MS008438 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGGCTGTTCCTTCGTACCGCGACATCACCGGGTCACGATCCGGCGGGAAAATTGTTCGAGCTAGGCGAGCTCGGAGTAGGAAGAATCCTTACGAACGTCCTGGACTTTCGAATTTGGGCGCTGGAGGAAACCCTAGTTGGATATCCAGGTTCATTTTCTCGCCTACTCTAACCATTGCTTCCGGCGCCGGAAAGTTGCTCTCTTCTGTCTTCGTTTCCGACTCCGACTCCTCCTCTTCGGACAGTGATTCAGGTTGGTTTGACTGAACTGAATTTTTGTGTATGTTAATTATATGGATTGGAGTGGTTGTTTGGTGTGCTGCGAAATGTAAGCTTGTTTTGAGGAAATGAGAAGTGGAAAGAGTACTGAACTTAGGCACTAGATTTAGAAAGATGGAATGTAGTTTGAACTTCGAACCTTGAAGTTGAATGGGAGAGGGAGGAAGTACTTGAAAGAAGTGAACTACATTTCGTGAACTTAATGGTGTTTGCTGTTAAGTATACGCAGTAAGTCTGGTTAAGGATGCTAGAAGATGAAATTGGGAGGTAATGATGTGGCGTTGGTTAATTGAATTCTAGTTTTTAGTTGTATGATGTGTTTTCCTGATGGGAAAATTTGATCCTTATTTAGGATGCTTAATTAGCCGATATATTTCATTTTCCTAGTTGGTTTAGTTTTCTCGCGTGCTTGCTCTGTCATGAATTTGCGTACTAAAACTATTAGTAAGAGTGCAATTCTAAGTTTCCAACCATATGGTTTCAGATTTGAACCGTGCTACTACTTCAACTGAGCCCCTGACTTGTATTTCAAGGTCATGTCATGATGTCAACTGAAACATGATCTATTTTAGAACAGGAGACTGCATTTTTGTTATAATTATTTTAATGAAAGTTTGATGTAGTAGTTTGTTAGGTGTTTAAATGTTAGGGCTTTCTTTGTATTTTAGCTTAAGTATTTTGTTTTTTAGAATTAGTTGGGTTATTAGGTAGTTACTGGGGTTAACTTTAGTTGGCCATTATTGTAATTAAAGCCTGTTGACCCATAAGCTAAGCCTATATATAAAGGCTAGGCTTCCCCTTTTTGTACACTTTTTGATCATTAATAAAATAACGCTTTTTCTGCTCCACCAAAGTTTACAATCAAGAACCTATACTCCCTTTGGGGAGCTTATAAGAATACACCCCAAGAAGAATCAGTTATGACAAAAGTAGAAATCTCCTGAAGAGTAATGAAACTCTCTAGTGCCCAGCAATCATAAGAGGTGAGAAAATAAACTTGGACATCCATTTAGGGTTTTCTCTGGGGCCCAAAGTGGAATGTCCAAGACGTTATTATGGAGTCTTCCTCTACTAGCTTGCTTGGCTTGAACCATTTTCCCATTAGATTGTGCCTCATGGCTTTACGATGTGCAGAAGCAAACACCACTAAGTTCTTACCGTAAAAATGCTTAGGCGTGAGGGGATTCTTAGTCATGAAAGGAAATGTAGCCTCTCTTGGGAAAATAATTGAAAATTAATGTCTTCTAATGTCAAAAAGACAATACCACCCTTCGTTAAATTTTGATGCTTATTTGATGTGCTGCCAAATTCAAGTTTGTTTTGAGAAGATTAGAAGTAGAAACGGTATTGAACCCCTTTTTTTATAATTTATTTTAATAAGAGCCCTGAAAATTGTATTAAGCAACGAAAAAGAGACAACCTAAGGGCGGGGAGGAGATAACCCTCCCAAAAGAGCTAGAAATGAAAGTCTTCCAATCTGGAAGAATCATAGGGAGAGGATAATTACAAAAGAATTTGCTATAAGTATAGCACCACCACGAGGTTGTAAACTGTAAACCACTCCTGAAAAATAGCTAGGTCAGTAGTAAAAGAGTACTAAACTTAGGCATTATATAAAGGAAAACACAAGTTATAGTTCTTGGATGGGGAACTTGATGGTGTTATGTTTAATCATTAATGTTTGAAGCAAGTATGGCTGAGGATAGTGGAATTGATAAATGGTGTGAATTCATGAGATTTGAAGAAAGTTAGATTGATATCTATCCATTTATTCTTTTAACATTAGATTTTAAGCAAAATTAAGTTGAATTTGATTTCAGTTTCAATACATAGGAGTTGTATGGTTTCATTATTCATTTGAGCTGCAAGTTCTCTGCATTTAGTTTTACTTATATGGCTCTTTTAAAGATCTGTTGTATCTGATTTTAACAGAGGATGATGTTGAAGTTGATGATCACGATGAAAATCATTTCTTCCAGGGAGCTGAAGGGGTGAAGAAGGTAAATAATTTAGATGTAAAATTATGCACTCGTTTAGGTTTTTGTCTCATAAAATTGAAATTAGGTTGCTTGTCTCACTATCGGGCAATTTGTTATGTTGGTAATGTAAAGAATATGTCAATAGTCTAGCAGACATTCTATCGAGTTTAATATGTGATTGTGTTGTAACATCATGTTTTTATACCATCATCCTTATTTTAATTCTTCTCATGGTGAAAGAAAGAGGTCTCATGATTAAGTGATGCAGCGTAATACTATATGGTTTGAAGCTCATATTAATCTTCAGCTAGTGCTACGAGGGGAGGGTATACAAATTAATGAAATACATGAACAGAAGATCTATTCTCGAGTCAACGTGATAGCTATGTGAATAGAATATTCGGGACAAAATTTCTTATAAAAAAAAATGTGACAAAATCAAAGTGATACTATGAATTATGGTATTTGATTTTTAGATTGCAATATCATGTCTGATTGACATTGTTTTGTTGGAAGAATGGGACATCGGAGACGGTTGATTTATTTAGGAAGGACTTTCCACCACAGAAGAAAGATAGCAAACATTTAATTGAACAGCTACTGATGCAGGAGACCTTCTCTAGGTACGGCAATAATATTTTGAGGAGTTATGTCGAAACTTGTTCTTTGTTTCATGTTGTGATTATATCAAATTTTCACTATAATCAAGCCATTGTGCTGATGTATCATGTACCTGATTCAGACATTCTCATGTAATTCTCTATCAATTAACAGGAAAAAGGAATCTTCATTTTGTTTCCTGTGATTAACAATGCTTATCTTGGTTTTACTAGATTGCTAGCGCTTTTATCTTGATGATGAAGGCTATGGTTTTCGGTTTCTTTAGAGTCTTAAACTTCCTGCACATGCTGAAATCAGTTGTTGTTCCCGTTCAAACCAAATTTTCTATATGTTCAATGGTTGATGTTCTCATGGTTAAATAGTTTAGTTCTTGAGTGACAAATGACACTAAATAGAGCTAGGTATTTTCTTTTGAACTACCACTAAAAAGATAACCTTCAGTTATTTGTTACTAGTGACTTCTGATTTGTTCTCACTTACATTCAAGCAGGGCAGAGCGTGACAAGTTATTTCAGATAATTGAATCAAGGGTTGTAGAATTTCAAACCATTGATGCTGAGGCTGCAGGAAGGCTGACTGAAATATCAAACAGAGCAGTTGATAGTGGTACTGTTAATTAATGGTTGACCTTCCAATTTCCTATAAACCACAATTTTAATTTCATGCAACTAATGACTCATGTTCATATTTAGAAAAACAAAAATGTTTATCTCTGAACGAGAATTTAAACTTCATTACCAGACTAAGCTGTGTACAAATTGGTACAGATAATGACAGGCCTGCAGTCTGCAGCACAGCAATTCTTGAGGCAAAAAAATGGTTGAATGAAAAACGATTGGGATTGGGATCTAGTTCGACATCGGACATGGATCATGGGCCATGCACCTTGAATTCCACGATGTTGACAGTGGTTTGTGATTCTTTATTTTGCTGTTCTTAAATGGCACATGAATAATCACGTAGTGGGTGCAATTTTAATTTACATTACAGTTCAAGATTCTTATAAGTTCCCTTGTCATGGACTCCTTTTTCCGAGCAAACGATTTATTTGCATGCATGAACATGTGCTAATTGCCATACATAAGTTTGATTATTACTTGTTAGTTGTTACTCAAGCTTCTTTTAACTGGTTTCTTACATACAATATTATTCTCTTCGACTTTATTCTTCCTTTTCCCTTTCAACACTTTCCCCCCATAATTTCCCCCAAAGTGAAATATTACATTGTATAGGGAAGGGTTTCTATATAGACATCTGATTTGCTTTTGGCTGATTGAACTAAACTTCCAGCTTATTTCTTCAATCAAATTTAAGCCAAACTTACACTTATTTACAAAGGTTTCATCTCATACATTCACTGCTAGTGCTAACTACTTCTCCTCTTTCAAGTATTCATCACTCGCTAATGTTGAACAACAATGATGATAGTAGATTGATGTGGTGGTAATACTAAATCTAGCGTTGGTATGTATCCTTTTATATTGGTTTCTTGGAATATTGAAGTATATGCTGCTGCAGGCTAACGACGAAGAAATGGGTTCACCTGTGGATGTAGCCAAATCATACATGCGGGCACGTCCTCCATGGGCCTCTCCTTCCACGAATAATTTTGAGTTTAAATCTCCTTCACCATTAGGGTTACAGCTTTTCAAAGAAGAAACATCATATTCAATTACTGGAAATCCACTGTCTTCATCTAAGGTACCGTTTTACCCATCGAACGACACTCACAACCCTTCACAAAAACATTTTCCCCTATGTTACAATTTTTTTTTAGTTTTTGCTTCTGTTGCCTTTTCATAGCGACTGAAAAGGAAATTTTGCTGTTAATTGGATGGTCGCTGTTTCAAGTCACGAGGCCATATGAAAGTTCAATCGATGTATATTTTCAAGTTTCTTAAAATGGTAGTAGTATACCTAGAGGACCAACAAATTTGCCCGTAGGTAGAATGTTGTGGTTTTCCCCTTCCATATCCTTATCGTTTGTCTAAAAATTAAAATACATGCTTTTAAGAACATGAGCATGTATATTTCTGTAACACAACCCGTCACCTGTTTGTTGATATTGAAATGCAGATGAAAAGGGAATCTCCTGCCAGTGGATCTTGGAACATCCAGGAGGAGATACGACGCGTGCGGTCAAGAGCAACTGAGGAAATGCTAAGAACTCTCCCATCAGCCAAACTCGATTGGTCTTCACTTACTTCAGACTACAAAAGTAACTTGAGTTCTGTACATTCTGACAACCCGAAAATTCATAGTGAAGATAAAATGCAGCATGCTGCGAAGTTAATAGATAAACCATTGTATTGGTCTGCAGACAATACTGCCACTCATAACTTATCAGGTAAGCATCACTGACACTGTGAATCCTACAATTTCATTTTTTTAGAAGATAATAAAAGTTCTCTTAATTTTCTCTGTAACTTGGAATTCCCTAAACATTGGACCTCATTTGCACTCCTCAGAGTCGAAGATCATACAAGACGTGTCTGAAAATGGAGCCTGCCTGCTCGATACAACCACCATTATTGTGCAACAGGATAAGGTAACAGACGCCCAAAAGGGCATTGTTAGGCCTCCAGTTGTGAACCTATATGCTAGGAGGGGCAAAATGGGAAATTATGTATTTGACAGTTAGAGTTAGTTTTAGGTTCCAGAATCTAGTGAGCAGCCCTCTCGAATTGGCTGGGTGGCTTGTATTCTGTTATTGCCATATCTAAATAAGATTAGATACTTTTGGGCTTTTGCTAATTATTTCTTGCTTGTCGTATGCACATGTTCGGCCGTGTCAAGAATTATTAACTCCATGTTTGCTATATGAAAATTTTGCTAACCCTCTTATAAGTACGTTGTTTATTGATCTTTGTAGATATTTGATTCGGTTCAATTATTCCCTTGCAGGATTTGCAAACCAATCCTACAACTGAGAGGAAAGGTACGTAGTCGGTATAACGTTCCTCATTTTTCTGATGTTGTCGGATTAACCAGTAGTTCCATAGGATTTATTGGAGCACGAACAAGTAGATCTAGGCAGAAAAAAACTATAACTATAAGAATGAAAATATTAAGAGAAGCAAAAACTTTGGTATGCTGCACCTGCACTAGCAATTAATTGGTAAATTGTATTTGCCTTCTCTATGCAGTATCTAATTCAAGTTTAGACGAGAGAGATTGCTCTACAGTACATGAAGTTGCAGGACTGGCCAACGGTTTTTCTCCGGTACCCAGGTATCCCAATGTCTCATCTCTCCCGACGCTTGAATTGAGTAAATTCGGTATAATGGTTGATTTTCTCTTCTTGCATGGCAGTTCTTCTGGGGAACTTGTCGTAGACAACAAAATAGTTGAGGAAAATAATTCATCAGGTCATGACCATGAGGCGAAAGGGCCGCCTGTGGAGGAGCGATGCGAGCTATTAAGTGAAGCATCCATGGAGGTTCCAAATGTGGTTGAATATACCGATAAAGTTCCATCAGAAGGAAACGATATTGGCAAGATCTTGCCAGAAGAAAATGGTGCAACTGCTAGCAAGGAAAAAACTGATGGTGGTAAAGTTAATAACGTAGAGAAGCCAAGCTTACAGAGCAGTGCAGCAGTGGGCAAGAGCGGGGCAACGGCTTATCTGCGACGAGGTAAACGAAGAAAC ATGGCGGCTGTTCCTTCGTACCGCGACATCACCGGGTCACGATCCGGCGGGAAAATTGTTCGAGCTAGGCGAGCTCGGAGTAGGAAGAATCCTTACGAACGTCCTGGACTTTCGAATTTGGGCGCTGGAGGAAACCCTAGTTGGATATCCAGGTTCATTTTCTCGCCTACTCTAACCATTGCTTCCGGCGCCGGAAAGTTGCTCTCTTCTGTCTTCGTTTCCGACTCCGACTCCTCCTCTTCGGACAGTGATTCAGAGGATGATGTTGAAGTTGATGATCACGATGAAAATCATTTCTTCCAGGGAGCTGAAGGGGTGAAGAAGAATGGGACATCGGAGACGGTTGATTTATTTAGGAAGGACTTTCCACCACAGAAGAAAGATAGCAAACATTTAATTGAACAGCTACTGATGCAGGAGACCTTCTCTAGCAGGGCAGAGCGTGACAAGTTATTTCAGATAATTGAATCAAGGGTTGTAGAATTTCAAACCATTGATGCTGAGGCTGCAGGAAGGCTGACTGAAATATCAAACAGAGCAGTTGATAGTGATAATGACAGGCCTGCAGTCTGCAGCACAGCAATTCTTGAGGCAAAAAAATGGTTGAATGAAAAACGATTGGGATTGGGATCTAGTTCGACATCGGACATGGATCATGGGCCATGCACCTTGAATTCCACGATGTTGACAGTGGCTAACGACGAAGAAATGGGTTCACCTGTGGATGTAGCCAAATCATACATGCGGGCACGTCCTCCATGGGCCTCTCCTTCCACGAATAATTTTGAGTTTAAATCTCCTTCACCATTAGGGTTACAGCTTTTCAAAGAAGAAACATCATATTCAATTACTGGAAATCCACTGTCTTCATCTAAGATGAAAAGGGAATCTCCTGCCAGTGGATCTTGGAACATCCAGGAGGAGATACGACGCGTGCGGTCAAGAGCAACTGAGGAAATGCTAAGAACTCTCCCATCAGCCAAACTCGATTGGTCTTCACTTACTTCAGACTACAAAAGTAACTTGAGTTCTGTACATTCTGACAACCCGAAAATTCATAGTGAAGATAAAATGCAGCATGCTGCGAAGTTAATAGATAAACCATTGTATTGGTCTGCAGACAATACTGCCACTCATAACTTATCAGAGTCGAAGATCATACAAGACGTGTCTGAAAATGGAGCCTGCCTGCTCGATACAACCACCATTATTGTGCAACAGGATAAGGTAACAGACGCCCAAAAGGGCATTGATTTGCAAACCAATCCTACAACTGAGAGGAAAGTATCTAATTCAAGTTTAGACGAGAGAGATTGCTCTACAGTACATGAAGTTGCAGGACTGGCCAACGGTTTTTCTCCGGTACCCAGTTCTTCTGGGGAACTTGTCGTAGACAACAAAATAGTTGAGGAAAATAATTCATCAGGTCATGACCATGAGGCGAAAGGGCCGCCTGTGGAGGAGCGATGCGAGCTATTAAGTGAAGCATCCATGGAGGTTCCAAATGTGGTTGAATATACCGATAAAGTTCCATCAGAAGGAAACGATATTGGCAAGATCTTGCCAGAAGAAAATGGTGCAACTGCTAGCAAGGAAAAAACTGATGGTGGTAAAGTTAATAACGTAGAGAAGCCAAGCTTACAGAGCAGTGCAGCAGTGGGCAAGAGCGGGGCAACGGCTTATCTGCGACGAGGTAAACGAAGAAAC ATGGCGGCTGTTCCTTCGTACCGCGACATCACCGGGTCACGATCCGGCGGGAAAATTGTTCGAGCTAGGCGAGCTCGGAGTAGGAAGAATCCTTACGAACGTCCTGGACTTTCGAATTTGGGCGCTGGAGGAAACCCTAGTTGGATATCCAGGTTCATTTTCTCGCCTACTCTAACCATTGCTTCCGGCGCCGGAAAGTTGCTCTCTTCTGTCTTCGTTTCCGACTCCGACTCCTCCTCTTCGGACAGTGATTCAGAGGATGATGTTGAAGTTGATGATCACGATGAAAATCATTTCTTCCAGGGAGCTGAAGGGGTGAAGAAGAATGGGACATCGGAGACGGTTGATTTATTTAGGAAGGACTTTCCACCACAGAAGAAAGATAGCAAACATTTAATTGAACAGCTACTGATGCAGGAGACCTTCTCTAGCAGGGCAGAGCGTGACAAGTTATTTCAGATAATTGAATCAAGGGTTGTAGAATTTCAAACCATTGATGCTGAGGCTGCAGGAAGGCTGACTGAAATATCAAACAGAGCAGTTGATAGTGATAATGACAGGCCTGCAGTCTGCAGCACAGCAATTCTTGAGGCAAAAAAATGGTTGAATGAAAAACGATTGGGATTGGGATCTAGTTCGACATCGGACATGGATCATGGGCCATGCACCTTGAATTCCACGATGTTGACAGTGGCTAACGACGAAGAAATGGGTTCACCTGTGGATGTAGCCAAATCATACATGCGGGCACGTCCTCCATGGGCCTCTCCTTCCACGAATAATTTTGAGTTTAAATCTCCTTCACCATTAGGGTTACAGCTTTTCAAAGAAGAAACATCATATTCAATTACTGGAAATCCACTGTCTTCATCTAAGATGAAAAGGGAATCTCCTGCCAGTGGATCTTGGAACATCCAGGAGGAGATACGACGCGTGCGGTCAAGAGCAACTGAGGAAATGCTAAGAACTCTCCCATCAGCCAAACTCGATTGGTCTTCACTTACTTCAGACTACAAAAGTAACTTGAGTTCTGTACATTCTGACAACCCGAAAATTCATAGTGAAGATAAAATGCAGCATGCTGCGAAGTTAATAGATAAACCATTGTATTGGTCTGCAGACAATACTGCCACTCATAACTTATCAGAGTCGAAGATCATACAAGACGTGTCTGAAAATGGAGCCTGCCTGCTCGATACAACCACCATTATTGTGCAACAGGATAAGGTAACAGACGCCCAAAAGGGCATTGATTTGCAAACCAATCCTACAACTGAGAGGAAAGTATCTAATTCAAGTTTAGACGAGAGAGATTGCTCTACAGTACATGAAGTTGCAGGACTGGCCAACGGTTTTTCTCCGGTACCCAGTTCTTCTGGGGAACTTGTCGTAGACAACAAAATAGTTGAGGAAAATAATTCATCAGGTCATGACCATGAGGCGAAAGGGCCGCCTGTGGAGGAGCGATGCGAGCTATTAAGTGAAGCATCCATGGAGGTTCCAAATGTGGTTGAATATACCGATAAAGTTCCATCAGAAGGAAACGATATTGGCAAGATCTTGCCAGAAGAAAATGGTGCAACTGCTAGCAAGGAAAAAACTGATGGTGGTAAAGTTAATAACGTAGAGAAGCCAAGCTTACAGAGCAGTGCAGCAGTGGGCAAGAGCGGGGCAACGGCTTATCTGCGACGAGGTAAACGAAGAAAC MAAVPSYRDITGSRSGGKIVRARRARSRKNPYERPGLSNLGAGGNPSWISRFIFSPTLTIASGAGKLLSSVFVSDSDSSSSDSDSEDDVEVDDHDENHFFQGAEGVKKNGTSETVDLFRKDFPPQKKDSKHLIEQLLMQETFSSRAERDKLFQIIESRVVEFQTIDAEAAGRLTEISNRAVDSDNDRPAVCSTAILEAKKWLNEKRLGLGSSSTSDMDHGPCTLNSTMLTVANDEEMGSPVDVAKSYMRARPPWASPSTNNFEFKSPSPLGLQLFKEETSYSITGNPLSSSKMKRESPASGSWNIQEEIRRVRSRATEEMLRTLPSAKLDWSSLTSDYKSNLSSVHSDNPKIHSEDKMQHAAKLIDKPLYWSADNTATHNLSESKIIQDVSENGACLLDTTTIIVQQDKVTDAQKGIDLQTNPTTERKVSNSSLDERDCSTVHEVAGLANGFSPVPSSSGELVVDNKIVEENNSSGHDHEAKGPPVEERCELLSEASMEVPNVVEYTDKVPSEGNDIGKILPEENGATASKEKTDGGKVNNVEKPSLQSSAAVGKSGATAYLRRGKRRN Homology
BLAST of MS008438 vs. NCBI nr
Match: XP_022139984.1 (protein KAKU4 isoform X1 [Momordica charantia]) HSP 1 Score: 1063.5 bits (2749), Expect = 6.2e-307 Identity = 557/569 (97.89%), Postives = 559/569 (98.24%), Query Frame = 0
BLAST of MS008438 vs. NCBI nr
Match: XP_022139992.1 (protein KAKU4 isoform X2 [Momordica charantia]) HSP 1 Score: 1057.4 bits (2733), Expect = 4.5e-305 Identity = 556/569 (97.72%), Postives = 558/569 (98.07%), Query Frame = 0
BLAST of MS008438 vs. NCBI nr
Match: KAA0038758.1 (protein KAKU4 [Cucumis melo var. makuwa]) HSP 1 Score: 783.5 bits (2022), Expect = 1.2e-222 Identity = 427/577 (74.00%), Postives = 480/577 (83.19%), Query Frame = 0
BLAST of MS008438 vs. NCBI nr
Match: TYK31371.1 (protein KAKU4 [Cucumis melo var. makuwa]) HSP 1 Score: 777.3 bits (2006), Expect = 8.9e-221 Identity = 426/577 (73.83%), Postives = 479/577 (83.02%), Query Frame = 0
BLAST of MS008438 vs. NCBI nr
Match: XP_011652528.1 (protein KAKU4 isoform X1 [Cucumis sativus] >KGN60166.1 hypothetical protein Csa_002571 [Cucumis sativus]) HSP 1 Score: 766.1 bits (1977), Expect = 2.1e-217 Identity = 420/576 (72.92%), Postives = 474/576 (82.29%), Query Frame = 0
BLAST of MS008438 vs. ExPASy Swiss-Prot
Match: Q949W6 (Protein KAKU4 OS=Arabidopsis thaliana OX=3702 GN=KAKU4 PE=1 SV=1) HSP 1 Score: 191.0 bits (484), Expect = 3.6e-47 Identity = 149/360 (41.39%), Postives = 198/360 (55.00%), Query Frame = 0
BLAST of MS008438 vs. ExPASy TrEMBL
Match: A0A6J1CEG9 (protein KAKU4 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111010755 PE=4 SV=1) HSP 1 Score: 1063.5 bits (2749), Expect = 3.0e-307 Identity = 557/569 (97.89%), Postives = 559/569 (98.24%), Query Frame = 0
BLAST of MS008438 vs. ExPASy TrEMBL
Match: A0A6J1CFJ1 (protein KAKU4 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111010755 PE=4 SV=1) HSP 1 Score: 1057.4 bits (2733), Expect = 2.2e-305 Identity = 556/569 (97.72%), Postives = 558/569 (98.07%), Query Frame = 0
BLAST of MS008438 vs. ExPASy TrEMBL
Match: A0A5A7T7C0 (Protein KAKU4 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold92G003100 PE=4 SV=1) HSP 1 Score: 783.5 bits (2022), Expect = 6.0e-223 Identity = 427/577 (74.00%), Postives = 480/577 (83.19%), Query Frame = 0
BLAST of MS008438 vs. ExPASy TrEMBL
Match: A0A5D3E734 (Protein KAKU4 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G006770 PE=4 SV=1) HSP 1 Score: 777.3 bits (2006), Expect = 4.3e-221 Identity = 426/577 (73.83%), Postives = 479/577 (83.02%), Query Frame = 0
BLAST of MS008438 vs. ExPASy TrEMBL
Match: A0A0A0LJF9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G881790 PE=4 SV=1) HSP 1 Score: 766.1 bits (1977), Expect = 1.0e-217 Identity = 420/576 (72.92%), Postives = 474/576 (82.29%), Query Frame = 0
BLAST of MS008438 vs. TAIR 10
Match: AT4G31430.1 (unknown protein; LOCATED IN: plasma membrane; EXPRESSED IN: 25 plant structures; EXPRESSED DURING: 15 growth stages; Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 191.0 bits (484), Expect = 2.5e-48 Identity = 149/360 (41.39%), Postives = 198/360 (55.00%), Query Frame = 0
BLAST of MS008438 vs. TAIR 10
Match: AT4G31430.3 (unknown protein; LOCATED IN: plasma membrane; EXPRESSED IN: 25 plant structures; EXPRESSED DURING: 15 growth stages; Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 191.0 bits (484), Expect = 2.5e-48 Identity = 149/360 (41.39%), Postives = 198/360 (55.00%), Query Frame = 0
BLAST of MS008438 vs. TAIR 10
Match: AT4G31430.2 (unknown protein; LOCATED IN: plasma membrane; EXPRESSED IN: 25 plant structures; EXPRESSED DURING: 15 growth stages; Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 184.9 bits (468), Expect = 1.8e-46 Identity = 193/576 (33.51%), Postives = 273/576 (47.40%), 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:
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