
Tan0018646 (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.GCCTTATTTACAAGGTCGATCCACCGCCCGTTGTGATCGGCTCCGTGTCGTACCAACCAAGGTTCTTCCGATTCAAGTCCACTCCTCAGATTCCTTTTAGGGTTTTTTTCTTCCATTTCTCCGATCATGGCTGCGATTCGGTTGACGCCGGAAGATGCTGAGCTGTTGCATCAGGCTCGGGCTGCTCCTTCCGCCGTCGATTTGGTCTCCGACGACGATCGATCAGTGGCCGCTGACTCTTGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAGCGTAATGCTGACGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTGCCGCTTCGGATTACAGGTCTAGCATAGTTCCTTCTTTCGAATTGTGTGAATCTTACTGGAAATAGTTGAAACCCAGTTCGTTTGAAACTTTGTTTCCATTTGGCAGTTGGGAACTCTGTGTTTTGTTTTTTTTTTTTCTATAGTTTAGATTGATTCCTAAAGCATTCAATGATCACGTTACCGTCGTTGATTTCTGGAATAAATGAACATGTTTCTGCGGCGCAGTTCATGTAGTTTACATTTTCTCTTACACTTATATTGAATTCCTGAAGGTGAGAGTAGATTCTCATTTTTTCAGTCTCTTGCTCTTTCTTTCCTTTGCCCTATGGACTTCGGATGGATTTCTTTTATTGTTTTCCCTTTGGCTCTTCAATCTGGAGTAGGAGAACTGTTGTTGTTGTATCCTTTTTGCTTTGCTTAGAGATTAGAGATTAGATCTATGTTTCACTACGTTTAGCTGTAACTAATGTCACAATGACCACTGCTTAGAAACCATTGTGGGTTGGCCGGGCCAATGGCTTAAAGGTAGTGATTTCAAACTATAGTAGCTACCTACTTAGGATCTAATATTCTACAAGTTTTCTTAGTAACTAAATGTAGTAGGTTCGAGGTTATCGTGTGAGATTAGTCAAGGTACACATGAGTTGATCTAGACACTCATAGATATCAATGAAAATTTTTCTTAGAATCTTTGCAACGCACAGGGGAGTAGAATATTCCATTTGTAACTACTTGACCAGACTAAAAAATTATAATACTATTAATCTGGTATAATGGGATTCCTTTAATGGCCGTATTTTCATTCTAAATAAAATCCGTTACATTTTCAGTTCTGACAAAGATGAAGTAGAACCAGATGCTGAAGCCGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAACTGACAAATTTCCGTGAACATGGTCATGTTGGTGAAGTCTGGTACGTAAGAATTTCTTAACGTATCTTGTTTTCTATTATTCTTGTAATATCATTATGTTGTTGGCATTCTGGCAAAAGATGAGTTAGTAGTTAGCTGCACTTCAATTTTGTGTACTTTTTTGCCTTCTATATTATTCAACTATCAATCATATTCTCTAATCACTTTTCCTCGTCAATTTACTATATGTTGGTACTCTCTGTGTACTATGGTTAATTCCGTTCAGAGATTGAAGAGCTGTTCTTGCACTATTAACTTTCTGAACACGATATTAGGTATTAGTCATTCAAAGGATGATTTTACGTATACCTGATAATTATTCTCAATAATTCATCTCGAGGACTATGGTTTTTCTAAATGAATTTTGGTTTGTTAAACTTGATTAAAAAAATAAAGTAGATTTAAATTGACTGGGTAGAATCAGAGGGAGACTTGACTTGTATTTGTATATCTAGTTTTCTATTTTTATACTTTCTTCATTCTTCAGGTTCGGATCTGAAGTTATGGAAACTGTTGCTTCTTGGACAAAAAGCTTGTGTTCTGATGTTTCTCAAGGTCGGTTTCCCAATCAAGCTGACAATGTTAAGTCACTGAATGTTGAACAGGATTTCAAATTCTTGACTAGTTGGAGCGTACTTGATATTGGGACGGGAAATGGTTTGCTGCTTCAAGAACTTGCTAAGGAGGGGTATGTTTTGACGTGCCTTTTGATTCTCTCTAACATTTGAGAGAATGGTTTTCTTTTTAACTTATGTCTTATTTCAGTGGATAGGCATAAGCTTTGATTAATAAATTGAGTTGGAGAAGGGATATTGTGGGGATGTTTTATAATTATTTTTTAAATATAGAAATATATTTTGGATGATAGATCCTTTTATCTCTTGTTGACTTTTCTGTTGAAGGAAACAAATTGGAGGCAAAAATTAAGTGAAGTGGGCAAAAGAAAGGGTGCCTTTCTTTTTACCCCTCCTTTTTCTCCATTGGTTAGACAATTCAAAGAGATGCAGACGTTGATTGGTACACTAGTTGATAATGATGGAGAGATTATATTAGGCCATAGAGATCTAAAGCGCGACGATCTTCTTTTTTCTTCCCTCTCCTTTATACACGTCTTATAAAAAAATATAAGCCCTTTATTTTTAGTATACCTTGGCATTTGATCAAAGGGGATATGACCATTTGGGATCTCCATCTTTCTATAAAAGAGGAACATGGTCTAATGTTACTCTCTCCAATTCGTGCATCGTTCTTTTGGTGCTTATTGAAGATTGGGGAGTCAATTTTTTTTTTGTCTCTGGAAGGTGAAAGTTCCAAAAAAGGTTTAGTTCTTTGTTTGATAAATCATCTATTGAAGAGCGAATACTCTTGATTGGCTCTCAAGAAAGATGTCTTCCCTAATTGGTCCGTTTTGCTCCATTCTTTTTCAAATGGAGAAAGAACTTGACCATGTTCTATGGAGTTGTGATTTTGCGCAGTCAGTTTGGAATTTATTTTGGGAGGTGTTTGGTTTGCAGTTTGCTCATAGAGACCTTCAAGAGATGATCGAGGCGTTCCTTCCCTATTCACCGTTTCATAACAAAAATCTGGGTTTCCTTTCAAAATAATGTCCTTCATGAGCTCCCTTTTCCTCAAAGTTCCCAGCTCTCCCTTGTATTATAGCTAAGAACTTTTATGTATTATAAATTCTAATGCTCATTTTCTTTTTTCCTGCTCCTTTCCGTTATATCTTGCCTATTGTTTCTTGAACTTCAATCGTTTTTTTAGACTTTGATTCTTCTTACGATACTGCAACTGTAGTTGGAGTTTGTTGTAGGGTCTATCCACCGTCCCCAAAGAAAAGATTTGCAACCTCATTGCCACTAGATTCCTAGAATCCATATATATTTTATTCACTTTTTCAGGGTACTCATTGCCAATAGATTCTTGAATTCTCTGTTGGAAGGCTTTGTTGGTTGGTCGACTTCCTTCCCAAATAACTTCCAGCCACTGCTGAATGCTTTTCTTGGAGGGCTTTATCTTGAAGGAAAAGCTAAGTTAATTTGCCTAAACACCTCATATGTGGATCTTTTGGAATGAAAGAAACAAAAGACAACTCTTGAGGATGAGGAGAAAGAGAACCCCCCCTTTTCCTTCCTATTTTCTTAGTTTTTGCAGCTGTTACTTCGTGTAAACTCAGTAATTCTTTTTCTAACTACATCTTAGCTTCTATTTGCGCCCATGGGAAAGTCATCTGTATCTTCCTTTGTTGTGGTTGAAGCTTTTCTTTTCTACCATTTTATATGTTTCATTTTTTTAATGAAATAGAGTCTTAGGACCTGTTTGAGGCGTTGAGTGGATTATAATAGTTTGTGGAGTTAAATAATTCTACACCTCAAATACATACTATTATAACCCAAATTAAACAACTCTACATCCTAAACACATATTATATAACTTAACAAATTATTATAATCCACTCAACGCCTCAAACAACCCTTTAGTGTATGTGTGCAGCATTCACAGTAAGCAACTTATGAATTATCTAGGTGATTAAGACTTTTGTACTCAGCTAGAAGGTTATTGGTTCCCAATTATCCAGTGTTGTTAAGTGATTGGCTCTAGTTTTGAATGCAATTTAATCATAAAGGCTAAAAGATTTTAGTTACTAAAGAACAAGCTCACAATAGCATCAGTACTTACTGATTGTCATCTTGCATTTGCTTGCAGATTCTCTAATTTAACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAACCTTGCAGAGCGAGATGGGTTTTCCAATATAAATTTTTTGGTATGACTTGGCCCGCAGATATTTTGATTACCCAACTTATTCCAAATCTTTGCAAATCTCCTTGTCTCTCTCGGGTGTGCCATGAAACATATTAACCTTCTACTCACTCAATTGGTAGTGTTTCTGAAATTTTGGAATTGGTAGGGATTTATTTATTTATTGTAAGAACGTATATCTTTTTGCCCATATACGTTTCTTATTTTTTTTTTTAAGAAATAGAATTAAATTTTTGCTGAACGACATTGTCACATTTTTAGTGGGCTATGTGTGGCACATGTGAGGTGAGTAATGCATTGTCTATCTTGAACTTTAGGTGATCTGATTGGGCAGCTAGTCATAGATATGGAAAGATGAGCAGGTAATTGGGTTGAATTAGATTTGATAATTTTTTTAAGGGCAAATTATATTTTTTACCATAAATCTTTATCTATCGTTTTGTCTATTTGAGCCTTTTAAGTTTTTAAATCTTTGTCATTTAAATTCTTAGTCTTCAGAATTAGATCTAAATAGGACAAATATTGACAAATTAGATTTGGTAAACGGATTAGGCCTGTTTAGTCAATTTCTTAAATCCATCCCATTGTTTGTCAGATTATGTTGCATCTAAGTTTCAAGAAATGTTTGTCACCTGTATTTCGTCAACCATTGATAGCAAGCATGATCTGAAGTCTAGAGATGATAATTGAAAATTTTTAAAGTTGAGAAAATAAAATGAACAAAGTACATATTAAATAAATGGTTATAGATATTAAATAAATGGTTATAGTTTTTGAATGCCCTTAGGTTCATAGCTAGTCATGTTTGATGCCTTTCTGAGCTATATAATTGGGTTATTAAATTTCCACGATCAAGCATCCTAGGGTGTAGTTTGGAGTTTTTAGCATCATAAACATTGAAGTAAAATCATCTGCAGATCCAGAAAGCAAGTGGAAGTAGAGAATTTTACGAGCATGAAAATTACAAACTAATTTGCTAGCAACCGTTTAAGAGTTATTCAACTCAACCCTAGTGCTACTCCTATTTGTGGAACGTGCCTTATTTCAAGTGTTAGTATGGACATTTATGTAGAAATTTGAAAGCTAAACACTTCAATGATTCACGAATAGGAAATAGTAGGCCATTTATTAGTTACTTAGAAATATTTTAGAAGTTAGTTTGTGCATAATGTGGTGCGATAATCATAATTGCATTGTTTTACATGGCTTAGGTTGATGATGTTCTTGAGACAAAGTTGGAAGGGCAATTTGAACTCGTTGTGGATAAAGGGACTTTAGATGCAATTGGATTGCATCCAGATGGTCCTATTAAAAGGTAATGATAGGCAAATATAGGCATCCTTTAACACAAATATAGGCATCCTTTAACACAAATATAGGCATCCTTTAACACAAATATAGGCATCCTTTAACACAGTTATATATGGACTGTTTCTCATTGGATATGTGTTCGCTCACAAAGAACATGGGCCGCATATGCTCCATAATAAATAAGATAATTGGTGATTTTAAGTTGCAGTTTGATAGATAAGACTGAATATAAGTTCGAAGTAACTGGAAATTTTTGTTTCCTTTTTACTACTTCCAGGATCATGTATTGGGAGTCCGTATCGAAACTGGTGGCTCCGGGCGGGTTATTGGTAAGGCCTTTCTTTTCCCTCCACCACCTATCTGGCAGAAAAAATAAAAAATAAATAAAGACATACTTCATGCTAACGACCATGAGTCATCCTATTGTTTTCATAGGACGAGTAACAAAGCAAAAGTACTTTTAGAGTTCAAATCCTATTAGTTTTCTAACATCCAAATATTGTAGCATCTTGCAAATAGTTTTGTGGGATTAATGAAATGCGTGTGAGCTGCCTGAACTCACAGCCATCAATTCCCACCCAATTTTTAACATTTACATTGTATGTTCTTTGGCAAATTTAATATTTCATTCTCTTAGAGCTAGTGCATAGACATTGCATCCTTCCTTTAGTGAAACTGCAATGCGACTGGGACTGACTCGCCACTGTTAATTTCTGTAGGTGATCACTTCCTGCAACAGTACAAAAGATGAACTTGTGCAAGAAGTTGAGAACTTCAATCAAAGAAGGGTCAATTCCTCTGCGGAACCGGAGTCGTCTGATGAAACACAAAAAGAATTGCCTACATTTCAGTACCTCAGCCATGTTCGTACATACCCGACATTCACCTTTGGAGGATCTGTGGGATCTCGTGTAGCCACAGTGGCATTTCTTAGGAACTGATTGTGTTAGATGTCATCTTGGATCGAAGTCATTTCTGTATGTTAAACAAAATTTATGGATTTGTAGTGTTTGAGCCTACCACAGTTTGCTCCCAAGAATCAATGTTTTTTGCTTGAAAACCACAAGACTTTGTGTTTGTGTAAAACTTTGAACCATTTTCAGGCTTTTTAGCTTCTGCTCAGGGAACTGATGTAATTATGGTGGGGAGTAAAGTGGAAAATTACTGAATTGCAGGTTTATGTCTGTGTGATATTGAGATCTCAATGCCTTTCTCA GCCTTATTTACAAGGTCGATCCACCGCCCGTTGTGATCGGCTCCGTGTCGTACCAACCAAGGTTCTTCCGATTCAAGTCCACTCCTCAGATTCCTTTTAGGGTTTTTTTCTTCCATTTCTCCGATCATGGCTGCGATTCGGTTGACGCCGGAAGATGCTGAGCTGTTGCATCAGGCTCGGGCTGCTCCTTCCGCCGTCGATTTGGTCTCCGACGACGATCGATCAGTGGCCGCTGACTCTTGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAGCGTAATGCTGACGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTGCCGCTTCGGATTACAGTTCTGACAAAGATGAAGTAGAACCAGATGCTGAAGCCGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAACTGACAAATTTCCGTGAACATGGTCATGTTGGTGAAGTCTGGTTCGGATCTGAAGTTATGGAAACTGTTGCTTCTTGGACAAAAAGCTTGTGTTCTGATGTTTCTCAAGGTCGGTTTCCCAATCAAGCTGACAATGTTAAGTCACTGAATGTTGAACAGGATTTCAAATTCTTGACTAGTTGGAGCGTACTTGATATTGGGACGGGAAATGGTTTGCTGCTTCAAGAACTTGCTAAGGAGGGATTCTCTAATTTAACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAACCTTGCAGAGCGAGATGGGTTTTCCAATATAAATTTTTTGGTTGATGATGTTCTTGAGACAAAGTTGGAAGGGCAATTTGAACTCGTTGTGGATAAAGGGACTTTAGATGCAATTGGATTGCATCCAGATGGTCCTATTAAAAGGATCATGTATTGGGAGTCCGTATCGAAACTGGTGGCTCCGGGCGGGTTATTGGTGATCACTTCCTGCAACAGTACAAAAGATGAACTTGTGCAAGAAGTTGAGAACTTCAATCAAAGAAGGGTCAATTCCTCTGCGGAACCGGAGTCGTCTGATGAAACACAAAAAGAATTGCCTACATTTCAGTACCTCAGCCATGTTCGTACATACCCGACATTCACCTTTGGAGGATCTGTGGGATCTCGTGTAGCCACAGTGGCATTTCTTAGGAACTGATTGTGTTAGATGTCATCTTGGATCGAAGTCATTTCTGTATGTTAAACAAAATTTATGGATTTGTAGTGTTTGAGCCTACCACAGTTTGCTCCCAAGAATCAATGTTTTTTGCTTGAAAACCACAAGACTTTGTGTTTGTGTAAAACTTTGAACCATTTTCAGGCTTTTTAGCTTCTGCTCAGGGAACTGATGTAATTATGGTGGGGAGTAAAGTGGAAAATTACTGAATTGCAGGTTTATGTCTGTGTGATATTGAGATCTCAATGCCTTTCTCA ATGGCTGCGATTCGGTTGACGCCGGAAGATGCTGAGCTGTTGCATCAGGCTCGGGCTGCTCCTTCCGCCGTCGATTTGGTCTCCGACGACGATCGATCAGTGGCCGCTGACTCTTGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAGCGTAATGCTGACGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTGCCGCTTCGGATTACAGTTCTGACAAAGATGAAGTAGAACCAGATGCTGAAGCCGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAACTGACAAATTTCCGTGAACATGGTCATGTTGGTGAAGTCTGGTTCGGATCTGAAGTTATGGAAACTGTTGCTTCTTGGACAAAAAGCTTGTGTTCTGATGTTTCTCAAGGTCGGTTTCCCAATCAAGCTGACAATGTTAAGTCACTGAATGTTGAACAGGATTTCAAATTCTTGACTAGTTGGAGCGTACTTGATATTGGGACGGGAAATGGTTTGCTGCTTCAAGAACTTGCTAAGGAGGGATTCTCTAATTTAACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAACCTTGCAGAGCGAGATGGGTTTTCCAATATAAATTTTTTGGTTGATGATGTTCTTGAGACAAAGTTGGAAGGGCAATTTGAACTCGTTGTGGATAAAGGGACTTTAGATGCAATTGGATTGCATCCAGATGGTCCTATTAAAAGGATCATGTATTGGGAGTCCGTATCGAAACTGGTGGCTCCGGGCGGGTTATTGGTGATCACTTCCTGCAACAGTACAAAAGATGAACTTGTGCAAGAAGTTGAGAACTTCAATCAAAGAAGGGTCAATTCCTCTGCGGAACCGGAGTCGTCTGATGAAACACAAAAAGAATTGCCTACATTTCAGTACCTCAGCCATGTTCGTACATACCCGACATTCACCTTTGGAGGATCTGTGGGATCTCGTGTAGCCACAGTGGCATTTCTTAGGAACTGA MAAIRLTPEDAELLHQARAAPSAVDLVSDDDRSVAADSWSIKSEYGSTLDDDQRNADAAEALSAGNLRAASDYSSDKDEVEPDAEAVTSMLGLQSYWDSQYADELTNFREHGHVGEVWFGSEVMETVASWTKSLCSDVSQGRFPNQADNVKSLNVEQDFKFLTSWSVLDIGTGNGLLLQELAKEGFSNLTGTDYSEGAIDLARNLAERDGFSNINFLVDDVLETKLEGQFELVVDKGTLDAIGLHPDGPIKRIMYWESVSKLVAPGGLLVITSCNSTKDELVQEVENFNQRRVNSSAEPESSDETQKELPTFQYLSHVRTYPTFTFGGSVGSRVATVAFLRN Homology
BLAST of Tan0018646 vs. ExPASy Swiss-Prot
Match: Q9D853 (EEF1A lysine methyltransferase 2 OS=Mus musculus OX=10090 GN=Eef1akmt2 PE=1 SV=1) HSP 1 Score: 159.1 bits (401), Expect = 9.1e-38 Identity = 113/289 (39.10%), Postives = 143/289 (49.48%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy Swiss-Prot
Match: Q5JPI9 (EEF1A lysine methyltransferase 2 OS=Homo sapiens OX=9606 GN=EEF1AKMT2 PE=1 SV=2) HSP 1 Score: 155.6 bits (392), Expect = 1.0e-36 Identity = 95/219 (43.38%), Postives = 121/219 (55.25%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy Swiss-Prot
Match: Q5D013 (EEF1A lysine methyltransferase 2 OS=Danio rerio OX=7955 GN=eef1akmt2 PE=2 SV=1) HSP 1 Score: 151.4 bits (381), Expect = 1.9e-35 Identity = 93/254 (36.61%), Postives = 130/254 (51.18%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy Swiss-Prot
Match: P40516 (Protein-lysine N-methyltransferase EFM4 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=EFM4 PE=1 SV=1) HSP 1 Score: 124.0 bits (310), Expect = 3.2e-27 Identity = 88/271 (32.47%), Postives = 135/271 (49.82%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy Swiss-Prot
Match: Q9P7Z3 (Protein-lysine N-methyltransferase efm4 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=see1 PE=2 SV=1) HSP 1 Score: 113.6 bits (283), Expect = 4.4e-24 Identity = 86/263 (32.70%), Postives = 123/263 (46.77%), Query Frame = 0
BLAST of Tan0018646 vs. NCBI nr
Match: XP_038896924.1 (EEF1A lysine methyltransferase 2 [Benincasa hispida]) HSP 1 Score: 645.2 bits (1663), Expect = 3.2e-181 Identity = 327/342 (95.61%), Postives = 334/342 (97.66%), Query Frame = 0
BLAST of Tan0018646 vs. NCBI nr
Match: XP_004140734.1 (EEF1A lysine methyltransferase 2 [Cucumis sativus]) HSP 1 Score: 634.0 bits (1634), Expect = 7.3e-178 Identity = 324/344 (94.19%), Postives = 333/344 (96.80%), Query Frame = 0
BLAST of Tan0018646 vs. NCBI nr
Match: KAG6606991.1 (EEF1A lysine methyltransferase 2, partial [Cucurbita argyrosperma subsp. sororia] >KAG7036693.1 EEF1A lysine methyltransferase 2, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 632.1 bits (1629), Expect = 2.8e-177 Identity = 318/341 (93.26%), Postives = 329/341 (96.48%), Query Frame = 0
BLAST of Tan0018646 vs. NCBI nr
Match: XP_022143402.1 (EEF1A lysine methyltransferase 2 [Momordica charantia]) HSP 1 Score: 631.3 bits (1627), Expect = 4.8e-177 Identity = 319/342 (93.27%), Postives = 330/342 (96.49%), Query Frame = 0
BLAST of Tan0018646 vs. NCBI nr
Match: XP_022948874.1 (EEF1A lysine methyltransferase 2-like [Cucurbita moschata]) HSP 1 Score: 630.2 bits (1624), Expect = 1.1e-176 Identity = 317/341 (92.96%), Postives = 329/341 (96.48%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy TrEMBL
Match: A0A6J1CQQ0 (Protein-lysine N-methyltransferase LOC111013281 OS=Momordica charantia OX=3673 GN=LOC111013281 PE=3 SV=1) HSP 1 Score: 631.3 bits (1627), Expect = 2.3e-177 Identity = 319/342 (93.27%), Postives = 330/342 (96.49%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy TrEMBL
Match: A0A6J1GB80 (Protein-lysine N-methyltransferase LOC111452405 OS=Cucurbita moschata OX=3662 GN=LOC111452405 PE=3 SV=1) HSP 1 Score: 630.2 bits (1624), Expect = 5.1e-177 Identity = 317/341 (92.96%), Postives = 329/341 (96.48%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy TrEMBL
Match: A0A6J1KBC4 (Protein-lysine N-methyltransferase LOC111492750 OS=Cucurbita maxima OX=3661 GN=LOC111492750 PE=3 SV=1) HSP 1 Score: 629.8 bits (1623), Expect = 6.7e-177 Identity = 316/341 (92.67%), Postives = 329/341 (96.48%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy TrEMBL
Match: A0A5D3BTP8 (Protein-lysine N-methyltransferase E5676_scaffold451G00020 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold451G00020 PE=3 SV=1) HSP 1 Score: 624.4 bits (1609), Expect = 2.8e-175 Identity = 320/344 (93.02%), Postives = 328/344 (95.35%), Query Frame = 0
BLAST of Tan0018646 vs. ExPASy TrEMBL
Match: A0A1S3C4B8 (Protein-lysine N-methyltransferase LOC103496859 OS=Cucumis melo OX=3656 GN=LOC103496859 PE=3 SV=1) HSP 1 Score: 619.0 bits (1595), Expect = 1.2e-173 Identity = 320/347 (92.22%), Postives = 328/347 (94.52%), Query Frame = 0
BLAST of Tan0018646 vs. TAIR 10
Match: AT1G66680.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 454.5 bits (1168), Expect = 7.4e-128 Identity = 236/359 (65.74%), Postives = 282/359 (78.55%), Query Frame = 0
BLAST of Tan0018646 vs. TAIR 10
Match: AT3G60910.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 57.0 bits (136), Expect = 3.4e-08 Identity = 31/118 (26.27%), Postives = 59/118 (50.00%), Query Frame = 0
BLAST of Tan0018646 vs. TAIR 10
Match: AT4G34360.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 54.7 bits (130), Expect = 1.7e-07 Identity = 33/106 (31.13%), Postives = 59/106 (55.66%), Query Frame = 0
BLAST of Tan0018646 vs. TAIR 10
Match: AT2G30920.1 (coenzyme Q 3 ) HSP 1 Score: 42.4 bits (98), Expect = 8.8e-04 Identity = 34/112 (30.36%), Postives = 57/112 (50.89%), 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 Position : 0 Zoom : x 1
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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