTCCAAAACTTTAGCCGAGGAGGCAGCCTGGAATTTTGTAAGAGAAAAGGGAATAGATATGGTTACAATAAACCCGGCAATGGTTATTGGTCCATTATTGCAGCCAACACTGAATACTAGTGCTGAAGCTATTTTGAACTTAATATCTGGAGCACAAACATTTCCAAATTCCACATTTGGATGGGTTAATGTCAAAGATGTTGCTAATGCACACATTCTAGCTTATGAGGTTCCATCAGCCAATGGAAGATACTGTATGGTTGAAAGTGTTATTCACTACTCAGGAATTGTCAAAATATTGCATGATCTCTACCCTTCATTTCAACTTCCTGACAAGTGTGCCGATGACAAACCGTTTACACCGGCATATCAGGTCTCAGTTGAGAAAGCAAAGAACTTAGGCATTCAATTCACTCCTTTAGCAGAAGGCCTGAAGGAAACTGTTGAGAGCTTGAAGGAAAAGAATTTTATCAACTTCTGA ATGAGCGAATTAACAGCCAAGACGGTGTGTGTTACTGGTGGCTCAGGATACATAGCCTCTTGGATTGTTAAATTCCTTCTCCAACGAGGTTACACTGTTAGAGCCAGTGTTCGAGATCCCGATGATCCAATAAAAACTGCCCATTTGGTAGCATTGGAGGGAGCTGATGAGAGACTTCATTTGTTTAAAGCAAATTTGCTTGAGGAAGGTTCATTTGATTCTGCCATTGAGGGTTGCCAAGGAGTTTTTCATACTGCTTCTCCCTTCTTTCATTCTGTTTCAGATCCTCAGGCTGAACTAATCGAACCAGCATTGAAAGGAACATTAAATGTTCTAAATTCAGTTGCAAAAGCTTCATCAGTGAAGAGGGTTGTGTTAACATCTTCTATGGCTGCTGTTTCTTATAATACAAAGCCTCAAACTCCCGAAACAATTGTTGATGAATCTTGGTTTTCTGATCCTGATATGTGCAAGGACCAAGGGATTTGGTATTGTCTCTCCAAGACTTTAGCTGAGGAGGCAGCATGGAATTTTGTGAAAGAAAAGGGAATAGATTTGGTTACTATAAACCCTGCCATGGTTATTGGTCCATTATTGCAACCGACCCTAAATACTAGTGCTCAAGCCATTCTCAACTTAATTTCTGGAGGAGAAACATTTCCAAATTCAGCATTTGGTTGGGTTAATGTGAAAGATGTTGCAAATGCACACATTGAAGCATATGAGATTCCAACAGCCAACGGAAGATATTGTTTGGTTGAGAGAGCTCTTCACTATTCAGAAATAGTTAAAATTTTACATCAACTCTACCCTTCAATTCAACTTCCACAAAAGGCTGCTGATGAGAAGTTATTTGTATTGGCATATCAAGTCTCAATTGAGAAAGCAAAGAGCTTAGGCATTGATTTCATTCCTCTAGAGGACAGCTTGAAGGAAACAGGTCACTTTTATCCTTTACATATATCTTTTAAAAAAAAACACAAAAAACTTGTTAGAAAGATTAAGTTGTTTCTTGATCGGTTTGTCTTTTTTCCCATAGCTGATCCAATCAAAACTGCCCATTTGCTTTCACTGGATGGAGCTGCTGAGAGACTTCATCTCTTTAAAGCCAATCTCCTAGAAGAAGGTTCCTTTGATTCTGCTATTGAGGGTTGTCAAGGGGTTTTTCATACTGCTTCTCCCTTTTTCCATAATGTTTCAGATCCTCAGGCTGAACTTATTGATCCTGCATTGAAAGGGACACTGAACGTTCTAAAGTCAGTTGCAAAATCGTCATCTGTCAAGCGGGTTGTCTTGACATCTTCGATGGCTGCTGTTGCTTATAATGGACAGCCTCGCAATCCTGATACAGTAATGGATGAAACTTGGTTTTCTAACCCTGAGATTTGTAAGGAACTGAAGCTTTGGTATGTGCTCTCCAAAACTTTAGCCGAGGAGGCAGCCTGGAATTTTGTAAGAGAAAAGGGAATAGATATGGTTACAATAAACCCGGCAATGGTTATTGGTCCATTATTGCAGCCAACACTGAATACTAGTGCTGAAGCTATTTTGAACTTAATATCTGGAGCACAAACATTTCCAAATTCCACATTTGGATGGGTTAATGTCAAAGATGTTGCTAATGCACACATTCTAGCTTATGAGGTTCCATCAGCCAATGGAAGATACTGTATGGTTGAAAGTGTTATTCACTACTCAGGAATTGTCAAAATATTGCATGATCTCTACCCTTCATTTCAACTTCCTGACAAGTGTGCCGATGACAAACCGTTTACACCGGCATATCAGGTCTCAGTTGAGAAAGCAAAGAACTTAGGCATTCAATTCACTCCTTTAGCAGAAGGCCTGAAGGAAACTGTTGAGAGCTTGAAGGAAAAGAATTTTATCAACTTCTGA MSELTAKTVCVTGGSGYIASWIVKFLLQRGYTVRASVRDPDDPIKTAHLVALEGADERLHLFKANLLEEGSFDSAIEGCQGVFHTASPFFHSVSDPQAELIEPALKGTLNVLNSVAKASSVKRVVLTSSMAAVSYNTKPQTPETIVDESWFSDPDMCKDQGIWYCLSKTLAEEAAWNFVKEKGIDLVTINPAMVIGPLLQPTLNTSAQAILNLISGGETFPNSAFGWVNVKDVANAHIEAYEIPTANGRYCLVERALHYSEIVKILHQLYPSIQLPQKAADEKLFVLAYQVSIEKAKSLGIDFIPLEDSLKETGHFYPLHISFKKKHKKLVRKIKLFLDRFVFFPIADPIKTAHLLSLDGAAERLHLFKANLLEEGSFDSAIEGCQGVFHTASPFFHNVSDPQAELIDPALKGTLNVLKSVAKSSSVKRVVLTSSMAAVAYNGQPRNPDTVMDETWFSNPEICKELKLWYVLSKTLAEEAAWNFVREKGIDMVTINPAMVIGPLLQPTLNTSAEAILNLISGAQTFPNSTFGWVNVKDVANAHILAYEVPSANGRYCMVESVIHYSGIVKILHDLYPSFQLPDKCADDKPFTPAYQVSVEKAKNLGIQFTPLAEGLKETVESLKEKNFINF Homology
BLAST of PI0010385 vs. ExPASy Swiss-Prot
Match: A0A0B6VQ48 (Phenylacetaldehyde reductase OS=Rosa hybrid cultivar OX=128735 GN=PAR PE=1 SV=1) HSP 1 Score: 488.0 bits (1255), Expect = 1.6e-136 Identity = 225/310 (72.58%), Postives = 280/310 (90.32%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy Swiss-Prot
Match: A0A059TC02 (Cinnamoyl-CoA reductase 1 OS=Petunia hybrida OX=4102 GN=CCR1 PE=1 SV=1) HSP 1 Score: 299.3 bits (765), Expect = 1.0e-79 Identity = 161/315 (51.11%), Postives = 213/315 (67.62%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy Swiss-Prot
Match: Q9S9N9 (Cinnamoyl-CoA reductase 1 OS=Arabidopsis thaliana OX=3702 GN=CCR1 PE=1 SV=1) HSP 1 Score: 291.2 bits (744), Expect = 2.8e-77 Identity = 159/321 (49.53%), Postives = 211/321 (65.73%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy Swiss-Prot
Match: Q9SAH9 (Cinnamoyl-CoA reductase 2 OS=Arabidopsis thaliana OX=3702 GN=CCR2 PE=1 SV=1) HSP 1 Score: 273.5 bits (698), Expect = 6.1e-72 Identity = 150/309 (48.54%), Postives = 202/309 (65.37%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy Swiss-Prot
Match: Q500U8 (Tetraketide alpha-pyrone reductase 1 OS=Arabidopsis thaliana OX=3702 GN=TKPR1 PE=1 SV=1) HSP 1 Score: 267.7 bits (683), Expect = 3.3e-70 Identity = 147/302 (48.68%), Postives = 194/302 (64.24%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy TrEMBL
Match: A0A1S4DXS2 (uncharacterized protein LOC103491499 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103491499 PE=3 SV=1) HSP 1 Score: 1149.0 bits (2971), Expect = 0.0e+00 Identity = 588/654 (89.91%), Postives = 601/654 (91.90%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy TrEMBL
Match: A0A5A7TE41 (Cinnamoyl-CoA reductase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold206G00700 PE=3 SV=1) HSP 1 Score: 1148.3 bits (2969), Expect = 0.0e+00 Identity = 588/654 (89.91%), Postives = 600/654 (91.74%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy TrEMBL
Match: A0A0A0KEL5 (Cinnamoyl-CoA reductase OS=Cucumis sativus OX=3659 GN=Csa_6G439420 PE=3 SV=1) HSP 1 Score: 1042.7 bits (2695), Expect = 6.1e-301 Identity = 525/632 (83.07%), Postives = 563/632 (89.08%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy TrEMBL
Match: A0A7J7FTC4 (Uncharacterized protein OS=Camellia sinensis OX=4442 GN=HYC85_032124 PE=4 SV=1) HSP 1 Score: 898.3 bits (2320), Expect = 1.9e-257 Identity = 445/643 (69.21%), Postives = 517/643 (80.40%), Query Frame = 0
BLAST of PI0010385 vs. ExPASy TrEMBL
Match: A0A5B6ULH9 (Cinnamoyl-CoA reductase 1 OS=Gossypium australe OX=47621 GN=EPI10_013461 PE=4 SV=1) HSP 1 Score: 838.6 bits (2165), Expect = 1.8e-239 Identity = 418/630 (66.35%), Postives = 492/630 (78.10%), Query Frame = 0
BLAST of PI0010385 vs. NCBI nr
Match: XP_016900781.1 (PREDICTED: uncharacterized protein LOC103491499 isoform X2 [Cucumis melo]) HSP 1 Score: 1149.0 bits (2971), Expect = 0.0e+00 Identity = 588/654 (89.91%), Postives = 601/654 (91.90%), Query Frame = 0
BLAST of PI0010385 vs. NCBI nr
Match: KAA0041423.1 (Cinnamoyl-CoA reductase [Cucumis melo var. makuwa]) HSP 1 Score: 1148.3 bits (2969), Expect = 0.0e+00 Identity = 588/654 (89.91%), Postives = 600/654 (91.74%), Query Frame = 0
BLAST of PI0010385 vs. NCBI nr
Match: XP_028758804.1 (uncharacterized protein LOC114717775 isoform X2 [Prosopis alba]) HSP 1 Score: 906.0 bits (2340), Expect = 1.8e-259 Identity = 441/636 (69.34%), Postives = 518/636 (81.45%), Query Frame = 0
BLAST of PI0010385 vs. NCBI nr
Match: KAF5931251.1 (hypothetical protein HYC85_032124 [Camellia sinensis]) HSP 1 Score: 898.3 bits (2320), Expect = 3.8e-257 Identity = 445/643 (69.21%), Postives = 517/643 (80.40%), Query Frame = 0
BLAST of PI0010385 vs. NCBI nr
Match: KAG8488743.1 (hypothetical protein CXB51_016611 [Gossypium anomalum]) HSP 1 Score: 886.7 bits (2290), Expect = 1.2e-253 Identity = 450/681 (66.08%), Postives = 527/681 (77.39%), Query Frame = 0
BLAST of PI0010385 vs. TAIR 10
Match: AT1G51410.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 478.4 bits (1230), Expect = 8.9e-135 Identity = 228/313 (72.84%), Postives = 268/313 (85.62%), Query Frame = 0
BLAST of PI0010385 vs. TAIR 10
Match: AT5G19440.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 478.4 bits (1230), Expect = 8.9e-135 Identity = 228/307 (74.27%), Postives = 268/307 (87.30%), Query Frame = 0
BLAST of PI0010385 vs. TAIR 10
Match: AT1G09510.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 356.3 bits (913), Expect = 5.1e-98 Identity = 176/307 (57.33%), Postives = 227/307 (73.94%), Query Frame = 0
BLAST of PI0010385 vs. TAIR 10
Match: AT1G09490.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 339.0 bits (868), Expect = 8.4e-93 Identity = 166/307 (54.07%), Postives = 219/307 (71.34%), Query Frame = 0
BLAST of PI0010385 vs. TAIR 10
Match: AT1G09480.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 333.6 bits (854), Expect = 3.5e-91 Identity = 165/307 (53.75%), Postives = 219/307 (71.34%), 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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