Tan0010789 (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.ATGGCCTTCTTTTCTTCCTCCTCTTATTCAAAAAAGCTAACTAATAATTACTGTATGTGTATGCTGCTACTTTTGATGGTTTATCTGCTGGGTCCGTTTGTGAAAATGGCAGAAGCTGGAAACTTCTACCAAGATGTGGACGTAACTTGGGGAGATGGTCGAGGAAAAATCATGGAGAATGGCAATCTTCTCACTCTTTCCCTTGACAAAGCTTCTGGTTCAGGCTTTCAATCAAAGAAACAGTATCTCTATGGCAGGTTTGATATGAAAATCAAACTCGTCCCTGGCAACTCAGCAGGCACTGTCACAGCCTATTATGTAAGCTAAGCCCATAATTACTATATCACTCTATATATTAATGTTTTTTCATTAAAGCTAAACTAATTAAAAGTTCGTTGTTATATTTGTTTTGTTATTATTGTAGTTGCGTTCACAAGGTTCTTCATGGGATGAGATAGACTTCGAGTTCCTAGGGAACTTGAGTGGCCAACCGTATATTGTACATACAAATGTTTATATACAAGGCCAAGGTAATAGGGAGCAGCAATTCTATCTTTGGTTTGATCCAACCGCTGACTTTCATACCTACTCCTTCCTCTGGAACCCTGCTCGCATAGTGTAAGTACATATATGTTCCGATCCATCAAAATACTTACTAGTAATTACTAAAGTAGTAACACCTCCTACTCATTTTTTTTATTATATGACAATTTTGTTTAGAGTATCTTGATATAAGACTAAATTTACTATAACTCAACTCTCTTTGATTTTGTGTCTAATCATTTAAAGGTTGTTTGAGACATCGAATGAGTTATAATAACATAAATTATAATAGTTTATGAGTTATTATAGCCTGTGAAATTATATAATATTATTTAAAATGCATGATTCATTAATCTAGAGTTACAATAATATGTGTTTGAGTGTATAGTATTCCACCAATTATTATAACTTGTGCCCAAATAGGCCCTTAACAAATGTTTTCAAATATCAAGTGGGCTATTATATGGTAGTATTCTATATTCCCCACATTTTTATCATAACATTACTTACTGCACGCGGATGAAGAAAGATTCTAATACTACTGTAGTATAAAAAAAATTTCATTAATGGTTTGTCATTATAGCAACATTAAAAAATAGTTCGAGACCCATGAACTAAATTAATATATCATCCAACGACGTGTCATATTATGTATGGAAGAAGTATATACTATCGTAGTACTAGAAAATTTTTCCACGTGTGTCTGATTGGGTAAGATCCAGCGTTGAAATTTTTGGGGGTGAGAGAATGTGAAAGACAAAAAAATTATAACTTTTTTAAGAGTGTTGTATAGCGAAATATTGTTATTGCTGTGTTTCATTATAGTATGATATTATGTATATAAATGCAATAGACATGTTGATATTTATGTAGCATTTGAAAGAAAAACAATAGGATTGAATTGAAATGTGTGATGTGGGATTAGGTTGTACGTGGATGGGAGGCCAATAAGAGAGTTGAAGAACATGGAATCCAATGGGGTTCCATATCCAAAGAAACAGGCGATGAGATTATACGCAGCTTATGGAATGCCGACGATTGGGCGACAAGAGGAGGGCTGGTGAAAACGGACTGGACCAAAGCCCCATTCACGGCTTCCTTCAGGAGCTACAATCCCAATGGATGTGTTTGGACCAATGCAGCGTCGTGGTGCTGCCAGAACTCGGCGCCATGGCTGTCGGAGGCGCTTGATTCCAGCAACCAGAAAGTGCTGCGATGGGTTCAGAAGAAGTATATGATTTATAATTATTGCGCTGATAAAAAAAGATTCCCTCAGGGCCTTCCTCGGGAGTGCACTGTCCCAACCACCAACCCATAGAATAAGCGAGATTCTGACAAGGTTGAAATTTGTTATTCTTTTCCTTTCTCTTTGCCTCTTCCATATTATTCTCCTTTCATGTTTCTGTTTCCTATTCGTGTACCTACCTTCATTATTTGAAGTTATTAAATTAATAAATAAATAAAGTACTCAAATAAAAACCCAATGGGACAATATATTTTATGACAATTAAAGTGTTACCTTGTACAAAGGAATTGTTGTTTTTTTTAAGTCCATCCACTGTTTAGTAATATAGTGCCAAACAAAACATGCGAAAAGTCAAAAATATCATCTATTAGTAATATAGTGTCGATATACGTAATATAAATTATTGATATATAAAGTATATCATTGACTGATATACGTATATGCGATTTATAAGGAGTACGTAGGTATGTTACTGGTATACTACTAATTAATATACTTTATTTTTCGTGTGTTTTTCGATATAAAGTTTGTCAATTGTCTATCAGTGATATATTGTATATCAGATATATCTAGAATGAAACATATCACTAAGATACTATTGATATAATCAATGTTAGGTATATGAATGAAATGAACCTATCTAAAATGAAGTATATTAGTAATATACAAAATATCCATAATATGCTACATATATATATCTAGAGTATATCATTTAACTACTATGTTTATAAAAAGAAATGTGACAGTAGTATAATTGTAATATACTATGTTTTAGATATATATTCGTTGATAGATATACCAAATATAAAGTATATAGATATACCAAATATTAAACATATCATATATCCTACTCATATACCAATGAAGGTAAAATTGGAATAATAGAAAAATTAAAAATTAGATTTATTTTTTTATTTTTTGTTATATTTACAAATCTCAACCATCATAGCTAGATTTAGAAATATATTACTATTTTCCTTTTATTTATATTTTTGCCTATAATGTTTAAAATTTTAATTTCTGGTTGTCCTAAGCAAAACTCGTAAATAGAGTAAAGTATTATACATTTATTTTTAAAGTAAATGTTGAAACTGTAAAGATAGAAGAGGAAGATGAATAGAAATTTGTCTGATATATTTTCATTACCAGCTCAAGATCTTTATACAGAATACATGAATTATAAAAGGAAATGGACAACTCATGATTTACAATCAAGGACTTAAATTAAGGAAGATTTGTAGAGGGAATATCCTGAGGAAATATTCTCTTAATACGCCCCCTCAAACTGATGACGGAAATGAAGTCAGGAGTTTGTCTCGGAATGCTTCAAAGTGTTGAGTTGCTAGCGGTTTAGTGAATAAATCAGCCAATTGGTCTTTTGAGGATATGAACTGGACCTGAATGTCTTTTCGAGCTACCTTTTCACGAACGAAGTGATAATCAATCTCAATGTGTTTTGTACGAGCATGAAAAATAGGATTATTGGCGAGTGAGATAGCCGAGATATTGTCACACCGTAATGTTGGAGGATTAGATAATGTGATGTGAAGATCACGAAGAAGTTGTCGTATCCAGTATAGATCTGCAGTTGTAGTTGCTAATGAGCGATATTCAGCTTTTGTGGATGAACGAGATACTGTGAGTTGTTTTTTTGCTGACCAAGAAATAGGATTGGAGCCAAGAAAGGCAATAAATTCGGAGGTTGATCGCGGTCGAGGTGTCACCTGACCCAATCGAGTCCTGATATGCAGTGAGTGAAAGATTTCCAGGACGGAACATAATTCCAAGATCTTTAGAGCCAGATAAATAGCGTAAAATTCGTTTTACTGCAGAGAAATGTATGACTGTAGGGCGATGCATGAATTGGCTTACTCTGTTTACTGGAAATGAGATATCAAGTCTTGTAAATGTGAGATATTGAAGTGATCCAACCAACCGTCTAAAGAGTGTTGCATCATTGAATAAAGGTGCAGAAGCATTAAGATCAATAGATGTAGACATGGGTGTTAAACATTTCTTGGCAGAGGACATCCATGCAGTATGAAGTAGATCAGTGAGATATTTTGCTTGATTAACAAAAATACCAGTAGATGACCTGTGGATTTCCAAGCCAAGGAAGTATTTCAACAATCCAAGATCTGATATCTGAAATTCATCGGCTAACTGATTTTTTAATTGAGAGATGTAAGAAGAATCTGGTCCTGTGATTATGATGTCATCAACATAGAGCAACAAGTAAGTTAGGGAAGATCCAACAGATCTTATAAATAATGATGAGTCTGCAGTGAAGCGATGAAATCCCAGTGTGAATAAATGAGATGTAAAACGATCAAACCATGCCCTAGGAGCCTGTTTGAGACCATATATACTTTTGCGGAGCAAACAAACATGATAATTTGGACATGATTTGTCAATGAAACCAGTAGGTTGAGACATATAAACTTCCTCTTGTAATTGCCCATGTAGAAAGGCATTTTTCACATCCAATTGGTTTAATGACCATTGATAATGAGCGGCAAGAGCCAAGATGATTCGAATTGTTGGCTTTTTGACCACCGGACTAAACGTTTCAGTAAAGACAAACCCTTGTACCTGATGGTATCCTTTTGCAACTAAACGGGCCTTATATCGGGCAACAGATCCGTCGGTGTTATATTTTGTTCGAAAGACCCATTTACAACCCACAACGTTCATTTAAGGTAGACGAGGTACTAAAGACCACGTACCTTGTTCTTGAAGAGCATTGAACTCCTCACACATGGTTGTTCTCCATTCTGAATATTTTGAGGCTTCACTGTAGGAATTAGGTTCTGTCGGAATCAGTGAGGTTGCCCAGTGGACAAATAGGCTTTAGGCTTGAAAATTCCTGACTTTGCCCGTGTTTGCATGGGATGAGAATTTATAGTGCTTCGGGAGGCACCAATGGAGCCTTCATGGGTTTCAGACAATTCATGAAATTGGTTATCTACTGTGACTGTATTCTGAGAAGGTAAATCTACAATAACAGAGTCAGTAGAGCTCAAAATATGACCAGGAGAAGAGATCATGTCATTAGTGGGTAATTGGTGGGGGTTGGGTGAGGGGGAAGGTTGGTTCATGTGGAGTAGAGTTATTAGGGGGTTTGGGTCGTGATGAGTGAATGTGGAACTAACAGAAGAATTCATTTTATTTTCAAAGGGAAATATGGTTTTATGGAAAATAACATGACGGGAAACAATGGATTTTTTTGTGGTAGGATTATAACATATATAACCTTTAAATTCAAGTGTATAACCAAGAAAGATGTGTGGAGCAGTTTTAAGTTGAAGCTTATGTTTGGTGTAAGGTTTTAACAAGGGATAACATGCACACCCAAAAACTTTTAAATGATGCAAATCAGGGGTATAACCAAAGAGTTTCTCAAATGGAGATAACATGTTGAGGGAGGGAGAAGGCATGCGATTTATTAGAAATATAGCAGTGGAGAATGCATATGGCCAAAATTCTAAAGGGACGGAAGAATGGAAAAGTAATGCCATAGCAGTTTCAACTATGTGACGGTGTTTTCGTTCAACTGTACCATTTTGTTCAGGTGTGTGAGGGCGAGATTTTTTTATGCAAAATACCTTTAGTTTGAAAAAGTGAGATATTTGAAGAATTGCAAAACTCTCCACCACCATCTGAGCGAAATTTTTTTATTTTCCTAGACAGTAAATTCTCAACAAAAGGAAATTTTTTTTGGAGAATAGAGTTGACATCAGATTTATAAGTAATAGGAAAAAGCCAAGTGAATTTGCTAAAGTCATCAATGAAGCTAATATAATAACGATATCCATGAAAAGAAGGAACTGGTGAAGGTCCCCATACATCGCTATGAATAAGTTCTAGTGGTGCAGTAGAAATAGAAAGTGATATTGGAAGGAAAGCTTAGACATCTTAGCTTTTAAACAACTGACACATTCGCATGTAGAAATAGTAGAAGATAAGGAAAGACCTAAACGAGATAAACTGGAACGTAATATTTTGGGAGCAGGATGGCCAAACTGGAGATGCCATAGAGAACACTCTTGTTTTGCATGAAAATTGTAGTTTTTGAGGTGCATGTTGAATGAAGGTAGAATGGATGAGCTTGGAATTGGATAAAAACCATTGATGCTCTCACCAGAATATAAAGTTTTGCCAGAGACTTTATCCTGAATTAGAAACCAATCAGTGTCGAATATAAAAATACAATTATTGTCAAGGCAAAATTTATGAATTGATAAAAGATTAGCAGCTAGGTCAGGAGCATGGAGAATTTTGGAAAGATTAAAGGTGTGAGAAGGAGTAGAAAGAGTATTGCTACCCGTATTTTGGATATTTATAGGTTGACCATTACTCACTGTGACTGATTCTTCCCCATTGTAGTTGTTGGACATATTTAGATTTGCCAAATCATTTGTCATGTGAACATTGCAGCCACTGTCAGACAACCAAAAATTGTTAGAATTATCATTAGATGACTGAGAGTTCATAGAATTTACCGCCATTGCAGCCAATTGAGCAGGAGGATGGCGACCCTGATAAGAAAAATTCATTCGGTTATAACAATCAAGTGCTCCATGGCCTGATTTAGAGCAAATTTGATAAAATATCAATTTGTAGAAACCCGAATTTTGATTTGAAGGTGCAGATCCAAGATGATTATTTGCTGATCCAGAATATCCACCAGGCCCAGTTGAGCCTTGGCCCAAGTAATGAACTGGACTGGAGCCCAAAATGCTTTGTTGTATATCACGGGCTGGGGAGGAAGTTATTGGGTCGGTTGTTGAATAAATTTGGGAACCAAATGGCGTTGGGCTTCGCTGAGAGTGGAAAGGTCGCCCGCGTGAAAACCCACGTCGTCCCCTTCCTCGCCGATTTGTAGGGTTTGAGCAGCGACCATGGCGATCGCTACTGGTTACTGTATTTGGAAGGCGGCGGAGAATAGTTTTTCTTGACATCGAAGCAAAGCACATGGAGCTCTTCCAAGGACTGAGATCCACTCCGTGTTCGTATAGATGTGCGAAAGGCGTTGAAATCCGTCGGTAGGCCATTTAAGGTATGAACAAAATTTCTTCATCATCAATAGAAATGGATGCTATATAGCGAAGCTTATCAACAATCTCTTTAATTCGACTAGTGTATTTTTCAATCGATTCAGTAGGTGATTTCTTGATTGTATATAAAGCAGATCTTAAATCAAGAATGTTAGATCAAGTATTTGAGGAGTACCATTTTTCCAGAGATGTGCAAGAGCAGAGGGTGACAAGGTAGCGTTTATTAGGGTGATGAGCGCTTGATCACGGGAGATCCATTGTAAGTATTCAGGATTGATCTCTGTGGTGATAGTGCCAGTGGATGAAGAAGGAAATCGTTCGGGTCTAGGAAGAGAGTCATCAATGTGGCCAAAGAGAGAATGAGCCTTGAGAATGGATGAGATCCAAATTTCCATAATCGTAATTTGTTGAATCGAAGTCGAATCGGCCACAGAAGGTCGAGATGTTGGAGAGTAGAAATAAAGGTGAGGATGTTGATTGAGAGGTCTTTGTGGAGGACATTGTTGAATAGGTGAAAAAAATGATTATTGATTCTACGATACCATGTAAAGATAGAAGAGGAAGATGAATAGAAACTTGTCTGATATATTTTCATTACCAGCTCAAGATCTTTATACAGAATAAATGAATTATAAAAGGAAATGTACAACTCATGATTTACAATCAAGGGCTTAAATTAAGGAAGATTTGTAGAGGGAATATCGGAGGATATATTCTCTTAATAGAAACCCACTCTCACCCTCAAAAAGAATAAATAGTTTCAATTTATTTATTTTATATGTTTATCTTGTAAACAATTTTTTTCTCTCTCTCTCTAGGAACCCATTAGTCTTTACGATGTCAAAAAACATATTATAATTCATTAATCGAGATATTTTTTTTACTCTATTCTTTATTTTCTTAACTATGATTATAATCATTTGATAATTTGATATTTTAATTCAATGGGTTGGACATGATCACTAAAAAATTACTATCTATTTCATAAGATACCAATCTTTAAAAAGTTGCATAATCAACAATACATTGTTTCTATGGGGTGAATGAGAGATTTCAGCTAATCACAAATTACCACATCATTAATTTAAATTAATGATAAAGTAAATTTGAGACCAATTATAAATTTACATGTGTCCTAAAATTAAATTAAAAGACATGAAAAATCGATAAATTAAATAATAACTTAAAATGGATCGAGTTCAATTTAAATAATCCAAACCTATTAAAAAATAAATGGATTGAATTAAATCTAAATAAGACTACTCCAAGAGTTGAGTCCAAAATTCACCAAACTCAAGTCCATGCAAGGTCCATCAGACTCTATAAATAAATAAGACTACCCTCCATTTAGAGACATTTAGAAGAGTAATATCCAACCAGAGAATTTAAGGTCTTTCAGAGTCAGGATTCAGAAGCAAGAGAATTCAGAGTCAGCTCAGCCAGAGAATTCAGGGCTAATCAAATTTAAGAAGCTTTAATTCCAGTTAGAGAATCCAGAGAGTTCGGAAGATCGACTACAGAAATCCATATTCAGAGGATTATACATTAGAGACATTAAATTTCTTTAAAAATCTCGTGCGAATACTATGAAAATGGATTCATTAAAAATTGAGGCAACACCCAAATATGATGTAACCTCCTTGGTGGCCACATAAAAAAAATAAAAAAAAAAGTGTGGTAAATAAGTGAGAAACACAGATATAGGTGGTAGCACCCAATTATTGACCTTTAAAATTTTACTATGCTAACCCACATTGGCATAATATTTTAAATAATAGATTTAAGTCCAAGTTAGTTCATAAATTTAAGCATTATTTAAAATTTTCACATTATGAATGGTGGACTATTCCTAAGAAAGCTTTAGGTATAGCATAGTAAATTAAATATAGTAATAATGTATTGTGATGACGTGGTGTGTGTAGTTTTAAATTTTCAGAAAGCACTCGATTGGAAAATGGAAAAAAGGATAAATAAGTCGGTGACGCGGCGAACAATCGAATCAATGTCACAGCTGTATCCTCCATGCCCTTCCAATCTGTGTACCCATTTCCAACAACAATATTTTCTTCACGCCACACCAATATTATTTATTCTTTCAAGATTTAATACAATATCCTTAATATATTATTGATGTAGTATGCCATTTACGTGATATATCTAAAAGAAAATATATCAATAGTATATAAGTAACATATTATTAATATATTTCGTTTTAGGTATACATCGGTTGACTGATATACCAAATGTAAAGTATATTAGGGCCTGTTTGGTAGGCAATCCGAAAACAGAAATTTGAAAACAAATGAGTCAATGAAAACAGAGTTGTATTTCATGTTTTCAGATATATGTTTGGTAGCAGATTTAGAAAATTGATTCCATTTTAAACAATAGTGTAAAATGTGTTCTATAATATATTTATAGATCATAAAATTAGTTGTAGTTGCAAAACTAAATATTAGGTTGAATATAAGACATTATTAATTAATTTATGAACATGTTTTTTTAATATAAATTTTATATAATTATTATTTTATAATATAAATATTTATAATATATTATATTATACATATTTTAATTTAAAAAAAAAATAAATTAAGTTTATAAATATGAAATACTATATTTATTAAGATTTTTTTCTTTGTTTAAAATAATTCTGCATTTTAAAATTTCAAATTCAGAATCTGGATATAATGAAAACATAAAAATGTTGTTTTTTAATTTCTACTATTTGGATCACGAGAATCCAAAAAGCAGTTTTTTGAAAACAAGTCCATTAAACACGTATTCACTGAATTCAGTGAATCTGAAAACATAAAACAGAATCCGGATTACCTACCAAACAGTCCCTTAGATATACTATTCATATATCAAATATAAAGTATATTAAATATATTACTGATATAATTGTTGATACACCAATGAGAGTAAAATTGAAATAATAAAAAAATCAAAATCAAAATTAGAAAATTTTGCTATAATTGCAAATCTCCAAAAAATCATTGCTATATTTGTAAATATGGTAATATTTTTTTTTTTTTGCTACACATTACAATTTTTTTCAAATTATAAAATTAAATATTAAATTAATTTTGAAATTTTTGGAAATAATTTTAAGCATAGCAAAAATAATTTTAATTAATTAAAAAAATCACTCTCAAACAAACTTTTATTATTATAGCAAGAGGGAGAGATTAGGACCCGAAAGTCGCCACGGGCTGAACGTGCAATTTTTTTGATCCAGTGAGACGGTGGGCTGGAATTTTCTTTCTTTTGGCCCAAAATAACTCTCAAAATTTAGATATTACGGACTATATATGTTTAATTTTTCGAATTCACGAAGTATATGCTCCATGCTCTTCAATAACAACAACCAAGATTTGATTCAATAAAAAAACACATACATTGAGGTTTTACTTGAGACTGATCTATTTGACTTTTTACGTGGTCCTCATACACGCTTTCTGATTATACAACGTTGTGTGGCTCTCACGTTGTCAGCTGTGTCATGGATATTGGTCACGCACATCACCCACAAGCCACAACATTATTAATATATAATACACAACAACAACAACAACAAATTATCATCAAAAGTAATTAAAAGCCTCCGATCTTGAATTCCTAATCCAATCATGGAAGATCAAACCCTTCCAGTTTCTTGTCCTTCAAAGTTTTCTATTCATGTACTCTTATTTGTTTGTCTCGTGATCTTTAGCTCTTTAAGTACAGCTGCCTCTGCCAACAACTTCTACAACGACATTGATCACACATGGGGAGAGGACAGAGTTCAAATACTCAACAATGGCGAAGTCATTACGGTCACTCTTGACGAAACCTCGGGCTCAGGATTCCGATCTCGAGACGAATATCTCTTTGCCAAGATTGATTTGCAAATCAAGCTTGCCCCTGGAAACTCTGCTGGCACTGTCACTGCATTTTACGTACGTGAGTGTTAATAATTAAGATGAGGGTGAGGCATATGAAAATTAATTGAAGAGATGTTTATTTTTTGGAATTATTTTATAGGTGTCATCTACAGGGGAGTTTCATGATGAGATAGACTTTGAATTCTTGGGAAGAGTTGAGGGGGATCCTTACATTCTCCAGACCAACATGTTCATCCATGGAGTCGGCAAAAGAGAGACCCAATTTTTCCTTTGGTTTGACCCATCGGCTGATTTTCACAACTACACCATTCTCTGGACTCCTCTTCATATCGTGTTAGTAAATCAAAAATAACCATTTTATTCAATATTACCACGTTTTTGTTATCTCTAAATTTAATCAATTTGAGACATAATATTTATTTGTTTTTCATTGATAATAAGTATTGTATTCTCACATGCCTTTAATAAATATACAACATATGTCCACCAAAATTTCAAACGTATTTTTAATTAAGAATTGTGTAGGTTTTAAAAAAAAATTATTCAATTGTTAGGGTTGGAAATTAAAAATTTAGGGTGAAAAATATTGCTATAACTTGACAAGTACCGTAAGGTATAAATTATTTTTTCACATAAAGTTGAGATCTTTTTTTAAAACTAATTGTGGCATGTGGGGGTATTTTAAAGACTTAGATCAACTAAAATCTGGACAACTAAAATAGAATTAAAAAAAAAGATGATATTATATTTTATTGTTGAGTTGAGACAGGCTGTCCGTTGACGGGATTCCGATCAGGGAGTTGAAGAACAAGAAGGAAAAGGGAGGTCCATTCCCAGTCGGGCAGGCGATGAGAATATACGGCAGCCTGTGGAACGCCGACAGTTGGGCCACAAGAGGTGGGGCGGTGAAGATAGACTGGACAAAGGCGCCGTTCCGAGCTTGGTACAAGAATCTAAGAGCCACAACAGGTTGCACTTCAATTTTCTCCTCCACGCAGCTTGATCATGAAAGCCAACGCCAAATGAAATGGGCTCAAACCAAATTTATGTTCTATGATTACTGCACTGACACCAAGCGTTTCCCTCAGGGTCTTCCTCTTGAATGTTCATGA ATGGCCTTCTTTTCTTCCTCCTCTTATTCAAAAAAGCTAACTAATAATTACTGTATGTGTATGCTGCTACTTTTGATGGTTTATCTGCTGGGTCCGTTTGTGAAAATGGCAGAAGCTGGAAACTTCTACCAAGATGTGGACGTAACTTGGGGAGATGGTCGAGGAAAAATCATGGAGAATGGCAATCTTCTCACTCTTTCCCTTGACAAAGCTTCTGGTTCAGGCTTTCAATCAAAGAAACAGTATCTCTATGGCAGGTTTGATATGAAAATCAAACTCGTCCCTGGCAACTCAGCAGGCACTGTCACAGCCTATTATTTGCGTTCACAAGGTTCTTCATGGGATGAGATAGACTTCGAGTTCCTAGGGAACTTGAGTGGCCAACCGTATATTGTACATACAAATGTTTATATACAAGGCCAAGGTAATAGGGAGCAGCAATTCTATCTTTGGTTTGATCCAACCGCTGACTTTCATACCTACTCCTTCCTCTGGAACCCTGCTCGCATAGTGCTGTCCGTTGACGGGATTCCGATCAGGGAGTTGAAGAACAAGAAGGAAAAGGGAGGTCCATTCCCAGTCGGGCAGGCGATGAGAATATACGGCAGCCTGTGGAACGCCGACAGTTGGGCCACAAGAGGTGGGGCGGTGAAGATAGACTGGACAAAGGCGCCGTTCCGAGCTTGGTACAAGAATCTAAGAGCCACAACAGGTTGCACTTCAATTTTCTCCTCCACGCAGCTTGATCATGAAAGCCAACGCCAAATGAAATGGGCTCAAACCAAATTTATGTTCTATGATTACTGCACTGACACCAAGCGTTTCCCTCAGGGTCTTCCTCTTGAATGTTCATGA ATGGCCTTCTTTTCTTCCTCCTCTTATTCAAAAAAGCTAACTAATAATTACTGTATGTGTATGCTGCTACTTTTGATGGTTTATCTGCTGGGTCCGTTTGTGAAAATGGCAGAAGCTGGAAACTTCTACCAAGATGTGGACGTAACTTGGGGAGATGGTCGAGGAAAAATCATGGAGAATGGCAATCTTCTCACTCTTTCCCTTGACAAAGCTTCTGGTTCAGGCTTTCAATCAAAGAAACAGTATCTCTATGGCAGGTTTGATATGAAAATCAAACTCGTCCCTGGCAACTCAGCAGGCACTGTCACAGCCTATTATTTGCGTTCACAAGGTTCTTCATGGGATGAGATAGACTTCGAGTTCCTAGGGAACTTGAGTGGCCAACCGTATATTGTACATACAAATGTTTATATACAAGGCCAAGGTAATAGGGAGCAGCAATTCTATCTTTGGTTTGATCCAACCGCTGACTTTCATACCTACTCCTTCCTCTGGAACCCTGCTCGCATAGTGCTGTCCGTTGACGGGATTCCGATCAGGGAGTTGAAGAACAAGAAGGAAAAGGGAGGTCCATTCCCAGTCGGGCAGGCGATGAGAATATACGGCAGCCTGTGGAACGCCGACAGTTGGGCCACAAGAGGTGGGGCGGTGAAGATAGACTGGACAAAGGCGCCGTTCCGAGCTTGGTACAAGAATCTAAGAGCCACAACAGGTTGCACTTCAATTTTCTCCTCCACGCAGCTTGATCATGAAAGCCAACGCCAAATGAAATGGGCTCAAACCAAATTTATGTTCTATGATTACTGCACTGACACCAAGCGTTTCCCTCAGGGTCTTCCTCTTGAATGTTCATGA MAFFSSSSYSKKLTNNYCMCMLLLLMVYLLGPFVKMAEAGNFYQDVDVTWGDGRGKIMENGNLLTLSLDKASGSGFQSKKQYLYGRFDMKIKLVPGNSAGTVTAYYLRSQGSSWDEIDFEFLGNLSGQPYIVHTNVYIQGQGNREQQFYLWFDPTADFHTYSFLWNPARIVLSVDGIPIRELKNKKEKGGPFPVGQAMRIYGSLWNADSWATRGGAVKIDWTKAPFRAWYKNLRATTGCTSIFSSTQLDHESQRQMKWAQTKFMFYDYCTDTKRFPQGLPLECS Homology
BLAST of Tan0010789 vs. ExPASy Swiss-Prot
Match: Q38910 (Probable xyloglucan endotransglucosylase/hydrolase protein 23 OS=Arabidopsis thaliana OX=3702 GN=XTH23 PE=2 SV=1) HSP 1 Score: 367.5 bits (942), Expect = 1.4e-100 Identity = 169/275 (61.45%), Postives = 203/275 (73.82%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy Swiss-Prot
Match: P24806 (Xyloglucan endotransglucosylase/hydrolase protein 24 OS=Arabidopsis thaliana OX=3702 GN=XTH24 PE=1 SV=2) HSP 1 Score: 358.6 bits (919), Expect = 6.5e-98 Identity = 157/246 (63.82%), Postives = 197/246 (80.08%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy Swiss-Prot
Match: Q38907 (Probable xyloglucan endotransglucosylase/hydrolase protein 25 OS=Arabidopsis thaliana OX=3702 GN=XTH25 PE=2 SV=2) HSP 1 Score: 355.1 bits (910), Expect = 7.2e-97 Identity = 162/256 (63.28%), Postives = 196/256 (76.56%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy Swiss-Prot
Match: Q9ZSU4 (Xyloglucan endotransglucosylase/hydrolase protein 14 OS=Arabidopsis thaliana OX=3702 GN=XTH14 PE=1 SV=1) HSP 1 Score: 350.1 bits (897), Expect = 2.3e-95 Identity = 162/276 (58.70%), Postives = 194/276 (70.29%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy Swiss-Prot
Match: P35694 (Xyloglucan endotransglucosylase/hydrolase 2 OS=Glycine max OX=3847 PE=2 SV=1) HSP 1 Score: 349.7 bits (896), Expect = 3.0e-95 Identity = 160/269 (59.48%), Postives = 198/269 (73.61%), Query Frame = 0
BLAST of Tan0010789 vs. NCBI nr
Match: XP_023003589.1 (probable xyloglucan endotransglucosylase/hydrolase protein 23 [Cucurbita maxima]) HSP 1 Score: 426.0 bits (1094), Expect = 2.5e-115 Identity = 209/296 (70.61%), Postives = 234/296 (79.05%), Query Frame = 0
BLAST of Tan0010789 vs. NCBI nr
Match: XP_023531494.1 (probable xyloglucan endotransglucosylase/hydrolase protein 23 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 426.0 bits (1094), Expect = 2.5e-115 Identity = 209/296 (70.61%), Postives = 234/296 (79.05%), Query Frame = 0
BLAST of Tan0010789 vs. NCBI nr
Match: XP_022933962.1 (probable xyloglucan endotransglucosylase/hydrolase protein 23 [Cucurbita moschata]) HSP 1 Score: 424.5 bits (1090), Expect = 7.3e-115 Identity = 209/296 (70.61%), Postives = 233/296 (78.72%), Query Frame = 0
BLAST of Tan0010789 vs. NCBI nr
Match: KAA0058292.1 (putative xyloglucan endotransglycosylase [Cucumis melo var. makuwa]) HSP 1 Score: 418.3 bits (1074), Expect = 5.3e-113 Identity = 196/288 (68.06%), Postives = 230/288 (79.86%), Query Frame = 0
BLAST of Tan0010789 vs. NCBI nr
Match: XP_004146358.1 (probable xyloglucan endotransglucosylase/hydrolase protein 23 [Cucumis sativus] >KGN65440.1 hypothetical protein Csa_020111 [Cucumis sativus]) HSP 1 Score: 414.8 bits (1065), Expect = 5.8e-112 Identity = 193/287 (67.25%), Postives = 228/287 (79.44%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy TrEMBL
Match: A0A6J1KTR8 (Xyloglucan endotransglucosylase/hydrolase OS=Cucurbita maxima OX=3661 GN=LOC111497144 PE=3 SV=1) HSP 1 Score: 426.0 bits (1094), Expect = 1.2e-115 Identity = 209/296 (70.61%), Postives = 234/296 (79.05%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy TrEMBL
Match: A0A6J1F1B2 (Xyloglucan endotransglucosylase/hydrolase OS=Cucurbita moschata OX=3662 GN=LOC111441216 PE=3 SV=1) HSP 1 Score: 424.5 bits (1090), Expect = 3.5e-115 Identity = 209/296 (70.61%), Postives = 233/296 (78.72%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy TrEMBL
Match: A0A5A7UQY7 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold274G006260 PE=3 SV=1) HSP 1 Score: 418.3 bits (1074), Expect = 2.5e-113 Identity = 196/288 (68.06%), Postives = 230/288 (79.86%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy TrEMBL
Match: A0A0A0LU38 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis sativus OX=3659 GN=Csa_1G422980 PE=3 SV=1) HSP 1 Score: 414.8 bits (1065), Expect = 2.8e-112 Identity = 193/287 (67.25%), Postives = 228/287 (79.44%), Query Frame = 0
BLAST of Tan0010789 vs. ExPASy TrEMBL
Match: Q84V49 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis sativus OX=3659 GN=XTH4 PE=3 SV=1) HSP 1 Score: 414.5 bits (1064), Expect = 3.7e-112 Identity = 192/288 (66.67%), Postives = 229/288 (79.51%), Query Frame = 0
BLAST of Tan0010789 vs. TAIR 10
Match: AT4G25810.1 (xyloglucan endotransglycosylase 6 ) HSP 1 Score: 367.5 bits (942), Expect = 9.9e-102 Identity = 169/275 (61.45%), Postives = 203/275 (73.82%), Query Frame = 0
BLAST of Tan0010789 vs. TAIR 10
Match: AT4G30270.1 (xyloglucan endotransglucosylase/hydrolase 24 ) HSP 1 Score: 358.6 bits (919), Expect = 4.6e-99 Identity = 157/246 (63.82%), Postives = 197/246 (80.08%), Query Frame = 0
BLAST of Tan0010789 vs. TAIR 10
Match: AT5G57550.1 (xyloglucan endotransglucosylase/hydrolase 25 ) HSP 1 Score: 355.1 bits (910), Expect = 5.1e-98 Identity = 162/256 (63.28%), Postives = 196/256 (76.56%), Query Frame = 0
BLAST of Tan0010789 vs. TAIR 10
Match: AT4G25820.1 (xyloglucan endotransglucosylase/hydrolase 14 ) HSP 1 Score: 350.1 bits (897), Expect = 1.6e-96 Identity = 162/276 (58.70%), Postives = 194/276 (70.29%), Query Frame = 0
BLAST of Tan0010789 vs. TAIR 10
Match: AT5G48070.1 (xyloglucan endotransglucosylase/hydrolase 20 ) HSP 1 Score: 347.8 bits (891), Expect = 8.1e-96 Identity = 154/280 (55.00%), Postives = 207/280 (73.93%), 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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