Tan0007407 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATTACTCCATAGAGCATTACTCCATAGAGCATTACTCCATTACAATTTTCCAAAGAGGAAAAAAAAAAAAAAATTAACGCCCGTTTCTCCATCGTCTCGTTTCTCTCAGAGAATCTCTGTGTTGCTTTACGTTCCCAACGAATTTGTTCTCCTCTTTATAATAATCAGCAATGAGCTTCACCTCTGCAACTCCAATCCATACGGCGTCGTATAGCCCCTCCTCCCTCCATTCCAATCGCCCCGACGCCACAATCCTCTCGTCAATCCCTCTCCGCCGTTCCCTTTCTTTCTTCTCCCGCCGCCGGAACCGTCCTCTGCTCGCCGCGGGTGCGACGACGATGGCCGCCGAGATTGAGATGGACGCCGATCAACTCAAGAAAGGAATCGCCGAGTTCTACGACGAATCGTCGGGGCTTTGGGAGAGCGTTTGGGGCGAACATATGCACCATGGATTTTACGATCCGGATTCTTCCATTTCCCTCTCCGATCACCGCGCCGCGCAAATCCGGATGATCGAGGAGACGCTCCGGTTCGCCGGTGTGACGGCGGCGGAGGCGGCGGTGGACGTTGGGTGTGGGATTGGGGGAAGTTCGAGGTATTTGGCGAGGAAGTTGGGGGCAAAATGTAGAGGTATAACGTTGAGCCCTGTTCAAGCCAAACGGGCTCAAGCGATTGCTGCGGCTGAAGGATTAAGTGATAAGGTCTGTACGTCTTTGAATCGTCTGTTCTGTTTTGTTCTTCTCCATATTTTTAGTCTTTTGTTTTTCTGTTTTCTTTGTGTGATACTAAACTGAAAAATTAGTCACGAATCAACTAATACAACCAAAATAATGAATGCCTGCTGGAATAGCCTTTTTTGTTTGGTTGCAGATGGTGTGAAAAAGTGTCCACACAAACACAATGAGTCCGTGGATGGTTTTCGTCTTTAGAATTATGTTATTTCCCTCTCTAAATTTTCACAAGGTTTAATACTTCTCAAGTTTTATCCATTTTGATCTCTGAAATTATGATGTCAATTGTTTCAACAAATAGATAGCATAATATTAAAGATATTATATGGTTGTGCACATAAACTAGATGAGATCGATGTTAAGTGACAAAATGGTAAGCCTTACCTGTTTCACATGATTCACCTTACCTCTTGACATTTCAGTAAAAAGAATATAAAATTTTAATTAGTTTAGCTATACTTGTGTTGGAGCCCACACAAAATAGAAAATAGAATACATGTATGGAAACTCTGACTTGCTCAGTTAACCATGAAGGAATCTGAAATGTTTAAGGTTGAAGTAGCTTAAATGTGGCATGTCAAGCCTTATAGAGAGGATTTTTGGTGAGTGGTAGGTGTGTTTTGAAGTAGCAGATGCTCTGAACCAACCATTCTCAGATGGGGAATTTGATTTGATATGGTCCATGGAGAGTGGGGAGCACATGCCTGACAAATCCAAGGTTTTTTTTTTTTTTCCTCTGTCTCTCTCTCTCTCTCTCTTCAATTACTTCTCGCATTTCTTTTTTGTCTAAGACAGTATTTGTTTGTTGTTTTCCTTGTATGTGTTTGTTTGTTAATATGCCTCTTTTAAACTCTTTAGTTTGTGAGTGAACTGGTGAGAGTTGCAGCCCCAGGAGCCACCATTATTATAGTTACATGGTGCCATAGAGACCTTGGGCCCTCTGAGGAATCCTTGCAGCCATGGGAGCACAAGCTCCTTCAGAAGATTTGTGATGGCTTCTATCTCCCTGCTTGGTGCTCCACTGCTGATTATGTCAAACTACTCAAGTCTCACAACCTTCAGGTACTTTGAGCATTGTATCTATTTATTGAACCTTGAATTTAAACCTCATAAAGTTTGACTTAATAATGTTAAAAATACTTGGAGAGAACAGGTTCAAACTAACTTCTAAGAGTTTTCTTGACAACCAAATGTTGTAACACTAGATGCAGATCTTGGAAAATTAGTGAAAGTGTACATTAATGAAGTTGGTTTGAACGTTCACAAATATTGAGAAGTCTTGTAAACTAACTTTTGAATTTCAAATGTTATCTAAAATTTAACCAATGTAATTTATAACTTAAACTATTGAAATCCTAAGGGGCTATTTGAGATGTTGGATAGATTATAATAATACGTGAAATTATATAATATTATTTAATAAGATTATAATAGTATTCTACAAATTATAATAATAAAGGTTATAACATGTGTCCCACCTGTGCCTCCATTAGGGCCCTAAGAGTTTTTTGACAACTAAAAGTATCATTTTATCCTGAATTTAAATCTTATAAATTTGATTTAGGGACGTTCCAACTAAATGGTTATAAGGATTATAAAATATTCTCTGTTTAAAAACGTCACGTCAAAAACGACTCTCGTGTTGACAGGATATAAAGACAGCAGACTGGTCTCAGAATGTCGCTCCGTTTTGGCCCGCAGTTATTCGGTCTGCATTGACTTGGAAAGGCTTCACATCTCTTTTGCGAAGTGGTAAATACTACAATACTAAAAAGTCAAATTTACATTCATAATTGCATGGGTAAGGAATAACTTATGATTTTTTTTTTTAACAAAATTAATTTTTCTATAAACACCTTTTTGAAAAATTAATAATTTAAAACAGATTTAACATACTTTATTGGGGGATTTTATATAATCAAAAGTGATTTTTTTTAAAAAAGAATCTAAAAAATTGTATTAATTTAATTTTTCTTTATAAACACTTGATAGATGGATTATCCTGATTAATTGAAAATCTTCCTAAGTATGTAATAAAAGATGAAAAAAACTTATAATTAATAGAAGTATTTTGAATTAGTGCAACTAAACAAATTTGCTATTTAAAATAATTATGAAAAAGTTTATGATATAATAACATTTTTATTGAAAACATTCTTTTAAATAGCTTTAAATTAGAAGGTATCTAAATCTCGTAAATTACTAAATCCAGCACATTAAAACTTTTTAAAAAGTTTCTCAAGCTACACCTGAATTAATTGAAAACAATATTAGTACTCAAAAAAAAAAAAAATGAAAACAATATTACATGGGTTTTTGTTTAGTGAGTGTATTTCTGAAAATAATATTTAATTCTCTGACTTAGGAGATGACAATTTTGAAAATGGTTTTTACAATTTTTTTTTTTAGTATTTTCATATTCTAAATTTGCCACCAACAATGATGTCTTAAAATGATTAAGGATGTGTTTGGTTAGAGATTTGAAAACTACAAATTTAATATAATTTTTTTTAATGTTGTGGTGTTTTTGAATGTGTATGATGGCAAATTTAAAAATTGGATCTCAATTTAAAAAGTTAGATCAAAATGTATTTTAGTTATATTTATAAACAATGAAAATAGTTGTAATTACTAACTAAATATTTAGGTGCATCTCAAGTAAAGATGTTTTATGTTATAAAATTGTATAATTATTATTTTACAATATTATAAATTTATAAAACTTTATGTTATATGTATTTTAATTTTAATAAGTACGAAATTAGTTTATAATATGAAATTATATTTATCAAAGTTTTATCTTTTATACTATAAAATCCAAATACATTGAAAACATTTAAAAATTATTTTTAAAATTTTTACTATTTAGAATCTAAAAATGGTTAAAAAAAAAGATATAGATATTAACTGAATCAATTTGATTCAATAAATTTTAGAACTAAATGTTTGGATATAGTTAAACTTTTAAGGCATGTTTGATAATCATCTAATTTTAGAAAAGTAAGCTTACAAAATACAAACGCTACTTGTGAGTTTTTTTTTTTTGTTTTGTAATATATGTTTTAAACATGATTTCAAAATGCAAATTAATGTTTGAAACTAAAAAAAAGTAAACTGGTTTGATGACTATTTGATTTTTGAAAATTGAGTTAATAAATATTATTAGAAAATTTGTCATTTTGGTCCTTGAGTTTTAAGGAATATGTGTATTTAGTTTTGAGTTTTTAAATAGACCTTTTCAGTCTCTAAATTTTGATAAATAGGTTTGAAAGGTCCCTTAGTGATTTTTTAAATTATTTTTAATGTTAATGATAAATTAAAAAATAATAAAAACTAAAACCCCTCTCTTCTATGCTTACTGTCTACCCTCTCTCCTCTCACCTCTTCTCCATCCTCTCCATCCTCTCCTTCTTCTTCATTATTCAAAATTGTAATATCAAGAAAAAAAGAGAACACAATGTGTCATTTTTTTTTTTCGGAAATTGATGTGTCAATGTGTTCTTGCCTGTACTTCTTAGTTTTCATCCAATTCATTCCTCTTATTTAAAGTAATTACTAACTCTAATTCTTTATTGGTGCAAAGACAACAAAACTTAGAATTAAATTTTAAGAGGCAACCTTAACGACATAGAGTTAGAAGAGTAGAAAGATTTTTCATTGTATGTTCACTGATCCTAAAATATGGGCTCTTGAGAGATCAAGTAGCTTTTCAAATCGACCAAGTGAAAAAGAACCCATCATTCAAGCAATATTTTCTTGGATTTGGCTCTTGGTAAACTATTTTGAAACAACCACACCAAAAGACTAGATTCTTTCTTTGTACAACTAAACATATCTGAAAAAGTCTTTTGGACCACTTTCTTTAATTTCAAATTTTTGTGTTTTAGCAATGTGAAAACTTGCAACCAAAAACATTGAGTTATCTCTCTTTTTTGATATTACAATTTTGAAAAAGGAGAAAGAAGAAGCTAGGGGGAGGAGTGAGAGTAGAGAGGGGTTTTGTTCTTGTTGTTGTTTTATCGTTTTAAAAATTCAATGACTAAATATATCTATTTCTTAACTAAATATATCTATTTCTTAAAACTCAGGGATTAAGAGGGTAATTTTTCCAATATTATTTCTCCCTACAAGCATTTTGATTTATCAAAATTCAAGCTAACTTTTGAAGAACAAGGTAGTTTTTAAAAAATTGTTTTTATTTTTAGAATTTGACTGGGAATTCATTGTTAAATATCAAAAAAGATAATTATTATTATTGAATGGGATCCAACTTTTTAAAAACTTGATTTTTTTACAAAAACAGGTGACTAAAAATTCTATTATTTCTCTGACAAAGGAGAAAACCAAGATAAATAAATGCTTAGGAAACAAATACACTTTTAAAAAACAAAGATACCAAAAACGAAAATGCTATCAATCGGTGCCAAAATATGTTCAAATTACTGTTTGTTTGATTCCCAGAACACGTCCTAAATATAGTTTTTTTGTTTGTTTTTTTTTTTTTTTTTTGGATTGTTATAATACAATCAGGGTGGAAAACGATAAAAGGAGCACTAGTGATGCCATCGATGACGGAAGGATTCAAGAAAGATCTTATCAAATTTGCGATTATTACTTGCCGTAAACCAGAATGAAGCTTTATGCCAAGGGATTTCAAAAAAAAAACTCACCATAACCAAATTCTTCCCTCTTAATAATTCTTCCTTCTTTTTTTCTTTTTCTTTTTCTTTTTCTTGTTTTTAGTTACATTTTTCTCTCTGGATACCTTGTGAGGGAAGGACAATCCAACTTCGTACTTAATTTGTATTTTTTTTTTAAAATTTATTATGAGATAGTTTTTGTAGTTTTTTTTTTCAAGTCAGAAACGAGCTTAAATTTTCGTTAAAAAATATTTTTAATCCCTAG ATTACTCCATAGAGCATTACTCCATAGAGCATTACTCCATTACAATTTTCCAAAGAGGAAAAAAAAAAAAAAATTAACGCCCGTTTCTCCATCGTCTCGTTTCTCTCAGAGAATCTCTGTGTTGCTTTACGTTCCCAACGAATTTGTTCTCCTCTTTATAATAATCAGCAATGAGCTTCACCTCTGCAACTCCAATCCATACGGCGTCGTATAGCCCCTCCTCCCTCCATTCCAATCGCCCCGACGCCACAATCCTCTCGTCAATCCCTCTCCGCCGTTCCCTTTCTTTCTTCTCCCGCCGCCGGAACCGTCCTCTGCTCGCCGCGGGTGCGACGACGATGGCCGCCGAGATTGAGATGGACGCCGATCAACTCAAGAAAGGAATCGCCGAGTTCTACGACGAATCGTCGGGGCTTTGGGAGAGCGTTTGGGGCGAACATATGCACCATGGATTTTACGATCCGGATTCTTCCATTTCCCTCTCCGATCACCGCGCCGCGCAAATCCGGATGATCGAGGAGACGCTCCGGTTCGCCGGTGTGACGGCGGCGGAGGCGGCGGTGGACGTTGGGTGTGGGATTGGGGGAAGTTCGAGGTATTTGGCGAGGAAGTTGGGGGCAAAATGTAGAGGTATAACGTTGAGCCCTGTTCAAGCCAAACGGGCTCAAGCGATTGCTGCGGCTGAAGGATTAAGTGATAAGGTGTGTTTTGAAGTAGCAGATGCTCTGAACCAACCATTCTCAGATGGGGAATTTGATTTGATATGGTCCATGGAGAGTGGGGAGCACATGCCTGACAAATCCAAGTTTGTGAGTGAACTGGTGAGAGTTGCAGCCCCAGGAGCCACCATTATTATAGTTACATGGTGCCATAGAGACCTTGGGCCCTCTGAGGAATCCTTGCAGCCATGGGAGCACAAGCTCCTTCAGAAGATTTGTGATGGCTTCTATCTCCCTGCTTGGTGCTCCACTGCTGATTATGTCAAACTACTCAAGTCTCACAACCTTCAGGATATAAAGACAGCAGACTGGTCTCAGAATGTCGCTCCGTTTTGGCCCGCAGTTATTCGGTCTGCATTGACTTGGAAAGGCTTCACATCTCTTTTGCGAAGTGGGTGGAAAACGATAAAAGGAGCACTAGTGATGCCATCGATGACGGAAGGATTCAAGAAAGATCTTATCAAATTTGCGATTATTACTTGCCGTAAACCAGAATGAAGCTTTATGCCAAGGGATTTCAAAAAAAAAACTCACCATAACCAAATTCTTCCCTCTTAATAATTCTTCCTTCTTTTTTTCTTTTTCTTTTTCTTTTTCTTGTTTTTAGTTACATTTTTCTCTCTGGATACCTTGTGAGGGAAGGACAATCCAACTTCGTACTTAATTTGTATTTTTTTTTTAAAATTTATTATGAGATAGTTTTTGTAGTTTTTTTTTTCAAGTCAGAAACGAGCTTAAATTTTCGTTAAAAAATATTTTTAATCCCTAG ATGAGCTTCACCTCTGCAACTCCAATCCATACGGCGTCGTATAGCCCCTCCTCCCTCCATTCCAATCGCCCCGACGCCACAATCCTCTCGTCAATCCCTCTCCGCCGTTCCCTTTCTTTCTTCTCCCGCCGCCGGAACCGTCCTCTGCTCGCCGCGGGTGCGACGACGATGGCCGCCGAGATTGAGATGGACGCCGATCAACTCAAGAAAGGAATCGCCGAGTTCTACGACGAATCGTCGGGGCTTTGGGAGAGCGTTTGGGGCGAACATATGCACCATGGATTTTACGATCCGGATTCTTCCATTTCCCTCTCCGATCACCGCGCCGCGCAAATCCGGATGATCGAGGAGACGCTCCGGTTCGCCGGTGTGACGGCGGCGGAGGCGGCGGTGGACGTTGGGTGTGGGATTGGGGGAAGTTCGAGGTATTTGGCGAGGAAGTTGGGGGCAAAATGTAGAGGTATAACGTTGAGCCCTGTTCAAGCCAAACGGGCTCAAGCGATTGCTGCGGCTGAAGGATTAAGTGATAAGGTGTGTTTTGAAGTAGCAGATGCTCTGAACCAACCATTCTCAGATGGGGAATTTGATTTGATATGGTCCATGGAGAGTGGGGAGCACATGCCTGACAAATCCAAGTTTGTGAGTGAACTGGTGAGAGTTGCAGCCCCAGGAGCCACCATTATTATAGTTACATGGTGCCATAGAGACCTTGGGCCCTCTGAGGAATCCTTGCAGCCATGGGAGCACAAGCTCCTTCAGAAGATTTGTGATGGCTTCTATCTCCCTGCTTGGTGCTCCACTGCTGATTATGTCAAACTACTCAAGTCTCACAACCTTCAGGATATAAAGACAGCAGACTGGTCTCAGAATGTCGCTCCGTTTTGGCCCGCAGTTATTCGGTCTGCATTGACTTGGAAAGGCTTCACATCTCTTTTGCGAAGTGGGTGGAAAACGATAAAAGGAGCACTAGTGATGCCATCGATGACGGAAGGATTCAAGAAAGATCTTATCAAATTTGCGATTATTACTTGCCGTAAACCAGAATGA MSFTSATPIHTASYSPSSLHSNRPDATILSSIPLRRSLSFFSRRRNRPLLAAGATTMAAEIEMDADQLKKGIAEFYDESSGLWESVWGEHMHHGFYDPDSSISLSDHRAAQIRMIEETLRFAGVTAAEAAVDVGCGIGGSSRYLARKLGAKCRGITLSPVQAKRAQAIAAAEGLSDKVCFEVADALNQPFSDGEFDLIWSMESGEHMPDKSKFVSELVRVAAPGATIIIVTWCHRDLGPSEESLQPWEHKLLQKICDGFYLPAWCSTADYVKLLKSHNLQDIKTADWSQNVAPFWPAVIRSALTWKGFTSLLRSGWKTIKGALVMPSMTEGFKKDLIKFAIITCRKPE Homology
BLAST of Tan0007407 vs. ExPASy Swiss-Prot
Match: Q9ZSK1 (Tocopherol O-methyltransferase, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=VTE4 PE=1 SV=2) HSP 1 Score: 446.8 bits (1148), Expect = 2.2e-124 Identity = 228/355 (64.23%), Postives = 263/355 (74.08%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy Swiss-Prot
Match: Q6ZIK0 (Probable tocopherol O-methyltransferase, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=VTE4 PE=2 SV=1) HSP 1 Score: 443.0 bits (1138), Expect = 3.2e-123 Identity = 215/310 (69.35%), Postives = 250/310 (80.65%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy Swiss-Prot
Match: W5U2K2 (3-hydroxy-16-methoxy-2,3-dihydrotabersonine N-methyltransferase OS=Catharanthus roseus OX=4058 GN=NMT PE=1 SV=1) HSP 1 Score: 260.4 bits (664), Expect = 2.9e-68 Identity = 127/287 (44.25%), Postives = 195/287 (67.94%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy Swiss-Prot
Match: P74388 (2-methyl-6-phytyl-1,4-hydroquinone methyltransferase OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=sll0418 PE=1 SV=1) HSP 1 Score: 145.6 bits (366), Expect = 1.1e-33 Identity = 92/275 (33.45%), Postives = 140/275 (50.91%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy Swiss-Prot
Match: Q8KZ94 (Demethylrebeccamycin-D-glucose O-methyltransferase OS=Lentzea aerocolonigenes OX=68170 GN=rebM PE=1 SV=1) HSP 1 Score: 114.0 bits (284), Expect = 3.4e-24 Identity = 57/159 (35.85%), Postives = 94/159 (59.12%), Query Frame = 0
BLAST of Tan0007407 vs. NCBI nr
Match: XP_023513404.1 (tocopherol O-methyltransferase, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 628.2 bits (1619), Expect = 4.1e-176 Identity = 310/349 (88.83%), Postives = 323/349 (92.55%), Query Frame = 0
BLAST of Tan0007407 vs. NCBI nr
Match: KAG7011011.1 (Tocopherol O-methyltransferase, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 625.9 bits (1613), Expect = 2.0e-175 Identity = 309/349 (88.54%), Postives = 323/349 (92.55%), Query Frame = 0
BLAST of Tan0007407 vs. NCBI nr
Match: KAG6571208.1 (Tocopherol O-methyltransferase, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 624.0 bits (1608), Expect = 7.7e-175 Identity = 308/349 (88.25%), Postives = 322/349 (92.26%), Query Frame = 0
BLAST of Tan0007407 vs. NCBI nr
Match: XP_022944690.1 (tocopherol O-methyltransferase, chloroplastic [Cucurbita moschata]) HSP 1 Score: 624.0 bits (1608), Expect = 7.7e-175 Identity = 308/349 (88.25%), Postives = 322/349 (92.26%), Query Frame = 0
BLAST of Tan0007407 vs. NCBI nr
Match: XP_038900464.1 (tocopherol O-methyltransferase, chloroplastic [Benincasa hispida]) HSP 1 Score: 623.6 bits (1607), Expect = 1.0e-174 Identity = 307/348 (88.22%), Postives = 321/348 (92.24%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy TrEMBL
Match: A0A6J1FYT6 (tocopherol O-methyltransferase, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111449074 PE=3 SV=1) HSP 1 Score: 624.0 bits (1608), Expect = 3.7e-175 Identity = 308/349 (88.25%), Postives = 322/349 (92.26%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy TrEMBL
Match: A0A6J1JGD5 (tocopherol O-methyltransferase, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111484262 PE=3 SV=1) HSP 1 Score: 614.0 bits (1582), Expect = 3.9e-172 Identity = 304/350 (86.86%), Postives = 319/350 (91.14%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy TrEMBL
Match: A0A5D3BSC2 (Tocopherol O-methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold602G001840 PE=3 SV=1) HSP 1 Score: 596.7 bits (1537), Expect = 6.4e-167 Identity = 295/348 (84.77%), Postives = 313/348 (89.94%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy TrEMBL
Match: A0A1S3CHR0 (tocopherol O-methyltransferase, chloroplastic OS=Cucumis melo OX=3656 GN=LOC103501078 PE=3 SV=1) HSP 1 Score: 596.7 bits (1537), Expect = 6.4e-167 Identity = 295/348 (84.77%), Postives = 313/348 (89.94%), Query Frame = 0
BLAST of Tan0007407 vs. ExPASy TrEMBL
Match: A0A0A0LTM1 (Methyltransf_11 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G432780 PE=3 SV=1) HSP 1 Score: 578.2 bits (1489), Expect = 2.4e-161 Identity = 286/349 (81.95%), Postives = 306/349 (87.68%), Query Frame = 0
BLAST of Tan0007407 vs. TAIR 10
Match: AT1G64970.1 (gamma-tocopherol methyltransferase ) HSP 1 Score: 446.8 bits (1148), Expect = 1.6e-125 Identity = 228/355 (64.23%), Postives = 263/355 (74.08%), Query Frame = 0
BLAST of Tan0007407 vs. TAIR 10
Match: AT1G20330.1 (sterol methyltransferase 2 ) HSP 1 Score: 86.7 bits (213), Expect = 4.1e-17 Identity = 83/304 (27.30%), Postives = 133/304 (43.75%), Query Frame = 0
BLAST of Tan0007407 vs. TAIR 10
Match: AT1G76090.1 (sterol methyltransferase 3 ) HSP 1 Score: 85.9 bits (211), Expect = 7.1e-17 Identity = 83/309 (26.86%), Postives = 132/309 (42.72%), Query Frame = 0
BLAST of Tan0007407 vs. TAIR 10
Match: AT5G13710.1 (sterol methyltransferase 1 ) HSP 1 Score: 80.5 bits (197), Expect = 3.0e-15 Identity = 61/226 (26.99%), Postives = 98/226 (43.36%), Query Frame = 0
BLAST of Tan0007407 vs. TAIR 10
Match: AT5G13710.2 (sterol methyltransferase 1 ) HSP 1 Score: 80.5 bits (197), Expect = 3.0e-15 Identity = 61/226 (26.99%), Postives = 98/226 (43.36%), 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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