Lsi09G014770 (gene) Bottle gourd (USVL1VR-Ls)
The following sequences are available for this feature:
Legend: five_prime_UTRCDS Hold the cursor over a type above to highlight its positions in the sequence below.AAACACTTTAATTCAGTTATTCTTCATCCTTTTATACGAAGTTGGTTAATAAACTTTCACTCAAAAAAAAAAAAAAGAAAAACTAATTTTCATTGGTTAAGAAATTTCCCAAATGAAGAAAAAAAAAAGAAGAGAAAAATCCAATTTGTGAGGGAACGTCGACGTGGAAACCCAATCGTGAAAGCCAAAAAAATCATCCCAAGAACGCAACTTTTCCCTATAAAAACACACTACCCTCTTCACTTACGCTATTAAGCCCACTCACTCCAAACAGAAATAATAATAATAATAATTATTATTACTACTTTTTTCAATTATTGTTATGGCTCGTGATTTCAGAAATAGGCGTTTGAGGTCGGCTGCGGCGATGTGGGTGGTGGTGGTAGTGGCGGTGGCGATACCAGCGGCGGAGGGGGCGGCGGCGTTTGCATGTGACAAGCGGAATGTGGGGACAAGAAACATGGGGTTTTGTAAGACGTCGTTGGGAATAGAAGAAAGAGTTAAGGATTTAATTGGGAGATTAACGTTAGGAGAAAAAATAAGGCTTTTAGTTAACAATGCGATTGCGGTGCCGCGGCTGGGGATTAGAGGATATGAGTGGTGGTCCGAAGCGCTTCATGGAGTCTCTAATGTGGGTCCCGGTTCTAAGTTTGGTGGGCCCTTCCCTGGCGCCACTAGCTTTCCTCAAGTCATCACAACGGCTGCTTCTTTCAATCAGTCTCTCTGGCAAGAAATCGGACGGGTCACATTTCTCTCTCTCTCTCTCCATTCATATTTATCTTTTTTTTAATAGAAAATTTATCATATTATATATTATATATTTTTTTTAGTTGAAATATTTTATTTTCTCTCCTTATTTTGAGTGGTTTATCTTTTTTTTTTCTTTTTCTTTTTTTTTCTTCTATAAATGTTAGTTTTTTTTAACAAAAAAATTAGTCAAATTAGTTACATTGTGATGACTAATTTGAATAATTTTTTTAAAATTAAAATACTATTTTTGTCTTTAAATTTTGAAATTTATTTTATTTTAGGTCATCTAGTTTCAAATGATTAATTTTAGACCTTATATTTCTAATAAATCTTAAATCTGGTTTCTTAAAGTTAATTTTTATCAAAATTATTTAAATAATAATACAAATAAGAAAATATAATATTTGAATATATTTTCAAATTTTATAGTAAATATGCTGTTTTGAAAAAATCAACGATAAACCTTTTTTTTATATATATTTTAATGATATGCGTTAAATATTTTTAACTGTGTCTAGATTATCGTTATACTAAAAAAAAATAATAATTAAAATATGTTCAGGTTAATTTTGGGGGCATGCCTTTTCTTTTCCAATTGGTAGTGATGGGTGATTTTCTTACCTTTTTTTATGATTGAAATATTGTGAACATAAATTACCAAATTGCCCTCGAAAGGGAAGTAATTTGATTGATTGATATATTTGAGGATGTGAAAGTACTGTTTTGGGTGTGATTTTTAAAAGCTTTTGTTGCCTTCCTTTTTACATATTTATGAAAACTATGTGGAAAGATGTTTTTTTATACTAATTTCATTTTTTTTGAAAGATTATTTACCGATATAAAAATAAATAATATAACATGTTATTTTCTAAAAATTAAATTAATGAATATATTTTTAAAAAATTAGGGTAACTGTCAAAAAAATGTCTCTTCAAATTCCATTATAAAACAACCCCTAAACACAGTTGAATTACTACTTTAACCCTGCTATTGATAGCTTTTTTTGAGAGTGTAAAAAGTGAAACACAGTTAAATTACTACTTTAACCCTGCTGTGATAGGAATAAATAATATTTTAAGATTAAATATCACGTGTTAATACTTTATTATCTATATTTTATTCTTCACGGACCCTCGCTAAATCCAATTTTGAGAAGTTTAGATTAACAAACTTTTTTTTTCTTGTAAAATATTATCGTATTAAACTAATCCCTTTTATTAAATAAAATAAATTTGATTCTTTGTGAGGGAAAAACAAATGCTGGGACCAGAATACTCCAATACATTATTAAAAAAAAAGTCATAATAAAATATTAAAAAGTATGTAAATTTGGGGTTAATTCAGTGGTCCGCCTGACTGTGGAAGCAGAACAACTTGTTCATCTAATCTGGATATATATATATATATATATATATATATATATATATATATTCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNATATATATATATATATATATATATATATATATATATATATTCCATTCTAATACTTTTTTAAAAAAAATAAAAGATCCATTTTAAAATTTTAAAATATATATTATTCAAATTTTAAAATATATATTATTCAAATTTTAAAAATGACATTGACCTCTGTCTTGCTGTCAAATTCAGAATTGACAGAGCATGCGTGTACCATGTGAGGGTTAAAAAAATTTAATTTATTACCATTTATCTAACTATTATTATTATTTATATTTTAATTTATTAACTTTTATAGTTTCAACTAAAATATTTTATTATATAAATATCTCAACCTAACATAACTCCAATGGATTAAAACATTATATCACCTACCAAAAGATTGAAAATTCAAATCTTTAACTTCTACAAAGTTGTTGAAGGAAAAAAAGCCATATTTTTAAACATAAGAGAATAAAGCTAATATTAGATAAAGTAAAAAAGTAGTTAAATAAACATATAATATAGAATACAAATAAAAAATAAATATTATTTGGAAAAAAAATTGACAATCATAAATTTAGTGTATGTATTTTCAATTTGTGTTTAGAAAGTTTGAACTCTAAAAAATATTTAATACATTGTTAAACTTTTAATTTTGATTATAATAAGTCTTTAATATATTTGGAATTTGGAATTTGGAATTTGAAATTGAATTTTATGTTTATTAGAGCTAAATTCTTATTTTAGTATCTAGTATGTTCCCATTTTTTTAAAAAGATATTATGAAATTTTAATTATCTATTAAACCTTATATTAATAACTTATCGGATACAATTTTTAAGTTTAAAGACTAAATATATATATATATATACTTGAGGTTGCTGGCCTTGTAAATGAGAAAGGAAGAAAAGTCCAATATTCGTTTGACACATTTTCATTTCTTAATTCTACGGCGTAGCATTAGGTAATCAATAGACCTTTCAACCATTCCCAATTAACTTTCAATGGCCGCCATTGACAAGTAGAGAAATAATTAAGAAACTGAAATTTGTTTAATTCGTCATTATTATTGTTTTCATTCACATGTGGTTAATTATTAAAATTCAAACTTTTGAGGTTTTAATCGAAAATGAGTTAAACCGTATTGAGATTAACATATTATAATTATTAATAATTACATCGAATGTAACGTGTGTTGATATGCAGGTGGTTTCAGACGAGGCGAGAGCTATGTACAATGGAGGAATGGCAGGCTTAACCTACTGGAGTCCAAACGTGAACATTTTCCGAGATCCACGGTGGGGACGAGGGCAAGAAACTCCTGGCGAGGACCCGATATTGGCCGGAAAATATGCCGCCAGCTACGTCCGAGGACTGCAGGGAAATGCTGGGGGGAAAAGGCTGAAGGTGGCTGCTTGTTGCAAGCATTACACTGCCTACGATCTTGACAATTGGAATGGAGTAGACCGGTACCATTTCAATGCTAAGGTATTAGTTTATTGGGCTTTTGAAATTGGAAGCCCATATCGCGAAAGAAGGCCTTAATGGGCCGAGGCCCATTGAGCTCATATAAATCTTAATGGGCTTTTTTTTGGGGCAGGTGAGCAAACAAGATTTAGAGGACACTTATAATGTGCCATTCAAAGCTTGTGTGGTGGAAGGAAAAGTGGCGAGTGTAATGTGTTCTTACAATCAGGTCAACGGGAAGCCAACTTGTGCTGACCCTGATTTACTTAAGAACACAATTCGGGGAGCTTGGGGATTAGATGGGTGAGTCAGCATGGAATTACTATGAACAATCCTCGTTCTTTTAGTTCAACGATTATAGAGTGAAAGATTAAAATATCGAACTTTAGAAAGATAATTTAGAAGTTGGATTATTGATTAGTGGTCGATTGGAACAGGTATATTGTGTCTGATTGCGATTCTGTTGGAGTTTTATACGATAGCCAACATTTCACTCGCACACCTGAAGAAGCAGCTGCTTCCACAATTAAAGCTGGTACGTATTTTTTTTTTTAGATTTATTTTGGATTCAACCAAGGTTTAAGATGTCAAAGTCAATGATTTTTTTTATAGAAAAATTATTAAAATAAAATATTAGATTGACAAGCTAAAGTGTCTATTGTTTATAATATCTTAACATTAATAACATTTTATTGCTTGTTCGCTATATTTCATGAACTATTTTATGATATACTGTGAATTTTTATCGAAATTATTGAATAACTTAATGACTTATTAGACATAAAACTAAAACTAAAACTTCAAGAAAAAAAAATAAATATAAAATCAAAAGTTTATAATTTTATTAATAATTTTTTAAAAGTTGAAAAGCATATTAAACATAAAACTAAGCTTAAAGACAGTTTTGTGATGTTTTATTAGAGTGATATTCTATTAATATATTTCAAATACATAGACATACCATTTTAACGAACAAATCTTGTTGATAGAATAGGTTGAATTCCATGTGTTAAATAGTGTGCTAAGAAACTGAAAACATGAAGGGCCGAATTAAGAAATACCCAAGAGATTAAGGACCAATTAGAAATAAACAACTTCTAATTTTAGCAATGACATGCAGGTTTGGACTTGGACTGTGGACCATTTTTGGCAGTGCATACAGCAACAGCAGTGGGAAAAGGACTCCTAAAAGAAGCTGATCTCAACAATGCCTTAACCAATTTACTCTCGGGTAATTATAATTGATAGCATTTTTAAGACTAATAATTAAATGTATAATAACATTTATACATAATTGTAAATATAGCAAAATTTATAAGTGATAAACTTCTACCATTCATATAGAAATTTAAGTTTTATTATATCTGTGAATTTTTTTGTACTGTGTTATATATGTTAATGTTTTGAATCTGATTACTATATTTGCAACTGTTTCATTTACTCAGTTCAAATGAGACTTGGAATGTTCGATGGCGAGCCTGCGGCCCAACCCTACGGAAACTTAGGCCCAAAAGACGTCTGCACTCCGGCCCACAAACAGCTAGCCCTCGAAGCCGCAAGACAAGGCATAGTCCTTCTTCAAAACCGAGCCGCAGCTTTACCACTCTCCCCCACGCGCCACCGTACAGTGGCGGTAATCGGCCCAAACTCGGATGCCACCGTCACAATGATTGGAAACTACGCAGGAGTGGCATGCGAATACACTTCGCCGCTGCAAGGGATCTCGAAGTACGTTAAGACCATTCATGCGAAAGGGTGTGCCGACGTCGGGTGTGGTGGGGATCAGCTGATCACGGCGGCGGAGGCGGCGGCGCGTGTGGCAGACGCGGCGGTAGTTGTGGTGGGGTTGGACCAATCGATTGAAGCGGAGTTTAGAGATAGAAATGGGGTGGTTTTGCCTGGGCATCAAGAGGAATTGGTTAAGAGAGTTGGGTGGGCTTGTAAAGGGCCGACGGTGGTGGTTTTAATGTCGGGTGGGCCAATTGATGTCTCGTTTGCAAAGAATGATGCTAAAATTAGTGCGATTCTTTGGGCTGGGTATCCTGGTCAAGCTGGTGGTGCAGCCATTGCTGACGTTTTGTTTGGAGCTACTAATCCTGGTAATCAATTCATTTCCTCCCTCTTTAAATTTCGAGTTTTTATTTTCTTTTTAGTTAATTATAAAAAACTTGTTTGGAGCTACTAAGCCTGGTAATCAATTCATTTCCTCCCTCTTTAAATTTCGAGTTTTTATTTTCTTTTTAGTTAATTATAAAGTTTTTTTTTTCTTTGAATGAGAGATCGAACTACTAATCTACAGAGTGAAGACCATGTCAATTACGATTGAATTAAGTTCAACCTGAGATTTAATTATAGAGTTAACGTATTGTGCCTAAAAAGTTTTATGAACTTTAAAATAAATGTTTAATATGTTTATAAATTTTCAACTTTTTTTTTTTTGAAATTTTAAAATATTAATTCGTATATTAGAATTCTAGATTTTTAATTGTGTCTAGTAAATTTGTAAGATTTAAAAAAATCTGACACAAAATTGAAAATTCAATGACCTATTTAACACATGCACTTTTATAGTTCAACGATAGATTAAAGTTTAGGGAATCTTTTTTAAAATTTAGATATTGGATAGAAGAACATAAAAATTGATTATCATCTATAAGATGAAACCAAAATGGAGAAAAGTTAAGTCATTTGATAACCGTTTGATTTTGGAGGTTAGGTTTTTTGAAATTTAAGTTTATAAATACTACTCCTATTTATGGATTCCTTTATTATGTTTTTCACTTTTCAAAAACGTTTTTAAAATACAAACCAATTTTTTAAAACAAAAAAAAGTAGGTCATTTTTAATAACTATTTGGTTTTTTTTTTTAAATTGTGTTTATTTTTTCATAATTTCTTTAATATAGTATTCATTTTTCTTAAAAATATATTTGAATTATTAAAAAAATACCAAAAACAAAAAAAATTCTTAAAAAGTCTTTTTTCTTTTAATTTAAAAAAATTAGACTTAATTTTGAAAACATAATCAAGAGTAAACGAAGAAGTAGTGTTATGAGCTTAATTTTCAAAATCTAAAAATCAAAGATTTCATTGTTGCTAAAATGCAACTCAAATAGGACAAAAAAAAAAGTGTTGTAATTTTATTTTATTTAAAAAAAAATCGTTATGTCCCTAAATTTTTGTGAATTATTCTCATAATATATACCTAATTTAGCAGCTAATCCTTTTAAAAACCTTTTTTATTTAAAAAAAAAACATTAACTATGAACTAAAATGTTTATATGAAAAGATAAAATTCTTTTTATTTTTTTTTTTATTGTAAATAAATGGTTTGAAAAAGAATACAAAGGCAAAAATTAAATAATTATCAAGAAGTTTATATATTTAACGATCTGTTGGAAATTATACAGGAGGAAAATTGCCAATGACTTGGTACCCACAAAGCTACCTAGCGAAGGCCCCAATGACAAACATGGGCCTACGACCTGACCCGTCAACCGGCTATCCAGGTCGGACCTACCGGTTCTACAAGGGCCCGGTCGTATTCCCATTCGGGTTCGGTTTAAGCTACACAGAATTCTCCCACTCCATAGCCGAAGCCCCAACAAAAATCTCGCTTCCTCTCTCAAGTCTCTCTCCAAATTCCTCCGCCGCTCTCACCGCAATCAAAGTCTCTCACACCGATTGCGCCTCCATCTCCGATCTCCCCCTTCAGATCGACGTCAAGAACTCCGGAACCGTCGATGGATCTCACACCATTCTCATCTTTGCAACCGCTCCGAACCCGATCTGGTCGCCGGAAAACCACTTGATCGGATTCGAAAAGGTTCATCTGATAGCCGGATCTCAGAAGCGAGTTCGAATCGGAATCCATGTTTGCGATCATCTCAGCCGAGTCGATCAGTTTGGAACTCGAAGAATTCCGACTGGTGAGCATAAACTCCATATTGGAGATCTTACTCATTCGATTTCACTTCACGCTGATTTACAAAATATTAAATTC AAACACTTTAATTCAGTTATTCTTCATCCTTTTATACGAAGTTGGTTAATAAACTTTCACTCAAAAAAAAAAAAAAGAAAAACTAATTTTCATTGGTTAAGAAATTTCCCAAATGAAGAAAAAAAAAAGAAGAGAAAAATCCAATTTGTGAGGGAACGTCGACGTGGAAACCCAATCGTGAAAGCCAAAAAAATCATCCCAAGAACGCAACTTTTCCCTATAAAAACACACTACCCTCTTCACTTACGCTATTAAGCCCACTCACTCCAAACAGAAATAATAATAATAATAATTATTATTACTACTTTTTTCAATTATTGTTATGGCTCGTGATTTCAGAAATAGGCGTTTGAGGTCGGCTGCGGCGATGTGGGTGGTGGTGGTAGTGGCGGTGGCGATACCAGCGGCGGAGGGGGCGGCGGCGTTTGCATGTGACAAGCGGAATGTGGGGACAAGAAACATGGGGTTTTGTAAGACGTCGTTGGGAATAGAAGAAAGAGTTAAGGATTTAATTGGGAGATTAACGTTAGGAGAAAAAATAAGGCTTTTAGTTAACAATGCGATTGCGGTGCCGCGGCTGGGGATTAGAGGATATGAGTGGTGGTCCGAAGCGCTTCATGGAGTCTCTAATGTGGGTCCCGGTTCTAAGTTTGGTGGGCCCTTCCCTGGCGCCACTAGCTTTCCTCAAGTCATCACAACGGCTGCTTCTTTCAATCAGTCTCTCTGGCAAGAAATCGGACGGGTGGTTTCAGACGAGGCGAGAGCTATGTACAATGGAGGAATGGCAGGCTTAACCTACTGGAGTCCAAACGTGAACATTTTCCGAGATCCACGGTGGGGACGAGGGCAAGAAACTCCTGGCGAGGACCCGATATTGGCCGGAAAATATGCCGCCAGCTACGTCCGAGGACTGCAGGGAAATGCTGGGGGGAAAAGGCTGAAGGTGGCTGCTTGTTGCAAGCATTACACTGCCTACGATCTTGACAATTGGAATGGAGTAGACCGGTACCATTTCAATGCTAAGGTGAGCAAACAAGATTTAGAGGACACTTATAATGTGCCATTCAAAGCTTGTGTGGTGGAAGGAAAAGTGGCGAGTGTAATCCAACATTTCACTCGCACACCTGAAGAAGCAGCTGCTTCCACAATTAAAGCTGACGTCTGCACTCCGGCCCACAAACAGCTAGCCCTCGAAGCCGCAAGACAAGGCATAGTCCTTCTTCAAAACCGAGCCGCAGCTTTACCACTCTCCCCCACGCGCCACCGTACAGTGGCGGTAATCGGCCCAAACTCGGATGCCACCGTCACAATGATTGGAAACTACGCAGGAGTGGCATGCGAATACACTTCGCCGCTGCAAGGGATCTCGAAGTACGTTAAGACCATTCATGCGAAAGGGTGTGCCGACGTCGGGTGTGGTGGGGATCAGCTGATCACGGCGGCGGAGGCGGCGGCGCGTGTGGCAGACGCGGCGGTAGTTGTGGTGGGGTTGGACCAATCGATTGAAGCGGAGTTTAGAGATAGAAATGGGGTGGTTTTGCCTGGGCATCAAGAGGAATTGGTTAAGAGAGTTGGGTGGGCTTGTAAAGGGCCGACGGTGGTGGTTTTAATGTCGGGTGGGCCAATTGATGTCTCGTTTGCAAAGAATGATGCTAAAATTAGTGCGATTCTTTGGGCTGGGTATCCTGGTCAAGCTGGTGGTGCAGCCATTGCTGACGTTTTGTTTGGAGCTACTAATCCTGGAGGAAAATTGCCAATGACTTGGTACCCACAAAGCTACCTAGCGAAGGCCCCAATGACAAACATGGGCCTACGACCTGACCCGTCAACCGGCTATCCAGGTCGGACCTACCGGTTCTACAAGGGCCCGGTCGTATTCCCATTCGGGTTCGGTTTAAGCTACACAGAATTCTCCCACTCCATAGCCGAAGCCCCAACAAAAATCTCGCTTCCTCTCTCAAGTCTCTCTCCAAATTCCTCCGCCGCTCTCACCGCAATCAAAGTCTCTCACACCGATTGCGCCTCCATCTCCGATCTCCCCCTTCAGATCGACGTCAAGAACTCCGGAACCGTCGATGGATCTCACACCATTCTCATCTTTGCAACCGCTCCGAACCCGATCTGGTCGCCGGAAAACCACTTGATCGGATTCGAAAAGGTTCATCTGATAGCCGGATCTCAGAAGCGAGTTCGAATCGGAATCCATGTTTGCGATCATCTCAGCCGAGTCGATCAGTTTGGAACTCGAAGAATTCCGACTGGTGAGCATAAACTCCATATTGGAGATCTTACTCATTCGATTTCACTTCACGCTGATTTACAAAATATTAAATTC ATGGCTCGTGATTTCAGAAATAGGCGTTTGAGGTCGGCTGCGGCGATGTGGGTGGTGGTGGTAGTGGCGGTGGCGATACCAGCGGCGGAGGGGGCGGCGGCGTTTGCATGTGACAAGCGGAATGTGGGGACAAGAAACATGGGGTTTTGTAAGACGTCGTTGGGAATAGAAGAAAGAGTTAAGGATTTAATTGGGAGATTAACGTTAGGAGAAAAAATAAGGCTTTTAGTTAACAATGCGATTGCGGTGCCGCGGCTGGGGATTAGAGGATATGAGTGGTGGTCCGAAGCGCTTCATGGAGTCTCTAATGTGGGTCCCGGTTCTAAGTTTGGTGGGCCCTTCCCTGGCGCCACTAGCTTTCCTCAAGTCATCACAACGGCTGCTTCTTTCAATCAGTCTCTCTGGCAAGAAATCGGACGGGTGGTTTCAGACGAGGCGAGAGCTATGTACAATGGAGGAATGGCAGGCTTAACCTACTGGAGTCCAAACGTGAACATTTTCCGAGATCCACGGTGGGGACGAGGGCAAGAAACTCCTGGCGAGGACCCGATATTGGCCGGAAAATATGCCGCCAGCTACGTCCGAGGACTGCAGGGAAATGCTGGGGGGAAAAGGCTGAAGGTGGCTGCTTGTTGCAAGCATTACACTGCCTACGATCTTGACAATTGGAATGGAGTAGACCGGTACCATTTCAATGCTAAGGTGAGCAAACAAGATTTAGAGGACACTTATAATGTGCCATTCAAAGCTTGTGTGGTGGAAGGAAAAGTGGCGAGTGTAATCCAACATTTCACTCGCACACCTGAAGAAGCAGCTGCTTCCACAATTAAAGCTGACGTCTGCACTCCGGCCCACAAACAGCTAGCCCTCGAAGCCGCAAGACAAGGCATAGTCCTTCTTCAAAACCGAGCCGCAGCTTTACCACTCTCCCCCACGCGCCACCGTACAGTGGCGGTAATCGGCCCAAACTCGGATGCCACCGTCACAATGATTGGAAACTACGCAGGAGTGGCATGCGAATACACTTCGCCGCTGCAAGGGATCTCGAAGTACGTTAAGACCATTCATGCGAAAGGGTGTGCCGACGTCGGGTGTGGTGGGGATCAGCTGATCACGGCGGCGGAGGCGGCGGCGCGTGTGGCAGACGCGGCGGTAGTTGTGGTGGGGTTGGACCAATCGATTGAAGCGGAGTTTAGAGATAGAAATGGGGTGGTTTTGCCTGGGCATCAAGAGGAATTGGTTAAGAGAGTTGGGTGGGCTTGTAAAGGGCCGACGGTGGTGGTTTTAATGTCGGGTGGGCCAATTGATGTCTCGTTTGCAAAGAATGATGCTAAAATTAGTGCGATTCTTTGGGCTGGGTATCCTGGTCAAGCTGGTGGTGCAGCCATTGCTGACGTTTTGTTTGGAGCTACTAATCCTGGAGGAAAATTGCCAATGACTTGGTACCCACAAAGCTACCTAGCGAAGGCCCCAATGACAAACATGGGCCTACGACCTGACCCGTCAACCGGCTATCCAGGTCGGACCTACCGGTTCTACAAGGGCCCGGTCGTATTCCCATTCGGGTTCGGTTTAAGCTACACAGAATTCTCCCACTCCATAGCCGAAGCCCCAACAAAAATCTCGCTTCCTCTCTCAAGTCTCTCTCCAAATTCCTCCGCCGCTCTCACCGCAATCAAAGTCTCTCACACCGATTGCGCCTCCATCTCCGATCTCCCCCTTCAGATCGACGTCAAGAACTCCGGAACCGTCGATGGATCTCACACCATTCTCATCTTTGCAACCGCTCCGAACCCGATCTGGTCGCCGGAAAACCACTTGATCGGATTCGAAAAGGTTCATCTGATAGCCGGATCTCAGAAGCGAGTTCGAATCGGAATCCATGTTTGCGATCATCTCAGCCGAGTCGATCAGTTTGGAACTCGAAGAATTCCGACTGGTGAGCATAAACTCCATATTGGAGATCTTACTCATTCGATTTCACTTCACGCTGATTTACAAAATATTAAATTC MARDFRNRRLRSAAAMWVVVVVAVAIPAAEGAAAFACDKRNVGTRNMGFCKTSLGIEERVKDLIGRLTLGEKIRLLVNNAIAVPRLGIRGYEWWSEALHGVSNVGPGSKFGGPFPGATSFPQVITTAASFNQSLWQEIGRVVSDEARAMYNGGMAGLTYWSPNVNIFRDPRWGRGQETPGEDPILAGKYAASYVRGLQGNAGGKRLKVAACCKHYTAYDLDNWNGVDRYHFNAKVSKQDLEDTYNVPFKACVVEGKVASVIQHFTRTPEEAAASTIKADVCTPAHKQLALEAARQGIVLLQNRAAALPLSPTRHRTVAVIGPNSDATVTMIGNYAGVACEYTSPLQGISKYVKTIHAKGCADVGCGGDQLITAAEAAARVADAAVVVVGLDQSIEAEFRDRNGVVLPGHQEELVKRVGWACKGPTVVVLMSGGPIDVSFAKNDAKISAILWAGYPGQAGGAAIADVLFGATNPGGKLPMTWYPQSYLAKAPMTNMGLRPDPSTGYPGRTYRFYKGPVVFPFGFGLSYTEFSHSIAEAPTKISLPLSSLSPNSSAALTAIKVSHTDCASISDLPLQIDVKNSGTVDGSHTILIFATAPNPIWSPENHLIGFEKVHLIAGSQKRVRIGIHVCDHLSRVDQFGTRRIPTGEHKLHIGDLTHSISLHADLQNIKF
BLAST of Lsi09G014770 vs. Swiss-Prot
Match: XYNB_PRUPE (Putative beta-D-xylosidase (Fragment) OS=Prunus persica PE=2 SV=1) HSP 1 Score: 551.2 bits (1419), Expect = 1.6e-155 Identity = 263/394 (66.75%), Postives = 319/394 (80.96%), Query Frame = 1
BLAST of Lsi09G014770 vs. Swiss-Prot
Match: BXL1_ARATH (Beta-D-xylosidase 1 OS=Arabidopsis thaliana GN=BXL1 PE=1 SV=1) HSP 1 Score: 499.6 bits (1285), Expect = 5.4e-140 Identity = 252/395 (63.80%), Postives = 311/395 (78.73%), Query Frame = 1
BLAST of Lsi09G014770 vs. Swiss-Prot
Match: BXL2_ARATH (Probable beta-D-xylosidase 2 OS=Arabidopsis thaliana GN=BXL2 PE=2 SV=1) HSP 1 Score: 490.0 bits (1260), Expect = 4.3e-137 Identity = 240/387 (62.02%), Postives = 297/387 (76.74%), Query Frame = 1
BLAST of Lsi09G014770 vs. Swiss-Prot
Match: XYL1_MEDSV (Beta-xylosidase/alpha-L-arabinofuranosidase 1 (Fragment) OS=Medicago sativa subsp. varia GN=Xyl1 PE=1 SV=1) HSP 1 Score: 410.6 bits (1054), Expect = 3.3e-113 Identity = 202/384 (52.60%), Postives = 274/384 (71.35%), Query Frame = 1
BLAST of Lsi09G014770 vs. Swiss-Prot
Match: XYL2_MEDSV (Beta-xylosidase/alpha-L-arabinofuranosidase 2 OS=Medicago sativa subsp. varia GN=Xyl2 PE=2 SV=1) HSP 1 Score: 391.0 bits (1003), Expect = 2.7e-107 Identity = 196/384 (51.04%), Postives = 264/384 (68.75%), Query Frame = 1
BLAST of Lsi09G014770 vs. TrEMBL
Match: A0A0B2QH27_GLYSO (Putative beta-D-xylosidase 2 OS=Glycine soja GN=glysoja_041575 PE=4 SV=1) HSP 1 Score: 798.1 bits (2060), Expect = 8.1e-228 Identity = 403/667 (60.42%), Postives = 487/667 (73.01%), Query Frame = 1
BLAST of Lsi09G014770 vs. TrEMBL
Match: A0A0A0KHZ3_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_6G309980 PE=4 SV=1) HSP 1 Score: 708.4 bits (1827), Expect = 8.5e-201 Identity = 351/393 (89.31%), Postives = 367/393 (93.38%), Query Frame = 1
BLAST of Lsi09G014770 vs. TrEMBL
Match: A0A067JVH2_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_18967 PE=4 SV=1) HSP 1 Score: 570.1 bits (1468), Expect = 3.6e-159 Identity = 278/395 (70.38%), Postives = 327/395 (82.78%), Query Frame = 1
BLAST of Lsi09G014770 vs. TrEMBL
Match: A0A061ENU3_THECC (Periplasmic beta-glucosidase, putative OS=Theobroma cacao GN=TCM_021324 PE=4 SV=1) HSP 1 Score: 562.0 bits (1447), Expect = 9.8e-157 Identity = 275/395 (69.62%), Postives = 326/395 (82.53%), Query Frame = 1
BLAST of Lsi09G014770 vs. TrEMBL
Match: M5XLA6_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa001718mg PE=4 SV=1) HSP 1 Score: 560.5 bits (1443), Expect = 2.9e-156 Identity = 267/394 (67.77%), Postives = 323/394 (81.98%), Query Frame = 1
BLAST of Lsi09G014770 vs. TAIR10
Match: AT5G49360.1 (AT5G49360.1 beta-xylosidase 1) HSP 1 Score: 499.6 bits (1285), Expect = 3.0e-141 Identity = 252/395 (63.80%), Postives = 311/395 (78.73%), Query Frame = 1
BLAST of Lsi09G014770 vs. TAIR10
Match: AT1G02640.1 (AT1G02640.1 beta-xylosidase 2) HSP 1 Score: 490.0 bits (1260), Expect = 2.4e-138 Identity = 240/387 (62.02%), Postives = 297/387 (76.74%), Query Frame = 1
BLAST of Lsi09G014770 vs. TAIR10
Match: AT5G64570.1 (AT5G64570.1 beta-D-xylosidase 4) HSP 1 Score: 391.0 bits (1003), Expect = 1.5e-108 Identity = 200/389 (51.41%), Postives = 264/389 (67.87%), Query Frame = 1
BLAST of Lsi09G014770 vs. TAIR10
Match: AT5G09730.1 (AT5G09730.1 beta-xylosidase 3) HSP 1 Score: 387.1 bits (993), Expect = 2.2e-107 Identity = 197/388 (50.77%), Postives = 264/388 (68.04%), Query Frame = 1
BLAST of Lsi09G014770 vs. TAIR10
Match: AT5G09700.1 (AT5G09700.1 Glycosyl hydrolase family protein) HSP 1 Score: 379.8 bits (974), Expect = 3.5e-105 Identity = 198/389 (50.90%), Postives = 258/389 (66.32%), Query Frame = 1
BLAST of Lsi09G014770 vs. NCBI nr
Match: gi|734370281|gb|KHN19223.1| (Putative beta-D-xylosidase 2 [Glycine soja]) HSP 1 Score: 798.1 bits (2060), Expect = 1.2e-227 Identity = 403/667 (60.42%), Postives = 487/667 (73.01%), Query Frame = 1
BLAST of Lsi09G014770 vs. NCBI nr
Match: gi|659117006|ref|XP_008458374.1| (PREDICTED: LOW QUALITY PROTEIN: beta-D-xylosidase 1-like [Cucumis melo]) HSP 1 Score: 728.4 bits (1879), Expect = 1.1e-206 Identity = 361/394 (91.62%), Postives = 376/394 (95.43%), Query Frame = 1
BLAST of Lsi09G014770 vs. NCBI nr
Match: gi|449466797|ref|XP_004151112.1| (PREDICTED: beta-D-xylosidase 1-like [Cucumis sativus]) HSP 1 Score: 708.4 bits (1827), Expect = 1.2e-200 Identity = 351/393 (89.31%), Postives = 367/393 (93.38%), Query Frame = 1
BLAST of Lsi09G014770 vs. NCBI nr
Match: gi|802703010|ref|XP_012084033.1| (PREDICTED: putative beta-D-xylosidase [Jatropha curcas]) HSP 1 Score: 570.1 bits (1468), Expect = 5.2e-159 Identity = 278/395 (70.38%), Postives = 327/395 (82.78%), Query Frame = 1
BLAST of Lsi09G014770 vs. NCBI nr
Match: gi|590661692|ref|XP_007035744.1| (Periplasmic beta-glucosidase, putative [Theobroma cacao]) HSP 1 Score: 562.0 bits (1447), Expect = 1.4e-156 Identity = 275/395 (69.62%), Postives = 326/395 (82.53%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene: |