
Tan0019718 (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.CACTGCTATATAATGGTAATTGGCAACCACCAGAAACTCACCAGAAAGTTAGAAACTCCATTAAAGGCGCGAGGCCTAAGCTCTGAGAGTGTTTGTCATTGTCAGTAGCAGACTGAGATTCTGAGAGTGAGAGTGATGAAAACCCTAGCGACCTCCAACTCTATCATCGGCAACAATACGGCTCCTCCTTACTTCTCTGCTTCTTCTTTGAAAGAGCGTCTTCTTTCTGGAGGACCTGAATTCATCTCTTATCGGAGGCCGCGGAAATTGGCTGCTTCTGGACTTCAGCATTTGGTGCCTTTGCGCCGGGGAGCCATCAACTTGCTTTCTTGCTTCTCGTCTCAATCGCAGGTCTCTTCCTTCCTCGGTATCGGAAATTCTTGCTTTGTGATGGTTCTACGGTTTCATTTCTTTTCTTTTTTGTTTTCTTGAACAATCTTGGATTGCCGAATTACTTTCTTTCACCATTTTTTTTATTATTTATGGATTCTGAATGAGTGAACAACGATTAAGCTTTGCCATCTTTCTTCCCTGTTTTTGCTTATTTATGGATTCTGGATGAATGATCGGGAGTTAAAGCTTTGCAAATTAAATTACTGTGTCTTTGAAGGAGCTTTCTGAGTTGCGATTTTGCTGATACAAAAGTCTTTCTCTGACTCAAGAGAATGCTATGCCTTCGATCTTGAGTTTTTGAACGAAGTCTCTGTTGTTTAATCACTCATTACTTTGTATGTCTCGACTTTAAGTCAGTTTTTTCACTGAATAAGGGAATCGTTTGCTAAAGATTTATGTTAGATTAAATCAAGAGTGAGAGAAACTTCGGAAGTTTAGAGATGGCTATACAGTTTAGGAGGATGCCTAAATAAGAAAGATTATTGTTGCCAGAAAATCTAGGAAGTGATTGTGGAAAAGATTGTTGTAAGGATGTTCGTATGCTAATAAAATCATCCTGATTTTGGTGGAACTTGTTCTTTGCAGGCAGATACTCAGAATGATGAAATTGAGAATCAAGATACAAGTAAGTCGAGACGATTGATGGTAAATAATTATTTCCTCTGGGAAAATAGCCTGAAATATTTATATCGATATCTTTTATGCAGATCAATCAAAGACCGTTCGCGTCAAATTCCAACTACAGAGAGAGTGCACGTTTGGGGAGCAATTCTTTATAGTAGGTGATGATCCAAGTTTTGGTTCCTGGGACGTTACAAATGCAATACCTTTAAACTGGGCAGATGGGCATGAATGGACAGCTGAAGTGGTGAGTAGAGAGAGACTCATGAAGAACCTAAAAATCTCAATGTAAAGAAATAGGTTTCATAGACGATTTTAATATCTGGTCATGATCTGTTTTGTTTTTTCCAATTTTAGGAGATTCCTATTGGAAAAACTATCCAGTTCAAATTCGTGCTTCAAGGAAAAACTGGAAATGTTGAATGGCAACCTGATCCTGACCGAACATTCCAACCCTGGGAAACAACTAATACAATCATCATTTCTGAAGATTGGGATTGTGCTGAATTACGGATGTTAAGTGAAGAAGAAAAAATTGTTAACCAGGATAAGGATTCTTCCATTGTCCCAGAAAAGTTAATGATCGAGGAGAACCTCACTTATCCAAACGACGAACTGATCAACAAAACAAATAAGGATTCATCAGTTGCACTTGCCGATACTTCAATGGCAGAAAAATCATCAGTGGAGTCACATGAAGAATCGATTGAGGGCAGTAATATATCCGCTTCAGAAGAAAATGGCAGTAATGTCTCTGCATTAGAAGAGAATGCCAGTAACGTTTCTCTTTCAGAGGACAACACTAGCAACATTCCTGCTTCAAAAGAGAATGCCAAAGATATCATGGCAAAGAATATAAGCTCCCCGAAGGAGAGCTTCATTTTGAATACAAGTAGCAAGTCCGTTGGCAAGGTATACAGCAATTCAAATGGGGAGACAAGAATTACATCCCAGTGTGATACAAAGATAACAGAGGAAATTTTGAAGGAAGATGAGAACGATGCAACCGTTAAGATCCTTCGGAATACAGATGTTCTAGAAAGCTTCATGGACCATGGAGTTCCCATTCTAGTTCCTGGTTTACCTCCAACACCAACAATATCAAATCAGGATGCATCTCAACATGAAGTCGTGGTCAAAGATGATGATTCCATCAATGGAATTAATGAATCTAACGATCATAAACTACCTGAGGTAACAGCTTGATCGCCTGACCTACTCTTACCATTTCTTTTCTGTTTCAACTCTTGTTACCACAAAAATCATCCTTACAATTTGTATGCACCACGTATTGTACTTTTGGGGGATATCCCTACTACAAAGGACGTAACATTGATGGCTTAAATGTTTTCAAATAGATATATGGAGAAGATGAAACTTGATATTGACCAAGCGATTAATCTAGTATAATTCCTGATACTAAACCTTGCCTATTTCTGACATAGTTTTATGGGCCAATAATTTCTATTTTGCTTCTTTCTTTTACCGCTAGCAATCCAACTTAGTACAGAACCAAACATTTTTCGTGTCATCAAATTTCGACATAGCTTTTAATGTATGCGTAATCAAGTTTAATGTTGTGCTTCAAATTATACGATCACATTACCTATTAAACTTAAAAACTGCAAATAAACTAGTGACCTGCTAAGATTTGTGTTGAGAATGGGAATTTCACATTAGCTAGGTAAGGGGAAGATGATATGTGTATAAATTAGGACACCATCTCCTTCGGTATGAACTTTTTGGTTGAAGCCAAAAGTAAAGTCAATGAGAGCTTCAAAATAGACAATATCATATGATTGTGGAGATATAAGATAGTCTCGGTGTCCCTAATAAGTAGTATCAAAGTCATGTCCCAAACTTAGTTTAACAAAGGTGGTAAACTTTGATGACAAAGTAATAGTGATCGGTAGATGAGCTCTATTTAATAGGCGATCTACTCCAAAAGAAGAAGAGTTGGCCTAGATAAGAGTAGACTATCGTTGAAGCTAGAGAAGTGGACGGATAGATGACTATTTGAGGTTTGCTCCAAAGAAGAAGAGTTTGCCTGATAAGAGTAGATTCTTGTTGAAGCTAGAGAGGTGGATAGATAGATGACTATTTGAGGGGAAGCTCGGTGGTATTCGAGGGAAGGATTATTTGGAATGTGACTGAAGCCCAGATTGGCTAAATAAAAGGAAGATCATAGGTGTATAAATGATGACAACCATCTTCATTGGTATGAGGCTTTTTTGGTAAAACCAAAAACAAAGTCATGAAGGGCTTATATCCAGAGTGGACAATATCATATCATGGTAAAGATATATAAAGGTTCCATTGTCCCTAACAATTTGATAACCAACTAAAATCACACTTTTGTAAGCATGGACTACAATTCACTAAATGTGCTCAAACACGTGTTGGAAATGTGACCGAAGTTCTACATGGCTAAATAAGGGAGAAATCCATAGGTATATGAGTGAAGAACAATATCTTCATTGCTTTAAGGTCTTTTAGGTGAAACCAAAAACTAAGCCATGGGGGTTTATGTCCGACTATCTAGCTCCAATGAGGGTTTATGTCCAAAATAGACAATATCATACCATTATGGAGATATGTACCGGTCATGCTAATAAAATCCTCAAGTACCAAGCAGAGAAGTGGTGAGCCTCAGAGAGTATAGTCATGGTGTGATTCGTGGTGGAGATTCGGTGGTGTACTTTGGAGACTATGAGTTGACCTAGATAAGAGCAAACTCTCAATGGAGCTAGAGGGTTAGACGAATAGATGACTATTTGAAGGGAGGCTCACTGGTACTCTGTTTGAGGAGAAGTTTGCTGGAAATGCGACCAAAATCTTACCTTTGCTAGATAAGAGCAAGATCATGGGTATATAAGTGAGGGCAACCATCTCCATTGGTATGAAACTTTTTGGCCAAAATCAAAAGGAAACTCACATAGGTTTATATCCAAAGTGGACAATATCATACCATCATGAAGATATGTGGAGGGTTTGTTGTTTAACCAATAATATTACAGTTATGGCTTTGACTTAGCCATATCGGTAGAATTCCTTGGTATCGAACAGAGAAATTGCAAAGTCTCAAGTAGAATTGTGGATGAATCTTCAAATGTTGAACAAATATGATTAGAGGGGGAGGATTGTCAAGAGTGTGCAATAAGGAGTGGTTGGCTCCATGTATCCACAATGTGATCTGTCGAATAGACAGTGTTCTCCAAAATAGAGGAGTTGATCTAGGCGAGAGTGATCTCTCAGTGAAGCCAGAGAGTTGGACGGATAGAATAACTATTTAAAGGGAGGCTGGATAGTACCTTATTCGAGAAGAGAATTGTTGTTGTTGTATTTGTTTGTTCTTTTCTCTCTTTAATAACATTGACCAGTAGGGATAGTTCCTTACCAGTAGAGTAAGGTCTTTACATTCTGAACGATTATTCTTTTTTCTCTCTCTCTCTCTCTCTTTTAAGATTCTGAATCGCGATTAAACAAGATTAATCATTAAATTGGGTAAAGATTTTACAGCCATTGGTTAATGTATTGTGTTATATCGTAGTTATTATGTCTCGTATTTCATTTGTATTAATCTCAGAACATTCAGATGAATCAGAAACAGGATCCTGATGTTGTGGCTGAACAAGAGATGGAGGCGAAGTCAAGCTATAGCGAAGATGTCGTCCAAAGTGAAATTAGACAGGAGGATTACACAAATCAAACTGAAAATGATATCGTTCAAAATGACATAACATGGGGTCATAAAACCCTGAAGAAGTTCCTCTCCAATTTAAGATTGATTTAGCATCACAACTTTATTCAGATTCAGACACTGGAAAAAAGACTTCCAGATTTCCTTTTTTGTGTACATATGGTCTACCACTTCAATTGTTGTATGCTACATGGTAAGATGGCTCAGGTATCGCGTTTGTTTCAATTTGCTTATTTTTTTATCGGACATAAATATTTTCTGTCATTCTGAATGTTTCAATTATTTCCGGACAGGGTTGTAAATACAAAGACGACTATGAAATCGGTTCATTGGCGAATCTGGACTTGCAATGGTATGAAAGATTCTGGTAATTAGAGTCTCTTCTTAAATCTTAGTCATTTGGATTGTATATGTTCAATTCTATAAATACAAAAACGTTCGTTAGTAGCCTGCATTTTAAAGTACCCTTCTTGTCATATATTGTCTTGTTTTCAAGGCTTCATATATTCTGTTTCTATCATGAACCTCACCATTTCTACCTTCATGCCACATTAGAAATTTTTTAGTTCAACATGCATATGAGAATCACATCTAGTTAAACTATAATGCGC CACTGCTATATAATGGTAATTGGCAACCACCAGAAACTCACCAGAAAGTTAGAAACTCCATTAAAGGCGCGAGGCCTAAGCTCTGAGAGTGTTTGTCATTGTCAGTAGCAGACTGAGATTCTGAGAGTGAGAGTGATGAAAACCCTAGCGACCTCCAACTCTATCATCGGCAACAATACGGCTCCTCCTTACTTCTCTGCTTCTTCTTTGAAAGAGCGTCTTCTTTCTGGAGGACCTGAATTCATCTCTTATCGGAGGCCGCGGAAATTGGCTGCTTCTGGACTTCAGCATTTGGTGCCTTTGCGCCGGGGAGCCATCAACTTGCTTTCTTGCTTCTCGTCTCAATCGCAGGCAGATACTCAGAATGATGAAATTGAGAATCAAGATACAAATCAATCAAAGACCGTTCGCGTCAAATTCCAACTACAGAGAGAGTGCACGTTTGGGGAGCAATTCTTTATAGTAGGTGATGATCCAAGTTTTGGTTCCTGGGACGTTACAAATGCAATACCTTTAAACTGGGCAGATGGGCATGAATGGACAGCTGAAGTGGAGATTCCTATTGGAAAAACTATCCAGTTCAAATTCGTGCTTCAAGGAAAAACTGGAAATGTTGAATGGCAACCTGATCCTGACCGAACATTCCAACCCTGGGAAACAACTAATACAATCATCATTTCTGAAGATTGGGATTGTGCTGAATTACGGATGTTAAGTGAAGAAGAAAAAATTGTTAACCAGGATAAGGATTCTTCCATTGTCCCAGAAAAGTTAATGATCGAGGAGAACCTCACTTATCCAAACGACGAACTGATCAACAAAACAAATAAGGATTCATCAGTTGCACTTGCCGATACTTCAATGGCAGAAAAATCATCAGTGGAGTCACATGAAGAATCGATTGAGGGCAGTAATATATCCGCTTCAGAAGAAAATGGCAGTAATGTCTCTGCATTAGAAGAGAATGCCAGTAACGTTTCTCTTTCAGAGGACAACACTAGCAACATTCCTGCTTCAAAAGAGAATGCCAAAGATATCATGGCAAAGAATATAAGCTCCCCGAAGGAGAGCTTCATTTTGAATACAAGTAGCAAGTCCGTTGGCAAGGTATACAGCAATTCAAATGGGGAGACAAGAATTACATCCCAGTGTGATACAAAGATAACAGAGGAAATTTTGAAGGAAGATGAGAACGATGCAACCGTTAAGATCCTTCGGAATACAGATGTTCTAGAAAGCTTCATGGACCATGGAGTTCCCATTCTAGTTCCTGGTTTACCTCCAACACCAACAATATCAAATCAGGATGCATCTCAACATGAAGTCGTGGTCAAAGATGATGATTCCATCAATGGAATTAATGAATCTAACGATCATAAACTACCTGAGAACATTCAGATGAATCAGAAACAGGATCCTGATGTTGTGGCTGAACAAGAGATGGAGGCGAAGTCAAGCTATAGCGAAGATGTCGTCCAAAGTGAAATTAGACAGGAGGATTACACAAATCAAACTGAAAATGATATCGTTCAAAATGACATAACATGGGGTCATAAAACCCTGAAGAAGTTCCTCTCCAATTTAAGATTGATTTAGCATCACAACTTTATTCAGATTCAGACACTGGAAAAAAGACTTCCAGATTTCCTTTTTTGTGTACATATGGTCTACCACTTCAATTGTTGTATGCTACATGGGTTGTAAATACAAAGACGACTATGAAATCGGTTCATTGGCGAATCTGGACTTGCAATGGTATGAAAGATTCTGGTAATTAGAGTCTCTTCTTAAATCTTAGTCATTTGGATTGTATATGTTCAATTCTATAAATACAAAAACGTTCGTTAGTAGCCTGCATTTTAAAGTACCCTTCTTGTCATATATTGTCTTGTTTTCAAGGCTTCATATATTCTGTTTCTATCATGAACCTCACCATTTCTACCTTCATGCCACATTAGAAATTTTTTAGTTCAACATGCATATGAGAATCACATCTAGTTAAACTATAATGCGC ATGAAAACCCTAGCGACCTCCAACTCTATCATCGGCAACAATACGGCTCCTCCTTACTTCTCTGCTTCTTCTTTGAAAGAGCGTCTTCTTTCTGGAGGACCTGAATTCATCTCTTATCGGAGGCCGCGGAAATTGGCTGCTTCTGGACTTCAGCATTTGGTGCCTTTGCGCCGGGGAGCCATCAACTTGCTTTCTTGCTTCTCGTCTCAATCGCAGGCAGATACTCAGAATGATGAAATTGAGAATCAAGATACAAATCAATCAAAGACCGTTCGCGTCAAATTCCAACTACAGAGAGAGTGCACGTTTGGGGAGCAATTCTTTATAGTAGGTGATGATCCAAGTTTTGGTTCCTGGGACGTTACAAATGCAATACCTTTAAACTGGGCAGATGGGCATGAATGGACAGCTGAAGTGGAGATTCCTATTGGAAAAACTATCCAGTTCAAATTCGTGCTTCAAGGAAAAACTGGAAATGTTGAATGGCAACCTGATCCTGACCGAACATTCCAACCCTGGGAAACAACTAATACAATCATCATTTCTGAAGATTGGGATTGTGCTGAATTACGGATGTTAAGTGAAGAAGAAAAAATTGTTAACCAGGATAAGGATTCTTCCATTGTCCCAGAAAAGTTAATGATCGAGGAGAACCTCACTTATCCAAACGACGAACTGATCAACAAAACAAATAAGGATTCATCAGTTGCACTTGCCGATACTTCAATGGCAGAAAAATCATCAGTGGAGTCACATGAAGAATCGATTGAGGGCAGTAATATATCCGCTTCAGAAGAAAATGGCAGTAATGTCTCTGCATTAGAAGAGAATGCCAGTAACGTTTCTCTTTCAGAGGACAACACTAGCAACATTCCTGCTTCAAAAGAGAATGCCAAAGATATCATGGCAAAGAATATAAGCTCCCCGAAGGAGAGCTTCATTTTGAATACAAGTAGCAAGTCCGTTGGCAAGGTATACAGCAATTCAAATGGGGAGACAAGAATTACATCCCAGTGTGATACAAAGATAACAGAGGAAATTTTGAAGGAAGATGAGAACGATGCAACCGTTAAGATCCTTCGGAATACAGATGTTCTAGAAAGCTTCATGGACCATGGAGTTCCCATTCTAGTTCCTGGTTTACCTCCAACACCAACAATATCAAATCAGGATGCATCTCAACATGAAGTCGTGGTCAAAGATGATGATTCCATCAATGGAATTAATGAATCTAACGATCATAAACTACCTGAGAACATTCAGATGAATCAGAAACAGGATCCTGATGTTGTGGCTGAACAAGAGATGGAGGCGAAGTCAAGCTATAGCGAAGATGTCGTCCAAAGTGAAATTAGACAGGAGGATTACACAAATCAAACTGAAAATGATATCGTTCAAAATGACATAACATGGGGTCATAAAACCCTGAAGAAGTTCCTCTCCAATTTAAGATTGATTTAG MKTLATSNSIIGNNTAPPYFSASSLKERLLSGGPEFISYRRPRKLAASGLQHLVPLRRGAINLLSCFSSQSQADTQNDEIENQDTNQSKTVRVKFQLQRECTFGEQFFIVGDDPSFGSWDVTNAIPLNWADGHEWTAEVEIPIGKTIQFKFVLQGKTGNVEWQPDPDRTFQPWETTNTIIISEDWDCAELRMLSEEEKIVNQDKDSSIVPEKLMIEENLTYPNDELINKTNKDSSVALADTSMAEKSSVESHEESIEGSNISASEENGSNVSALEENASNVSLSEDNTSNIPASKENAKDIMAKNISSPKESFILNTSSKSVGKVYSNSNGETRITSQCDTKITEEILKEDENDATVKILRNTDVLESFMDHGVPILVPGLPPTPTISNQDASQHEVVVKDDDSINGINESNDHKLPENIQMNQKQDPDVVAEQEMEAKSSYSEDVVQSEIRQEDYTNQTENDIVQNDITWGHKTLKKFLSNLRLI Homology
BLAST of Tan0019718 vs. ExPASy Swiss-Prot
Match: P0DN29 (Glucoamylase ARB_02327-1 OS=Arthroderma benhamiae (strain ATCC MYA-4681 / CBS 112371) OX=663331 GN=ARB_02327-1 PE=1 SV=1) HSP 1 Score: 70.9 bits (172), Expect = 4.6e-11 Identity = 32/82 (39.02%), Postives = 49/82 (59.76%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy Swiss-Prot
Match: P31797 (Cyclomaltodextrin glucanotransferase OS=Geobacillus stearothermophilus OX=1422 GN=cgt PE=1 SV=1) HSP 1 Score: 59.7 bits (143), Expect = 1.1e-07 Identity = 40/124 (32.26%), Postives = 59/124 (47.58%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy Swiss-Prot
Match: P36914 (Glucoamylase OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) OX=510516 GN=glaA PE=2 SV=2) HSP 1 Score: 59.3 bits (142), Expect = 1.4e-07 Identity = 28/85 (32.94%), Postives = 46/85 (54.12%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy Swiss-Prot
Match: P08704 (Cyclomaltodextrin glucanotransferase OS=Klebsiella oxytoca OX=571 GN=cgt PE=3 SV=1) HSP 1 Score: 56.6 bits (135), Expect = 9.0e-07 Identity = 33/108 (30.56%), Postives = 56/108 (51.85%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy Swiss-Prot
Match: P30270 (Alpha-amylase OS=Streptomyces griseus OX=1911 GN=amy PE=3 SV=1) HSP 1 Score: 53.9 bits (128), Expect = 5.8e-06 Identity = 23/91 (25.27%), Postives = 43/91 (47.25%), Query Frame = 0
BLAST of Tan0019718 vs. NCBI nr
Match: XP_038906171.1 (uncharacterized protein LOC120092050 [Benincasa hispida]) HSP 1 Score: 634.4 bits (1635), Expect = 8.0e-178 Identity = 355/495 (71.72%), Postives = 400/495 (80.81%), Query Frame = 0
BLAST of Tan0019718 vs. NCBI nr
Match: KAG7017230.1 (hypothetical protein SDJN02_19093 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 630.9 bits (1626), Expect = 8.8e-177 Identity = 349/495 (70.51%), Postives = 381/495 (76.97%), Query Frame = 0
BLAST of Tan0019718 vs. NCBI nr
Match: KAG6580479.1 (putative LRR receptor-like serine/threonine-protein kinase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 626.7 bits (1615), Expect = 1.7e-175 Identity = 347/495 (70.10%), Postives = 379/495 (76.57%), Query Frame = 0
BLAST of Tan0019718 vs. NCBI nr
Match: XP_022934469.1 (uncharacterized protein LOC111441639 [Cucurbita moschata]) HSP 1 Score: 626.7 bits (1615), Expect = 1.7e-175 Identity = 347/495 (70.10%), Postives = 379/495 (76.57%), Query Frame = 0
BLAST of Tan0019718 vs. NCBI nr
Match: XP_022983429.1 (uncharacterized protein LOC111482035 [Cucurbita maxima]) HSP 1 Score: 617.8 bits (1592), Expect = 7.7e-173 Identity = 340/495 (68.69%), Postives = 377/495 (76.16%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy TrEMBL
Match: A0A6J1F2P2 (uncharacterized protein LOC111441639 OS=Cucurbita moschata OX=3662 GN=LOC111441639 PE=4 SV=1) HSP 1 Score: 626.7 bits (1615), Expect = 8.1e-176 Identity = 347/495 (70.10%), Postives = 379/495 (76.57%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy TrEMBL
Match: A0A6J1J7C1 (uncharacterized protein LOC111482035 OS=Cucurbita maxima OX=3661 GN=LOC111482035 PE=4 SV=1) HSP 1 Score: 617.8 bits (1592), Expect = 3.7e-173 Identity = 340/495 (68.69%), Postives = 377/495 (76.16%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy TrEMBL
Match: A0A6J1CVP4 (uncharacterized protein LOC111015001 OS=Momordica charantia OX=3673 GN=LOC111015001 PE=4 SV=1) HSP 1 Score: 605.1 bits (1559), Expect = 2.5e-169 Identity = 336/505 (66.53%), Postives = 394/505 (78.02%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy TrEMBL
Match: A0A0A0LA83 (CBM20 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G731790 PE=4 SV=1) HSP 1 Score: 532.7 bits (1371), Expect = 1.6e-147 Identity = 313/492 (63.62%), Postives = 365/492 (74.19%), Query Frame = 0
BLAST of Tan0019718 vs. ExPASy TrEMBL
Match: A0A5D3DMY0 (Carbohydrate-binding-like fold, putative isoform 2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold352G00880 PE=4 SV=1) HSP 1 Score: 489.2 bits (1258), Expect = 2.0e-134 Identity = 295/500 (59.00%), Postives = 335/500 (67.00%), Query Frame = 0
BLAST of Tan0019718 vs. TAIR 10
Match: AT5G01260.2 (Carbohydrate-binding-like fold ) HSP 1 Score: 153.7 bits (387), Expect = 3.8e-37 Identity = 143/467 (30.62%), Postives = 205/467 (43.90%), Query Frame = 0
BLAST of Tan0019718 vs. TAIR 10
Match: AT5G01260.1 (Carbohydrate-binding-like fold ) HSP 1 Score: 152.5 bits (384), Expect = 8.6e-37 Identity = 91/232 (39.22%), Postives = 133/232 (57.33%), 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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