Tan0015320 (gene) Snake gourd 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.GATTCTCTATGATGGACGTAGCAAAATGCAGGAGAATAAGATCCAATGCATTATACATTATTTTAGAAGGGTATGCTCCAATATTCCGGTGGGGTTTGTCTCCTTTGAAAGGAAAGTCCTCCCTTTGGACAAATGCGTAGAATATTTTTGTTGTCCAAAGGTCAAGTTTTGGATAGACTCTGCCATTCCTCTCTGTCAATTTAAGGTAATATTTGACTTTGATTTCTGTGATGGTGTAATTATTGCATGACATCATACTCGAAATGCTTTAATGTTTGGAGGATGATTGAGTTGGTACTTTTTTCCCCATATAGGTTAAAGATTCTGGCCTAATAGAAGATCAAACATTTGGAGCTCTTGAAGTTGATTTTGCTAATGAGTATCTTGGTGGTGGCGCTCTTCATTCCGGTTGCGTGCAGGTCTAATTTATGAACTTATGTTTAACCTTTTCAGTTTTATATTGACTATTGATGTAAATAAAATATAAAAAAAGGGTACATTGAAAGGGTTATTTAAAAGTACGATTTATTAATTTAATTCGAGATGTTGCTTTTGGGACCTAGGGTTCCTTGTTTGTCCGCTTTGTTGTCGTCAACACGACCGCCTTTAGTCCATAGCTCTCTAGGATCCGAATCTCTGTCCTTCGTTTGATGTCACAAATTTAGTAACTTCTTCACTGCAGAAAAGGAGGCTTTTTGTGGTCTTTCTGATTTGTTCATTCGAATCTAAAAGAAAGGGCTATTTAAAGGATCTCTAGGTGGTATGTATAGAGGTAATTCAGAAAGTGTTTAGACTCGAGAGACACTAGGAGGAAAAATGAAAATAACGACAGTCAGATCTCCCTCTTCTCCATTGAAACCTCTTATTTTCTTTTGAACAAACGTATGTAATTGCAATCTGGCCATTGACCTGACCCAAATCCCAGCTTACACACCCATGACCATATAGCCCTTGGAAAATAAATTCTCACGTATTGGAAAGGGAAATCGGCTTCCGTAGGTCTCCAAGCATCCGTGCTACAGAGAAGCCACCAGCTTAATATGAAGAAGAGATAGTTGGAGTCTTAACTCACCAACCTTAAACAGATGGCACTAGTTTGGACTTAGAGCTATATGAGGATTTCTCTTTTGAACTTCGTTGTTAGAGTTGGGGCCACTCAAAGAGAGCCCATACACTTTTTGGAGATCTAGGACCTCCTAAGCCTATTACAAAATGCTTCATTTAAGATCGGAACTCCTCGGGACAAAAGGAGATAACTGGTCTCGTCATCACTGACTTCCTCCAGTATCATTTAGTAGAATAGAGTAACGTACCTTACCATGATCGCAGTGCTCTTGGAAAGTAAATTCTACAACGGTTCATGGAAAGGGAAACTGGCTTCTAAAGGTCTCAAGCATCATGTACCCACCACGGTACAGTAAAGAAGAGATTGTAGAAATCAAGCTACAAATTTAGATTTCTATTCAAATTTGGAGCTCTTGAAGTTGTTTTTGCTAATGAGTATCTTGTCCAAGGGAGGCCGTTGCACACTCATCCAAGCTACTTTATCTAACCTACCCATTGTCCCTCTTCCAAATATCATCAAAGGTGGCATTGAACATTGAAAGGCTTTACCGCAACTTTCTTTGGAAAGGAGCAGCATACAAATGGATCACGGCTTGTTAGATGGGAGAAAATCACCCTCCCAGAGGATCGAGGGGGTTTCGGACTACGGAGAATTAGGGACAAGAATAGAGTCCTATTGGCAAAATGGACGAGGAACATGCTTTATGGAGACAAATTGTTGATGCAAAATATTCACTAAATTCTTGGCCTGACAACAGAAATCTTGCCACTGTCAAAGGACCATGGAAATTTATTTTGAAGCAGCAGACTTGTCCAAGATAGGGTCACTCACAATTGGGAATGGGGAAAATACTTTTTTGTGCGTGATTGTTGGCTTCTGGATGAACCCCTGGCAGCTAAGTTCGCACAGCTTTTCTCATTATCTCTCCCAAAAAAAAAAAAATATCTCCATACAAGATTCTTGGAACGCTTTCGTAGTTGGAACCCTCAATCTTAGAAGAAATTTACTTGAAGACGAAATAAAAGAATGGGCTTAGATTCTCAGATCTCCTGGCAGCCGTAAATTTATCAAATTCTAAAGATTTAAGGATTTGGAGGTTAGAAACAAAAGGAACCTTCATACTAAATCTCTCCTTTGTGGCATTAGTAGCAACATGGACCCACTCATCCTACACAGCCCCTCTTATACAAAGCATTTTGGGCGGACCATTACCCCCAAGAAAATTAAAATTTTCCCATGGGAGCTAAGCCACAAAGCCATCAACATTAGACAAATTACAGCGTGGCCTTCCACGTATTTCTATGTCTCCTCAATGGTGCCCACTTTGCAAAAAAGTTCCTCAGTCTGGGACATATTTCCCTCGTTCTTTTGCTGATTATTTTTGGAAAAAGGTTCTTACCACTTTTGGCTGGTATATGACCCTCCCATTTAATCGAAATTGCAACCTCAACTACACCCTAAATGGCCATCCGTTCACTGATGGGAATAATGCTCTTTTGTACAGATGGGAAGAAAGCTCTTTGGATGCACCCTGTTTCAATTTTTTTTTGTGGACTACTTGGATCAAATGAAATTGATAAACCCTTGATTACAAAAGTGTATACACGTAGAAAGGGAAGGAAACGGGGTGTGGGTGGGATTTAGCTGGCATAGACATACTAAATCCAATCTCAGACAACAATTGATGTATCCACACTATTTCACACACAGACTACGACATATCTCTATATATTTTGACTCATCACTCGAACGTGATACCACATTTTGCTTCTTACTCTTCCATGACACCAAATTTCCTCCTACAAAAACACAATATCCAGATGTTGATCTTCTATCTTCTTTAGATCCTGCCCAGTCAACATCAGAAAAACATTCGATCTTTGTATGAACGTGATCTTTATATAAGATCCCGCATCCACGTGCGGCTTTTTAAGTAGCATAGAATTTGTTCAACTGTAACCCAATGATCCACAGTAGGCGAAACATATATTGACTCACAACACTTACTGAATAAGCTATGTCTGGTCGTGTTACTGTCAGATAATTCAACTTTCCAACCAATCTTCTGTATCTCTCAGGATCTTTAAATGCTTCTCCTTCTTTGGTGAGTTGCAAATTAGGTATCATCGGAGTACTACACGGTTCAACTCCTAGTTTTCCTATCTCAGATAGCAAATCAAGTACATATTTTCGTTGTGACAGGAAAATACCTTTCTTTCTTCTCACCCCTTCAATGCCCGAGAAATACTTTAATGTTCCCAGATCCTTAGTATGAAACTGACCTTGAAGGACAGTTTTCAAAGAGGATATACCTGATGTATCATCTCTAGTGATAACGATATCGTCGACATACACTACAAGCAGTGTAATACTTTTCTTAGATCGTCGATAAAAGACATAATGATCAGATGTGCTTTTCTTCCTTCCAAACTGCTTAAGTGCTTGATTAAATTTACCAAACCATGCGCGTGGGCTCTGTTTCAATCCATACAAAGATTTTCTAAGATGACAAACTTTATCACTCTCCCCCTGAGCAACAAAACCAGGTGGTTGCTCTATATATACTTCTTCCAGAAGATCACCATGGAGAAACGCATTCTTAATGTCTAGCTGATGCAAGGGCCAACAGTGAGTAGCATCCATGGAAATAAACAATCGAATAGAAGTTAATTTAGTAACTGGAGAAAATGTGTCAGAATAATCTATCCCATAGTCTGAGCATAACCTTTAGCTACCAAGCGGGCTTTCAAGTGAACAACGGACCCATCGGGATAAACTTTAATGGCAAATACCCATTTACATCCAATAGCCTTCTCACCTGCAGGACGGGATACTAAATCCCAAGTACTATTGTCATCTAAAGCATTCATTTCTTCGATCATTGCATTACGCCAGCCAGAATGAGATAAAGTTTCATGAACAGAGTTAGGAATAGAAGTAGAATCAAGGGATGTAATGAAAGATTATGTAGGTTGGGACAACTGGTGATAAGAAACACAAGAAGCAATAGGGTAAGTGCAGGTGTGTTTACCTTTACGAAGGGCAATGGGGAGCTCATCACAAGTTCCTGGATCAGATGCCAAAGAATCTTCTGGTATAGGACATGTGTCTGAGGTTGTTGTGGTATCCGTCTGGTGTAAACTTGAGTAATAGGCGGACGCTGAGGGATAGGTGCTGAAGGAGATAGAGTAGGGAGAGTTGAAGGAGAGACAATCTCATAGATAAGTGTGTCGTCCTCCCCCTGACATGAACTCGACGATGATGAGGTAAATCCTCAAAAAATGTAACATCAGGAGAGACAAGATACTTGTTAAAACTAGGACAATAACAACGATACCCCTTTTGAACACGAGAATAATCCAGAAAGATGCATTTTAAGGACTTAAAATCTAACTTCGTACGATGAGGACTGATATCTCAAGCAAAACAAGTGCAACCAAATATTTTGGGTGCAATTGGGAACAAAGATTTAGTTGGACAAAGAACACGATAAGGGATCTTACCATGAAGAACTGAGGAAGACATTCTATTTATCAAAAAACAAGCTGTGGAAATTGCATCTGCCCGAAAATGTTTTGGAACATTCATTTGAAAGGATAAAGTTTAGCTGTTTCAAGTAAGTGTCGATTTTTTCGTTCAACGACCCCATTTTGGGATGGAGTATCAGTGCAAGAGGATTGATGAAGAATGCCATTTGTACACAAGTAAGATCCCTACATGTTAGAAAAATATTCACCTGTATTATCAGTGCGCAAAATTTTAACAAAAACATTAAACTGATTCTGAATCTCAGCATGGAAATTACAAAAGTGAGTAACTCAGAATGACTCTTCATTAAATATAACCAAGTCAGACGTGAAAAATCGTCGATATATGTAACAAAATCGAAATTCAGTTTTGGACATTACAGGACACGGACCCCAGACATCAGAATGAACTAATTCAAACGGAGCACTAGCTCGTTTATGGACCCTAGGACTCGAACTAAGACGATGAAATTTTGCAAACTGTCACAACTCACAATCCAACGAAGACAGAAAAAAACTCTGGATACATTTTCTTTAACACGGGCAAAGATGGATGACCTAAACGACAATGGACCTCAAACGGAGATGCAACACTAGAGCATGCCACAACTTTCGGTATTTGCTGATAAAAAATGTAAAGGCCTTCAGACTCATATCCTTTACCAATAATCTTCTTCGTCATACGATCCTGAAACAAGCAATAACCAGGAAAGAATGAGATAAGACAATTAAGGTCACGAGTGAGTTTACTAATAGAAATCAAATCAAACGAAAGTCGAGGCAAATGTAAGACAGAAGATAAGGAGAGTGAGGGTGTGAGGTTAATGGTGCCAGATCCATGAACAGAAGATGTCAAACCACCTGCTAAAGTGACAGATAGAAAAGGTGCAGAGGAAAGAGGTACAAAATAGGCTAGAATTACCTGTCATGTGAGTTGTGGCACCAGAGTCGATGACCCATTTGGTGGAAGATGTAAGGAGACGATGATTCTTACTTGATTCAGCAATAGTTGCAATAGGATTTGATGAAGAAGATGCTTGTAATGAGTCCTGGTACGACTGGAATCTAGCAAGTTCGTCTGCAGAAATAGTTATCGTTCTCTCAGGTGTATCATTTGTAGACGCAAGCTGAGCTACTTCAGGTCTTTGCCCCCTATTCAACAACTTCCAACAGTCAGGTTTCATGTGGCTCGGCTTACGACAATAGTTACATATAATCTCTTGTGACTCTTGTCGTCGATGATGATCAGAACCAAGTCTTTGATGGTTCTCGGCAACGGAACCATGGATGATCAGAACCAAGTCTCTGATGACCCGGCTTACCATTCATTCCTTTAGTGACCTTAGGATCATTGCAACTAACTAAAGCACTGTTGGACTGAGAAACAGAAGAACCAGACGAAGAATTCTTTGTACGGAGAACTCTACTTAAAACTTCATCCAAAGAGGGGATCTCGGATCCTGAGAGAATTTGTGATTTGGCCATATCAAATTCAGAGGAAAGGCCATTAAGAAAGCTCATGACACCCATCTTTTCTCTTTGAGCTTGTTGAACCTTTACGTCTGTACTAAATGAGAGTAAAGTGTTAAATTCTGCACGTCTTCTTAACTTGCATAAAATAATTCGTGACAGATTGGTCTCCCTGTTTTCACATGTAAAAGAGTTGTGCAGACTTCATACATTCGGTTAACTTGCTCTTTTTCTGAGTATAAGAATTCTAAAAATTCGAGCAGTTCTTTTACAGAATCACAGTGATTTACCAATCCAACCACCTCACTCTCAATTGAATTCTTGATTTAAATATACAAACGAGCGTCATCGTGCAACCAAGTCCTCCTTGTATCGTCCTCTGGTGGATCCTAATCGATATGATTATCCATCTCAGTGCTTCGTAAATAGAACCTAATTGTTCGACTCCAATCATAATAGTTTGAACCATTCAATTTATGCTCCGTGATACGTTGTGGCCTGCGATATAGGAATCATATCCTCCTCGACCATGAGAAATTGGTTAGATGGATTTAGGAGAAGAAGCCATATTAAAATAAATTTACAGTAAACACAAAATTGAGGGAGAAAAGCTGATATGATATGCTAATACAAGAAAGGAAACATATTGGAGGACTTAATTATCCAAGCTATTACAACACTATTAGTAATACATGTTATAACATTTGAGATTGAACATCTTATTAGAATGAAACATGATTTGCAATATATTTATGTTATTTTGGCAATTCTATGTAGGAAGAGATCCGTTTCATGATCAACCCTGAATTAATTATTGGCATGCTTTTCTTGCCAGCCATGGCAGATAATGAGGCGATAGAAATAGTTGGGGCAGAGAGGTTCTCAAATTATACTGGGTGAGTTATAATCACTTCATCATTAATTTTGTAACTTCTCGAGTTTAGTAGAATGTTCTTAGTATTTAGTTCAACCGCTAAAATGTCATTTATCTCCAATTAATATTGATAGTCCATTTGTTGGGTTTCATATATTTTTCGAGCCCGCAAGTGAGGGAGTGTTAAGAATATGCTAAAAAGATCAAATTTACCATAATCTATAACTTAAGGTTTTGTGTTTAGTGGTAATTTAGCTGAAGTCGTGGTGGTAATTGATATAAACCAAGACATCTCATGAAGTCACATTAAATGAAGTCAGGTTCATGGAAGGTTAACATAAGTTGCATTTAATGAACTCAAGTGCAACTCATCATTAATGATATGAACCAAGGCATCTCATGAAGTCACATTAAATGAAGTCAAGTTCATAGAAGTTTAACATAAGTTGCATTTAATGAACTCAAGTGCAACTCATCATTTATTAAAGAACAATCAAGTTTCATTTATGGAACAAGGGCTTCAAGATAATTCAAGAGGAGTTTCATTTACTCTTAGATGGCTACAAAGAGTTACAAAGTCAACAAAGAGACTTCAATCTCGGATTTATGGATATTTTGATGTAAATTTCAGTTTTAAAGTCTTGTTTTCAATAATTTAGGTTACAATTTGGTTAGTGGAGATCATGGTTTTGATGGGGATGTAAGTTACAACCTTTCAATTGACCATAGGTTACTCTAGGGTTGATTTTGAGGCTATATAAAGTCATGTTCCTTGGGGAAGGAGAAAAAGAAAAATTGAAAATGTAATCAAAAGGAGCCTTTGTGCTTTATTATAGACTAGTGCTATGTTTCTTTGCAATTCTATGTATATTAGGTTGCATGCTTAGAATCATTCAAGCTTGACTTGATCAATCTTGCTTGTGGAGTGATTCGGATCTCATACAAGTTCTCTTGCCTTGAGATGTTTGATCGACAAGGTAATCCGATTTTACTTTTCCTTGAGTTGATTTTCAAAATTGGTTTTGGGGTCTTTGAAATTGAGTTATCTAAAGGTCTTGTTTCTTTAAGTAAGGTTGTTAGATCCAATTGTAAAGGGTTACTTAACATTTTGACATTAGAAACTTTGGCTTCTTTGATTTCATTTTGATTTGGAGATTTTTGGGGTTTAGATCTAATAGTCTTGTTTGTTGTTAACAAGGTAGATTAGATTTTTTCTAATTCCTCTTAAATTTCACATCATTTGGTATCTGAGCCTTAGGCTCAAGATCGGATATATGTTTCCTTTGCGTTTATCTTGAATTTGTTTTAAATTTTCATGTTTTAGTTTTTTTTTTTTGTTTTGCAAACTGTCCAGTTTTCATAGTGTCTGAAAAAGCATCGAAAAGTCATATTTCTACAATTGTTTTCATCCTGATGTCTTCATAATTGTTGTTTTTAGAGGATGTAGGGGGGAAAGGAGATGGAGGGAGAAAAAGGAGAGAACACAACGGGCGGCTAGGGTTTACATTGTGAAATGATATTGTGTTCTATTGATATTGAGATACAAGGCTAAAGGTCCTATTTATAGGACAATATAAAATAAAATAAAATAAAATCTAATCTAATGCAATAAAGACTAAGATCTAATGCAATAAGGACTAAGATACTAAGATATTCTAACATCCCCTCTCAAACTCACAATCTTATGTGAGTTTGCTAGGATGAGGTAAGCATGCCAGGAAGCACAACAGAGGCGGCGGCAGTGCGCCAAGCACAACAGCATGTGACAGAATCTAGAAGCATATGAGGCAGTGCAAGCAGCAACAGAGGAGGGCGGAGGGACAGTCTTTGAAGCACAACAGAGGCGGCGGGCAGGTGCCGAAGCACAACAGACAGGTGCCGAAGCACAACAGATAGACGATGTTGAAACATTACATGCAGATGAAAAACTAATCTAAACCAAGTAAAGCAAAATGAACAAATGACAAACTAATCTAAACCAAATAAAGCAAAATAAACAAAATAAAGTGACTCAACCAAAACGGTCGGCGAGATCTGCATCGGGTCGGATCTGATGCAAACAGAAAACTGAGTCGGACGTCAAGATCTCCACCAGGACGAACGAATCCTCGATCTGAACAGGTGCTGATCTGGAGACAGAGATCTGAAGCAGGGATCTGGAGATGGATATCTGAAGTAGGGATCTGGACATGGATATCTGAGGCTCGATGAGACAAAGATCGGAAACCTCAACGAGATCTGAGGATGTTTGAACCCTGGAGGAGACAGAGATCTGAAGCGGACTCGGATCTGATCGGATGACAGTGAACGGACGGTAGCGGCGACAATAATGGTGGTGAAACCCTAACTTAGGGCTCTGATACCATGTTGTTTTTAGAGGATGTAGGGGGGAAAGGAGATGGAGGGGGAAAAAGGAGAGAACACAACTGGCGGCTAGGGTTTACATTGTGAAATGATATTGTGTTCTATTGATATTGAGATACAAGGCTAAAGGTCCTATTTATAGGACAATATAAAATAAAATAAAATAAAATCTAATCTAATGCAATAAAGACTAAGATCTAATGCAATAATGACTAAGATACTAAGATATTCTAACAATAATGATTGTAGATCAGGGTCTAAGCTTGAATCTCTTCTTCTAAGAGATTTTATAATTCAGCTTTTTTGTGGGTAAAAAGTATGCATTTTTACAACTTGTTCTGAAAAAACTACTATTGCCGAGAACATGAGTTCTTGTTTTGTTCTTGCTGTTTTTGCTCCTAAAGCATGCTCAATCCGAAAATTTCCAATTAGATCTGATCATTATGTTTAAATTTAACCATTTGGTATTCATTCTTAGATGTTACACTTTGAATGTTTGCAATGTTGGCTAAAATATATTAAATATGGGCAGTTACATTTCTGCACATTGAATTTTCTAGCCATTAGTTTCACATTGTAACTCATATGTTTTAAAAGTCCAACCATTGGTTTTAAATAGTAACTCTTGTATTTAAAATTCTAGTCATTGTTCTTAATTTGTGAGAGTTACATTCTTGTTCTTAATTTTTCTACACTTAGATAAAATTTTCATAGGTTCATCATTCTGAATTTTTCTTTTCATAAGCCTTGTTTTGCTTCTTTTTATTCAAAGAGTGCTACTATCTATGGGATTGCAAATCTTGGCTCAATACTTCAAAAAAAATTGAGAGGTAAGAATGAGAGCTTATACAGTTTGATTTCTCAAAATGAACACAAGTGATATTTCCTTGAGTGTAAACATGTGAGAGAGTGTTGTGAGGTCTTTTTGTGTTTTCTTAACATGGTTTTGTTTCACAAGTAGATTCGAGGACGAATCTTTTTGAAGAAGGGGAGAATGATATGAACCAAGGCATCTCATGAAGTCACATTAAATGAAGTCAAGTTCATGGAAGTTTACATAAGTTGCATTTAATGAACTCAAGTGCAACTCATCATTTATTAAAGAACAATCCAGCTTCATTTATGGAACAAGGGTTTCAAGATAATTCAAGAGCTTCATTTACTCTTAGATGGTTACAAAGAGTTACAAAGTCAACAAAGAGACTTTAATCTCGGATTTATAGCTTTTGATGTAAATTTCAGTTTTAAAGTCTTGTTTTCAATAATTTAAGTTACAATTTGGTTAGTGGAGATCATGGTATTGATGAGGATGTAAGTTACAACCTTTCAATTGACCATAGGTTACTCTAGGGTTGATTTTGAGGCTATATAAAGTCATGTACCTTGGGGAAGGAGAAAAAAAAAAGTTTTGGAAAAATGTAATCAAAAGAGGCCTTTGTGCTTTTTTTATAGCCTTGAGCTATGTCTTTGCAATTCTATGTAGATTAGGTTGCATGCTTAAAATCATTCAAGCTTGACTTGATCAATCTTGCTTGTGGAGTGATTCGGATCTCATACGTTCTCTTGCCTTGAGATGTTTGATCGACAAGATAATCCGATTTTACTTTCCTTGAGTTGATTTTCAAAATTCATTTTGGGGTCTTTGAAATTGAGTTCTAAAGGTCTTGTTTCTGTAAACAAGGTTGTTAGATCCAATTGTCAAGGGTTACTTAACATTTTGACATTAGAATCTTTGGCTTCTTTGATTTCATTTTGATTTGGGGTTTTTGGATTTGTGATCTAAAGGTCTTGTTTTATGAACAAGGTTGTTAGATTTTTAAATTCCTCTTAAATTTCTCATCAGTAATTCATCATTAAACTTAAACGCTTGAGTTGATAATATAACTTATCAACTTAAGTAGAGCTTAGTGGTAATTTAACGGGTTTTAATACCTTGTTAAATTACTACTAAGCCTTACAACTTACACTTAAGTTGATAGATTAGAGTAAATTAAAAAATATATATTATTATTATTATTATTATTATTATTATTTTGCTTTGATCTCTACCATATCTTTTCATGTCAATAATTTATTGCCCATTCCTCATATTGCTCCATTGTTCTTTTATCATTGACGCATTATGCTCTGTTAGAATCTATATTTTCTCTCTTATTAAAAGGAAAAGAAAAAGGAAAGGGAAAAAGAAGAATCTATATTTTCTCTATGAAGATTCCTTGACATTCGTTTATGAAATTCTGTCTACTTCAAATTTCTGATTATGAAATCATCTGCAAGAGATGTAGGTATGCTTCCAACTTTCGTTTTGCTGGCAATCATGTGGACAGACAGGAAATAGATTCACTTGGAAGACGCAAGACCTTTATCACTGCTATAGATGCATTGTGCAGTCCAGGGATGAGACAGTACAGATTAGAATTCCTTCTTCGGTAAGCAAGCCTGTCCAGAATGGCATTTCATGAAGTTATTTGAGGAACTCACGAATAACTTTTTTTCTTTTAGTTTGTTAACAATGTTTGAGATGTTAGCTCAAACTATCATTTGTCTTTTGTGAAATACTTTCTCTTTATGCAGTGATAGATGTCCTTAGTGGACTGCTGGTGACAGTGGTGAGCGTAGTAGAGTTGGAGTTGGAAGGAATAGTATTTAGGTCCCATTTTTATTTTGTGAATGGAATGGAACCTTGATCTTTTGTCTCCCAATCAAGAAGATATATTTAATATGCATACTGTAATGAGAATTTTTCAGCTCGTTTCTCGACTTAAGAACAACTTCAGTGAAAGTATGGTGGGAAGGGTTCAGGGAAGTGGAGTTGTAGGACATTGCTAACCTATTTGCATGTTCTGCTACTTATTATTCAATTTCTAAACTTCTCCGTGGGAGGCACATCTTCTATGGATTTTTTGGAGCCTATGGTGGAGAAATTAACTATAAGCAGCCATGCCAATGAAACCCAAACCAATCCCAAAGCCTTTTTTTTGGAGAAGTCTAAACCTGGCTCAAAAACAAAGAATTTGATTGAATAAGATAAAACATCTCAATCACCCTAAATTTCCTTAATTAATCCTATGTTTAGAACTTGTTGAGTTCATTAGGGATTTATCTTTTAAGTGGGGCTAAGATTTGAATGTTAGGTCATCACTTTAGGGTGGCAATTTATCGCCAACACCATCCATCTAAGGAGGAGCCACCACTGTTCAAGAAAAGCCAAAACATTTTTCATCCATCATAAAAAATTTCCTTGGGTTTTGGCCACCTCCCTCACACCAACCATATGAGTGGGTCATTGTAAGGGAATTAATAGGGATTTATGGGTAGTAGTAGTATGGTATTAGTAAGGGCATAAGAGTAATTAGTTAGGAAATTAGTTAGTGTATTTGGTTATAAATAGAGGGTAGACAACCAATTGTTGAGTGATTTAGGGCTTGAGTTAGCATACTCAAGAGAGGGGAGGTTTCAAGTGGCTTATATTTGATTTATCTTGTACTTGATTCTTTACATTTCAATATATTTCGGTTTTTGATTCTTGTTAGGTGGTACCCTAACTGTTGGTATCAAAGCATTGATTCTTGCCCAGGACTAGTTGGACCTAGATCGGTTGGATTGTCTGATAGAGTTGGTATTGGTAGCTCAACAGAAATGCGAGGAAACACATCAAATCATGAGAGAAATGTGAGAGCGTTGTGAGGAACTCGATTGCCAAAAGATGGAGAGAGAACAAAAACGTCAAAGAGAGAATGATGACAATAGCCGGGTTGGAGTAAACAAAGAAGCAATGAAGAAGAAAAAGAGCAAGGAAAATCATAGTAGATTAAGATTGGGCAAGAAAATCAACAAAAAAATTAATAGTTCGTAGTCGTAGAGTGGCGGGAAGGCATCGATCTTATGTGAGCGTACCTCTGGAAGCGCAAATTCTAAAAGTGTTTTCGTGTAAGGAAACCGTGGGCATGTACAAGAACTATCAATATGCAAAAGGAGAGTGACGGAAGGGAAGAGAAGGGTAGGGTGGTAAACTGAGCGACTTCGACGGTGGAGAGTCTTCTGAAAAGAAGTGATGGAGGGGAGCCAATATATTTTTTGTCGGAGTTTGAAGAACATTCACAAGGGGGCTGTAATAATACTCGGGGTGATGGAATCAGAGTCTCAAGGGAGAAGTCGCTGGCGAATACTATTGGAGCTGGAAAATTGGGGACAATGTCAACGACAAAAGAGTTCTAGTAGAGGAAGAAAAGAAAATAGCCAGTTTGTTGATTGTTGGTGTTGATATAATTAAATTTGCCATAACCTATCAGCTTAAGCTTTTGGGTTAATTGGTGATTTACATGGTATCAGAGCAGGAGGTCCTGTGTTTGAACCCTGGTGAAGTCGTTTTCTCCTAATTAATATTATTTGTACTTGTTGGGCCTTTGTTCAAATTTGTAAGCCCACAAGTGAGGGGGAGTGTTGGGGTTGATATAATTAAATTTGCCATAACCTATCCAGCTTAAGCTTTTGGGTTAATTGATGATTTACATTGAGAATCGGAGGAAATCAAACGTCGGCGGAGGCTATTGTTGGCAGCGAGGATTGGTATGATTGGAGATGAAAACGTGGTGGAAATGCCGACTGAATTATGGTGAATGGGCAACTAATTAAGGAGGGGTGCAGCCACCGAAAGAAAGAAGAAACAAGAAACAAGGAGAAAGGGACTAACCCTAATTATGTGGGCCAGATAGTGTGGAGTGGGCTTAGTTTAAAGGCAATAGTTGAGGCCCATCATTGCACGGTGGGAATGTATGAGTTTTGGCAAGATTACCTTTATTTTCAAAACTAGAAATTGATCTGTTGCTGCAAGGTCCTACTACCCACGTGGAGAAGGCCCAAACAGCTGCTGTTGTACATTGCCAACCACCACCACCTGTGTTGTCGCTGTGGAATGGGGTCGACAAAGCACTGACCAACTGGGTTGAGTCCTGTGTTAAAAAAAAAGGTCGATCATTACCCAATTTTGGGAGTGTGTTTTGATAAGACCACCTTGTCCTGTAACGTTGAAGGGCGGGGTAATGTAGGTTAACTAATAGAGATTTATGGGTAGGAGTAGTATGGTATTAGTAAGAGCATAAGATTAATCAGTTAGGGAGTTAGTGTATTTGGTTATAAATAGAGGGAGGAGGATTGAGGGAAGATGGACAATTGTTGAGTGAATTAGGGCTTGAGTTACCAAACTCAAGAGAGGGGAAGTTCCAAGTGCCTTGTACTTAGTTTATTTTGTAGTTTTTGGTCCTTCATATTTCAATATATTTCAGTTCTTGATTCTTGTTAGGTGGTATCCTAATAGTCACAAGTTTTTATTATTTTTTTAAATTTTTTGATTGCTAAGAACTCATCTGCTTTTCCTTATTCCATCTGTGTGCTTGGTTTGATAAGAATCTATTTCAGTGTTGAATCGTTCTAGATGTGAAGCTTCCCATCCTCCCACACGCGGCTGTGTGAGCTATTTTATTTTGGTCACTTGTTCTTGGCTCACATGCTTGTCCTTGTTTTGTGTATGAACAATTCTCATGTGCTTAGTTTGATTGGAGTCTGTCCAAGTGTCGAACTATTCTGTTTTTTGTTCATGCCTTTATTTTATTCTAATTTTGTGCATTCAGGTTGGAGTTTTCATCACTGAAATACTTCATTGATAATATGGCTAAGAAAGAAACTTGTAGCTCAATGATACATGAAACATTGTTGGAGATCTAATTTCACGAGGTTGTACTGTTTATTCACGGTAGATATGTTGATGACTTGTAAATATCTTTTTTGTTTGTTTGTTTGTTTTTGTTTCTACCTGTTTTTACATTTGTTTTTTATCTTTTGTTTTTTGTGTTTTCTTTTGTTTTGTTTTTTTGATCTCTTAGACAGATGAAGTTTTTGGTTCTAAATAGATTAGACAGTGGAGGTAGGATTTTTTGTTTGAGTTCAAAAAACTAGACTAATGTAGGTAATATCTCAAAACAAACAATACTCGTTACTATGGTGCTTAAAAGGTTCAACTCGATTGTTCAGTATTGATGTGGACGTCTTCTTGGTGAATGATAGCGTATTTTGTTCATTCTGATTATAATAAGCTGAAATTTTACTAATCTTGCTGAATTCAACAGGGAAGTCAACAAGGCATTCTGTGGTTTCTTTGATCAATCAAAATATAAGCAGTATGAGAGACTATTCTTAGAAAGTGAGGAAGATGTTATGCACCGCAATGACTTGTCCAGAGACAATCTCCCGGTAAAATTTCTCTTTCTTGTTCCCTGCCCTTTAAAATCATTCTAAAATAATGAGTTAGAAGCTTAAAGAGCGGTGCTATTATCTTAGGCGCATGAATCGACCTCCAATTCTGGAGAGAATTGTTTCGGTAAATCTCTCACTCCAGAATGCTTGGACCACAAAGGTGATATTGGGATTGCAACGGGCAATTGGGGTTGTGGTGCCTTTGGGGGAGATCCTCAAGTGAAGTCCATATTACAATGGCTTGCTGCTTCTCAGGTAACTCAGTGTTCGTATGAATAGCTTCTGAGAATCCCTAATATCAATATCATCCTCTAAAACTCTTTCCATTTTCTTGGTTCTCTTAATAACCAAAATATATGTTTTTCAGGCATTAAGACCTTTCGTTTTGTATTACACATTTGGCATGGAAGCACTGCAGAACCTAGAAAAGGTACATACCCCTCCCTTGATCTCTTGGAAGTTTCTGTATAGAGATAGTCTCTCAGATACTGAAAGGCTATTTTTAGCGATGACAATCGATAGCAGCTTTGTGAAAAACTTTCCAATTAGTTTTTTCTTCTCTCTAAAACCTATTCTAGTCCCATTCCTTTACTTTTAAATATTTTTATTTTTGTTCTTCAATTTTAGCCTCTATTTTCATTTGATCCTTCCAAGTTTCAAAGATTCTGTTTTAATTTTTAAATTTTGTATAAACAGTTCGTCATCGTTAATATTTCATTAATTTAACGTAAAATGTATTCTAACATATGGCCTACTAAATACAAAACAACTATTAAAAATTTTAATATAGATATATGTATGTATAAGAATGAAACAAGCAAAGTAGTTTTGTTATGGAAGATTAAAAAGAAATGAACATAATAAAAGTTGAATAGCAAAATAAGAAGTAACATTGTTGTAAGTTTTGTGATTCTTTTATTGGATATTATGGGACAGGTGAGTGAATGGATATTGGCACATAAATGGACAGTTGGTGATCTATGGAGTATGTTGGTGGAGTATTCTTCTCAAATATCAAAGGGACAAACTCATGTTGGTTTCTTTGATTGGCTCCTCCCTGCCTCCTCCAAAACTAACTTCTGTTGCTTCTCTTCATTTGGCTAATCCTGAATGCTCTCAGCAATGTTTGGATTAAATTATATAGAAAAATATCACTGACTGCACGAATTTATTATCTAAAATCTCATCAATAATTTTCTTGTTTTAATCGATGATAAGTTATTTACAGCTTCAGATAGATCAATAATTATCTTTCAAAGTGGACCCATTGTTTATTTTAAATTAGCAATGATTTGGCTAATCAATGTTCTGTATTA GATTCTCTATGATGGACGTAGCAAAATGCAGGAGAATAAGATCCAATGCATTATACATTATTTTAGAAGGGTATGCTCCAATATTCCGGTGGGGTTTGTCTCCTTTGAAAGGAAAGTCCTCCCTTTGGACAAATGCGTAGAATATTTTTGTTGTCCAAAGGTCAAGTTTTGGATAGACTCTGCCATTCCTCTCTGTCAATTTAAGGTTAAAGATTCTGGCCTAATAGAAGATCAAACATTTGGAGCTCTTGAAGTTGATTTTGCTAATGAGTATCTTGGTGGTGGCGCTCTTCATTCCGGTTGCGTGCAGGAAGAGATCCGTTTCATGATCAACCCTGAATTAATTATTGGCATGCTTTTCTTGCCAGCCATGGCAGATAATGAGGCGATAGAAATAGTTGGGGCAGAGAGGTTCTCAAATTATACTGGGTATGCTTCCAACTTTCGTTTTGCTGGCAATCATGTGGACAGACAGGAAATAGATTCACTTGGAAGACGCAAGACCTTTATCACTGCTATAGATGCATTGTGCAGTCCAGGGATGAGACAGTACAGATTAGAATTCCTTCTTCGGGAAGTCAACAAGGCATTCTGTGGTTTCTTTGATCAATCAAAATATAAGCAGTATGAGAGACTATTCTTAGAAAGTGAGGAAGATGTTATGCACCGCAATGACTTGTCCAGAGACAATCTCCCGGCGCATGAATCGACCTCCAATTCTGGAGAGAATTGTTTCGGTAAATCTCTCACTCCAGAATGCTTGGACCACAAAGGTGATATTGGGATTGCAACGGGCAATTGGGGTTGTGGTGCCTTTGGGGGAGATCCTCAAGTGAAGTCCATATTACAATGGCTTGCTGCTTCTCAGGCATTAAGACCTTTCGTTTTGTATTACACATTTGGCATGGAAGCACTGCAGAACCTAGAAAAGGTGAGTGAATGGATATTGGCACATAAATGGACAGTTGGTGATCTATGGAGTATGTTGGTGGAGTATTCTTCTCAAATATCAAAGGGACAAACTCATGTTGGTTTCTTTGATTGGCTCCTCCCTGCCTCCTCCAAAACTAACTTCTGTTGCTTCTCTTCATTTGGCTAATCCTGAATGCTCTCAGCAATGTTTGGATTAAATTATATAGAAAAATATCACTGACTGCACGAATTTATTATCTAAAATCTCATCAATAATTTTCTTGTTTTAATCGATGATAAGTTATTTACAGCTTCAGATAGATCAATAATTATCTTTCAAAGTGGACCCATTGTTTATTTTAAATTAGCAATGATTTGGCTAATCAATGTTCTGTATTA ATGCAGGAGAATAAGATCCAATGCATTATACATTATTTTAGAAGGGTATGCTCCAATATTCCGGTGGGGTTTGTCTCCTTTGAAAGGAAAGTCCTCCCTTTGGACAAATGCGTAGAATATTTTTGTTGTCCAAAGGTCAAGTTTTGGATAGACTCTGCCATTCCTCTCTGTCAATTTAAGGTTAAAGATTCTGGCCTAATAGAAGATCAAACATTTGGAGCTCTTGAAGTTGATTTTGCTAATGAGTATCTTGGTGGTGGCGCTCTTCATTCCGGTTGCGTGCAGGAAGAGATCCGTTTCATGATCAACCCTGAATTAATTATTGGCATGCTTTTCTTGCCAGCCATGGCAGATAATGAGGCGATAGAAATAGTTGGGGCAGAGAGGTTCTCAAATTATACTGGGTATGCTTCCAACTTTCGTTTTGCTGGCAATCATGTGGACAGACAGGAAATAGATTCACTTGGAAGACGCAAGACCTTTATCACTGCTATAGATGCATTGTGCAGTCCAGGGATGAGACAGTACAGATTAGAATTCCTTCTTCGGGAAGTCAACAAGGCATTCTGTGGTTTCTTTGATCAATCAAAATATAAGCAGTATGAGAGACTATTCTTAGAAAGTGAGGAAGATGTTATGCACCGCAATGACTTGTCCAGAGACAATCTCCCGGCGCATGAATCGACCTCCAATTCTGGAGAGAATTGTTTCGGTAAATCTCTCACTCCAGAATGCTTGGACCACAAAGGTGATATTGGGATTGCAACGGGCAATTGGGGTTGTGGTGCCTTTGGGGGAGATCCTCAAGTGAAGTCCATATTACAATGGCTTGCTGCTTCTCAGGCATTAAGACCTTTCGTTTTGTATTACACATTTGGCATGGAAGCACTGCAGAACCTAGAAAAGGTGAGTGAATGGATATTGGCACATAAATGGACAGTTGGTGATCTATGGAGTATGTTGGTGGAGTATTCTTCTCAAATATCAAAGGGACAAACTCATGTTGGTTTCTTTGATTGGCTCCTCCCTGCCTCCTCCAAAACTAACTTCTGTTGCTTCTCTTCATTTGGCTAA MQENKIQCIIHYFRRVCSNIPVGFVSFERKVLPLDKCVEYFCCPKVKFWIDSAIPLCQFKVKDSGLIEDQTFGALEVDFANEYLGGGALHSGCVQEEIRFMINPELIIGMLFLPAMADNEAIEIVGAERFSNYTGYASNFRFAGNHVDRQEIDSLGRRKTFITAIDALCSPGMRQYRLEFLLREVNKAFCGFFDQSKYKQYERLFLESEEDVMHRNDLSRDNLPAHESTSNSGENCFGKSLTPECLDHKGDIGIATGNWGCGAFGGDPQVKSILQWLAASQALRPFVLYYTFGMEALQNLEKVSEWILAHKWTVGDLWSMLVEYSSQISKGQTHVGFFDWLLPASSKTNFCCFSSFG Homology
BLAST of Tan0015320 vs. ExPASy Swiss-Prot
Match: Q9SKB3 (Poly(ADP-ribose) glycohydrolase 1 OS=Arabidopsis thaliana OX=3702 GN=PARG1 PE=1 SV=2) HSP 1 Score: 513.5 bits (1321), Expect = 2.7e-144 Identity = 280/551 (50.82%), Postives = 357/551 (64.79%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy Swiss-Prot
Match: Q8VYA1 (Probable poly(ADP-ribose) glycohydrolase 2 OS=Arabidopsis thaliana OX=3702 GN=PARG2 PE=2 SV=1) HSP 1 Score: 442.6 bits (1137), Expect = 5.8e-123 Identity = 255/539 (47.31%), Postives = 323/539 (59.93%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy Swiss-Prot
Match: O46043 (Poly(ADP-ribose) glycohydrolase OS=Drosophila melanogaster OX=7227 GN=Parg PE=1 SV=3) HSP 1 Score: 188.0 bits (476), Expect = 2.6e-46 Identity = 145/445 (32.58%), Postives = 200/445 (44.94%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy Swiss-Prot
Match: O02776 (Poly(ADP-ribose) glycohydrolase OS=Bos taurus OX=9913 GN=PARG PE=1 SV=1) HSP 1 Score: 187.6 bits (475), Expect = 3.3e-46 Identity = 134/431 (31.09%), Postives = 198/431 (45.94%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy Swiss-Prot
Match: Q86W56 (Poly(ADP-ribose) glycohydrolase OS=Homo sapiens OX=9606 GN=PARG PE=1 SV=1) HSP 1 Score: 185.7 bits (470), Expect = 1.3e-45 Identity = 134/431 (31.09%), Postives = 198/431 (45.94%), Query Frame = 0
BLAST of Tan0015320 vs. NCBI nr
Match: XP_038874333.1 (poly(ADP-ribose) glycohydrolase 1-like [Benincasa hispida]) HSP 1 Score: 828.2 bits (2138), Expect = 3.7e-236 Identity = 421/546 (77.11%), Postives = 440/546 (80.59%), Query Frame = 0
BLAST of Tan0015320 vs. NCBI nr
Match: XP_008441672.1 (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X3 [Cucumis melo]) HSP 1 Score: 816.2 bits (2107), Expect = 1.5e-232 Identity = 413/524 (78.82%), Postives = 431/524 (82.25%), Query Frame = 0
BLAST of Tan0015320 vs. NCBI nr
Match: XP_022928764.1 (poly(ADP-ribose) glycohydrolase 1-like [Cucurbita moschata]) HSP 1 Score: 813.1 bits (2099), Expect = 1.2e-231 Identity = 413/546 (75.64%), Postives = 441/546 (80.77%), Query Frame = 0
BLAST of Tan0015320 vs. NCBI nr
Match: XP_008441668.1 (PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis melo] >XP_008441669.1 PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis melo] >XP_008441670.1 PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis melo] >XP_008441671.1 PREDICTED: poly(ADP-ribose) glycohydrolase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 807.7 bits (2085), Expect = 5.2e-230 Identity = 413/546 (75.64%), Postives = 431/546 (78.94%), Query Frame = 0
BLAST of Tan0015320 vs. NCBI nr
Match: XP_023550908.1 (poly(ADP-ribose) glycohydrolase 1-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 807.0 bits (2083), Expect = 8.9e-230 Identity = 410/546 (75.09%), Postives = 438/546 (80.22%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy TrEMBL
Match: A0A1S3B3H5 (Poly(ADP-ribose) glycohydrolase OS=Cucumis melo OX=3656 GN=LOC103485752 PE=3 SV=1) HSP 1 Score: 816.2 bits (2107), Expect = 7.1e-233 Identity = 413/524 (78.82%), Postives = 431/524 (82.25%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy TrEMBL
Match: A0A6J1ELT0 (Poly(ADP-ribose) glycohydrolase OS=Cucurbita moschata OX=3662 GN=LOC111435589 PE=3 SV=1) HSP 1 Score: 813.1 bits (2099), Expect = 6.0e-232 Identity = 413/546 (75.64%), Postives = 441/546 (80.77%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy TrEMBL
Match: A0A1S3B4L4 (Poly(ADP-ribose) glycohydrolase OS=Cucumis melo OX=3656 GN=LOC103485752 PE=3 SV=1) HSP 1 Score: 807.7 bits (2085), Expect = 2.5e-230 Identity = 413/546 (75.64%), Postives = 431/546 (78.94%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy TrEMBL
Match: A0A6J1HZ54 (Poly(ADP-ribose) glycohydrolase OS=Cucurbita maxima OX=3661 GN=LOC111468979 PE=3 SV=1) HSP 1 Score: 805.1 bits (2078), Expect = 1.6e-229 Identity = 413/546 (75.64%), Postives = 439/546 (80.40%), Query Frame = 0
BLAST of Tan0015320 vs. ExPASy TrEMBL
Match: A0A6J1DM30 (Poly(ADP-ribose) glycohydrolase OS=Momordica charantia OX=3673 GN=LOC111021818 PE=3 SV=1) HSP 1 Score: 795.0 bits (2052), Expect = 1.7e-226 Identity = 405/546 (74.18%), Postives = 435/546 (79.67%), Query Frame = 0
BLAST of Tan0015320 vs. TAIR 10
Match: AT2G31870.1 (Poly (ADP-ribose) glycohydrolase (PARG) ) HSP 1 Score: 513.5 bits (1321), Expect = 1.9e-145 Identity = 280/551 (50.82%), Postives = 357/551 (64.79%), Query Frame = 0
BLAST of Tan0015320 vs. TAIR 10
Match: AT2G31870.2 (Poly (ADP-ribose) glycohydrolase (PARG) ) HSP 1 Score: 513.5 bits (1321), Expect = 1.9e-145 Identity = 279/550 (50.73%), Postives = 357/550 (64.91%), Query Frame = 0
BLAST of Tan0015320 vs. TAIR 10
Match: AT2G31865.1 (poly(ADP-ribose) glycohydrolase 2 ) HSP 1 Score: 442.6 bits (1137), Expect = 4.1e-124 Identity = 255/539 (47.31%), Postives = 323/539 (59.93%), Query Frame = 0
BLAST of Tan0015320 vs. TAIR 10
Match: AT2G31865.2 (poly(ADP-ribose) glycohydrolase 2 ) HSP 1 Score: 439.1 bits (1128), Expect = 4.5e-123 Identity = 252/539 (46.75%), Postives = 324/539 (60.11%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) 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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