PI0009150 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAAAGTTCATCTGTCCCTCAAAACACGAATACTAAAGTAGGTCCCAACAGACTTGAGTTAGAACAAGCACAACCATGCGGCGCAGATGAGCAAGTTGCTCCTAGCTACATCGTCCTGAAACATGGAAAAGGGAAGGTGTTGCTGGAACACATGCCAGAAACTATAAACCTCACCGATGAGTTGGAGGTAGACATCGATGATAGGAGCGATGTGCTCGCATTCATCTCAGAAAGGAAGAGAAAAAGAGAGGAAGGGGAAAAGGAAAGAAAGGCGGCTGAAGAACGCCAAAAAGAAAAAGAAGAGCACGAACTGAAAAGATTAGAGGAATGCTGAAAGGCAAAGGGAAAGCATCTTGAAGAACACTCTCTGCCCAACGATATCGCCTTGATTCACCAAAAGATCAAGGAAAAGCTTTCCAAGGTCTCCTTTGAGAAGACAAAGGAGACAATGGCGGCGCTGAAGACCATTATCCAGAATAAGGAAAAGAAGAAAGAGATGCTCGCCCAATTGGACGAGTAGGTTGCGGATCTCCCAGTGAAATGCAAGGCGCTAGGAGGAGAGAAAGACGACCTCGAAACCTTGGCAGAGGACTTCGAGGAAAAGCTGAAGGCGATGAGTCCAATTGAACAAGGACCATCGCCTAAGAAACAAAAGGGGGTCGTCAGGCCATCCAAGATAAAGAAGAAAACGGAGACATTTAGACCTGAGGAACCCCAACCTTGCGGCGAAACTAAAGCGAAAGAGCCCACAATCAACACCATAATCAAAATAGAGAAAGGGTTATTTTCCTTCAATGGACCCCTTCCTGACTTCCTCTATGCGCCAATCCAGGCGTTTGGATGGAAGAAATTTTTCAAAGGGCACACCAAGCTGAAGATGGGTGTGGTAAAGAAATTCTACGGCGCAAAACCCAACGTCAAGGATTTTAGCATCCAAATAGGGGAAAAGAAGGTGAGCTTCAACGAGGCCATCAACGACCTATTCGAATTGCCCAATGATGCAGACACCAGGACACGGGTATGTAGTCAGGCCTACAAAGATACAGACCCGTGAAGTGTTAGAAGTGATCGTCTGGCCTGGGGCTACGTGAAAGATAATACCTACTGGGAAATATCAACTACATCCACACCAATTAACTACTGAGGCGAATGTGTTGTTGTTCTTCATTAAAAAAAAATTTCCTACGCGCCGTGACAGCACCATCAACTTGGAGTCTGCCATGCTCATTTATTGTATTTTGAAGAGATAACATGTCAATCTAGGCGAATTAATCAACACCACCATCTTCTCTTGGATGGAAGCAAGCCCAAAGGCATGCCCTATCCCTCAACAGTTAAGGCTCTTTGCCAGCGAGTTCTCCCTTATTTGAATGCCCTTCCCCCAGTGCAAATTTCAGACGGGCTTTGCAACCGAGCGTCTTTAAACTGCATGATCACTCTCTAGGTGCACAAGGAAGTGGAAAGGCGTTTAAAGACACTTGACAAAGAAGAAGAAGATGGAGGCGAGACTCAGGTAGAACCCCTCAAGAGAAAAGCCTCTGCCTCCGCATCAACCCCCAAAACCAATTGCAAAAAAACCAAAGGTTGGTGCGCAGGCCACCCAAACCCCTCAAGATAATACACCCCTTCTCACGCCCTAAAAAGCGAGCTTCCTTAAAATCCAAACTCCACAACACTTCCCAGCCTCTCTCCTCCCCGCCGATTTCTTTCGCCTATCCCATCCACCATCCATTTTCCCATTCCATCTCCCCGCCACAAATCACCATCTCCACCTCCCCGCAAAACCACATCTCCCAACCCCATTATAGTTCCTTCTCCTAAGCGAGATGATACCCTCTCGCCTCTCAACCTATTGCCCATCATTAACCTTTCCCATCCTTGCGATGACCCACCCGCGGCTGATAACTTGTAGAAATACAAGTTATTATAGTCTTTTAGGTAGAATAATGAAGTCGTAATGCATCAAATAGAAAAAAATAGGTATAAAATGATGGATGTAGAAGATAACTTGTATTGTAGAGTGTAAAAGAGCTTTATTCCTATTTTACGCGTTTATCATGTCTTTATGCAGGTTTTTAGGTGAAAAGAGAGTAGCCATGTGAGGAAAATGTCAGGTGAGGAACCATGCGAGTAACTAGGCATGCCTCAACGCAAAGCTAGGCGATTCTGAGCACTAGCAGAAAAGCTAGTTCGCGAAGATGTTAGAAAAGACACCTGCGACAATGCTGCAGCTTGATCAGAAGAATTAATTACCACCTAGTGCCCTGTCACATCACACCTAACCTATATATAGTGGCCACTTCTTTATTTGCAAACATGCGAAAATTAGAGAGTGAGTTTTGATTCCTCCATCCTATTTACCGCTTCCCCTCCATCCTATTTACTCTGCAGCTCAACATCTTCTGTTGTAATACATTTTATTCTTTTGAAGTGTTGCATTGTAATGAATGTTTTAAGGTCGCAAGACCCTACACCTTTATTATAATGAATATCTTTTCCTACTTTCATTCTCCCTTCTCTTTACTTTTCCATTTCCACTAAAATGTGCATGAGCAATGTAATCTTAATTACTGCAAAGAAATCGTTACATTTACATTATGCGGTCTTGCTTAGTCTGACACGGTCTAACTAAGTAGGCGGAGGAGATATTATAGTAATATAGCCTCCTCATCGAACCTATCCTTAGCATATATGACAGAAATGTTCATGTGTATAGCGAAGGCACCGAAAGGATGCTCGCCTTAATTAAGGGTGGTGAAACATAGTATAAATCTAAGATTAGTTACAAATCATCTCTTAACTTTAAGTATTCGGATCACGAGAGGCGAGCAAGTATGGCCAACGCACCGAGAGGATGCTCGCCTTAATTCTGAAGTTAATGAATGCGTTGTAACGCTTTTCGCTTAATTGTTGACTATATTGCAATTTTACATTAGTCTTTCGTGAGCACCACCTACTTAATTGAGTTCTCATGATTCAATCATCTCACCCCCATAAATCACACTTGCCACCTTGCTCACATAATAGTGTAAATATATATACATAGGAAATCAAACGTCAATATTACTGTATACATACAGCATAAGGTTAGAACGCATAGTGAATTCATTGGTTAATTAAAATCCCTCAGTTCGACCCTGGCTTACCTAGGAAACCTCTTGCTTTGCTTATATTTGGCCGAGCAAGAGGAAAAATTGTACGTAAATGACGTAAATGATAAGAGTTTAACAATGCGTAGGTTGATTTCAGCTTCTTTTAACGTATGAATCCAACCTACACGCCTTTAGTCACATGATTAGAGCCTTAACATTATATTTTCGAATAGATTACACGAATCAGCTGCTGCCACTAAGGCCGTTGAGGTGCCCTCGCTTGCCCTTCCTCGAATGTGCCCTAACCCGCGTTCTCCCCAATTCTTATTATTTCTGAAGGGGATGAGCCCCACGATGATGTGACCTCTAGTCGTCCACCACCAAAGAATGATACTAGAGGTCCCGTTGATGACCCATTCGCCAAGGAAAAAACACCTATTCCTGACGAAGCTAGCGAGACAGCCACTTCGATGCCTGTCAGTAATGCTTCACCCATAGCACCGAACGACAACGAAGACCTGAACGATCTGCTTGGCTCCCTAATTTGCAAGCCACTTTTTGATTACTTTGATAAAGTATTGACTCAGCAAATGAATCATGTGGTGCAACTTGATGCGTTAGAGGCCTCTGTTGAGAAGTTGCAACACCCAACTATCGAACCTCTAATGACGCCTGCCTCTCAAGAAGACATGAACAATTTAAGGCACGAGTTGAAGGACCTTTCGGCGAGCCACGTCCAGCTCTCCACCGCGGTATCTAACCTCACCTCACTGGTCATTGCATAA ATGGAAAGTTCATCTGTCCCTCAAAACACGAATACTAAAGTAGGTCCCAACAGACTTGAGTTAGAACAAGCACAACCATGCGGCGCAGATGAGCAAGTTGCTCCTAGCTACATCGTCCTGAAACATGGAAAAGGGAAGGTGTTGCTGGAACACATGCCAGAAACTATAAACCTCACCGATGAGTTGGAGGTTGCGGATCTCCCAGTGAAATGCAAGGCGCTAGGAGGAGAGAAAGACGACCTCGAAACCTTGGCAGAGGACTTCGAGGAAAAGCTGAAGGCGATGAGTCCAATTGAACAAGGACCATCGCCTAAGAAACAAAAGGGGGTCGTCAGGCCATCCAAGATAAAGAAGAAAACGGAGACATTTAGACCTGAGGAACCCCAACCTTGCGGCGAAACTAAAGCGAAAGAGCCCACAATCAACACCATAATCAAAATAGAGAAAGGGTTATTTTCCTTCAATGGACCCCTTCCTGACTTCCTCTATGCGCCAATCCAGGCGTTTGGATGGAAGAAATTTTTCAAAGGGCACACCAAGCTGAAGATGGGTGTGGTAAAGAAATTCTACGGCGCAAAACCCAACGTCAAGGATTTTAGCATCCAAATAGGGGAAAAGAAGGTGAGCTTCAACGAGGCCATCAACGACCTATTCGAATTGCCCAATGATGCAGACACCAGGACACGGGTGCACAAGGAAGTGGAAAGGCGTTTAAAGACACTTGACAAAGAAGAAGAAGATGGAGGCGAGACTCAGGTAGAACCCCTCAAGAGAAAAGCCTCTGCCTCCGCATCAACCCCCAAAACCAATTGCAAAAAAACCAAAGGGGATGAGCCCCACGATGATGTGACCTCTAGTCGTCCACCACCAAAGAATGATACTAGAGGTCCCGTTGATGACCCATTCGCCAAGGAAAAAACACCTATTCCTGACGAAGCTAGCGAGACAGCCACTTCGATGCCTGTCAGTAATGCTTCACCCATAGCACCGAACGACAACGAAGACCTGAACGATCTGCTTGGCTCCCTAATTTGCAAGCCACTTTTTGATTACTTTGATAAAGTATTGACTCAGCAAATGAATCATGTGGTGCAACTTGATGCGTTAGAGGCCTCTGTTGAGAAGTTGCAACACCCAACTATCGAACCTCTAATGACGCCTGCCTCTCAAGAAGACATGAACAATTTAAGGCACGAGTTGAAGGACCTTTCGGCGAGCCACGTCCAGCTCTCCACCGCGGTATCTAACCTCACCTCACTGGTCATTGCATAA ATGGAAAGTTCATCTGTCCCTCAAAACACGAATACTAAAGTAGGTCCCAACAGACTTGAGTTAGAACAAGCACAACCATGCGGCGCAGATGAGCAAGTTGCTCCTAGCTACATCGTCCTGAAACATGGAAAAGGGAAGGTGTTGCTGGAACACATGCCAGAAACTATAAACCTCACCGATGAGTTGGAGGTTGCGGATCTCCCAGTGAAATGCAAGGCGCTAGGAGGAGAGAAAGACGACCTCGAAACCTTGGCAGAGGACTTCGAGGAAAAGCTGAAGGCGATGAGTCCAATTGAACAAGGACCATCGCCTAAGAAACAAAAGGGGGTCGTCAGGCCATCCAAGATAAAGAAGAAAACGGAGACATTTAGACCTGAGGAACCCCAACCTTGCGGCGAAACTAAAGCGAAAGAGCCCACAATCAACACCATAATCAAAATAGAGAAAGGGTTATTTTCCTTCAATGGACCCCTTCCTGACTTCCTCTATGCGCCAATCCAGGCGTTTGGATGGAAGAAATTTTTCAAAGGGCACACCAAGCTGAAGATGGGTGTGGTAAAGAAATTCTACGGCGCAAAACCCAACGTCAAGGATTTTAGCATCCAAATAGGGGAAAAGAAGGTGAGCTTCAACGAGGCCATCAACGACCTATTCGAATTGCCCAATGATGCAGACACCAGGACACGGGTGCACAAGGAAGTGGAAAGGCGTTTAAAGACACTTGACAAAGAAGAAGAAGATGGAGGCGAGACTCAGGTAGAACCCCTCAAGAGAAAAGCCTCTGCCTCCGCATCAACCCCCAAAACCAATTGCAAAAAAACCAAAGGGGATGAGCCCCACGATGATGTGACCTCTAGTCGTCCACCACCAAAGAATGATACTAGAGGTCCCGTTGATGACCCATTCGCCAAGGAAAAAACACCTATTCCTGACGAAGCTAGCGAGACAGCCACTTCGATGCCTGTCAGTAATGCTTCACCCATAGCACCGAACGACAACGAAGACCTGAACGATCTGCTTGGCTCCCTAATTTGCAAGCCACTTTTTGATTACTTTGATAAAGTATTGACTCAGCAAATGAATCATGTGGTGCAACTTGATGCGTTAGAGGCCTCTGTTGAGAAGTTGCAACACCCAACTATCGAACCTCTAATGACGCCTGCCTCTCAAGAAGACATGAACAATTTAAGGCACGAGTTGAAGGACCTTTCGGCGAGCCACGTCCAGCTCTCCACCGCGGTATCTAACCTCACCTCACTGGTCATTGCATAA MESSSVPQNTNTKVGPNRLELEQAQPCGADEQVAPSYIVLKHGKGKVLLEHMPETINLTDELEVADLPVKCKALGGEKDDLETLAEDFEEKLKAMSPIEQGPSPKKQKGVVRPSKIKKKTETFRPEEPQPCGETKAKEPTINTIIKIEKGLFSFNGPLPDFLYAPIQAFGWKKFFKGHTKLKMGVVKKFYGAKPNVKDFSIQIGEKKVSFNEAINDLFELPNDADTRTRVHKEVERRLKTLDKEEEDGGETQVEPLKRKASASASTPKTNCKKTKGDEPHDDVTSSRPPPKNDTRGPVDDPFAKEKTPIPDEASETATSMPVSNASPIAPNDNEDLNDLLGSLICKPLFDYFDKVLTQQMNHVVQLDALEASVEKLQHPTIEPLMTPASQEDMNNLRHELKDLSASHVQLSTAVSNLTSLVIA Homology
BLAST of PI0009150 vs. ExPASy TrEMBL
Match: A0A5A7TBU7 (Stress response protein NST1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold279G00120 PE=4 SV=1) HSP 1 Score: 101.7 bits (252), Expect = 7.8e-18 Identity = 79/218 (36.24%), Postives = 120/218 (55.05%), Query Frame = 0
BLAST of PI0009150 vs. ExPASy TrEMBL
Match: A0A5D3DQE7 (Stress response protein NST1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold862G00740 PE=4 SV=1) HSP 1 Score: 101.7 bits (252), Expect = 7.8e-18 Identity = 79/218 (36.24%), Postives = 120/218 (55.05%), Query Frame = 0
BLAST of PI0009150 vs. ExPASy TrEMBL
Match: A0A0A0LT82 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G169970 PE=4 SV=1) HSP 1 Score: 77.0 bits (188), Expect = 2.1e-10 Identity = 36/72 (50.00%), Postives = 49/72 (68.06%), Query Frame = 0
BLAST of PI0009150 vs. ExPASy TrEMBL
Match: A0A5A7UMK2 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold186G001800 PE=4 SV=1) HSP 1 Score: 76.3 bits (186), Expect = 3.5e-10 Identity = 37/82 (45.12%), Postives = 54/82 (65.85%), Query Frame = 0
BLAST of PI0009150 vs. ExPASy TrEMBL
Match: A0A5A7VMD3 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold550G00650 PE=4 SV=1) HSP 1 Score: 75.9 bits (185), Expect = 4.6e-10 Identity = 47/118 (39.83%), Postives = 66/118 (55.93%), Query Frame = 0
BLAST of PI0009150 vs. NCBI nr
Match: TYK25768.1 (stress response protein NST1-like [Cucumis melo var. makuwa]) HSP 1 Score: 101.7 bits (252), Expect = 1.6e-17 Identity = 79/218 (36.24%), Postives = 120/218 (55.05%), Query Frame = 0
BLAST of PI0009150 vs. NCBI nr
Match: KAA0038829.1 (stress response protein NST1-like [Cucumis melo var. makuwa]) HSP 1 Score: 101.7 bits (252), Expect = 1.6e-17 Identity = 79/218 (36.24%), Postives = 120/218 (55.05%), Query Frame = 0
BLAST of PI0009150 vs. NCBI nr
Match: KAE8645907.1 (hypothetical protein Csa_023734, partial [Cucumis sativus]) HSP 1 Score: 79.3 bits (194), Expect = 8.6e-11 Identity = 39/80 (48.75%), Postives = 55/80 (68.75%), Query Frame = 0
BLAST of PI0009150 vs. NCBI nr
Match: KGN64973.1 (hypothetical protein Csa_022771 [Cucumis sativus]) HSP 1 Score: 77.0 bits (188), Expect = 4.3e-10 Identity = 36/72 (50.00%), Postives = 49/72 (68.06%), Query Frame = 0
BLAST of PI0009150 vs. NCBI nr
Match: KAA0056424.1 (hypothetical protein E6C27_scaffold186G001800 [Cucumis melo var. makuwa]) HSP 1 Score: 76.3 bits (186), Expect = 7.3e-10 Identity = 37/82 (45.12%), Postives = 54/82 (65.85%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
|