MELO.jh033430.1 (gene) Melon (Harukei-3) v1.41
Overview
Sequences
The following sequences are available for this feature:
Legend: exonpolypeptideCDSstart_codonstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.GACAACAACAATGTCGGCTTCTTACTGCGGCTATGGATTCTTCGTCTCAGATTCTACAGTTCCCTCTACTAGCAGAGCTTTCATCTCTAACTCATGCCATTGGGACCTTTCCATCTCTTCTTTTTCCCACCCCCATCGCCTTCAACTCCCTCCATTTCGACCTCCAAACATTAAGAAACCGCATAGCAATGCGAACAGAAAAAGTACTTCCTTCTCTGCCCTGCCTTTCGATCTTTCTCCCCCTCCAATCGATGAGGACCTCCTTGTAAGTCTTTTTCCTCTATTTAGTCCAATTTGTTGTTTTACTACCCAAGTTTATTGCTGAAATTCTTTATGCTGATTTGATTCTGGGGTTACGAAGTGAACTGAGATGTATTTTTAATTCATGAATTGAAGACACATGCATTCATTTACGAAAGAGGGAACAAAGGACATAAAGTGTGTTGGTAGGCTTGATTTAAGAGAAATGATTTTTTTATTCTTGTTTGGTGAGAACTTGCATTGTATTACTATTGGAGATTGAGAACGGTCTCTCATTTCCCTTTTTTCAAGACTGTATCATTAGCATTGCTGAATACTAACTGTTGTATCACACGCTAAGTTCTAAACAATTTGGATATCTACAACGGGCAGGAGGCTGCGGCCGTTGAAGGTGCACGGATTTCTGATGATGGGATCATTGAAACTTTTCATAACGATGAACAGGCGCTGGATGCAGCCAATAATGGGGTTGCTGTATGTAGTCTTTCAACATCTTTCTTATTGATGTCTTTTTTCTTTTTGCTTTGCTTAGTTTGGAAACTGGTGATATCTTCCTTTTGAAAGAAAACACTATTTGCATCTCTAAGTGTGTGTGCTGTAGAAGTCTAGATGGTAAGAATTTTGATAAGTTGATCATCTGGAAGCTCACCCATGTGACACCCTCCTAGAAAAGATTGCATGGGGCATCGTAGTTGGCCTTGGGCTGTTTGTGATAAAAAGCATGCTTTTGATAAGCTTTTCGATTCTATTATTATCTTTTTACCTCACGGAACTTATTTATTTATACTTTGTATGAGATAAAAAAAAATAGGAAGTTACAACTTACAAAAGAGAGGGGAAGATAAACTCATCCAATGAAATCCCAAAAAACTTCAATGGGCTATAAAGGAAGATGATCCGCAGTTACAAAATAAAGCGACAATTTTCACCAAATCAAAGCCAAATAAGCAAAGGAATTCAAAAAATTCAGTGAAATAGTTCTCCTTGTCTTCGAAATTTCTGAAATTCCTTCCGGACCGTACAGATCAGAAAGAAGCCCTGGAGTTGATCGATGGGGACTTCTTTTGCATCGAGGAGGCTGAGGGAAAGTAGAATTTTGTTTCTTTTGGAATTTTTTTTTCAAAGCAGCCATGCTCATGGTGTAAATTGTCTCCACTTTTTCGTTTTTATATAGCTCGTAGATATTCTATACTCGTGTCTGTTAGGCCTCAAATTATTCATCAATACGTGAAGAAGGGCAAGAAGGGGAAATCACCCGAGATTACAGTGGGTTGAGATTTGGGGTATGTGTTTTCAGTTATGGAGTTGGGGTCCACTGAAAGAAGGTTTAAGAAGGGTTTTGGAATAAGAAGAAAGGGGTGGATATTTTATGGTTAAATCACCAATAAGAGGAGAGGGGCGCTCTAGAACACGCCATTACTGGTTCTTCATTTCTTTGTGCACTTTACTTTCTGTTTTGATATCATGGCTTGTTTAGTTGCATTGTAATGGTTGAAGACTTTCGTTAAATTCCAATATAATTTAGTATCAGGAAGTTGTTCCTCTGTTTTTGAGCTATCTTGCTTGTTGGGACCTAACAATGTCCTATTAGAGAAGTTTCTTGTTCTGTTACTCACTTAGCTTGGGGTTTTTCTACCCTATTTTTTAATTTCATAGATCAATAAAATTGTTCCTTGACTAGAAAAAGAAAAGATATATATTGCAAATGAGTTGATGTTTTCATATTTTGTTGTTAATTGTTAGGTCGTGGATCTTTCTCATTTTGGCCGACTAAGGGGTAATTTTCTTCTTTCTGTCTACTTGTCTCTTTTCATGTTCTATTACTTTTGAGTCCACTCTTAATAGAATGCTTGTAAAAGTTTTCCCACCCTTCTTTAAAGCATTCCGCATATAATAATTGAGATTCATGGCTGCTTCATGGTGTATTTCTAGGCCTCCAATATTGCTGAAATACTCATGCAGGGTTTAAAAGTGGAACTCGGCGTGAAAGTTAGTTAGTTAGTTAGCATTGGGTGGATCACAAAGAGAACGCGTGGGAGTGAGTGTGGTCAATATATATAATAACATGTTGTGTGTTGGGAAATTTACCGTTTTCTTCGTGTAGAAAAGTAGTTGTGAGAGTGTGACACACGCAAGTATACTCATCGTGTTTAGAATGTTCAGTATACTAAAACGGTCAAGAGAAAAAACTCAATCGGCATCCTTGACGTTGGTTTGGTTGAGAGAAAATGTGGGGGAAGATAGTGGCCTTCCTCCTCATTGCTTTTCTCATCTTCTTTCCTTTTTCTGAATCCTTCTGATAATGGCATCGAACGCCCTTGCTGGCATTCAATCTAAGAAAAACTTAGCTGTATCTGAGCAAGTTTTCTGAGAGTGCTCGGATGACAAGGTTTGTTCGGAAGCCAGTAGAGATGAAGAACTGGAATGCCCTTTCGGTACTTTGTGCAGGGAATTTTCCTGTCAGCAAGGAACCTCCTCATTGTCCAATTTTGCTTGACTTTGAGCTTAGCAAGAAGTTAGCAACCACCATGGAACAACCACTGGCAAAGACGTTTTTAGCCGCTGCAGAGGTTTGGATGACATTATTGTTTTCTTCACATTTATCTTCTACCGTTTGATCTGTTCATTTAGTATAAATACAATTATCAATGAAGGTTCTTCATTTGTCACTCTCTTAAGTGCAACATTGCAAGATTGAAGACTTACTGATGTTGACACTATGAATATGCAGTGTACTAATATTCAAAATACCATCATCGTTACTAAATTACATATTGTAAACAGAAAACTGTCTGCATTTTACTCTTCCAATGTTGACAGTGTTTTGGTTTTACAAGATTATATATGAACAGCTTACTATCCGATTCATTAGTTGTTGTGTTTCCTTTACAAATGTATGAGTTGTGTATTGTCAAATTCATTTTATTTTAACTTGGAATTGGAAGAAAAACTAGAGGGGTTTTGACATAGATGTGAAGAAGAAGAAGTTGGAACAATTGGATTATTTTGAGTTGGGACTGTGTATGATTTCAAGAAATTTTTAAAGGACTGAAACACACTTGGGATTGAACTTCACTTTAGAATTTGCTTTTGTTCTCTTTTTTAGTCCTTTAATAGTGAAGAATTATTGATGAGATTATGATTTGGATAGATATCTTGGTCACCTTTCTCGAGTTCAATCATGAGTCCATTGATTTCACTGCTTTTTCTTTGCAAATTTCAGACAAAGATGTTGCCTTTTTATAGACAACAAACATGAACTATGATTTGGGAGATTTATTTAATTAGTGTAAGTTTTCTGACGATTCTATGTTCTATTTTATTTTTACGTTTAGTATTGAATCACATCTCCTCTCTTTATGTCTTTATCTTGCGTGCCTGTGTTTTGTGAGAGATTTTTATTAAATAAGGGTTATGTTTTTCCATATGTTGTTAAACTGTGCCAGGATATTCGACAAGTCTGTTTGTACGCTGCTCTACTGATCTTTTTTAATAGTATTACATTTTGTAAACTATATATTGTGATGGGGTTTGATTAATTTTGTTGGAATTTGATTCCTTAGGTGGTTTGCTTAACTTGCAACACAGAACATGTGGAATACTCTGTCCATGTTTTATCCATGTTTTAGTTTATTTCTCATGGCGAATAAAGGATGAAACACTAGTCATAAAATAAAAGAAATTGGTAACGTATTGGACATGTTCAACACAGTGGATGATGCTAAAAAAGTAGTGTAGTTTTTCCAATGTTTCTTCACCTTCTGAAAAGCCAAAGATGAAATGTTATTCAAGTATGTACTTTGAAGTGGTTTCATTTCAATTGATAATCACTGTACTTTGCAGTTCCTCGATAGAAATACTGTGAATCCATAAACAAAACAGTCAAAAGGAAAATGCGGACAGCGATGGTTGGAAATGTTGCCCTTGGTAGTGAGCATCCGATTAAGATTCAAACCATGACGACAACTAACACAAAGATGTTGCTGGAACAGTTGAACAGGTTCTTTTATATTTGTTCTATTTTGGCTGTGTTTTCATTTCCGAATCCCTTCATCATGACATCAGTAGGTTTCCTTTTTCAAACTCTACTCCAAGATAGCATAATTTCATTAGAACAGTGCTTGATGTATGCACCTTTACTAACCTTCTCTAGAGTTCTAGTTTCTAGGTAGGCATCTGTATTTGACTGATCTTTTAGTTCTTCACAAATTTCTTTCAAGTCATAGTGGTTAGGTTGATGTCCTACACAAAGGAATTTACAATACACATTTTAGACGCCATATGAATGTGGGGCATGTTGTAAATGCTTTCCGTTGTGCAGGATGGTTTGGGTGACACTATTAGAGTTTTGCTTACATGCTTTCTGTTGTGCAGGATGGTTTGGGTGACACTATTAGAGTTTCGCTTACATGCTTTCTGTTGTGCAGGATGGTTTGGGTGACACTATTAGAGTTTCGCTTACAGAACCACCAGAGAAGGAGATAGATCCTTGTCGAAGGCTCACAACCCTTGGTATGAATTATGCTACCAGGCAAGTGATTGATGTGGTTAGTGACAAGACTTGTTGTAGTTTCATTATTTACGACAATGCTCATTGTTGTATTTAGTTTCTTTGTAAAAATATATTACCAAGATTTAGTTTCTACTTTGCTTGAATTTGTCCCTTTAAGGAAGTTCGATAGATTTCGTGTACTTAGTTTCTTTGTAAAAACATTATCTATGTTATTGTTATATATGAAAGTTCTTATTTA GACAACAACAATGTCGGCTTCTTACTGCGGCTATGGATTCTTCGTCTCAGATTCTACAGTTCCCTCTACTAGCAGAGCTTTCATCTCTAACTCATGCCATTGGGACCTTTCCATCTCTTCTTTTTCCCACCCCCATCGCCTTCAACTCCCTCCATTTCGACCTCCAAACATTAAGAAACCGCATAGCAATGCGAACAGAAAAAGTACTTCCTTCTCTGCCCTGCCTTTCGATCTTTCTCCCCCTCCAATCGATGAGGACCTCCTTGAGGCTGCGGCCGTTGAAGGTGCACGGATTTCTGATGATGGGATCATTGAAACTTTTCATAACGATGAACAGGCGCTGGATGCAGCCAATAATGGGGTTGCTGTCGTGGATCTTTCTCATTTTGGCCGACTAAGGGGTAATTTTCTTCTTTCTGTCTACTTGTCTCTTTTCATGTTCTATTACTTTTGAGTCCACTCTTAATAGAATGCTTGTAAAAGTTTTCCCACCCTTCTTTAAAGCATTCCGCATATAATAATTGAGATTCATGGCTGCTTCATGGTGTATTTCTAGGCCTCCAATATTGCTGAAATACTCATGCAGGGTTTAAAAGTGGAACTCGGCGTGAAAGTTAGTTAGTTAGTTAGCATTGGGTGGATCACAAAGAGAACGCGTGGGAGTGAGTGTGGTCAATATATATAATAACATGTTGTGTGTTGGGAAATTTACCGTTTTCTTCGTGTAGAAAAGTAGTTGTGAGAGTGTGACACACGCAAGTATACTCATCGTGTTTAGAATGTTCAGTATACTAAAACGGTCAAGAGAAAAAACTCAATCGGCATCCTTGACGTTGGTTTGGTTGAGAGAAAATGTGGGGGAAGATAGTGGCCTTCCTCCTCATTGCTTTTCTCATCTTCTTTCCTTTTTCTGAATCCTTCTGATAATGGCATCGAACGCCCTTGCTGGCATTCAATCTAAGAAAAACTTAGCTGTATCTGAGCAAGTTTTCTGAGAGTGCTCGGATGACAAGGTTTGTTCGGAAGCCAGTAGAGATGAAGAACTGGAATGCCCTTTCGGTACTTTGTGCAGGGAATTTTCCTGTCAGCAAGGAACCTCCTCATTGTCCAATTTTGCTTGACTTTGAGCTTAGCAAGAAGTTAGCAACCACCATGGAACAACCACTGGCAAAGACGTTTTTAGCCGCTGCAGAGGTTTGGATGACATTATTGTTTTCTTCACATTTATCTTCTACCGTTTGATCTGTTCATTTAGTATAAATACAATTATCAATGAAGGTTCTTCATTTGTCACTCTCTTAAGTGCAACATTGCAAGATTGAAGACTTACTGATGTTGACACTATGAATATGCAGTGTACTAATATTCAAAATACCATCATCGTTACTAAATTACATATTGTAAACAGAAAACTGTCTGCATTTTACTCTTCCAATGTTGACAGTGTTTTGGTTTTACAAGATTATATATGAACAGCTTACTATCCGATTCATTAGTTGTTGTGTTTCCTTTACAAATGTATGAGTTGTGTATTGTCAAATTCATTTTATTTTAACTTGGAATTGGAAGAAAAACTAGAGGGGTTTTGACATAGATGTGAAGAAGAAGAAGTTGGAACAATTGGATTATTTTGAGTTGGGACTGTGTATGATTTCAAGAAATTTTTAAAGGACTGAAACACACTTGGGATTGAACTTCACTTTAGAATTTGCTTTTGTTCTCTTTTTTAGTCCTTTAATAGTGAAGAATTATTGATGAGATTATGATTTGGATAGATATCTTGGTCACCTTTCTCGAGTTCAATCATGAGTCCATTGATTTCACTGCTTTTTCTTTGCAAATTTCAGACAAAGATGTTGCCTTTTTATAGACAACAAACATGAACTATGATTTGGGAGATTTATTTAATTAGTGTAAGTTTTCTGACGATTCTATGTTCTATTTTATTTTTACGTTTAGTATTGAATCACATCTCCTCTCTTTATGTCTTTATCTTGCGTGCCTGTGTTTTGTGAGAGATTTTTATTAAATAAGGGTTATGTTTTTCCATATGTTGTTAAACTGTGCCAGGATATTCGACAAGTCTGTTTGTACGCTGCTCTACTGATCTTTTTTAATAGTATTACATTTTGTAAACTATATATTGTGATGGGGTTTGATTAATTTTGTTGGAATTTGATTCCTTAGGTGGTTTGCTTAACTTGCAACACAGAACATGTGGAATACTCTGTCCATGTTTTATCCATGTTTTAGTTTATTTCTCATGGCGAATAAAGGATGAAACACTAGTCATAAAATAAAAGAAATTGGTAACGTATTGGACATGTTCAACACAGTGGATGATGCTAAAAAAGTAGTGTAGTTTTTCCAATGTTTCTTCACCTTCTGAAAAGCCAAAGATGAAATGTTATTCAAGTATGTACTTTGAAGTGGTTTCATTTCAATTGATAATCACTGTACTTTGCAGTTCCTCGATAGAAATACTGTGAATCCATAAACAAAACAGTCAAAAGGAAAATGCGGACAGCGATGGTTGGAAATGTTGCCCTTGGTAGTGAGCATCCGATTAAGATTCAAACCATGACGACAACTAACACAAAGATGTTGCTGGAACAGTTGAACAGGATGGTTTGGGTGACACTATTAGAGTTTCGCTTACAGAACCACCAGAGAAGGAGATAGATCCTTGTCGAAGGCTCACAACCCTTGGTATGAATTATGCTACCAGGCAAGTGATTGATGTGGTTAGTGACAAGACTTGTTGTAGTTTCATTATTTACGACAATGCTCATTGTTGTATTTAGTTTCTTTGTAAAAATATATTACCAAGATTTAGTTTCTACTTTGCTTGAATTTGTCCCTTTAAGGAAGTTCGATAGATTTCGTGTACTTAGTTTCTTTGTAAAAACATTATCTATGTTATTGTTATATATGAAAGTTCTTATTTA ATGTCGGCTTCTTACTGCGGCTATGGATTCTTCGTCTCAGATTCTACAGTTCCCTCTACTAGCAGAGCTTTCATCTCTAACTCATGCCATTGGGACCTTTCCATCTCTTCTTTTTCCCACCCCCATCGCCTTCAACTCCCTCCATTTCGACCTCCAAACATTAAGAAACCGCATAGCAATGCGAACAGAAAAAGTACTTCCTTCTCTGCCCTGCCTTTCGATCTTTCTCCCCCTCCAATCGATGAGGACCTCCTTGAGGCTGCGGCCGTTGAAGGTGCACGGATTTCTGATGATGGGATCATTGAAACTTTTCATAACGATGAACAGGCGCTGGATGCAGCCAATAATGGGGTTGCTGTCGTGGATCTTTCTCATTTTGGCCGACTAAGGGGTAATTTTCTTCTTTCTGTCTACTTGTCTCTTTTCATGTTCTATTACTTTTGA MSASYCGYGFFVSDSTVPSTSRAFISNSCHWDLSISSFSHPHRLQLPPFRPPNIKKPHSNANRKSTSFSALPFDLSPPPIDEDLLEAAAVEGARISDDGIIETFHNDEQALDAANNGVAVVDLSHFGRLRGNFLLSVYLSLFMFYYF Homology
BLAST of MELO.jh033430.1 vs. NCBI nr
Match: KAA0057345.1 (putative transferase [Cucumis melo var. makuwa]) HSP 1 Score: 274 bits (700), Expect = 9.16e-92 Identity = 135/136 (99.26%), Postives = 136/136 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. NCBI nr
Match: TYK13394.1 (putative transferase [Cucumis melo var. makuwa]) HSP 1 Score: 264 bits (675), Expect = 2.02e-84 Identity = 130/130 (100.00%), Postives = 130/130 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. NCBI nr
Match: XP_008449402.1 (PREDICTED: putative transferase At1g60990, chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 246 bits (628), Expect = 9.74e-78 Identity = 120/123 (97.56%), Postives = 123/123 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. NCBI nr
Match: XP_031743503.1 (putative transferase At1g60990, chloroplastic isoform X2 [Cucumis sativus]) HSP 1 Score: 235 bits (600), Expect = 2.11e-73 Identity = 117/130 (90.00%), Postives = 123/130 (94.62%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. NCBI nr
Match: XP_004140110.1 (putative transferase At1g60990, chloroplastic isoform X1 [Cucumis sativus] >KGN47936.1 hypothetical protein Csa_003267 [Cucumis sativus]) HSP 1 Score: 235 bits (600), Expect = 3.90e-73 Identity = 117/130 (90.00%), Postives = 123/130 (94.62%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy Swiss-Prot
Match: Q681Y3 (Putative transferase At1g60990, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At1g60990 PE=1 SV=1) HSP 1 Score: 89.4 bits (220), Expect = 3.8e-17 Identity = 39/66 (59.09%), Postives = 52/66 (78.79%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy TrEMBL
Match: A0A5A7UUX2 (Putative transferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold280G002000 PE=4 SV=1) HSP 1 Score: 274 bits (700), Expect = 4.43e-92 Identity = 135/136 (99.26%), Postives = 136/136 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy TrEMBL
Match: A0A5D3CQT8 (Putative transferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold496G00010 PE=3 SV=1) HSP 1 Score: 264 bits (675), Expect = 9.80e-85 Identity = 130/130 (100.00%), Postives = 130/130 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy TrEMBL
Match: A0A1S3BLY7 (putative transferase At1g60990, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103491300 PE=3 SV=1) HSP 1 Score: 246 bits (628), Expect = 4.72e-78 Identity = 120/123 (97.56%), Postives = 123/123 (100.00%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy TrEMBL
Match: A0A0A0KJI9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G417880 PE=3 SV=1) HSP 1 Score: 235 bits (600), Expect = 1.89e-73 Identity = 117/130 (90.00%), Postives = 123/130 (94.62%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. ExPASy TrEMBL
Match: A0A6J1DYD6 (LOW QUALITY PROTEIN: putative transferase At1g60990, chloroplastic OS=Momordica charantia OX=3673 GN=LOC111025359 PE=3 SV=1) HSP 1 Score: 193 bits (491), Expect = 3.67e-57 Identity = 99/128 (77.34%), Postives = 107/128 (83.59%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. TAIR 10
Match: AT1G60990.1 (Glycine cleavage T-protein family ) HSP 1 Score: 89.4 bits (220), Expect = 2.7e-18 Identity = 39/66 (59.09%), Postives = 52/66 (78.79%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. TAIR 10
Match: AT1G60990.2 (Glycine cleavage T-protein family ) HSP 1 Score: 89.4 bits (220), Expect = 2.7e-18 Identity = 39/66 (59.09%), Postives = 52/66 (78.79%), Query Frame = 0
BLAST of MELO.jh033430.1 vs. TAIR 10
Match: AT1G60990.3 (Glycine cleavage T-protein family ) HSP 1 Score: 89.4 bits (220), Expect = 2.7e-18 Identity = 39/66 (59.09%), Postives = 52/66 (78.79%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
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