
Tan0014646 (gene) Snake gourd 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.ATGAAGCGGGCCTTTTCCTTTTCTCCTCCTGTTGCCGTCGTCGTCTTGGCAATCTCCTTTATCTACTTCTCTACAATCTTCATCTTCATCGACCGCTGGTTCGGCCTCATGTCCTCGCCTGGAATTATGAACGCCGTCGTTTTCACCGCCGTGGCTCTCATGTGCATCGCCAATTACGCCCTCGCTATCTTTACGGATCCCGGTCGGGTCCCTTCGACCTATATGCCTGATATCGAGGGTTTCGAAAACCCTATTCACGAGATCAAGCGTAAGGTACCCAATGCTCGGTGTTGCCTTTTAATTGCTTTTGCTTTTATCTTCTCCTCTGTTTGATTTGGTTATTACAATCTTTCACGGAGTTAAACTTTTTTTATTTGTGGTAATAAGAATCTTTAATACAACGTTGCTGTAGATCTTATTCCCTTGATCTCATTCTGGATGAGTTTTGGAATTGAAGTTGAAAAAATTTAGTCAGTGCCATGGCGCATTAATAATTTGGTCCCTTTTTCTAGGTGAGTGTTGTTACCTTTCTATTTGTGTCGACCAATTAGTCGCCATCTATGAGACCTCTTGATCTACAAATTATATAAAGGCTGAAGAATTCGTAGAGCTTGATTAGTGTTTAGGAGATTCATTTTCATATAAACAGAACTAATTGATGAAGGAAATTTAATCAAATCTTTGATCATGTGTTCGTTTTCATTATTATGAGCCTTTGAAGAATTGGATCTTGTCGATTATATTGCAGGGAGGTGATCTGAGATACTGCCAAAAGTGTTCTCAATATAAGCCTCCTCGTGCACATCATTGCCGAGTTTGCAAAAGATGCATTTTGCGAATGGTATGTGTCGTCTTTACATAGTTTCGGTTTCCTATCCCTTAGATTTTTGCGTAGATGTTGTGCTAAATGTTGTTTATAAAATGTAAAGGACCACCATTGCATTTGGATAAATAATTGCGTCGGCCATGAAAACTATAAGGTGTTCTTCGTGTTTGTCGTGTATGCTGTAGTCTCATGTATCTACTCCCTGGTAAGTCATTTGATGCAATGTTATTTAGTCTCTATTTACTCAATTCTATCAATTGATTATTTTTTAGTTTCTTTTCTGGCTAATTCTTTGCTGTGTGCTTTCCTCATAGTTGCAGTGTTAAAAATTTTGTTTTCATTGTTTGCTGCATCTTCAGGTATTACTCATTGGCAGTCTTACAATTGATCCTTCTAAGGATGAGCAGCAAGTTGGAGGCTCTTTTAGGACTGTATATGTAAATACATACTCCATCCTTGCTTTCTTTTTCCTTTTGAAACTCTTCATGCTTGTCTTTCTATCACTCGGTGTTTGGTTTAAATTAGTTGTTATGCTCATTGTCACTGATACAGATTGTTGCTGGGCTGTTGCTATTCCCTTTAAGTATGGCCTTAAGTGTTCTTTTAGGCTGGCACATTTACCTAATTTTGCACAACAAGACTACAATAGAGGTTAGTTTTTAAGGGTTTTGGTTCTTGTCAGTTTGTTTGCTAGTGGATTTCTAATTCAGGCAGATTTACTCAGCATTTTGTTTGATTTTTAGTATCATGAAGGAGTAAGAGCTATGTGGCTTGCGGAGAAAGGTGGGAATGTGTACTCACATCCATATGATCTCGGTGCCTTTGAGAATCTTACCACGGTACTTACTCCACTTTGTTTCCCTTCCTCTCTTTTTCCTTGTTTTTAGGTGAGAGAAACCGTTGATGTTCTAAAATGACATAGGGTCATTTATCATATTCAATGTTTGTTTTGACACCTCAAAAAGGAAATGCTTGACACTTATTCATCTCTATGGTGGATCATGGAGGATGGAAATTATCATGAAGTGTGGAAAATGTAATGTAATAGTCGCATAATGTATTTACTTTCGTTTTTTTGGATTCGAACATGACATTTATTAGACTGTGCAACCTAGAATGCATTCATCCATTGTCAGGTAGCTTTCGTGGACACATGAAATTTAATAGACAGTGCTGCTTAAATGTAGTGCTAGCCGGTCACCTTCTAACGTTTTCTGGTTATTTTAACGCAATATGTCACAAATATAGCTGGGTGTTGGACTGCCCAGAATTGTCGTACCTGTATGCTGTCTTAAGCTGTTCTATCTCATTACAACAGATTCTTGGCCCAAATATATTAAGCTGGATATGCCCAATGTCGAGACATAAAGGCACTGGTCTTCGCTTCCGAACGGCCTATGACAAATCTACTAGTGCATCAATGTGAAAGGAAAATTTCATTTCTACCCTTGACGTTTGTTTTAGAAGAACAAGCTATGCAGCTCTCAGTGACCATCAAGGATTCATATTTACTGAGCTCTTCAGCAGAGTGGTGGTTCTTTGAAGAACCCAAATCTCAGACAGCATTCTAACTGTTGAAATAGATATACGTTGCCATGACTGCCGTGACTCGTTGGAGAGTTACTGAGATTGTCTATCGTAACCTTTTCCTTGTCGACATCAAGAGCTCAGCGAATCTGTTTCGGGTATGATTTATCCTTTCCCGTTTGTTTTTAGAAAACTTATTTGAAGTTAGGGTCTGCGGAACGACAAAGACGCAGTTTATAGATTAATGTAGGAAAGAGAGATCCCAGATGTGGGCGGGTGTTTGTGTACATGAGTTCATTCAACACGCTAACAAATTGTTTTGTGTAGTTGTAGCTCTGTAACTTGTAACAACAAAAATGGAGGTAAATTACAATTAAGATAAATGTCATCTTTTGTATTTTTCTTTGAAATCTTTCATTTGTGGTATTATATACTGCTTAGTTTTTACTTGTTTCTTCATCTAATGCTTCTTTGTGATTGAAGCTAATGCTCTCCATATCCAAAATTCTCAATTTTCTTTGTCAATTTTTATTTCTGAATAGAAATGGAGGATTCATGGAGCCAGAATCCACCACATCAAGGACATTCACATAGTATCTTTTTTTTTAAAAAAGTGCTTTTTCCTTCCTTTATTAATCATAAGATGAGACTTTGTTTCTGTTATTTCCTTTTTTGAAAAGGCATCTTTTCTTTTTTATATTCGCATTTTAATCTTCTTATTGCTTTGGTTGGTTGAATATGTTATTGAAAAGTTCACTTTGTTCTTATATACGAAAAGAGAGTATTATTGTTGTCATAGTATATTATCAAGTTTCCTAAAAATCAATAATTTTAAAGAGGGCTTCATATTTTTTCTTTTAATCTGAGATTTATAGAATGAGATGGACTTATATGACGTTGATTTTCCAATGCTTCCTCAAAAGTTTCTGGCGAAAAAAAGCTCCTCATGGTTCGCAGATAAGTAATGGATTAGTCGATAAATCATGAAAAATTTTATAAACAGAATATTTAAAACCAACTTATAATATTTCGAGTGAAAAAAAAAACGTTGGAGTTGAACTATAAAATATCCAAAAATCCAGCTATGATTATATTAAATCAATGCACAACTGTTGGTTATGCCAAATGGATATAATAATTGACTTCTATAAATAATTAAACAAGTTGTTGACTCAAAATATATATATATATATATATATATATATAGTTCAATAACATGTGGTGTGAAACTATCACGGACTCTAGTGGTCCAGACTACTTAAAATGAAATAGTTTCAATTAGTTGAGAGACGCTTAGATATAAAAAGAAAAGGTGAAACTGGAGATTAGAATCCTTAACCTTTTGCAAATGATGATTATATATGTATATATTTTATTACTAGGGAGTGAGGACTCAAAACTCAAATTATTTAGGTTCGTTTGATAACCATTGGATTTTTTGTTTTTAGTTTTTAAAAATTAAGCCTATAAATACTACTCTCACCTAAGAATTTACTTGTTTTGCTATTTAAATTTTACATATGTTTTTAGAAACCATCTTGAAAACTAAAAAAAAAAAAAAAAAAAAAGTAGTTTTCAAAAACTTATTTTTGTTTTTAGATTTTAGTTAAGAATTCAAATGCTCCCTTAAGAGAGATGAAAACCATTGTAAAAAAATTAGAAAGAAGAATAAACTTAATTTTTAAAAACCAAAAACAAAAAATCAAATAGTTTTCATATGAGCCAATTAATATTTTTACTCATTAAACTATATTCAAATTAGGGAGGACTATTAAACACACTCTACTTTAGATTTCTCATTAAACTATAGTCTATTATATATTCTACAAAAACAGATATTTCAAGAAGCGAAATAAAATTATGCAATTTGAACATCCCTACATTATCGGTAAAGTAGCTTTCAGGAGTTATCCTTTTAAAAAATACTTGGAAGAAAGAGAAAGAAGAAAGTGATGAGAGCGGAATGGGATTGGGGGAGACGAAAGAAGCAACTTCCTCGTGCCACCCACGTGATCTCGAAATGGGCGTGTCTGAATCTCTCTCAGTGGCGCGCACCAATAAGACCCAACTTTGTTGCCCATTTTCTCCCCTTCTCTGGCTTTGATTTGAGTTGAAAAGACCGCTGAAACACCATCCGCCCAACTGTTCTACCTTCTATGGCTCCTATTTTGGAGTTCTTTCAGCTTTCTGTGCGCCATAATATCAACAACTCCCGCAGATTTTCGACCTCTTAAATACCCAGAACCTGCCTCTTCTTTCTCCAGTGAAATTGGATTTGGGTTTGTGTCTCTGATTCTGATCGATTTTCTCGTCTTCCTGATTGAGATGGAGGAGAAGGAGCAGAACCCATCTGAGATCAACAGGTTTGACATCTGGGTTTTAAAGATTCTTGTTGTTAACCGACTCTTTTATCAGTTTTGGAATCTGTTTATGTACTGTTTAAAGACTGTTTCCTTTTTCTTTCTTTTCTTCTTTTTTCCCTTTTCGTTTGATGGAGTGAAGATTTCTAGTAGGTCTGCCTTTTTATGTTGGTCTAATTATGAAATGGTGGATGGGGATTGAGATGTAGTTTCGTTATTATTGCTATTATTTGATTAGGAGATAAAGAACAATCTTAATCCACGCTAATATTTATTTAAGGAAGTCTGATTTCTTTCCTTTTTTGAAAAGTTTAAATCTATTGATGGGGTCTGTGGTTTTGCCTTACTGATGTGGATCAACTTGTTAGCGGTTTTAGTTGTTTTGAATACAAATTGGGAAATTACGAGATTGAAAAGGTATACTATTGGATTTCTGTGAGTTACGAGACTCTTTTGGAAAAGAGATTGCGTTTAGTCAAGGAAACCGGCTGTATCCTTTGAAAATGTTCTTCTAAGACCTTGTTTTCGTGTTGTTGGTTGCTGTAAATCTTCTGTTGATCAAGCTCTGTCCAAAGATGGTATTGTTTCCACTGTTATTCTGATATTCTCTTTTAGAAGTAATAATGAATCGGAGTGATGAAGGGCTAAATCTCCATGATTCGTGGTACCAGGGCCACTTTTATATTTCATTGGATTCCACTGGTTCCCCAGCTTTAGAATTTCCCTTAAGCCTATATTTATGAAGTAATTTTGTGAGAGTTTGAAGCATTATCTCTTGTGGTTTCTGTCTTGCATCCAATATTAATGGAGTATTGCAGCTTTTTTCCCGTCTGTTTTCTGATGAATTATGTTGTTTTTTCCAAATATTTAGCAGCTTCTATGTGATTTCGAAGCTCCAGACCAACCCTTTCGACTTGGGCAAGAAAAGAAAGCTGCCAGCTGAACATTTGGGCTTGCCTTCACCAAAACATAAACACTGCAGTGAAGGCTTCCCTTCCAATTCTGCCTTCCTGTATGGTGGCCTACCCGAAACCGAGCGCATGAATGTACAATTCATAAAGGGGAATACGAATGTAAGGTGTTTTGACGATGAGTCGATGCCTGAATCGGCAAAAGATAGCAATAGCTTCAGCGAAGAGTCTGACTCTGCGACATCGGTATTTCGTGGAGCAAAATTTGAACTGAACCAGGCTGTAAATTGCACATATGATAGTTCATCCACCCAATCTATGAGTTTTGGTGGGGCTAGTTCTGAAAGCACCCATTTCTCTGTTGAAAGTTCCACAGCAATGGAATCGAGCTCTACCGAACAGGACGCAGCGTTTGCAAGCGGGGAGAACAGAATAGAAACAATCCACAAACTTCAGGAACAACTGCTAGAATTGGATAGCCATGAAGATTATGATTGTGCAGAATATGTAAATGATGACCTTGAGCAATGCACAGACCAGGAACTTGAGGATCTTTTCCATTCGAACCCGAATACATATATTCTTTCATCAGGAAGATGGACTGTAAACCATGGTAGTAAAGACATCATTCATAAGAATTTTTTATCAGTTGAATTAAATTGGTTTTTTTTTCCATGTGCATTCATATTTTGGCATTTACTAAATCAGACTCATTCTCTTAATGCAGAGTCTCAATCAAGTGGTAGAACCCCAACGATCGATCAAGAATTCGAGCAGTACTTCTCCATGCTGATGCTGTAA ATGAAGCGGGCCTTTTCCTTTTCTCCTCCTGTTGCCGTCGTCGTCTTGGCAATCTCCTTTATCTACTTCTCTACAATCTTCATCTTCATCGACCGCTGGTTCGGCCTCATGTCCTCGCCTGGAATTATGAACGCCGTCGTTTTCACCGCCGTGGCTCTCATGTGCATCGCCAATTACGCCCTCGCTATCTTTACGGATCCCGGTCGGGTCCCTTCGACCTATATGCCTGATATCGAGGGTTTCGAAAACCCTATTCACGAGATCAAGCGTAAGGGAGGTGATCTGAGATACTGCCAAAAGTGTTCTCAATATAAGCCTCCTCGTGCACATCATTGCCGAGTTTGCAAAAGATGCATTTTGCGAATGGACCACCATTGCATTTGGATAAATAATTGCGTCGGCCATGAAAACTATAAGGTGTTCTTCGTGTTTGTCGTGTATGCTGTAGTCTCATGTATCTACTCCCTGGTATTACTCATTGGCAGTCTTACAATTGATCCTTCTAAGGATGAGCAGCAAGTTGGAGGCTCTTTTAGGACTGTATATATTGTTGCTGGGCTGTTGCTATTCCCTTTAAGTATGGCCTTAAGTGTTCTTTTAGGCTGGCACATTTACCTAATTTTGCACAACAAGACTACAATAGAGTATCATGAAGGAGTAAGAGCTATGTGGCTTGCGGAGAAAGGTGGGAATGTGTACTCACATCCATATGATCTCGGTGCCTTTGAGAATCTTACCACGGTACTTACTCCACTTTGTTTCCCTTCCTCTCTTTTTCCTTCCGGTCACCTTCTAACGTTTTCTGGTTATTTTAACGCAATATGTCACAAATATAGCTGGGTGTTGGACTGCCCAGAATTGTCGTACCTATTGTCTATCGTAACCTTTTCCTTGTCGACATCAAGAGCTCAGCGAATCTGTTTCGGCTTTCTGTGCGCCATAATATCAACAACTCCCGCAGATTTTCGACCTCTTAAATACCCAGAACCTGCCTCTTCTTTCTCCAGTGAAATTGGATTTGGGTTTGTGTCTCTGATTCTGATCGATTTTCTCGTCTTCCTGATTGAGATGGAGGAGAAGGAGCAGAACCCATCTGAGATCAACAGCTTCTATGTGATTTCGAAGCTCCAGACCAACCCTTTCGACTTGGGCAAGAAAAGAAAGCTGCCAGCTGAACATTTGGGCTTGCCTTCACCAAAACATAAACACTGCAGTGAAGGCTTCCCTTCCAATTCTGCCTTCCTGTATGGTGGCCTACCCGAAACCGAGCGCATGAATGTACAATTCATAAAGGGGAATACGAATGTAAGGTGTTTTGACGATGAGTCGATGCCTGAATCGGCAAAAGATAGCAATAGCTTCAGCGAAGAGTCTGACTCTGCGACATCGGTATTTCGTGGAGCAAAATTTGAACTGAACCAGGCTGTAAATTGCACATATGATAGTTCATCCACCCAATCTATGAGTTTTGGTGGGGCTAGTTCTGAAAGCACCCATTTCTCTGTTGAAAGTTCCACAGCAATGGAATCGAGCTCTACCGAACAGGACGCAGCGTTTGCAAGCGGGGAGAACAGAATAGAAACAATCCACAAACTTCAGGAACAACTGCTAGAATTGGATAGCCATGAAGATTATGATTGTGCAGAATATGTAAATGATGACCTTGAGCAATGCACAGACCAGGAACTTGAGGATCTTTTCCATTCGAACCCGAATACATATATTCTTTCATCAGGAAGATGGACTGTAAACCATGAGTCTCAATCAAGTGGTAGAACCCCAACGATCGATCAAGAATTCGAGCAGTACTTCTCCATGCTGATGCTGTAA ATGAAGCGGGCCTTTTCCTTTTCTCCTCCTGTTGCCGTCGTCGTCTTGGCAATCTCCTTTATCTACTTCTCTACAATCTTCATCTTCATCGACCGCTGGTTCGGCCTCATGTCCTCGCCTGGAATTATGAACGCCGTCGTTTTCACCGCCGTGGCTCTCATGTGCATCGCCAATTACGCCCTCGCTATCTTTACGGATCCCGGTCGGGTCCCTTCGACCTATATGCCTGATATCGAGGGTTTCGAAAACCCTATTCACGAGATCAAGCGTAAGGGAGGTGATCTGAGATACTGCCAAAAGTGTTCTCAATATAAGCCTCCTCGTGCACATCATTGCCGAGTTTGCAAAAGATGCATTTTGCGAATGGACCACCATTGCATTTGGATAAATAATTGCGTCGGCCATGAAAACTATAAGGTGTTCTTCGTGTTTGTCGTGTATGCTGTAGTCTCATGTATCTACTCCCTGGTATTACTCATTGGCAGTCTTACAATTGATCCTTCTAAGGATGAGCAGCAAGTTGGAGGCTCTTTTAGGACTGTATATATTGTTGCTGGGCTGTTGCTATTCCCTTTAAGTATGGCCTTAAGTGTTCTTTTAGGCTGGCACATTTACCTAATTTTGCACAACAAGACTACAATAGAGTATCATGAAGGAGTAAGAGCTATGTGGCTTGCGGAGAAAGGTGGGAATGTGTACTCACATCCATATGATCTCGGTGCCTTTGAGAATCTTACCACGGTACTTACTCCACTTTGTTTCCCTTCCTCTCTTTTTCCTTCCGGTCACCTTCTAACGTTTTCTGGTTATTTTAACGCAATATGTCACAAATATAGCTGGGTGTTGGACTGCCCAGAATTGTCGTACCTATTGTCTATCGTAACCTTTTCCTTGTCGACATCAAGAGCTCAGCGAATCTGTTTCGGCTTTCTGTGCGCCATAATATCAACAACTCCCGCAGATTTTCGACCTCTTAAATACCCAGAACCTGCCTCTTCTTTCTCCAGTGAAATTGGATTTGGGTTTGTGTCTCTGATTCTGATCGATTTTCTCGTCTTCCTGATTGAGATGGAGGAGAAGGAGCAGAACCCATCTGAGATCAACAGCTTCTATGTGATTTCGAAGCTCCAGACCAACCCTTTCGACTTGGGCAAGAAAAGAAAGCTGCCAGCTGAACATTTGGGCTTGCCTTCACCAAAACATAAACACTGCAGTGAAGGCTTCCCTTCCAATTCTGCCTTCCTGTATGGTGGCCTACCCGAAACCGAGCGCATGAATGTACAATTCATAAAGGGGAATACGAATGTAAGGTGTTTTGACGATGAGTCGATGCCTGAATCGGCAAAAGATAGCAATAGCTTCAGCGAAGAGTCTGACTCTGCGACATCGGTATTTCGTGGAGCAAAATTTGAACTGAACCAGGCTGTAAATTGCACATATGATAGTTCATCCACCCAATCTATGAGTTTTGGTGGGGCTAGTTCTGAAAGCACCCATTTCTCTGTTGAAAGTTCCACAGCAATGGAATCGAGCTCTACCGAACAGGACGCAGCGTTTGCAAGCGGGGAGAACAGAATAGAAACAATCCACAAACTTCAGGAACAACTGCTAGAATTGGATAGCCATGAAGATTATGATTGTGCAGAATATGTAAATGATGACCTTGAGCAATGCACAGACCAGGAACTTGAGGATCTTTTCCATTCGAACCCGAATACATATATTCTTTCATCAGGAAGATGGACTGTAAACCATGAGTCTCAATCAAGTGGTAGAACCCCAACGATCGATCAAGAATTCGAGCAGTACTTCTCCATGCTGATGCTGTAA MKRAFSFSPPVAVVVLAISFIYFSTIFIFIDRWFGLMSSPGIMNAVVFTAVALMCIANYALAIFTDPGRVPSTYMPDIEGFENPIHEIKRKGGDLRYCQKCSQYKPPRAHHCRVCKRCILRMDHHCIWINNCVGHENYKVFFVFVVYAVVSCIYSLVLLIGSLTIDPSKDEQQVGGSFRTVYIVAGLLLFPLSMALSVLLGWHIYLILHNKTTIEYHEGVRAMWLAEKGGNVYSHPYDLGAFENLTTVLTPLCFPSSLFPSGHLLTFSGYFNAICHKYSWVLDCPELSYLLSIVTFSLSTSRAQRICFGFLCAIISTTPADFRPLKYPEPASSFSSEIGFGFVSLILIDFLVFLIEMEEKEQNPSEINSFYVISKLQTNPFDLGKKRKLPAEHLGLPSPKHKHCSEGFPSNSAFLYGGLPETERMNVQFIKGNTNVRCFDDESMPESAKDSNSFSEESDSATSVFRGAKFELNQAVNCTYDSSSTQSMSFGGASSESTHFSVESSTAMESSSTEQDAAFASGENRIETIHKLQEQLLELDSHEDYDCAEYVNDDLEQCTDQELEDLFHSNPNTYILSSGRWTVNHESQSSGRTPTIDQEFEQYFSMLML Homology
BLAST of Tan0014646 vs. ExPASy Swiss-Prot
Match: Q93VV0 (Probable protein S-acyltransferase 16 OS=Arabidopsis thaliana OX=3702 GN=PAT16 PE=2 SV=1) HSP 1 Score: 405.2 bits (1040), Expect = 1.3e-111 Identity = 182/250 (72.80%), Postives = 214/250 (85.60%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy Swiss-Prot
Match: Q500Z2 (Probable protein S-acyltransferase 15 OS=Arabidopsis thaliana OX=3702 GN=PAT15 PE=2 SV=1) HSP 1 Score: 232.6 bits (592), Expect = 1.1e-59 Identity = 111/236 (47.03%), Postives = 154/236 (65.25%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy Swiss-Prot
Match: J9VJ99 (Palmitoyltransferase PFA4 OS=Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) OX=235443 GN=PFA4 PE=1 SV=2) HSP 1 Score: 134.4 bits (337), Expect = 4.3e-30 Identity = 84/244 (34.43%), Postives = 126/244 (51.64%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy Swiss-Prot
Match: P0CS69 (Palmitoyltransferase PFA4 OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) OX=283643 GN=PFA4 PE=3 SV=1) HSP 1 Score: 133.3 bits (334), Expect = 9.5e-30 Identity = 79/243 (32.51%), Postives = 122/243 (50.21%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy Swiss-Prot
Match: P0CS68 (Palmitoyltransferase PFA4 OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) OX=214684 GN=PFA4 PE=3 SV=2) HSP 1 Score: 133.3 bits (334), Expect = 9.5e-30 Identity = 79/243 (32.51%), Postives = 122/243 (50.21%), Query Frame = 0
BLAST of Tan0014646 vs. NCBI nr
Match: KAF7845471.1 (putative protein S-acyltransferase 16 [Senna tora]) HSP 1 Score: 515.8 bits (1327), Expect = 5.2e-142 Identity = 298/628 (47.45%), Postives = 377/628 (60.03%), Query Frame = 0
BLAST of Tan0014646 vs. NCBI nr
Match: RXH80500.1 (hypothetical protein DVH24_004414 [Malus domestica]) HSP 1 Score: 504.6 bits (1298), Expect = 1.2e-138 Identity = 315/668 (47.16%), Postives = 384/668 (57.49%), Query Frame = 0
BLAST of Tan0014646 vs. NCBI nr
Match: KAF9679934.1 (hypothetical protein SADUNF_Sadunf06G0067400 [Salix dunnii]) HSP 1 Score: 498.4 bits (1282), Expect = 8.6e-137 Identity = 284/589 (48.22%), Postives = 353/589 (59.93%), Query Frame = 0
BLAST of Tan0014646 vs. NCBI nr
Match: XP_023540030.1 (probable protein S-acyltransferase 16 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 498.4 bits (1282), Expect = 8.6e-137 Identity = 240/251 (95.62%), Postives = 245/251 (97.61%), Query Frame = 0
BLAST of Tan0014646 vs. NCBI nr
Match: XP_022948399.1 (probable protein S-acyltransferase 16 [Cucurbita moschata]) HSP 1 Score: 497.3 bits (1279), Expect = 1.9e-136 Identity = 239/251 (95.22%), Postives = 245/251 (97.61%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy TrEMBL
Match: A0A498IBD8 (Laccase OS=Malus domestica OX=3750 GN=DVH24_004414 PE=3 SV=1) HSP 1 Score: 504.6 bits (1298), Expect = 5.8e-139 Identity = 315/668 (47.16%), Postives = 384/668 (57.49%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy TrEMBL
Match: A0A6J1G9S7 (S-acyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111452088 PE=3 SV=1) HSP 1 Score: 497.3 bits (1279), Expect = 9.2e-137 Identity = 239/251 (95.22%), Postives = 245/251 (97.61%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy TrEMBL
Match: A0A6J1I245 (S-acyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111470200 PE=3 SV=1) HSP 1 Score: 493.0 bits (1268), Expect = 1.7e-135 Identity = 238/251 (94.82%), Postives = 243/251 (96.81%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy TrEMBL
Match: A0A0A0LA52 (S-acyltransferase OS=Cucumis sativus OX=3659 GN=Csa_3G734130 PE=3 SV=1) HSP 1 Score: 489.2 bits (1258), Expect = 2.5e-134 Identity = 234/254 (92.13%), Postives = 243/254 (95.67%), Query Frame = 0
BLAST of Tan0014646 vs. ExPASy TrEMBL
Match: A0A5A7TSA0 (S-acyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold352G001590 PE=3 SV=1) HSP 1 Score: 485.7 bits (1249), Expect = 2.8e-133 Identity = 233/254 (91.73%), Postives = 241/254 (94.88%), Query Frame = 0
BLAST of Tan0014646 vs. TAIR 10
Match: AT3G09320.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 405.2 bits (1040), Expect = 9.2e-113 Identity = 182/250 (72.80%), Postives = 214/250 (85.60%), Query Frame = 0
BLAST of Tan0014646 vs. TAIR 10
Match: AT5G04270.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 232.6 bits (592), Expect = 8.2e-61 Identity = 111/236 (47.03%), Postives = 154/236 (65.25%), Query Frame = 0
BLAST of Tan0014646 vs. TAIR 10
Match: AT4G22750.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 122.9 bits (307), Expect = 9.1e-28 Identity = 83/254 (32.68%), Postives = 124/254 (48.82%), Query Frame = 0
BLAST of Tan0014646 vs. TAIR 10
Match: AT4G22750.2 (DHHC-type zinc finger family protein ) HSP 1 Score: 122.9 bits (307), Expect = 9.1e-28 Identity = 76/220 (34.55%), Postives = 110/220 (50.00%), Query Frame = 0
BLAST of Tan0014646 vs. TAIR 10
Match: AT4G22753.2 (sterol 4-alpha methyl oxidase 1-3 ) HSP 1 Score: 122.9 bits (307), Expect = 9.1e-28 Identity = 83/254 (32.68%), Postives = 124/254 (48.82%), 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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