Tan0005498 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGTCCAAGTTGCATCAGTTGCAATCCAAGGCTTGTCAAGCTTCTCAATTTGCTTTCAAGCACGGGTCTTCCTATTATAAGCAATTATTGGAGCAGAACAAGCAATACATCCAAGAACCAGCTACTGTGGAAAAATGCAGCTTGCTTTCAAAGCAGTTGTTTTATACTCGTCTTGCTAGGTTATTACCCTCAATACTCATGCTATCCTTCCACTTTCCTTGGTTTAATGCGGTTGTGGAAGAATTCCTACTGTTTTCATGTTCATCATGCTTTCAGGACTATGCTTATCAGCTTAGTTTGAGTATCTTATATTATACTGTGCATCCAACTGACATAACTGCGTGGTTTGTGTTTTGGTTTGTTGTAACTTGTTCGTCTGTTAGATTCTTTCAACATTTTTTCTCCACATTGCTTCTAATTGTCACACCACTTGTTGAACATGGGCAACCACTTGTTGATAGCGTGGAAATGAATCCCCTGTTAACTGTAGCACTATGCTTATTATGATACTGATAGAATCCTTTTCTTTTTCCCCTGGAAATGGGAGCATAAAAGTATCTACTAACCCGTCCATGAAATCTGTATCATCCCCCCGCCCCCCACTTTTTCTCAGATAAGTTTTATCGTCATCTCTGTAATCTTTTGAGTTTTGTATCATAATCTCTTTGATATTTTCTATCCCTCGTGTATTATGATACATAATCCTTTACCTTTTAGCCTTTTAATGCAAACAATTATATTAGCAGAATTCTTACAGCTGTATTACTTCACTGGTTGCACTGTCTTAAGCTAGTTAATTATCAGCAGTATTTTATCTTTTGCTGCTCTTACCATTAGACCATGAAATATAAACCAATATCCTAATACCTAACTCCTAAGCATAGTACTTCGTTGGAATCAGCTATGCCAATGTACACGGGGGGCGTTGCATGACACAAAGTACTTGTCCCAAGCTGAGCCTCATTGCTTTACTCACTGATTTTTCACCTTACGTTGATTATGCAGCATCCCAGGCCGCTGCGAATCATTCTGGAAAGAACTTGATTATGTGAAAAACTTGTGGAAGAACAGGCAGGAGCTGAAAGTTGAAGATGCTGGTATCGCCGCCTTGTTCGGGCTGGAGTGCTTTGCATGGTTTTGTGCTGGTGAGATCGTAGGAAGGGGCTTTACATTCACAGGTTATTATGTTTGAGGTCTCCCTGAGTCATTTGTGGAAGGGATGTCGACAATGGCGAATTCCCTTTTCTTTTCTGCGGGTACTCCGCATACAATTTTTTTTCAATTAAGTTGAGAATTCTGTGAGCAACTCTGATAGATTAATAATAGTCCATGAATTCCGAGGGACCATAAAGGATCCTAGCGTTCTCATTGATGCATATTCTTGATAAATCCAGTTATTATTTCTGAACTGGAAATCTGATTTGGTGATGAAACCTTCATACAAGATATGGATTTTGCTGCAACTTCCCAGCATCTTTCGCCGGACTTTTTACCAGATGATCTGCAGGTACGTTGAATAAGAGGTATATGCTAATGCAATTCTTTTTCCCCGTTTAGCTCCTACCATTTTTTCTCCCGTTCACCCTATTGCCATACAGATTTAATGAAGGTAGGGATGTTTTATGATTCCTATTTTCTATTCCCAGCAGTACGTTCAACGATCTTTGATAGCCGTAGACCATTCTGAAATTGATAGTTTAAATAAGGCTCGTTTGATAACCATTTGGTTTTTGAAAATTAGACTTGTTTTCTCATGATTTTTCTATAATAGTTTTTCATCTTCTCTATAGTAGTTTTTATCCTTCTTAAGGAAGGATTTGAGTTTCTAGCCAAATTCCAAAAACGAAAACACGTTTTCAAATTTTGATTTGGTTTTTGAAAATATATGTAAAAAGTAGAGAAGGAGATATTCATGTTCGTATTGTTGTCGTATAAAAGGGCCATAGACAAGCTATGTCATTTATTATTAGCGAGTGTGTTAAGTCCATTATGAAGTTGAATGATAAGATACAGTGTTGGCCTCATGGTCTTATTGGCTATGTGAGAATGAAACGCGGTGTTAACATCAATTATGACAAAGCTTGGAGGGATCGTAAATTCACATTGAAATCTATAAGGAACCCCTTGAAGACTCATACGCCCTTATCTCTTCATTATCTCCGACATTAATTGAAATGATCATCTTAAATGTTCTATATTTTAACCATAATAGCAATATATAAATGTATTTAACTATTTATATTCGCCAATGGGTTCAGATTTTTTGCAAGAACATATACAATGTGTGAAGTGGAGAACGATAACACGTTCAAGTACTTTCTTATGTATGCTTCCCTCATCATATCAATTTATGGTATCTAAGAACAGTTTCGTAGGTACTCTAATTATTGCTTGTACATTAGATGAAAATTCTCATATGGCTCCATTGGCATTTTCTATAGTTGGACTCGGAGAATGATTTGTCATGAAATTAGTTTTTCCATGATCGAAAATCTACATTTGTGGAGCCAAATGAGTTAACTATAACATGCAATAGACACAACGGTATACCAAAGGATGTTAGTAATGTTTAGTTCTTCAGAACATGGGACATGTGCATATCATTTGTTAAAAGATCTTAAACTAAGACACAAGTCCAAACCGATTGGTAAAATATTCATGAAGTATCCAAAGTCCAAACAAATGCTCAGTATGAGTTTTACATGAGACAATTAGATAACATAGTTCCTTTGATTAGGTCTAAGTGAGCAAGGACTTTTTTTTGTCCAGAAAATATATTCCCGTATGACTACCAATATATTTGAGAGCATGAATTCGCTCCTTAGGAGTCGTTTGGTTTAAGGTTTTATTAGATGCTCATGGATAATAAATGTCGAAGAATAAGATATTTGGGAATAATAAATGTCGGGGAATAAGATGACTTATGAGTCATCTTTCTTTCAAAAAGATTTTATGTTGAGCTCAAGGTTTGAATGTCAGCCTCTCTCAAGGGTAGTTATTGAATAATTCATCGTCATTCGTGATATTTTCTACATTAATGTTAACACAATCTTATTTTAGAAGCAAAAAAAACTCTCTAAAAAATAAAGAAGCGACATTTTCAACATGTCATCGAAAATATTTTTATTAACGTTAAACCTCATGGTTAAATACTTTCTATTTACAATTTTTCGACCTCGTAGTCATTAACATATTCATTATGAGTCCAGTTGAGCTATATTCTTTTTGGCTATCTATATACTAACTAAAATAAGCTTAAAAAACTTTAAATTTTCTCTTTTGCCCCTTCTTAATTTAAAGATTTTTCATCTTTTCACTTTTAATTTAAATTATATTTATTTACTATATCAAACATTAATATTTGAATAAGGTTCTAAAAATCTCTACCTATCTATCTATATACTATACATAGAAGTGGCTATGGGGGATAAACTTTATCCTAATATATGCCTTTGAAATCTAACTAAAAGAGTTATAATATTTCCAAATTTAGGAGAAAAGGTAAAATAAATATGAGTAGTTTAGGGCCTGTTTGGTAAGCAGTCTGTAAACAGAAATTTGAAAACAAATGATTCAATGAAAACATAGTTGTATTTCATGTTTTTCAGATATGTGTTTGGTAGCATATTTATAAATTTGATTCAATTCTTGTTTAAAGTGTGTCCTATAACATATTTATAGATCATGAAATTAGTTGTAGTTGCAAAACTAATTATTAGATTGAATATAAGTCATTCTTAATTTATTTATGAAATGATTTTGTAAATTTTATAGAATTATCATTTTATAATATAATATTATATAGTTTATAATATATTATATTATATATATTTTAATTTAACAAAAGTAAATTGAGTTCATAACATAAAATATTGTATTTATTAAGATTTTTATCTTTGTTTAATATAATCCTGCATTTTAAATTTTTAAATTCAGAATCTGAATACAATGAAAACATAAAATGTTGTTTTCAAAATTTCTACTACTTAGACCCCAGAATCCGAAAACAATTTTCGAAAACACATCTGTCAAACACATATTCACTAAATTTAGTGAATCCGAAAACATAAAACAGAATCTGGATTGCATACTAAACAAACCCCGGTGTTATATAGAACGAAGTGAAATAAAATATGGAATCTATTTCAATTTTATGATTTTTTTTATGACAACCTCATATTTTTAATTAATTCATATTGAAATTATGTGTTCCTTTGATATGCTTTTATTTTAAATATAAAGTTTTCTAAAAATTGTTTAAATTATTTTATGTATGATAAAGCCTCCAACACCAATAAACAACAATTTACACATGAATATCATATTTTGTAATAATTATAATCTTTAGGTGCAATTCGTAATTTTTCATTACACGTTGTCACAAAGTTGCATTTAAACTTTTGTTAAAAAATGAAAAGACTCTAATAATGAGGAAAATTAGGTTGTTAAGTTATATAGAACGAAGTTGAGTAAAATCTAAACTTATTTTAAAATGAATATAATTCATGCAAATTATTTCAATTTTATGATCGTTTTTATGAAACCCATATTTTAAATTTATTGATATAAAATTATTTGTTCATTTGATATACTTTAATTTTAATATATAGTTATTTAGAAACTTTTAAAATTATTTTACGTATGAAAAAGACTCCAACTCAACAAATAACTATATATACATGAATATTGTTTTTGTTGTAATAATTATAAACTTTAGATGCAATTCTTAATATCTCATTATACATCCCAAAGTTGCATTTAAACTTTTGTTGAAAAATGAAAAGACTCTAATAATAACAAAAAACATTAGGAGTTATACACAACGAAGGGAAATGAAATCTAAACTTATTTCAAAATGAATATAATTCATAGAACCTATGATCGTTTTTATGACAACCCCATGTTTTTAATTAATTTATAGTAAAATTATGTGTTCCTTTGATACACACTTTAATTTTAATATATAATTTCCTAAATTGTTTAAATATTGATTTTATGTATAGAAATTTGAAAAAAAAAACTTCAATGTCAACCGACAACGATATATATATATGTATATGACTATCATCTTTTGTAATAATTATAAACCTTAGGTACAATTCTTAATTTTTTACCATTATACATCACAAAGTTGCATTTAAACTTTTGTTGAAAAGTGAAAAAATAACTCTAATAATGAGGGAAATCACTTTGAAAATAGAGATGCATTCTATAGTTAATATGGTTGAACAACAAAGTTGCATTTAAACTTTTGTTGAAAAATGAAAACACTCTAATAATGAAGAAAAACAATTTGAAAATAGAAATGCATTTTAAAGTTAATAGTTGAACAGTTAAACTTTTGTTGAAAAATGAAAAGACCCTAATAATGAGAATAAATACTTTGAAAATAGAGCTGCATTTTATAGTTGAAACTTGAAACTTAAAAATAGAGATGAAATCAGTGGAAAATTTTGACTGAAAAATATAATATATTTTACTTTTGAGTTAAAAAGTGAATAAATAACTTATGTTGTTTTTATAACTTGAAACTTGAAACTTAAAAGAACTTTTTGTTTACTCGACAAATACAATAAAATGAAGTGGTCAAAGCTTGGCATTCACCTTAAGTCAAGGAAAATAAAATAAAATTGAGAGAAGAACTAAAATAAAATTTAGAAAAGTAATTGAAGGGAAAAAAATAGTGGACTTTATAACAATTTTATCTTATCTTATCTATTTATTTAATATTAACTCCATATATATTTTAGTTTCTTAATTGACTTTTCACCGTAATTCAATCAAGAAATTCATTGAAACTAATTTCAATCTACCACTAATAAATTTTTTAAATTTGTTCTCACCATAGTACGCAAGTTAAAGTATTTGTGAGATCTACCATCATCTTGTTTTTAATTTAAATTAAAACGATAAGATTTCTCGTGCATCCTATTACTTAACCTAGTACTATCTAAAATAGATTTATGAAAGAAATTTTTAATTTTTCTTTTTGTCCTTTCTCAATTAAAAAAATATCAAATTACAAGTTTAGCCCCTAAATTTTGTGTTTGTGGGTTGGGTTGGGTTGAAACAATTTTTAACCCAACTCAATTATTTGGATTGTACATTTATTCCGTCCAAATAACTCTTATTAAATAATGAACCCAACAAACATTTGAGTTGGGTTGTTCGGGTTTTTGATTCAAAATTTTAGTTTTAAGAAAAAAAAAATAAAAATGTTACTATGTAAATCATCTATTTATTTTATTGGCAAGCATTGAATTAAAATTAGCCACTTAGTTTCAATTTCTATTATAAAAAATTACACCCTAAAAACTTAAAAATGTATTTTTAAAAGTTATTAAAAAATAAATAGAAATTGATTATGAAATCAAATTAAATTTAAATAAATACATATATAAAGTATATATAATTGTATGGTAGATAGAAAAATAATTTTTAAAATTAATAATAAATTTGGGTTGTTCGGGTTAACTCAAACTAATTTTAGGTGAACCTATCAAACCAACTGTAACGATTGGTGCTTTTAAAAAAAAAAAAAAAAAAAAAAAAGGAGATATCGTCTCTCCTCGCTCAACTGTCTGCCTGAAAAGCAAGCCACGCGGCCGTTTTGCAAGCAGAGGCGCGCCCCCCCCGTCGCTCTCTCTCTCCTTTTTCTCTCTCCCCCTCCCTCTCGACTTTCCTTTTTCCTTCTTCTCCTTCCCCTTCTCGTTTTTTCTTCTCTCTCTCACACGCTCCTCCTCTTCTTTACTCATCCCCTCTTCCTCTGTGTTTTTTTCTCTCTCTCTCTCTCTCTCTCTCTCGCACTTCTACTCCGAGCAAGAAGCCCGACGCCGTTGTTCTCCTCGCAGTGAAAGCCCGCGGCGCCGCCGCCGCAGCAATCGACGCCGCCAGATCCGCGAGACCCGCAGCTTTCTTCCATCCGGTTCAGCGGTTTTTGGCGGGTTTTTGTCGAACCGGCCGGTTTCGGGTAGATCGGGCCGAGGAGGCGGATCTAGTTTTTTCGCCGCCGCTGTTCCGCGCGCCGCGCCCCATCCACACGCGCGCTGTCTGCAGTCCGCGATCGCATTCCGCCGTGCGATCGCCTCGGCTCATTCCTTAGTTTGTTTCGGTCTCGTTGGGTAAGTTTACGCCTCAAAAGCGTTCAAGATATCTTTTGTGTTCCAATTTGTTAACTTTGTGTGTGTGTTTACTGCGTTAGGGACTAATTGGAGTAGGAGGTACCTTGGAGCACGCCGCTTTCTCTTTTCGCCGATTGTTGGAGTTCAAGTAAGTAGTCATTGGACTATCCCACCCATAAGTGTAGGGCTTAGGGATTTCAGTATGTATATGTCACGACTTTCGTGGTTTGTGTATGACTGTGATCTTGATAATTGAATGTTAGACCATAGACGTAGTTCGGCTCTAGGCTTTGTAGAAGTTCATGTCTTGCATGCTTATTCCCATACGATGGAACTCGAAATATCATTTTATGTTTGATGTAGACCCCGTGACAAATTATAAGCATGATGATTGTGAATGTGTGTACCCTCAAGCATGGGCGTGTGTAGATATATGTTTAGTTCGGTGATGGCCGAGGAAATGTTGTGTACCCTAGGTTAGGTTAACATATCCAGACGCGTTACAGACCGAACTCCTTGCATAACCCTTAGCAGGCTGTGACTCTAGGTTGGCAAGTTGACATGGGATGTGGGGTTTGCCCTCCATCTAATAGAAAAGCTTGGGGAGTGATTCCCAGAGTGCAGGGGGTAGTGGATACGTTCCTTGCCCTAAGTTCGTGGTTCAGGGAGTGATTCCCGAGATGTACGGGACATTGGACACGCTCTTCGTCCTGGATTCAGGCTCAGGGAGTGATTCCCAGAGTTGCAGAGGGGCTGGACACGTTCCTTCACCCTAGATGAGACCCGGGAGAGCCCCGTGGTCTTGAGTTGTGGGCGGTAGCACCGCTATTGTTGCCAACTTAGTCCGTAGCCAAAGGGTAGGACAGAGTTAGAAACTAAGTAAGCTAGGGTCAGCGGGAAACTGAGGATCTGTAGGACAGAACGAGTCATGTACTTCCTGAGTCAGAGACTCGACCTTGTTTTCTTTGTACTGTTATACGTTGGACGAAGTGGGCTACTTACTGAGTATTTTGTACTCACCCCCTCGTTTTGTGTGTTTTATTTGCAGGTAAGGTGAAACACTGAGATGACCAGGGTGTTGGCGGGGCTTTGCAAGGCTATGGATGGACGTGTTAGGCTTAGTTAGGGTTGTTCTCTTGTTTTAAGAGTTTGCCGTTGCTTTTTACTTTGTTGTTCTTTTGTTGGATCGTTTAAATTATTGAGTTAAACTTGCATGTGTTGTTCTGTTCATGCTTTTAAGTATATTTGAGAATGATTGTCTGATTTGTTGTCAACTAAGCTAGAAAGCATGTTTTTTTTTGTAAGTGTGGTTGTTTGTGGACTCCGGGGATCTGGAACCCAGCCTGTGTGTTCATTGTAGTTCGGTGGAGGCTGGTACCCCGTGAGGTCGTGTTTTGGAAGTGTTTAGCTTATCCAGGTGACAGGAAATTTTTGGAATAGTCCTAGTTATGCCGTTATCTTCACAAAATTTCTACATGAAAGAAAGATAACTTGGAGTATCACCCCTTGTAGTATAGTTGCATTTTTTGGGGTGTTACACCAACTCAATACATAATTTTCATTTATTTTAATCCAACCCAACTGGTAGGAGTTGAGTTGGGTTGATCGAGTCATCATGTCTTTTGAACACCCTAATCTTTTTTATTAGGTCTTTAAACTTTAAAAATATCTAATATATTCATGACTTTTTAATTTCATATCTAGTATGTCTAAACTTTAAAAATGGCCTCCAAAGTTTTTTTTTTTAAAAAAAAAAACAAACCAAATTCATTTACTACAAATCCCCCAAAAGGGTTACAAACGATCCATCCTCATGTGACAATAAACATGTGATCCAAAATGATCTCTAAACTTCAACTTTGTGTTTAATAGGTTTCATATCTATTTTATTTTTTTTTTAAGAAAATAACTGGTCTAGGATATAAAATTGGTATTTATATCTAATAGAACCCTAACTTTCTATTTTATATATGATAACTTTGTGAATTTGTAAAAATATTAGATAGGTTAAAAACCTATCAAACACAAAATCGGAAATTCACAAACTCAATATCAAATAAACACAATTTAAAAGTCTCACAAACTACTATAGATTAACTTAGAATCTTGCCATATTATAGATAAAATATAGAATACAATAGAGTCGCGCATACATATATTTTAAAATTTATAGATCAAATAGATACAAACTTTTACTAAACTCGTAATTAAACCTTAAAAAAAGATCAATACTTCCCTCCTAAGTATTGAAATGCTGATTATATATCTGTTAGACCAATTCAATGTTTCGTATTGCAGAGTCAAACGGACGGGAGAGACAAGACACGGAACACAATAACTTCGCCGAAGAATCTGTTTGTGGCCTGAAGATGGTTCGCAACACCGGCATTTCCCTTCGCAAACATGTCTCGTCGGCGATTCTCCTTCTCCTCCTCCTCCTCCTTCTCGCCGTCGTCTCCGAGTGTTCCAACAACGAATCTCGGGTAATGATCTGGACCTTTCGTAATCGCGATTTGAAGAACTAAATGCTGGAGAATTTGCATCTTGAGTTTCCTTAGCGTGATGTGAAACTCTGTTTGTCTGGCTTCTATTCTACGATTTGGATGTTAACGTCAATTTTTCGTTGGATTATAGGTTGAATGCAGCAAAAAATGTGTCGCAATTAACTGCAACAGTGAGTTCGTCTTCTGCTATTATTATTTTTTGAATTCTAGTTTCACCTCCTCGCTTTTTTATTTTGTTCGTTTATCTGAAAATTAGGTGTTGGGATTCGGTATGGAAAGTTCTGTGGAGTAGGATGGACTGGCTGTGCTGGTGAAAAGCCTTGCGATGATGTTGATGCCTGTTGCAAAGTTCATGACGAATGTGTTGAAAGAAAAGGTTATTCTGCCTTTTCTTGTCCTTTCTTTATACTTTCATTGTTTGTCATTCCTCTTCATTATACTTGCATAGAAAATTCGCCCATCGATCGATAATCCTGTTTTAGTGTTTAGTTGTTGTGAGGCAAATCGGATGAAATCTGGGCATCCTGTTGTTGAATGAGATATATATATATATATATTGGCTTTATTGGTATATTTTCTATTGTATTCCTCGCAAAATATATGTATGAGATTCAGACATTCAACCCAATTGCTATCTGCTGAGAATGAGAGGAACAGGAACTAGTTAACCTCAAAACAAAAAATTGTGTGTTAGTATCTAACAGGTATGGAAGGTTGAATAGAAGAAGGGAAGTTTGGTTTTTCATAACAAAGATCTTTATGGATAAAGGTGTCAACGGTGAGTGTACAGTCATCCATGGCTTCCCATTTGCTTTCATGCCCCTCAAATCACTTCCTGTCTCAATAGAATTCCCGTTGAATACTTCATCCTCAGCTTCAAATTTAGTTTAGAAAGACCAACGAGATCCTCAGCTCCTTGACCGAACTCAGCAATTGCAAATTTCTAGAATTTAGGTGCGCATGGCTTCTAAATTCTGCCTCTGTTGTTGAGCATGAGATGGCTGCATGTCTTCAAACTCCAAGCCCCACCAATTTCTCCCAACCAACTTCCATCAATGAATCCTATACGAACCTAACCACAAAGAATAGCTTCTTCCATACTTTAACATATTGATATAAGATTAAATTTACCATAATCCATTGGTGATTTAACGTTGGTATCAGAGAAGGAGATCATATGTTTGAATCTCTGTAATTGTCATTTTCTCCCCAATTAATATTGTTCTACTTGTTGTGCAGTCTACAAATTTGGGTTCATCTGTGATTTAACACGTATGAGGGAGACTGTTGTCATATAGTTTAGTCCATACTTGTGAGTTGGTGGGTTGGCCACACTAATTATGGTAGAGAGGGTAATGAGTTGGTTTTCTAAACACGAGTCCTCCCAGTTGAATTTTTTATGGATGATGTACCGCAATTTCCTCTGCCAAATTCAATGACCAGTAAGGCTTTGATACCATTGTTCTAACTCTTATGTTTACTCGCTTATGTTCACTATATTGAGCATGTGAGATCAGTTCTGGACACGTAATCTTGTGAAAATAATCTAGTACAATTCAATTGATAAACTAATTACGTGTTCTTAGGAGCAAAAATGTTCTTTGAATTCCCAAAGTTCTGTTATAAATATCGGATTCTTCATACCTCAAGGTTAATATGCGGTTATGCTGCCAGCATGTAGAGGCTAATTTTCATCCTCGCGATGCCTATACGGGCTATACTGGTGTGCCTATAATATTCTTTAAGACTTTGGAGTAGAATCCTTCGTACCATTAATTTCGGATTAGGATGACAAACTACTATTTGATTTATTCTTTTTCCTGGTTTGTATTAGTGTAAATATAAATACCTTTTCTCTGATTATAGTCTTTTTTATTTCGAATTGGAAAGCTTTTTTTTGTAACACACCTTTAGTTTGAAGTTTTTACTCCATTGTTTCTTTCATCAATGAAATTTGTTTCTCTTCTATTATGGGATCAGTAAAGCTATTGGCGTACTGGCCATTGAAAAACAAAATTAGGTACAAAATTGGAGGATATTAAGGGATGTAAACACAGAGGAGACAGACACCAATGTTTGGTGTTGGTAAATTCTAGATCTTAGATCTTAGATCTCAAGTGTTTGTGATTTATCTGAGATACTAGTTATTTGGTCTATCCTGTTTTGTTTTGTATCATTTGAATATTTGTGGATTTGTAACAGTTGGAACTTGGAAGTCACTCTGTTTATATGATTCAAGAACAATAACCTCTATCACTTTGATTTTTCAGGATTAACCAATCTTAAATGTCACGAGAAGTTCAAGAGTTGTATTGAGAAAGTGCAGAAATCTGGGAAGACTGGTTTCTCACAGGAGTGTCCTTATTCCACAGTTGTTCCTACAATGGTTCAGGGCATGGATTTGGCCATCTTGTTCAGCCAGTTTGGTAACTCTAAGCTTGAGCTCTGA ATGGCGTCCAAGTTGCATCAGTTGCAATCCAAGGCTTGTCAAGCTTCTCAATTTGCTTTCAAGCACGGGTCTTCCTATTATAAGCAATTATTGGAGCAGAACAAGCAATACATCCAAGAACCAGCTACTGTGGAAAAATGCAGCTTGCTTTCAAAGCAGTTGTTTTATACTCGTCTTGCTAGCATCCCAGGCCGCTGCGAATCATTCTGGAAAGAACTTGATTATGTGAAAAACTTGTGGAAGAACAGGCAGGAGCTGAAAGTTGAAGATGCTGGTATCGCCGCCTTGTTCGGGCTGGAGTGCTTTGCATGGTTTTGTGCTGGTGAGATCGTAGGAAGGGGCTTTACATTCACAGGTGTTGGGATTCGGTATGGAAAGTTCTGTGGAGTAGGATGGACTGGCTGTGCTGGTGAAAAGCCTTGCGATGATGTTGATGCCTGTTGCAAAGTTCATGACGAATGTGTTGAAAGAAAAGGATTAACCAATCTTAAATGTCACGAGAAGTTCAAGAGTTGTATTGAGAAAGTGCAGAAATCTGGGAAGACTGGTTTCTCACAGGAGTGTCCTTATTCCACAGTTGTTCCTACAATGGTTCAGGGCATGGATTTGGCCATCTTGTTCAGCCAGTTTGGTAACTCTAAGCTTGAGCTCTGA ATGGCGTCCAAGTTGCATCAGTTGCAATCCAAGGCTTGTCAAGCTTCTCAATTTGCTTTCAAGCACGGGTCTTCCTATTATAAGCAATTATTGGAGCAGAACAAGCAATACATCCAAGAACCAGCTACTGTGGAAAAATGCAGCTTGCTTTCAAAGCAGTTGTTTTATACTCGTCTTGCTAGCATCCCAGGCCGCTGCGAATCATTCTGGAAAGAACTTGATTATGTGAAAAACTTGTGGAAGAACAGGCAGGAGCTGAAAGTTGAAGATGCTGGTATCGCCGCCTTGTTCGGGCTGGAGTGCTTTGCATGGTTTTGTGCTGGTGAGATCGTAGGAAGGGGCTTTACATTCACAGGTGTTGGGATTCGGTATGGAAAGTTCTGTGGAGTAGGATGGACTGGCTGTGCTGGTGAAAAGCCTTGCGATGATGTTGATGCCTGTTGCAAAGTTCATGACGAATGTGTTGAAAGAAAAGGATTAACCAATCTTAAATGTCACGAGAAGTTCAAGAGTTGTATTGAGAAAGTGCAGAAATCTGGGAAGACTGGTTTCTCACAGGAGTGTCCTTATTCCACAGTTGTTCCTACAATGGTTCAGGGCATGGATTTGGCCATCTTGTTCAGCCAGTTTGGTAACTCTAAGCTTGAGCTCTGA MASKLHQLQSKACQASQFAFKHGSSYYKQLLEQNKQYIQEPATVEKCSLLSKQLFYTRLASIPGRCESFWKELDYVKNLWKNRQELKVEDAGIAALFGLECFAWFCAGEIVGRGFTFTGVGIRYGKFCGVGWTGCAGEKPCDDVDACCKVHDECVERKGLTNLKCHEKFKSCIEKVQKSGKTGFSQECPYSTVVPTMVQGMDLAILFSQFGNSKLEL Homology
BLAST of Tan0005498 vs. ExPASy Swiss-Prot
Match: Q9XG80 (Probable phospholipase A2 homolog 1 OS=Oryza sativa subsp. japonica OX=39947 GN=PLA2-I PE=2 SV=1) HSP 1 Score: 156.8 bits (395), Expect = 2.9e-37 Identity = 64/98 (65.31%), Postives = 82/98 (83.67%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy Swiss-Prot
Match: Q8GZB4 (Phospholipase A2-beta OS=Arabidopsis thaliana OX=3702 GN=PLA2-BETA PE=1 SV=1) HSP 1 Score: 139.4 bits (350), Expect = 4.7e-32 Identity = 61/105 (58.10%), Postives = 78/105 (74.29%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy Swiss-Prot
Match: Q9M0D7 (Phospholipase A2-gamma OS=Arabidopsis thaliana OX=3702 GN=PLA2-GAMMA PE=1 SV=1) HSP 1 Score: 130.2 bits (326), Expect = 2.9e-29 Identity = 55/99 (55.56%), Postives = 70/99 (70.71%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy Swiss-Prot
Match: Q8GV50 (Phospholipase A2-delta OS=Arabidopsis thaliana OX=3702 GN=PLA2-DELTA PE=2 SV=1) HSP 1 Score: 126.3 bits (316), Expect = 4.1e-28 Identity = 52/99 (52.53%), Postives = 73/99 (73.74%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy Swiss-Prot
Match: Q9XG81 (Probable phospholipase A2 homolog 2 OS=Oryza sativa subsp. japonica OX=39947 GN=PLA2-II PE=1 SV=1) HSP 1 Score: 73.6 bits (179), Expect = 3.2e-12 Identity = 33/69 (47.83%), Postives = 45/69 (65.22%), Query Frame = 0
BLAST of Tan0005498 vs. NCBI nr
Match: KAF2285160.1 (hypothetical protein GH714_038896 [Hevea brasiliensis]) HSP 1 Score: 339.7 bits (870), Expect = 1.8e-89 Identity = 164/219 (74.89%), Postives = 185/219 (84.47%), Query Frame = 0
BLAST of Tan0005498 vs. NCBI nr
Match: KAF1001668.1 (hypothetical protein AG4045_017694 [Apium graveolens]) HSP 1 Score: 332.4 bits (851), Expect = 2.9e-87 Identity = 167/293 (57.00%), Postives = 190/293 (64.85%), Query Frame = 0
BLAST of Tan0005498 vs. NCBI nr
Match: PPR87120.1 (hypothetical protein GOBAR_AA33571 [Gossypium barbadense]) HSP 1 Score: 316.6 bits (810), Expect = 1.6e-82 Identity = 170/294 (57.82%), Postives = 191/294 (64.97%), Query Frame = 0
BLAST of Tan0005498 vs. NCBI nr
Match: KAA0061501.1 (uncharacterized protein E6C27_scaffold41G00610 [Cucumis melo var. makuwa]) HSP 1 Score: 300.4 bits (768), Expect = 1.2e-77 Identity = 173/310 (55.81%), Postives = 187/310 (60.32%), Query Frame = 0
BLAST of Tan0005498 vs. NCBI nr
Match: TYK10772.1 (60S ribosomal protein L28-1-like [Cucumis melo var. makuwa]) HSP 1 Score: 287.0 bits (733), Expect = 1.4e-73 Identity = 165/303 (54.46%), Postives = 180/303 (59.41%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy TrEMBL
Match: A0A6A6K8J3 (Uncharacterized protein OS=Hevea brasiliensis OX=3981 GN=GH714_038896 PE=3 SV=1) HSP 1 Score: 339.7 bits (870), Expect = 8.8e-90 Identity = 164/219 (74.89%), Postives = 185/219 (84.47%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy TrEMBL
Match: A0A6L5B806 (Uncharacterized protein OS=Apium graveolens OX=4045 GN=AG4045_017694 PE=3 SV=1) HSP 1 Score: 332.4 bits (851), Expect = 1.4e-87 Identity = 167/293 (57.00%), Postives = 190/293 (64.85%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy TrEMBL
Match: A0A2P5W7P3 (Uncharacterized protein OS=Gossypium barbadense OX=3634 GN=GOBAR_AA33571 PE=3 SV=1) HSP 1 Score: 316.6 bits (810), Expect = 8.0e-83 Identity = 170/294 (57.82%), Postives = 191/294 (64.97%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy TrEMBL
Match: A0A5A7V6Y8 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold41G00610 PE=3 SV=1) HSP 1 Score: 300.4 bits (768), Expect = 5.9e-78 Identity = 173/310 (55.81%), Postives = 187/310 (60.32%), Query Frame = 0
BLAST of Tan0005498 vs. ExPASy TrEMBL
Match: A0A5D3CHM3 (60S ribosomal protein L28-1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold332G00850 PE=3 SV=1) HSP 1 Score: 287.0 bits (733), Expect = 6.8e-74 Identity = 165/303 (54.46%), Postives = 180/303 (59.41%), Query Frame = 0
BLAST of Tan0005498 vs. TAIR 10
Match: AT4G29480.1 (Mitochondrial ATP synthase subunit G protein ) HSP 1 Score: 207.2 bits (526), Expect = 1.3e-53 Identity = 99/119 (83.19%), Postives = 108/119 (90.76%), Query Frame = 0
BLAST of Tan0005498 vs. TAIR 10
Match: AT2G19680.1 (Mitochondrial ATP synthase subunit G protein ) HSP 1 Score: 206.1 bits (523), Expect = 2.9e-53 Identity = 103/119 (86.55%), Postives = 108/119 (90.76%), Query Frame = 0
BLAST of Tan0005498 vs. TAIR 10
Match: AT2G19680.2 (Mitochondrial ATP synthase subunit G protein ) HSP 1 Score: 206.1 bits (523), Expect = 2.9e-53 Identity = 103/119 (86.55%), Postives = 108/119 (90.76%), Query Frame = 0
BLAST of Tan0005498 vs. TAIR 10
Match: AT4G26210.1 (Mitochondrial ATP synthase subunit G protein ) HSP 1 Score: 203.4 bits (516), Expect = 1.9e-52 Identity = 96/119 (80.67%), Postives = 110/119 (92.44%), Query Frame = 0
BLAST of Tan0005498 vs. TAIR 10
Match: AT4G26210.2 (Mitochondrial ATP synthase subunit G protein ) HSP 1 Score: 203.4 bits (516), Expect = 1.9e-52 Identity = 96/119 (80.67%), Postives = 110/119 (92.44%), 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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