MS010239 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.GGATGCGACGGGTCGGTGCTGCTGGAGGACCAACCCGGCATCGACAGTGAATTGAACGCACCTCCCAACAGTGGGATCCAAGGCCTGGACATCGTCGACAGCATCAAAGCCGCAGTGGAGAGCTCTTGCCCGGGCGTTGTTTCCTGCGCTGACATCTTGGCCATTGCATCTCAAGTTTCTGTTGTATTGGTAAATCTAAATCTAAATCTAAATCATTGGCTTAAAGCTGTGTTGGTTGGTTCAATAAATAAATCAATCAATTGATTTTGCAGTCGGGAGGGCCAGCTTGGATAGTTCCACTTGGAAGAAAAGACAGCAGAGTAGCCAATAGATCCGCAACCACAAATCTGCCCGGTCCATCTGAACCGCTTACGTCGCTCAAAGCCAAGTTCGGGGCTCTCGGGCTTGACTCCACCGATCTTGTGGCTCTGTCAGGAGCGCACACGTTCGGTCGTGCCAGATGCTTCTTCTTCACCGGACGGTTCGACAACTTCAACAGCACCGGTCTGCCGGACCCGACGCTGGACCCGGTCTACAGGGAGCAGCTTCGCCAAATGTGTACCACTCCAGTAACACGAGTGAATTTCGACCCCACCACACCAGACAAGTTCGACAAAAATTACTACAACAACCTGCAGAGCCACCGCGGGCTTCTCCAGAGTGACCAAGAGCTGTTCTCCACGCCCGGGGCCGACACCATTGGCATAGTCAACAGATTCGCGGGCAGCCAGCTTCTGTTCTTTATTCAGTTTGGGAATTCCATGATCAAAATGGGGAATCTAAGCCCTCCACCTGGCACCCCATCGGAAGTCAGATTGAACTGTAGGCGGGTCAACCCATCCAGTGCCGCCCATGATGTTATGTAAGTTTCTGCTGTTTGATTTCCGGGCTGTGTTATGTTATCTTATGTAAGTTTCTCATACGGTTAATTGATGCGATGTTGTGTTTCCCCTTCGTTTTTCTCCGTTGTCGTCCCTGTGGAGATTAATAAAACTGGATTACTGTGGGAACTTTAATTACTTCACTGATCATCCATCCATTATATGTCGCCCCATTAATTAGCTACGGTTTGTATTACATAATTACATTCACATGCTTTGGCTTGTGTTCGAACCAAAACACTAGTCTTTCAAGAAATGTCAATGTGTTAGGAAAAAAAAATGCCATCTAAATGTGATGTAATAAAAACCAAGTCAATAACATACTATTTCTACAACTAACCTGATTATCCAAATAACAAAGTTTCTAAACGGAATTTTTGTATTTGAAATAGACGATTTAGGGAGTTTGACTAAATTACACAAACAACTAAATTAAAACTAAACTTAAACTAGTGGGATTAGATTGAAGACGAAATTCAAAATTTTGTCAAAATTATAGAGACTAATTAAATTTATAATTTTACCCCTCTCTCTCTCAATTATATAAGCTAGGCTTGAAAATAAAAAATTACGGCCCGTTTAATAAATTGTAACTTTTATTTTATTTTAACTTTTTGAACTTTAATAATAAAGTAGGAGAATTTGAACATTCATTTTTTGAGATGTACTATAGTAATATATTGTCAATTGAAATATATTTATTAAGAAACTGAGATGCTAATTAGATAATCATTGGGGCAAAAGTATTAAATATATACCAAAATATTAATTTCTCTATTACACTTACGCACTTGTATATTATATTCCCTATTGAATAAATAAATAATCATAAATGACATTGTTGTCCTTAAGTTTTAAACTTCACTCGTTTGTAATTGGTTGATCTCAATATTTTTCAGTTTTTATTTTTTATTTTCACAACATCGTTAAATTGTGATTAAAGCTAACTAGATATTTCTATGAGAAATAATGGGCATTTTCATAATATTTCCTTTATTTTTCTTCTCTTTTTGTACATTGTCCAAATTTTCATTAATAAAGAATTCTCAAGTTTTAGGGGAGAGATGACCAACTCATGAACATGCCGGCTCATGCTTGGGGGCTAAAATTAAAATTTAATAAATGACTAAATATTTTTAAATAATATTTATAAGGATCCATTTAAGTAACTTAAAAAACTATGTACTTATTATAATTGAAATTTATGAGGGAGAATGAAATACCTGCACATTGATATAATTATAATTAACTTAATTACAATATTATGAATATCATAATTAAGATTACATTTTTATCCAAAAAGTAAAATTTTGACCGTTTAAACCACATAGTTATACGGAAAAACAATTTGATTTAAAAAAAACAAAAACAAATAATTAATTAGATAATTAAAGAGAACAAAATTAGTTTTTATCTCTAAACTTGGCGAGATGAATGAATTTTTACTTTAAATTTTTAATTTGATCAAATTGGACATAGACTTTAATAAACACTGTAATCCTTATCTTGAACTTTGAGGAGAGTTGCCATTTTTACCTTTAATATGATTTTATTTAAAAATTTGTTAAAAAGTAATTATTGTGTGAGTTCAAATAATCACAAAAGTTAGTGCAGAGAAGTTTTGAGTGATTTATCCCGTTACCAATTTTGTGCATGGATAAAGCTTAATTTTATGTCATGTTTGACTTTCATGAAATGAGTAAGTTTTAGTATATTTTACATTTTTTTTTTTTGGGATAAAATCAATAGCGAACCTAAAAGAACTTGAATATAAGGTAAATATTGTAATATTTTTCTAACTTTGATGTTGAATTGAATGAAATTTAAAATTTAGGGTGAAATATTTCCTCTTGTAAAAATTATTCTTTTGCATAATTAAAAGTGCTCCAAAAATCCATTTTTATACGAGATTTTTCCTTTTAAAAGAAAAGGTATGATAAAAAAAAAAAAGTCTTCTATATTAATTTTGAAAAAAGTCTAATTTCATAATTAATAAATTAAATATTAATTTAATGTAATTATTTATTTTCTGGCCCTCTAGTACCTTGGAAGGTCCGGCCGTGTAGTAGAGAGTAGAGAGGGAAGGAGACATTTTCTAGAGAGATTTCTACAATTATACCAATTTGAGGATTAAATTTTATAATCAATATTTTATAGAATTATAGGCATAATCGTAACAATTACTATCATCGAATTTAAGGATGCGTAGTGGAATATAGGCAATTCTTTATTACTTTTAAAGGCTACTTTCGTAGTTCTGCCTCCCCAGTCCCGACGACCGACGACATGGCCACTCCCAAATTCTTACCATGAGAAAAAATTAAAAAATTAAAAATGGGAAACCGAAGTTTGAAAACGAATCATAATAATAAAATAAAGGTTAAATACTATTTGGGTGTATCTACTCTATCTGATTCATTTTAATTTTTATATTTTTAAAATATTTATTTTGATTTGATTCATTTTATCATTTTGGTCCAATAATTTTAAAAAATAATTATTTTGGTTCTTTAGTTTTATTTTCAATCTCCTTTTTTCTATCAAAATTTTACTCGTGATACTATATTTAATATATTTCTTGAAATGTAACAATTACTTTATATTAATGAGTTTCTGTTATGTGTAAAATTATCACTTTTTAAAATTATTAGAGACTAAAATGAACGTTTGAAAAATATAAAAACTAAAATAAACAAAAATTAAAAGTATATGTCAATCTAACAACCTCTTAGTTGGAGATATATGTCAATTATCGCTGAGTTATATTTGCTTTCGCACCAAAAATAAAAGTATATAAATTAAAATAAAAATAATATTTTAACCTAAAAAGAAAAAAAAATCGTATAATATTAAAGTAAAAGGGTCCGCGAGCCGCCCAACGCCAAAGCAACGCCTTGGCTTGCGTTCATTATAGTGAAAGCGATGGCTAAGGTAATATAGTAATATATATATAATTGCTATTTTATATTATTTTAATTGATTATTTTACGTTCTTGAAAACTTTTACAGGCAACTGTCTCCGTTTTATGAGCCAATCAACTCCGAGGAAGATAATTCAGAAGTAGATCGAGGACTATTTTGCAAACAAAAGCTATGTCGAGGACTGGAATCCAAACCAACCCTACTCCTGCCCCTTCTTTCTTCAAAGTCTTCCTTTCCGTTCCGTTTCTATTGAAAATTTTAAAGATTTTATAGTTATTATTTTGTTTACTCGTTTAATTGGTAGTCCACTCTTTTTAACAAATAATAAATAGGAGCCCGTGGCCCTAATAACAGGGGAGCTTCCTTAGTCTAAGAGAGTTTATGAGGTGTGTTACAACATAGTTTCCTTCGATATATTTTTCAAATATAAAGAGTTTATTTTGAGTATTAGCAAACTTGTATCGTTGAAAAATTATTCAAACACAAGAGATTAAATTGAAATATTTTCAACAGAAACATACTAACATTAAAGAAACTAAAACGTAATGTAATTAATACTAAAAAGATTTAAAGACAAATTTGAAAGTGGTAAATTATATGCAAAAATTAAAATTAATCTCAAACTATACATCAGCTAATAATTTAATAATATTGAACTTATTTAACTTTGGCTTTAAGAAAAAAAAAAACATGTGGGTTATTCGGTGTGGGGAAAATGGAAAAGAAAAGTGTAAGTAAGAAGTGAACNAAAAAAAAAAAGAAAAAAAAAAGAATAGATTTTGAACTTTAAAGTTTAAAGTAATATAAAAAAGAAAAGAAAAGAAAAGAAAAGATTCCTTTGATTTGCTGTAATGTAAATTCTAAACTGTAATGGTAATATTTCAAAGGAAAAAGAAGAAAGTAAAAAGTGAGAAACGTGGGCTGATTGATTAAGAACTGGCTTTATTGACTTGACTAGTATGCTCACGTGGGGACCACCCGGCAACTACTTTCCTACTCCCATCCCCCTTGCCTTTATTGTTTATTATTATATTATTATTTCAATAAATCCTAGGCGCCCTTTCTATCACGTGCGTGGTGGGGACTCGGGAATAAGGTTCTCCCTTCTCTCTTCCATTTTCTAATTGCCTCCTTTAAATAACAAATTAATTTCTCAATTTTAGTTCATAATAATTTAATATTTATATTTTTAAATCGATAATAAATTAATTCTTGAACTTTAATAAGTACAGTTTAATTTCTGTGCTTTAAATTTTGTATGAATTTAGTTTTCATTCTAAAATTTTTTGTTAAGATTTAATAAGATTTTTTTATATATGTAGACTATTGTTAAATTGATGATGGACTAAATATATTTATAATTACAAAGATATGGTAAAAATTAACTTAATTTTAATGACATTGTTTACCATAAAACTAAATGGTTACAAATTTTAAATTTGAGAAACTAAATCATTATAAACTAAAATTAATGGTCTAAATTATTGTCAATTCCTAAGTATATGTACTAAATCATTATAAATTAAAATTTAGGAATTTAATTGTTATTTAAATAAAAGTACAGCATCTTCCGATTTATTTTTAAAATTTAATTAGAATTTTATATGGTAGGTCATCCACTTTGTATCACGTAGAATCTCAGTTTTCTTTCTTTTTTTTTCTTTCTGTTAATTAATTAATTTAAAATATTCTATTTATTTTAGATGAATGTGCAGTTCTATCTTTGATCAAGTCAAAATCTGGACCATAAAACCCAGCTTATGAAAGTCACAACCTCATTAATACTATTTATTATTTTTCTAATAAAACGTTATTGAGATGGAGAATTAGATTGGAGTTGGTGTTTATCAGACACATTAATACTATTATGACTATGAATATGTGTATGTAACAAATTAATTAACGTAGGATGAGCGACAATGTAACGACTTATCCTACCATAATGATGATTAGACATATGATATTAATGGAAGATAATAGAAAAAAATGTATGAACGGTGAACACACGCCTCAAAATATCGTCTATAGTTTATCCTCTCTTTTGGGGGTGTGTTTTGGCAGCCATGGGAGCCCCACTGATTGAATGAATCTCTATAAAACGATGCTCCATATGTGGTGGTTTTCTCACCAATCCCATCTCCTCCTCCCCAAAAAAAAAATGGGCTCTTACAATGCAGTAGCCGCCTTCCTTTTGTTTGTGAGTCTCTTTTTGGGAGGCTCTTTGGGTCAACTGAGCGAGAACTTCTACGACTCTACTTGCCCACGCCTCCCCAACATTGTCCGCCGCGAGGTCAAGAGAGCTATCGATACCGACATCCGTGCCGGGGCAAAACTCATTCGCTTCCATTTCCACGACTGCTTCGTCCAGGTAATATCCTCTATCCTGTAATTTTTTAAAAAAATTTTATTTGCTCTCGGTCTCAATGGATTCAGTATTCTATTTCTAAATAAGCTTTAATTTTGCAGGGTTGTGACGGTTCTGTTTTGCTAGAGGATGATCCCGGGGCCGGCATAGTGAGCGAGCTCAACGGACTTGGAAATTTGGGAATCCAAGGGCTCGAGATTGTGGACGCCATCAAAGCCGCCGTGGAGGCTGAATGTCCCGGCGTCGTCTCCTGCGCCGACATCCTAGCTCAGGCCTCTAAAGATTCTGTCGACGTGGTACGTACTAATAATTTCCACTACTCCCAACTTCAAAAATTCAAATGGGTTCAATAACTATTATTATTATTATTTTTTTTTTTAAATTTGGCAGCAAGGAGGGCCTAGCTGGAGGGTCTTATACGGGAGAAGAGATAGCAGAACGGCCAATAAAACAGGGGCGGATAACCTCCCCAGTCCCTTCGAAACTCTGGATCCACTCAAGAAAAAGTTCGAAGATGTTGGCCTCAATTCCACCGATCTTGTGGCTTTATCTGGTAACCCTCTTCACAATTACACACGCAAATAATGTTAAGAGCATTGGGAATGGGAATCAACGCAGTGGGTTTTGTGTAAAAAACAGGGGCTCATACGTTCGGTCGGTCGAGATGCCTCTTCTTCAACGGGCGTTTCTCCAACTTCAGCGGGAGCGGGCGGCCGGATCCGACGCTGGACCCGGCGTACAGGCAACAGCTGGAGCGAGCTTGTACGGATGGGCAAACGCGAGTGAACTTCGATCCAACGACGCCGGACACATTTGACAAGAATTACTACACCAACCTTCAAGCCAATCGAGGACTTCTCACCAGTGACCAAGTGCTGTTCTCCACTCCTGGGGCCGACACAATTGACATTGTCAACCTTCTTGGCTCGCGAGAAGGCACCTTCTTTAGACAATTTCGCCTCTCCATGATTAAGATGGGGAATATCAGACCTTTAACTGGAAATCAAGGGGAAATCAGAAGAAATTGCAGGAGGGTCAAC GGATGCGACGGGTCGGTGCTGCTGGAGGACCAACCCGGCATCGACAGTGAATTGAACGCACCTCCCAACAGTGGGATCCAAGGCCTGGACATCGTCGACAGCATCAAAGCCGCAGTGGAGAGCTCTTGCCCGGGCGTTGTTTCCTGCGCTGACATCTTGGCCATTGCATCTCAAGTTTCTGTTGTATTGTCGGGAGGGCCAGCTTGGATAGTTCCACTTGGAAGAAAAGACAGCAGAGTAGCCAATAGATCCGCAACCACAAATCTGCCCGGTCCATCTGAACCGCTTACGTCGCTCAAAGCCAAGTTCGGGGCTCTCGGGCTTGACTCCACCGATCTTGTGGCTCTGTCAGGAGCGCACACGTTCGGTCGTGCCAGATGCTTCTTCTTCACCGGACGGTTCGACAACTTCAACAGCACCGCTTTAATTTTGCAGGGTTGTGACGGTTCTGTTTTGCTAGAGGATGATCCCGGGGCCGGCATAGTGAGCGAGCTCAACGGACTTGGAAATTTGGGAATCCAAGGGCTCGAGATTGTGGACGCCATCAAAGCCGCCGTGGAGGCTGAATGTCCCGGCGTCGTCTCCTGCGCCGACATCCTAGCTCAGGCCTCTAAAGATTCTGTCGACGTGGTACGAGGGCCTAGCTGGAGGGTCTTATACGGGAGAAGAGATAGCAGAACGGCCAATAAAACAGGGGCGGATAACCTCCCCAGTCCCTTCGAAACTCTGGATCCACTCAAGAAAAAGTTCGAAGATGTTGGCCTCAATTCCACCGATCTTGTGGCTTTATCTGGGGCTCATACGTTCGGTCGGTCGAGATGCCTCTTCTTCAACGGGCGTTTCTCCAACTTCAGCGGGAGCGGGCGGCCGGATCCGACGCTGGACCCGGCGTACAGGCAACAGCTGGAGCGAGCTTGTACGGATGGGCAAACGCGAGTGAACTTCGATCCAACGACGCCGGACACATTTGACAAGAATTACTACACCAACCTTCAAGCCAATCGAGGACTTCTCACCAGTGACCAAGTGCTGTTCTCCACTCCTGGGGCCGACACAATTGACATTGTCAACCTTCTTGGCTCGCGAGAAGGCACCTTCTTTAGACAATTTCGCCTCTCCATGATTAAGATGGGGAATATCAGACCTTTAACTGGAAATCAAGGGGAAATCAGAAGAAATTGCAGGAGGGTCAAC GGATGCGACGGGTCGGTGCTGCTGGAGGACCAACCCGGCATCGACAGTGAATTGAACGCACCTCCCAACAGTGGGATCCAAGGCCTGGACATCGTCGACAGCATCAAAGCCGCAGTGGAGAGCTCTTGCCCGGGCGTTGTTTCCTGCGCTGACATCTTGGCCATTGCATCTCAAGTTTCTGTTGTATTGTCGGGAGGGCCAGCTTGGATAGTTCCACTTGGAAGAAAAGACAGCAGAGTAGCCAATAGATCCGCAACCACAAATCTGCCCGGTCCATCTGAACCGCTTACGTCGCTCAAAGCCAAGTTCGGGGCTCTCGGGCTTGACTCCACCGATCTTGTGGCTCTGTCAGGAGCGCACACGTTCGGTCGTGCCAGATGCTTCTTCTTCACCGGACGGTTCGACAACTTCAACAGCACCGCTTTAATTTTGCAGGGTTGTGACGGTTCTGTTTTGCTAGAGGATGATCCCGGGGCCGGCATAGTGAGCGAGCTCAACGGACTTGGAAATTTGGGAATCCAAGGGCTCGAGATTGTGGACGCCATCAAAGCCGCCGTGGAGGCTGAATGTCCCGGCGTCGTCTCCTGCGCCGACATCCTAGCTCAGGCCTCTAAAGATTCTGTCGACGTGGTACGAGGGCCTAGCTGGAGGGTCTTATACGGGAGAAGAGATAGCAGAACGGCCAATAAAACAGGGGCGGATAACCTCCCCAGTCCCTTCGAAACTCTGGATCCACTCAAGAAAAAGTTCGAAGATGTTGGCCTCAATTCCACCGATCTTGTGGCTTTATCTGGGGCTCATACGTTCGGTCGGTCGAGATGCCTCTTCTTCAACGGGCGTTTCTCCAACTTCAGCGGGAGCGGGCGGCCGGATCCGACGCTGGACCCGGCGTACAGGCAACAGCTGGAGCGAGCTTGTACGGATGGGCAAACGCGAGTGAACTTCGATCCAACGACGCCGGACACATTTGACAAGAATTACTACACCAACCTTCAAGCCAATCGAGGACTTCTCACCAGTGACCAAGTGCTGTTCTCCACTCCTGGGGCCGACACAATTGACATTGTCAACCTTCTTGGCTCGCGAGAAGGCACCTTCTTTAGACAATTTCGCCTCTCCATGATTAAGATGGGGAATATCAGACCTTTAACTGGAAATCAAGGGGAAATCAGAAGAAATTGCAGGAGGGTCAAC GCDGSVLLEDQPGIDSELNAPPNSGIQGLDIVDSIKAAVESSCPGVVSCADILAIASQVSVVLSGGPAWIVPLGRKDSRVANRSATTNLPGPSEPLTSLKAKFGALGLDSTDLVALSGAHTFGRARCFFFTGRFDNFNSTALILQGCDGSVLLEDDPGAGIVSELNGLGNLGIQGLEIVDAIKAAVEAECPGVVSCADILAQASKDSVDVVRGPSWRVLYGRRDSRTANKTGADNLPSPFETLDPLKKKFEDVGLNSTDLVALSGAHTFGRSRCLFFNGRFSNFSGSGRPDPTLDPAYRQQLERACTDGQTRVNFDPTTPDTFDKNYYTNLQANRGLLTSDQVLFSTPGADTIDIVNLLGSREGTFFRQFRLSMIKMGNIRPLTGNQGEIRRNCRRVN Homology
BLAST of MS010239 vs. NCBI nr
Match: KAG7010241.1 (hypothetical protein SDJN02_27033, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 642.5 bits (1656), Expect = 2.4e-180 Identity = 343/506 (67.79%), Postives = 369/506 (72.92%), Query Frame = 0
BLAST of MS010239 vs. NCBI nr
Match: TYK21665.1 (peroxidase 2-like [Cucumis melo var. makuwa]) HSP 1 Score: 587.0 bits (1512), Expect = 1.2e-163 Identity = 327/576 (56.77%), Postives = 354/576 (61.46%), Query Frame = 0
BLAST of MS010239 vs. NCBI nr
Match: KAA0040042.1 (peroxidase 2-like [Cucumis melo var. makuwa]) HSP 1 Score: 584.3 bits (1505), Expect = 7.8e-163 Identity = 326/578 (56.40%), Postives = 354/578 (61.25%), Query Frame = 0
BLAST of MS010239 vs. NCBI nr
Match: XP_022153740.1 (peroxidase 2-like [Momordica charantia]) HSP 1 Score: 508.1 bits (1307), Expect = 7.1e-140 Identity = 250/255 (98.04%), Postives = 252/255 (98.82%), Query Frame = 0
BLAST of MS010239 vs. NCBI nr
Match: KAE8649482.1 (hypothetical protein Csa_017971 [Cucumis sativus]) HSP 1 Score: 473.0 bits (1216), Expect = 2.5e-129 Identity = 291/621 (46.86%), Postives = 327/621 (52.66%), Query Frame = 0
BLAST of MS010239 vs. ExPASy Swiss-Prot
Match: P19135 (Peroxidase 2 (Fragment) OS=Cucumis sativus OX=3659 PE=2 SV=1) HSP 1 Score: 311.2 bits (796), Expect = 1.7e-83 Identity = 165/257 (64.20%), Postives = 188/257 (73.15%), Query Frame = 0
BLAST of MS010239 vs. ExPASy Swiss-Prot
Match: Q9LEH3 (Peroxidase 15 OS=Ipomoea batatas OX=4120 GN=pod PE=1 SV=1) HSP 1 Score: 288.9 bits (738), Expect = 8.8e-77 Identity = 155/260 (59.62%), Postives = 181/260 (69.62%), Query Frame = 0
BLAST of MS010239 vs. ExPASy Swiss-Prot
Match: P11965 (Lignin-forming anionic peroxidase OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 266.2 bits (679), Expect = 6.1e-70 Identity = 139/260 (53.46%), Postives = 182/260 (70.00%), Query Frame = 0
BLAST of MS010239 vs. ExPASy Swiss-Prot
Match: Q9FG34 (Peroxidase 54 OS=Arabidopsis thaliana OX=3702 GN=PER54 PE=2 SV=1) HSP 1 Score: 265.8 bits (678), Expect = 8.0e-70 Identity = 139/260 (53.46%), Postives = 177/260 (68.08%), Query Frame = 0
BLAST of MS010239 vs. ExPASy Swiss-Prot
Match: Q42578 (Peroxidase 53 OS=Arabidopsis thaliana OX=3702 GN=PER53 PE=1 SV=1) HSP 1 Score: 263.5 bits (672), Expect = 4.0e-69 Identity = 141/260 (54.23%), Postives = 173/260 (66.54%), Query Frame = 0
BLAST of MS010239 vs. ExPASy TrEMBL
Match: A0A5D3DDS0 (Peroxidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold859G00280 PE=3 SV=1) HSP 1 Score: 587.0 bits (1512), Expect = 5.8e-164 Identity = 327/576 (56.77%), Postives = 354/576 (61.46%), Query Frame = 0
BLAST of MS010239 vs. ExPASy TrEMBL
Match: A0A5A7T9E3 (Peroxidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold366G00090 PE=3 SV=1) HSP 1 Score: 584.3 bits (1505), Expect = 3.8e-163 Identity = 326/578 (56.40%), Postives = 354/578 (61.25%), Query Frame = 0
BLAST of MS010239 vs. ExPASy TrEMBL
Match: A0A6J1DHN9 (Peroxidase OS=Momordica charantia OX=3673 GN=LOC111021183 PE=3 SV=1) HSP 1 Score: 508.1 bits (1307), Expect = 3.4e-140 Identity = 250/255 (98.04%), Postives = 252/255 (98.82%), Query Frame = 0
BLAST of MS010239 vs. ExPASy TrEMBL
Match: A0A6J1JA81 (Peroxidase OS=Cucurbita maxima OX=3661 GN=LOC111483968 PE=3 SV=1) HSP 1 Score: 460.7 bits (1184), Expect = 6.3e-126 Identity = 225/255 (88.24%), Postives = 242/255 (94.90%), Query Frame = 0
BLAST of MS010239 vs. ExPASy TrEMBL
Match: A0A6J1FUW9 (Peroxidase OS=Cucurbita moschata OX=3662 GN=LOC111449029 PE=3 SV=1) HSP 1 Score: 457.6 bits (1176), Expect = 5.3e-125 Identity = 224/255 (87.84%), Postives = 241/255 (94.51%), Query Frame = 0
BLAST of MS010239 vs. TAIR 10
Match: AT5G06730.1 (Peroxidase superfamily protein ) HSP 1 Score: 265.8 bits (678), Expect = 5.7e-71 Identity = 139/260 (53.46%), Postives = 177/260 (68.08%), Query Frame = 0
BLAST of MS010239 vs. TAIR 10
Match: AT5G06720.1 (peroxidase 2 ) HSP 1 Score: 263.5 bits (672), Expect = 2.8e-70 Identity = 141/260 (54.23%), Postives = 173/260 (66.54%), Query Frame = 0
BLAST of MS010239 vs. TAIR 10
Match: AT5G19880.1 (Peroxidase superfamily protein ) HSP 1 Score: 255.8 bits (652), Expect = 5.9e-68 Identity = 137/261 (52.49%), Postives = 173/261 (66.28%), Query Frame = 0
BLAST of MS010239 vs. TAIR 10
Match: AT2G38390.1 (Peroxidase superfamily protein ) HSP 1 Score: 247.3 bits (630), Expect = 2.1e-65 Identity = 136/261 (52.11%), Postives = 171/261 (65.52%), Query Frame = 0
BLAST of MS010239 vs. TAIR 10
Match: AT2G38380.1 (Peroxidase superfamily protein ) HSP 1 Score: 245.4 bits (625), Expect = 8.0e-65 Identity = 136/260 (52.31%), Postives = 166/260 (63.85%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (TR) 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.
|