MELO3C034452 (gene) Melon (DHL92) v4
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.ATGTCTCACGCCCGCTGCGATCGTAACCCCCTTCGTCTTCTTCTTCGTCTGGCGAGTATTTGACGTCAAGCGAGTCTTCGACGTTCGGCCACCATTCGACTTCTATCCAGGTTCGAGTTCGGCCCACGTTCGACTTCTGCCCAGGTATGACTTTTGCCCCGATTCGACTTCCACCAACGGTCCGACTTTCGCCCACAGTTCCACCTCTGCCCATGGTTCGACGCATACATATGTAATAATTATTGTATTTCGATAGCTTGCAGATCTTAAACGTTACCTTTAATTTGCTTTTCTGGCTTTGATGGTAACTACAACATCGATTTGTATGGTTAATCAGAATATGTTATGTTATTAACATTGTGGGATTTGGGGGTGTGGAGGCAATTTTATATGGTGCTATTGGAAGGGAGGGTATTAAAAAAGTTAGGTGTGGATGGAATATAGCTATGGGGTTGAACAACATGTTGCTCAACAAAGTCGGTGTGATAAGTTAAGAGTTCCGCAGAATTATTGGAGGTTGGGGAAGTACCGAAAAATTCTGATGAACAATTGAATTTTCATAATTCAGAGCATTCAGGGGTTGATTTGGATATTGTTAGAATTCAAAGTTTTAACAAGGATGCGATTTTGCCTCATAATCACTTGTCTTTGTTATTAGTTTATCTTTTCCTCGTTCATCACATTTTATTATTCAGCTCCTATTTAGAATGGAGATACACATATCCATTGCTTGAGGAAGCTAGTTTAGAAACTTGGGCTATTGATGTTCTTTGCTGGTGCTCCTCTGATTTAGGTTTGTCTAATTGCTTTTTGTTCCTCTATTCATTGATCGATAAACCATTTTTTCTTTCTAACTTTTGTAGTTGTATTTCTCTGCTATGTATTTGGGGCAATTTTCTCTCCATTCCAATTCTGTTCCATTCTTGTATGATCATAATATGCTGACACTTGCTTTATTGCTATAACTCATAGGCTTGTTTTTTATTTTTTTTTTACCATTGCTATAAGCTTTTTCATCAATCATTATTATCCTGTTCTTTTTAATTATTTTTTGAATAATTATTTATTGTCAATCACAATTATATCTTGTCCAGTTATGTTGAAGCTAATTAAGTTTTTTCTTATGCTAACTATAGCTTTGGAAATCTTACATTAAAAGGCCAATGGCAACTGTTGGACCAAGCCTTGGTGCTGCTGTTGCTATTGATTTTGTTGTCAATTATCCAGAAGCTATATGTATCTACCAGTTGGAATTTATGACTACAAATTTGAAGTTATATCCTCTGAATGTATCTACTAGCTAAAATTATTTTTTCTTGAACTAATACTTTCAACTATCCTATCAATTCTCCAGTTAATTTTAGATTCATTTATCATATTTTTCCTAATGGATATCCAAGAATTCTGTTTGTTCTCAAACTCCTATGACTTAAATTTATCTTATAACTTAGCATTGACCTGTGTCCTTTTATCTCTAAATTGTGTGGCTTGATATACTGTGCAAGGTTGATAGTTAGAACTATAAATTACTTCTGTCTCAATTGTGGTCCGGCTATGGTACAAAACTAGAAGAAAATTTTAGTGCACAAATAAATAAATAAAATGTCAAAAAATGGCACAAGAATTTATTTCATTCCTAATATTTGAAGTTTTTGTATTTGTTCATTGTAACAATTGATTAATATAATCATCAATTGTATGTTCCGAGATATGATGTCTATGGCCTGTTGGTTCCCTGAGTTTCTTATTTAGATAAAATTTGAATCCCGCAAAAGTATCATTTCCACGAAAGTATATAAAGATTTTTTTCATACACAATGTTTGAAGTATGGCTTTGCATTTAATCAATTTATAAGTAAAATATTTGAAGCATGTGATATAACACTATTCTTAATCATTACTCTCAGTAACAATATGAGTGGAAGCCTACGATGGGACGATCGCCTCATGGACTCTTTAAAGAACTTTGATTTTAGTAGCCCTAAAGTTAAGCAGCAATTTGGTCAGTCAAGTTGATCTCTTTTGATTTTGTATTTGTTAATGGTTGTTTTGTGGGTATTAAAATGGCTTGAGTACTATTTTGTTGGCATTTGTTATGACGTCAAATATTTCATCTATAGTATTTGTGATTTTCTGTTATTGTTGCATTGCAATCATATATGCTTCGACTCTTAAATAATCTGACCAACATTTGGTTGTTTTTGGGTCAATAATTGACGAGCTCGGAAGTTTTTGTTTAATTTTTATTCAGTTTTGTTTTCTGATGCTATTTGTTTAAAATCACGATTCATAAGTCTTAGTATTAATAATTTCATTTGATATTGTTCACATGAGATTTTCGAAAAAATTTGGTTCGTGGAGTTAAACTTGTGTTGATATTGTATTTCTGTTGATTCGATGCGATGTGGTTCGATCTCTAGAATTTGATCCTCTGATTCTCTCTTGGCTGGATGCTTACGCTTGATTTGAGGAAGCGAAACACGTAATGTTCTTGGAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAAGGAGCTTCAAACTTTGAGAGTGTTCTTGAAGTTGAAGTCTTTGAAGAAAGCTTGGATCTTCAAAGGAGCTTCGATCTTTGAGGGTGTTCTTAAAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAACGAGCTTCAAACTTTGAGGGTGTTCTTGAAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAAGGAGCTTCGATCTTTGAGGGTGTTCTTAAAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAAGGAGCTTCAAACTTTGAGGGTGTTCTTGAAGTTGGAGTCTTCGAAGAAAACTTGGATCTTCAAAGGAGCTTCAATCTTTGAGGGAGTTCTTAAAGTTAGAGTCTTCGAAAAAGCTTGGATCTTCAAAGGAGTTTCAATCTTTGAGGGTGTTCTTAAAGTTGGAGTCTTCAAAGAAGAGAAGCTTCAATCTTCGAGGGTGGTCGACTTCAAGAGTTGAGGAGGCTTCTATTGAGAATTTTCTCTAGACCTTCTCGAGTCAAAAATTTCCAACCCCCACAAATGAAGACAACTTCTATTTATAGAGTTCCCTTGTGGGCTTTTATGGACTTTAGCCTGTTCTGGTCCATGGACCATACACATGGGCTTAATCACACATGAATTTGTCCAATTTGTCTTTAAATTTAATTTGGGACACATGCCAATTTTTAGTTAATCCCAAGTATAATTATTTTAGTAAATGATGTGGCAATTTGTGATTGGTTCCAAAATTTCTTATTCAACAAATGCCCCCTTTCGAGATTTATGCACGTGTATGAGTGGGTCAATCTCGAAAAGATAAATTTAAAGTCCAAATATGAGCATTTTTTTTTGCTCAATTTGACACATCCAATTAATCAAACTATGAATTTAGTACATGAGTTTGATTTAAATTTGAAATAATAGTTGGGATATGGTCAATCTTTAATTTAGAAAAATTTAAGGTTTTATCCAGAATTTACTTTAATTTGAGGATAAAAATTTAAGTTTGATGATGGTTTGATTTGATTTTAATAATTTGGAATGACCAATTTTAACATAAGATAATTGAATTTTAATTTCATTTTAAAAATTAAAATATTAAAATATGTTTGAATATTTTAAAAGTGGAATCCGAGATTTTACTCCAAAATAAAAATATCATAAGATAATTGGATTTTAATTTTATTTATTATTAAAAAGAAAATTAAAACCTTTCCAAATCCTATAAGAAATTGGATTTTAATTTTATTTATTATTAAAAAGAAAATTAAAACCTTTCCAAATCCTATTAGGAATTGGATTTTAATTTTATTTATTATTAAAAAGGAAATTAAAACCTTTCCAAATCCTATTAGGAATTGGACTTGTTAGCCTTATAAATAGACTCATACCATGATCATTCTTTTCTCATCAAGGAGAACAAAGATATGAAATAAAAAAAGAAAAGATTTCTCTTCTCCCTTTTTGTTTTTTTTTTTTTTTGTTTTTCTTTTTATTTTCTTAATAATAGTATTTTTTTTGAACTCCATCTTTTTTTTAGGAACTAGAGTTATTGTCAAAAGGTAAGGATTTATTTTTTTTATTGTTGTTTTTTTTTTGTTTTTTTAAATCATTTGTAGAAGTAACTCCGCCGTTAGCGATCCAACTTCTACTAGGGGACGATCGGGCTTTTGCCGTTAGATCCACCCCCTGGTAGGAGCGATCGAGCACCATCGTCATTTGTAGAGGTGATACTGCCGTCAACGATCCAACTTCTATCGGGGGACGATCGGACTTTTGCCGTCAGATCCACCCTTTGATAGGAGCGATTGGGCACCTTCGTCCTTTGGAGGGGTGATATTGCTGTCAGCGATCCAACTTCTATCGGAGGACGACCGAGATTTTGCCGTCAGATCCACACCCTGGTAGGAGCGATCGGGCACCATCGTCATTTGGAGAGGTGATACTACCGTCAGCGATCCAACTTCTATCGAGGGACGGTCGGGCTTTTGCAGTCAGATCCACCCCCTGGTAGGAGCGATCGGGCACCATCGTCATTTGGAAAGGTGATACTGTCGTCAGCAATCCTACTTCTATCGGGAGACGATCGAGTTTTTGTTGTCAGATCCACCTCTGGTAGGAGCGATCAGACACCTTCGTCATTTGGAGAGATGGTATTGCCGTCAGCGATCCAACTTTTATCGGGGGATGATTGGGCTTTTGCTGTCAGATCCACCCCCTGGTCGGAGCGATCGGACACCTTCATCCTTTGGAGGGGTAATATTGCCGTCAGCGATCCAACTTCTATCGGGAGATGATCGGGCTTTTGCCGTCAGATCCACCCCTGGTAGAAGCGATCGGGCACCTTTGTTGTTTGGAGAGGTGGTACTGCCGTCAGCGATCCAACTTCTATCAGGGGATGATCGGGATTTTGCCGTCAGATCCACCCCCTGGTAGGAGCGATCGGGCACCTTCGTCATTTGGAGAGGTGGTACTGCCGTTAGCGATCCAATTTCTACTGGGGGACCATCGAGCTTTTATCGTCAGATCCACCGCTCTGGTAGGAGCGATCGGGCACCATCGTCATTTGAAGAGCTGATACTGCCGTCAGTGATCCAACTTCTATCGGGGGACGATCCAGCTTTTGCCGTCAAATCTACCGCCTTGGTAGGAGCGATCGGGAATTATCGTCGTTTAGAGAGGTGGAGGTAAAATTGTACCATCGACGTCTTCTTGGAGAAGCAAAGGTAGAGCTGCACCGTTGTCGTCCTCTCAAGGCTACAACATATTAGAAATGAGGTAAAGTTTTTTTTTATTTTAATTTTATTTATTATTTTTATTATTATTTTTTTTTTTGTGTTGACATTTCTTTTAGAGGAGGCAAAGCCACCTCTACACCAATGAAACCTAAGGTCTTCAAACTTGCTTGAAAAGGCAATGATGAAGTCTTTATTTTATTTTATTTTATTTATTTATTTATTTTTTGCTTGAAGAAAACAGTACTTTTAAATTTAAATTGAAGAAGAATCCTTTGAGCTTGAATATGAGGATACATCGATGAAACCTTCGATCTTGTACATGGAGAAAAACAACAACAGTGCAATCCTTAAAGTCGGTGGAGCACTGGTGAAGTCTTCAGTCTTGCATTTGAATGATTCTTTATGAAATTGTTTGAACTCGAATTTGAAGAAATATCAACAAAGCCTCAAAATTTGATGTTGAGGAACTTCTAATCTTCTGTGAACTTAAATTTTAAGAAACATTAACAAATCCCCCAAATTTGATTTTGAGGAACTTCTAAACTTGGCGATGGAGTGCTGAACTTCAAAAGAATGATGCCACCTTATAAGTATCAACATCTTGCTCCTAGTGCCACACCTTTTTTTTTTTAATTTTGTTATATTGCCCCCAGTAAGGCATCTTCAACTTTAAGTTGATATTCTTTGATGAGAACGAAAACTATCAATTGCTAATGCCATGCTTTATGTGATCATGAACTACTCTTGCTTTCCATTCTTCTCAACTGAGTTCTTTTTTTTTTTTTACTAGACTGAACTTAAAGTTTCCCTTAAGCTGCCTACGTACCCTTTATAATACAGAGATCAAGTTATAACGTAGTTCAAATATTTTTTTTGCTGGACTAAACTTAAGGTTTCTCTTAAGTTGCCTACGTACCATTTATAATATAGAGATCAAGTCATAACGTAGTTCAATTGTTTTTTTTTATTGGACTGAACTTAAAGTTTCCTTTAAGCTGCCTATGTACCATTTATAATATAGGGATCAAGTCATAACGTAGTTAAATTTTTTTATTATACCATTCACCTTTTAAGCTCTTGTGGGCTATGAGCACCATGCAGTTTAGGCTCTTGCGATAAGGAGATTTGCATATTTAGCAACTTTTATTTTCATCAAGAATTTTCTCATCTCCTTCGTTTATGGGATTGGTGAAGATAATGAATCTTGGTTTCACGGTCAAGGAACCTTCTATATTTATGTCAACAGACAATTTGCGTGATGGGATATGACTGTGAATCTTATCATCATCATTTTCTTCATGAAATGGTTTTGCCTTCAAAGATTTCATCTCTCTTTGTTGTTGATCGTTTTTCATCTTTAGACGATCAAAAGCAGATGTTGAAGGTCGATGTTTCTTCGATGTGGAGATGCTTAGCCTTTTGAAAGCTGAAGTTCGAGTGTAAGTAGACGTTGGACATTGGTTTTCTTCTTCTTTCGTAGCCATACTCAATCTTTGAAAGACTAAAGATCGAGTAGTTAAAGGCTTGATACGATCAAAGACAGAAGTCCTTTGCTTAATTTCATTTGAATTGTCTACTTCTTCATAAGAATCATAATTGTTGTCGACTTCTACTATGCTGGTAGTATGACATGCAGTGACTTCTATTACTTCTTCTGGATGATCCTCAAAGAAACTTCTTGGGAGGAATTCTGCCAAAGTTATCGACCGTCGAGGTTGGAGGAAGTCCTCATCTTTTCCTTTGATGGGCTTAGGCTTCCACATCTTCTTGTTCCTTCTTCTCTTCTTTTTATGGGAGATGTTTCCTTTTGA ATGTCTCACGCCCGCTGCGATCTATTTGACGTCAAGCGAGTCTTCGACGTTCGGCCACCATTCGACTTCTATCCAGGTTCGAGTTCGGCCCACGTTCGACTTCTGCCCAGGTATGACTTTTGCCCCGATTCGACTTCCACCAACGGTCCGACTTTCGCCCACAGTTCCACCTCTGCCCATGGTTCGACGCATACATATAGTTCCGCAGAATTATTGGAGGTTGGGGAAGTACCGAAAAATTCTGATGAACAATTGAATTTTCATAATTCAGAGCATTCAGGGGTTGATTTGGATATTGTTAGAATTCAAAGTTTTAACAAGGATGCGATTTTGCCTCATAATCACTTGTCTTTGTTATTAGTTTATCTTTTCCTCGTTCATCACATTTTATTATTCAGCTCCTATTTAGAATGGAGATACACATATCCATTGCTTGAGGAAGCTAGTTTAGAAACTTGGGCTATTGATGTTCTTTGCTGGTGCTCCTCTGATTTAGTTGTATTTCTCTGCTATGTATTTGGGGCAATTTTCTCTCCATTCCAATTCTGTTCCATTCTTCTTTGGAAATCTTACATTAAAAGGCCAATGGCAACTGTTGGACCAAGCCTTGGTGCTGCTGTTGCTATTGATTTTGTTGTCAATTATCCAGAAGCTATATGTATCTACCAGTTGGAATTTATGACTACAAATTTGAAGTTATATCCTCTGAATTATGGCTTTGCATTTAATCAATTTATAAGTAAAATATTTGAAGCATGTGATATAACACTATTCTTAATCATTACTCTCAGTAACAATATGAGTGGAAGCCTACGATGGGACGATCGCCTCATGGACTCTTTAAAGAACTTTGATTTTAGTAGCCCTAAAGTTAAGCAGCAATTTGGTCAAAAGCTTGGATCTTCAAAGGAGCTTCGATCTTTGAGGGTGTTCTTAAAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAACGAGCTTCAAACTTTGAGGGTAATTTTCTCATCTCCTTCGTTTATGGGATTGGTGAAGATAATGAATCTTGGTTTCACGGTCAAGGAACCTTCTATATTTATGTCAACAGACAATTTGCACGATCAAAAGCAGATGTTGAAGGTCGATGTTTCTTCGATGTGGAGATGCTTAGCCTTTTGAAAGCTGAAGTTCGAGTAATCATAATTGTTGTCGACTTCTACTATGCTGGTAGTATGACATGCAGTGACTTCTATTACTTCTTCTGGATGATCCTCAAAGAAACTTCTTGGGAGGAATTCTGCCAAAGTTATCGACCGTCGAGGTTGGAGGAAGTCCTCATCTTTTCCTTTGATGGGCTTAGGCTTCCACATCTTCTTGTTCCTTCTTCTCTTCTTTTTATGGGAGATGTTTCCTTTTGA ATGTCTCACGCCCGCTGCGATCTATTTGACGTCAAGCGAGTCTTCGACGTTCGGCCACCATTCGACTTCTATCCAGGTTCGAGTTCGGCCCACGTTCGACTTCTGCCCAGGTATGACTTTTGCCCCGATTCGACTTCCACCAACGGTCCGACTTTCGCCCACAGTTCCACCTCTGCCCATGGTTCGACGCATACATATAGTTCCGCAGAATTATTGGAGGTTGGGGAAGTACCGAAAAATTCTGATGAACAATTGAATTTTCATAATTCAGAGCATTCAGGGGTTGATTTGGATATTGTTAGAATTCAAAGTTTTAACAAGGATGCGATTTTGCCTCATAATCACTTGTCTTTGTTATTAGTTTATCTTTTCCTCGTTCATCACATTTTATTATTCAGCTCCTATTTAGAATGGAGATACACATATCCATTGCTTGAGGAAGCTAGTTTAGAAACTTGGGCTATTGATGTTCTTTGCTGGTGCTCCTCTGATTTAGTTGTATTTCTCTGCTATGTATTTGGGGCAATTTTCTCTCCATTCCAATTCTGTTCCATTCTTCTTTGGAAATCTTACATTAAAAGGCCAATGGCAACTGTTGGACCAAGCCTTGGTGCTGCTGTTGCTATTGATTTTGTTGTCAATTATCCAGAAGCTATATGTATCTACCAGTTGGAATTTATGACTACAAATTTGAAGTTATATCCTCTGAATTATGGCTTTGCATTTAATCAATTTATAAGTAAAATATTTGAAGCATGTGATATAACACTATTCTTAATCATTACTCTCAGTAACAATATGAGTGGAAGCCTACGATGGGACGATCGCCTCATGGACTCTTTAAAGAACTTTGATTTTAGTAGCCCTAAAGTTAAGCAGCAATTTGGTCAAAAGCTTGGATCTTCAAAGGAGCTTCGATCTTTGAGGGTGTTCTTAAAGTTGGAGTCTTCGAAGAAAGCTTGGATCTTCAAACGAGCTTCAAACTTTGAGGGTAATTTTCTCATCTCCTTCGTTTATGGGATTGGTGAAGATAATGAATCTTGGTTTCACGGTCAAGGAACCTTCTATATTTATGTCAACAGACAATTTGCACGATCAAAAGCAGATGTTGAAGGTCGATGTTTCTTCGATGTGGAGATGCTTAGCCTTTTGAAAGCTGAAGTTCGAGTAATCATAATTGTTGTCGACTTCTACTATGCTGGTAGTATGACATGCAGTGACTTCTATTACTTCTTCTGGATGATCCTCAAAGAAACTTCTTGGGAGGAATTCTGCCAAAGTTATCGACCGTCGAGGTTGGAGGAAGTCCTCATCTTTTCCTTTGATGGGCTTAGGCTTCCACATCTTCTTGTTCCTTCTTCTCTTCTTTTTATGGGAGATGTTTCCTTTTGA MSHARCDLFDVKRVFDVRPPFDFYPGSSSAHVRLLPRYDFCPDSTSTNGPTFAHSSTSAHGSTHTYSSAELLEVGEVPKNSDEQLNFHNSEHSGVDLDIVRIQSFNKDAILPHNHLSLLLVYLFLVHHILLFSSYLEWRYTYPLLEEASLETWAIDVLCWCSSDLVVFLCYVFGAIFSPFQFCSILLWKSYIKRPMATVGPSLGAAVAIDFVVNYPEAICIYQLEFMTTNLKLYPLNYGFAFNQFISKIFEACDITLFLIITLSNNMSGSLRWDDRLMDSLKNFDFSSPKVKQQFGQKLGSSKELRSLRVFLKLESSKKAWIFKRASNFEGNFLISFVYGIGEDNESWFHGQGTFYIYVNRQFARSKADVEGRCFFDVEMLSLLKAEVRVIIIVVDFYYAGSMTCSDFYYFFWMILKETSWEEFCQSYRPSRLEEVLIFSFDGLRLPHLLVPSSLLFMGDVSF Homology
BLAST of MELO3C034452 vs. NCBI nr
Match: XP_038884274.1 (uncharacterized hydrolase YugF isoform X1 [Benincasa hispida]) HSP 1 Score: 112.8 bits (281), Expect = 7.7e-21 Identity = 65/105 (61.90%), Postives = 70/105 (66.67%), Query Frame = 0
BLAST of MELO3C034452 vs. NCBI nr
Match: XP_024638809.1 (uncharacterized hydrolase YugF isoform X2 [Medicago truncatula]) HSP 1 Score: 108.2 bits (269), Expect = 1.9e-19 Identity = 59/94 (62.77%), Postives = 66/94 (70.21%), Query Frame = 0
BLAST of MELO3C034452 vs. NCBI nr
Match: KAA0064761.1 (putative hydrolase YugF [Cucumis melo var. makuwa]) HSP 1 Score: 107.1 bits (266), Expect = 4.2e-19 Identity = 59/88 (67.05%), Postives = 64/88 (72.73%), Query Frame = 0
BLAST of MELO3C034452 vs. NCBI nr
Match: XP_008445456.1 (PREDICTED: uncharacterized hydrolase YugF [Cucumis melo]) HSP 1 Score: 105.9 bits (263), Expect = 9.4e-19 Identity = 59/88 (67.05%), Postives = 63/88 (71.59%), Query Frame = 0
BLAST of MELO3C034452 vs. NCBI nr
Match: KAE9595663.1 (putative 2-hydroxy-6-oxonona-2,4-dienedioate hydrolase [Lupinus albus]) HSP 1 Score: 105.5 bits (262), Expect = 1.2e-18 Identity = 58/94 (61.70%), Postives = 64/94 (68.09%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy Swiss-Prot
Match: Q9FMD5 (Protein TIC 40, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=TIC40 PE=1 SV=1) HSP 1 Score: 52.8 bits (125), Expect = 1.2e-05 Identity = 23/33 (69.70%), Postives = 27/33 (81.82%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy Swiss-Prot
Match: Q8GT66 (Protein TIC 40, chloroplastic OS=Pisum sativum OX=3888 GN=TIC40 PE=1 SV=1) HSP 1 Score: 52.4 bits (124), Expect = 1.6e-05 Identity = 22/33 (66.67%), Postives = 25/33 (75.76%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy TrEMBL
Match: A0A5A7VGC5 (Putative hydrolase YugF OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G00660 PE=4 SV=1) HSP 1 Score: 107.1 bits (266), Expect = 2.0e-19 Identity = 59/88 (67.05%), Postives = 64/88 (72.73%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy TrEMBL
Match: A0A1S3BDL9 (uncharacterized hydrolase YugF OS=Cucumis melo OX=3656 GN=LOC103488473 PE=4 SV=1) HSP 1 Score: 105.9 bits (263), Expect = 4.6e-19 Identity = 59/88 (67.05%), Postives = 63/88 (71.59%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy TrEMBL
Match: A0A6A4NTS5 (Putative 2-hydroxy-6-oxonona-2,4-dienedioate hydrolase OS=Lupinus albus OX=3870 GN=Lalb_Chr17g0341181 PE=4 SV=1) HSP 1 Score: 105.5 bits (262), Expect = 5.9e-19 Identity = 58/94 (61.70%), Postives = 64/94 (68.09%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy TrEMBL
Match: A0A0A0KGX4 (AB hydrolase-1 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_6G366450 PE=4 SV=1) HSP 1 Score: 104.4 bits (259), Expect = 1.3e-18 Identity = 57/88 (64.77%), Postives = 63/88 (71.59%), Query Frame = 0
BLAST of MELO3C034452 vs. ExPASy TrEMBL
Match: A0A6J1KD64 (uncharacterized protein LOC111492171 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111492171 PE=4 SV=1) HSP 1 Score: 104.0 bits (258), Expect = 1.7e-18 Identity = 57/88 (64.77%), Postives = 62/88 (70.45%), Query Frame = 0
BLAST of MELO3C034452 vs. TAIR 10
Match: AT1G13820.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 94.7 bits (234), Expect = 2.0e-19 Identity = 53/88 (60.23%), Postives = 61/88 (69.32%), Query Frame = 0
BLAST of MELO3C034452 vs. TAIR 10
Match: AT5G39220.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 92.8 bits (229), Expect = 7.7e-19 Identity = 52/88 (59.09%), Postives = 57/88 (64.77%), Query Frame = 0
BLAST of MELO3C034452 vs. TAIR 10
Match: AT5G16620.1 (hydroxyproline-rich glycoprotein family protein ) HSP 1 Score: 52.8 bits (125), Expect = 8.8e-07 Identity = 23/33 (69.70%), Postives = 27/33 (81.82%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (DHL92) v4
Date Performed: 2022-08-06
Relationships
The following mRNA feature(s) are a part of this gene:
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