Tan0017851.2 (mRNA) 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.CCAAATTCCATTTCAACCCCGACCACAAACTGGTAGAGCAGAGAGAGGAAAGAAGAAAATCGCCGTAGTGGGCACCGACCGCCTCATCGAGTGGCCCACAGCGTGCGACGTCGCTAACCAGCTTCGTAGATAGATTCTAATGGAGGTTTCCAGTTCCATCAACGTGCGACCCATTTTCTGTTTCTTCTTCAAACCCCTTCTTTATACAACTTTCCAGGTATTCAACTATATAAACTGCCCCATTATTTCATGCTCTGTTCCTTTTCCCTCTCCTAACACTATCAAGTGGATTTTATTTTATTCATTTATCTTTCTAGATTCTGTTCTTCTATCTCTTTTTAATTTTATTGGGGTTTCTCATAGGCCACTGATCCAGTAACCCTTTTGCTTGGTGGTTTTGATTTTTTATGTTTGATGTGATTTTTGGGGTGCCATTTGTTTTTTTATACTTTTGTGTATTTTATGGCTTTCATGAATCTGCATTTTGGTTCTTTTTGAGTCAAGTCGAGTGGTTAGAAGTTCTTCTTTAAACTGTTCTGCTATTGGGTTTGATTGTATCTACTCCAAGAAGTGGATATATGAGTTGATCTAATTGAATCTTAAATTTAAATTTTTACTTGGAATAGAAATTGTATCCAAGTTTAAAGAAGAATGAATTTGATTGAAAGTAGTACTAAATGTGAATTACATGAATTTGAAAGTAGTATTAAATGTGAATTACTTTTTCTATAAAATTTCATGGGAAAAGCATTAATTAAGTGCTCTTAACATATCTTAAATGTTTCGAATGAGTTTGAAAGGTCTTTTGGTGTTTTAAGTAAATATCAATCTTTTCTAAACATTTTCTTTTTGAATAAAACACTAAGGATCGAAATCACTCTTGTTATACTATACCTGTTTTTTAATTATTTTGGGCATAACAAAAGTCATTTTGACCATTTCGAAATCACTCTTCCAAACATGTCCTTTTAAATCTTTCCCTTAAAAGCATTTTAAGAATATAAATAATACTTTTCAATTAACTAAAACACTTTCTTACTCTTACGAAAGTAATGTGAGTTTTTCCTAACAACTGGTTTCTTTTACCATGCTTTTTACTGGTTGAGAACATTTTTTTAAAAAATGTATTCTTAAGAATTTTAGGAACCTAAACTACGTTAAATAGTTGGGGTCTTTTTCAAAAAGTGAAGTAATACTATATGTGCGTGTGTGTATATATATATCCAAAATTATAATTCAAAAGATGGACGGTCCATGTCAAAAGAAAAAAAAAAAACAGAATCTCTTGCAATTTTAAGAATCTTTTCCTAACTCAAAGGGATAAATTTTATTTAAAGCCAACAAGTGCCATTATCATTATTATCATTATCTTTTTTGTAAGATTGATTCATCTGTATTTTGGAAGACTTACTCTTGAAAGCATTATCCATTCGCTTTGTGCCGTGGTAGCTTTCATAATTTGGCTGATTCATAATTTTATACACATCATACAAACAAATAAAGGTGCTACAAATAATTACAACTTTCACTAATTATAATACGATTCACTTGCTTAAGATGGAGTTTATTTTATGTTTATTCTTTTTGAGCTGGCTGCTGAGTTGACTGCCATTTGATGCCAATAGGTAATTTCTTTTGGGAAAATGGGATACTTTTTTTGAATATGACAGGCCTTTAATTCTCTATATAGTCTGAAGACTTCACTACCCTGTGGAATAGAACTTGGCTTAAATTAAGTCTCTAGTGTTGAAGTAAACAAAGAGTGCTTTTGGAGATGAACAAAAGAAGCAAGAATTTAACTCTTTCATTGTTTCTGTTTTTTCTGCTCTCTTTGCTGTCTTCTTCAGTGGTTACAGTGGAGGCAAGGAAGAACCATCACAACAAGAAGGGCAAGCATCAGAAGCAAAAGGGTGTTGGTGATGGCAATGGTTCAGGCCCTGCACCAGCTCCATTTCCTGATTTCAATCAAACTCAATCCACCATTTTTAATATCTTGTCTTTTGGAGCAAAGGGCAACGGAGTTTCTGATGATTCCAAGGTAAAAATTGTCCAGCACAACCTTACAAAACAGATACAGAGAGAGAGAGAGAGAGAGAGTTAAAAATAGTGACTAATGGACTGATTTGAACTAATAAAAACCATCCTATGCAGGCACTTCTAGCAGCATGGAAAGCTGCATGCAAGATTACTGGAGCTACGTTGCAAATACCTTCACAATATAAGTTTCTCATCAAACCAATAACTCTAAATGGCCCTTGTATGCCTCAGCTTGTTCTTCAGGTTTGCCTTATTTTCTTCTCTTTTCAGGAATTTGGCTTATTTGAGAACGTAACAAAAAAAAAACAAAAAAAAAAAATCTTTGACTTGTCATGTAACAGATTGTTTTTTAAAAATAAATAAGTTAGTGCTGCTTAGAGTTCAAAAGATAAGATAATTAATAATTTGATGGGAAGTGCAATTCCAAAGCAGATTGATGGAGCTGTATTGGCTCCTCCAAAAGTGAGTTCGTGGTCCAAATCCAGCTTGTTTCAATGGCTGAATTTCAAATGGCTACATAATTTCACCATTCAAGGCTCTGGTACTGTGGATGGCGAGGGCTTTAATTGGTGGACTCTCTCCACATTCTACAACAATAACAAGGTTAGTTCTTTTTTTTTTTTAATAATTCATTAACTTATGCTTATTACATTTAAGAGAGTGATTTTAGCTCAACCATTTGTTGTTTTTCTTGTTTCTGCAGAAGAAATTGAAGCACATTCCAGACATGAAGCCTACTGTAAACTTTTCTCACTCTTTCTCTCTCTTTTTGTTTAGATTTACAGCTTTTTTCTGAATTTTGATTGGGATTTTTTTAATACTTTGTTCATAAATGACAGGCTTTAAGATTTTATTCCAGTTACAATGTGACAGTTCGTGACATCACCATAATAAACAGTCCACAATGCCATCTGAAATTTGACAACTCCGGCACCGTCAAAGTCGACAATATCACCATTTCTTCGCCGGAGAACAGCCCGAACACCGACGGCATTCACCTGCAGAACACACAAGATGTCGAAATTCAACACTCCAACATTGGCTGTGGTAGGAACCGAGCCAATTTACAACCCCTTTTTTATAATATTTTATTGTCTTTTCTAAAGTCAACCTTTTCACTGGATCTTTTCTGGTCTGTTTTATAATTTTGAGGACACAATAAAATGAGTTTTTAAGTAGAAAATTAAACTTAATTGTCTAGCAAAATGTCTAGATTATTGTTAGTCCAAGAAAATTCTAGATCTTATAATTTTTTCCTTCGGAAATTAAATGCATATCTTTTATATCAAACTATCTATCACGCAATGTCTACTATATTAAATTTTCTCTCTACCATTAAAGCAATATTGTGAGGTAAAAATAACTCCATAGGGTTAAAAAAGTATCTCCATTTAACAATATTTTGAGGAAAATATTTGGGTGCAGCTTGCTGCTCACTTCATGACCACATGAAAAAAAAAATGGTTTTTTTTTTTAAACAGAAAAAATTTGTAGATGAAAATAGAGCTGTAGAATACTTGGATGCAGCAATTTTGCTCGTATTTTGATTGCAATAGACATAAAGCTACACCACAAAGAAACTGGACTACACACTTGAACCAACAAACTGGATTACACAACTTATTTTAAGATTTGTTATTTTGGCAGGTGATGACTGTGTTTCCATTCAGACTGGCTGCTCCAACATCCATATTCATCATATCAATTGTGGCCCTGGACATGGCATAAGGTAAATAAATCCTCATCAATTTCACTTTTTCATCAAGGCAATTCCTGTGGAGAATATTATTTATGGCCGTGATTATAAATTAACCATTTTGTTCGACTTTTCTTAAACATTATTATATTCAGCACTAAAGGTTAATATCTTGCCTATAATTACAGCTTGGGTGGACTTGGGAAAGATAAAGGTGTTGCATGTGTCTCCAATATTGTTGTCGAAAACATCTCAATTCAAAACACTCTTTCAGGAGTGAGAATCAAGACCTGGCAGGTAAAAAAAAGGTTAAACTCTAAAATTTACTCCTTGAATTATGGTGGCTGACAGGCTGTGTTATTTATTTCTTAAAACTTTTAAAAATTTCAATTGTGTATCAACATTAAATTTATTATTTTATGTAATGTTTCTGTGAGTACTTTTAAATTTTTAATGGAACGATCATTATAACACACCTATGTTGAATAAGTATAGATTGATTTGATACAATGCAGTCGAAGAAAGTAAATTTGTGGTCAAAATAAAGTGGCACGGTTTACACAAGTGATTTCATACATCACTTAAAAAAGAGAGTATAAATATGGTATACATATCTTTTTATTTTGTCCAACGATCCACTTTCTTTTGCCATTTGCACATCTAATAAAGCTGAAACCGTCAACATTTATTTAATAAACATGTCATGTTATCATTTGTTCTGCATAGTATAGGAATTACGTAGAATCACACCCCACTAATATATATATATATATATATATTTTTAATATGAACAGGGAGGAGTTGGGTCAGTGAAGAATGTATCATTCTCCAACATCCAAGTTTCTGATGTAAAGGTGCCAATTATGATAGACCAATACTATTGCGACAAGTACACATGCAAGAACCAAACAGGAGCAGTTGCAATTTCAGGTATAACATACGATCAAATCATAGGAAGTTACACAGTGCAGCCTATTCACTTAGCCTGCAGCAACCAAGTCCCATGTATAGACGTTGATCTCATAGACATCCAGCTGAATCCATCTTCAGCATCCAGAGGCTTTCAAAACTCTCTGTGCTGGAACTCTTATGGTAAATCTCAAGCTCCCCTTGTTCCTTCTAGCATAGACTACTGCTTGAGAAGGGGCAGTGGCGCTGTTAGAAGAATAGCAAGGTCCCATGATCATGTCTGCTTCTAAATGCTCTCAACTTTTCTCTGTTTTCTTTCTCTAGCTTCCCTTCTGCAGATTTTTTTTGGAAAATGTAGGAAGGTGATGATTGTGAAAGCATTTATGGCTTATCGTGTTTGGCGTTGACATATTGTAGTCAGAAATCATATATGAAATCCATTAGTATCTCATTTCCCAATTAGTCCAAGCAAAGTGATCAGAATTTCCCCTACCCATCTGTCAAAAAAGTTTCTTTTTTACTTTTTCAGGTAAGTTTTTGCCTTTTTGGAGTTGAAATGAGTTAAACTGCTGGGGGCTGGTGGGGTCCTACTCTGTTCTGTTCTGTTCTATTCTATTCTGTTCTCTTTGCCTTTGGTAAATTGGTTGGTGGAGAAGAAAGAAAGGGCTATAAGAGAGAGTTTAATGGCGCTGATAGTGGAGGAAGGCTTGTGAGGAATCAATTGCATGCGCGACATGGCTTTTGTTCTTTTTACCTTTGTAATTAATATCAAATTTTACAGGCTTTTATGGCTTCTTCAGCTGCTTATATTTTCGTTCTTAAGCGTTGGCCTCCACTTATACTGACCTTTACACGCACTCTGTTAGTGCTCTGTTGTCTTCTAGTTGTATCTAACCGAGAAGTTCTAGTACCTTCCATTTGGGGTTGGGAAGAACCAAAAGGGAAGAAGGCTGTCTCTTTCTTTATAATAATTTCTGGGTAAAATACATTTTTCGGTCCTTTTCAACTTAA CCAAATTCCATTTCAACCCCGACCACAAACTGGTAGAGCAGAGAGAGGAAAGAAGAAAATCGCCGTAGTGGGCACCGACCGCCTCATCGAGTGGCCCACAGCGTGCGACGTCGCTAACCAGCTTCGTAGATAGATTCTAATGGAGGTTTCCAGTTCCATCAACGTGCGACCCATTTTCTGTTTCTTCTTCAAACCCCTTCTTTATACAACTTTCCAGTGGTTACAGTGGAGGCAAGGAAGAACCATCACAACAAGAAGGGCAAGCATCAGAAGCAAAAGGGTGTTGGTGATGGCAATGGTTCAGGCCCTGCACCAGCTCCATTTCCTGATTTCAATCAAACTCAATCCACCATTTTTAATATCTTGTCTTTTGGAGCAAAGGGCAACGGAGTTTCTGATGATTCCAAGGCACTTCTAGCAGCATGGAAAGCTGCATGCAAGATTACTGGAGCTACGTTGCAAATACCTTCACAATATAAGTTTCTCATCAAACCAATAACTCTAAATGGCCCTTGTATGCCTCAGCTTGTTCTTCAGATTGATGGAGCTGTATTGGCTCCTCCAAAAGTGAGTTCGTGGTCCAAATCCAGCTTGTTTCAATGGCTGAATTTCAAATGGCTACATAATTTCACCATTCAAGGCTCTGGTACTGTGGATGGCGAGGGCTTTAATTGGTGGACTCTCTCCACATTCTACAACAATAACAAGAAGAAATTGAAGCACATTCCAGACATGAAGCCTACTGCTTTAAGATTTTATTCCAGTTACAATGTGACAGTTCGTGACATCACCATAATAAACAGTCCACAATGCCATCTGAAATTTGACAACTCCGGCACCGTCAAAGTCGACAATATCACCATTTCTTCGCCGGAGAACAGCCCGAACACCGACGGCATTCACCTGCAGAACACACAAGATGTCGAAATTCAACACTCCAACATTGGCTGTGGTGATGACTGTGTTTCCATTCAGACTGGCTGCTCCAACATCCATATTCATCATATCAATTGTGGCCCTGGACATGGCATAAGCTTGGGTGGACTTGGGAAAGATAAAGGTGTTGCATGTGTCTCCAATATTGTTGTCGAAAACATCTCAATTCAAAACACTCTTTCAGGAGTGAGAATCAAGACCTGGCAGGGAGGAGTTGGGTCAGTGAAGAATGTATCATTCTCCAACATCCAAGTTTCTGATGTAAAGGTGCCAATTATGATAGACCAATACTATTGCGACAAGTACACATGCAAGAACCAAACAGGAGCAGTTGCAATTTCAGGTATAACATACGATCAAATCATAGGAAGTTACACAGTGCAGCCTATTCACTTAGCCTGCAGCAACCAAGTCCCATGTATAGACGTTGATCTCATAGACATCCAGCTGAATCCATCTTCAGCATCCAGAGGCTTTCAAAACTCTCTGTGCTGGAACTCTTATGGTAAATCTCAAGCTCCCCTTGTTCCTTCTAGCATAGACTACTGCTTGAGAAGGGGCAGTGGCGCTGTTAGAAGAATAGCAAGGTCCCATGATCATGTCTGCTTCTAAATGCTCTCAACTTTTCTCTGTTTTCTTTCTCTAGCTTCCCTTCTGCAGATTTTTTTTGGAAAATGTAGGAAGGTGATGATTGTGAAAGCATTTATGGCTTATCGTGTTTGGCGTTGACATATTGTAGTCAGAAATCATATATGAAATCCATTAGTATCTCATTTCCCAATTAGTCCAAGCAAAGTGATCAGAATTTCCCCTACCCATCTGTCAAAAAAGTTTCTTTTTTACTTTTTCAGGTAAGTTTTTGCCTTTTTGGAGTTGAAATGAGTTAAACTGCTGGGGGCTGGTGGGGTCCTACTCTGTTCTGTTCTGTTCTATTCTATTCTGTTCTCTTTGCCTTTGGTAAATTGGTTGGTGGAGAAGAAAGAAAGGGCTATAAGAGAGAGTTTAATGGCGCTGATAGTGGAGGAAGGCTTGTGAGGAATCAATTGCATGCGCGACATGGCTTTTGTTCTTTTTACCTTTGTAATTAATATCAAATTTTACAGGCTTTTATGGCTTCTTCAGCTGCTTATATTTTCGTTCTTAAGCGTTGGCCTCCACTTATACTGACCTTTACACGCACTCTGTTAGTGCTCTGTTGTCTTCTAGTTGTATCTAACCGAGAAGTTCTAGTACCTTCCATTTGGGGTTGGGAAGAACCAAAAGGGAAGAAGGCTGTCTCTTTCTTTATAATAATTTCTGGGTAAAATACATTTTTCGGTCCTTTTCAACTTAA ATGCCTCAGCTTGTTCTTCAGATTGATGGAGCTGTATTGGCTCCTCCAAAAGTGAGTTCGTGGTCCAAATCCAGCTTGTTTCAATGGCTGAATTTCAAATGGCTACATAATTTCACCATTCAAGGCTCTGGTACTGTGGATGGCGAGGGCTTTAATTGGTGGACTCTCTCCACATTCTACAACAATAACAAGAAGAAATTGAAGCACATTCCAGACATGAAGCCTACTGCTTTAAGATTTTATTCCAGTTACAATGTGACAGTTCGTGACATCACCATAATAAACAGTCCACAATGCCATCTGAAATTTGACAACTCCGGCACCGTCAAAGTCGACAATATCACCATTTCTTCGCCGGAGAACAGCCCGAACACCGACGGCATTCACCTGCAGAACACACAAGATGTCGAAATTCAACACTCCAACATTGGCTGTGGTGATGACTGTGTTTCCATTCAGACTGGCTGCTCCAACATCCATATTCATCATATCAATTGTGGCCCTGGACATGGCATAAGCTTGGGTGGACTTGGGAAAGATAAAGGTGTTGCATGTGTCTCCAATATTGTTGTCGAAAACATCTCAATTCAAAACACTCTTTCAGGAGTGAGAATCAAGACCTGGCAGGGAGGAGTTGGGTCAGTGAAGAATGTATCATTCTCCAACATCCAAGTTTCTGATGTAAAGGTGCCAATTATGATAGACCAATACTATTGCGACAAGTACACATGCAAGAACCAAACAGGAGCAGTTGCAATTTCAGGTATAACATACGATCAAATCATAGGAAGTTACACAGTGCAGCCTATTCACTTAGCCTGCAGCAACCAAGTCCCATGTATAGACGTTGATCTCATAGACATCCAGCTGAATCCATCTTCAGCATCCAGAGGCTTTCAAAACTCTCTGTGCTGGAACTCTTATGGTAAATCTCAAGCTCCCCTTGTTCCTTCTAGCATAGACTACTGCTTGAGAAGGGGCAGTGGCGCTGTTAGAAGAATAGCAAGGTCCCATGATCATGTCTGCTTCTAA MPQLVLQIDGAVLAPPKVSSWSKSSLFQWLNFKWLHNFTIQGSGTVDGEGFNWWTLSTFYNNNKKKLKHIPDMKPTALRFYSSYNVTVRDITIINSPQCHLKFDNSGTVKVDNITISSPENSPNTDGIHLQNTQDVEIQHSNIGCGDDCVSIQTGCSNIHIHHINCGPGHGISLGGLGKDKGVACVSNIVVENISIQNTLSGVRIKTWQGGVGSVKNVSFSNIQVSDVKVPIMIDQYYCDKYTCKNQTGAVAISGITYDQIIGSYTVQPIHLACSNQVPCIDVDLIDIQLNPSSASRGFQNSLCWNSYGKSQAPLVPSSIDYCLRRGSGAVRRIARSHDHVCF Homology
BLAST of Tan0017851.2 vs. ExPASy Swiss-Prot
Match: Q949Z1 (Polygalacturonase At1g48100 OS=Arabidopsis thaliana OX=3702 GN=At1g48100 PE=2 SV=1) HSP 1 Score: 285.4 bits (729), Expect = 8.4e-76 Identity = 149/334 (44.61%), Postives = 200/334 (59.88%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy Swiss-Prot
Match: Q94AJ5 (Probable polygalacturonase At1g80170 OS=Arabidopsis thaliana OX=3702 GN=At1g80170 PE=1 SV=1) HSP 1 Score: 246.9 bits (629), Expect = 3.3e-64 Identity = 126/317 (39.75%), Postives = 186/317 (58.68%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy Swiss-Prot
Match: P43212 (Polygalacturonase OS=Cryptomeria japonica OX=3369 PE=1 SV=1) HSP 1 Score: 232.6 bits (592), Expect = 6.5e-60 Identity = 126/341 (36.95%), Postives = 194/341 (56.89%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy Swiss-Prot
Match: P35336 (Polygalacturonase OS=Actinidia deliciosa OX=3627 PE=2 SV=1) HSP 1 Score: 229.9 bits (585), Expect = 4.2e-59 Identity = 121/305 (39.67%), Postives = 179/305 (58.69%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy Swiss-Prot
Match: Q7M1E7 (Polygalacturonase OS=Chamaecyparis obtusa OX=13415 PE=1 SV=1) HSP 1 Score: 229.2 bits (583), Expect = 7.2e-59 Identity = 117/295 (39.66%), Postives = 176/295 (59.66%), Query Frame = 0
BLAST of Tan0017851.2 vs. NCBI nr
Match: XP_038891503.1 (polygalacturonase At1g48100 isoform X2 [Benincasa hispida]) HSP 1 Score: 679.1 bits (1751), Expect = 2.0e-191 Identity = 321/343 (93.59%), Postives = 334/343 (97.38%), Query Frame = 0
BLAST of Tan0017851.2 vs. NCBI nr
Match: XP_038891502.1 (polygalacturonase At1g48100 isoform X1 [Benincasa hispida]) HSP 1 Score: 676.0 bits (1743), Expect = 1.7e-190 Identity = 322/344 (93.60%), Postives = 334/344 (97.09%), Query Frame = 0
BLAST of Tan0017851.2 vs. NCBI nr
Match: XP_022966725.1 (polygalacturonase At1g48100 [Cucurbita maxima]) HSP 1 Score: 674.5 bits (1739), Expect = 4.9e-190 Identity = 322/343 (93.88%), Postives = 331/343 (96.50%), Query Frame = 0
BLAST of Tan0017851.2 vs. NCBI nr
Match: XP_023542214.1 (polygalacturonase At1g48100 isoform X2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 669.8 bits (1727), Expect = 1.2e-188 Identity = 320/343 (93.29%), Postives = 329/343 (95.92%), Query Frame = 0
BLAST of Tan0017851.2 vs. NCBI nr
Match: XP_022151909.1 (polygalacturonase At1g48100 [Momordica charantia]) HSP 1 Score: 668.3 bits (1723), Expect = 3.5e-188 Identity = 316/344 (91.86%), Postives = 332/344 (96.51%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy TrEMBL
Match: A0A6J1HSE8 (polygalacturonase At1g48100 OS=Cucurbita maxima OX=3661 GN=LOC111466350 PE=3 SV=1) HSP 1 Score: 674.5 bits (1739), Expect = 2.4e-190 Identity = 322/343 (93.88%), Postives = 331/343 (96.50%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy TrEMBL
Match: A0A6J1DEG0 (polygalacturonase At1g48100 OS=Momordica charantia OX=3673 GN=LOC111019762 PE=3 SV=1) HSP 1 Score: 668.3 bits (1723), Expect = 1.7e-188 Identity = 316/344 (91.86%), Postives = 332/344 (96.51%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy TrEMBL
Match: A0A5D3CVS9 (Polygalacturonase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold35G001190 PE=3 SV=1) HSP 1 Score: 667.9 bits (1722), Expect = 2.2e-188 Identity = 316/343 (92.13%), Postives = 331/343 (96.50%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy TrEMBL
Match: A0A6J1FZF6 (polygalacturonase At1g48100 isoform X4 OS=Cucurbita moschata OX=3662 GN=LOC111449289 PE=3 SV=1) HSP 1 Score: 667.9 bits (1722), Expect = 2.2e-188 Identity = 320/343 (93.29%), Postives = 329/343 (95.92%), Query Frame = 0
BLAST of Tan0017851.2 vs. ExPASy TrEMBL
Match: A0A1S3BEF8 (polygalacturonase At1g48100 OS=Cucumis melo OX=3656 GN=LOC103488989 PE=3 SV=1) HSP 1 Score: 667.9 bits (1722), Expect = 2.2e-188 Identity = 316/343 (92.13%), Postives = 331/343 (96.50%), Query Frame = 0
BLAST of Tan0017851.2 vs. TAIR 10
Match: AT3G26610.1 (Pectin lyase-like superfamily protein ) HSP 1 Score: 520.4 bits (1339), Expect = 1.1e-147 Identity = 243/348 (69.83%), Postives = 292/348 (83.91%), Query Frame = 0
BLAST of Tan0017851.2 vs. TAIR 10
Match: AT1G10640.1 (Pectin lyase-like superfamily protein ) HSP 1 Score: 365.5 bits (937), Expect = 4.5e-101 Identity = 174/360 (48.33%), Postives = 237/360 (65.83%), Query Frame = 0
BLAST of Tan0017851.2 vs. TAIR 10
Match: AT1G60590.1 (Pectin lyase-like superfamily protein ) HSP 1 Score: 363.6 bits (932), Expect = 1.7e-100 Identity = 177/360 (49.17%), Postives = 236/360 (65.56%), Query Frame = 0
BLAST of Tan0017851.2 vs. TAIR 10
Match: AT5G14650.1 (Pectin lyase-like superfamily protein ) HSP 1 Score: 349.0 bits (894), Expect = 4.4e-96 Identity = 166/315 (52.70%), Postives = 214/315 (67.94%), Query Frame = 0
BLAST of Tan0017851.2 vs. TAIR 10
Match: AT1G56710.1 (Pectin lyase-like superfamily protein ) HSP 1 Score: 290.4 bits (742), Expect = 1.9e-78 Identity = 146/324 (45.06%), Postives = 199/324 (61.42%), 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
This mRNA is a part of the following gene feature(s):
The following five_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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