Lsi02G020300 (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.GAGTTGGCATAGGCTTGATAGAGTTGTATTGAATAATATGGAGGGTAGAAATACAGAGCTGGAAATGGAAGGCGAGGAACTGTTAAAAGCTCAAGCTCACATATGGAACCACATCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCGGTCGAACTTCGCATTCCAGACGCCATCAACCGCCATAGCTTACCCATCACCCTCTCTCAACTCCTTTCAGCTCTCCAAATTCACCCTCAAAAGTCTCAACACGTCCACCGTTTAATGCGTATATTGACTCACTCTGGCTTCTTCCTAATACACAACAAAACTACCCAACAAGAAGGAGATCATCAAGATCAAGAAGAAGTAGCATACTCCCTCACCAATCCATCTCTTCTTCTTCTTCAACACAACCCTTTAACTTTGTCTCCCTTTCTACTTTGCATCCTCGACAACTTACACCCATGGGAATCTCTCTCGGCTTGGTTTTGTAGTAGTAGCCACGATCGAACCCCATTTGAGACGGCTTATGGGAAGCAATTTTGGGAGTATATGGAGAGTGAAACAAGAGATGGGGGAGGCTTTTAATGCAACCATGGCAAGTGATTCGAGGTTGGTGATGAGTGTTTTAGTAGGGAAATATAAGAGCATGTTTGAGGGAGTTGAGTGTTTGGTGGATGTGGGAGGTGGGACTGGAACTATGGCAAAAGTCATTGCTGAACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGCTGGCTTGGAAGGAAACCATAATTTGATATTCCTTCAAGGAGACATGTTTCAAGCCATTCCTCCCGCTGATGCACTTCTATTGAAGGTGAGAGATATTATAAAATAGTTTCTTGATTAGACATCTCTAAACTTTAAATTTTTGTATCTAATACGTGTCATTGTCATTAATTTCTCCATTGTCTTAATGCTTACATGACCAATCACTACTTAAGAATAAATTGGTTCATTGTACTTTGTTTAAATGGTCGAGCGAATGACAATGATTCTATTAGAGTACGTATAAAATTGACTGTTTAGGATTTATTAAAACAAAATATTTTTAAACTATTGGAGGAAGTAAACATACGCAATCTTAAAATTAGTTAAGGGACTTACCAGAAACATTTTATAATATGTAAAGTATGTAGACTTAATAACATTTTTAAAATCAAACTTGTAATTTAGGCCTAGTTTGATAACTATTATTTTTGTTTTTGGTAACATTTTGAGCTTTTGAAAGTTGCGGTTTTGTTTCTTCCCCATTTCTAACCAATATTTTCAAAATTATCCATCCCAAGTTTTGAAAATTAAAATAAGTAGTTTTTTCATTACATGTTTTTGTTTTTGAAATACTGCTAGGAACAATTCAAATGCTTCCTTAAGAAAGATGATGATTATGGTAAAGAAGTTGAGAGAAAAAACAAGCATAATTAATTTCCAAAAATCGAAAACTAAAAATCAAATGACTATCAACCGAGGCCTTTTATCATACAGTTTATCATTATATTTCTCTAACTAACCATTGGCTAGCTATTCAAAGTAAACTTGTGGAACGTTGTGATAACGCAGTGGATATTACATAATTGGAGCGATGAAGAATGTGTGAAGATATTGAAGAAATGTAAAGAGGCAATCGGAAGCAAGAAGAAAGGAAAATTGATTATAATTGATATGGTGGTAACCGATAATAATAATAATAAAAAAGCGGATTATATGTCGATCGAAACTCAACTGTTTTAGGACATGTTGATGATGGCTTCAGTAGGAGGAAAGGAAAGAGATGAGAAAGAATGGGCTCAATTGTTCCATAAAGCTGGATTTGGTGCATACAACATATTTCTTATTTTAGGTTTAAGGTCTCTTATAGAGCTTTATCCATAATTATTGTTAATATCTTCCTTTAAAATTTCTCTCTTATCTTATGTTGATTATTGTTGCATTCAAAATAAGAGCTCCTTTTTGGAGATCATCACAAGTACTAATGTGATAACTTAATTTGTAAGCTAAATTGTTTAATATATTAATTAATACATGTTATGGTAATTTGTGTAAATTTAGGGGTCGTTTGGATTCTCAACTTGTCTTGGATTGAGTGGACTATTATAACCCTATTAAATGTTTGTGTTGCCCTTTATAATAGTCAAAGTTTCTAATTATTATAACTTACACTTAGCTATAACAAAACTATTTGAAAACCATAATTGTCGGAGTGTTTACTATTTTGTAACTATCCTCCTCTTCATTGGTAATCTAGACTAAAATAGTATGCACTCCAAACACAAACGGACTATAATAACCATTAACTTTAATAACTAACTTAACTTCTCAAACACCTCATTGAGCTAAGCTAACCCAGACTAAAATAGTATGCAGTCCAAACACAAACAACCCATAGACCTCATGGTTATCGATATTTTCGGATGCCAATTGAGCTCTTTGTTTTCTTATTAATATATGAAAATAGAATTCTATTTCCTTATATTAAACTTTATTTCTCTCTATTTAATTTTTTATGCCTCTAATTTGTTTCGATCTCAAATGTATTTTTTTTAGTAATTGGATAATTCTTAAAGCTACATTTGAAAACAAAGATTAATCATTTAATTTTTTTTTTAATTAAATTTAAATAATGTGTACAAGTATATATGGAACTAATTATACTAACATGAATTATCACACTTTTACAAAACTAATAATAATTAAATAATTTAGCTCAAAAAACTTATTATAAAGATCAATTCCAAACATGTTCTTAAGGGTGTGTTTGGGAGTGATTTTGGCATGGCCAAAATCACTTTTTCCCTTGTCAAAATCATTTTTTTATAAAAAGTTGATGTTTGGCACTCACATAAAATTGATTTTTAAAAAATTTGAAATCACTAAAAATTGATTTTGTAAGTATCAGTTTATTGGTGATTTGGTTGGGGGTGATTATCAGGGAATTAGATAAAAAATTTAGAACACCAAATTTGCCCCTCATATTTAAGGATAGGATTTAGCCCTAATCCATTTCTTCCTTCTCTTTCAGCCGATACATCCTCTCTCTCGTGTCCGTCGCTTGGTTCCATTAACTATCCGTGGTAGTGCTGATTTCAGTAAGTTTTTGTTTTTTGTAATTTTCTTTTCACGTGGATGAGCTTCAATTTTTAACAGTTTTTGTTGCTTTTTCACTATATCGTTCCTTAGTTTTTTGTTACTATTTACTCTGTTCCTTTCATAGCTTTTCCTCTCTATATGAACAATTTTTTTTGGATATTTCAATCATTGTCTTCGATCCTTGTTGATTGTTTTTAGTCTCTCTACTTTTCTGATGGAGCGGGAGAAAATTGCAAGACTTCTTATATCTCGTTAATGTTTTTGTTATACAGTTTGTATTTCAATAGATAATATCTAGTTTAAGTATTTTGTAATCTAGATTGGATGAGATATATGTTTTGAATTTTCTTTTGTTTTTATTATGTGTATTTTTCTTACCTCACATATCAATTATGCATACAATAATTTAACATTAAAATAAATAAAAAATAAATTAATAAAATTAGATATTTTTATAATTATTTTTTAAAACAAAAATCCAAATAGTTAGTAATTTGGTAATTTTAAAATTACTTTTAGAACCAAACATGATAAATTTAAATCACTTTTATATATTTGAAAATCACTTTAAAAGTTTGGAACCAAACATAGGTTTGATTGTTTAAAAATCAATTTTACAAAATCAAATTGTTCCAAAATCTCTATCACTAAAATCACCACTCCAACTATCACTCCCAAACACACCCTAAGTCATTGAAAATCACTTTTAAAGTGTTGAACCAAACATTAAAATGATAGTATGAAAATCACATTTAACGAAATTTTTGTTAATAAATCAATTTTATTAAAATCACTACTTTTAAAAATACTCCCAAACATGTTCTAAAACATCTCTCACTCAACGACTTTCTAATGACATTTAACATATATGAAATATGTATATGTTTGGAATCAGTTTTTAAGTGTCTAAAATTTCGACAAACGATTGTCATTCAATATACCATCAAAGTAACCATAGGAATTGTTTCCATCCCTAAAATACAAAGGGAAGTTTATGAGACTTACTCAAAACGATGTCAATTTTTTTTCTAAAACAAATCCAACACATAAGACCAAAAAATCCAGAGAAAAACCTAACCTAAAACTTATTGCAATCTTACTATTAAAGGTGATAAAACAAAAATGGATCCCACGTTTTTTATATTCATAAATCCAAAAAAAGTGAAAACAATCTAACAACTACAAGGACCCATTTGACAGTACGATCCACATTGAAAACAAGGATAAATAAAGATGTGAAATGAAAAGATTTCATTATTGTTCTTTTTTTTTGCAAGAAATTTTTGTATATAAATAGGAGGAACTCAACATAGGTTTGACAGAGTTATATATTGAATAATATGGAAAGTAGAAATACGAAGATGGAAATGGGAGGAGAGGAAGTGTTGGAAGCTCAAGCTCACATATGGAGCCATGTCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCCGTCCAACTACGCATTCCAGATGCCATCAACCGTCATGGCTCACCCATCACCCTCTCTCAACTCCTTTTAGCTCTCCAAATTCACCCTCAAAAGTCTCAATACGTCCATCGTTTAATGCGTATATTGACTCACTCTGGCTTCTTCTTAATACACAATAAAACTACCCAACAAGAAGGAGAAGATCAAGAAGAAGTAGCATACTCCCTCACCAATCCATCTCTTCTTCTTCTTCAACACAACCCTTTAACTTTGTCTCCCTTTTTGCTTTTCATGCTTGACCAAGTCCTTATAGAGCCATGGCAGTTTATATCGACTTGGCTCCGTAGCGACTGCGATCATCGAACCCCATTTGAAACGGCTCATGGGAAGGAGTTCTGGGAGCATATGGGGAGTGAGGGAAAAGATGGGGAGGGTTTTAATGCAGCTATGGCTAGTGATGCAAGGTTGGTGATAAATGTTTTGTTGGAGAAATATAAAAGTGTGTTTGAGGGAGTTGAGTGTTTGGTGGATGTTGGAGGTGGTACTGGAACTATGGCAAAAGTCATTGTTGAGGCTTTTCCACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGATGGCTTGGAAGGAAGTCATAACTTGATGTTTCTTCAAGGAGACATGTTTCAAGCTATTCCTCCTGCTGATGCAGTTCTGTTGAAGGTGAGGACAAGGAGAAATAATTAATATTGTGAGTAATTCCAAAAGGGTTAAATCACTTTTGTCATTTTTAAAATCACTCAAAAAATGTCTTTAATTATTATATTCAAAATCAATTTTAATAGTATGAAAAATGCATTTAAAAGTGTAAAACTAAACATCGGGTCGATTTCTAGTGATTAAAAATATGTTTCAGAGTGATTTTAAACAAGACAAAAGTGATTGTAATTAACCATTTCAAAATCACTCTCAAACACGTACTAAATTCTCCTTATACAATTCTAATGTGAAATAATGTGATAACACAGTGGATATTGCATGATTGGAGCGATGAAGAATGTGTGAAGATACTGAAGAAATGTAAAGAGGCAATCTCGAGCAATGGGAAGAACGGAAAAGTGATTATAATTGACATGGTGGTAGCCAATAATAAAAACATGAAGAATGATAGGTTGATGACTGAAAGTAAATTTTTTTGGGACTTGTTGATGATGGTTAATGTAGGTGGAAAAGAAAGGGATGAAAAAGAGTGGGCTCAATTGTTCCAAGCAGCTGGATTTGCTTCCTACAACATCTTTCCAATATTAGGTTTAAGGTCTCTCATAGAGCTTTATCCA GAGTTGGCATAGGCTTGATAGAGTTGTATTGAATAATATGGAGGGTAGAAATACAGAGCTGGAAATGGAAGGCGAGGAACTGTTAAAAGCTCAAGCTCACATATGGAACCACATCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCGGTCGAACTTCGCATTCCAGACGCCATCAACCGCCATAGCTTACCCATCACCCTCTCTCAACTCCTTTCAGCTCTCCAAATTCACCCTCAAAAGTCTCAACACGTCCACCGTTTAATGCTAGTAGCCACGATCGAACCCCATTTGAGACGGCTTATGGGAAGCAATTTTGGGAGTATATGGAGAGTGAAACAAGAGATGGGGGAGGCTTTTAATGCAACCATGGCAAGTGATTCGAGGTTGGTGATGAGTGTTTTAGTAGGGAAATATAAGAGCATGTTTGAGGGAGTTGAGTGTTTGGTGGATGTGGGAGGTGGGACTGGAACTATGGCAAAAGTCATTGCTGAACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGCTGGCTTGGAAGGAAACCATAATTTGATATTCCTTCAAGGAGACATGTTTCAAGCCATTCCTCCCGCTGATGCACTTCTATTGAAGTGGATATTACATAATTGGAGCGATGAAGAATGTGTGAAGATATTGAAGAAATGTAAAGAGGCAATCGGAAGCAAGAAGAAAGGAAAATTGATTATAATTGATATGGTGGACATGTTGATGATGGCTTCAGTAGGAGGAAAGGAAAGAGATGAGAAAGAATGGGCTCAATTGTTCCATAAAGCTGGATTTGGTGCATACAACATATTTCTTATTTTAGGTTTAAGAAATACGAAGATGGAAATGGGAGGAGAGGAAGTGTTGGAAGCTCAAGCTCACATATGGAGCCATGTCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCCGTCCAACTACGCATTCCAGATGCCATCAACCGTCATGGCTCACCCATCACCCTCTCTCAACTCCTTTTAGCTCTCCAAATTCACCCTCAAAAGTCTCAATACGTCCATCGTTTAATGCGTATATTGACTCACTCTGGCTTCTTCTTAATACACAATAAAACTACCCAACAAGAAGGAGAAGATCAAGAAGAAGTAGCATACTCCCTCACCAATCCATCTCTTCTTCTTCTTCAACACAACCCTTTAACTTTGTCTCCCTTTTTGCTTTTCATGCTTGACCAAGTCCTTATAGAGCCATGGCAGTTTATATCGACTTGGCTCCGTAGCGACTGCGATCATCGAACCCCATTTGAAACGGCTCATGGGAAGGAGTTCTGGGAGCATATGGGGAGTGAGGGAAAAGATGGGGAGGGTTTTAATGCAGCTATGGCTAGTGATGCAAGGTTGGTGATAAATGTTTTGTTGGAGAAATATAAAAGTGTGTTTGAGGGAGTTGAGTGTTTGGTGGATGTTGGAGGTGGTACTGGAACTATGGCAAAAGTCATTGTTGAGGCTTTTCCACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGATGGCTTGGAAGGAAAATGTGTGAAGATACTGAAGAAATGTAAAGAGGCAATCTCGAGCAATGGGAAGAACGGAAAAGTGATTATAATTGACATGGTGGTAGCCAATAATAAAAACATGAAGAATGATAGGTTGATGACTGAAAGTAAATTTTTTTGGGACTTGTTGATGATGGTTAATGTAGGTGGAAAAGAAAGGGATGAAAAAGAGTGGGCTCAATTGTTCCAAGCAGCTGGATTTGCTTCCTACAACATCTTTCCAATATTAGGTTTAAGGTCTCTCATAGAGCTTTATCCA ATGGAGGGTAGAAATACAGAGCTGGAAATGGAAGGCGAGGAACTGTTAAAAGCTCAAGCTCACATATGGAACCACATCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCGGTCGAACTTCGCATTCCAGACGCCATCAACCGCCATAGCTTACCCATCACCCTCTCTCAACTCCTTTCAGCTCTCCAAATTCACCCTCAAAAGTCTCAACACGTCCACCGTTTAATGCTAGTAGCCACGATCGAACCCCATTTGAGACGGCTTATGGGAAGCAATTTTGGGAGTATATGGAGAGTGAAACAAGAGATGGGGGAGGCTTTTAATGCAACCATGGCAAGTGATTCGAGGTTGGTGATGAGTGTTTTAGTAGGGAAATATAAGAGCATGTTTGAGGGAGTTGAGTGTTTGGTGGATGTGGGAGGTGGGACTGGAACTATGGCAAAAGTCATTGCTGAACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGCTGGCTTGGAAGGAAACCATAATTTGATATTCCTTCAAGGAGACATGTTTCAAGCCATTCCTCCCGCTGATGCACTTCTATTGAAGTGGATATTACATAATTGGAGCGATGAAGAATGTGTGAAGATATTGAAGAAATGTAAAGAGGCAATCGGAAGCAAGAAGAAAGGAAAATTGATTATAATTGATATGGTGGACATGTTGATGATGGCTTCAGTAGGAGGAAAGGAAAGAGATGAGAAAGAATGGGCTCAATTGTTCCATAAAGCTGGATTTGGTGCATACAACATATTTCTTATTTTAGGTTTAAGAAATACGAAGATGGAAATGGGAGGAGAGGAAGTGTTGGAAGCTCAAGCTCACATATGGAGCCATGTCTTCAGCTTCATCAATTCCATGGCTTTGAAATGCGCCGTCCAACTACGCATTCCAGATGCCATCAACCGTCATGGCTCACCCATCACCCTCTCTCAACTCCTTTTAGCTCTCCAAATTCACCCTCAAAAGTCTCAATACGTCCATCGTTTAATGCGTATATTGACTCACTCTGGCTTCTTCTTAATACACAATAAAACTACCCAACAAGAAGGAGAAGATCAAGAAGAAGTAGCATACTCCCTCACCAATCCATCTCTTCTTCTTCTTCAACACAACCCTTTAACTTTGTCTCCCTTTTTGCTTTTCATGCTTGACCAAGTCCTTATAGAGCCATGGCAGTTTATATCGACTTGGCTCCGTAGCGACTGCGATCATCGAACCCCATTTGAAACGGCTCATGGGAAGGAGTTCTGGGAGCATATGGGGAGTGAGGGAAAAGATGGGGAGGGTTTTAATGCAGCTATGGCTAGTGATGCAAGGTTGGTGATAAATGTTTTGTTGGAGAAATATAAAAGTGTGTTTGAGGGAGTTGAGTGTTTGGTGGATGTTGGAGGTGGTACTGGAACTATGGCAAAAGTCATTGTTGAGGCTTTTCCACAAATGAAATGTGTTGTTTTTGACCTTCCTCAAGTTGTGGATGGCTTGGAAGGAAAATGTGTGAAGATACTGAAGAAATGTAAAGAGGCAATCTCGAGCAATGGGAAGAACGGAAAAGTGATTATAATTGACATGGTGGTAGCCAATAATAAAAACATGAAGAATGATAGGTTGATGACTGAAAGTAAATTTTTTTGGGACTTGTTGATGATGGTTAATGTAGGTGGAAAAGAAAGGGATGAAAAAGAGTGGGCTCAATTGTTCCAAGCAGCTGGATTTGCTTCCTACAACATCTTTCCAATATTAGGTTTAAGGTCTCTCATAGAGCTTTATCCA MEGRNTELEMEGEELLKAQAHIWNHIFSFINSMALKCAVELRIPDAINRHSLPITLSQLLSALQIHPQKSQHVHRLMLVATIEPHLRRLMGSNFGSIWRVKQEMGEAFNATMASDSRLVMSVLVGKYKSMFEGVECLVDVGGGTGTMAKVIAEQMKCVVFDLPQVVAGLEGNHNLIFLQGDMFQAIPPADALLLKWILHNWSDEECVKILKKCKEAIGSKKKGKLIIIDMVDMLMMASVGGKERDEKEWAQLFHKAGFGAYNIFLILGLRNTKMEMGGEEVLEAQAHIWSHVFSFINSMALKCAVQLRIPDAINRHGSPITLSQLLLALQIHPQKSQYVHRLMRILTHSGFFLIHNKTTQQEGEDQEEVAYSLTNPSLLLLQHNPLTLSPFLLFMLDQVLIEPWQFISTWLRSDCDHRTPFETAHGKEFWEHMGSEGKDGEGFNAAMASDARLVINVLLEKYKSVFEGVECLVDVGGGTGTMAKVIVEAFPQMKCVVFDLPQVVDGLEGKCVKILKKCKEAISSNGKNGKVIIIDMVVANNKNMKNDRLMTESKFFWDLLMMVNVGGKERDEKEWAQLFQAAGFASYNIFPILGLRSLIELYP
BLAST of Lsi02G020300 vs. Swiss-Prot
Match: ROMT_VITVI (Trans-resveratrol di-O-methyltransferase OS=Vitis vinifera GN=ROMT PE=1 SV=2) HSP 1 Score: 282.0 bits (720), Expect = 1.6e-74 Identity = 159/354 (44.92%), Postives = 217/354 (61.30%), Query Frame = 1
BLAST of Lsi02G020300 vs. Swiss-Prot
Match: Q8OMT_MENPI (8-hydroxyquercetin 8-O-methyltransferase OS=Mentha piperita GN=OMT2 PE=1 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 2.5e-72 Identity = 162/361 (44.88%), Postives = 221/361 (61.22%), Query Frame = 1
BLAST of Lsi02G020300 vs. Swiss-Prot
Match: CVMT1_OCIBA (Chavicol O-methyltransferase OS=Ocimum basilicum GN=CVOMT1 PE=1 SV=1) HSP 1 Score: 255.8 bits (652), Expect = 1.2e-66 Identity = 146/368 (39.67%), Postives = 211/368 (57.34%), Query Frame = 1
BLAST of Lsi02G020300 vs. Swiss-Prot
Match: HTOMT_CATRO (Tabersonine 16-O-methyltransferase OS=Catharanthus roseus GN=16OMT PE=1 SV=1) HSP 1 Score: 252.3 bits (643), Expect = 1.3e-65 Identity = 152/361 (42.11%), Postives = 213/361 (59.00%), Query Frame = 1
BLAST of Lsi02G020300 vs. Swiss-Prot
Match: EOMT1_OCIBA (Eugenol O-methyltransferase OS=Ocimum basilicum GN=EOMT1 PE=1 SV=1) HSP 1 Score: 247.7 bits (631), Expect = 3.3e-64 Identity = 139/366 (37.98%), Postives = 204/366 (55.74%), Query Frame = 1
BLAST of Lsi02G020300 vs. TrEMBL
Match: A0A0A0K881_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_7G328250 PE=3 SV=1) HSP 1 Score: 556.2 bits (1432), Expect = 4.8e-155 Identity = 286/375 (76.27%), Postives = 311/375 (82.93%), Query Frame = 1
BLAST of Lsi02G020300 vs. TrEMBL
Match: A0A0A0K516_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_7G328260 PE=3 SV=1) HSP 1 Score: 384.8 bits (987), Expect = 1.9e-103 Identity = 212/367 (57.77%), Postives = 249/367 (67.85%), Query Frame = 1
BLAST of Lsi02G020300 vs. TrEMBL
Match: A0A0A0K5D5_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_7G039790 PE=3 SV=1) HSP 1 Score: 380.6 bits (976), Expect = 3.6e-102 Identity = 200/366 (54.64%), Postives = 259/366 (70.77%), Query Frame = 1
BLAST of Lsi02G020300 vs. TrEMBL
Match: A0A0A0K1E9_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_7G039280 PE=3 SV=1) HSP 1 Score: 376.3 bits (965), Expect = 6.9e-101 Identity = 198/365 (54.25%), Postives = 256/365 (70.14%), Query Frame = 1
BLAST of Lsi02G020300 vs. TrEMBL
Match: V4THS2_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10015708mg PE=3 SV=1) HSP 1 Score: 336.7 bits (862), Expect = 6.0e-89 Identity = 185/359 (51.53%), Postives = 237/359 (66.02%), Query Frame = 1
BLAST of Lsi02G020300 vs. TAIR10
Match: AT4G35160.1 (AT4G35160.1 O-methyltransferase family protein) HSP 1 Score: 175.6 bits (444), Expect = 9.0e-44 Identity = 125/380 (32.89%), Postives = 189/380 (49.74%), Query Frame = 1
BLAST of Lsi02G020300 vs. TAIR10
Match: AT4G35150.1 (AT4G35150.1 O-methyltransferase family protein) HSP 1 Score: 161.0 bits (406), Expect = 2.3e-39 Identity = 100/302 (33.11%), Postives = 156/302 (51.66%), Query Frame = 1
BLAST of Lsi02G020300 vs. TAIR10
Match: AT5G54160.1 (AT5G54160.1 O-methyltransferase 1) HSP 1 Score: 118.6 bits (296), Expect = 1.3e-26 Identity = 93/328 (28.35%), Postives = 160/328 (48.78%), Query Frame = 1
BLAST of Lsi02G020300 vs. TAIR10
Match: AT1G62900.1 (AT1G62900.1 S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 117.9 bits (294), Expect = 2.2e-26 Identity = 75/192 (39.06%), Postives = 108/192 (56.25%), Query Frame = 1
BLAST of Lsi02G020300 vs. TAIR10
Match: AT1G63140.2 (AT1G63140.2 O-methyltransferase family protein) HSP 1 Score: 116.7 bits (291), Expect = 5.0e-26 Identity = 72/190 (37.89%), Postives = 105/190 (55.26%), Query Frame = 1
BLAST of Lsi02G020300 vs. NCBI nr
Match: gi|778726730|ref|XP_011659150.1| (PREDICTED: trans-resveratrol di-O-methyltransferase-like [Cucumis sativus]) HSP 1 Score: 556.2 bits (1432), Expect = 6.9e-155 Identity = 286/375 (76.27%), Postives = 311/375 (82.93%), Query Frame = 1
BLAST of Lsi02G020300 vs. NCBI nr
Match: gi|778730313|ref|XP_011659757.1| (PREDICTED: trans-resveratrol di-O-methyltransferase-like [Cucumis sativus]) HSP 1 Score: 427.2 bits (1097), Expect = 4.9e-116 Identity = 230/373 (61.66%), Postives = 269/373 (72.12%), Query Frame = 1
BLAST of Lsi02G020300 vs. NCBI nr
Match: gi|700189305|gb|KGN44538.1| (hypothetical protein Csa_7G328260 [Cucumis sativus]) HSP 1 Score: 384.8 bits (987), Expect = 2.8e-103 Identity = 212/367 (57.77%), Postives = 249/367 (67.85%), Query Frame = 1
BLAST of Lsi02G020300 vs. NCBI nr
Match: gi|659110928|ref|XP_008455485.1| (PREDICTED: trans-resveratrol di-O-methyltransferase-like [Cucumis melo]) HSP 1 Score: 384.4 bits (986), Expect = 3.6e-103 Identity = 200/366 (54.64%), Postives = 257/366 (70.22%), Query Frame = 1
BLAST of Lsi02G020300 vs. NCBI nr
Match: gi|778723662|ref|XP_004151735.2| (PREDICTED: trans-resveratrol di-O-methyltransferase [Cucumis sativus]) HSP 1 Score: 380.6 bits (976), Expect = 5.2e-102 Identity = 200/366 (54.64%), Postives = 259/366 (70.77%), 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:
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