Lsi11G012720 (gene) Bottle gourd (USVL1VR-Ls) 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.ATGAGGTATAGGTCTCAACTGTCTCCTTGGCCTCAGTTATATATAAGGATCCGTGAACACCAGAAAATGATCATAAACTTAACCTATTCAACTGCTTTGCAATTCAAAAGCTAGGCCTTTTGTCTTCTTAAAAATTCCAATCAAGAAAGAAAGATGGATGCCCTGGCTTTGAACCCAAGAAACTCTCATCATATCCGCTCAAACAGCTTGCCCTCAAAGCCACACCCGCTCATCGAACAAGTTGATGAGCAATTGTGTAGACTGAAGGAGGCCTCAGAAGCTACATCATCTTCCTCATTTGAATTATGCCATAAACTAAATGGCCTTCAAAATTTGCATGATTGCGTTGATAGGTTTCTTCAGCTGCCTCTCACCCAACATGTTCTCGTTGACGAGAGTGATAAGAAATGGTTCAATGATTTACTCGAAGGATCTGTAAGACTCTTGGATTTGTGTGACATAGCTAAGGATGCATTGTTGCAGACAAAAGAATGTGTTCATGAACTAGAATCAGTTTTGCGCAGAGGAAGGGGAGGAAAAATGTTCATAGAAAGTGAGCTTCAGAAATGCTTAAGTTTTAGGAAGTTGATAAAGAAAACAATCTATAAAGCCTTGAAGACAGTTGAAACCAAAAGTTGTGAGAAAAATCAAACCACTCCAGCTATTGTTAGCTTGTTGAAACAGGTAGAAGCCGTCAGTTACAACATTGTCGAATGCTTGTTGTCTTTCCTAGCAGGACCCAAGTTTCCATCAAATTCAAGCCGTTGGTCTCTGGTTGCCAAGCTTGTGCAACCCAAAAGGGTAGCCTGTGAAGTTGAAGAAACAAGTAGAAATGAAGTGGCACTGGTTGATGCTGCATTACATTCATTTGCCAGGCAAAAAACAAAGAAATCTGATTTCCTTGTTCAAGATAACAATTTGCAGAGCTCATTAAAGATATTTAGTTCAAACATTCAAGAAGTTGAAGGTGATCTTGAGGCTCTATATAGGCGCCTTATTAAATCTAGAGTCTCACTTCTCAACATCTTGAACTACCAAGCCTAAAATTTCAGATAGTAGTATCATGGCCAATCCCATGAGAATTCATTTTTGTAGACTGTAAAGAAAGCAGTAAATATACAAACTTTATTCAATGACTTCTGGCATAATCTTCTTGGTTATTAGTTTCTTATTTTCGCACAACAATACTATCAATTTGCAATAACATCTTTCTGCTCATCAAACTGTAATAACTTTAATTGTTCCATTAATCAGGCATGATGAACTGATGGAAGAAAAATAACGATGGGATAAATCATAAAAATATTGATCATCAAGTAACTTTTTCCTATGGCTTAAGATCTGGTGTAATCATAGTTCGGTCAACCAAGGTTAGAAATTAAGTATCTTCAATTTGCAATATTGCCAGCTAATAAGATTCTAATTGTCTCAACCGTGGCATGAAAGATTCGCAAAGTAGTTGATTTCATATGCATCAAGCAATAATGCTATGCAGACTGTCTCTGACCTTCATGACAATTTGATCTAATAATTTGTATAATAATAAAGCTAAAACAGTTTTATAATTAATGGAAGTTCTAGAGAGCAATCAGTTTTGGATATTGCTACATCTTGCAGAATAAACAATCCAACAAATGTAAATTATCAAATCAAGTTTTATTTTTTAGGAGTACCCAACAAAAAAGCAATGCAGTATATGTAGTTTTAAATACAAATATGATGATGCAAGTGATTTGATTTCATAGAGCTTTTGTACATAAGGGGAGTTTACTCGGGAGCATGCACAATGGTGTCATTGTGTTGAGTAGATTAACCAGGATGAAGTTTGGGCCCTTCTGAAATCAAACAAGTTTGCTGTTGTGATCTGATTCCTGCTTAAAATATAGAAGAAAAGGATGTATGGGCATGTGGGTATGACCTTGTGTAAATAATGTAGAGGTGGTAATCTTTTAATCATAAAAATTTCTTTTTTTATCAAGAAAACTCGTGGGCTTCATATTTTAATGAAAGTGGCTTCACAAAATATAGCAGGAAGATCCATGAGAAAAATAAGGATATGATTATTGACCTTTTAAGTAAATAATTTATGAGGTGATAATGAAGAAAGAAGGTTCCTCAAGCTTTTCATACGTGTGCAGGTTCGGAGGAACCTTCTTGTCTAAACCATAAGATGTTAAACAAGTGTATATATGAGTTGGGATGTTGGGTGGAGACTGGGGATCCTGAAACATTGCTTGGACAAACTGTGTTTCATCAATATTGCCTCTTAAAAAGCTTATAATCTTAAGTGTACAAAAATTTGAATGCATCCTTTGTTTGGTACTAAATAGTCGAAATAGGATAAGTGATTTAAGAATGTGAATTTAATAAATTAGTTTTTCCTGCACTTGATGATTCTGAATATGAAGCCAAATTCTGCCCAATCTACTTTCATCCATGTTAAATCACCGATTGACCCAAAAGCTTAAGCTAATAGGTGAAGGTAAATTTAATACTTTATCAACACTCTAATAATACTTTCCCTCACTTGTGGGCATGAAATATATAGAATACCTAACAAGTGGAAATCAATATTAATTGGAGAGGAAAAAACAGGAGTTTGAACACATGACCTCCTGGACCTCCTGCTTTGATACCATGTTAAATTACCAATTGACACAAAAGTTTAAGCCAATGGGTAAAAGTAAATTTAATAGTATATCAACACTCTAACAATCCTTAATGGGAGGAAATGGAAAACTAAAAAGCTTACATTTTTCTTTTTTGATGAGAACTAAAAAGCTTACATGCTTAGTAAGATCTATTCAGAGTTACTCATTCCCCCGAGGTCGAAAGTGAATAGCAACCTAAAGAAAAATAAGAAGAAGAATACATCACAGAAAACCTATTTTATTGTTCATATATGTGTGTGTATGGTTTACGTGTGCACACTTGTCTGTGTGTTTGTTTCCTTCATCCAGAAGACAGACTGTCTTGATTGCATTGCTTTTACACAATTTGCAACAAACTAATGGAACTATCAAACAATATCAAATTAAAAAGAGGTATATAATTAAATAAGATGCATTCGTGTGGTTATAGAGAAAAAAACAAAGGATGCCAGTGAGTAGGGACCTGTTGGAGGGAGACATGGTTTGGACAATAGCTGAGACGGTGATGAAGATCCATATCTCAATTATGCTAAGGAGTACTCTTTAAATTGAGATTAATATTCCCCTTGTTTCTTCAACCCTGTTATATATATTGCCATCATTGCCAATAGATGAAGCCAAACTAAAATTGCTTAGACTGATTGGTAGTTCAATTGTTAGGCCTTTGTCTTCTCTAATCAAAAAAGGAAGATGGATGCCTCTACTTTGAACCCAAGAAACTCTCAGCATGTTCGTTCAAAGAGTGTGCCCTCAAATCCACACCCAATCATCAGCCAAGTTGATGAGCAATTGAGAAGATTAAGGGATTCTGAAGCCACATCTTCTTCTCTTTGCCATAGACTTGGTGCCCTTCAAGATTTGTACGATTGTGTTGATAAGTTGCTTGTTTTGCCCAACTCCCAACAAGCTTTGGCCCAAGGGAGTGATAAGGAAGTGTTAGATGACTTACTAGAAGGATCTCTCATGCTGCTGGATTTGTGTGATACAGCTAAGAATGGCTTGTTGCAAACCAGAGAATGCACACATGAATTAGAGTCCATTCTGCGGAGAAGGAGAGGTGAAATTTTCACTTCTAATTCACTTCAGAAATCAAGGAAGATGATAAAGAAAACAATCCACAAAGCCTTGAAAGGAATGGAAGGCGAACATTTCCACAAAGTTCATGGGAGCTTAACCATTGTCAACTTGATAAAAGAGGTTGAAGCAATCACATACCACAGTATGGAATCCTTGTTGTCCTTTATAGCTGGACCAAAGTTGCCGTCAAAATGGAGCTGCTGGTCTTCGGTTTCCAAGCTTGTGCAACCCAAAAGAGTAGCCTGCATAAGCGAAGAAACAGACATAAGTGTAGTAGAAAGATTGGACTTAGCATTAAGTTCAATTACCTATCACCAAACCAACAAAGAATTCCAAATTCAAGATGAAGACATGCAGAACTTGCTGAGGGAGTGGGGGGCAAGCATTAAGGAAGTTGAAGAAGAGCTTGAGGGTCTTTATAGGTTTATAATAAAAACAAGAGCATCTCTTCTCAACATCTTCAACAACTAAACAATATCATGTAGAACACCTAGTATATTTTTTCTTCAATGAATACACATATGATACTCTATTTTTGGTTTATTTAAGAGCCTTTTACAAGAATCCAACTATTGCCAGTCTTTTTCCATAATATAAAGAAGCAACAATTGTCCATATCAGTTTTCTAGCACTTGATACTGCAGTTATTTTCATATACAACATTCCATTTGAGGAGAGAGGTTTTACTAATCTAAGGGCAAAAGCAATAATAAAAGAAAAACAGAACTGATTATCCCTTGATACCATGGTGTGGTTAAGGAAAATTTCGTTCATGGGTTTGGTTATTTCATGCGTCACTTGGAAAAATTATAAACAAAATTTTTAAGTAGGCTCCAAGGACACTCATTGGATAATCCTTACATATAAAAGGTCGGTGAGAATATATATATGACACACTTGTAAAAGGAAGCCAAAAATCACTTGTATTGTTCTTTTAAAGCCTTCTACATAATGGCATAAATACTATATACACATGTAAATTAATACTCAAGAAGATGTGCAAGATCACATGCATGCTTTCCAGCATAAGAAGAAACTGTATCAATTTGATGTGTTTGAATAAACTAGTAAACCCTCTAAACAAATAGTCAATAATATAGTTCTTTGTAGCATATTAACAAATTCTTTGTAGATAGGCAACTTGGTTTGCAAAACTATTTAGAGCCTGTTTGGATTGACTTTATAAGTGCTTAAATATTTACGAGCACTTATAAAGTCATCCAAACAAGCCCTTATTTTTGTTACATAATCAACTTTAACACCTGTCAGTGGTCTAAGGGGGATGGAGGCAGTCAACAAATAAGATCAGAATAAGCCATAAGGTCAAAAATTAAACCCCTTCCAGCCAGACAGTTTATATAAGCAAATAGTTCTAAAAAAAATCAATCATTCGTGTGCAAGGAGGTGTGATTAAAAATATCAAGGAGTCATCCTCATTGTATATGATACTGATTATGTCAACAGCACTCGTGGGCTTCAAATTTAAGAATTTCCAGAGAACAAATTGCAGATTATATGTATATAATAAGGAAATAAGCAAATAAATAATGAGCTAAGAAACTAGTAATGGGGTGACATTGCGCAAACATTGGCCGAGATGTCAATAAAGACAGATAGATAACTTGATGTATAGGAGAAGAAATTAATCAAAGCTTCCCCCAAGATTGCATATGTGGAGCAACAATCTTGCCTTGTATATGGAAAGACACTTCTGTAAAGAATTAAAACTCAAGTTTTATTAGTTTATGAGTTGGAAAGATGGTGGAGAAGAGACATCATCAAAACATTACAGCTAAGAAGTTTAGATCCAGACAAGAAGCAGCTTACAATATAATTGAATGCAGAGGAGGCATGCATGATCCTAAATCCTAATTTATGATTTTTTTTCATTTGTCAAATTCATGCATGTGAGTATAAAGAAATTGACATAAATAATGATGGAGATCTGGAAACAAGTGGGAGGGAGACATGGCATCAAAATTGCTGAATTAGTTTTGTAGATCCATAATTTGAATTATATTGCAGATGAGCATGAGATTCCTCATGTCTGCCTAACCCAAGTTATATATATATCCTTCCATGAATGCCAAAAGATGAAAGCAGATTGAAATTGCTAGACCATTTTTAGATCATTAGCTAAGCTTTTGGCTTCTCCAAGCGAGAAAGAAAATGGATTCCTTAGATATGAACTCAAAAAAATCACTCCACATTCGTTCAAATAGCTTACCCTCAAAGCCACATCCAATCGTTGCCCAAGTTGATGAAAATTTGTGCAGATTGAAGTCCTTTGAGGCCACTTCTTCATCTTCTTCTTTATGCCACAGACTCAGCGGCCTTCAAGATTTGCATGATTCCATTGATAAGTTACTTCTTCTACCATGCACCCAGCAAACTCTTGTCCATGAGAGTGGTAACAAATGGGCTGATGACTTGCTAGAAGGATCTCTAAGGCTCTTAGATCTGTGTGATATTGCTAAGGATGCTTTGTTGCAGACACGAGAATGTACACACGAACTTGAATCAATTCTGCGCAGAAGAAGAAGTGAAACAATTATCACAAGTGATCTTCAGAAATGCTTGAATTCTAGGAAAATGATAAAGAAGACAGTCCTTAAGGCCTTGAAGGGAATCAAAAGCAGGAGTTCTCAAAAAAGTGAAGAAAGCTCAGCAACCGTTAGCTTGTTAAAGGAAGTAGAAGCAATCACATATAGCACCGTTGAATCAGTATTGTCCTTTGTAGCAGGACCAAAGTTGCCATCAAAGTTGAGTCGATGGTCTTTGGTCTCCAAGCTGGTACAATCCAAAAGAGTTGTCAGCAAAGATGAAGATGCATATGCAAATGAGGTAGAAATGGTGGATGCCACACTAAATTCAATCGCCAGCCACACAACAGATAAATCCTTCAACTTGCAAGACTTGCTGAGGAAATTTGGGTCAAGTATTCAAGATCTTGAAGAAGATCTCGAGAGTCTATATAGGCACCTTATCAAAAATAGAGTCTCCCTTCTCAACATCCTAAATAACTAA ATGAGAAAGATGGATGCCCTGGCTTTGAACCCAAGAAACTCTCATCATATCCGCTCAAACAGCTTGCCCTCAAAGCCACACCCGCTCATCGAACAAGTTGATGAGCAATTGTGTAGACTGAAGGAGGCCTCAGAAGCTACATCATCTTCCTCATTTGAATTATGCCATAAACTAAATGGCCTTCAAAATTTGCATGATTGCGTTGATAGGTTTCTTCAGCTGCCTCTCACCCAACATGTTCTCGTTGACGAGAGTGATAAGAAATGGTTCAATGATTTACTCGAAGGATCTGTAAGACTCTTGGATTTGTGTGACATAGCTAAGGATGCATTGTTGCAGACAAAAGAATGTGTTCATGAACTAGAATCAGTTTTGCGCAGAGGAAGGGGAGGAAAAATGTTCATAGAAAGTGAGCTTCAGAAATGCTTAAGTTTTAGGAAGTTGATAAAGAAAACAATCTATAAAGCCTTGAAGACAGTTGAAACCAAAAGTTGTGAGAAAAATCAAACCACTCCAGCTATTGTTAGCTTGTTGAAACAGGTAGAAGCCGTCAGTTACAACATTGTCGAATGCTTGTTGTCTTTCCTAGCAGGACCCAAGTTTCCATCAAATTCAAGCCGTTGGTCTCTGGTTGCCAAGCTTGTGCAACCCAAAAGGGTAGCCTGTGAAGTTGAAGAAACAAGTAGAAATGAAGTGGCACTGGTTGATGCTGCATTACATTCATTTGCCAGGCAAAAAACAAAGAAATCTGATTTCCTTGTTCAAGATAACAATTTGCAGAGCTCATTAAAGATATTTAGTTCAAACATTCAAGAAGTTGAAGGTTCGGAGGAACCTTCTTGTCTAAACCATAAGATGTTAAACAAGTGTATATATGAGTTGGGATGTTGGGTGGAGACTGGGGATCCTGAAACATTGCTTGGACAAACTGCCTTTGTCTTCTCTAATCAAAAAAGGAAGATGGATGCCTCTACTTTGAACCCAAGAAACTCTCAGCATGTTCGTTCAAAGAGTGTGCCCTCAAATCCACACCCAATCATCAGCCAAGTTGATGAGCAATTGAGAAGATTAAGGGATTCTGAAGCCACATCTTCTTCTCTTTGCCATAGACTTGGTGCCCTTCAAGATTTGTACGATTGTGTTGATAAGTTGCTTGTTTTGCCCAACTCCCAACAAGCTTTGGCCCAAGGGAGTGATAAGGAAGTGTTAGATGACTTACTAGAAGGATCTCTCATGCTGCTGGATTTGTGTGATACAGCTAAGAATGGCTTGTTGCAAACCAGAGAATGCACACATGAATTAGAGTCCATTCTGCGGAGAAGGAGAGGTGAAATTTTCACTTCTAATTCACTTCAGAAATCAAGGAAGATGATAAAGAAAACAATCCACAAAGCCTTGAAAGGAATGGAAGGCGAACATTTCCACAAAGTTCATGGGAGCTTAACCATTGTCAACTTGATAAAAGAGGTTGAAGCAATCACATACCACAGTATGGAATCCTTGTTGTCCTTTATAGCTGGACCAAAGTTGCCGTCAAAATGGAGCTGCTGGTCTTCGGTTTCCAAGCTTGTGCAACCCAAAAGAGTAGCCTGCATAAGCGAAGAAACAGACATAAGTGTAGTAGAAAGATTGGACTTAGCATTAAGTTCAATTACCTATCACCAAACCAACAAAGAATTCCAAATTCAAGATGAAGACATGCAGAACTTGCTGAGGGAGTGGGGGGCAAGCATTAAGGAAGTTGAAGAAGAGCTTGAGGGTCTTTATAGACTCAGCGGCCTTCAAGATTTGCATGATTCCATTGATAAGTTACTTCTTCTACCATGCACCCAGCAAACTCTTGTCCATGAGAGTGGTAACAAATGGGCTGATGACTTGCTAGAAGGATCTCTAAGGCTCTTAGATCTGTGTGATATTGCTAAGGATGCTTTGTTGCAGACACGAGAATGTACACACGAACTTGAATCAATTCTGCGCAGAAGAAGAAGTGAAACAATTATCACAAGTGATCTTCAGAAATGCTTGAATTCTAGGAAAATGATAAAGAAGACAGTCCTTAAGGCCTTGAAGGGAATCAAAAGCAGGAGTTCTCAAAAAAGTGAAGAAAGCTCAGCAACCGTTAGCTTGTTAAAGGAAGTAGAAGCAATCACATATAGCACCGTTGAATCAGTATTGTCCTTTGTAGCAGGACCAAAGTTGCCATCAAAGTTGAGTCGATGGTCTTTGGTCTCCAAGCTGGTACAATCCAAAAGAGTTGTCAGCAAAGATGAAGATGCATATGCAAATGAGGTAGAAATGGTGGATGCCACACTAAATTCAATCGCCAGCCACACAACAGATAAATCCTTCAACTTGCAAGACTTGCTGAGGAAATTTGGGTCAAGTATTCAAGATCTTGAAGAAGATCTCGAGAGTCTATATAGGCACCTTATCAAAAATAGAGTCTCCCTTCTCAACATCCTAAATAACTAA ATGAGAAAGATGGATGCCCTGGCTTTGAACCCAAGAAACTCTCATCATATCCGCTCAAACAGCTTGCCCTCAAAGCCACACCCGCTCATCGAACAAGTTGATGAGCAATTGTGTAGACTGAAGGAGGCCTCAGAAGCTACATCATCTTCCTCATTTGAATTATGCCATAAACTAAATGGCCTTCAAAATTTGCATGATTGCGTTGATAGGTTTCTTCAGCTGCCTCTCACCCAACATGTTCTCGTTGACGAGAGTGATAAGAAATGGTTCAATGATTTACTCGAAGGATCTGTAAGACTCTTGGATTTGTGTGACATAGCTAAGGATGCATTGTTGCAGACAAAAGAATGTGTTCATGAACTAGAATCAGTTTTGCGCAGAGGAAGGGGAGGAAAAATGTTCATAGAAAGTGAGCTTCAGAAATGCTTAAGTTTTAGGAAGTTGATAAAGAAAACAATCTATAAAGCCTTGAAGACAGTTGAAACCAAAAGTTGTGAGAAAAATCAAACCACTCCAGCTATTGTTAGCTTGTTGAAACAGGTAGAAGCCGTCAGTTACAACATTGTCGAATGCTTGTTGTCTTTCCTAGCAGGACCCAAGTTTCCATCAAATTCAAGCCGTTGGTCTCTGGTTGCCAAGCTTGTGCAACCCAAAAGGGTAGCCTGTGAAGTTGAAGAAACAAGTAGAAATGAAGTGGCACTGGTTGATGCTGCATTACATTCATTTGCCAGGCAAAAAACAAAGAAATCTGATTTCCTTGTTCAAGATAACAATTTGCAGAGCTCATTAAAGATATTTAGTTCAAACATTCAAGAAGTTGAAGGTTCGGAGGAACCTTCTTGTCTAAACCATAAGATGTTAAACAAGTGTATATATGAGTTGGGATGTTGGGTGGAGACTGGGGATCCTGAAACATTGCTTGGACAAACTGCCTTTGTCTTCTCTAATCAAAAAAGGAAGATGGATGCCTCTACTTTGAACCCAAGAAACTCTCAGCATGTTCGTTCAAAGAGTGTGCCCTCAAATCCACACCCAATCATCAGCCAAGTTGATGAGCAATTGAGAAGATTAAGGGATTCTGAAGCCACATCTTCTTCTCTTTGCCATAGACTTGGTGCCCTTCAAGATTTGTACGATTGTGTTGATAAGTTGCTTGTTTTGCCCAACTCCCAACAAGCTTTGGCCCAAGGGAGTGATAAGGAAGTGTTAGATGACTTACTAGAAGGATCTCTCATGCTGCTGGATTTGTGTGATACAGCTAAGAATGGCTTGTTGCAAACCAGAGAATGCACACATGAATTAGAGTCCATTCTGCGGAGAAGGAGAGGTGAAATTTTCACTTCTAATTCACTTCAGAAATCAAGGAAGATGATAAAGAAAACAATCCACAAAGCCTTGAAAGGAATGGAAGGCGAACATTTCCACAAAGTTCATGGGAGCTTAACCATTGTCAACTTGATAAAAGAGGTTGAAGCAATCACATACCACAGTATGGAATCCTTGTTGTCCTTTATAGCTGGACCAAAGTTGCCGTCAAAATGGAGCTGCTGGTCTTCGGTTTCCAAGCTTGTGCAACCCAAAAGAGTAGCCTGCATAAGCGAAGAAACAGACATAAGTGTAGTAGAAAGATTGGACTTAGCATTAAGTTCAATTACCTATCACCAAACCAACAAAGAATTCCAAATTCAAGATGAAGACATGCAGAACTTGCTGAGGGAGTGGGGGGCAAGCATTAAGGAAGTTGAAGAAGAGCTTGAGGGTCTTTATAGACTCAGCGGCCTTCAAGATTTGCATGATTCCATTGATAAGTTACTTCTTCTACCATGCACCCAGCAAACTCTTGTCCATGAGAGTGGTAACAAATGGGCTGATGACTTGCTAGAAGGATCTCTAAGGCTCTTAGATCTGTGTGATATTGCTAAGGATGCTTTGTTGCAGACACGAGAATGTACACACGAACTTGAATCAATTCTGCGCAGAAGAAGAAGTGAAACAATTATCACAAGTGATCTTCAGAAATGCTTGAATTCTAGGAAAATGATAAAGAAGACAGTCCTTAAGGCCTTGAAGGGAATCAAAAGCAGGAGTTCTCAAAAAAGTGAAGAAAGCTCAGCAACCGTTAGCTTGTTAAAGGAAGTAGAAGCAATCACATATAGCACCGTTGAATCAGTATTGTCCTTTGTAGCAGGACCAAAGTTGCCATCAAAGTTGAGTCGATGGTCTTTGGTCTCCAAGCTGGTACAATCCAAAAGAGTTGTCAGCAAAGATGAAGATGCATATGCAAATGAGGTAGAAATGGTGGATGCCACACTAAATTCAATCGCCAGCCACACAACAGATAAATCCTTCAACTTGCAAGACTTGCTGAGGAAATTTGGGTCAAGTATTCAAGATCTTGAAGAAGATCTCGAGAGTCTATATAGGCACCTTATCAAAAATAGAGTCTCCCTTCTCAACATCCTAAATAACTAA MRKMDALALNPRNSHHIRSNSLPSKPHPLIEQVDEQLCRLKEASEATSSSSFELCHKLNGLQNLHDCVDRFLQLPLTQHVLVDESDKKWFNDLLEGSVRLLDLCDIAKDALLQTKECVHELESVLRRGRGGKMFIESELQKCLSFRKLIKKTIYKALKTVETKSCEKNQTTPAIVSLLKQVEAVSYNIVECLLSFLAGPKFPSNSSRWSLVAKLVQPKRVACEVEETSRNEVALVDAALHSFARQKTKKSDFLVQDNNLQSSLKIFSSNIQEVEGSEEPSCLNHKMLNKCIYELGCWVETGDPETLLGQTAFVFSNQKRKMDASTLNPRNSQHVRSKSVPSNPHPIISQVDEQLRRLRDSEATSSSLCHRLGALQDLYDCVDKLLVLPNSQQALAQGSDKEVLDDLLEGSLMLLDLCDTAKNGLLQTRECTHELESILRRRRGEIFTSNSLQKSRKMIKKTIHKALKGMEGEHFHKVHGSLTIVNLIKEVEAITYHSMESLLSFIAGPKLPSKWSCWSSVSKLVQPKRVACISEETDISVVERLDLALSSITYHQTNKEFQIQDEDMQNLLREWGASIKEVEEELEGLYRLSGLQDLHDSIDKLLLLPCTQQTLVHESGNKWADDLLEGSLRLLDLCDIAKDALLQTRECTHELESILRRRRSETIITSDLQKCLNSRKMIKKTVLKALKGIKSRSSQKSEESSATVSLLKEVEAITYSTVESVLSFVAGPKLPSKLSRWSLVSKLVQSKRVVSKDEDAYANEVEMVDATLNSIASHTTDKSFNLQDLLRKFGSSIQDLEEDLESLYRHLIKNRVSLLNILNN Homology
BLAST of Lsi11G012720 vs. ExPASy TrEMBL
Match: A0A7N2R0Y0 (Uncharacterized protein OS=Quercus lobata OX=97700 PE=4 SV=1) HSP 1 Score: 543.5 bits (1399), Expect = 1.5e-150 Identity = 371/909 (40.81%), Postives = 506/909 (55.67%), Query Frame = 0
BLAST of Lsi11G012720 vs. ExPASy TrEMBL
Match: A0A7N2L2N5 (Uncharacterized protein OS=Quercus lobata OX=97700 PE=4 SV=1) HSP 1 Score: 516.9 bits (1330), Expect = 1.5e-142 Identity = 342/831 (41.16%), Postives = 465/831 (55.96%), Query Frame = 0
BLAST of Lsi11G012720 vs. ExPASy TrEMBL
Match: A0A5B6UUC6 (Uncharacterized protein OS=Gossypium australe OX=47621 GN=EPI10_027499 PE=4 SV=1) HSP 1 Score: 508.4 bits (1308), Expect = 5.4e-140 Identity = 354/907 (39.03%), Postives = 504/907 (55.57%), Query Frame = 0
BLAST of Lsi11G012720 vs. ExPASy TrEMBL
Match: A0A7J6FCE7 (Uncharacterized protein OS=Cannabis sativa OX=3483 GN=G4B88_008619 PE=4 SV=1) HSP 1 Score: 504.6 bits (1298), Expect = 7.8e-139 Identity = 352/883 (39.86%), Postives = 517/883 (58.55%), Query Frame = 0
BLAST of Lsi11G012720 vs. ExPASy TrEMBL
Match: A0A445A8K4 (Uncharacterized protein OS=Arachis hypogaea OX=3818 GN=Ahy_B03g068090 PE=4 SV=1) HSP 1 Score: 478.4 bits (1230), Expect = 6.0e-131 Identity = 330/898 (36.75%), Postives = 511/898 (56.90%), Query Frame = 0
BLAST of Lsi11G012720 vs. NCBI nr
Match: KAG6589038.1 (hypothetical protein SDJN03_17603, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 594.7 bits (1532), Expect = 1.2e-165 Identity = 335/482 (69.50%), Postives = 381/482 (79.05%), Query Frame = 0
BLAST of Lsi11G012720 vs. NCBI nr
Match: KAA3460878.1 (hypothetical protein EPI10_027499 [Gossypium australe]) HSP 1 Score: 508.4 bits (1308), Expect = 1.1e-139 Identity = 354/907 (39.03%), Postives = 504/907 (55.57%), Query Frame = 0
BLAST of Lsi11G012720 vs. NCBI nr
Match: KAF4368315.1 (hypothetical protein G4B88_008619 [Cannabis sativa]) HSP 1 Score: 504.6 bits (1298), Expect = 1.6e-138 Identity = 352/883 (39.86%), Postives = 517/883 (58.55%), Query Frame = 0
BLAST of Lsi11G012720 vs. NCBI nr
Match: XP_038888977.1 (uncharacterized protein LOC120078741 [Benincasa hispida]) HSP 1 Score: 490.3 bits (1261), Expect = 3.2e-134 Identity = 252/275 (91.64%), Postives = 261/275 (94.91%), Query Frame = 0
BLAST of Lsi11G012720 vs. NCBI nr
Match: KAF7810876.1 (DUF241 domain protein [Senna tora]) HSP 1 Score: 480.7 bits (1236), Expect = 2.5e-131 Identity = 332/865 (38.38%), Postives = 485/865 (56.07%), Query Frame = 0
BLAST of Lsi11G012720 vs. TAIR 10
Match: AT2G17080.1 (Arabidopsis protein of unknown function (DUF241) ) HSP 1 Score: 175.6 bits (444), Expect = 1.6e-43 Identity = 101/263 (38.40%), Postives = 162/263 (61.60%), Query Frame = 0
BLAST of Lsi11G012720 vs. TAIR 10
Match: AT2G17070.1 (Arabidopsis protein of unknown function (DUF241) ) HSP 1 Score: 169.9 bits (429), Expect = 8.8e-42 Identity = 99/263 (37.64%), Postives = 161/263 (61.22%), Query Frame = 0
BLAST of Lsi11G012720 vs. TAIR 10
Match: AT4G35200.1 (Arabidopsis protein of unknown function (DUF241) ) HSP 1 Score: 153.3 bits (386), Expect = 8.5e-37 Identity = 97/263 (36.88%), Postives = 155/263 (58.94%), Query Frame = 0
BLAST of Lsi11G012720 vs. TAIR 10
Match: AT4G35210.1 (Arabidopsis protein of unknown function (DUF241) ) HSP 1 Score: 143.7 bits (361), Expect = 6.7e-34 Identity = 86/243 (35.39%), Postives = 143/243 (58.85%), Query Frame = 0
BLAST of Lsi11G012720 vs. TAIR 10
Match: AT3G51400.1 (Arabidopsis protein of unknown function (DUF241) ) HSP 1 Score: 92.4 bits (228), Expect = 1.8e-18 Identity = 79/240 (32.92%), Postives = 124/240 (51.67%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
Relationships
The following mRNA feature(s) are a part of this gene:
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