Tan0010681 (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.CGGCAACGGCGGACGCTCAAAGCCATAGCCAAATGACTTCCAGGTTCTCTAACCGATCAGTTTTCTTCCTTTCGTCTCATCAAGTTTTAAATGTCTGCTCATTTCGTCCCTTTCGTTTTGATTTTGATCTGTGATTTGAAATATCAGGCGATTGAGAGCTTTCAAGCGATGGATGACATCCCAAGGCATTCAATACAGCGATGCTCTCGAATTCACGGATAGCAGCGACGATGGAATCGCCGTCAAAGCCTTGTGCGATTTGCGGGAAGGGGATGTTGTTGCGAACATCCCTAAATCTACTTGCCTCACCGTCAAGACCAGCAGTGCCTGTTCTATCATAGAAGAAGCCGGTTTGGGTGGATATTTGGGGCTTTCGGTCGCCCTCATGTATGAGAGAAGTTTAGGGAATAACTCTAATTGGGCTGGCTATCTCCAGCTTCTGCCCGATGAAGAGTGCTTACCCTTGCTTTGGTCTCTGGAAAATGTGGACCAGTTTCTTTGTGGAACTGAGCTACACAAGGTATGCCCAGTTCCTTTTTCTCGGCTTCTATTTGGTGTTCTGTTCTGTTAGGGAGTTAAATGTATCGTTAATAGAGAATTAGTTTAGATGGAAATGTCAAGATAAAATGATTATTTCCTGGCTGTTGGATTTGATTACTGAAAGTGTAATGGCTTGGATGGTGAGATAGTACTCTTCTTCAATGTGGATCCACACATGTTGTGTTGGGATTGTTGGAGTGCAACCAAAGTCCCACATTGGCTAGATAAGGGAAAAGTCATGGGTTTATAAGGGGACACTATCTCCATTGGTTGCTCGAGTGTAATTTGGAGAGATATTTGAGAGGAGTATTGTTGGGATTGTTGGAGGAGTATTGTTGGGATTGTTGGAGTGCAACCAAAGTTCCACATTGGCTAGATAAGAGAAAAAACATGAGTTTAGAAGGGGAACACTATCTCCATTGGTATGAGGTCTTTTGGTGGATCCAAAAACAAAGCCATGAGGGCTTATTCCCAAAGTGGACAATATCATACCATTGTGGACATCTGTCGGAGTCGGTTGTCCCTATCAAGTGGTATCAGAGTTGGGTCCCTGACTTAGCCATGTTGGTAGAATCCTTAGGTGTCAAACAAAGAAGGCGAGTCGTCGACATAGTCATAATGAATCCGTGATCGAGCTTCCGGATGCAGTCAACTCCAGTGGGGAGTTGACAACGCAGTGTACTCCAGTGGGGAGTTGTCAGTGTACTTCAGTAAGAAGTCGTCAGTAATTTGCTCGAGTGTAATTCGGAGAGATGACTATTTGAAGGGAGGCTAAAAGTGGTACTTTGTTTGAGGGGAGGATTTTTGGAATTGTTGGAGTGCAACAAAAGTCCCACATTGGCTAGATAAGGGAAAAATCATGAGTTGGGGAATACTATCTCATTGTTATGAGGCATTTTGGTGGAACCAAAAACAAAACCATGGGGGCTCATGCCCAAAGTGGACAATATCATACAATTGTGGAAATCTGTCGGAATCGATTGCCCCTAATAAGTGGTATCAGAGCCGGGCCCCTGACTTAGCCATGTCGGTAGAATCCTCAGGTGTCGTACAAAGAAGGCGAGCCGTCGACATAGTCATATTGAATCCGTGGTCGAGCTTTCGGATGTTGTGTGCACCAGTGGGGAGTTCACAACGCAATGTACTCCAGTGAAGAGTCCTCAGTGTACTCCAGTGGGGAGTCGTCAGTGTACTTCAGTGAGAAGCCGTCAGTAATTTGCTCGAGTGTAATTCGGAGGGATGACTATTTGAAGGGAGGCTCAAAGTGGTACTTTTTTTTGAGGGGAGGATTGTTGGGATTGTTAGTGTGCAATCAAAGTCTCACGTTGGCTAGATAAGGGGAAAATCATCGGTTTATAGGGGGGGACACTATCTCCATTGGTATGGCGCATTTTGGTGGGAACCAAAAACAAAGCCAATGAGAGTTTATGACTGAAGTGGACAATATCATACCATTGTGGAGAACTGTCGGAATTAGTGGTCCCTAACATGTTGCAAAGAAAAGTCATGCAATATAAGGATCAACTAGGAAGCCAACTGAAAGGATGTCTAATGATGAATGGTAACTTGAACAAGATTAAAGGTTCTGATTGATACTTCGGCAGCTGTTGAACATCTAGTTCATGAGGATAATTATATTATAACACTTCCCTTTGGTCTTGGAATATAATATGATCCATTTGACTTTGTAATTAATTCGAAATGTGGTGCCAAGAATTGTTTGGGTCTTAAATCTACCTCTAGGCTTCCCACGAATAATAATAGGGTTGTAAACACTCTATAGTGTCTTTGGAGATGCAAGAATTAAGAAACGAGAAATCTTGGATATAATTAAGTTATTGAATAGGTTGGACGAGGAGGGTGCTTTGAGTGAGGAGTCGAGGGAGGAGTATATCAAGGTGAAAGTGGGATTATAAGGAGCTTGTTTGGATGGAGGAAAACATGTTGGAAACTGAAAGCCAAGGACTTTAAAGTGTGTCAGAGGGTGACTACAATACTTTCTATTTTCAAAATATTGGGAGTGGGAGGATTGTAAAGTGGATCACACTGACCGAAGTGAAACTTATAAAATCATAGGGACCAAATTTGTTAATTTTTATATATAATTGCTGTAGATAATATTTATTTATTATTTTTATTAATTGTGTCTTGCTTTACTCACAATGTCGCCTCTTGTGGGGAGGTTATTAAGAGACTTGTTGCCCTAGGGCGTGCTTTGTATTTTCAAAACACATCTGTGAACCAAAACCTTTGGCACAATTTTTATCTAGGAAGCTTCAATTAACTGTCATAGACCTTCTTTATATCAAGCTTAAACAGCACCCCTTCTTTCGTCCTACATCTCCACTCTCATTGTCAATGTCCACATCATTAACTAGGGAAATATTCTGATTCTGACTCAAGAAGATCTCAACAATCGAGTTCTTGCTTCTTTGGGCTACGAGAAGGTGATGAAAGGAGCTGTCAATACTCTATTTAAACTTGTATTCTAGGCCAAGAAGGGTATATTCCTTTGTGGTCAAGGACTGAAGAGTGATAAGGCTATCTTTCCTAGGGGATCTATCAGCTGGAAAGAGAGGGATGTATATGACAACATTCAAAAATCCCAATTGATTTCCACACCACTCAGAATGGCCTTCTAATTAACAAAAGAAAATATTTGAGGTCGTAAGGTTTTATTTTCACTCCTGCCCAAGTATTCGGGTTCATTATTTTGTTATTTTTAGTTATGAAGTTTTCAAGAAGCAATGATGTAGTGACTTTTAAGTGTAATCTATGTAGATGATTTCTCTTACACTTGTAGGCAGACGGTGAAAGAAGACAAGACTCTTATGTATGAGGACTGGAAAGAGAATATCCTGCCTCTTATGGTGTCTGCACCTTTGATGTTCAGTCCAGAATTTTTTGGCGTTGAACAATATTTTTCCGTGAGGAGCCTCATTTCTTCTAGATCTTTTGAGATCGATGACTTTCATGGGTTTGGGATGGTCCCTTTGGCAGATCTGTAAGTTAATCCTTCTTCTAGATTGTTACCAATATATATGTACTTACCATTTTCAGTTCCGTGCATTAAATATATGGGCTCTAGAGTGAGGGAGAGGTACTAGAGTTCTCAAAAATCTGGCCAAATGGTAACTATTTTTCCTACACTAAATGATACCAAAGAGAGTTGCTTTGAGTCGTATCATAGGACTTGTTTCTCAAAAAGGATCCACTTAAAAGTGGTATATGTAGAGCTGCTTATGACTTTCTTTTTTTTCATATCATTTCTCTTGACATGTGTCTCTATCTCATCTTGAATTAGATATTGGAGATGCTTTGAGATTAAGGGACCACTTATGAATTGTTTCTACCTGTTGAATTATCAATAACAATTTAAATTCTATTTGATCCTCAAACCCTTCTTTTATAAGAAAGGGAAACATATTGAGCTCTCTTTGATCCTCGAACCCTATATATTGAAATCTCTTTGATCCTTGAACTTCTCTATTTTTATTGTGTGCGTTTGTGTTTTTTTTTTTAATTGTACTTTGAATATTTTGTTTGCGTCTGAACTTGCATAATAATATATTTTGATCCTTGTGATTAATGTTTCGTATATATTTACATTATTTTAAGGGTGCCAGTGTCCGAACCCTAATGCTAGATTTAATACATATGGCTTAAAATCATAATTACACTTAACGCCACATGAGTTTTCCGTTAACTGAACCGTAAAAATTTAACCATAAAGGCTATAACTAAGAATTCTATGCAAAGTTCGATAAAAGTTCTTGAATTTGGCATGGTGGGTTAATTTTTTCACTGTAAACTTTTAATTTAATCAAGTTGGACTTTGAACTTATAAATATTATATTTGTCACCTTTTGTAAGGTTTTTATGTGAAGAAATCATTAAAAAAAATATTTCTACATGCATTCAATGGATTACACAATCAAATCTCTATGAAATTGATAGGGTTTTGAAGAAAGATGAAACTGGGGTTGGATTTCTTTTTGTTGAAATTGGTCAGTTTTGGAAGATCCTAAGGGTAAAAATTGAAGTTTTCTCAATTATACAATATAAAACTATAATCGAATAAGTATGATGCTCTAGGAATAAAATAGAATTTGAACATGATAATACTTATGATTCAGTTTCAATCAAGGGCTGAGTTGGTGTTTCCCTCTGTCAAATCAATTAAATCCAGGTTTAACCACAAAACAAATGCTGAGGATGTACACTTTACCTTGGTGTCTTCCGACATCGAGTCTGATAATGGTACTTCTCACCTAAATGATGTACATGCATATGATGTCGGGTCCAAATGCTTGAATCCTCCTCTGGACAAAGTAGGACCGGATTATCTTCTAACCAAGGCAAACAATGCCGATGATACTGACTCAGACTTTTCTGATCTCGGAGGTGATCCTATGACGCTTGAGATGATTATGGTGAAGAATGTCAAAGCTGGCAATGAGGTTAGATTTTAGTCCTTGTTGAATGATCTTGTTTTTTGATTGTGATGTGCCCAGTATTAGATCCTGTCGACCCCTGTTTGTGGTTGGCATGAAATTGTTGAAGTCTGAGGTTGTTTGGAATGAGTTTTTCTTTTCTCCCTGCTACACATTAGGTGTTCAATACATATGGGTCATTGGGAAATGCTGCTTTGCTTCATCGATATGGATTTACGGAGGCAAATAATCCATATGATATTGTGAACATTGATTTGGAGCTGGTTATTGACTGGTGTTCATCTCGATTTTCGAGGCGACACAGTAGAGCAAGAGTATCCTTATGGAGAAAGTTGGAGTACTGTGGTTTTGGCAATGAAAACACCGAATATTTTGAAATATCATATGATGGGGAACCACAAATTGAACTTCTGATATTAACGTACATAATGTTGCTACCAGAGGATGCATTTAATCACTTTGATCTAACTACATCAGTATCAGGGGATTTTAGTGGTGTTATGTTGTGTGAGAAAGGCAAGACCCTCTGGATTGAAGGTTCAAAAATTAACAGGGATGTATTGCTGACTAAAGATGTTCGTAAAGCTCTCGTGTCACTTGCAGATATGCGGGAAAGCTTATATGGTTCAAGTTGTTTAGAAAAAGACCTTGAGACGGTATGTAGCCTACAAGATAGGAAGTTATTTCATTCTTTGATGCTACGTGAAAGTGAGAGGATGATCCTTAAGAAACTCAGATCTTTTGCTGCTGTGGATGGTCTTTTATCAACTACTAAAAGGCGATCCTCTTTGAGGAAGCACACATGAACAAATAATTTAGTATGAGCGCATTCATCTTCAAATTTTACTCGCAATCACTTTTGTTGTTGGACTTTATTATTCATAGTACCTGTCACACTCTCTCTCTTCTCGTATCTCCAACTTTATTCCTGATAGTTGTTATTGGTGATGCTTATTTTTGAGGGAGATTGTATACTCTCAGCCTGGCTATGCTGCAATTTTACCTTGCCTTGGAGCTTGTGCACTGGGGGTTGTCTAGTGTGCTGGTTTGGAATCAAGAATACTGGAGTTTCTTGAAACTATGGTTCTATCCAACTAGAATCAGAAATCCTGAAGTTTATGAAGCATGTGTTTGGTCTGTAGAGTTGAGTTAGTTAGATTGTTGACCCCTGTGTTTGGGGTACATGGTTGGGTTGTTGGGGTGCGGGGTTGGGTTGTACTGGG CGGCAACGGCGGACGCTCAAAGCCATAGCCAAATGACTTCCAGGCGATTGAGAGCTTTCAAGCGATGGATGACATCCCAAGGCATTCAATACAGCGATGCTCTCGAATTCACGGATAGCAGCGACGATGGAATCGCCGTCAAAGCCTTGTGCGATTTGCGGGAAGGGGATGTTGTTGCGAACATCCCTAAATCTACTTGCCTCACCGTCAAGACCAGCAGTGCCTGTTCTATCATAGAAGAAGCCGGTTTGGGTGGATATTTGGGGCTTTCGGTCGCCCTCATGTATGAGAGAAGTTTAGGGAATAACTCTAATTGGGCTGGCTATCTCCAGCTTCTGCCCGATGAAGAGTGCTTACCCTTGCTTTGGTCTCTGGAAAATGTGGACCAGTTTCTTTGTGGAACTGAGCTACACAAGGCAGACGGTGAAAGAAGACAAGACTCTTATGTATGAGGACTGGAAAGAGAATATCCTGCCTCTTATGGTGTCTGCACCTTTGATGTTCAGTCCAGAATTTTTTGGCGTTGAACAATATTTTTCCGTGAGGAGCCTCATTTCTTCTAGATCTTTTGAGATCGATGACTTTCATGGGTTTGGGATGGTCCCTTTGGCAGATCTGTTTAACCACAAAACAAATGCTGAGGATGTACACTTTACCTTGGTGTCTTCCGACATCGAGTCTGATAATGGTACTTCTCACCTAAATGATGTACATGCATATGATGTCGGGTCCAAATGCTTGAATCCTCCTCTGGACAAAGTAGGACCGGATTATCTTCTAACCAAGGCAAACAATGCCGATGATACTGACTCAGACTTTTCTGATCTCGGAGGTGATCCTATGACGCTTGAGATGATTATGGTGAAGAATGTCAAAGCTGGCAATGAGGTGTTCAATACATATGGGTCATTGGGAAATGCTGCTTTGCTTCATCGATATGGATTTACGGAGGCAAATAATCCATATGATATTGTGAACATTGATTTGGAGCTGGTTATTGACTGGTGTTCATCTCGATTTTCGAGGCGACACAGTAGAGCAAGAGTATCCTTATGGAGAAAGTTGGAGTACTGTGGTTTTGGCAATGAAAACACCGAATATTTTGAAATATCATATGATGGGGAACCACAAATTGAACTTCTGATATTAACGTACATAATGTTGCTACCAGAGGATGCATTTAATCACTTTGATCTAACTACATCAGTATCAGGGGATTTTAGTGGTGTTATGTTGTGTGAGAAAGGCAAGACCCTCTGGATTGAAGGTTCAAAAATTAACAGGGATGTATTGCTGACTAAAGATGTTCGTAAAGCTCTCGTGTCACTTGCAGATATGCGGGAAAGCTTATATGGTTCAAGTTGTTTAGAAAAAGACCTTGAGACGGTATGTAGCCTACAAGATAGGAAGTTATTTCATTCTTTGATGCTACGTGAAAGTGAGAGGATGATCCTTAAGAAACTCAGATCTTTTGCTGCTGTGGATGGTCTTTTATCAACTACTAAAAGGCGATCCTCTTTGAGGAAGCACACATGAACAAATAATTTAGTATGAGCGCATTCATCTTCAAATTTTACTCGCAATCACTTTTGTTGTTGGACTTTATTATTCATAGTACCTGTCACACTCTCTCTCTTCTCGTATCTCCAACTTTATTCCTGATAGTTGTTATTGGTGATGCTTATTTTTGAGGGAGATTGTATACTCTCAGCCTGGCTATGCTGCAATTTTACCTTGCCTTGGAGCTTGTGCACTGGGGGTTGTCTAGTGTGCTGGTTTGGAATCAAGAATACTGGAGTTTCTTGAAACTATGGTTCTATCCAACTAGAATCAGAAATCCTGAAGTTTATGAAGCATGTGTTTGGTCTGTAGAGTTGAGTTAGTTAGATTGTTGACCCCTGTGTTTGGGGTACATGGTTGGGTTGTTGGGGTGCGGGGTTGGGTTGTACTGGG ATGAAGAGTGCTTACCCTTGCTTTGGTCTCTGGAAAATGTGGACCAGTTTCTTTGTGGAACTGAGCTACACAAGGCAGACGGTGAAAGAAGACAAGACTCTTATGTATGAGGACTGGAAAGAGAATATCCTGCCTCTTATGGTGTCTGCACCTTTGATGTTCAGTCCAGAATTTTTTGGCGTTGAACAATATTTTTCCGTGAGGAGCCTCATTTCTTCTAGATCTTTTGAGATCGATGACTTTCATGGGTTTGGGATGGTCCCTTTGGCAGATCTGTTTAACCACAAAACAAATGCTGAGGATGTACACTTTACCTTGGTGTCTTCCGACATCGAGTCTGATAATGGTACTTCTCACCTAAATGATGTACATGCATATGATGTCGGGTCCAAATGCTTGAATCCTCCTCTGGACAAAGTAGGACCGGATTATCTTCTAACCAAGGCAAACAATGCCGATGATACTGACTCAGACTTTTCTGATCTCGGAGGTGATCCTATGACGCTTGAGATGATTATGGTGAAGAATGTCAAAGCTGGCAATGAGGTGTTCAATACATATGGGTCATTGGGAAATGCTGCTTTGCTTCATCGATATGGATTTACGGAGGCAAATAATCCATATGATATTGTGAACATTGATTTGGAGCTGGTTATTGACTGGTGTTCATCTCGATTTTCGAGGCGACACAGTAGAGCAAGAGTATCCTTATGGAGAAAGTTGGAGTACTGTGGTTTTGGCAATGAAAACACCGAATATTTTGAAATATCATATGATGGGGAACCACAAATTGAACTTCTGATATTAACGTACATAATGTTGCTACCAGAGGATGCATTTAATCACTTTGATCTAACTACATCAGTATCAGGGGATTTTAGTGGTGTTATGTTGTGTGAGAAAGGCAAGACCCTCTGGATTGAAGGTTCAAAAATTAACAGGGATGTATTGCTGACTAAAGATGTTCGTAAAGCTCTCGTGTCACTTGCAGATATGCGGGAAAGCTTATATGGTTCAAGTTGTTTAGAAAAAGACCTTGAGACGGTATGTAGCCTACAAGATAGGAAGTTATTTCATTCTTTGATGCTACGTGAAAGTGAGAGGATGATCCTTAAGAAACTCAGATCTTTTGCTGCTGTGGATGGTCTTTTATCAACTACTAAAAGGCGATCCTCTTTGAGGAAGCACACATGA MKSAYPCFGLWKMWTSFFVELSYTRQTVKEDKTLMYEDWKENILPLMVSAPLMFSPEFFGVEQYFSVRSLISSRSFEIDDFHGFGMVPLADLFNHKTNAEDVHFTLVSSDIESDNGTSHLNDVHAYDVGSKCLNPPLDKVGPDYLLTKANNADDTDSDFSDLGGDPMTLEMIMVKNVKAGNEVFNTYGSLGNAALLHRYGFTEANNPYDIVNIDLELVIDWCSSRFSRRHSRARVSLWRKLEYCGFGNENTEYFEISYDGEPQIELLILTYIMLLPEDAFNHFDLTTSVSGDFSGVMLCEKGKTLWIEGSKINRDVLLTKDVRKALVSLADMRESLYGSSCLEKDLETVCSLQDRKLFHSLMLRESERMILKKLRSFAAVDGLLSTTKRRSSLRKHT Homology
BLAST of Tan0010681 vs. ExPASy Swiss-Prot
Match: P38222 (Ribosomal lysine N-methyltransferase 3 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=RKM3 PE=1 SV=1) HSP 1 Score: 84.3 bits (207), Expect = 3.0e-15 Identity = 60/190 (31.58%), Postives = 86/190 (45.26%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy Swiss-Prot
Match: Q6INM2 (N-lysine methyltransferase setd6 OS=Xenopus laevis OX=8355 GN=setd6 PE=2 SV=1) HSP 1 Score: 52.4 bits (124), Expect = 1.3e-05 Identity = 23/53 (43.40%), Postives = 31/53 (58.49%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy Swiss-Prot
Match: Q9P6L2 (Ribosomal lysine N-methyltransferase 4 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=set13 PE=3 SV=2) HSP 1 Score: 51.6 bits (122), Expect = 2.2e-05 Identity = 54/198 (27.27%), Postives = 94/198 (47.47%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy Swiss-Prot
Match: Q5ZK17 (N-lysine methyltransferase SETD6 OS=Gallus gallus OX=9031 GN=SETD6 PE=2 SV=2) HSP 1 Score: 51.6 bits (122), Expect = 2.2e-05 Identity = 49/192 (25.52%), Postives = 68/192 (35.42%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy Swiss-Prot
Match: Q803K4 (N-lysine methyltransferase setd6 OS=Danio rerio OX=7955 GN=setd6 PE=2 SV=1) HSP 1 Score: 51.2 bits (121), Expect = 2.8e-05 Identity = 48/199 (24.12%), Postives = 75/199 (37.69%), Query Frame = 0
BLAST of Tan0010681 vs. NCBI nr
Match: KGN54746.1 (hypothetical protein Csa_012492 [Cucumis sativus]) HSP 1 Score: 605.9 bits (1561), Expect = 2.3e-169 Identity = 306/364 (84.07%), Postives = 329/364 (90.38%), Query Frame = 0
BLAST of Tan0010681 vs. NCBI nr
Match: XP_004144347.1 (N-lysine methyltransferase setd6 [Cucumis sativus]) HSP 1 Score: 605.9 bits (1561), Expect = 2.3e-169 Identity = 306/364 (84.07%), Postives = 329/364 (90.38%), Query Frame = 0
BLAST of Tan0010681 vs. NCBI nr
Match: XP_038883531.1 (N-lysine methyltransferase setd6 [Benincasa hispida]) HSP 1 Score: 604.0 bits (1556), Expect = 8.6e-169 Identity = 300/363 (82.64%), Postives = 327/363 (90.08%), Query Frame = 0
BLAST of Tan0010681 vs. NCBI nr
Match: XP_023518873.1 (ribosomal lysine N-methyltransferase 3 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 604.0 bits (1556), Expect = 8.6e-169 Identity = 301/362 (83.15%), Postives = 324/362 (89.50%), Query Frame = 0
BLAST of Tan0010681 vs. NCBI nr
Match: XP_022966283.1 (N-lysine methyltransferase setd6 [Cucurbita maxima]) HSP 1 Score: 603.2 bits (1554), Expect = 1.5e-168 Identity = 300/362 (82.87%), Postives = 327/362 (90.33%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy TrEMBL
Match: A0A0A0L3M9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G442610 PE=4 SV=1) HSP 1 Score: 605.9 bits (1561), Expect = 1.1e-169 Identity = 306/364 (84.07%), Postives = 329/364 (90.38%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy TrEMBL
Match: A0A6J1HRK8 (N-lysine methyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111465992 PE=3 SV=1) HSP 1 Score: 603.2 bits (1554), Expect = 7.1e-169 Identity = 300/362 (82.87%), Postives = 327/362 (90.33%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy TrEMBL
Match: A0A5D3DYS1 (N-lysine methyltransferase setd6 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold403G00830 PE=4 SV=1) HSP 1 Score: 594.0 bits (1530), Expect = 4.3e-166 Identity = 300/364 (82.42%), Postives = 326/364 (89.56%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy TrEMBL
Match: A0A5A7TUJ6 (N-lysine methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold114G00180 PE=3 SV=1) HSP 1 Score: 594.0 bits (1530), Expect = 4.3e-166 Identity = 300/364 (82.42%), Postives = 326/364 (89.56%), Query Frame = 0
BLAST of Tan0010681 vs. ExPASy TrEMBL
Match: A0A1S3CJ47 (N-lysine methyltransferase OS=Cucumis melo OX=3656 GN=LOC103500998 PE=3 SV=1) HSP 1 Score: 594.0 bits (1530), Expect = 4.3e-166 Identity = 300/364 (82.42%), Postives = 326/364 (89.56%), Query Frame = 0
BLAST of Tan0010681 vs. TAIR 10
Match: AT3G56570.1 (SET domain-containing protein ) HSP 1 Score: 325.9 bits (834), Expect = 4.2e-89 Identity = 188/375 (50.13%), Postives = 241/375 (64.27%), Query Frame = 0
BLAST of Tan0010681 vs. TAIR 10
Match: AT3G55080.2 (SET domain-containing protein ) HSP 1 Score: 42.4 bits (98), Expect = 9.3e-04 Identity = 23/67 (34.33%), Postives = 35/67 (52.24%), 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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