Lag0000722 (gene) Sponge gourd (AG‐4) 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.ATGGCGATGAAGCGTCTTCTCACCCTCGCTCGCACCTCTCACCGCCGATCCTCCGCCTCCTTTTCACAGGCTGTCAGATCGGCGTCCACCTCCCCGGCGGTGGCCTCGTCTTCTCCACCTCCCTCTCCTCCGCCGCCCAATGCCATGATCTACGATCGCCTCGCGGAGGCTGTCAAATCCAAGCTCAAACAGCTCGAGAATCCCGACCCCAGGTTTCTCAAATACGGGTCGCCTCACCCGACCATTACTGACCACACCCGGATTCTGTCCGCGCCTGAAACTCGCATCACTACTCTCCCCAATGGCCTCCGGGTTGCTACTGAGTCGAACCTCGCTGCCCGGACTGCTACGGTTGGAGTGTGGATCGATGCCGGCTCGAGGTTCGAGACCGAGGAGACTAATGGCACTGCTCATTTCCTCGAGCATATGATCTTTAAGGGAACGGAGAAACGGACCGCGAGGCAGCTCGAGGAGGAGATCGAGAACATGGGTGGTCATTTGAATGCTTACACGTCCAGGGAGCAGACTACGTATTATGCCAAGGTCTTGGACAAGGATGTGCCCAAGGCTTTGGATATTTTGGCTGACATTCTGCAGAACTCCAAGTTCGAGGAGCACCGGATTAGTCGCGAGCGGGATGTGATTTTGAGAGAAATGGAGGAGGTAAGAATCTTTTGCCGTTTGTACGTAATGGAATTGCACAACATATCTTGCTTCTTTATTTGGATAGGTTAATTGCTTAGGTGCGTAAAAGGTTGAAATTTTAGATGGAAATAAACACGAGCACATGAGCTGCAAGTTTTCACATATCAGAAAAGTTTATTTATTGTATATATTGATAGAGCCCATGAACCTTGCCCCTAGTCGCATTGACATCAAATCTACTCAAAATAGAGTGGCTTGTGGTTGGTTACTTGCACAATTTACGTGAGTCACTCATTAAATACAATCAAAATCATCATAATGCAGCAAAAAGATAGTTAAGTTCTGGTCTGAATTGTGCAAGTGCACTTACATTTAGTTTTTTTTTGCCCGTATTCCCTTCCTTTTCATAGTACACAAGGAGTCTCATTTCAAACCTGGAAGTGGGGGGCGGGGGGCATTTAGTTCTTTGCACCTAAAGAGTCTGGTTTCCCATTGATTGTGTTATTGGCCATAACTGAGGACTTATGCATTTTTGTGATAACCTTACTTGAATAGGATTTGTTCTATAGGTCGTATCACTGTGTCGTTTAGTTCTAAGGACTTGTGCACTTTTATGTTCTCATGACTTATAGTTTTATGGCATTGACCTGTGCAGGTTGAGGGTCAAACAGAAGAAGTAATCTTTGACCATTTGCACGCAACTGCATTCCAGTATACTCCTCTTGGTAGAACGATTCTTGGTCCAGCTCAAAACATCAGGACAATTACCAAGGATCATCTTCAAAGTTATATCCAAACACATTACACGGCTCCAAGAATGGTATGAACATTTATCTGATTGTTTAGTTACTACTTGACAGAGGTTATATAATGATCTTGACCTTGACTAACTTCATACCAGAGGATGATGTTTCATTTTCATGGTTCTTTTGGATGATGATTGTTTCTTATCTTTCTCCCACTTCTCTTTTCAATCAAGATGCTTGTTCAAGACTTAATTGGAAAATGGTAGTCAATAATATGATGCTACTGTTTCTTTCAGGTTATTGCTGCTTCAGGAGCTGTTAAGCATGAGGTTTTCGTTGAGCAAGTAAAGAAATTGTTCACTAAGTTGTCAGCTGAACCAACCACAGCTTCTCAGTTGGTTGCAAAGGAGCCAGCAATTTTTACTGGTTCTGAGGTACGAGAAGAAAAGATATTTGGAATCCACCTTGCTTCTCTATTCATAACCCTGTTTCACCAAATGATTATTTTCATTGAAATAAACAGGTTAGGATAATTGATGACGATGTTCCTTTGGCACAATTTGCTATTGCTTTCAATGGAGCCTCCTGGACAGATCCAGACTCCATTGCTCTGATGGTTATGCAGGCTATGTTGGGTTCTTGGAATAAAAGTGCTGGAGGTGGAAAGCATATGGGGTGATTTTTTTTTCCCCTCCTTTAGTCCTTAATAACCTTTTTGTCTTTATTTCAAATTTAAAGTTCCTGACTACTGTTGACCTGTGGAATTTGGAATTATTTTCATGATTTATAATGACAATTATTTTCTATTTCCAAAAAAAAAATAATGACAATTATTTTCATTGTTCATAATTACTGTTCTTTTTTTTTGGCAAAATTATGAACAGTTCTGAGCTGGCCCAAAGAGTTGCCATCAATGAAGTTGCAGAAAGTATGATGGCTTTCAACACCAATTACAAGGACACTGGCCTTTTCGGTGTCTATGCTGTTGCAAAGGTGATTGTGACAATAGGATTATTGGCCTTATTGAAATATATTCTATTCCTTAGTTGCGTACAATAATTGCCTTGATAGCTTCCATATGTATCATGGCCTTTGGTTTACTGGGATATTACAGAGTTAAATGCTAGCACCACTGAATTTGACCTATGAAACAGAGACACTTCATTTTAGGGGGAGTGTCCGTGTCAAAAACGTGTTTGACAGGGATTCATCCGGACACACTCTGGACACGTGTCCGACATGCAAAAATCCTGGTCCTTTTTTTTGTTATATAATTTCATACACACTGGGATGGCAGGGAGAATTTTCAAAATTTTAAGGGGCCAAAAATAGCCCAAAAGCCCAGCTCAATATAAAAGCCCTAGCCCATGATAAAAAAAGGAAAAAAAAAGCCCTAAAATTGAACTCTAAACCAAAACAAGTAAAACATATGAAGAAAACTGAGAGGGCAGAACTCAGCCGTTCAGTTTCTCCCCCTCTGATTTCCACTTCGCCACACACCATGCCACTGTACACCGAACTCCATCCAGCCTTTCCGCAATTTCTTCTCACCCTAAAGTTAATCCTAGCAGCTGAACACATATATACTAAAAAAACCATATCCCCAACATGTCTACATACATGTCCTAGTTTTTTTTAAATTGATTTATTGTTGTCTTCGTCCGTGTCCCGTGTCCGTATTCGTGCTTATTAGGACCTGGCATGTTACAGGGTTTTATACCGGTTTGTTAGAAAGATACATAATGTTGCCAACATTTTCTTGTAGTCGCCAAATCATTTAATTTTTTTGAGATTCTGTGTTGAAGCATACAAGATGCTTTTTTTCCCTGACGTTTCAATTTGAGCTTCTCTTTAATGCTTCTGTAACTTAGATTTGATCTAGGTTAAAAATTTTAATTTTAATAAGAAGCATTACTTCATTAAAAGATTGTAGTGTGCATGTGTGTGTGCACGGGCATGTTTTGTGCTTACTAGCAGTTATTGTTTTTTTATAATCTGGTTTTGTGTGGTTGAGGTTTTATTCATCTTATTGATTTGTAAATTTTCAAACTTTGGATGTCGCTCACCTATCTATGTGCACTTTTTAGGGGCTACTATTACATTTATGACATTTGGTAGCCCATAAATTCTGTGGAGGAATACTGTAGTTTCTTTGAAATGCATTTCCAAGCTTGGATCATGAGAATTCATGCAAAGCAAACACACATTAAATAAAAGAAAGGATGCAATGCTTTTTATCCCATAGTTTTTGCTATACTCACACAATATCATTCTATTTAAATATATATGCGTGTTTGTGATTAGCTTATGATTTTAGGTTTTCAGTTTTGTTGTATAATGATTTGTGTTATCTTTGTCTTCATGGTCACCTGGCTTTTTAATCCAGCACAATGTTTTAAAAGGCTAAAGGTGGCCTTGAGGCTTTTCCTCTTTAGGAGGCGAGGCGCAAGCCTTGAGGCAGTATGAGGCGTAAGCCTCAATTTTAATTAAAAACATTACGCAAATCCTAAATTTGTGTGAATAAGTAATGCTACACATAATAATACTTATATAAAAGTATAAAAAAAGTCACCCCTTGAATTGCTACTTGAACAAAAATTCTACAAGTATATCTTTACCATCACTACTATTATCACTTGTAGGATTGACTTATCCCACAAATTTTTATTTTCAATGTTTTTAAAGCCTAAGTGGTAAAAGTAGTAATATTTCAATTTGTTACAACTCAAACCTTTATATTTTTAAAGAATGGGGAAATTAATACTATTCCTCTAACCATTGTATGAGGCGTAGAGACTTTCAGCCTCAATGCCTTTTTATAAAGGCATAAGCCTCTCTTGTGAGAGGCGTAAGCCTCTTATGCTCCAAAGAAGGCATAAGTCCGAGCTTTGCCTCAAGGCGTAAGCTGATAGCCTTTTAAAACATTGATCAAGCAGCTATCCAAGGTGCTGTATGTATGTATGTGTGGCTACATCATAGTGTACAATTCATTGAATAGCTTTTATTCTGACCTTCAACCTGCTATGTTGTGTGCTTTGTGTGGACCGTACTGTGGTATTGACAATCTTTTGGTTGCTGGTTCCTGATGTCTGTCACTGGCTATATTCCTGAAGGGGAAAGGTAGATTGTGTTTACTGTAGATGGACTTGGTCTTAGCAATTTCTTGAGTGAATTTGGTAGAAAATATTTTTTTTGACAGCTTAACAAGAGGGGCGAGGATGGTAATGTTTATGTTCTGTTTGTTTGAGGATGTTTTTTTGTGGGCTTCTGTTAATAATGCTCTTCTGATTCTTCTCAGCTAGTTTTGAGATTAAATTTAGGCTCTCTTTCTGTCACCTCCTTTTTCCAATGCATTTTTTCTTATGAAAAAGATAAGTGTAGTTTGATTTATTAGCTGAGCTGAATTACGATCACCTGACCATTGTGTCTGTCTTTTCAGCCTGATTGCTTGGATGATCTAGCCTACGCAATAATGTACGAGACAACCAAGTTAGCTTACCGTGTTTCTGAAGCTGATGTTACCCGTGCCCGCAATCAGGTAGATGCTATACTCTTATTCCTTTTTGTTTAAAGTCGAGTCTCCACTTTTTAATACTAATCGAACTTTAAACTGATTCTAAAGCAGAACAAGGGGGAAATAGCAAAACTTAAATTCTTATTATGTTGAAATCAAGGGATGAACTTGTTTTATACAACCTGGAAAAATGCTAGCTACCATACCAAAGTAGGGCAACGAAGAGCCCGCATGATGAAACCTAACAAAAAACAAGCTGATGATGACACTGCCAGTGGCATTTGGACTAAAAGCGAGACCATTGACATCGAACATGGAATTAGCTAACTCTTAGCTGTAGCTTACAAATGCAACTAGTGTACAGAAGCGTAAAAAAGAATATAGAGTAGGTTCGCCAATTCCCCAATGCAATGAGTTAAAAGGAATTAGACTCCTACTTTAGATTCTCGATATTATTTTAGACCCCATCCTCCATCTGTTCATAAATCATAATGCTGTAGTAATTAACTGCAAATTAAATCTTCTTAGTGGTAATCAAAATGCATACTCGTTTCAAGTAATATCCTACCATTGACATACTCTTTTGTTGCAATCTGCAGTTGAAATCTTCTCTATTGCTTCACATAGATGGAACAAGCCCAGTAGCTGAAGATATTGGGCGTCAGGTGGGTACTCCTTGCCATTGTCTTAAATAATAACATTCTTAAGCATATCGATTCTTGATTCGAGATAACATGGCCCAAATATGTTTGGGAAAAAAATTAATTAAATAAAGAAGAGAGCTTTTCTACATGCATATGACAAATTTTAGTCGCTGAAAGGTTGTCTGAGATGAGTTTCTTGCCTCCTTTCCTGGTCTTATGCTTGTCTTCGTGCTCTGGTGTGGTCGTGAGACTAATCCAGCTTTATTGATAGTAAAATTATGAAATAACCCAATTCCTCATATTTCATTGGGTTGCAGCTGCTTACATATGGTCGTAGAATCCCGTTTGCTGAATTGTTTGCAAGAATAGATGCTGTTGATGCAAGCACCATAAAACGTGTTGCAAACCGGTTCATTTACGATAGGGTAAGAACTGAGGAAGAGTAAAAAAATGCTTCAAGTTACGATTTCCTTTTCCTGCTTCACTTCATTGATCAATCTCTTTCACCTGTGCAGGATATTGCAATTGCCGCATTGGGTCCCATCCAGGGTTTGCCAGACTACAACTGGTTCAGACGCAGGACGTACTGGAACCGATATTAGACGATGTCGATTTCAGTAACGTGTTATTTTTGTTCACATTCGGCAGCGGTATTCTCGCAAAATAATCTTCCTTGTTGCAAAATTACATGTCCTTTCAGAGAATCTCGGGCGGATTAATTATTTTTGTTTGCCAGTTCTTGTAAAAGTCATACAAAGGAATAAGAAGTTTGTATCTTCCTTGTTCAAGTGTGATATTAACTATGGCATTGGAATATCCCAATCATTGACATTTACGCTGAAATTTTTTTTATCATTTTTGGTAGCTCACCTGTTTTTTGCTCTTTTATTTTCTTGTTGCCCTTTTGTGAAGAAATGTAACAGGTGCCATTTTAGCACTTGTCTATTTTTTTTTCTTGCCTGCTAATTTGACTAATTTTTCTATGACTTTTTTTCTTTCTCCAAGAAACTTGGGCATTGTGTATGAGTGTATTTTCTGTAAGTGTTTTTGAAAACTGTTTTACGTTTTTAAATTTGAAAACTGCGATACGTAATACACTAAATTAGGTAATACTTAGAAATAAAATTGATAATCATAAATTAATAGAGAACATGAGAAAATGTAAAAGCATCTTATTACTTTTAAATTGATACTCAAACAGATCTTACCGTTCTGAATGGATTAAATTATGTTTTGAGAATAATTTCCTTCAACTTTGTAAGATGTATCCATTTTTGTCCTGAATTTTCAATTTTATCAATTTTTTGTTTGAAACAAAATTTTATCAAATTATACCTACCTTAACTTGGTATGTGCTATAATTTACCTTAAAAGTGTTATAGTTTATACTTTAAGGTAGATTTTTGTTCAAAAAATGTATATTATCATATTAGTTCGATGAATCATAAAACATATATTGCCAACATGAGCGTAGCTCAACTGGCATAACTCTTGTATTAACGACCAAGAGGTCAGTGGTTCAAGTCTCTCCATCCCCACATGTTGTAAAAAAAAAAATCATAAAACATATATTATCAAAGCGAGCATAGCTCAGTGGTAGTTGGTATGTACCTTCAACCATGAGGTCTAAGGTTCAAATCCTCCCACCCCAAATGTTGGTAATAATTTATTAATAATGCAATCTTTTTTATAAAATTTTATTTTAATCTTTTTGTCAACAACTTTCTATTTTAGTTCCAAATTTGTAGCCTCATTTCATAACCATTTGATTTTTTTTCTTTTTTAAATTAAGTTTATAAACAATACTTCCGCTTACAAATTTTTTTTCTTTTTATATCTACCATCTTCTCATCTTTTCAAAAACCAAGTCAATTTTTGAAAACTAAAAAATAGTTTTTAAAAATTTGTTTTTGTTTTTTGAATTTGGTTAAAAATTCAAATGTGTCTTTAACAAAGATGAAAACAAGCAAACATAATTTTTCAAAAATAAAAAACCATATAGTTATCCAACAAGACTTTACAATTTTTGTTTTAGTTTTTTTTTTCTCTTGTATTAACAAATTCAATTCTTTTTATAAAAAAAAAAAGTTGTTCTAGATTTGAAAAGATACAAGAGTGATTCATAAGGAAATTAAGAAAACCCATATGGTTTGAGTTTTTTTTTTCCTTTTTTTTTTAATATATAGATTCAGTTAAGGTTTATAAACTTGTTTGTGTGAATTATGTTCAAAATCAATTGAGAATTTATGAATTTCATTGATTCATAGGTTTCTTATTTATTTATTTTTTAAATATAACAATGTAGGAGTTGAAATTTGTTGAAGTAAAAAATAATAATAGTAATAAAAGGAAACTTTCTAACTTCTCAAGTTAATGCTGGTAAACAAGTAACTGTGTTTAAGTCAAATATTAATTGAATTAACCCACTCAAATATTAATGGTCAGAAGTTAAATCAAACTTTTCAATAACATTTTATTATGATAAACTTCTTCACATTAATTTTAAATATTTCAATGCTCAATAAAAGCCTCTATTAATTATTGCATACCAAACATTGTTAATTCAAAGTTTGAATGTAAATAAAGTTTTTTTTTTTAGCAATTGAATGTAAAATTATGGGTGAAAAAGACTAAAAAGCACGTTCAAAAAGCTTTAGTTAAAAAGAAATTCCCCACCCCAAATGTTGTTAAACTAAAAAGAAAAAAAAAAACTTTAGTTAAGTTATTATTATTATTATTATTTTTTTTAGAAGAACTTTAGTTAAGTTATAAGTTTAGTTCGTAAACTTTTTGAATAGTATTATTTAGTTGATATACTTTAAAAGTTCCTAATAATTTTTTTGAACTTTTAAAGTCCCTATGCTTCGCTTTAATAGACAAATTTCAATTAGGTTCATAATTGAGGCTCAAGGTTAATTCAATACTGACATCACACTTTAAAAAAAAGTTTATAAACCTTTTATGATCAGTTAAAAGGTTATATTATTTCAGACTCTATGGTTAGATAATAGAAAATTTAAGGGAAAAATACACTTTTGGTCCCTGAGGTTTGGGTTAAGTGACACTTGGGTCCCTGAGTTTTCAAACTCAACAAAAATACCCCTGAGGTTTGAGATAAGGAGCACTTTGGTCCCTGCCGTCAAATTTTCTGTTAACTTTTAACGGTTGCTGACGTGACACTATTATTTTAATATAAAAAATTATTTTTGTTTTATTTTTTAAATAAAAAATATTAAAAAATTAAAAAATTAATATTTAATTATTTTTTTTATTCTTTCTCTCTTTCTCTCTCATCTCCTTCTTCTCCATCTTCCTTCTTCTCCATCTTCTCCCTCCTCCTTCTTCTTCTTCTTCCTAAGTCCGGCGACCGGCGGCCACCACACGCCGCCGCCGCGCCGGCCGCCGGCCGCCGTTGACTGAATTTTTTTTTTTTTTCTTCTTTCTCCTTTCTTCTTCTTCCCTTCTTTCTCCTTCTTCCCTTCTTTCTTCTTCACTTTTTTTCTTCAATGTTTTTTAAAAAAAAAAAATAGAAAAGGGAGGGAGGAGGGACCTCCCTCCTCCGTCTCCGCGCCGGAGACCCAAATCACAGAACTCAAGCTCCATATCACACCTCTCGCTAACTCCGATGACCCATTTTTTCTTCAATTTGAGGCCATTCACGGCTCTGTTCACCGTCTAACGCCTCTCCTCTCCGCTCTCTCTCCACCTCTATCCGTCCTAATCTGTGACGCGTTGTTGATTTCCTCTGCTCTCACGCTTACTGCTACTTTGAAGCTTCCCAACTACGCCGTCTTCCCTTCCTCTGCCGCAGTGCTCTCGCTCTTTGCCCATTACCCGTTTGTTAAAATGCCTGATCCATCTAGCCACTTCCTTCCCATTCCTGGCATTCGTCCAATCCCCAAATCATCGATCCCTCCACTTCTCCTCGAGAATTGCATCTTTCAGAGACTATTTAAGCAAAATGGTCAGAGGATCAAAGAATTGAATGGGATTTTGATCAACGCGATGGACGCCATGGAAGGAGATACTCTCGCTGCACTCAACAGCGGGAAGGTACTCGACGGATTCCCCTAGTGATACCCATAGGGCCGTTGCTGCCATGTGAATTCGAGAACCCAGAAGCCAAATCTCCCATACAATGGCTGGAAAGTTTACCTCCGAGATCGGTTGTTTTTGCTAGCTTCGGCAGCCGGAGCGCCGCTTCGAGAGACCAGATCAGAGAAATCGGAAGTGGGTTGGTTTCGAGTGGGTACAGATTCTTGTGGGTAGTGAAAGATAAAGTAGTGGACAAGGAAGACAATGATGGGTTAATGGAGGTGGTGGGGGAAGAGCTGATGAAGAAGATGAAGGAAAAGGGAATGGTGTTGAAGGAGTGGGTGAATCAATCGGAGATTTTGGGGCACAGAGCGGTGGGCGGAATTCTTAGCCATTGTGGGTGGAATTCTGTGATGGAAGCGGCGTTGAAGGGCGTGCCAGTTTTGGCGTGGCCTCAGATCGGCGACCAGATGATCAATGCAGAATTGGTTGCAGAGAAAGGGCTTGGGATGTGGGTTGAGAATTGGGGATGGGGCCAGAAATGTTTAGTGAAGGGCGAGGAAATTGGAGCAAAGATTAAAGAGATGATGGAGAGTGAAGTTTTGAGGGCAAAAGCTCAGAAGTTTAAGGAGGAGGCCATGAATTCAGTGGAAGTTGGAGCCGGAGGAAGCTGTGACAGAGCCATTGAAGGGTTGATTAAAAAATGGAACAGAGGCACTTGA ATGGCGATGAAGCGTCTTCTCACCCTCGCTCGCACCTCTCACCGCCGATCCTCCGCCTCCTTTTCACAGGCTGTCAGATCGGCGTCCACCTCCCCGGCGGTGGCCTCGTCTTCTCCACCTCCCTCTCCTCCGCCGCCCAATGCCATGATCTACGATCGCCTCGCGGAGGCTGTCAAATCCAAGCTCAAACAGCTCGAGAATCCCGACCCCAGGTTTCTCAAATACGGGTCGCCTCACCCGACCATTACTGACCACACCCGGATTCTGTCCGCGCCTGAAACTCGCATCACTACTCTCCCCAATGGCCTCCGGGTTGCTACTGAGTCGAACCTCGCTGCCCGGACTGCTACGGTTGGAGTGTGGATCGATGCCGGCTCGAGGTTCGAGACCGAGGAGACTAATGGCACTGCTCATTTCCTCGAGCATATGATCTTTAAGGGAACGGAGAAACGGACCGCGAGGCAGCTCGAGGAGGAGATCGAGAACATGGGTGGTCATTTGAATGCTTACACGTCCAGGGAGCAGACTACGTATTATGCCAAGGTCTTGGACAAGGATGTGCCCAAGGCTTTGGATATTTTGGCTGACATTCTGCAGAACTCCAAGTTCGAGGAGCACCGGATTAGTCGCGAGCGGGATGTGATTTTGAGAGAAATGGAGGAGGTTGAGGGTCAAACAGAAGAAGTAATCTTTGACCATTTGCACGCAACTGCATTCCAGTATACTCCTCTTGGTAGAACGATTCTTGGTCCAGCTCAAAACATCAGGACAATTACCAAGGATCATCTTCAAAGTTATATCCAAACACATTACACGGCTCCAAGAATGGTTATTGCTGCTTCAGGAGCTGTTAAGCATGAGGTTTTCGTTGAGCAAGTAAAGAAATTGTTCACTAAGTTGTCAGCTGAACCAACCACAGCTTCTCAGTTGGTTGCAAAGGAGCCAGCAATTTTTACTGGTTCTGAGGTTAGGATAATTGATGACGATGTTCCTTTGGCACAATTTGCTATTGCTTTCAATGGAGCCTCCTGGACAGATCCAGACTCCATTGCTCTGATGGTTATGCAGGCTATGTTGGGTTCTTGGAATAAAAGTGCTGGAGGTGGAAAGCATATGGGTTCTGAGCTGGCCCAAAGAGTTGCCATCAATGAAGTTGCAGAAAGTATGATGGCTTTCAACACCAATTACAAGGACACTGGCCTTTTCGGTGTCTATGCTGTTGCAAAGCCTGATTGCTTGGATGATCTAGCCTACGCAATAATGTACGAGACAACCAAGTTAGCTTACCGTGTTTCTGAAGCTGATGTTACCCGTGCCCGCAATCAGTTGAAATCTTCTCTATTGCTTCACATAGATGGAACAAGCCCAGTAGCTGAAGATATTGGGCGTCAGCTGCTTACATATGGTCGTAGAATCCCGTTTGCTGAATTGTTTGCAAGAATAGATGCTGTTGATGCAAGCACCATAAAACGTGTTGCAAACCGGTTCATTTACGATAGGGATATTGCAATTGCCGCATTGGGTCCCATCCAGGGTTTGCCAGACTACAACTGGTTCAGACGCAGGACAAAAGGGAGGGAGGAGGGACCTCCCTCCTCCGTCTCCGCGCCGGAGACCCAAATCACAGAACTCAAGCTCCATATCACACCTCTCGCTAACTCCGATGACCCATTTTTTCTTCAATTTGAGGCCATTCACGGCTCTGTTCACCGTCTAACGCCTCTCCTCTCCGCTCTCTCTCCACCTCTATCCGTCCTAATCTGTGACGCGTTGTTGATTTCCTCTGCTCTCACGCTTACTGCTACTTTGAAGCTTCCCAACTACGCCGTCTTCCCTTCCTCTGCCGCAGTGCTCTCGCTCTTTGCCCATTACCCGTTTGTTAAAATGCCTGATCCATCTAGCCACTTCCTTCCCATTCCTGGCATTCGTCCAATCCCCAAATCATCGATCCCTCCACTTCTCCTCGAGAATTGCATCTTTCAGAGACTATTTAAGCAAAATGGTCAGAGGATCAAAGAATTGAATGGGATTTTGATCAACGCGATGGACGCCATGGAAGGAGATACTCTCGCTGCACTCAACAGCGGGAAGAACCCAGAAGCCAAATCTCCCATACAATGGCTGGAAAGTTTACCTCCGAGATCGGTTGTTTTTGCTAGCTTCGGCAGCCGGAGCGCCGCTTCGAGAGACCAGATCAGAGAAATCGGAAGTGGGTTGGTTTCGAGTGGGTACAGATTCTTGTGGGTAGTGAAAGATAAAGTAGTGGACAAGGAAGACAATGATGGGTTAATGGAGGTGGTGGGGGAAGAGCTGATGAAGAAGATGAAGGAAAAGGGAATGGTGTTGAAGGAGTGGGTGAATCAATCGGAGATTTTGGGGCACAGAGCGGTGGGCGGAATTCTTAGCCATTGTGGGTGGAATTCTGTGATGGAAGCGGCGTTGAAGGGCGTGCCAGTTTTGGCGTGGCCTCAGATCGGCGACCAGATGATCAATGCAGAATTGGTTGCAGAGAAAGGGCTTGGGATGTGGGTTGAGAATTGGGGATGGGGCCAGAAATGTTTAGTGAAGGGCGAGGAAATTGGAGCAAAGATTAAAGAGATGATGGAGAGTGAAGTTTTGAGGGCAAAAGCTCAGAAGTTTAAGGAGGAGGCCATGAATTCAGTGGAAGTTGGAGCCGGAGGAAGCTGTGACAGAGCCATTGAAGGGTTGATTAAAAAATGGAACAGAGGCACTTGA ATGGCGATGAAGCGTCTTCTCACCCTCGCTCGCACCTCTCACCGCCGATCCTCCGCCTCCTTTTCACAGGCTGTCAGATCGGCGTCCACCTCCCCGGCGGTGGCCTCGTCTTCTCCACCTCCCTCTCCTCCGCCGCCCAATGCCATGATCTACGATCGCCTCGCGGAGGCTGTCAAATCCAAGCTCAAACAGCTCGAGAATCCCGACCCCAGGTTTCTCAAATACGGGTCGCCTCACCCGACCATTACTGACCACACCCGGATTCTGTCCGCGCCTGAAACTCGCATCACTACTCTCCCCAATGGCCTCCGGGTTGCTACTGAGTCGAACCTCGCTGCCCGGACTGCTACGGTTGGAGTGTGGATCGATGCCGGCTCGAGGTTCGAGACCGAGGAGACTAATGGCACTGCTCATTTCCTCGAGCATATGATCTTTAAGGGAACGGAGAAACGGACCGCGAGGCAGCTCGAGGAGGAGATCGAGAACATGGGTGGTCATTTGAATGCTTACACGTCCAGGGAGCAGACTACGTATTATGCCAAGGTCTTGGACAAGGATGTGCCCAAGGCTTTGGATATTTTGGCTGACATTCTGCAGAACTCCAAGTTCGAGGAGCACCGGATTAGTCGCGAGCGGGATGTGATTTTGAGAGAAATGGAGGAGGTTGAGGGTCAAACAGAAGAAGTAATCTTTGACCATTTGCACGCAACTGCATTCCAGTATACTCCTCTTGGTAGAACGATTCTTGGTCCAGCTCAAAACATCAGGACAATTACCAAGGATCATCTTCAAAGTTATATCCAAACACATTACACGGCTCCAAGAATGGTTATTGCTGCTTCAGGAGCTGTTAAGCATGAGGTTTTCGTTGAGCAAGTAAAGAAATTGTTCACTAAGTTGTCAGCTGAACCAACCACAGCTTCTCAGTTGGTTGCAAAGGAGCCAGCAATTTTTACTGGTTCTGAGGTTAGGATAATTGATGACGATGTTCCTTTGGCACAATTTGCTATTGCTTTCAATGGAGCCTCCTGGACAGATCCAGACTCCATTGCTCTGATGGTTATGCAGGCTATGTTGGGTTCTTGGAATAAAAGTGCTGGAGGTGGAAAGCATATGGGTTCTGAGCTGGCCCAAAGAGTTGCCATCAATGAAGTTGCAGAAAGTATGATGGCTTTCAACACCAATTACAAGGACACTGGCCTTTTCGGTGTCTATGCTGTTGCAAAGCCTGATTGCTTGGATGATCTAGCCTACGCAATAATGTACGAGACAACCAAGTTAGCTTACCGTGTTTCTGAAGCTGATGTTACCCGTGCCCGCAATCAGTTGAAATCTTCTCTATTGCTTCACATAGATGGAACAAGCCCAGTAGCTGAAGATATTGGGCGTCAGCTGCTTACATATGGTCGTAGAATCCCGTTTGCTGAATTGTTTGCAAGAATAGATGCTGTTGATGCAAGCACCATAAAACGTGTTGCAAACCGGTTCATTTACGATAGGGATATTGCAATTGCCGCATTGGGTCCCATCCAGGGTTTGCCAGACTACAACTGGTTCAGACGCAGGACAAAAGGGAGGGAGGAGGGACCTCCCTCCTCCGTCTCCGCGCCGGAGACCCAAATCACAGAACTCAAGCTCCATATCACACCTCTCGCTAACTCCGATGACCCATTTTTTCTTCAATTTGAGGCCATTCACGGCTCTGTTCACCGTCTAACGCCTCTCCTCTCCGCTCTCTCTCCACCTCTATCCGTCCTAATCTGTGACGCGTTGTTGATTTCCTCTGCTCTCACGCTTACTGCTACTTTGAAGCTTCCCAACTACGCCGTCTTCCCTTCCTCTGCCGCAGTGCTCTCGCTCTTTGCCCATTACCCGTTTGTTAAAATGCCTGATCCATCTAGCCACTTCCTTCCCATTCCTGGCATTCGTCCAATCCCCAAATCATCGATCCCTCCACTTCTCCTCGAGAATTGCATCTTTCAGAGACTATTTAAGCAAAATGGTCAGAGGATCAAAGAATTGAATGGGATTTTGATCAACGCGATGGACGCCATGGAAGGAGATACTCTCGCTGCACTCAACAGCGGGAAGAACCCAGAAGCCAAATCTCCCATACAATGGCTGGAAAGTTTACCTCCGAGATCGGTTGTTTTTGCTAGCTTCGGCAGCCGGAGCGCCGCTTCGAGAGACCAGATCAGAGAAATCGGAAGTGGGTTGGTTTCGAGTGGGTACAGATTCTTGTGGGTAGTGAAAGATAAAGTAGTGGACAAGGAAGACAATGATGGGTTAATGGAGGTGGTGGGGGAAGAGCTGATGAAGAAGATGAAGGAAAAGGGAATGGTGTTGAAGGAGTGGGTGAATCAATCGGAGATTTTGGGGCACAGAGCGGTGGGCGGAATTCTTAGCCATTGTGGGTGGAATTCTGTGATGGAAGCGGCGTTGAAGGGCGTGCCAGTTTTGGCGTGGCCTCAGATCGGCGACCAGATGATCAATGCAGAATTGGTTGCAGAGAAAGGGCTTGGGATGTGGGTTGAGAATTGGGGATGGGGCCAGAAATGTTTAGTGAAGGGCGAGGAAATTGGAGCAAAGATTAAAGAGATGATGGAGAGTGAAGTTTTGAGGGCAAAAGCTCAGAAGTTTAAGGAGGAGGCCATGAATTCAGTGGAAGTTGGAGCCGGAGGAAGCTGTGACAGAGCCATTGAAGGGTTGATTAAAAAATGGAACAGAGGCACTTGA MAMKRLLTLARTSHRRSSASFSQAVRSASTSPAVASSSPPPSPPPPNAMIYDRLAEAVKSKLKQLENPDPRFLKYGSPHPTITDHTRILSAPETRITTLPNGLRVATESNLAARTATVGVWIDAGSRFETEETNGTAHFLEHMIFKGTEKRTARQLEEEIENMGGHLNAYTSREQTTYYAKVLDKDVPKALDILADILQNSKFEEHRISRERDVILREMEEVEGQTEEVIFDHLHATAFQYTPLGRTILGPAQNIRTITKDHLQSYIQTHYTAPRMVIAASGAVKHEVFVEQVKKLFTKLSAEPTTASQLVAKEPAIFTGSEVRIIDDDVPLAQFAIAFNGASWTDPDSIALMVMQAMLGSWNKSAGGGKHMGSELAQRVAINEVAESMMAFNTNYKDTGLFGVYAVAKPDCLDDLAYAIMYETTKLAYRVSEADVTRARNQLKSSLLLHIDGTSPVAEDIGRQLLTYGRRIPFAELFARIDAVDASTIKRVANRFIYDRDIAIAALGPIQGLPDYNWFRRRTKGREEGPPSSVSAPETQITELKLHITPLANSDDPFFLQFEAIHGSVHRLTPLLSALSPPLSVLICDALLISSALTLTATLKLPNYAVFPSSAAVLSLFAHYPFVKMPDPSSHFLPIPGIRPIPKSSIPPLLLENCIFQRLFKQNGQRIKELNGILINAMDAMEGDTLAALNSGKNPEAKSPIQWLESLPPRSVVFASFGSRSAASRDQIREIGSGLVSSGYRFLWVVKDKVVDKEDNDGLMEVVGEELMKKMKEKGMVLKEWVNQSEILGHRAVGGILSHCGWNSVMEAALKGVPVLAWPQIGDQMINAELVAEKGLGMWVENWGWGQKCLVKGEEIGAKIKEMMESEVLRAKAQKFKEEAMNSVEVGAGGSCDRAIEGLIKKWNRGT Homology
BLAST of Lag0000722 vs. NCBI nr
Match: XP_022144443.1 (probable mitochondrial-processing peptidase subunit beta, mitochondrial isoform X1 [Momordica charantia]) HSP 1 Score: 1001.5 bits (2588), Expect = 4.7e-288 Identity = 512/523 (97.90%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. NCBI nr
Match: XP_022998263.1 (probable mitochondrial-processing peptidase subunit beta, mitochondrial [Cucurbita maxima]) HSP 1 Score: 999.6 bits (2583), Expect = 1.8e-287 Identity = 513/523 (98.09%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. NCBI nr
Match: XP_022930581.1 (probable mitochondrial-processing peptidase subunit beta, mitochondrial isoform X1 [Cucurbita moschata]) HSP 1 Score: 998.8 bits (2581), Expect = 3.0e-287 Identity = 513/523 (98.09%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. NCBI nr
Match: XP_023527776.1 (probable mitochondrial-processing peptidase subunit beta, mitochondrial [Cucurbita pepo subsp. pepo]) HSP 1 Score: 998.4 bits (2580), Expect = 3.9e-287 Identity = 513/523 (98.09%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. NCBI nr
Match: KAG7018162.1 (putative mitochondrial-processing peptidase subunit beta, mitochondrial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 998.0 bits (2579), Expect = 5.1e-287 Identity = 514/523 (98.28%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy Swiss-Prot
Match: Q42290 (Probable mitochondrial-processing peptidase subunit beta, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=MPPbeta PE=1 SV=2) HSP 1 Score: 827.8 bits (2137), Expect = 1.2e-238 Identity = 419/528 (79.36%), Postives = 476/528 (90.15%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy Swiss-Prot
Match: P11913 (Mitochondrial-processing peptidase subunit beta OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) OX=367110 GN=pep PE=1 SV=1) HSP 1 Score: 468.0 bits (1203), Expect = 2.4e-130 Identity = 252/465 (54.19%), Postives = 333/465 (71.61%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy Swiss-Prot
Match: Q3SZ71 (Mitochondrial-processing peptidase subunit beta OS=Bos taurus OX=9913 GN=PMPCB PE=2 SV=1) HSP 1 Score: 464.9 bits (1195), Expect = 2.1e-129 Identity = 230/430 (53.49%), Postives = 308/430 (71.63%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy Swiss-Prot
Match: Q5REK3 (Mitochondrial-processing peptidase subunit beta OS=Pongo abelii OX=9601 GN=PMPCB PE=2 SV=1) HSP 1 Score: 461.5 bits (1186), Expect = 2.3e-128 Identity = 230/429 (53.61%), Postives = 307/429 (71.56%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy Swiss-Prot
Match: Q03346 (Mitochondrial-processing peptidase subunit beta OS=Rattus norvegicus OX=10116 GN=Pmpcb PE=1 SV=3) HSP 1 Score: 460.7 bits (1184), Expect = 3.9e-128 Identity = 233/431 (54.06%), Postives = 305/431 (70.77%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy TrEMBL
Match: A0A6J1CT95 (probable mitochondrial-processing peptidase subunit beta, mitochondrial isoform X1 OS=Momordica charantia OX=3673 GN=LOC111014126 PE=3 SV=1) HSP 1 Score: 1001.5 bits (2588), Expect = 2.3e-288 Identity = 512/523 (97.90%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy TrEMBL
Match: A0A6J1KG96 (probable mitochondrial-processing peptidase subunit beta, mitochondrial OS=Cucurbita maxima OX=3661 GN=LOC111492954 PE=3 SV=1) HSP 1 Score: 999.6 bits (2583), Expect = 8.6e-288 Identity = 513/523 (98.09%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy TrEMBL
Match: A0A6J1ERB4 (probable mitochondrial-processing peptidase subunit beta, mitochondrial isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111436988 PE=3 SV=1) HSP 1 Score: 998.8 bits (2581), Expect = 1.5e-287 Identity = 513/523 (98.09%), Postives = 518/523 (99.04%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy TrEMBL
Match: A0A6J1IZR5 (probable mitochondrial-processing peptidase subunit beta, mitochondrial isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111479917 PE=3 SV=1) HSP 1 Score: 995.7 bits (2573), Expect = 1.2e-286 Identity = 512/523 (97.90%), Postives = 517/523 (98.85%), Query Frame = 0
BLAST of Lag0000722 vs. ExPASy TrEMBL
Match: A0A0A0L0I1 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G093000 PE=3 SV=1) HSP 1 Score: 993.8 bits (2568), Expect = 4.7e-286 Identity = 508/523 (97.13%), Postives = 517/523 (98.85%), Query Frame = 0
BLAST of Lag0000722 vs. TAIR 10
Match: AT3G02090.1 (Insulinase (Peptidase family M16) protein ) HSP 1 Score: 827.8 bits (2137), Expect = 8.6e-240 Identity = 419/528 (79.36%), Postives = 476/528 (90.15%), Query Frame = 0
BLAST of Lag0000722 vs. TAIR 10
Match: AT3G02090.2 (Insulinase (Peptidase family M16) protein ) HSP 1 Score: 788.1 bits (2034), Expect = 7.5e-228 Identity = 400/505 (79.21%), Postives = 455/505 (90.10%), Query Frame = 0
BLAST of Lag0000722 vs. TAIR 10
Match: AT1G51980.1 (Insulinase (Peptidase family M16) protein ) HSP 1 Score: 186.4 bits (472), Expect = 1.0e-46 Identity = 156/517 (30.17%), Postives = 262/517 (50.68%), Query Frame = 0
BLAST of Lag0000722 vs. TAIR 10
Match: AT3G16480.1 (mitochondrial processing peptidase alpha subunit ) HSP 1 Score: 186.0 bits (471), Expect = 1.3e-46 Identity = 152/515 (29.51%), Postives = 253/515 (49.13%), Query Frame = 0
BLAST of Lag0000722 vs. TAIR 10
Match: AT1G51980.2 (Insulinase (Peptidase family M16) protein ) HSP 1 Score: 171.8 bits (434), Expect = 2.6e-42 Identity = 146/467 (31.26%), Postives = 238/467 (50.96%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (AG-4) v1
Date Performed: 2022-08-01
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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