PI0021102 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTTTTTGTAAAATAAAATTATGGACAAAATAGAATAAAATACTTAGTAAGAAAAGAAACAAACAAAAAATAGATTTAAACCAATAAAATAAATTAAGAGCAATATCGTGATTCACCAATTAGCACACGTTCCATCGGACGTCCCAGTGTTAGTGTTCCATGAAACTGACTGTTGCTTAACGCTTAAGCCACTGCAAAATGGTTAGCGACGGAAGTCCACATCCTGCACCCCTTCGATTGGTTCTAGCAAAGAATCTCGAGCCCACGCGGCTGCAGCTCAATTGCCTGATTGCAAATGGTCGACCAGATAAAATCGCTTCCCTGAACCAGGAGAACCAGGAACGTCGAACCGCTAAGTGATTGCTTCTTGGTAACGTTTTTCATTATTTGCTAACTTTTATTCATGATCGCCTTATGTTCTTGCGATGTTCAAATGCGGAATTCTAATCGCATGGCTTAGCGAAGCGTTTTGGTTGTTTAGCTATTTGCCATCAAATATGTATACACAACGAATCACTCTCAATCGTTGTAATTGCGTTTTTCTTTTATTCCTTCTGAATTGAAGATTTTTGCTAGCTGTTCTTATCTCTTTCTTGATTTTTTCAGCGGTAAATGTCTTCACGCCAATCTGAAACTGTGATTTCAGCTGATAAATTCGTATTGTCAAGGTTGTGAACGCATCTGCTGCATAGCTATTTAGAAGTTGATTTTAGAAAATTTAAAGAAGTGTTAGTGGTTTATCCAGTTTGAAATTGAGGAATAGATTCTCAAAATGAAGCTAGAGCCATGAATTGTCCCCACCACGTCGCTAAGTGTTCTGTTATAATTCTAGCTCGTTACCTTATTTTCTTTTCCGTTGTTCGAGTGGCCATCTGGATAATGAAGTTAAGACCACACAATATGAATGAGGTTACACTTTGCAGATTGTGATGCTTTTTTATTTTTGTTGTAGGACTAGGACGTCCCTATCTTCTGCAACCAATACGACAAGGTTTTCACAAGTTTCTCCCAAGTATTATGGGTGACCATGATAATGTATGCTTCTTGTTTAATTTGGCAATTGTTTCCTTGATGAGTTTTCTGCATCAGTGTGATATGCTTTTAGTTATAAATTTGTTAGAAATTAGAATATACATTATGATATACAAATTACTTATTTATGTTGGAATTCAGGTTTTTGATGAAAGCTACGAACAGACTAATACTGGTATGGTTTTTTCTTTGTTTTGACATTAAATTTAACATCATGATATGCTCACGTCAATCTTAAGTGTTCGTCAAAAGATCATACCTCTCTTGGAAGTGACTTCAAATTCTAATACATTTGCTTGGGTCTAACTAACCAAAGAGAATGCTTGATGATGCTTAAAATTTGACTCATGGATAAGAAATTTGAAAAGAAATATATGCTTCTTAGGTGTGAGTACGTTGCAATATTTGCTTTTAATTTAATAAAATTTGTGCTTTATGAAAAGGATCGATACACGTGGGCTTGAAATCAGAGCTGGTTTTCTGCTATGTAAATTTTCTTTTGATTGAAATTATCTTATCATTTTAATAATTTCAGTGTTTCTTTATGGTCACATGTAGGGGCAGTGATACGCAATGGAAGAGAAATCCTTTTCCAGGTAGAGGTTACAATTTCAGCTTTCTGATTTTTCTCTAGAGCAGAGGTCAGCAGGAAAATATTATGTTGCTCTTAATTGAGGCGAAGTCTCGGAAACAAGAAAAGAGAAAAAATGTTTGCCGTTTGAAATTTATCCTCAATCTCGTTGATTATTTTATTGTAAATCGGTTAGAATTTGAGGTGGAAGGACTTCGGGACTGTGAATGTTTTAGATCAAATCTCCAAGTCGTGTTAAACTTATGAGAGAAATTTTGCACCCATAATATCCATTGTAATTACAGGCATTCAACTGGGAATCTCATAAATGTGATTGGTGGGGAAATCTAGAGTGTAAAGTTCATGATATCGCAAAAAGTGGATTTACCTCTGCATGGTTGCCGCCTCCAACTCATTCCATTGCTCCTCAAGGTCAAAGGAACAAATTCACTTGAATTTTTATGTTCCTTTCACATATATGCATACATAACTCTTGATATTTTCTTTACAATTTCAGGTTACCTCCCTCAGAACCTTTACTCCCTAAACTCTTCATACGGTTCTGAGGACATGCTGAAAGCTTTACTTCAGAAAATGAAGCAGTGCAAGGTTAGAGCAATTGCTGACATAGTCATCAATCATCGTGTTGGTACTGTTGTAGGACATGGAGGAATGCATAATCGCTTCGATGGAATACTATTACCATGGAATGAGTATGCTGTTACCTCGTGTACTGGTGGCCTGGTATTTTTCTGTTACAAATTCCAAGTGAGCTCATAATTATCAGAAAACCTTTGGTCTTTAGTCTGTGGTATCTGTTCTAGGGCAATCGTAGCACTGGTGACAACTTCCATGGGGTTCCAAACATTGATCATACCCAACCTTTTGTCCGTAGAGATATCATAGCATGGCTGAAGTGGCTACGCAGTAGTGTTGGATTTCAGGATTTTCGTTTTGATTTTGCAAGGGGGTAATATTGTCCTTCTCTGTTTGTGTGCGTGTGTATTTATATTGTGGGGAGGCTGGGGCGTTACAGAGGTTCAAGGATAATTGTTCTGAAAATGACAAGATCCCTCCTCTGTTTCAAAATTTCACTGTATCATCTTCTCAACGTTCGCCTTGTCTTTTCTTGTAAGGAGTTCTTCAATGGATTATAACGTATATTTGCCTTCTGCTTTTATTTTTGATGTTTTAACTCAGTTTTTCTGCAAAATTCGTGAAAGAATATATTGAAGCAGCAAAGCCAATGTTTTCTATTGGGGAGTATTGGGATTCTTGTAATTATACTGGCCATGACTTGGACTATAATCAAGGTAACATGATGATGCATCATGTTGATAAATTGAAAACATGTTTTCAAGTTTCTGGATTTTTAGTTTTTTTTAATGGTTTTGTCTGTGAATTCCTATGTTCGTCTTATCAATTCATGTGTTCCATAGTGATGATTACAACTCTAAATGCAGATGGACATAGACAGCGGATAATAAATTGGATTGATGGCACAGGACAACTTTCTGCTGCTTTTGATTTTACAACTAAGGGAGTCCTTCAGGTATTGGTGTTGTGTGAGGCCATTGCTAACTCCCTTCCCTCCTCCAAATTGTAATACTACGGACCTCAAATCTTAATTACTTAAAATAGCAAGGATGAAGTGACAGCTATGTTATGGTTTATTTATTTCCCTCTAGATCAGTAGATCTACAATGTTTGACTTTTCACAACTCTTTCCATTTGCTTCTTTTCTCCTCCTTTATTGAGTGAAGTTTGGGTTTTGTTAATATTTGCTCTTGCTAGTACAATGCTTGACTAACATGCATTTGTTTCCTTGTTGGCTTCGTAATAAACATAATATAATTAATTTTGCTTGTAGGAAGCTGTTAAAAGACAATTATGGCGTCTGCGTGACTGTCAAGGAAAGCCACCAGGTGTGATTGGATGGTGGCCTTCAAGGGCCGTGACATTCTTAGATAACCATGATACTGGTTCAACACAGGTCGCATCTTGAAATCTATTTGTGAAATTATTGGTTGACAAATTTCAACATTTGTTTTCATTGCTCATTGTGCATGTGCGTTATAAAATGGTCTCAACTTGACCACGTGTCCATGTCCTTTTATTTGGATTAATATTTGAAAACTCATGTTCGGAAGTCATGCCCTGTATCGGGGATTGAGTGTGACCAGACCATACATGAAAATGTCATAGGAAGCAAGGGAGAAAAGAAGTATTGATGCATACCTGAATGAAGTTGTAATGGCTGGTTGTTCTACAGCTTCTATATGGCCAAATATGATGTCAACACAATAGCTACTGGACTCTGTTCCATTTGCCTATGTTGGTATTATCTTTTGTAAGATGCGTATGCGTTTTTGCAACATGTAACTGAGATTTATTGGCCAAGCTTTCTTTTATATAGGTTTGTTCAAATTGAACTAATTAAAATGTAAATAGTTCTAGGCTTCTAGCAATCCAACTCTGCATCTTAGTAAGTAGATAGCTTTAGATTGTTATTTGGAAACTCATAATTAATTTTTTTTCTTTGGTTGAAAGCAAGCGTCAAGTGTGCTTTCAAATATAGATATTGACTTGGCAGTTCATGACAATTAATGCAACTCGACATTCTTGGCAAATGAACTATATAATTCTTCATATGTATTTTCTTGAAACGTTTATAGAAGCTGAAAATGTATCATTAGAATGTTGGTGACTCCACTAACCTCAGCATACCATTGTTCTTGCAGACCCATTGGCCCTTTCCTGCCAACCATATCATGGAGGTATACAAGTGTGGCATATCATTCCATTTGCAATCTCTTTATTGCTTGTACTCTTATTCTTGGTGTGCTGTGGCTTCTTCGTGGTTTTTGGAAGCTCTCAATTGTTTGGTCCAATTATTCGTTGTGTAAAGTCTAATTACCCCCCATCAGATGGTTCTCATTGTTCGTTGTGTGTTTTGGAAGCTTTCAATTGTTTGTTCCAATTGATCCTATGTACGACTCTCTGTCTACATTTGAAGTTAGTTTCCTACTTTTAGCTGCAAATTCTATGGCTATAACTGTTCAGTATACATTCAAAAAAAAAAAAAAAACTGTTCAGCATACTAAGCGATCAATCTTTGATGTTTATGGGTGAATTTCATTGAAAGAGCTTTATAATTATTTTCTAGTCTTACAGTTGTTACCGCAACTACATTTATGCTTGGCCTAGAGTCGTCACTTGTCTTCCAGTAAAAAAAAATTCCATCATGTATCTTTTTTCTGATTCCTGGAGCTTTGGTTATTTCCTGCAGGGCTATGCATATATTCTCACGCACCCAGGGATACCAACAGTATTTTATGACCACTTTTATGATTGGGGTGACTCAGTGCATGACGAGATAGTAAAATTAGTATGTTGCATAGTCAATAATGCTTCAATAGAGTTTGTTATCTTCTATTCAAGCAAACTTCTCATGGTACTTCAATTCTATTTTTCTTGCAGATAGGCATTCGAAAATGTCAAGACATCAACAGTCGGTCATCTGTGAAGATCCTCGAGGCACGATCAGATCTTTATTCTGCAATAATTGGGGAGAAATTGTGCATGAAGATCGGAGATGGTTCTTGGTGTCCTGGTATGGAATGGGCTCTTGCAACCTCTGGCCGCAGATATGCAGTGTGGCAGAAATAAGGTTTGGAAAATTTACCTGCTTTCCCCAACCTTATATGTTTCTTTTTGTGCCATCGGGGACTACGTGTGTAAACTATAAATTTTCATAACAAGTTGGCTACTCAAAGTATAGTATCATAAATAAAATCACTGTGGATGAAATGTATTTTCACATAGTCTAGATTAAATCACATCGCTTATATTACTTCTTTTGTGTAATTTTAAATAAACCGTATGGTTGAGTCTGTTAATAGAAATGATTGTTTTCTTCAAGCAAACTAACCTTCCCCATTTGGAGCTTTGAGTGCTATATATATGGTGGAATGACTCTCGAACAAAGTTTGATGTATTTGGATAGTTGGAACTTGGTAGATAGTTATTCATAATTTGAATTATGTAGATACATAATATGTTCTTATTTACGGATTCATCTGTGCTTTTAATTAAGTTCAAGTAAATGGTAAAATGGTGCTCATTATGAAATTGTTCAATAACGTTACTAAAGCTCGTTGTCATGGAGATGTTTACTACTTGGAGTACAATGATTTATAAACTTAGAATTGGAATATAATGAAAAGGAGGCACTTTGAAGTCCTCTACGAGATTGGGATGGTTTGTGGAATTGAGCTATGAAGAAATTTGAGGAGTTACACATCCTTAGAAAGGTTGTCTTATTCTTGTTCGGGAACTACAATCCGAAATTTTCTTTTTTTATTTTCTAAACCAAATATAGTCAAATCATATTCAAATAATTTGTTTATAAAAAAATTGTCCTAAATTACAAACATGTAAAGTAATGTTTGAAACTTTTAATGAGTACAATATAATCTCTATGGGCCATTCTATCATAAATTTTGAATTGAAGTAGAATACCAGGGTATTGAGCACTTGGTGTCGTTTCATCGATACCTCAAAACCAGTTATTACACTCCACCCAGTCCTTATTAGGGTGCATTTCTTATCATATGTAGGACTTCCCTTCATCAAGTTTCAATTTACTATGCTATATAGACACTGATGTCTTTATGTGGCCGTAAGGCTGAGCAATCATCGATTCTTTGGATAAATCTTATGGCATGGAGAAAGAAAGAAGTTAATTTGAATGTGCGAACCTCTGTGAATCTTGCATAGGGGGTCCACTGTATTGGAACTTTAAATTAAATTTGGTATGTATATTGATTGGAAAAGTAGGGAAAGAGTTTAGGCATAGCAAGCTGAAAAATCAACCGTGGACATGGTTTGATCGGCTCAGTTTTATTTAGTAGGTCGATTCAATTCAATTTCAGTTTGTTTGATAGTTGGTTATGATATATCTGATACTCCAAAAGGTTAGTCTCGGTATCTGACTAAATGGAGTCGAACTAATCTGTTTATTCTCTTAATTCTTAAAGTGTGTGCCACATGGCAGAAGAGCAGGGAAGAGACAACAAAGCATCGCCATCACAATGCCACGGTCAATTCCCTCATCATTTTTGCTTTGAAACTCCAAAAGATAAACAGAACAACGCAACCCTTCCACGGCTTCCCTTAATCTCAACCTTCATCCTGTATATGTATGTATTGTTGGGCCATTATCATGTTTATCAACAGCGAATCTCTATAATTTCTTGAGTTATGTAACCTTGTCCTGTGTGGACACTACCTTGTCCCAGTCCTCAAACTTGGACAACTTTGTTTTACGTGCCACTTGATTATTCGATAGGCTGATTAATTTATTCTCAAGGGATACTAATTAATCACAGTAGCTAGTTTGCTTTTATA GTTTTTGTAAAATAAAATTATGGACAAAATAGAATAAAATACTTAGTAAGAAAAGAAACAAACAAAAAATAGATTTAAACCAATAAAATAAATTAAGAGCAATATCGTGATTCACCAATTAGCACACGTTCCATCGGACGTCCCAGTGTTAGTGTTCCATGAAACTGACTGTTGCTTAACGCTTAAGCCACTGCAAAATGGTTAGCGACGGAAGTCCACATCCTGCACCCCTTCGATTGGTTCTAGCAAAGAATCTCGAGCCCACGCGGCTGCAGCTCAATTGCCTGATTGCAAATGGTCGACCAGATAAAATCGCTTCCCTGAACCAGGAGAACCAGGAACGTCGAACCGCTAAGTGATTGCTTCTTGGACTAGGACGTCCCTATCTTCTGCAACCAATACGACAAGGTTTTCACAAGTTTCTCCCAAGTATTATGGGTGACCATGATAATGTTTTTGATGAAAGCTACGAACAGACTAATACTGGGGCAGTGATACGCAATGGAAGAGAAATCCTTTTCCAGGCATTCAACTGGGAATCTCATAAATGTGATTGGTGGGGAAATCTAGAGTGTAAAGTTCATGATATCGCAAAAAGTGGATTTACCTCTGCATGGTTGCCGCCTCCAACTCATTCCATTGCTCCTCAAGGTTACCTCCCTCAGAACCTTTACTCCCTAAACTCTTCATACGGTTCTGAGGACATGCTGAAAGCTTTACTTCAGAAAATGAAGCAGTGCAAGGTTAGAGCAATTGCTGACATAGTCATCAATCATCGTGTTGGTACTGTTGTAGGACATGGAGGAATGCATAATCGCTTCGATGGAATACTATTACCATGGAATGAGTATGCTGTTACCTCGTGTACTGGTGGCCTGGGCAATCGTAGCACTGGTGACAACTTCCATGGGGTTCCAAACATTGATCATACCCAACCTTTTGTCCGTAGAGATATCATAGCATGGCTGAAGTGGCTACGCAGTAGTGTTGGATTTCAGGATTTTCGTTTTGATTTTGCAAGGGGTTTTTCTGCAAAATTCGTGAAAGAATATATTGAAGCAGCAAAGCCAATGTTTTCTATTGGGGAGTATTGGGATTCTTGTAATTATACTGGCCATGACTTGGACTATAATCAAGATGGACATAGACAGCGGATAATAAATTGGATTGATGGCACAGGACAACTTTCTGCTGCTTTTGATTTTACAACTAAGGGAGTCCTTCAGGAAGCTGTTAAAAGACAATTATGGCGTCTGCGTGACTGTCAAGGAAAGCCACCAGGTGTGATTGGATGGTGGCCTTCAAGGGCCGTGACATTCTTAGATAACCATGATACTGGTTCAACACAGACCCATTGGCCCTTTCCTGCCAACCATATCATGGAGGGCTATGCATATATTCTCACGCACCCAGGGATACCAACAGTATTTTATGACCACTTTTATGATTGGGGTGACTCAGTGCATGACGAGATAGTAAAATTAATAGGCATTCGAAAATGTCAAGACATCAACAGTCGGTCATCTGTGAAGATCCTCGAGGCACGATCAGATCTTTATTCTGCAATAATTGGGGAGAAATTGTGCATGAAGATCGGAGATGGTTCTTGGTGTCCTGGTATGGAATGGGCTCTTGCAACCTCTGGCCGCAGATATGCAGTGTGGCAGAAATAAGTGTGTGCCACATGGCAGAAGAGCAGGGAAGAGACAACAAAGCATCGCCATCACAATGCCACGGTCAATTCCCTCATCATTTTTGCTTTGAAACTCCAAAAGATAAACAGAACAACGCAACCCTTCCACGGCTTCCCTTAATCTCAACCTTCATCCTGTATATGTATGTATTGTTGGGCCATTATCATGTTTATCAACAGCGAATCTCTATAATTTCTTGAGTTATGTAACCTTGTCCTGTGTGGACACTACCTTGTCCCAGTCCTCAAACTTGGACAACTTTGTTTTACGTGCCACTTGATTATTCGATAGGCTGATTAATTTATTCTCAAGGGATACTAATTAATCACAGTAGCTAGTTTGCTTTTATA ATGGGTGACCATGATAATGTTTTTGATGAAAGCTACGAACAGACTAATACTGGGGCAGTGATACGCAATGGAAGAGAAATCCTTTTCCAGGCATTCAACTGGGAATCTCATAAATGTGATTGGTGGGGAAATCTAGAGTGTAAAGTTCATGATATCGCAAAAAGTGGATTTACCTCTGCATGGTTGCCGCCTCCAACTCATTCCATTGCTCCTCAAGGTTACCTCCCTCAGAACCTTTACTCCCTAAACTCTTCATACGGTTCTGAGGACATGCTGAAAGCTTTACTTCAGAAAATGAAGCAGTGCAAGGTTAGAGCAATTGCTGACATAGTCATCAATCATCGTGTTGGTACTGTTGTAGGACATGGAGGAATGCATAATCGCTTCGATGGAATACTATTACCATGGAATGAGTATGCTGTTACCTCGTGTACTGGTGGCCTGGGCAATCGTAGCACTGGTGACAACTTCCATGGGGTTCCAAACATTGATCATACCCAACCTTTTGTCCGTAGAGATATCATAGCATGGCTGAAGTGGCTACGCAGTAGTGTTGGATTTCAGGATTTTCGTTTTGATTTTGCAAGGGGTTTTTCTGCAAAATTCGTGAAAGAATATATTGAAGCAGCAAAGCCAATGTTTTCTATTGGGGAGTATTGGGATTCTTGTAATTATACTGGCCATGACTTGGACTATAATCAAGATGGACATAGACAGCGGATAATAAATTGGATTGATGGCACAGGACAACTTTCTGCTGCTTTTGATTTTACAACTAAGGGAGTCCTTCAGGAAGCTGTTAAAAGACAATTATGGCGTCTGCGTGACTGTCAAGGAAAGCCACCAGGTGTGATTGGATGGTGGCCTTCAAGGGCCGTGACATTCTTAGATAACCATGATACTGGTTCAACACAGACCCATTGGCCCTTTCCTGCCAACCATATCATGGAGGGCTATGCATATATTCTCACGCACCCAGGGATACCAACAGTATTTTATGACCACTTTTATGATTGGGGTGACTCAGTGCATGACGAGATAGTAAAATTAATAGGCATTCGAAAATGTCAAGACATCAACAGTCGGTCATCTGTGAAGATCCTCGAGGCACGATCAGATCTTTATTCTGCAATAATTGGGGAGAAATTGTGCATGAAGATCGGAGATGGTTCTTGGTGTCCTGGTATGGAATGGGCTCTTGCAACCTCTGGCCGCAGATATGCAGTGTGGCAGAAATAA MGDHDNVFDESYEQTNTGAVIRNGREILFQAFNWESHKCDWWGNLECKVHDIAKSGFTSAWLPPPTHSIAPQGYLPQNLYSLNSSYGSEDMLKALLQKMKQCKVRAIADIVINHRVGTVVGHGGMHNRFDGILLPWNEYAVTSCTGGLGNRSTGDNFHGVPNIDHTQPFVRRDIIAWLKWLRSSVGFQDFRFDFARGFSAKFVKEYIEAAKPMFSIGEYWDSCNYTGHDLDYNQDGHRQRIINWIDGTGQLSAAFDFTTKGVLQEAVKRQLWRLRDCQGKPPGVIGWWPSRAVTFLDNHDTGSTQTHWPFPANHIMEGYAYILTHPGIPTVFYDHFYDWGDSVHDEIVKLIGIRKCQDINSRSSVKILEARSDLYSAIIGEKLCMKIGDGSWCPGMEWALATSGRRYAVWQK Homology
BLAST of PI0021102 vs. ExPASy Swiss-Prot
Match: Q8LFG1 (Probable alpha-amylase 2 OS=Arabidopsis thaliana OX=3702 GN=AMY2 PE=2 SV=1) HSP 1 Score: 722.6 bits (1864), Expect = 2.5e-207 Identity = 320/413 (77.48%), Postives = 373/413 (90.31%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy Swiss-Prot
Match: Q94A41 (Alpha-amylase 3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=AMY3 PE=1 SV=1) HSP 1 Score: 430.3 bits (1105), Expect = 2.5e-119 Identity = 199/397 (50.13%), Postives = 270/397 (68.01%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy Swiss-Prot
Match: P17859 (Alpha-amylase OS=Vigna mungo OX=3915 GN=AMY1.1 PE=2 SV=1) HSP 1 Score: 381.7 bits (979), Expect = 1.0e-104 Identity = 185/401 (46.13%), Postives = 261/401 (65.09%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy Swiss-Prot
Match: P27932 (Alpha-amylase isozyme 3A OS=Oryza sativa subsp. japonica OX=39947 GN=AMY1.2 PE=2 SV=2) HSP 1 Score: 380.2 bits (975), Expect = 3.0e-104 Identity = 183/403 (45.41%), Postives = 257/403 (63.77%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy Swiss-Prot
Match: P04063 (Alpha-amylase type B isozyme OS=Hordeum vulgare OX=4513 GN=AMY1.2 PE=1 SV=3) HSP 1 Score: 378.6 bits (971), Expect = 8.8e-104 Identity = 187/405 (46.17%), Postives = 260/405 (64.20%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy TrEMBL
Match: A0A5A7VG02 (Alpha-amylase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold255G003440 PE=3 SV=1) HSP 1 Score: 849.4 bits (2193), Expect = 6.5e-243 Identity = 391/412 (94.90%), Postives = 399/412 (96.84%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy TrEMBL
Match: A0A1S3BW59 (Alpha-amylase OS=Cucumis melo OX=3656 GN=LOC103493790 PE=3 SV=1) HSP 1 Score: 849.4 bits (2193), Expect = 6.5e-243 Identity = 391/412 (94.90%), Postives = 399/412 (96.84%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy TrEMBL
Match: A0A5D3D8R2 (Alpha-amylase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold134G00850 PE=3 SV=1) HSP 1 Score: 843.6 bits (2178), Expect = 3.6e-241 Identity = 391/416 (93.99%), Postives = 399/416 (95.91%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy TrEMBL
Match: E5GCD3 (Alpha-amylase OS=Cucumis melo subsp. melo OX=412675 PE=3 SV=1) HSP 1 Score: 843.6 bits (2178), Expect = 3.6e-241 Identity = 391/416 (93.99%), Postives = 399/416 (95.91%), Query Frame = 0
BLAST of PI0021102 vs. ExPASy TrEMBL
Match: A0A1S4DZE2 (Alpha-amylase OS=Cucumis melo OX=3656 GN=LOC103493790 PE=3 SV=1) HSP 1 Score: 842.0 bits (2174), Expect = 1.0e-240 Identity = 391/420 (93.10%), Postives = 399/420 (95.00%), Query Frame = 0
BLAST of PI0021102 vs. NCBI nr
Match: KAA0064621.1 (putative alpha-amylase 2 isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 849.4 bits (2193), Expect = 1.3e-242 Identity = 391/412 (94.90%), Postives = 399/412 (96.84%), Query Frame = 0
BLAST of PI0021102 vs. NCBI nr
Match: XP_008452915.1 (PREDICTED: probable alpha-amylase 2 isoform X2 [Cucumis melo]) HSP 1 Score: 849.4 bits (2193), Expect = 1.3e-242 Identity = 391/412 (94.90%), Postives = 399/412 (96.84%), Query Frame = 0
BLAST of PI0021102 vs. NCBI nr
Match: ADN34132.1 (cytosolic alpha-amylase [Cucumis melo subsp. melo]) HSP 1 Score: 843.6 bits (2178), Expect = 7.3e-241 Identity = 391/416 (93.99%), Postives = 399/416 (95.91%), Query Frame = 0
BLAST of PI0021102 vs. NCBI nr
Match: TYK19971.1 (putative alpha-amylase 2 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 843.6 bits (2178), Expect = 7.3e-241 Identity = 391/416 (93.99%), Postives = 399/416 (95.91%), Query Frame = 0
BLAST of PI0021102 vs. NCBI nr
Match: XP_016901343.1 (PREDICTED: probable alpha-amylase 2 isoform X1 [Cucumis melo]) HSP 1 Score: 842.0 bits (2174), Expect = 2.1e-240 Identity = 391/420 (93.10%), Postives = 399/420 (95.00%), Query Frame = 0
BLAST of PI0021102 vs. TAIR 10
Match: AT1G76130.1 (alpha-amylase-like 2 ) HSP 1 Score: 722.6 bits (1864), Expect = 1.8e-208 Identity = 320/413 (77.48%), Postives = 373/413 (90.31%), Query Frame = 0
BLAST of PI0021102 vs. TAIR 10
Match: AT1G69830.1 (alpha-amylase-like 3 ) HSP 1 Score: 430.3 bits (1105), Expect = 1.8e-120 Identity = 199/397 (50.13%), Postives = 270/397 (68.01%), Query Frame = 0
BLAST of PI0021102 vs. TAIR 10
Match: AT4G25000.1 (alpha-amylase-like ) HSP 1 Score: 359.0 bits (920), Expect = 5.1e-99 Identity = 186/404 (46.04%), Postives = 255/404 (63.12%), 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:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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