
Tan0001427 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGTCGACCATTTTCTCTTCCACTTTGCCCTTCTTCAAACTCCCCCCACCATTCTCCTCTGCTAAAGTAACCGCCAGCTTCCTAGCATCTCCACCCACTCCCAGACATTCCTTTTCTCAACAACTAGGGTTCCCCCTCAGAGCCCCTGCATTTTCTCCGATCAAGTCAAATGGGTCTGTCTCATCTTCTCAACTGAGCGACCAATTCGATGGCCAAGGCTTAAAAGTTCGAAGCTGGTAGGCATTTTTGTTTCCTTTATAATTTTTAGTTCTGTCGTTTCAATTCTTAATCGATCCACTTTTCCTGTCTCGCAGCATTTGGAAGTGGAGGGGTTATTCTATTCGCTACCAATGTTCAGGAGACGATGGCCCTGCATTGATTCTGATTCATGGTTTTGGAGCAAATAGGTATACGTTCTTCAAATTTTGCTTCTCATACCACTAACTATAGGTTTTGCCGACGCAAATTTCCGAAACTAGAAAACGTCGTTAGTATGTATTCGGTTATTTGTTCCTAATCGCGCATGTTTTATTGTCCTGGATGAGGAACTTAGGCATTTGTCTCAACGAGGAAAATTATTAAACCGTGGAGAATACTCGCACAAGGTTCTTTATGAATATGGATTCAAATTATTTGTCGCTGTTACTGTTTTTTGTTGGGAAACTGCTGACTGGCTCCACGTCCATCTGCCGGACCTTTGCAAATAGAAAAACTAAAGACTGAGCATTCACTAGTGCTTGCCAAACCCCTTTCGTTGTCTTATTTAGACCAAAGCCATTGTACAGCAAAACCAAACAAGGAAGAGTTACGCTCCTTAACATAGTTTCAAGCCACTTATCTATGGTAGGGGAGTAATAATTACTCTATTGTTTTTTTTGGGAGTTCATAATTACTCTTGCTATAATATTTAACTTGTTAGGAAAATTGATGTGGTGCTTAGGGGCTCGTGTTATCCAATGATTAGCTGAAGGCAAGTACTTTTTGGAGGTTGGTCTTCCACCTTAACCAATGATAGATTTTCTCGAGTACCCAATTGAGTTACTGATTTCCTGTTCGCGATGGTTGGATACTGTTGATGTGGGGTAGGTTAGGTCGGGCAATTTACCAACTAAAAATCTGCAATAATACTTACTCCATCGTACTAGAAAAAGAAACAGGTACTAGGGCCACCAACTATTACTCGATTATAGAACAATCTTCAAATAACTGTCTGCATTCTAGGATTAAAAGTATGTGTCTATCTATTATGGTAATTTTTTTTGAAAGGAAAATGAAACTTGTCATTTATAAAATGAAAAGAGACTAATTCTTAAATACAAAGAAACAAAATAAACTATGAAAACAATAAAAAAACAATAAAAAAGCATAAAATGCAAGCTAGAAAGGAAAAATAAAGGCATTCCAGTTAAAACATAAGTCTTGAAAAATCAGCAAAGTGTTTGGAAGGAGAGTACATGAAGAAGCCTTTATGCAAGCTGACCAAAAACAATCTGACCAAGAAAGAAACGTGCTTTGAAAATCCTCTTATTTCTTTCAAACCAAATTTCAGACAAGATACTGTTTACTATATTATACCAAATTACTTTTGATTTTGCCGACAAAGAAGGACCAACCAATGCTTGACGAACATTATCCTTAAAATTGTTGAAGAATTCCTACTAAATATTGAAGATGAAAAATAATTTCTGTTGATATTATTAAATTTACCATGACCTATTAGCTTAAACTTTTGAGTTAATTAGTCATTTAACATGGTATCAGAGCAGGAGGTCTTGTGTTCGAGTCCCTGTCAAGTCGTTTTCTCTCAATTAATATTGATTTCCACTTCAAATTTTCAAGCCTACAAGTGAAGAGCAGTGTTGATATAATTAAATTTACCATAACCTATCTTGGAGAAACAACACTACAAAAAATAAATACAAATAGGATGATTATCTCTAACCTATCCATTTTCACTAGCGGGAATGATCCCTAAAACAAACCTAGGGTGATTATGGCAATCTGTTTCCTCCTATCTCTCGAAGCAAAGAAAACACAATGGACTTAGGTTGGCCATTCGTTAATCCACTGCCACAATAATTTCAACCATAATCAGTCACAAATTAAGCATACAACCTGAGCTCGAAATCAATTTACATAATTATTCCCAAATCCTTGACTAAGGAAAACTAATTCATGCTATAACAAAATAACAACAACACAACAATATGCATACATACTAACATGCTCACGGTTTCAATCAACAAGTATTGCTCAAATCGAGAGTTTATTATAACAATAACACAAACAACAAGTACAACAACCCTAACCTAAACAACAATGATTACAACAAGGATAAATACTACAATATCAATCCGAGAGTTTTAGCAAATACATCGTGAAAGCATTCAATCAACAAGGAAAGGAAGATATCGAAAAGAAGTAGAAAACCCTATACCGAGGGATTCAAAACCCTCTTTGAAAAACAGATGCTCTGTGGTCTCTTACTCCTCTCGAACGGCTCCTTCTCCTCCTTGATCCTCTCAGGTATGACTCCCACGACCTCTCCTTGGAATCAACCCTCTCTCCTTTCTCTTGGTGTTAGCTTTCAGTAATGGAGAGTAGAATTGAAGAGAAAATTGAGTATCCCCTTTTCGGCAAAGTTGTATGTAGAATGGAGAATGGGAAACTTCTTGGACACACTACATGGTTGGCTTGGTGAGGAAGTCTCATCCAAGCTTGTACAACAATCTATAAAGAAGCTTATTCAACAAGGAATTAATTCTCATGCTTCAATTAAGTTCCCATGTGTAGATTATATGAAAATTAATACAAGCTTTATTCCAACTATAAAATGTATCTAATTTGTTCAATTAAAGGTCATAAATCTCCATTTTTCTTCAAAATATCTAAAACATATAATTTTACTTGGATTCCTAGAATTAACCGTAAATAACACAAAATGTATATAATATCCAGGAATTACCCATAAAATGGTATAAAAGTAGACAATAATAGTACATCGACTAGCTAAAATTAGGTGTAAATATAGCACTAAATTACAGTTATCGATGACTAAATCTCTAACCCCATTTAGCCAAGAGAGCCAAATTCTTATCTTTCAATCCTCCATGCTGAGACATCCTTCATTTTGTGCTTTTGAAGCCGAAATTCCATCTCACAAGTTGATTAATATTGCCTCCCTCATTCCCTTCCCAGGAAAAAGATCTCATCAACCTTTCCAATTCCAAACTTACTGGAGGAGGCATTAAGAAAAGAGACATGTAATAAAGCGGTAAACTTATCACAACAGAATTGCAAAAGAGTTAATTTACCTCCTTGAGACAAATTAAATCTCCTCCAACGATCAAACTTCCTTTGAAACTTATTGACTATCGGCTACCAAGAAGTAAACTTCTCTGGGTGTCCACCAAAAGGTAGACCAGGATACAAGAAAGGTGAAATCTCAACAATTACCATTATTAGTATTTATCTATTTATTTTCTTTCCTTTTTATCTTTCTAAAACATAATTCGTCAGGGGCTGTTTGGGGCGCTGAGTAAGTTATAATAATAATTAGTTATAATAGTCCGTGGGTTATTATAGTCTGTGGAATCATATAATATTATTTAAAATGCAGAGTAATATAATCTGAGGTTATAATAGTTTGTATTAGGGTGCAGAGTATTCCACAAGTTATAATAACACCCTGTACCCCAAACAGACCCTCAGAGTTAATTGGTTTCAATCTTTAGCTGCGAACAAGTCATTGCTCTTGAATCTTGTTCCACATGCGAAGTTCAGTGCTTGATGATTTGTCTTCCTTTTCAGTGACCATTGGAGGAAAAATATACCTGCCCTTGCTGAATCACATAGAGTTTTCGCTATTGATCTTATTGGTTATGGATACTCAGACAAGCCAAACCCAGATCTAGTTGGAGAAAGCTTTTATACATTTGAGACTTGGGCTTCCCAGCTGAATGATTTTTGTGTTGACGTGGTTCAGGATGAAGCATTTTTTATTTGTAATTCTATAGGAGGTAAACATCTCATTTTTGAAGTAATATTACTACTTTTTCTTAGTTCTGATATTCCTATCTTGTTATGGTCCTTAACTTATATTTGATAAATTCAATTTTGGACTTTATACATTTTTATGTAAATGTTTTTCATTTATTCCAGTTCTTCATGCATCATTGGTTGCTCTTGGACAAATCTGTTCTTATCCATGCTGATGGCAGTTTTAAGTGGATAGACTCTTCTATACTAAAAGTGTTCCCTCCATTTCACGTCTATTTTCATTTTCCAATACACTATAAAACCAGTCTCGTGTTCACACGGGACAATCTCATTCAAAAAAAAAAAAAAGCATAAATCACTTAACTAGTGTCAAAACTTTGAGCAATATGTGTGTAATCTTGTTCTCTCCATCTGTTATTCTTCTCTTTTTTACTGAATGAGATCTATTTTCTTCTGTTATGAAGATGACCTATCAGTTTTCAGCATCTTTCTTAAAATTATTGGATGCATATTCTTGTAGGAGTAGTTGGTCTGCAGGCAGCAGTTATGAAACCGCAGATCTGTAGAGGTATTGTTCTTCTAAACATATCTTTACGTATGCTTCATATCAAGAAGCAGCCTTGGTATGGGAGGCCATTGATCAGATCATTTCAGAGTTTGCTGAGGTAAAAGACATCCCATAGATCAATTATTGAATTTAGACTGAAGTTGTCATCCAAGGTCTCGACTGTTGCAGAAATACTGCTCTAGGAAAATATTTTTTTAGAACTGTTGCAACCCCGGAGGCCGTGAAGAATATTCTTTGCCAGGTATCTTTTCTTGCTTTGTCATTACTACTTTTTATTTAAGGGATGCAATAAGAACAAGAATAACAACTTTCTATAATGAATTTATCATTAGGTAAATAAATTCATTAAAAATTCAACAAAGTTACTAATTATCTTGGCTCCTAGATGTAGGGGAATTTAAAAACTAAATATGTTATGATATTTGTTTTTTTTTTTTCTATTTTGATTATTATCGGATCAATTATCAATGAAATTGTTTCTTATACCAAAAAAAAGATTATTATTGGATCAATTAGTAGGAGTTATAAGTTTGTAATTCTGTTTCCATAGGAGATTAATGTATGAAATTTTAATAGCATTTAGATTCTATCCTATTAGAATTTCGTTTTGATGAGGATTGTCTACCTATAGATAGGGCTCCAATTTTATTAAGCTTTGATCTGAGCATGAATTGAGTTTCGGTGATGCATAATGTCAAGGTTCGGATATCTAGGTAGCTTAAGTTACTTTTCTTTTACCTTTCGCTTTTATTTTTCCCCGAATTACTAATTTTCCCGGAAAGGGAAAAAGAGAAGGATGATAAGAACGAGGTTCCTGAAGGCTCAACTGTTTAAAACAAATCAGGAAAAAGAACACATTTTTTTATGATATCGTGACTGCTTTTTACACGTTTCCTGCAGTGTTACCATGACACCTCCCAAGTTACAGATGAGCTAGTGCAAATTATCCTCAATCCCGGATTACAGCCGGGTGCTGCCGATATCTTTCTAGAGTTTATTTGTTACTCAGGCGGGCCCCTTCCTGAAGAACTTTTGCCTAGAGTGAAGGTTACCTTCCTCTAACGTTGGTACTCTTTGGAACTACCATTTTCTCCGTGCCGTTGTTGCTTTTCTCATTTTTCTCTTCTTCAGTGTCCTGTATTGATAGGATGGGGTGACAAAGATCCGTGGGAGCCAATTGAGCTTGGAAGAAATTATGGAAGTTTCGAATCTGTGGAAGATTTTGTTGTCATTCCCAATGTTGGACACTGCCCTCAGGTCTCTCTTGCACTCTCTCCATGCTGATTGTTTTTACTTGTTTCGATGTGGGGTTCTTAGCTAGTTGAGAGCTTGTGATATATATATATATATATAAACACTATGCAACAGAAAATGATATAATTTTTGTAAGGGTAGGGAAAGCATCTTAGGGAGTTGTTTTGGAAGTTGTGATTTTGATAGTTACACACTTGTGGGAATACTTTCGAGGTGTGGATAGAGTCTGAATGAACTGAAAGACAAAAGAGCACTGCATTTCATTTCATGAGCCTTCGTCCAGTAAAACTAAAGGGGAAATCTGATATATGGGCAAGTCAATTTGATTTCTGTGCAATTAATTTCTCGAGAAACTTGCTGACTTCAATGTTTGCTGGCATTAATAAAGGACGAGGCACCTCATCTAGTAAACCCGCTCGTCAAGTCATTTGTGTCACGTCATGCTACAAGATCTGCACGTACATCCTCAGCTGTATAATCCTTTATAACCCGGAGTTCCAATTCTCGGCTTTCGAAGGTATGTTCTTTGATCATCTTGATATTCCTACTGGACAACATCTGTGAATGCCTCCTCAAAACTGCAACTTGCCTTACATAGGACAGTTGTGTCCTGGATTTAGCTGTAAATTTGCCACTCAATCAATCTGTGCATCAGTGCAAGGATATTGCATGTCCCCACTCCCCTCCCCTTCCCTCACACACACAGACAGACACATACACACACAAACAACACCATATACCTTATTCTGTACGGTAAGGTTATGTACCAACATTTCCGTCGTACAAATAATATAGCATTCTCATTGAAGCTCGCTGCTTGTTTTCTAGTATTGCTTTTGCCTATAGCTAAACGAAAGGCTATTTCTGAATGTTCACCGATAGGCTTCAAAAGACACGGGATTACACACTTTTGTAATCTACTTGGGAAGAAATACCCTGCAAAAATCTCTCTCGTTTAGGTGATGTTTGATCCATCTTTGTGAAC ATGTCGACCATTTTCTCTTCCACTTTGCCCTTCTTCAAACTCCCCCCACCATTCTCCTCTGCTAAAGTAACCGCCAGCTTCCTAGCATCTCCACCCACTCCCAGACATTCCTTTTCTCAACAACTAGGGTTCCCCCTCAGAGCCCCTGCATTTTCTCCGATCAAGTCAAATGGGTCTGTCTCATCTTCTCAACTGAGCGACCAATTCGATGGCCAAGGCTTAAAAGTTCGAAGCTGCATTTGGAAGTGGAGGGGTTATTCTATTCGCTACCAATGTTCAGGAGACGATGGCCCTGCATTGATTCTGATTCATGGTTTTGGAGCAAATAGTGACCATTGGAGGAAAAATATACCTGCCCTTGCTGAATCACATAGAGTTTTCGCTATTGATCTTATTGGTTATGGATACTCAGACAAGCCAAACCCAGATCTAGTTGGAGAAAGCTTTTATACATTTGAGACTTGGGCTTCCCAGCTGAATGATTTTTGTGTTGACGTGGTTCAGGATGAAGCATTTTTTATTTGTAATTCTATAGGAGGAGTAGTTGGTCTGCAGGCAGCAGTTATGAAACCGCAGATCTGTAGAGGTATTGTTCTTCTAAACATATCTTTACGTATGCTTCATATCAAGAAGCAGCCTTGGTATGGGAGGCCATTGATCAGATCATTTCAGAGTTTGCTGAGAAATACTGCTCTAGGAAAATATTTTTTTAGAACTGTTGCAACCCCGGAGGCCGTGAAGAATATTCTTTGCCAGTGTTACCATGACACCTCCCAAGTTACAGATGAGCTAGTGCAAATTATCCTCAATCCCGGATTACAGCCGGGTGCTGCCGATATCTTTCTAGAGTTTATTTGTTACTCAGGCGGGCCCCTTCCTGAAGAACTTTTGCCTAGAGTGAAGTGTCCTGTATTGATAGGATGGGGTGACAAAGATCCGTGGGAGCCAATTGAGCTTGGAAGAAATTATGGAAGTTTCGAATCTGTGGAAGATTTTGTTGTCATTCCCAATGTTGGACACTGCCCTCAGGACGAGGCACCTCATCTAGTAAACCCGCTCGTCAAGTCATTTGTGTCACGTCATGCTACAAGATCTGCACGTACATCCTCAGCTGTATAATCCTTTATAACCCGGAGTTCCAATTCTCGGCTTTCGAAGGTATGTTCTTTGATCATCTTGATATTCCTACTGGACAACATCTGTGAATGCCTCCTCAAAACTGCAACTTGCCTTACATAGGACAGTTGTGTCCTGGATTTAGCTGTAAATTTGCCACTCAATCAATCTGTGCATCAGTGCAAGGATATTGCATGTCCCCACTCCCCTCCCCTTCCCTCACACACACAGACAGACACATACACACACAAACAACACCATATACCTTATTCTGTACGGTAAGGTTATGTACCAACATTTCCGTCGTACAAATAATATAGCATTCTCATTGAAGCTCGCTGCTTGTTTTCTAGTATTGCTTTTGCCTATAGCTAAACGAAAGGCTATTTCTGAATGTTCACCGATAGGCTTCAAAAGACACGGGATTACACACTTTTGTAATCTACTTGGGAAGAAATACCCTGCAAAAATCTCTCTCGTTTAGGTGATGTTTGATCCATCTTTGTGAAC ATGTCGACCATTTTCTCTTCCACTTTGCCCTTCTTCAAACTCCCCCCACCATTCTCCTCTGCTAAAGTAACCGCCAGCTTCCTAGCATCTCCACCCACTCCCAGACATTCCTTTTCTCAACAACTAGGGTTCCCCCTCAGAGCCCCTGCATTTTCTCCGATCAAGTCAAATGGGTCTGTCTCATCTTCTCAACTGAGCGACCAATTCGATGGCCAAGGCTTAAAAGTTCGAAGCTGCATTTGGAAGTGGAGGGGTTATTCTATTCGCTACCAATGTTCAGGAGACGATGGCCCTGCATTGATTCTGATTCATGGTTTTGGAGCAAATAGTGACCATTGGAGGAAAAATATACCTGCCCTTGCTGAATCACATAGAGTTTTCGCTATTGATCTTATTGGTTATGGATACTCAGACAAGCCAAACCCAGATCTAGTTGGAGAAAGCTTTTATACATTTGAGACTTGGGCTTCCCAGCTGAATGATTTTTGTGTTGACGTGGTTCAGGATGAAGCATTTTTTATTTGTAATTCTATAGGAGGAGTAGTTGGTCTGCAGGCAGCAGTTATGAAACCGCAGATCTGTAGAGGTATTGTTCTTCTAAACATATCTTTACGTATGCTTCATATCAAGAAGCAGCCTTGGTATGGGAGGCCATTGATCAGATCATTTCAGAGTTTGCTGAGAAATACTGCTCTAGGAAAATATTTTTTTAGAACTGTTGCAACCCCGGAGGCCGTGAAGAATATTCTTTGCCAGTGTTACCATGACACCTCCCAAGTTACAGATGAGCTAGTGCAAATTATCCTCAATCCCGGATTACAGCCGGGTGCTGCCGATATCTTTCTAGAGTTTATTTGTTACTCAGGCGGGCCCCTTCCTGAAGAACTTTTGCCTAGAGTGAAGTGTCCTGTATTGATAGGATGGGGTGACAAAGATCCGTGGGAGCCAATTGAGCTTGGAAGAAATTATGGAAGTTTCGAATCTGTGGAAGATTTTGTTGTCATTCCCAATGTTGGACACTGCCCTCAGGACGAGGCACCTCATCTAGTAAACCCGCTCGTCAAGTCATTTGTGTCACGTCATGCTACAAGATCTGCACGTACATCCTCAGCTGTATAA MSTIFSSTLPFFKLPPPFSSAKVTASFLASPPTPRHSFSQQLGFPLRAPAFSPIKSNGSVSSSQLSDQFDGQGLKVRSCIWKWRGYSIRYQCSGDDGPALILIHGFGANSDHWRKNIPALAESHRVFAIDLIGYGYSDKPNPDLVGESFYTFETWASQLNDFCVDVVQDEAFFICNSIGGVVGLQAAVMKPQICRGIVLLNISLRMLHIKKQPWYGRPLIRSFQSLLRNTALGKYFFRTVATPEAVKNILCQCYHDTSQVTDELVQIILNPGLQPGAADIFLEFICYSGGPLPEELLPRVKCPVLIGWGDKDPWEPIELGRNYGSFESVEDFVVIPNVGHCPQDEAPHLVNPLVKSFVSRHATRSARTSSAV Homology
BLAST of Tan0001427 vs. ExPASy Swiss-Prot
Match: Q9FFZ1 (Pheophytinase, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PPH PE=1 SV=1) HSP 1 Score: 119.4 bits (298), Expect = 8.7e-26 Identity = 89/349 (25.50%), Postives = 147/349 (42.12%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy Swiss-Prot
Match: O05235 (Uncharacterized hydrolase YugF OS=Bacillus subtilis (strain 168) OX=224308 GN=yugF PE=3 SV=1) HSP 1 Score: 95.1 bits (235), Expect = 1.7e-18 Identity = 66/277 (23.83%), Postives = 124/277 (44.77%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy Swiss-Prot
Match: Q9AQM4 (2-hydroxy-6-oxo-6-(2'-aminophenyl)hexa-2,4-dienoic acid hydrolase OS=Pseudomonas resinovorans OX=53412 GN=carC PE=1 SV=1) HSP 1 Score: 82.4 bits (202), Expect = 1.2e-14 Identity = 78/294 (26.53%), Postives = 133/294 (45.24%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy Swiss-Prot
Match: Q59695 (Dihydrolipoyllysine-residue acetyltransferase component of acetoin cleaving system OS=Pseudomonas putida OX=303 GN=acoC PE=3 SV=1) HSP 1 Score: 82.0 bits (201), Expect = 1.5e-14 Identity = 74/277 (26.71%), Postives = 118/277 (42.60%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy Swiss-Prot
Match: Q6IE26 (Epoxide hydrolase 4 OS=Mus musculus OX=10090 GN=Ephx4 PE=2 SV=2) HSP 1 Score: 75.9 bits (185), Expect = 1.1e-12 Identity = 73/333 (21.92%), Postives = 136/333 (40.84%), Query Frame = 0
BLAST of Tan0001427 vs. NCBI nr
Match: XP_022958555.1 (pheophytinase, chloroplastic [Cucurbita moschata] >KAG6605837.1 Pheophytinase, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 681.8 bits (1758), Expect = 3.3e-192 Identity = 330/383 (86.16%), Postives = 345/383 (90.08%), Query Frame = 0
BLAST of Tan0001427 vs. NCBI nr
Match: XP_022995331.1 (pheophytinase, chloroplastic [Cucurbita maxima]) HSP 1 Score: 679.9 bits (1753), Expect = 1.3e-191 Identity = 329/383 (85.90%), Postives = 345/383 (90.08%), Query Frame = 0
BLAST of Tan0001427 vs. NCBI nr
Match: XP_023533508.1 (pheophytinase, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 674.9 bits (1740), Expect = 4.1e-190 Identity = 328/383 (85.64%), Postives = 343/383 (89.56%), Query Frame = 0
BLAST of Tan0001427 vs. NCBI nr
Match: XP_022153858.1 (pheophytinase, chloroplastic isoform X1 [Momordica charantia]) HSP 1 Score: 648.7 bits (1672), Expect = 3.1e-182 Identity = 322/387 (83.20%), Postives = 339/387 (87.60%), Query Frame = 0
BLAST of Tan0001427 vs. NCBI nr
Match: KAA0040105.1 (pheophytinase [Cucumis melo var. makuwa]) HSP 1 Score: 647.9 bits (1670), Expect = 5.3e-182 Identity = 314/373 (84.18%), Postives = 331/373 (88.74%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy TrEMBL
Match: A0A6J1H3U7 (pheophytinase, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111459754 PE=4 SV=1) HSP 1 Score: 681.8 bits (1758), Expect = 1.6e-192 Identity = 330/383 (86.16%), Postives = 345/383 (90.08%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy TrEMBL
Match: A0A6J1K1N6 (pheophytinase, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111490908 PE=4 SV=1) HSP 1 Score: 679.9 bits (1753), Expect = 6.1e-192 Identity = 329/383 (85.90%), Postives = 345/383 (90.08%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy TrEMBL
Match: A0A6J1DIP0 (pheophytinase, chloroplastic isoform X1 OS=Momordica charantia OX=3673 GN=LOC111021274 PE=4 SV=1) HSP 1 Score: 648.7 bits (1672), Expect = 1.5e-182 Identity = 322/387 (83.20%), Postives = 339/387 (87.60%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy TrEMBL
Match: A0A5A7TFB8 (Pheophytinase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold366G00800 PE=4 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.6e-182 Identity = 314/373 (84.18%), Postives = 331/373 (88.74%), Query Frame = 0
BLAST of Tan0001427 vs. ExPASy TrEMBL
Match: A0A5D3DEA7 (Pheophytinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold859G001020 PE=4 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.6e-182 Identity = 314/373 (84.18%), Postives = 331/373 (88.74%), Query Frame = 0
BLAST of Tan0001427 vs. TAIR 10
Match: AT5G19850.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 508.4 bits (1308), Expect = 4.7e-144 Identity = 223/304 (73.36%), Postives = 268/304 (88.16%), Query Frame = 0
BLAST of Tan0001427 vs. TAIR 10
Match: AT5G38520.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 178.7 bits (452), Expect = 8.5e-45 Identity = 112/315 (35.56%), Postives = 170/315 (53.97%), Query Frame = 0
BLAST of Tan0001427 vs. TAIR 10
Match: AT5G38520.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 174.1 bits (440), Expect = 2.1e-43 Identity = 113/327 (34.56%), Postives = 170/327 (51.99%), Query Frame = 0
BLAST of Tan0001427 vs. TAIR 10
Match: AT4G36530.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 172.9 bits (437), Expect = 4.7e-43 Identity = 93/289 (32.18%), Postives = 146/289 (50.52%), Query Frame = 0
BLAST of Tan0001427 vs. TAIR 10
Match: AT4G36530.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 172.9 bits (437), Expect = 4.7e-43 Identity = 93/289 (32.18%), Postives = 146/289 (50.52%), 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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