PI0003836 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATTGAAATCAAATTGCAAAAACCACGTCGAAGACCAGATTTTCTACTCGTTTTCTATTCGTAAAGTTACATCGATCCCATTCTCCATTCTCCCCTTTTGATTTCTGGCTCTCTTTTTTGTTCGTGATTATAGCTTTGCTGAAGGGAACCTCCACCTACAACACCTCCTTGCTGGAATTATGATTCTTCAACACTGAAGGAATCAAAATTATGCTGAAGAGAGGAGGAAATATGAACATCTTTGCTCTCACATTATCTTTTTGCTTCTTCCTTCCCTTTCTCCATGCAAGACCCCAAGAAAATGGCGGATTCTCTCATTCAAAACCCACTAATTGGACTAACAGGAAAATAGTGGACGCCAAAGGAGCACCTCAATCTCTAATTTGGGTGGTTCAGCTCTCTGATCTCCATTTCAGTGTTCACCATCCCGACAGAGCTCTCCAATTCAGGGACTTTGTTGGGCCTGCTCTTGCCATGATCAATCCTTCCCTCGTTCTTATCACCGGTGATCTCACAGGTTCTGCTCTCTCTGTTTTCATTTTATGTATATTCATCTTATTCTATGGTATTTCCGTCTTTTTTTGCTCTTTTTGTTTGACTTTTTGTATATTATTCGTAGTATTATGCCTCCAGAGTCCTAGGCTTGGTGGTTGTTTCTGCTGGTCGTAGTCTTCATAACTTTTCAGCTTGTGGTAAAACTTAATTGTTAATTGCTTTCATCGAAAATTTTTCTTACTATTTCTTCTGGTTTATTTCTCTTTTTTGATGATGGCTAAAGCTAGCATAACAAGAGTTCTGGGACCTTGTGATAGAATGTGTTAGGACTCTTCAACCTGCAACTCAGAAAATCTCAACAAACGCAAAGAACCGAGACGATCTCTGATATATATATAGTATTGAAAGTAAATCCAAGAGTCTCACAAGATAATGTCAACCAAAGAACAAAACAAACGATAAGGAAATAACAATGAAACAGTAAGCAAATGATAAGAATCCTAGCTCCTTTGAGAGGGTTGGTGGCTTCTACTTCCAAAAGCTCACAGCAGCTTTTTTACCAAACAAAACCTACTTTCAGCAATCCCCGAAACATTCCTTAAATACCAACATCACCTGTGGGCCCCTCATCCTCATCCATTTTCTCCCTCCCCAATATCCTTCCAAGAGCTGTCTTTTGTGCAATGCCCATCTTACCCTTGCGTTTATAGGTATGGATAGTCGGGGGTATAACAGAATATTATGAGGGTTGCACAGAATGTCTTTTCATTTTAATCATTTTTGAACGAGCTTAAAGCTCAAGGGAGGGATAGACCATAATGCGAAATACAAACATGGAGATAATGACCTATGCATAACATAATAACAAATGACCAGCTATAAGTGATGCAAATGGTCTAAACGTAAAGAAAAATATTCAACGAAAATTGGTAATAACTGCATCATGGTTTATGATATCTCCTACATCATGTTATCACCAAACATGTTCAATTATACTTGCCAATGAGGATAAATGAGCCTACAATTCCTTTCTTTTCTTTTCTTTTCTTTTACTTTTTATTTCTTGAGTTCATCTTATAGTTCTTAATGGCAAAAATTAGAAGTAGGACCTTGAATTTTTTATTTGCATGATAGGGTAGGTTGAATGCAGATTTTTGAGTAGCACTAGTATAGCTAAGGAATGTGGATTCTAGCTATCCAATTCACACTACTAACCCTATCAAGTGTAGAAACTTGATCTTCCTAATCCTTTAGAAGTCACAAGCAATGTCAAAAAGATGTTACAACCTTTGAGATTTTTCCTATATTTATCAGATGGCAAAAGTAAGGACTTGTTAACAATGATACAAATTGAGGAGGAATGGATCGAATATCAAAATGTAATGGAAGAAGTTATAACAAGAAGTGGACTAGACAAAAGCATCTTCTTTGACCTCAGAGGAAATCACGATAAATTTGGTGTTCCAACTGTTGGTGGTTCGTTTGATTACTTTTCAAACTATAGCATCAGTGGACAGCTGGGAAGAAATGCAAATGTGTTTAGTGTCACAGTTCAGGTTAGTTATTATCTTTGATGAGGTTTGTGGTGAGTACATGTACTTGTATTATCATTGTTCTTTTTTGTTCTTTTTGAAAAGGAAACCAGTCTCTTTATTGATAATAATAAAGCTAAAAGTACAAAAGGAACTTTATACAAGGAGCTAAACAAAAAGAGACCATAGGATTAGCAGGCGCACCCTGACATCTCAACTAGGTTGACACCCCCTTAGCGCCCTCATCATATCCAACAAAAATACAGCCTAAAGAAACAGTATAAGGTCTTTCATGAATACAACAAGCATGTGATGTAAAGCCAAAAAACTAAAACAACATGGAAAAAACAGCAGTAGCACAAAAGAGTAGACAAGAATCTTTTAGTGATGACTGCAAAACATGATTTGTTAAGAAGATGGCTACTAATGCTCTGGAAAAATGAGGGCCTGCCAATTGAGACTGATTTCTTGGATGGAGAATGCTTCAAAGTCTTTGTGTAGTGTACACCAAGCTACAACGTTCCTATTAGCTATCTCAAAGTGGTCTAACCAATACATTTCCTCATTGTGGAAGATTCTTTGGTTTCATTCAAATCAAATTTCTGAGAACACAGCCTTTGATAAGTTTGCGCAAATTAATCTCAGTTTTTTCTTTAAAATGAGCTCCAACAAAACTTGCTGTACATCTAGGCTAAAAGATTCTCCAAAAACCCAAACTACTTCAAAAATTGAGAAGAACTTCCACAACAATTTGCAGAGTAGGAACAAGTAAAAAACAGATCTTCTCCTTCTTGCTTGCACAGTGGGCATCTCGAGGGTGACAAGCAGCTGTTTGATAACTTTCTTTGCATGACTGAAGAGCAGTTCAGGAGTCCAAAAATCATAACCCATATGAGGATGTATTATCATCCTCTCAGGTCTATAGTAAGAATTATGGAATAACTAAGGCAGCCCATCGGAAGATTGAACTAACTCTTTTCCAAGCACATCAAGTATTTTACCTTCCAACAACCTCTATTATCCATCTTTTTATTAGGAAACAACAACCTCTGTTATCCTATGAATCTATCCCAAAAGAATCCTTAAATTTTACTTTGGCATGTTAGAAGACAGTCATGTGTTCATTATGTATTTCAAGTGAACTACCATGTGTACACATAGAATATTTAGGTATATAAGAACTCTTCTATCTGGGTGTCCTTTTAAGTTGAACTTTTTGGGGCTAGAAATGAACACTTTAAAATGCCAGATAATTCCGGACCAGCCACGTTTAAGAAGTAAAAGGTTTACTTATTTTTGGGTGAATTGGGATTTATGCACTTCAAAATTGAAACTTATTCTCATCGTTTGAACTGTAAATTAACGTACTTAACTTACTATAAGTGCAAAATGGCAACACTCATGTAAAATGGCTCTTCCTGGGGTTTATTTATTTACTTTATATATATATATATATATTGCCAAATAATGTAATTTCTGTGTATTTCAAAAAGAGAGAAGAGTTTTTTTAAATAGAAGAACAACCCATTACAAAGAAGGAAAATATAAATTTGGCAAATATAATACCACCAATACAATAAAATATAATACAAGAAAGGAAATAATCAACATATATACATATATTCCTGTGTATTCCTCTAGTTAAAGGATTGCTTCTTATCCAAAGAATAAAGGGTTGTTCATGTTGATACTCTTTATCTTCAAGAATATACCTACAATCAACTGTATTAAACACTGGAACTTCATTGATTTAAAATTTTGTTTTGCTTATCTTGGATCTGAATATAAGTATGAGATTTGATTCGTTGAACTTTTGGAAATAAAAATACCTGTCATTCGCTAATTGTTGCCTAAAGAAGAGCACATATTAATAGAGTATTTTGTTACTTAATTCAGGATGGTCAAGAAAAGTACCTCTTTGTCGGATTTGACAGCACAATGTCTGTTGGTTTGAGAGGGCCATCAAATGTCTTTGGGCATCCAACTGATCAGCTATTAACTGACTTAGATTTAGAACTCTCTCAATGGGATTCGTTGGCAACTGATCCAGTAACTAAGATCTCCTTTGGGCATTTTCCTCTCTCATTCTCAGCTTCCTCCCTCTCAGGAAAGAGCCTGAGAGATATATTTTTGAAACATTCTTTATCAGCTTACTTATGCGGACATCTCCATACAAGGTTTGGCAAAAACTTGAAGAGGCATCATCATTCAAATTCTAATTTTTTGTTACAGAAGTTTTTCCAGTTTAATGTGCACCAAATATTTTCTGGAAGTATCACCAACTGTTCACTTGAAGCTCCACCAGTTCAAGAATTCTGGGAGTGGGAGATGGGTGACTGGAGAAAGAGTAGGGCCATGCGAATTTTGGCCATTGATGGTGGTCATGTGTCATATGTTGACGTTGACTTCAAGACAGAAATTAAGAAAACTATCTTGTTACCAACATTCCCATTAGATTCACGCTTCATGTCAAGATCTTCATCACCTTATGAATATAAATGCCATTTTGTGGCTTCCTCAGCTTATGAAAATATAAGATCACTTGTTTTTTCTATTTCTCCTATTGTATCTGTGGTGGCTAGAATATATGACTCTAATCCTGGAATTCTCAGTTTGATTCTAGAAGCGCCTATGAGTAGAATGCGTGTAGATAATATCTCAAGAGGAGATCTTTACACTGCTCCATGGAATTACAAAGCCTTTGAAGATCCATCTCCTGATAGATATTATTTGCAAATAGAAGCTATTGATATTGCAGGAAGGTCAACTTTATCTGACTTGAGGCCATTTTCTATCAATGGTCTCACTGCAAAGGTGTCCTGGACATGGAATGAGTTCAGGGTTATGGGAGTTCAATGGGCTGCCTTATATTACCCTGTACTCTGGTCGGCTGTGTTTATAATGCTTGCAATGCTAATTCTGCCAAAAGCGATTCTTATTTTTTCAAAGAAGCAACACACTTACAACAATTTCAAGCTGAATAAAAGCTTCCTGAATGGCATGGCATGGGTTATACAGGAGCTTAGCAAGATTCCCATGGTATGGTTCTGCATTGTAGGTTACCTAATCTACCTTATATCATTTCCATGGTTCATTGGGAAAGTCTTCACGGATGGAAAGGACTGGGGATACATGACCTATATGGGATGGGTGGTCAAAACTTCGAATGAAACGGAGAAACATAGATATATTGGTTCTCCAGATATACTGGTGGTGGTTCTTTCCCATCTTCTTTTTGTGGTTTACCCTGCTATTTTCATCATGGTTGTTTTTGCTGTTGAAAGAGGAGTCTATGCGGACCATTTCCTCTCTCTTTTGGCAAAGAAAGAAGATGATTATGACTATAATAATAAGAGGCCTGAATCATTTGACTTGAAAAGCAGTGGAAGGTTTAGTTTTTGGTTTAGATGGAGGTGGATTCGGAAAGTTCTTCTGATCATTTGTGCACTTGTATGTTGGAAGCATTTTTTGGTAAGTCATTATCAAATAATATAATCCTTAATCATTATTATATGTGCAAAAGTTTTAGTTTTTCTTGAAATAAAAAATAAATGACCTATGAGATGCTACATATTTGGATTATTAATATCGATTACATGAATTTCAATTGCTTACTCCATAATTGATCATATATATTCATGGTATGGCTAAAGAGTCTTATATTTATTTCTGGCATGTCTCTTTGGAAGTTATTCACTATAACTGCAAATAGTTTCAGGCTAAAAAGTTGAAACGAAATAGAAATTGAAAGTTCTCTCAAATATTTGTTCTCGTTTGTTGCATATCACTAATACATAGGATTTTTCCGCCTTTAGTCTTTTTCCCCCTCTTTTTGGAAGGAAACAAAACTTTTCATTGATATAATGAAAAGAGACTAATGCTCCAAAATACAGGATACAAGTAAAAATACTAAAAGCAGTACAACTACAACCGATCAATACAATTCGAAATCGAGCAGAAAATATAAAACTCCCCAGTTCAGACAAATATCAGAAAATATAAAACTCCCCAATTCAGACAAATATTTTGAATGAAAATATTCACGAAAAATTATTGAAAGCGGTAAAGAAAAGAGACACCGAATTACGTGGAAACCCGAGTACCGGGAGAAAAACCACGAGTCTAAAATGTTACTCTGATTTTCTAATGAATACAAACATACAGCCGGCTAGAATAAATAGAGAGGAGCAATAATTAAAAAAGGAAAGAGATTTAGGTCAAATCTCTCTCCACGGGCCAAGTCCAAACAAACTAACAAAAATTTAAAAAAGGAACACCAAGAGTAAGCATTAAGTCTTACGCGCACCTCGACTAATTTCACGGGACAACCCGCCTGACCAGGAAATTAGTTATTTGGTAGGTTGCCACTATGAATTGAACCCATGACTTCTTAGTTAGTTATTGAGACTATGTCTCTCTTTCTACCACTAGACCAACCCATGGTGGTTTTATCAAGCAGTTGAAAGGTCAATATTTAAGCAGATATTTTGGTAACAAGCCAACAATATTCAAGCAGATATTGAATATTGTTGGTAACAAGCCAATGGTTATCCAAGTATATTAGGGGAGGATAATGACTAACGTACTTAGTAGAGTACTAGTCTGTTTTAGATGATATGACTTAATAACATTAGTTCCTTCTACAATCTTTGATCCTTCGTTAACTTCTATGTTATTTTTTGGAGAAGCAAAACTTTTCATTGAATAAATGAAAAGAGATTATTGGTCTAAGGATACAAACTTTACAAGGGAGAGACAGTACCGATGGAAATAAAAAAGCAATACAGATAGTAAGTGTATCAAATGATGTAAATCAAACATAAGATTTAGTAAAAATGCACCAAGTTGAAGCTTGAAAGCGTTTGGATTCAAACAAAGCAACTCAAGTAAAGTATTTTTCTACAAATTCTTCTGATCCTTTCCAACTCCAAATCTGATAAGAGAACTTTGACGGCATGAACCCAAATGAATGTGAGTTTTTCCATGCATGAACCAACAAAAAGCTTATAAAACTTCTAGATACGGAGATGACAAAGTGGAACTTGCCAACGAAAATGTAAACTAACTGCAAGAGAGATTCAGGCCTGAAAACAACCAATTCGAAGTTTCTCAAGATGGGACCCCGATGAATAATTCTAAATCACCTCCAAAATACTGTTAAATGTTACAAAATGAAGAAAAGATCTTCAATCCAAGAAATCATTTGTGCAAATCAATAAAATGTGACAAAATGGAAATAAATTTTGAGTGAGTGTAGAACTTTCTTTAATCTTCAATTTGCTTTCCTAATGACCATTTGATTCTATCTGAAATTCGTATCTCTAAAAATCCAAGACAAAAGTCTCCTTGAAGCGATAAGAATGATCATTTTAAGGCCGCTTAACTCTTTCTCTTGCTGCACCACACGAAGGTATTTCAGTTGAAAGGTCAATATTTGAGCAACTGTTTTGACTTGTAGGCCACAAACTATAGGAACTCGTTCCATGGGAAGTACTCAGACCTCTTGTTACATAAAAACAAGAGACTCAATATCAAATTGGAATTAAGTCAAGGGAATTAATGCATAAGTATGACTATCTCGGGAATTTTAACCTAGAAAATATAGCACTTTTATGGTGCTATAACTCTATTGTGATAATAAAGCAGCTGTAAGCATAGCCAATAACCATGTACAACATGATAGAATGAAGTATGTGAAGATTGATAGACACTTTATAAAAGAGAAACTGGACAATGACAGGATTTGTATTCCGTATATTCCATCTTGTCAACAAGTTGTTGATGTTCTCATCAAAAGGTTACTCAGGCCAAGTTTTGACTCGTGTTAGCAAGTTGAGTCTGATTGACGTCTACGCCCCAACTTGAGGGAGAGTGTTGGAAATAAAGGGCTTTGCTGATAGTTTGTAGCCTCGAGGGTATTTTAGTATTTTACTTTACCTTAAGTTTTTTCTTTATAGGCTTCGTTTCAGAGACCTTTTGTTACTTTTCTATAAGAGTTATTTTACATAGTTGAAGTCTCTTTTTGTAGGGGGGGGGTATTTTTTGTGGGTTGAGTTTTTTGTATGCCAGTGTATTCTTTCATATTTTTTCAATGAAAGCGTTGTTTTTATCAAAAAAAAAAAAAAAAGATTGTAAAGTTAGGGATTTGATGCTTTCTCAGTTCAAAGTATAAATAACCAAACAATTGATAGATGACATCAGAATAGCGTCAGAAACAAAAAAAAATGTAAAGTTAGGGATTTGATGCTTTCACAGGTTCAAAGTATAAATAACTAAGTGATAGATAGATGACATCATAATAGCGTCAGGTAATCTCCCACCCTTTGATCCCCTGACATTTTGAAGTTCCCTACTTGTTAGGGAAAAAGAATTCTCCTCCGGCTCCAACTAGCTCTATTTTATATGAATACTTGCTAGCGTAAAAACTGTGGTCACAAAATTAGTGATCTAACTTAAGCTGTTTTGTATGTTTTCTCATCCTGTTTAGTACATACAATTAGTTATAAATGAAACCTTTAGGTGCCATCTTGATTCCAAAATTTTTCCTTGTCGTCAATAATGAATGAAGTCGCTGACTCCCCTTAGAGGAAAAAACAAAACAATGCAATAAACTAATTTTGATTAACGCCATAAAATGAAAGTTGAAGAAAAGTTATGGAGATATTTTCCAAGAAGTCATTTGTATCCAGTATTCACTTTTGATTCCATTACCACCTTAAGGCATTAGATTCAGGACTTGTAATACTGTTACCAATTCATTGTGTTTTTATCACAGAATTGCAGGGCTGTTATGAAGGCTTATGAGATGAATCCTTTTCTCCACTTCCCTGTGTACTGCTTCGTAACACCATTGTTGTTGGGTTATGTTGCTTACCATACCAGAGGCATCCACTGAGCATTGACCGCACTATTTACCCTGGACTTTTAGTCGGCTTCAGGTATTTTCTTCTTGAGCAGCAAGATAAGATAATATACAAAAAAATATGCTTTTTCTGACATGATAGGGAATAACAGATTAGAAAGAACATACTTTTTGCTTGAAGCCCAACCATTAATAATATCTCCATTATGTTGCAGCAAATGGGTCGAAACCGAAAATTACGTCTTTAAAATTTTGCTGTATGTCTCTTGTAATGTAGTGTGCTCCATAAACACATCTCTTGTCTTCTGAATTATTGAGAACTATAGGTTCATTTAGAAGTTAGGCTATTTTTATTTAAGAACAAAATTTTTGGTTGTTTTGTAATGGTGGGGATTACTGTCATTGTATACTATTCTCAATCTGGTGATGTTCGATGGAAAAGACTTCAATTGTTTTGAAAAATTGAGTCATTGAGCCTCTTCCTTTTTTTTTTTTTTTTTGATAAGAAACAAATTTCATTGGTGTATGAAATTTACAAAAGCCCAAGCCAACGAAGTTATATAAGGGATCTCCATTGTGACTAGGATAGTAGGCTTTGTAATTACCCATTTATGTATTGTTTTGTTAGATTGGAGGCCACTTTTTATGTTGCTTTCATTTTTTCTTCTGGCTCTCTTTTTTTTTTTACTCTCTTTTCTTTATGTTTGTGTATTGTTTTATTTTTGTATTTAAAGTTCGATTTACCGTTTAAAGAAAAAAGAGGCAATGAAGCTTCAAGTTGCTAAAAG ATTGAAATCAAATTGCAAAAACCACGTCGAAGACCAGATTTTCTACTCGTTTTCTATTCGTAAAGTTACATCGATCCCATTCTCCATTCTCCCCTTTTGATTTCTGGCTCTCTTTTTTGTTCGTGATTATAGCTTTGCTGAAGGGAACCTCCACCTACAACACCTCCTTGCTGGAATTATGATTCTTCAACACTGAAGGAATCAAAATTATGCTGAAGAGAGGAGGAAATATGAACATCTTTGCTCTCACATTATCTTTTTGCTTCTTCCTTCCCTTTCTCCATGCAAGACCCCAAGAAAATGGCGGATTCTCTCATTCAAAACCCACTAATTGGACTAACAGGAAAATAGTGGACGCCAAAGGAGCACCTCAATCTCTAATTTGGGTGGTTCAGCTCTCTGATCTCCATTTCAGTGTTCACCATCCCGACAGAGCTCTCCAATTCAGGGACTTTGTTGGGCCTGCTCTTGCCATGATCAATCCTTCCCTCGTTCTTATCACCGGTGATCTCACAGATGGCAAAAGTAAGGACTTGTTAACAATGATACAAATTGAGGAGGAATGGATCGAATATCAAAATGTAATGGAAGAAGTTATAACAAGAAGTGGACTAGACAAAAGCATCTTCTTTGACCTCAGAGGAAATCACGATAAATTTGGTGTTCCAACTGTTGGTGGTTCGTTTGATTACTTTTCAAACTATAGCATCAGTGGACAGCTGGGAAGAAATGCAAATGTGTTTAGTGTCACAGTTCAGGATGGTCAAGAAAAGTACCTCTTTGTCGGATTTGACAGCACAATGTCTGTTGGTTTGAGAGGGCCATCAAATGTCTTTGGGCATCCAACTGATCAGCTATTAACTGACTTAGATTTAGAACTCTCTCAATGGGATTCGTTGGCAACTGATCCAGTAACTAAGATCTCCTTTGGGCATTTTCCTCTCTCATTCTCAGCTTCCTCCCTCTCAGGAAAGAGCCTGAGAGATATATTTTTGAAACATTCTTTATCAGCTTACTTATGCGGACATCTCCATACAAGGTTTGGCAAAAACTTGAAGAGGCATCATCATTCAAATTCTAATTTTTTGTTACAGAAGTTTTTCCAGTTTAATGTGCACCAAATATTTTCTGGAAGTATCACCAACTGTTCACTTGAAGCTCCACCAGTTCAAGAATTCTGGGAGTGGGAGATGGGTGACTGGAGAAAGAGTAGGGCCATGCGAATTTTGGCCATTGATGGTGGTCATGTGTCATATGTTGACGTTGACTTCAAGACAGAAATTAAGAAAACTATCTTGTTACCAACATTCCCATTAGATTCACGCTTCATGTCAAGATCTTCATCACCTTATGAATATAAATGCCATTTTGTGGCTTCCTCAGCTTATGAAAATATAAGATCACTTGTTTTTTCTATTTCTCCTATTGTATCTGTGGTGGCTAGAATATATGACTCTAATCCTGGAATTCTCAGTTTGATTCTAGAAGCGCCTATGAGTAGAATGCGTGTAGATAATATCTCAAGAGGAGATCTTTACACTGCTCCATGGAATTACAAAGCCTTTGAAGATCCATCTCCTGATAGATATTATTTGCAAATAGAAGCTATTGATATTGCAGGAAGGTCAACTTTATCTGACTTGAGGCCATTTTCTATCAATGGTCTCACTGCAAAGGTGTCCTGGACATGGAATGAGTTCAGGGTTATGGGAGTTCAATGGGCTGCCTTATATTACCCTGTACTCTGGTCGGCTGTGTTTATAATGCTTGCAATGCTAATTCTGCCAAAAGCGATTCTTATTTTTTCAAAGAAGCAACACACTTACAACAATTTCAAGCTGAATAAAAGCTTCCTGAATGGCATGGCATGGGTTATACAGGAGCTTAGCAAGATTCCCATGGTATGGTTCTGCATTGTAGGTTACCTAATCTACCTTATATCATTTCCATGGTTCATTGGGAAAGTCTTCACGGATGGAAAGGACTGGGGATACATGACCTATATGGGATGGGTGGTCAAAACTTCGAATGAAACGGAGAAACATAGATATATTGGTTCTCCAGATATACTGGTGGTGGTTCTTTCCCATCTTCTTTTTGTGGTTTACCCTGCTATTTTCATCATGGTTGTTTTTGCTGTTGAAAGAGGAGTCTATGCGGACCATTTCCTCTCTCTTTTGGCAAAGAAAGAAGATGATTATGACTATAATAATAAGAGGCCTGAATCATTTGACTTGAAAAGCAGTGGAAGGTTTAGTTTTTGGTTTAGATGGAGGTGGATTCGGAAAGTTCTTCTGATCATTTGTGCACTTGTATGTTGGAAGCATTTTTTGAATTGCAGGGCTGTTATGAAGGCTTATGAGATGAATCCTTTTCTCCACTTCCCTGTGTACTGCTTCGTAACACCATTGTTGTTGGGTTATGTTGCTTACCATACCAGAGGCATCCACTGAGCATTGACCGCACTATTTACCCTGGACTTTTAGTCGGCTTCAGCAAATGGGTCGAAACCGAAAATTACGTCTTTAAAATTTTGCTGTATGTCTCTTGTAATGTAGTGTGCTCCATAAACACATCTCTTGTCTTCTGAATTATTGAGAACTATAGGTTCATTTAGAAGTTAGGCTATTTTTATTTAAGAACAAAATTTTTGGTTGTTTTGTAATGGTGGGGATTACTGTCATTGTATACTATTCTCAATCTGGTGATGTTCGATGGAAAAGACTTCAATTGTTTTGAAAAATTGAGTCATTGAGCCTCTTCCTTTTTTTTTTTTTTTTTGATAAGAAACAAATTTCATTGGTGTATGAAATTTACAAAAGCCCAAGCCAACGAAGTTATATAAGGGATCTCCATTGTGACTAGGATAGTAGGCTTTGTAATTACCCATTTATGTATTGTTTTGTTAGATTGGAGGCCACTTTTTATGTTGCTTTCATTTTTTCTTCTGGCTCTCTTTTTTTTTTTACTCTCTTTTCTTTATGTTTGTGTATTGTTTTATTTTTGTATTTAAAGTTCGATTTACCGTTTAAAGAAAAAAGAGGCAATGAAGCTTCAAGTTGCTAAAAG ATGCTGAAGAGAGGAGGAAATATGAACATCTTTGCTCTCACATTATCTTTTTGCTTCTTCCTTCCCTTTCTCCATGCAAGACCCCAAGAAAATGGCGGATTCTCTCATTCAAAACCCACTAATTGGACTAACAGGAAAATAGTGGACGCCAAAGGAGCACCTCAATCTCTAATTTGGGTGGTTCAGCTCTCTGATCTCCATTTCAGTGTTCACCATCCCGACAGAGCTCTCCAATTCAGGGACTTTGTTGGGCCTGCTCTTGCCATGATCAATCCTTCCCTCGTTCTTATCACCGGTGATCTCACAGATGGCAAAAGTAAGGACTTGTTAACAATGATACAAATTGAGGAGGAATGGATCGAATATCAAAATGTAATGGAAGAAGTTATAACAAGAAGTGGACTAGACAAAAGCATCTTCTTTGACCTCAGAGGAAATCACGATAAATTTGGTGTTCCAACTGTTGGTGGTTCGTTTGATTACTTTTCAAACTATAGCATCAGTGGACAGCTGGGAAGAAATGCAAATGTGTTTAGTGTCACAGTTCAGGATGGTCAAGAAAAGTACCTCTTTGTCGGATTTGACAGCACAATGTCTGTTGGTTTGAGAGGGCCATCAAATGTCTTTGGGCATCCAACTGATCAGCTATTAACTGACTTAGATTTAGAACTCTCTCAATGGGATTCGTTGGCAACTGATCCAGTAACTAAGATCTCCTTTGGGCATTTTCCTCTCTCATTCTCAGCTTCCTCCCTCTCAGGAAAGAGCCTGAGAGATATATTTTTGAAACATTCTTTATCAGCTTACTTATGCGGACATCTCCATACAAGGTTTGGCAAAAACTTGAAGAGGCATCATCATTCAAATTCTAATTTTTTGTTACAGAAGTTTTTCCAGTTTAATGTGCACCAAATATTTTCTGGAAGTATCACCAACTGTTCACTTGAAGCTCCACCAGTTCAAGAATTCTGGGAGTGGGAGATGGGTGACTGGAGAAAGAGTAGGGCCATGCGAATTTTGGCCATTGATGGTGGTCATGTGTCATATGTTGACGTTGACTTCAAGACAGAAATTAAGAAAACTATCTTGTTACCAACATTCCCATTAGATTCACGCTTCATGTCAAGATCTTCATCACCTTATGAATATAAATGCCATTTTGTGGCTTCCTCAGCTTATGAAAATATAAGATCACTTGTTTTTTCTATTTCTCCTATTGTATCTGTGGTGGCTAGAATATATGACTCTAATCCTGGAATTCTCAGTTTGATTCTAGAAGCGCCTATGAGTAGAATGCGTGTAGATAATATCTCAAGAGGAGATCTTTACACTGCTCCATGGAATTACAAAGCCTTTGAAGATCCATCTCCTGATAGATATTATTTGCAAATAGAAGCTATTGATATTGCAGGAAGGTCAACTTTATCTGACTTGAGGCCATTTTCTATCAATGGTCTCACTGCAAAGGTGTCCTGGACATGGAATGAGTTCAGGGTTATGGGAGTTCAATGGGCTGCCTTATATTACCCTGTACTCTGGTCGGCTGTGTTTATAATGCTTGCAATGCTAATTCTGCCAAAAGCGATTCTTATTTTTTCAAAGAAGCAACACACTTACAACAATTTCAAGCTGAATAAAAGCTTCCTGAATGGCATGGCATGGGTTATACAGGAGCTTAGCAAGATTCCCATGGTATGGTTCTGCATTGTAGGTTACCTAATCTACCTTATATCATTTCCATGGTTCATTGGGAAAGTCTTCACGGATGGAAAGGACTGGGGATACATGACCTATATGGGATGGGTGGTCAAAACTTCGAATGAAACGGAGAAACATAGATATATTGGTTCTCCAGATATACTGGTGGTGGTTCTTTCCCATCTTCTTTTTGTGGTTTACCCTGCTATTTTCATCATGGTTGTTTTTGCTGTTGAAAGAGGAGTCTATGCGGACCATTTCCTCTCTCTTTTGGCAAAGAAAGAAGATGATTATGACTATAATAATAAGAGGCCTGAATCATTTGACTTGAAAAGCAGTGGAAGGTTTAGTTTTTGGTTTAGATGGAGGTGGATTCGGAAAGTTCTTCTGATCATTTGTGCACTTGTATGTTGGAAGCATTTTTTGAATTGCAGGGCTGTTATGAAGGCTTATGAGATGAATCCTTTTCTCCACTTCCCTGTGTACTGCTTCGTAACACCATTGTTGTTGGGTTATGTTGCTTACCATACCAGAGGCATCCACTGA MLKRGGNMNIFALTLSFCFFLPFLHARPQENGGFSHSKPTNWTNRKIVDAKGAPQSLIWVVQLSDLHFSVHHPDRALQFRDFVGPALAMINPSLVLITGDLTDGKSKDLLTMIQIEEEWIEYQNVMEEVITRSGLDKSIFFDLRGNHDKFGVPTVGGSFDYFSNYSISGQLGRNANVFSVTVQDGQEKYLFVGFDSTMSVGLRGPSNVFGHPTDQLLTDLDLELSQWDSLATDPVTKISFGHFPLSFSASSLSGKSLRDIFLKHSLSAYLCGHLHTRFGKNLKRHHHSNSNFLLQKFFQFNVHQIFSGSITNCSLEAPPVQEFWEWEMGDWRKSRAMRILAIDGGHVSYVDVDFKTEIKKTILLPTFPLDSRFMSRSSSPYEYKCHFVASSAYENIRSLVFSISPIVSVVARIYDSNPGILSLILEAPMSRMRVDNISRGDLYTAPWNYKAFEDPSPDRYYLQIEAIDIAGRSTLSDLRPFSINGLTAKVSWTWNEFRVMGVQWAALYYPVLWSAVFIMLAMLILPKAILIFSKKQHTYNNFKLNKSFLNGMAWVIQELSKIPMVWFCIVGYLIYLISFPWFIGKVFTDGKDWGYMTYMGWVVKTSNETEKHRYIGSPDILVVVLSHLLFVVYPAIFIMVVFAVERGVYADHFLSLLAKKEDDYDYNNKRPESFDLKSSGRFSFWFRWRWIRKVLLIICALVCWKHFLNCRAVMKAYEMNPFLHFPVYCFVTPLLLGYVAYHTRGIH Homology
BLAST of PI0003836 vs. ExPASy Swiss-Prot
Match: Q0WVZ1 (Putative metallophosphoesterase At3g03305 OS=Arabidopsis thaliana OX=3702 GN=At3g03305 PE=2 SV=1) HSP 1 Score: 842.4 bits (2175), Expect = 3.9e-243 Identity = 408/706 (57.79%), Postives = 530/706 (75.07%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy Swiss-Prot
Match: Q8BXJ9 (Transmembrane protein 62 OS=Mus musculus OX=10090 GN=Tmem62 PE=2 SV=1) HSP 1 Score: 154.5 bits (389), Expect = 4.9e-36 Identity = 148/537 (27.56%), Postives = 237/537 (44.13%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy Swiss-Prot
Match: Q0P6H9 (Transmembrane protein 62 OS=Homo sapiens OX=9606 GN=TMEM62 PE=1 SV=1) HSP 1 Score: 148.7 bits (374), Expect = 2.7e-34 Identity = 144/537 (26.82%), Postives = 239/537 (44.51%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy TrEMBL
Match: A0A0A0LKQ4 (Metallophos domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G084270 PE=4 SV=1) HSP 1 Score: 1483.4 bits (3839), Expect = 0.0e+00 Identity = 720/747 (96.39%), Postives = 737/747 (98.66%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy TrEMBL
Match: A0A1S3B3Q9 (LOW QUALITY PROTEIN: putative metallophosphoesterase At3g03305 OS=Cucumis melo OX=3656 GN=LOC103485828 PE=4 SV=1) HSP 1 Score: 1450.6 bits (3754), Expect = 0.0e+00 Identity = 708/747 (94.78%), Postives = 724/747 (96.92%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy TrEMBL
Match: A0A6J1KAA0 (putative metallophosphoesterase At3g03305 OS=Cucurbita maxima OX=3661 GN=LOC111492073 PE=4 SV=1) HSP 1 Score: 1362.4 bits (3525), Expect = 0.0e+00 Identity = 659/747 (88.22%), Postives = 700/747 (93.71%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy TrEMBL
Match: A0A6J1F3Z4 (putative metallophosphoesterase At3g03305 OS=Cucurbita moschata OX=3662 GN=LOC111440020 PE=4 SV=1) HSP 1 Score: 1351.7 bits (3497), Expect = 0.0e+00 Identity = 658/747 (88.09%), Postives = 697/747 (93.31%), Query Frame = 0
BLAST of PI0003836 vs. ExPASy TrEMBL
Match: A0A5D3DJS5 (Putative metallophosphoesterase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold419G00740 PE=4 SV=1) HSP 1 Score: 1307.4 bits (3382), Expect = 0.0e+00 Identity = 641/674 (95.10%), Postives = 657/674 (97.48%), Query Frame = 0
BLAST of PI0003836 vs. NCBI nr
Match: XP_011649029.1 (putative metallophosphoesterase At3g03305 [Cucumis sativus] >XP_011649030.1 putative metallophosphoesterase At3g03305 [Cucumis sativus] >KGN61332.1 hypothetical protein Csa_006131 [Cucumis sativus]) HSP 1 Score: 1483.4 bits (3839), Expect = 0.0e+00 Identity = 720/747 (96.39%), Postives = 737/747 (98.66%), Query Frame = 0
BLAST of PI0003836 vs. NCBI nr
Match: XP_008441771.2 (PREDICTED: LOW QUALITY PROTEIN: putative metallophosphoesterase At3g03305 [Cucumis melo]) HSP 1 Score: 1450.6 bits (3754), Expect = 0.0e+00 Identity = 708/747 (94.78%), Postives = 724/747 (96.92%), Query Frame = 0
BLAST of PI0003836 vs. NCBI nr
Match: XP_038890288.1 (putative metallophosphoesterase At3g03305 [Benincasa hispida]) HSP 1 Score: 1427.2 bits (3693), Expect = 0.0e+00 Identity = 698/747 (93.44%), Postives = 720/747 (96.39%), Query Frame = 0
BLAST of PI0003836 vs. NCBI nr
Match: XP_023520912.1 (putative metallophosphoesterase At3g03305 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1372.5 bits (3551), Expect = 0.0e+00 Identity = 665/747 (89.02%), Postives = 702/747 (93.98%), Query Frame = 0
BLAST of PI0003836 vs. NCBI nr
Match: XP_022997019.1 (putative metallophosphoesterase At3g03305 [Cucurbita maxima]) HSP 1 Score: 1362.4 bits (3525), Expect = 0.0e+00 Identity = 659/747 (88.22%), Postives = 700/747 (93.71%), Query Frame = 0
BLAST of PI0003836 vs. TAIR 10
Match: AT3G03305.1 (Calcineurin-like metallo-phosphoesterase superfamily protein ) HSP 1 Score: 842.4 bits (2175), Expect = 2.8e-244 Identity = 408/706 (57.79%), Postives = 530/706 (75.07%), 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.
|