PI0014329 (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.ATGAATATGGAAATCTCTTGCGATGTGGCGTCCTTGGACGCTGAATTGTTGCAGCTGGCGGAGGTCTCTCCTTTGTCGATTAAATCCAATCCTGATTTTGTTGAGAAGCTGTTTGAGCAGTGGCTTTCGCTTCCTGGCACTAATCGCTTGGTACTCTTCCTGTTCTAACCTTGATTTCCTTGGATTACAAAGCTTGTTGAATTGGGGAAATTGTTAAATCATGGATTTCTAATATTTGGATGGAAATGTTGCTTTTTTATTTAAAACTTGTGAATTTGAGCCGTGTTAGTCCTTGACACTCAAGAACATGTTATGTGTGCTGAAAAGATCATATCTAGCTGAGTGTCTGGATGCCAGTTTTGGGAATTGAGAGTCGCATTTCACTCTTTTCTTTTTTTCTTATTTCTATTTTTGTGTCCTTGATTTTAGTTCGCATTGCTTCATCTGTGGTTTGCGCGTGTATGTAATGTAATTGAATTCATTATTTATCTATTGTATCTGTGTAGGTGACGTCACTGCTTAACGATGCAAAGGCTGGTGTACCCTTGAATGTGCCTGGAAATTCTTCTAGTCCTCATGCTTCTGCTAGCAATTCGCTGCCTTCTATATTTCCTGCTGGGAGTGCTCCTCCCCTATCACCCAGAAGTACATCTGGTTCCCCTCGGGTGATGAGACAGAGGGTTGGCCCTTCTAATTGGGTTCCCCACTGAAAGTGATTAGTGAGCCAATTAAAGAACCAATTCCGCAGGTTAGGTGCAGAGTGTACTTGATTATCTTTTGTTAATAATTTTAGAGCTATGCTTCAATTTGATATGCATTGTTATCCGTCTTTTATCTATTACCTTTACCATTATCAGTTGAATTTGATTGCCTGGGATTATGATGACAGTTCTAATTTGTCAGCTTTAAATATTGCAGTTTTACTTCCAAAATGGACGTCCAGCACCAATGACATAAAAGAGCAGTGCTTATTCAAGATCAATCAGGGTTTTTATGGACACTTGGATGGATTACAGATCCATGGTGAGATATCTCAGAAACTCATGTCTCATGTCTCCAATGGACACTAACTCTCCTTTTGTTATGCCAGAATTTAGGGCAATTACAAAAGAAGTATGCAAGCTGCCATCATTCTTTTCCACTTCTCTTTTCAGAAAGATAGATGTTAATAGCACTGGCATTGTGTCAAGGTAGGTTTCTCTTGTTGCTGAAGAACGCTGTGTCTGGCTTAGCTGTTGTCTCTCTATTTCTTCCCCTATGATATATTCCATAAAATGTTGCTAATATGCTCGACTTTGCTGCTAACACTGTTGTTGTTGCTAATAGGCAATAGCTTTGTGAGGAAGAGTGAATGATTACAAAGCTACAAAAATATTCAGCCTTCAGAAAATTGTAATAATTGAAATTACATATTTTCTAGTTTTGTTTTTTGTAGACCTTCCCTAAATGAAATCCTAATATCTTTTTCCTCTCTGGGGGTTAATTATACAATCTAGATCTTCAACTTGCCTTCCTATTTTCTTGTCCTTTGATGTGATCAATGTAGGAGTTCTCATTGGATGTTCCCAAATATTATCTATCTAACTACAAACATTTATTGTAGGGGGGATTGCTTTCGCGGGCTGGTTTTTTTGTATGTATTCTTTTTTTTTTTTTTCCTAAAGTTGTTTGATTCTATATATATGGTACAAAAAAAGTTGTAGGGAGATTAGTAATATTTTGGGTTTTGGTCCTTCAATTCCTTTTTAGTCCTAATACTTGGTTTGTACTTAACGGGTGCAGTTGAATTAGGGGATATCGTTAATGCTATTTTACGATATTGTTAAATTCTCAATTAACACCTAAAGGGTCAATAGACACTTTTTTAAAACGGAAAGATGATTTCATTTATTTAATGAAATGAGACTATGCTTAAAGTATAGAAGAGGAAACAAAATATAAAATCAAAACTTGTCCATAAGAACAAGAAATTTAAGACACCTCCCTAAAATCTGGATTTTTCTCATGACTAAATGAGCTTTCATTGAGAAGAAAGGAAAGAAAAATGTCTAGTTTTAGGTTGTAGAGTGGCAAGGAGTGTAGATCTTTGGAGGTATTTGGACATTGTGTTTACCAGAAACCATCCCCCGATTTTTTACCACCTTGACTTGCTTCACTTCTTGGATGGAAGTAAGAGACCTTCGGTATGTTAGTGCTCCAATGCTTTCAATTACTACCGGAGGCTAGAATGTTTTTCATGATTAATAAAAAGTTTCTTATCCAAAATGAATGAGGAGGTCATGGTTGAACTACGGGGTATGTTAAGATATCGCAAATGGAAACAACATAAAGAATTGAGGACAAGAATATGACATTACTTACAATATTGAAGGAAAAACTGTGGCCTTGAATGTTGAACTCCACCCCAAACTCCAAGTTGTCCTTAGCTACGGGCCATTGCTATCACTTGACTTGGTTATGTCATACTAAGTAAGATGCTCCAATTGGGCGAGGGAGTGAGCTCTAGAGTTAAAGGAGGGAGGCCTTAGTTTGACGACCTTACTTGAAAAGGATCTCATCTATAGGTTGTACATCTGTATCTTTGAGTTCTAAGGGAGGCCTTAGTTTGTAAAGAGGAGGTCAAATGAAAGTTCGGTAGTGCTGGTTGACAAGCTTAATTTGGTGCAGCTAGGGACAGTCTTGACAAGATTTGTTGGTCTTTGGAGGGATTTGGTTCCCACCGAAGTCCATGGGTGATAGGATCAGAGTATTAATGTACCCCAACAACATTTGACTCTGGAAAATCTGATTGGAGTGTTAGCTACGTGAAGGGATTTATATTATTATATATTTTATGTGCTAAGATAGAAGCATTTTATGTCCAAAACTGAGTCTTTTTTTTTTTTTTGTTAGGTAATTAAACACCGGGTAGTTAAAACAGAATTTTAGAACCATTTGTCTTGAGCATTGTCATGTGTTAAGCAAGTTGAACTTTATCAAGTGGTTTTCCCCTTATACAAAAAAGCCTCTAGTAAATTTGTGTTTCAATCGCTTCCTTTCATAACACCTAAAGGTGGTGTTTGGCCACCATCTTAAAGATGGTGGAGTAGACTATTATAGCTCACTCCATGTTTGAGACTCCAATTATAGTAGTTGGTGTTTCCAACTATTATAACATGTAATTGACTAATTATTACTATTTCAAATCCATCTTTGCTATATCGTTTACTATTTCTCTGCTTTTTTTTCTCTTTGTTATAGTGTTTACTATTTTGTACCTAGACTAAAACAATGTACCCTAAACACAGATTATTATAGCCATACTAAATAGTCATACCTCAAACACTGAGTATTATAACCCACAGATTATAATAATCACTGATCATAATAACCAATTTTGCGCCCCAAACACCCCTAAGATTAGCATCCTTGGATCTAATTTGATTTGGAGGTAATTGTAATGAAAGATCTAATTGATTGACTTATGAAAATTTTGGATTTTGATTGACTCAAATCATAAGTTCACATGATATTGGTTGAATAAAATCCAAATAAGGGTAAAGTTTTGGGTTTTAATTGATAGAACTATTAGTTTAGGGTTTTTAGCTGATGCAACCCCCAAAGTTTAGAGGTATAAATTGATACTTGCCCTAAATTTATAGAAATTTCTTACATTGGTAAATCAATAATCTAATTATGGACCCAATATGTTAATAAACTACAAAGCTTAAATCGTTAAATACTAAATAATAAACATTTAATTTTGATGAATTTTTTTATGGTGGGGATAAATTGTTACAAATTTGAATGAGGACTTGGTTTTTACAAAATTGTAAGTAGGGGGACTAAATTGTTACAACTTATAGTTCATGAACTAAATTGGTAGCTCCACGAAGGCTTAGAAACTAAAAGTGATATTTAACCTATAAAAAAGCTTGGGAAGGGACAAAAATTTCAAATTTGGCCATGGCTTCAACAAGAAAGAATTGCTAGCCATGGTGGTTCAAGATTTTGATGATAGTTGGGGATGGATGGAATAGCTATGCAATGAAGGGAAGAACACCAGAGATGAATGACAGCGATGAAGAAGTGGATGGTGGGGAGTTATTATTGAGTCGGTTGGTGGGTTGGATTGGATGTGCCTAAGACCTGGAAAAATGTGAAGGAAACTGGTGTTTTTAGCTGTGGTTGTACTGATTGATTGTGGCATAGTGCGCATTTTCATCTCTTTAGAATTGGTTAAGGAGGTGAGCTTACCTTTGAGTGAAACATTGCCCTAGAACCTATCAAACTAGAATTAGTCATTTTGAAAGTTCTCAGTTTTCTCTCAAACTATTATTATCTTAAAAAAAACTGGAAGCATAGCGTTGACCAAATTGCTCCAGCTTGACAACAATAAGGTGTTCCATAAATAAATTGAAAAGCGGCAACATTAATATCCTTTGGACAGCAGTAGCACTAGTCAAACACTTTGAAGAGATTTAACCAACAAGCAGGGCCATTGGGTTGTAGCATAAAGAGATGCTAATTATATTCGTCCTGTGTTTTACACAAAAGCCTTCAGCTGGGAGAGGATGCATTCAGCACTTTTTCTTTCCAATGTTTTGATATCTACAAACTTTGTTGGGATGTTTTTGTGGGCTTGTTTTCTTTCATTTTTTCTCAGTTGAAGTTGTTGCTTTCATCCAAAAAAGGAAAAAAGAAGGAAATCCAGAAATGGCCCCCATATTTACATACTGAGGAGATTCATTGTCAGGATAAATCACAAGAACCTCAAAGTTCCTTTTGGACATGGGCAGTACCGGGTGTGTCAGGCATGGATCTATATTGGTTTGGAATGACTTTGAGGTCATTGACAAGCTAAGACTGGAAAATGAAGCTACCGATGCACTATCCTGCATGCATTCTTTGGTTGATTTAGTTTGCATCAGCATGGTTGGTGGGTTAAGTACAATATTATAGTGGAACATCCTGTAGTTTTATGGCACATTCAAATTGTCAGGATGAATGGGATTTTTATAGGTCTAATGGTTGTCTTGTGAGGTTAGTTGAAACAAGACAGAGACCTTAGCAATTAATTATTAAAAAGAGAACTTTTTCAGTTTCTCTTTGCTAGATTTTCTTCTACTTGAAGCATTTGTCATATTCTTGAAAAGAAATTTTATCATCTTCATTTATCCGAAACACAGAAAATATCATCATCGTAACTATGTTGCAGGGATGCTTTTGTTGATTACTGGATCAATGGAAATATGTTGACACTGGATTTACCAACCCAAATTTTTAGGATTTTAAAGCAGCCCGATCTCAAGTATCTGACTCAGGTTTCTTTCTGTTCTTAATCATTTACTTTCTTCTCTTATCCCCCGAGTCCTGATTATTTAATTATAGAATTAATGTCGACTAACATATTTATCAAAATTTCTGTATTTGTTAGATTATTGATTCTATGGAAAAAAGTTGTTTTTTTAGTGTTGGTACTATAAAGGACAAGTTCTATCAGTTCCTTCTCCATCCGCCCTTCAAGGCTTTTATGGCGTGCTGGGGTGTGTGCGGTCATTTGGGATATTTGGGGCTAGAGAAATGCTAGGGTGTTTAGGGGTAGAGAGAGGGGGCATAGTGAGATTTGGTCTTTGGTCAGATTTCACGTGTCTCTTTGGGCTTTGGTTTCGAAGAACTTTTGTAACTATTCTATCAGCAACATTTTACTTAGTTGGTCCCCCATCCTTTAATAGGGTGGTTTTGTGGGCTGGTTTTTTTGTATGTCCTTGTATTATTTCATTCTTTCTCAATTCTTTCTCAATGAAAGTTGTTTTCATCAAAAAATCATGTTACTTCTTACCTATATTATTGTAACCAAAGACCATATCCAGTGAATGGTTAAAATGAAATTGATATCATTCTGAAGTAAGCATAAATGTTTATACATTTAATCTTGTTCTTGGTAAAGTTGAATATTTTGATTTGATCACAGGATGATTTCAAACCTGTGCTTCGAGAACTTTTAGCAACACACCCAGGGCTAGAATTCCTGCAGAGCACTCCAGAATTTCAGGAAAGATATGGTTGGTGTTTCTTTGGCTGAATTGTCCAGCTTTAAATGGATGATATTTCTGGTTTGCTTTGTACTTTCTTTTCCCTTATACTTGTGTTCATCTCTGGTTAGTTTAGTTGACTCGTTTCATTAATTTTTAAACTATCAAATCTCTTTCATCATGATATTTATGTGAAATATAAATATTTGCTTTCTTTACAAACAAATCCTGAAACCCACATTTCCTTAACCATCTTATTCTTTTCTTTAAGAAGCCTAAATCATCTTATTCTTTAGACTTCAATGCCATGATTTCTTTATTTATTGTATACCTCATAAGGTAGAAAGCCTAGTGAGTACTTTATGATCTTTATTATGTCTTATAGAATGGGTTTAAGTTCTTAATGTAGTTCAAAATTTTAATGTTTGGGTAGCTATATTATACTAATGGAAGCTTTATGTTATCTCGGTAATTTTTCACTTTACAAGCAAAAAATCTGTGGCCATCACAAAGTTGATTCCAATGTTGAGTTGGTGGCTTGTTTCTAGCTTATATGGTGGATTTTTTTTTGTATGCCCATGTATCCTTCGTAGTTTTCCTCATCAATTCAAGCTTTCTAAGATAGGATTCATATCTGTTCATCCAAACCTTTGGATTCAGAGTACTTTTATATTGAAGATATGTTTCATGAGTTGTTAGTCCCGTTTTGTTATCCCATGTCCTTTGGTTTGAAAAGGCCTTAGTAGATTTGTTGCATTGTACTGTTTCCCTCCTTTTTCAATCAAGATAGAGATAGACTGGAACTTCAAGGTTTCAAAATACTGGTCTCGAGATGGTTGGTTATTGGACTGCGTTGTATGGCTATCTTCCAGAGGTAGAAAACTTTTATCAATTCTTGCTGGTGCTGGTGTTAGTGAAAAGGGATGTCTCACTTGTTGGGATTTACTTAGAGATTTTATAAAGCAATTTGAAGATTTTGCTATGCTTTCAAATCATCGATTGGTTAATCTTATTAAGATGAGTGGATTTTAGTAAAGGAAATATGGTGTTCACTAGCCTAAATAAGGTCTTATCCTAATAGTTACCTCATTCTTTTTTCAGTAAGAATAGAAAAGGAAATGGTGGATGTAGATTGGAGTTCAATTATAGTAATCTCGAGGTTGTTAGGTTGTGATGATTGGATGGCAATCAAACATCACTTTGAAGCTTCTTTTGTTATTAAAATCCGTTTATGGATGATAAAGGCTTGCTAAAGATGGAAGGTGGGAAAATTCTTGGTGGTTTGGAAAATGGAAGAAATTGGTTTTTTTCATGAGAAAATTGAGATATTTCAGCAGAGAAGCATAATATGCCTAACTTTACTATGAGATATGGTGGTTCGTTGTAGCTTTTGGACTTATATTTGAAGTATCGGGCTCGTAGATGCATTTAAGCCATTGGGGAGTCCCTTATCGTTATATCTTCTTCAGCCTTTAACAGATTGGAATGTTGCTCAGCCAAAATGTTAAAAAATATATTTGTGGGTTTTGTTCTATTGGCGGTAGAAGAAATAATAACTTCATTAGTGCAATTGAGAAGTAGGCAAAGGGTTGTTAACAGATGACCAAGAGATGGAGGACGAGGTGTATCATTACTTCTCCACTTTGGCTCAGTTGGTTTTGATTCTTGAATAGCTTGTCCGTGTGCTACTCCTCCCCATTGAAAGCTCTCATGGCTTTGATAAAATAAAAATAATGGAAAGTTGATGCAGTACTTCTTTTGGGGCAAGGGTGAAGGGCATAGGTGCAATCATCTTCTTAATTGGGGTAAAAGATTTGGTTTGTTTTTGTGCTACTTGGCTGAATAATCGCTTGATCGTTTATTCATACATTGTCCTTTTCTCACTTTGGCTTGGCATTGGTTGTTTAAGGAATTCAACTTTTCTTTTTCCTTACCAAGTAGAGTCGATTATTGGCTGCTTGAAGTCTTTGGGGGGTGGTTACTTAGAGACAGAGGGAAGGTCTTATGGGCTATTGCAGTTAAAGAGCTTATTTGGAACTAGTGCCTTGAAAGAAATTGGCATTTTCGAGTATAAGTTGTCTTCTTTTGACTTCTTTTCTAGTAACACTCAGTTCATAGCCTCCTGGTGATAGACAAAAAATAGGAAATCCTTTTGTAATTTCAGCTTGTTCATGATGATGATCCAGTTGAACTGGAAGCTCTGTTAAAGCTTTGTTGTCTTGTTTTTCTGGGGGAGTTCTGGGCTTTTTGTCTTGTCTTCCCCTAGCCTTTAGGCTGTCCTTTGAACCTCTCTTGTGCATAATACACATTGTTTCTTATCTAAAAAAAAATATGGCACTGGTTTGCTGTTGTCATGCTGTGCAGTTCATCCAGTTGTACAGATTGTTGATTTTTTTTTCATTTGCATCAGTTGAGTTGACATTAGCATTGTTGGTTAGGCACTGGTGTGCGTTGGAATTGACCTTGCAGTCCATGCCAGATGCCTGCTGTTGTATACAATTTATGTTTTAGGCAGGGGCTTGATACTGGGTTCCCTCAACTCAAGGCTTCTTGCTATGATACATCATTGTAAACCTGCTTGATTCTAGATTCTTTTTAAATTCACTGTTATAATGCGACCAGACTACGACTCTTTATCCCTTTTCTTTTCACTTTTCTAATGAACTTTTATTTTGTGAACCAGCTGAAACAGTAATATATAGGATATATTACTATATAAATAGAGCGGGAAATGGTCAGCTTTCACTTAGGGAGCTCAAACGTGGAAATTTGATTGATGCAATGCAACATGCTGATGAAGAAGAGGATATCAACAAAGTTTTGAGGTAGGTTTGTGGATGAAGAATTTTTTTCTTGTGTTGTGATAAAACGAAAGAAAATGGCGTATGTTGCACTTGTGAGTTTTATTCATAAAGCATTCCAATAAATAACTCCTTTGCTCGCATCATCGTTTTCATCTCCCCTTTCATATTTATCCTCATTCTTTCTTCTATTTTATCTTCCTCATGATTGTACTATTGTTTCAGGTCCTTTTTTGTTTTATATGAGTCCATTGAGAAGGTTTCATGAATTCTCTCAAGTTTTTGGTTGACGATGGATTTACAACATACTTTTCTTGTAACTATGAGTTAGTACAGTTGTTTCTTCAAAAAGAAAAGCAAGGGTTATAGTAATGCTAGTATCCCTGATAGAAGAGAGCGTAAGAATTTGATGGTTTTGTCTAAATAAGTTGCAATTCAGTAACTGTATCTCTATTTAGTGCCAGATTTTGTTGAATCCAAGCACTGAAACGCATCCCACCAATATGAATCTCTCTTTCTCTTCTCTCTAGATGCGGATTATTAAAAATGTGAAAGATAGAGACAGCCCAAGGATTGTCTTTTTATCAGAATGTTGTGATAAGAAAGAGGACATATATAACTTCCATTTTCAATTTGCATGTTATGTTGATGCGTATGCTTACCCAGGTCTTCTCTTGATTGTTGTTTAACATGCAGTAATCGTTAATTGTAGGTACTTTCTTATGAGCATTTTTATGTAATATATTGCAAATTTTGGGAGCTGGACATGGACCATGATTTCTTGATTGATAAGGAGAACCTTATCAAATATGGAAATCACGCACTTACCTACCGGATTGTTGATAGAATATTCTCTCAGGTTTGTGTATCATCTGGTATATTGTTCTTTTAGAAGTGATTCATTTAACTAGATAACAGGTTTCAGTTCTAAATGAAACTTCCTTAGAATCTGTAAGACTTTATTCCTTTTTTCAATCGCTGTTTTATTTATGAAGTGAGTACTAGTGTATTAACTTCTATAAATGGTTTCCATGTGCTCGTAGGTTCCAAGAAAGTTTACCAGTAAGGTTGAAGGTAGGATGGGATATGAAGATTTTGTTTATTTTATATTGTCTGAGGAAGATAAATCATCAGAGCCTAGCCTTGAATATTGGTATGTTCTGTTCTCATTATCTCTAAATTTTAAGTGAATATTGGTGTTTTCTAATTCTTTTACCAGGTCATATTAATTATTTGTAAGATGGCTCAAGTTTTCAGGCATTATTATTATTTTGGATAAGAAACAATTTGATTAATCTTGAAATTACAAAAGAGGAGAAAGAAATCCAAATCTTTAACCGAAGTAGTTACAAAAGATTTCTCTGATTGGTAACAAGATATACAAAAGTACAAGGTTTAAAAAGAGGCAACAGTTGACTTTAAGATATAATTAAGTTGGTGATACTATTCATAGGGTATTAAAAAGGCCTCTCCTTGCTTTGAAAAGTTGTCTGATTTCGTTCTTTTGAAATGACCCAAAAGAAGGATTTGATAAAGTTCTATATAAACCACACTTTGGCTTTGATGAAGTTGAATCAAAGATGCTTCTTCCCTCAGTTTTCCGGCATTATAGCCAATAATTTGATGAAATGTGTGCAATTTGATTAATGGCTTCCTTTTTACCTTTGTCCGAGGGATTTCCCTTTATTTTTGTATTCAGCTTATTGGATGGCCCTTTTTTAAGATTTGCTCGTTGGTTTCTCCTTTCTCAGGACATTTTTTAAAGTACAGGTCCAACAGTGCATTTATTATTGTAAAGATGAAAGAAAGTTACAAATTAACGCTATTTGATTTGTTCATTCATTACAGTTCTGAAATTATAGTTTGTCTCTAAAGGAAGTGCTACTCAATTAATGAATGCATTTTTATAAATTTGTATTTACATTTTGGGTCAGAGCGTTTTTGTGTGTGTACATATAATTTTTGGCTCTTGGTTAGGTTGTTTATTATACTTGAGGAAGTTACTGCAACTTTGTAAACTTTCATTTTTTCAATGGATAATTTTGTTTCCTTGTAAATATAAGTGTGTGTGTGTGTGTCAGAGAGAGAAAGAGGACATGGTTTTGTACGCATACACGTCCTTTTATTGAATAACAGCTGTTAAGACATCATATTTTTAGTTGCTTTCGACATCTTGACCAAGTTTGTGACATACCTATTGTGATAATGCCTTGTTTTTTCTAGGTTCAAGTGCATAGATTTGGATGGTAATGGAATTTTAACACGGAATGAATTGCAATTCTTTTATGAGGAGCAGTTACATCGTATGGAATGCATGGCTCAAGAACCTGTGCTTTTTGAGGATATTTTGTGCCAGATAATTGATATGATTGGACCAGAGGTTCAGCTTCTACTCCTTTATTAGTTTTGTTCTCTTGTATTAGGATGTGTGTCCAATGTTTTTGAAGAATATCATGAAAAGATATCCCATTGGTATTATCATCTTTGAAAGCTTCTCCAAAACTTTTATAAATTAATAAAGGATACTATTGTGCTTTACACATTGTTTCTTCTTGCTTGCAGAACGAGACCTTTATCACTCTGCGAGATCTAAAAAGCTGCAAGCTTTCTGGAAGTGTTTTTAATATTCTTTTTAATCTGAACAAGTTTATGGCCTTTGAAACACGTGATCCATTCCTTATCCGCCAGGTAGATGAACATCTATTTTACCTAGCCATTGCACTAGGATCAGCTATGATAACATGGCAGGTGACAATTTTGACCTTGTGGCGTGCAGGAACGTGAGAACCCTACTTTGACAGAGTGGGACCGTTTTGCGCATAGAGAATATATTAGACTTTCTATGGAAGAAGATGTTGAAGATGCTTCCAATGGAAGTGCAGAGGTTTGGGATGAGTCTCTTGAAGCTCCATTCTGA ATGAATATGGAAATCTCTTGCGATGTGGCGTCCTTGGACGCTGAATTGTTGCAGCTGGCGGAGGTCTCTCCTTTGTCGATTAAATCCAATCCTGATTTTGTTGAGAAGCTGTTTGAGCAGTGGCTTTCGCTTCCTGGCACTAATCGCTTGGTGACGTCACTGCTTAACGATGCAAAGGCTGGTGTACCCTTGAATGTGCCTGGAAATTCTTCTAGTCCTCATGCTTCTGCTAGCAATTCGCTGCCTTCTATATTTCCTGCTGGGAGTGCTCCTCCCCTATCACCCAGAAGTACATCTGGTTCCCCTCGGGTGATGAGACAGAGGGTTGGCCCTTCTAATTGGTTGAATTTGATTGCCTGGGATTATGATGACAGTTCTAATTTGTCAGCTTTAAATATTGCAGTTTTACTTCCAAAATGGACGTCCAGCACCAATGACATAAAAGAGCAGTGCTTATTCAAGATCAATCAGGGTTTTTATGGACACTTGGATGGATTACAGATCCATGAATTTAGGGCAATTACAAAAGAAGTATGCAAGCTGCCATCATTCTTTTCCACTTCTCTTTTCAGAAAGATAGATGTTAATAGCACTGGCATTGTGTCAAGGGATGCTTTTGTTGATTACTGGATCAATGGAAATATGTTGACACTGGATTTACCAACCCAAATTTTTAGGATTTTAAAGCAGCCCGATCTCAAGTATCTGACTCAGGATGATTTCAAACCTGTGCTTCGAGAACTTTTAGCAACACACCCAGGGCTAGAATTCCTGCAGAGCACTCCAGAATTTCAGGAAAGATATGCTGAAACAGTAATATATAGGATATATTACTATATAAATAGAGCGGGAAATGGTCAGCTTTCACTTAGGGAGCTCAAACGTGGAAATTTGATTGATGCAATGCAACATGCTGATGAAGAAGAGGATATCAACAAAGTACTTTCTTATGAGCATTTTTATGTAATATATTGCAAATTTTGGGAGCTGGACATGGACCATGATTTCTTGATTGATAAGGAGAACCTTATCAAATATGGAAATCACGCACTTACCTACCGGATTGTTGATAGAATATTCTCTCAGGTTCCAAGAAAGTTTACCAGTAAGGTTGAAGGTAGGATGGGATATGAAGATTTTGTTTATTTTATATTGTCTGAGGAAGATAAATCATCAGAGCCTAGCCTTGAATATTGGTTCAAGTGCATAGATTTGGATGGTAATGGAATTTTAACACGGAATGAATTGCAATTCTTTTATGAGGAGCAGTTACATCGTATGGAATGCATGGCTCAAGAACCTGTGCTTTTTGAGGATATTTTGTGCCAGATAATTGATATGATTGGACCAGAGAACGAGACCTTTATCACTCTGCGAGATCTAAAAAGCTGCAAGCTTTCTGGAAGTGTTTTTAATATTCTTTTTAATCTGAACAAGTTTATGGCCTTTGAAACACGTGATCCATTCCTTATCCGCCAGGAACGTGAGAACCCTACTTTGACAGAGTGGGACCGTTTTGCGCATAGAGAATATATTAGACTTTCTATGGAAGAAGATGTTGAAGATGCTTCCAATGGAAGTGCAGAGGTTTGGGATGAGTCTCTTGAAGCTCCATTCTGA ATGAATATGGAAATCTCTTGCGATGTGGCGTCCTTGGACGCTGAATTGTTGCAGCTGGCGGAGGTCTCTCCTTTGTCGATTAAATCCAATCCTGATTTTGTTGAGAAGCTGTTTGAGCAGTGGCTTTCGCTTCCTGGCACTAATCGCTTGGTGACGTCACTGCTTAACGATGCAAAGGCTGGTGTACCCTTGAATGTGCCTGGAAATTCTTCTAGTCCTCATGCTTCTGCTAGCAATTCGCTGCCTTCTATATTTCCTGCTGGGAGTGCTCCTCCCCTATCACCCAGAAGTACATCTGGTTCCCCTCGGGTGATGAGACAGAGGGTTGGCCCTTCTAATTGGTTGAATTTGATTGCCTGGGATTATGATGACAGTTCTAATTTGTCAGCTTTAAATATTGCAGTTTTACTTCCAAAATGGACGTCCAGCACCAATGACATAAAAGAGCAGTGCTTATTCAAGATCAATCAGGGTTTTTATGGACACTTGGATGGATTACAGATCCATGAATTTAGGGCAATTACAAAAGAAGTATGCAAGCTGCCATCATTCTTTTCCACTTCTCTTTTCAGAAAGATAGATGTTAATAGCACTGGCATTGTGTCAAGGGATGCTTTTGTTGATTACTGGATCAATGGAAATATGTTGACACTGGATTTACCAACCCAAATTTTTAGGATTTTAAAGCAGCCCGATCTCAAGTATCTGACTCAGGATGATTTCAAACCTGTGCTTCGAGAACTTTTAGCAACACACCCAGGGCTAGAATTCCTGCAGAGCACTCCAGAATTTCAGGAAAGATATGCTGAAACAGTAATATATAGGATATATTACTATATAAATAGAGCGGGAAATGGTCAGCTTTCACTTAGGGAGCTCAAACGTGGAAATTTGATTGATGCAATGCAACATGCTGATGAAGAAGAGGATATCAACAAAGTACTTTCTTATGAGCATTTTTATGTAATATATTGCAAATTTTGGGAGCTGGACATGGACCATGATTTCTTGATTGATAAGGAGAACCTTATCAAATATGGAAATCACGCACTTACCTACCGGATTGTTGATAGAATATTCTCTCAGGTTCCAAGAAAGTTTACCAGTAAGGTTGAAGGTAGGATGGGATATGAAGATTTTGTTTATTTTATATTGTCTGAGGAAGATAAATCATCAGAGCCTAGCCTTGAATATTGGTTCAAGTGCATAGATTTGGATGGTAATGGAATTTTAACACGGAATGAATTGCAATTCTTTTATGAGGAGCAGTTACATCGTATGGAATGCATGGCTCAAGAACCTGTGCTTTTTGAGGATATTTTGTGCCAGATAATTGATATGATTGGACCAGAGAACGAGACCTTTATCACTCTGCGAGATCTAAAAAGCTGCAAGCTTTCTGGAAGTGTTTTTAATATTCTTTTTAATCTGAACAAGTTTATGGCCTTTGAAACACGTGATCCATTCCTTATCCGCCAGGAACGTGAGAACCCTACTTTGACAGAGTGGGACCGTTTTGCGCATAGAGAATATATTAGACTTTCTATGGAAGAAGATGTTGAAGATGCTTCCAATGGAAGTGCAGAGGTTTGGGATGAGTCTCTTGAAGCTCCATTCTGA MNMEISCDVASLDAELLQLAEVSPLSIKSNPDFVEKLFEQWLSLPGTNRLVTSLLNDAKAGVPLNVPGNSSSPHASASNSLPSIFPAGSAPPLSPRSTSGSPRVMRQRVGPSNWLNLIAWDYDDSSNLSALNIAVLLPKWTSSTNDIKEQCLFKINQGFYGHLDGLQIHEFRAITKEVCKLPSFFSTSLFRKIDVNSTGIVSRDAFVDYWINGNMLTLDLPTQIFRILKQPDLKYLTQDDFKPVLRELLATHPGLEFLQSTPEFQERYAETVIYRIYYYINRAGNGQLSLRELKRGNLIDAMQHADEEEDINKVLSYEHFYVIYCKFWELDMDHDFLIDKENLIKYGNHALTYRIVDRIFSQVPRKFTSKVEGRMGYEDFVYFILSEEDKSSEPSLEYWFKCIDLDGNGILTRNELQFFYEEQLHRMECMAQEPVLFEDILCQIIDMIGPENETFITLRDLKSCKLSGSVFNILFNLNKFMAFETRDPFLIRQERENPTLTEWDRFAHREYIRLSMEEDVEDASNGSAEVWDESLEAPF Homology
BLAST of PI0014329 vs. ExPASy Swiss-Prot
Match: Q9SLI8 (Probable serine/threonine protein phosphatase 2A regulatory subunit B''delta OS=Arabidopsis thaliana OX=3702 GN=B''DELTA PE=3 SV=1) HSP 1 Score: 808.1 bits (2086), Expect = 5.9e-233 Identity = 399/541 (73.75%), Postives = 455/541 (84.10%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy Swiss-Prot
Match: Q5QIT3 (Serine/threonine protein phosphatase 2A regulatory subunit B''beta OS=Arabidopsis thaliana OX=3702 GN=B''BETA PE=1 SV=1) HSP 1 Score: 796.2 bits (2055), Expect = 2.3e-229 Identity = 401/543 (73.85%), Postives = 453/543 (83.43%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy Swiss-Prot
Match: Q8VZQ4 (Probable serine/threonine protein phosphatase 2A regulatory subunit B''gamma OS=Arabidopsis thaliana OX=3702 GN=B''GAMMA PE=1 SV=1) HSP 1 Score: 796.2 bits (2055), Expect = 2.3e-229 Identity = 401/543 (73.85%), Postives = 453/543 (83.43%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy Swiss-Prot
Match: Q9XGR4 (Serine/threonine protein phosphatase 2A regulatory subunit B''alpha OS=Arabidopsis thaliana OX=3702 GN=B''ALPHA PE=1 SV=1) HSP 1 Score: 739.2 bits (1907), Expect = 3.3e-212 Identity = 366/549 (66.67%), Postives = 437/549 (79.60%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy Swiss-Prot
Match: Q84JI6 (Probable serine/threonine protein phosphatase 2A regulatory subunit B''epsilon OS=Arabidopsis thaliana OX=3702 GN=B''EPSILON PE=2 SV=1) HSP 1 Score: 702.2 bits (1811), Expect = 4.5e-201 Identity = 357/542 (65.87%), Postives = 417/542 (76.94%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy TrEMBL
Match: A0A1S3B4B9 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like OS=Cucumis melo OX=3656 GN=LOC103485877 PE=4 SV=1) HSP 1 Score: 1000.3 bits (2585), Expect = 3.0e-288 Identity = 506/549 (92.17%), Postives = 515/549 (93.81%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy TrEMBL
Match: A0A5A7U8K3 (Serine/threonine protein phosphatase 2A regulatory subunit B''beta-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold105G00860 PE=4 SV=1) HSP 1 Score: 996.1 bits (2574), Expect = 5.6e-287 Identity = 504/547 (92.14%), Postives = 513/547 (93.78%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy TrEMBL
Match: A0A0A0LH46 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G075340 PE=4 SV=1) HSP 1 Score: 995.7 bits (2573), Expect = 7.3e-287 Identity = 504/549 (91.80%), Postives = 512/549 (93.26%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy TrEMBL
Match: A0A6J1D867 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like OS=Momordica charantia OX=3673 GN=LOC111018165 PE=4 SV=1) HSP 1 Score: 976.5 bits (2523), Expect = 4.6e-281 Identity = 492/549 (89.62%), Postives = 508/549 (92.53%), Query Frame = 0
BLAST of PI0014329 vs. ExPASy TrEMBL
Match: A0A6J1FAT8 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like OS=Cucurbita moschata OX=3662 GN=LOC111443963 PE=4 SV=1) HSP 1 Score: 973.0 bits (2514), Expect = 5.1e-280 Identity = 491/549 (89.44%), Postives = 506/549 (92.17%), Query Frame = 0
BLAST of PI0014329 vs. NCBI nr
Match: XP_008441828.1 (PREDICTED: serine/threonine protein phosphatase 2A regulatory subunit B''beta-like [Cucumis melo]) HSP 1 Score: 1000.3 bits (2585), Expect = 6.1e-288 Identity = 506/549 (92.17%), Postives = 515/549 (93.81%), Query Frame = 0
BLAST of PI0014329 vs. NCBI nr
Match: KAA0049945.1 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like [Cucumis melo var. makuwa] >TYK07677.1 serine/threonine protein phosphatase 2A regulatory subunit B''beta-like [Cucumis melo var. makuwa]) HSP 1 Score: 996.1 bits (2574), Expect = 1.2e-286 Identity = 504/547 (92.14%), Postives = 513/547 (93.78%), Query Frame = 0
BLAST of PI0014329 vs. NCBI nr
Match: XP_004152820.1 (serine/threonine protein phosphatase 2A regulatory subunit B''beta [Cucumis sativus] >KGN61275.1 hypothetical protein Csa_006274 [Cucumis sativus]) HSP 1 Score: 995.7 bits (2573), Expect = 1.5e-286 Identity = 504/549 (91.80%), Postives = 512/549 (93.26%), Query Frame = 0
BLAST of PI0014329 vs. NCBI nr
Match: XP_038889903.1 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like [Benincasa hispida]) HSP 1 Score: 988.0 bits (2553), Expect = 3.2e-284 Identity = 501/549 (91.26%), Postives = 509/549 (92.71%), Query Frame = 0
BLAST of PI0014329 vs. NCBI nr
Match: XP_022149824.1 (serine/threonine protein phosphatase 2A regulatory subunit B''beta-like [Momordica charantia]) HSP 1 Score: 976.5 bits (2523), Expect = 9.5e-281 Identity = 492/549 (89.62%), Postives = 508/549 (92.53%), Query Frame = 0
BLAST of PI0014329 vs. TAIR 10
Match: AT1G54450.1 (Calcium-binding EF-hand family protein ) HSP 1 Score: 808.1 bits (2086), Expect = 4.2e-234 Identity = 399/541 (73.75%), Postives = 455/541 (84.10%), Query Frame = 0
BLAST of PI0014329 vs. TAIR 10
Match: AT5G28900.1 (Calcium-binding EF-hand family protein ) HSP 1 Score: 796.2 bits (2055), Expect = 1.6e-230 Identity = 401/543 (73.85%), Postives = 453/543 (83.43%), Query Frame = 0
BLAST of PI0014329 vs. TAIR 10
Match: AT5G28850.2 (Calcium-binding EF-hand family protein ) HSP 1 Score: 796.2 bits (2055), Expect = 1.6e-230 Identity = 401/543 (73.85%), Postives = 453/543 (83.43%), Query Frame = 0
BLAST of PI0014329 vs. TAIR 10
Match: AT5G44090.1 (Calcium-binding EF-hand family protein ) HSP 1 Score: 739.2 bits (1907), Expect = 2.4e-213 Identity = 366/549 (66.67%), Postives = 437/549 (79.60%), Query Frame = 0
BLAST of PI0014329 vs. TAIR 10
Match: AT1G03960.1 (Calcium-binding EF hand family protein ) HSP 1 Score: 702.2 bits (1811), Expect = 3.2e-202 Identity = 357/542 (65.87%), Postives = 417/542 (76.94%), 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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