Bhi07G001351 (gene) Wax gourd (B227) 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.ATAAATTCTTTTAGAATCTTTCTTAAAATATTTTGATTACTATTTTATGTGTACAATGAAAGTGAAATGGATGCATATTAAAATGCACCAAAATATTGCTCAATTCATGAACCGTTCCTTCTGTCAAGAAAGCAAATTAAAATAGATTAGTAAATGTCTTCCTCAGTCGCCCCACCTTGCAGACAGCCCCACAAGCAGTGCCAAATTTGTTGAAAATCAGCTGAACGTGACACTTTCGATCCTCTTTCCATACAATATACCTAAACTTTTTTATCCAAAAAGAGATACTAGGAAGGAAGAGAGGAGCCATCAGCCAGCTATTGAACAACTAAGAAAGATCCTTCTGTTACCTTTTGTCTTAAAAACTTCTAATATATAACGTTGAATTGTGGACATCCAAGCTCATCAAACTCTGTGATAAGGATGGGATTTTCCAGAGGAATAATGGAATTGCCCCTTTTGAGCTTCATCTTTTTGTGCATATTATTTGCAGTCCCTTCTTGTGCTAGATATTACACACCTCCGAGTGTTCCACGTTTGACGGATCTCGTTCCTCATGTCTCAATCGATCAATGCTTTGCTAAGATTTTTGGGGCCTCAAATATCCAGCTGAGGAATAATGGGTCCTCTGTCGATCTCACTCTTGACAAAGTTTCTGGTAAATTTTATCTTTTGATCTTGGCATTTATTTTTGGTCCAACTCTATTTTCATTCATAACTTTTTCTCTGCTCGTTTTTGGAGGTGCTGGTCTGGTCTCGAGAAACAAGTATCATTATGGATTCTTCAGTGCTTCAATTAAGCTTCCAGCGGGTCTCACTTCAGGGGTTGTAGTGGCCTTTTATGTAAGCTTTTTTGTTCCCCCTTACCATTCTCTGTTTGGCTTACCAAAAGGTGAATAACTAACGAGACAGGGGCCGCGTTCAGTTGTCTAATGCAGATGTTTATCCCCATTCTCATGACGAGATTGACATAGAGCTGCTAGGACATGACAAGAGAAAAGATTGGGTCATTCAAACAAATATCTATGCCAATGGAAGCGTTAAGACTGGAAGAGAAGAGAAATTCTACCTCTGGTTTGATCCCAGCGTGAAATACCATGATTACACCATCATTTGGAACAACTATCACACAGTGTAAGTGCATGAAATTCAATCAGTAAAATCAAACCAAAAGGCAGGATCATTGTTTTCAAAAACAGGTCTTTGGATTTCCCTAGTTTTCTAAAAGGTGCCTCGAAATGCAAGCAGGTTTCTGGTGGATAACATTCCAGTCAGAGAGCTACGAAATTCTGAAGCTTTTTATCCATCAAAACCCATGTCAGTTTTCGTCACGATATGGGATGGTTCAGAATGGGCAACTCATGGAGGAAAATACCCAGTTGACTACAAGCATGCACCATATGTAGCTTCTTTTGAAGAAATGGAGATTAATGGAAGTATATCAACACCAACGGCCACTGTTCCTTCAGGTTCCAAAACCAATGTCTCAAGCCCAGATACCGTGGAGGGTCCAGAATTTATCAAGCTATCACAGCAGCAAATAGATGCAATGGATTGGGCAAGGAGGAAGCTCATGTTCTACTCCTATTGTAAAGATACATCTAGATACAGAGTTCTACCACCGGAGTGCAAATAGATGTACTTTTCCTAATTTTTTACTTATTGCTAAGATTCTTTCATCGTGAATTCTAAGTTAGGAAGAAAATGGGTATCGTAGTCTGGTACAGCAGACGTTAGGGAACCTCCAAAGTAAGACACGGGATGGAAAGAGAAGGAAGATGTTTGTCTTTGTGCTTCTCTCTTGTTTTTTGTATTTTTCTTTTGTTTGAAAAAAAAATCTTTTTTCCTTTCCCTTTCCGTGTATGGGGAAACAAAGGCGCTGGCTTATTTGGTCTATGGGACAAGTAAAAAAACCACTGTCAGAGATACACGAACTGGATCCCACTTGACAGATCTAAGACAAGGCAAATAACTTTATCTAAAAAGATGTGCCAAAGACAAGAAACATCTCTCGTGGTGATGGCAATGCCATTTCGGTTTAGAGTTTTTGACATCAAAGACAAAGATGCTGGTCGATGACTGAAGGGAGAAGCAAACCTCCACGAAAGTTTCATCGGAGCCATAAAAAAGGAAGAATTTTCCAGCAAGGTCCTGGTAAGCTTTAAATTTGACTTCCTAGAATCTTCTCCAGGAACGCCAAGCTCTCAAGGGCTACTCCCGTGAGCTTACAAACTGCATGGAGATGGAAGATTAGTTTTTATAATACAGTAAGATTGAGTATTTTGTAAGTTACAGCACTACATGAACTATAAAGAAGTTAAATCAATGTGGCAACTACCAGATTCGCCTGGTCAAATAAAATTTAAAAGATATTAAATTACACAAGGCCAGAAGCATCTTCCATAGATGCAACAGAACCCACCTCCTTTTTAAACCACCCAAATCAATGTGATCTCAGATCTGACAGCTACGGAGAAATCAAAGCAGCCTGTCCTAGATGAAATGAGAAATACATTAAGAGACTGGGCATGGGGGCATATTATGGATGCTTGACGCACGTGATAGGCATGGAGGCAAATCATGGATGCTTGACGCGCGTGCGCTGCTAATCAAAGTGTAGTAATCTTGTTAACTAAGCTTTGTGCAAAATCAATGTTCTAAATAATAACTCAACTAAAGCCGAAAAACGATAAAGCATAATAAAAAATAAGGAGCAGAAAAGGAAGAGCTTTGCATTATAGAAACATAAATTCCTGTGGCTATCTTAGTACTGAATTACAAAGCATAATCATAGCCATATTCATGTATGCTTACAGCACAAGCACGAAACATAAAGCCTGATGGTCTAATGACTCAGTTTTTCCTAATCTTTGAAAATGTTCCTGTTTCGGAGAAGTAGGTGCTTTGGGTTCCACTGCCTAGCTGGTTCAAATGGGCCTGAGGATTTGACAGCTCAATTCCCTGAAAGAGAAAATAATGATGATGATGATGATAATAATTCTGTAATCTTGACATTAAGCACCCAGGCAGTGTCGTGACAAGAACAATTACTTCCGAGGAATTTAGATAACATAGGAGGAGATTAGGAGACCAGGAGGAAAGAAAAAATACTGACTTGTACAGGAGTAAATGCCAAACTTGAGGTCAGCCCGGATGTAGCACCACTGCTTCCATAGCGTTTTTCCTTGAACCTGAATGTAATTTAAGAAGATAAGTAAAAGAAAACAGAACGAAGCAAATGATAGGCTACAAATACCCATTCCCCCTTCTTTGTAATAATTATTATTATCAGGATCGGCTCAATGACTTGACTTACTTCTTAACAACTTTTGCAGCAAGCTTGCTTTGAGCAGCAGATACACGTAACTTGCCACTCCCAGCCTGACCAAGCATTCCATACCCTTCCCCCAATCCATCACCTGTTGTTGCATAGGGGAAAAGTGTGAAATATTTATTAAGAGTACTCTTATTCAGGAAATAAAATTAAGAGAGGATTTTTTTTTTAAAGATAGAACCAACTGCTTTCATTGAGGAGAAAATTGAAAGAATAGAAGGGCATACAAAAAACCACGCCTACAAAAACCCCATAGAGAAAGGGTTTCCAACTAAATAAGGTATTGCCCAGGGAATAATTACAAAAAGTCTTCTAAATCGAAACCCAAAGAGAAACATGAAACCTCGCTAGGACCTCTCACCACAAAAACCTTTATTCAGAATATTACTGCAGAATGCTTCAAACATTTTTTTTTTCCATTCAGAACAATTTTCAAAACACGGCTGATATTCAGAACATACTTTGGATATGAAACATTCCTGAAAAAGGACAAACTCAAGACTGACAACTTGACAACTCAAGCTTGTTCAACGGCAGAACATTGCATCTCATTCCAAAGTGTAACATGAAACGTAGCAGAATCAAGACACCAATCTGAACAATCCAGACTATTCAGAAATGAAAGAATGCTTTACCTAAAGAACTCTCTTCAGGCACCCCAAACTGCATTCTGTTAGCTAGCTTCCTCATCTCTGTTGTTGCATATCTGACAAGGAAAACAATATCAATCTATGAATGGGAAAAGTGCATGAGATCAAGGCTTCTACTATTAGGAAGAGGAGATGAAAGAAAAATGTAGCATAACAGTACCTTTCCTTCATCTTCCTTAATCGACGGCCACCTCTCTTCTTTTTGGGTTCGGAATCAGGGACCGGAAGTGGTTTTGGTTGTTTTGCAGGTGGAGGTTCTTGCCACTTCTCAATTTTCTTAAGGATCTCATCTTTGAAGGCTCTACCAGTCTTCCCAGTAGGATCCCCCCTGGTGGAGTCAACCCGTGCTGCGAGTGTTGACTTTGCAGATATGAGTCGACAAGCACGCATCTTCAAAGGAGGAGGTGTTGATTGGAATATCTCTGTTTGCTCAATATAACCTACTCGAAATTGTGAGGTCGCTGTGGAAAACCCAGCAAGATTTTTTTTCTTTGCACCAAGAAGCTGAACATTGCAAGCAGGCATCTTAGCTAAAGCAGCAAGACCACCAGCAGTTCCCATTAGTTTTGCTGCAACAGCACTTCCAACTATCGCTGAAAGATTTGGTGCAATAAATCCCATTCTACTTTCAACAAAATTAAGGACCATTTTCTTTGCCGAATCTAAAGCAAGAGCTCGATCACATGCATCAATTGTTTTCTGGAGAATTTCATCTGGAAGTGGCTTTCCACTTGTGGTAGATGCTGTAACAGAGACAACCATAATGACAGCAGAGGGTAAAAGCCCTTCTAAATCTACAAGAGTCAAATCCATTTCATTCCCAATCTTCTTAACAACTCGAGCATAATCGATTGGATGGTGAACAAGTGATTCGAGCTCTGGAAACTTCAGTCGATATTTATCACGTATAAAATTGTGAATAATAATAATTTCATTCTCAATATCCACAGACAAGGCGTTACACTCTACAATCAATTGGTACTCAGGATCATCTTCCAAAACGAATCCCTGATTTGAGATATTGGAATCTGTCCGCAATGCATCTTCCACTTTCTGTAAATTCAGATGCCAACAAATCCCATCAAAATTACTTCCGCACAGATGGGGGAAGGGGGAAGTATAGTGAACATCATTTATGAACACTAATAATATCAAACATCTAAATGAGAGGAGTTGTAGTTGTAAAAACATCATGACTTCCAATAGTAGAATAGAAAATGCATCATAACTTCCAAATATTTTCAAAAACCGCAAATTTAAATTTATTCAGGGGGAGATGAATTGCAAGAAATCCAATAATTATACAGTAACCCAGAACCTATCATTCACTGGGGTCGGGGCGCCAACGAGAAGTTGGTGGAGTGGTGTTATTATAGCCCACTCCATGTTTGGGGCACCAAATATAATAGTGATGTATACAACTATTTATAACCTATAATTAAGTATAGTAAATATTATTTCATAACCTTTTTTCCTACAGTATTAACTATTTGTCACTCATTTTCTATTTTCTTCTTTGCTACAATGTTTACTATTTTCTACCCAAACAAAAATAGTTTACACCTTAAATACAAACTATTATAACCCAAACTAAAATAGTCCGCACCCCAAACCCTAACTATTATAACCCACCAACTATAATATCTACGGACTATAATAACCAACTCAACACCCCAAACGCCCCCTCCCTAAAAGGTTAGAATAATAGACAACAAACCAAGGATCAAATGTGTTCATTGGCTCTCTTTTAACCCCTTTCTGTCCAAGCCAAACCGAGGCCAACAAGGAAACTTTCATGTGAACTAACCTGCATAATATCGTTGTATCTCTGTGTTTGCTGCAATTTTGATACGCTATCCAGATCATCATAATTTAGGCTTTCTAGGTCGGCAAGGTCCCCATCAATATCCTCTTCCATATTTTCGGCATCAGCATCTTCTTTAGCCTGTAAAAATCCAATAACTATTGCCTCAAAATATAAGATAGATGGATTCACACTACTACCAACCAACATAAATATGACTTCATTTCCACGGATAAGTAAAGAGCATTTACTAACCACAAAATTATCTTCATCAGAGAGTTCATCAAGATCTGCTAGAAAAGAATCAGCCAAAGTAGCCTACAAAACCCAAGAAAAGAAACTGAAAATTAATAAACAAGATAGATTCTGCACCGTACCAAGTTGAAAAGCCTAATGAAAGTATAAAATAAACAAGTCAGTTAGAGTTTACATTCAAAAACATAGCAACTAAACTTAACCGGCATACAAAAGAAAGTGCTGAAACCTAAACGTAACATGAATGCAAGCAAAAGAAAAAAAGTTACTGACCATTTTCTAAGCTTCGCTAGAAGATTTATAAAGCCTCCCTGGTCGTAATCAATTCAGCACCAAGTTGAAGAATAGCTGAATATCAATTTTTCAATTTGCAGGGTTAAGAGAACATACATATATAAACCTAAATGAATAAAACCACACTCAAATGCTTTTACACAAAAGGAAATCCCTAACCTCTGATCAAAATGTTCTCCAATTTCTTACAAAAAGGGAACCGAAGCACAGCAGATGAGATTTCACGGATGAACGAGAAGAAAGAACGCCAATGAAGTTACGAAAGAGCGGGAAAAGCTGGTGGTGGCTCGTGGTCGATGGAAATAGTGAACCACAGAGGAAGAGAGAACAATCGAATTGAACGCCCGTCTTTCTTCGCCG ATAAATTCTTTTAGAATCTTTCTTAAAATATTTTGATTACTATTTTATGTGTACAATGAAAGTGAAATGGATGCATATTAAAATGCACCAAAATATTGCTCAATTCATGAACCGTTCCTTCTGTCAAGAAAGCAAATTAAAATAGATTAGTAAATGTCTTCCTCAGTCGCCCCACCTTGCAGACAGCCCCACAAGCAGTGCCAAATTTGTTGAAAATCAGCTGAACGTGACACTTTCGATCCTCTTTCCATACAATATACCTAAACTTTTTTATCCAAAAAGAGATACTAGGAAGGAAGAGAGGAGCCATCAGCCAGCTATTGAACAACTAAGAAAGATCCTTCTGTTACCTTTTGTCTTAAAAACTTCTAATATATAACGTTGAATTGTGGACATCCAAGCTCATCAAACTCTGTGATAAGGATGGGATTTTCCAGAGGAATAATGGAATTGCCCCTTTTGAGCTTCATCTTTTTGTGCATATTATTTGCAGTCCCTTCTTGTGCTAGATATTACACACCTCCGAGTGTTCCACGTTTGACGGATCTCGTTCCTCATGTCTCAATCGATCAATGCTTTGCTAAGATTTTTGGGGCCTCAAATATCCAGCTGAGGAATAATGGGTCCTCTGTCGATCTCACTCTTGACAAAGTTTCTGGTGCTGGTCTGGTCTCGAGAAACAAGTATCATTATGGATTCTTCAGTGCTTCAATTAAGCTTCCAGCGGGTCTCACTTCAGGGGTTGTAGTGGCCTTTTATTTGTCTAATGCAGATGTTTATCCCCATTCTCATGACGAGATTGACATAGAGCTGCTAGGACATGACAAGAGAAAAGATTGGGTCATTCAAACAAATATCTATGCCAATGGAAGCGTTAAGACTGGAAGAGAAGAGAAATTCTACCTCTGGTTTGATCCCAGCGTGAAATACCATGATTACACCATCATTTGGAACAACTATCACACAGTGTTTCTGGTGGATAACATTCCAGTCAGAGAGCTACGAAATTCTGAAGCTTTTTATCCATCAAAACCCATGTCAGTTTTCGTCACGATATGGGATGGTTCAGAATGGGCAACTCATGGAGGAAAATACCCAGTTGACTACAAGCATGCACCATATGTAGCTTCTTTTGAAGAAATGGAGATTAATGGAAGTATATCAACACCAACGGCCACTGTTCCTTCAGGTTCCAAAACCAATGTCTCAAGCCCAGATACCGTGGAGGGTCCAGAATTTATCAAGCTATCACAGCAGCAAATAGATGCAATGGATTGGGCAAGGAGGAAGCTCATGTTCTACTCCTATTGTAAAGATACATCTAGATACAGAGTTCTACCACCGGAGTGCAAATAGATGTACTTTTCCTAATTTTTTACTTATTGCTAAGATTCTTTCATCGTGAATTCTAAGTTAGGAAGAAAATGGGTATCGTAGTCTGGTACAGCAGACGTTAGGGAACCTCCAAAGTAAGACACGGGATGGAAAGAGAAGGAAGATGTTTGTCTTTGTGCTTCTCTCTTGTTTTTTGTATTTTTCTTTTGTTTGAAAAAAAAATCTTTTTTCCTTTCCCTTTCCGTGTATGGGGAAACAAAGGCGCTGGCTTATTTGGTCTATGGGACAAGTAAAAAAACCACTGTCAGAGATACACGAACTGGATCCCACTTGACAGATCTAAGACAAGGCAAATAACTTTATCTAAAAAGATGTGCCAAAGACAAGAAACATCTCTCGTGGTGATGGCAATGCCATTTCGGTTTAGAGTTTTTGACATCAAAGACAAAGATGCTGGTCGATGACTGAAGGGAGAAGCAAACCTCCACGAAAGTTTCATCGGAGCCATAAAAAAGGAAGAATTTTCCAGCAAGGTCCTGGGAACCGAAGCACAGCAGATGAGATTTCACGGATGAACGAGAAGAAAGAACGCCAATGAAGTTACGAAAGAGCGGGAAAAGCTGGTGGTGGCTCGTGGTCGATGGAAATAGTGAACCACAGAGGAAGAGAGAACAATCGAATTGAACGCCCGTCTTTCTTCGCCG ATGGGATTTTCCAGAGGAATAATGGAATTGCCCCTTTTGAGCTTCATCTTTTTGTGCATATTATTTGCAGTCCCTTCTTGTGCTAGATATTACACACCTCCGAGTGTTCCACGTTTGACGGATCTCGTTCCTCATGTCTCAATCGATCAATGCTTTGCTAAGATTTTTGGGGCCTCAAATATCCAGCTGAGGAATAATGGGTCCTCTGTCGATCTCACTCTTGACAAAGTTTCTGGTGCTGGTCTGGTCTCGAGAAACAAGTATCATTATGGATTCTTCAGTGCTTCAATTAAGCTTCCAGCGGGTCTCACTTCAGGGGTTGTAGTGGCCTTTTATTTGTCTAATGCAGATGTTTATCCCCATTCTCATGACGAGATTGACATAGAGCTGCTAGGACATGACAAGAGAAAAGATTGGGTCATTCAAACAAATATCTATGCCAATGGAAGCGTTAAGACTGGAAGAGAAGAGAAATTCTACCTCTGGTTTGATCCCAGCGTGAAATACCATGATTACACCATCATTTGGAACAACTATCACACAGTGTTTCTGGTGGATAACATTCCAGTCAGAGAGCTACGAAATTCTGAAGCTTTTTATCCATCAAAACCCATGTCAGTTTTCGTCACGATATGGGATGGTTCAGAATGGGCAACTCATGGAGGAAAATACCCAGTTGACTACAAGCATGCACCATATGTAGCTTCTTTTGAAGAAATGGAGATTAATGGAAGTATATCAACACCAACGGCCACTGTTCCTTCAGGTTCCAAAACCAATGTCTCAAGCCCAGATACCGTGGAGGGTCCAGAATTTATCAAGCTATCACAGCAGCAAATAGATGCAATGGATTGGGCAAGGAGGAAGCTCATGTTCTACTCCTATTGTAAAGATACATCTAGATACAGAGTTCTACCACCGGAGTGCAAATAG MGFSRGIMELPLLSFIFLCILFAVPSCARYYTPPSVPRLTDLVPHVSIDQCFAKIFGASNIQLRNNGSSVDLTLDKVSGAGLVSRNKYHYGFFSASIKLPAGLTSGVVVAFYLSNADVYPHSHDEIDIELLGHDKRKDWVIQTNIYANGSVKTGREEKFYLWFDPSVKYHDYTIIWNNYHTVFLVDNIPVRELRNSEAFYPSKPMSVFVTIWDGSEWATHGGKYPVDYKHAPYVASFEEMEINGSISTPTATVPSGSKTNVSSPDTVEGPEFIKLSQQQIDAMDWARRKLMFYSYCKDTSRYRVLPPECK Homology
BLAST of Bhi07G001351 vs. TAIR 10
Match: AT1G10550.1 (xyloglucan:xyloglucosyl transferase 33 ) HSP 1 Score: 389.0 bits (998), Expect = 3.5e-108 Identity = 188/299 (62.88%), Postives = 229/299 (76.59%), Query Frame = 0
BLAST of Bhi07G001351 vs. TAIR 10
Match: AT2G01850.1 (endoxyloglucan transferase A3 ) HSP 1 Score: 273.9 bits (699), Expect = 1.6e-73 Identity = 127/270 (47.04%), Postives = 186/270 (68.89%), Query Frame = 0
BLAST of Bhi07G001351 vs. TAIR 10
Match: AT1G14720.1 (xyloglucan endotransglucosylase/hydrolase 28 ) HSP 1 Score: 266.2 bits (679), Expect = 3.4e-71 Identity = 124/270 (45.93%), Postives = 184/270 (68.15%), Query Frame = 0
BLAST of Bhi07G001351 vs. TAIR 10
Match: AT1G32170.1 (xyloglucan endotransglucosylase/hydrolase 30 ) HSP 1 Score: 257.3 bits (656), Expect = 1.6e-68 Identity = 120/267 (44.94%), Postives = 174/267 (65.17%), Query Frame = 0
BLAST of Bhi07G001351 vs. TAIR 10
Match: AT4G18990.1 (xyloglucan endotransglucosylase/hydrolase 29 ) HSP 1 Score: 243.4 bits (620), Expect = 2.4e-64 Identity = 120/275 (43.64%), Postives = 172/275 (62.55%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy Swiss-Prot
Match: Q8LC45 (Probable xyloglucan endotransglucosylase/hydrolase protein 33 OS=Arabidopsis thaliana OX=3702 GN=XTH33 PE=1 SV=2) HSP 1 Score: 389.0 bits (998), Expect = 4.9e-107 Identity = 188/299 (62.88%), Postives = 229/299 (76.59%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy Swiss-Prot
Match: Q8LDS2 (Probable xyloglucan endotransglucosylase/hydrolase protein 27 OS=Arabidopsis thaliana OX=3702 GN=XTH27 PE=2 SV=2) HSP 1 Score: 273.9 bits (699), Expect = 2.3e-72 Identity = 127/270 (47.04%), Postives = 186/270 (68.89%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy Swiss-Prot
Match: Q38909 (Probable xyloglucan endotransglucosylase/hydrolase protein 28 OS=Arabidopsis thaliana OX=3702 GN=XTH28 PE=2 SV=1) HSP 1 Score: 266.2 bits (679), Expect = 4.8e-70 Identity = 124/270 (45.93%), Postives = 184/270 (68.15%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy Swiss-Prot
Match: Q38908 (Probable xyloglucan endotransglucosylase/hydrolase protein 30 OS=Arabidopsis thaliana OX=3702 GN=XTH30 PE=2 SV=2) HSP 1 Score: 257.3 bits (656), Expect = 2.2e-67 Identity = 120/267 (44.94%), Postives = 174/267 (65.17%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy Swiss-Prot
Match: Q8L7H3 (Probable xyloglucan endotransglucosylase/hydrolase protein 29 OS=Arabidopsis thaliana OX=3702 GN=XTH29 PE=2 SV=1) HSP 1 Score: 243.4 bits (620), Expect = 3.3e-63 Identity = 120/275 (43.64%), Postives = 172/275 (62.55%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy TrEMBL
Match: A0A0A0KQA3 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis sativus OX=3659 GN=Csa_5G602120 PE=3 SV=1) HSP 1 Score: 615.1 bits (1585), Expect = 1.5e-172 Identity = 290/310 (93.55%), Postives = 297/310 (95.81%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy TrEMBL
Match: A0A5D3CYT9 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold35G00930 PE=3 SV=1) HSP 1 Score: 613.2 bits (1580), Expect = 5.9e-172 Identity = 292/310 (94.19%), Postives = 298/310 (96.13%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy TrEMBL
Match: E5GBK2 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis melo subsp. melo OX=412675 PE=3 SV=1) HSP 1 Score: 613.2 bits (1580), Expect = 5.9e-172 Identity = 292/310 (94.19%), Postives = 298/310 (96.13%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy TrEMBL
Match: A0A1S3BEI9 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis melo OX=3656 GN=LOC103489017 PE=3 SV=1) HSP 1 Score: 613.2 bits (1580), Expect = 5.9e-172 Identity = 292/310 (94.19%), Postives = 298/310 (96.13%), Query Frame = 0
BLAST of Bhi07G001351 vs. ExPASy TrEMBL
Match: N0DX87 (Xyloglucan endotransglucosylase/hydrolase OS=Cucumis sativus OX=3659 GN=xth29 PE=3 SV=1) HSP 1 Score: 603.2 bits (1554), Expect = 6.1e-169 Identity = 284/303 (93.73%), Postives = 291/303 (96.04%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Wax gourd (B227) v1
Date Performed: 2021-10-22
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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