Lsi01G003380 (gene) Bottle gourd (USVL1VR-Ls) v1

Overview
NameLsi01G003380
Typegene
OrganismLagenaria siceraria (Bottle gourd (USVL1VR-Ls) v1)
DescriptionUnknown protein
Locationchr01: 2967563 .. 2975068 (+)
RNA-Seq ExpressionLsi01G003380
SyntenyLsi01G003380
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
GTCTGTTCTTACTCTTATGCGATCTTTCTTCCTTTTCGATTTTCCCGGGAAAACTCGAGGATTTTCGTATTTGGTTTCCTTCACTCTGATGCTAATCTCATCTCCGTGTAGAAGAGGAGATCTGCATTGTGAAGTAGATTATAAACTATGGATTTGGAATTTCATTCCGTCCTTATCATTTAGTTTGAAGGCTATGGCACAAGGGGATTTTGATTTTTGAGGTAGAGGTTTGGGAGTTATTGCGGAATTTCGATGGCATTGAGTGCTATGCATTGTTGTCACACCGTGTCGACTCTGATTGATCATCTACTGAAGATTGGACCAACGGTAATTCTTCACTTATATTCCATTGCAGAGGTTAAATAATTGATCAGGCTACCTATCTCTTTTTGAAAAAAATAATGATCGGAAACTCTTGATTTGTTAAAGATGATTTAGGGCTGATCTTGCAAATTCATCACTACGTTGCTTACCTCGTGAATGTCTAATATAGCTACTGCTATTGAAAAGATTAGGGCAACGAATTTACGTTGGTCGAAATTTTGGGAAGAAAATTTCAAGTCGGTGGAGTCTAACAGCCGAAGTACAGGAGGAAAGTGTTTTTTTTTTTTTTTTTTTTTTTTTTTGCGTTAATGGAATCGACATCCCTGTCCATCATCAGAATTCGTAAAATATGATGGCTGGGACTGAAGTGGAAGTGGAAGGGGGAGATTGGCGTGGGGAATGCAACCAAAGGTCCTATTATTTGACTAGTCAAGGGAAAGTGGATTGGACACTAGAATATCATCGTGGAGATACGTGTATGGTTTCGGTGTTTGCAAGATTCAAACGTTATCTATAATTAATTTAGTATTCTTGTCTTAGTTTAACTTGCAGGCTATGTTAAGAAGATCAGGAAAAGGGGCATAATGACGTAAAGGCTAGAGACGGGGCATGAAAAAGTTGTAAAGTAACCTGTTATACAGTGGACGTGCTGATCCAGGTCGGAAATTCTGGATGGAATCTGGGACAAAATATGTCCTTCCGTTTGATGATCATTTTTTTTTTAATTTTTTAATTTTTTTATTATTGTTTCTTTTCCATTGGGTAATTTCTGTCATTTCTTTTCCTGGTACCGTCTTCACCCAACCATTCGCTAATCATGTATTTCCTTATACATGAACTGCAGATAAAAATCTTGAGATGGGAGTATGATAGATTGGACAACAGTTAAGGAGGCAGTATGACTTGGCTATTTGGAAATTGAAATGCAGTTGAGAAAGTCGAAGACTTGATTTCACCAATGATGTATTCTTAAATTTGCTGAGATTACTTAGATAACTAATAACTAAAGAGCATATTTGATAGTTTCTTAACCTATCAATTTGATATTTGTGAATGTTCTAGACTAGTTTGAGCACATCTCAAGTATTCTCACAAGACAGCTTCTTAACCCTACTACATCCGGACTTTCTCTACACCTTGAATTGAAGTATTATGCTTTTAATTTACATTTACTTATTTGAAATATGTGAATTAATAGTTTATATATGAAGTACTCTGCCGTTTCTTGTTACAGAAAAGTTTAATGGAAGAGTAGGATAGAACAATTGCACTGCTTGCTTTTATAGATGTTTCTAAGAGCGCTTTTGTGAAGACGACCTTGGATTATCCTATATAATTTTCCTATATAATTTTTTAATTTGTGGAGTTGCATTACAAGACATCTGATTTTTACCACTGTCAAGAAAATAAGGAATTACTGTCGTCCATGAGTATTTATGTTCTTATTTAGTGGAATGAAAGAACAAGGGGGCCTAAGAAGAACAAACAGACAAACAAAGATACATGAACCAAAAAGTGGCTACTAGAACAACAATTACAGAACAGTACTCCAATAGTTGGTAATCACAAAAAGATATGAACTCACCCACCCACTCCTAAACAAATTGTTGCAAGAAACCCAAAGAGAGTATTAAAGCGAGCCTCTCATCACACCTTCCCCAAGAACTACTCTTTCCATGAAAAGCTCTTCTGTTCTTCTCCCACCAAATATTCCATAACACAGTGAAAGAAACAATCTGTCATAGGATTCTCTACCTCTCTTCCAAAAGCAAGGATGCAGCAATACCTCTTTCGAGCATAAGACACTCGTCAGTCTGAGCCAAAACAACTTGTAATGACTGAAAAAACCTAAAATGGACCTTCCTGAAAAAGGGCAAAACAGAAAGATTTTATTTTAGTTTGACTGGATTCTCTTTGTCTCATTACACATTTGCTGTATTTATGAAATGCTTCGGTGTGGCAATGCTTTATTCTTTGGCCGATATAAGTTATTTGTTGCTTTTTGATTGCGGGAAATAGGGGCATAAGATGGAAAAGCATTCTCTTAATCTCAAAGTTTAACAAATTTATTAAGAAACGAGGGAATGATTCCCTATTTGTGTGCTCAATACTAAAACTGTGCACCTTTCCATTTTGGGAAAGTTGAATAATTTTATTCTCATCCCTTAATTTTACTACGGTCTACGGTCTACCTTTCTTTTTTGGCTTTCTGTTTCTCTTTTTTCTCTGCAGGATCCATACAAGTTTGAATTTGATTCTCTTCACAGATATTCGCAAATCAGATCCATATTAATCTTCTCACATCAATACAATATCGTAAGTTTTGTTTCTATTCTTGTTTTGATTCCTTCTCATTCACATTCCTTACACTCCCCTGTATTCTACTTTATCAATATAATTCGCCCTTACAACCCCCCTCCCCAAGAAAGGGAGTGATGGATGTCTGAATGTGGCCAATATTATATGGTTCTAGTTTCACTTCTTCATGCTGAAAACTAGAGCTGGAATTTTTCTCCTCGTATGTGTAACCTGGAAAATACAGTCAAGATTATCATCAACTTTTTAGTTCTTGAATTTAACNTGTGGCCAATATTATATGGTTCTAGTTTCACTTCTTCATGCTGAAAACTAGAGCTGGAATTTTTCTCCTCGTATGTGTAACCTGGAAAATACAGTCAAGATTATCATCAACTTTTTAGTTCTTGAATTATTATTGTGATTGAAGTTGGCATTCAAATTACGACGTTTCAGAAACTTGAAGATGGAATTCAAATTATATCTCCGAATGGAACTTCAGTTTTATGATAACATTTTACAAACATCTTTTGCTTTTCTGAACCTTCCTGATAAAATCGACCATTTCATACTTAGTTGCAAATGGTGAATTATGCTCCCATGGGAAGATTTGTTAGTGACTTCTCAATAATTTTGGCATATGATTTGATCGAACTTCAAATTCAAAACTGCGCAAAGTTTGAAGATTTTAGGATTTTTCAGAGCAGAAGAGAACTGTCAACTCAATAATTATGCCCAAATGAACCTAACTTAACTGGCTAAAACTTGTATTATCAACCTCAAGAACTCATTGTGATTCTACACTCATTTTCCTTTCAACACTGTCGCTTATTAGCATCATCATAAAAAATAGCATTTCCCCCTCCTTTCCTGCCTATTATTGCGCTTTACAACTTTGCAAAAGCTTATCATGAGAGTTGTTCAATTTCAGCTGTTATTAGCTAAAACTTGTATTATCAACTCCAAGAACTCAAAATAATTGTAATTCTACACTCATTTTCCTTCTAACGCTGTCACTTGTTAGCATCATCGTAAAAAAATAGCATTTCCCCCCTCCTTTCCTGCCTGTTATTGCGCTTTACAACTTTGCAAAAGCTTATGATGAGAGTTGTTCAATTTCAGCTGTTAGAAAATACCTTTTGCCCACCCAAGAACTGGAGTCGTCTGCGAAAGTAAATTAGTAAATACTAGACACTTAGATTGCCGTATGAGAAGATGGAAGAACGTGAAATGAAGGAGTGGATAGATCAAGGATGACAATGAAAACCTTAAGATCAGTTTTTCTCTCAAAACAAAACCAATTAATAAGTGTAGGTCATACCACAAGCATAGATATACAGAAATGCAACTAGATGGGTTCTAATCAAGAATGAAGAAGAAAATGAACAGGCAAAGAGTCAATCTGCCTATCAAGAAAATTCACTCAGATTTCACCCAAAGTACAAAAACCCACATGGCAGAGTGATTCAAATGTGAACAAGTTTGAAGTTTTGCAGGTGTTTCAGTTGCGACAGCTTCAAATTTGCAAAATCCATCATCAAAGTTTAGAGCGTAGCTGCAAGGATCATACTGGAACTTGAACTGCTGCTTGCCTCTGTTCTTGATGGCTTTCTTCATTGCAGCTCTCATCCTCCAGAACAGTTTCCGGAATTGCTTCCTACTGTAAGTATTCATCCATTCTATGCCTCCCACAAATCCCATTTATACAGCGTCAACCTCTAAAATTTCTACTGCTAATCCCAAAAATGTCTTGAAATGAAGAGCAGGTTGCGATAGTTTCTGGGTATTTGAGGAAGATTATAAAGGATTCACAGACACAGAGACAAACATCAACAGTTGCAATCTGAGGTTTGTGCAGGAGTGTCAGAACCAAAACAACAAAAGAAGATTCACCTTTTTGTATACAGGAGGAACGCGAAATGAGAAAGGGCAAAGCGTAATCTTTTGGCCTTCCAATGAAGCTGCGCAGTTTCTGTTGAGCCTCTACGATTATCGGCCTTTTCTCCTTGGAGTCATGTTGGAATGCTCAAATTCCATCAACTACAGCGATAAAGACAGAGAAGGAGAAGGAGAAGGAGAGAGAGAGCTAATAGCAATTGCAGTGGGCAGAGAGCCTACAGAGACATATCAGTATCGAATATTGTTGCGGCAAAAGTAACGAAGGAAGGTGACTATGTTCAACGGTATGTCTTCGGTCTTTGCCTCTTTCACGGGCATAAAAGTATTTATGTTCCACTAAACTCCCTAACCATTCTCTACGGTTCCTAAATAGATTAATTCTTTAAGAAAAGCAAGGAATAAACTTCCTTTTGAACATTCTTAAAAAATAAAGTACAATTTTTTACAGGAAAGGATTATAACGACCCAACCCTTTCTCCGTTATGAATTTAACAGAAAAATGCTGCTGCAGGAATCCTGTGGGGTATTAGTCCAAAACCCCACTTAACAGAAACTGAGCCTTGTAATTCAGAATAAAAGAAAATCAATAGGTCAAAACTCTTTTATTTCTTTTCTTTTGAATTTTGGCTTGTGTGCACTCTTTCAAGGAAAAAAAGAAATACACACCTACAATGAAATAGTGAGTACTATTTAATGTTGACAATAAAATGATCTAGAGTAGGAATTAGAGATACAAGGTTTAAAACATTGTTTAAAAATATAGGAATTAGAGGTGTGTATTACTTTGAACCAAAAATTAGTCTAGAATGCTGTCTATGCAAACAGAAACTGTTGTATTGATCAATCAATCAGTGTTTGGCCATCTTATCCACTGATTTGTCTCCTATACCAGGCAAAATGGAGAAACTTGATTCATCTTGGTAACTTTATAGGATTTTCTAGGTCTTATAGCTCTCACACGCTCTTTTCCATTGCCCTTTTACTTTTCCATTTAACCAATAATCTATTTTTTTTGTCTCACTCCACCTCCTCATCTGTACACCTTTCTCTCTCTCTCTCTCTCCCCCATAGAATCTTGGGGTCTTTTGCCATAGCCCTCCCCACTGTGCAGAATTACATAATGCTGCAAAGGGAGATGAGGATCATCCCTTGGCTAATGACTTGTCACTCTAGCCAACTACGTGACCCTTGTCTTCTCTTTCAATTACCTTTCTGTAGGGTCATTATCCTATATAAAGTTGAGTCTTGAGATAATGGTCTGGTTTTCCATCAGCTATGCTAAAGTCTTCCACATGACATTATTTTCTCATGGTGGGGTCCCTCTTCACTGTTCTTTTTTTTTTTTTTTTTTTTAATGGGTAACCACAAGCTGGGGATAGGATTTTTTTTTGGGTGGTGACCCCCAAATGCCACGTGTCTAGATCATAGGTGGGGGGTGATACAGGGGACTGATCCTCCCAATAAAGGCTTTGTTGATGATGTTCAGATTGGGGGGGGGGAAGGCATGGAAGGTCCATATTCCAAATTCTCCTTTTTTCAAATCTCATTTGGCTACCATTAATGCCGTTGCCATTCCCTTGCAAGATCGTTTTCCCATTTGTACAAACGCCATTTGGTCTTCTTCTACCTTTTCTGCAGATTCTCTCTGCAACAACCGGTGCCTTATCAGAATTTTCTGTCATTTTATTACTTTCTCTTGCTCAGCGAATATCTATCTTCTATATTTTTGCTCTTTTCGCTATCTTTTGTCCATTTCACTTTCTATATAATAAAAGATATTTTAAAATTAAAATAACATTTTTTTCCCTATGTATTTTAAATTTCATTCCATTTTAGTACTGGTTCTTTCAAATTTCAAATTAAGATAAATTTAATAATTAGTAATTTGACGTTAATATTTTTAATAAAAATTGATCAAATAATAATAATAATTTCCAAAAGTTCACTATGTAGATGTCTTCTAAATTATTGAGGGAAGGCAAAATTTATATTTTTTATTTTAACGATTCATTGAAGGGAAATTTTCACAGATAGAAAAATGTCAAACTATTAGACACTTCTATCAACATTTATCAGTGATAAACTTCTATCATTTATATCATTGGTAGACTTCTATTAGCGTCTATCACAACCATCTAAAAATTTTGCTACTTTATGTAAATAGTTTCTCCTATTTTTCTATTTTTTAAGAAATTTCGTTCAATTAGCCAAAATAATAATTTAACTTAAAATATATTATTGTTTTAAGTGTAAGTACTTCTAAGATTTGTTATGAACCAATGATATCTTTTTGTTTTGCTATTTTGTTTCAGTTGAACAGATGTAGGGAGTCGAGATTTTAAGGTCAGACCTCAGTGGAAGAGTAGACATCGTAACCATCCAGCTCCAATAATACCTCATTTTTCAACCAGGATTTGGATGGTATTCCTCTCATCCTAAATTTTTGAAGTTAAGAATTTCAAATTAAAGCCCTGGATCTCATTGATTTTGCCTTCCAAGTTCTACCTCATATTATGATGCAAAAGAATTGGAAAAGTATAAAGAGGAAATGCATTGGCCTTCGATTCAAGCATGCTAAATTGGTGTATTGCTTTTTAAGCTTAGGTGATAGGAAAATGACTTTTTATGTTATTGGGTAAAACTTACCTTTACTGTCCGAAGCCGAAAGTGTGTTGGCTAAAACATAGAAAAAGTTCCACGTTTTATATTTCCAATGTCACACACATCAATAGGATCTCTGCTGGATTTTCTTCAATATCTTTTCTTTGTTAGCTTTGCAGTAGCGATTATTTATTTATTTATTTATTTATTTATTTTTAAAACGGATGTGGATTTCTTTACGGTGTAAATCAAAATGGAAATACAAGCTCAATGATAATAGTGGTTAAATTCCATACGTCTTTTTTTACTTATTTGGAGATGACCTAGTCCTTTTTTTTCTTTGTTCTTTTTTCCTTTCTATGAACCTATGTCTTCTAGACTTTTCAG

mRNA sequence

GTCTGTTCTTACTCTTATGCGATCTTTCTTCCTTTTCGATTTTCCCGGGAAAACTCGAGGATTTTCGTATTTGGTTTCCTTCACTCTGATGCTAATCTCATCTCCGTGTAGAAGAGGAGATCTGCATTGTGAAGTAGATTATAAACTATGGATTTGGAATTTCATTCCGTCCTTATCATTTAGTTTGAAGGCTATGGCACAAGGGGATTTTGATTTTTGAGGTAGAGGTTTGGGAGTTATTGCGGAATTTCGATGGCATTGAGTGCTATGCATTGTTGTCACACCGTGTCGACTCTGATTGATCATCTACTGAAGATTGGACCAACGTTTCACTTCTTCATGCTGAAAACTAGAGCTGGAATTTTTCTCCTCAGCGTAGCTGCAAGGATCATACTGGAACTTGAACTGCTGCTTGCCTCTGTTCTTGATGGCTTTCTTCATTGCAGCTCTCATCCTCCAGAACAGTTTCCGGAATTGCTTCCTACTGTAAGTTGCGATAGTTTCTGGGTATTTGAGGAAGATTATAAAGGATTCACAGACACAGAGACAAACATCAACAGTTGCAATCTGAGGTTTGTGCAGGAGTGTCAGAACCAAAACAACAAAAGAAGATTCACCTTTTTGTATACAGGAGGAACGCGAAATGAGAAAGGGCAAAGCGTAATCTTTTGGCCTTCCAATGAAGCTGCGCAGTTTCTGTTGAGCCTCTACGATTATCGGCCTTTTCTCCTTGGAGTCATGTTGGAATGCTCAAATTCCATCAACTACAGCGATAAAGACAGAGAAGGAGAAGGAGAAGGAGAGAGAGAGCTAATAGCAATTGCAGTGGGCAGAGAGCCTACAGAGACATATCAGTATCGAATATTGTTGCGGCAAAAGTAACGAAGGAAGGTGACTATGTTCAACGTTGAACAGATGTAGGGAGTCGAGATTTTAAGGTCAGACCTCAGTGGAAGAGTAGACATCGTAACCATCCAGCTCCAATAATACCTCATTTTTCAACCAGGATTTGGATGGTATTCCTCTCATCCTAAATTTTTGAAGTTAAGAATTTCAAATTAAAGCCCTGGATCTCATTGATTTTGCCTTCCAAGTTCTACCTCATATTATGATGCAAAAGAATTGGAAAAGTATAAAGAGGAAATGCATTGGCCTTCGATTCAAGCATGCTAAATTGGTGTATTGCTTTTTAAGCTTAGGTGATAGGAAAATGACTTTTTATGTTATTGGGTAAAACTTACCTTTACTGTCCGAAGCCGAAAGTGTGTTGGCTAAAACATAGAAAAAGTTCCACGTTTTATATTTCCAATGTCACACACATCAATAGGATCTCTGCTGGATTTTCTTCAATATCTTTTCTTTGTTAGCTTTGCAGTAGCGATTATTTATTTATTTATTTATTTATTTATTTTTAAAACGGATGTGGATTTCTTTACGGTGTAAATCAAAATGGAAATACAAGCTCAATGATAATAGTGGTTAAATTCCATACGTCTTTTTTTACTTATTTGGAGATGACCTAGTCCTTTTTTTTCTTTGTTCTTTTTTCCTTTCTATGAACCTATGTCTTCTAGACTTTTCAG

Coding sequence (CDS)

ATGGCATTGAGTGCTATGCATTGTTGTCACACCGTGTCGACTCTGATTGATCATCTACTGAAGATTGGACCAACGTTTCACTTCTTCATGCTGAAAACTAGAGCTGGAATTTTTCTCCTCAGCGTAGCTGCAAGGATCATACTGGAACTTGAACTGCTGCTTGCCTCTGTTCTTGATGGCTTTCTTCATTGCAGCTCTCATCCTCCAGAACAGTTTCCGGAATTGCTTCCTACTGTAAGTTGCGATAGTTTCTGGGTATTTGAGGAAGATTATAAAGGATTCACAGACACAGAGACAAACATCAACAGTTGCAATCTGAGGTTTGTGCAGGAGTGTCAGAACCAAAACAACAAAAGAAGATTCACCTTTTTGTATACAGGAGGAACGCGAAATGAGAAAGGGCAAAGCGTAATCTTTTGGCCTTCCAATGAAGCTGCGCAGTTTCTGTTGAGCCTCTACGATTATCGGCCTTTTCTCCTTGGAGTCATGTTGGAATGCTCAAATTCCATCAACTACAGCGATAAAGACAGAGAAGGAGAAGGAGAAGGAGAGAGAGAGCTAATAGCAATTGCAGTGGGCAGAGAGCCTACAGAGACATATCAGTATCGAATATTGTTGCGGCAAAAGTAA

Protein sequence

MALSAMHCCHTVSTLIDHLLKIGPTFHFFMLKTRAGIFLLSVAARIILELELLLASVLDGFLHCSSHPPEQFPELLPTVSCDSFWVFEEDYKGFTDTETNINSCNLRFVQECQNQNNKRRFTFLYTGGTRNEKGQSVIFWPSNEAAQFLLSLYDYRPFLLGVMLECSNSINYSDKDREGEGEGERELIAIAVGREPTETYQYRILLRQK
Homology
BLAST of Lsi01G003380 vs. ExPASy TrEMBL
Match: A0A5D3CRT7 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold255G007260 PE=4 SV=1)

HSP 1 Score: 152.5 bits (384), Expect = 1.9e-33
Identity = 69/74 (93.24%), Postives = 71/74 (95.95%), Query Frame = 0

Query: 81  CDSFWVFEEDYKGFTDTETNINSCNLRFVQECQNQNNKRRFTFLYTGGTRNEKGQSVIFW 140
           CDSFWVFEEDYKGFTD ETN NSCNL+FVQECQNQNNKRRFTFLYTGG RNEKGQSVIFW
Sbjct: 23  CDSFWVFEEDYKGFTDAETNKNSCNLKFVQECQNQNNKRRFTFLYTGGGRNEKGQSVIFW 82

Query: 141 PSNEAAQFLLSLYD 155
           PSNEAAQF+LSLYD
Sbjct: 83  PSNEAAQFMLSLYD 96

BLAST of Lsi01G003380 vs. ExPASy TrEMBL
Match: A0A0A0KI11 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G517110 PE=4 SV=1)

HSP 1 Score: 70.1 bits (170), Expect = 1.3e-08
Identity = 35/40 (87.50%), Postives = 37/40 (92.50%), Query Frame = 0

Query: 149 LLSLYDYRPFLLGVMLECSNSINYSDKDRE--GEGEGERE 187
           +LSLYD RPFLLGVMLECSNSINYSDKDRE  GEG+GERE
Sbjct: 1   MLSLYDDRPFLLGVMLECSNSINYSDKDREGVGEGKGERE 40

BLAST of Lsi01G003380 vs. ExPASy TrEMBL
Match: A0A0A0KK41 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G517120 PE=4 SV=1)

HSP 1 Score: 65.9 bits (159), Expect = 2.4e-07
Identity = 36/46 (78.26%), Postives = 38/46 (82.61%), Query Frame = 0

Query: 34 RAGIFLLSVAARIILELELLLASVLDGFLHCSSHPPEQFPELLPTV 80
          R+G    SVAARIIL+ ELLLASVLDGFLH SSHPPEQF ELL TV
Sbjct: 14 RSGAVWKSVAARIILKPELLLASVLDGFLHRSSHPPEQFLELLSTV 59

BLAST of Lsi01G003380 vs. NCBI nr
Match: KAA0052708.1 (hypothetical protein E6C27_scaffold120G003210 [Cucumis melo var. makuwa] >TYK13116.1 hypothetical protein E5676_scaffold255G007260 [Cucumis melo var. makuwa])

HSP 1 Score: 152.5 bits (384), Expect = 4.0e-33
Identity = 69/74 (93.24%), Postives = 71/74 (95.95%), Query Frame = 0

Query: 81  CDSFWVFEEDYKGFTDTETNINSCNLRFVQECQNQNNKRRFTFLYTGGTRNEKGQSVIFW 140
           CDSFWVFEEDYKGFTD ETN NSCNL+FVQECQNQNNKRRFTFLYTGG RNEKGQSVIFW
Sbjct: 23  CDSFWVFEEDYKGFTDAETNKNSCNLKFVQECQNQNNKRRFTFLYTGGGRNEKGQSVIFW 82

Query: 141 PSNEAAQFLLSLYD 155
           PSNEAAQF+LSLYD
Sbjct: 83  PSNEAAQFMLSLYD 96

BLAST of Lsi01G003380 vs. NCBI nr
Match: KGN49203.1 (hypothetical protein Csa_002915 [Cucumis sativus])

HSP 1 Score: 70.1 bits (170), Expect = 2.6e-08
Identity = 35/40 (87.50%), Postives = 37/40 (92.50%), Query Frame = 0

Query: 149 LLSLYDYRPFLLGVMLECSNSINYSDKDRE--GEGEGERE 187
           +LSLYD RPFLLGVMLECSNSINYSDKDRE  GEG+GERE
Sbjct: 1   MLSLYDDRPFLLGVMLECSNSINYSDKDREGVGEGKGERE 40

BLAST of Lsi01G003380 vs. NCBI nr
Match: KGN49204.1 (hypothetical protein Csa_003775 [Cucumis sativus])

HSP 1 Score: 65.9 bits (159), Expect = 4.9e-07
Identity = 36/46 (78.26%), Postives = 38/46 (82.61%), Query Frame = 0

Query: 34 RAGIFLLSVAARIILELELLLASVLDGFLHCSSHPPEQFPELLPTV 80
          R+G    SVAARIIL+ ELLLASVLDGFLH SSHPPEQF ELL TV
Sbjct: 14 RSGAVWKSVAARIILKPELLLASVLDGFLHRSSHPPEQFLELLSTV 59

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
Match NameE-valueIdentityDescription
A0A5D3CRT71.9e-3393.24Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold... [more]
A0A0A0KI111.3e-0887.50Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G517110 PE=4 SV=1[more]
A0A0A0KK412.4e-0778.26Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G517120 PE=4 SV=1[more]
Match NameE-valueIdentityDescription
KAA0052708.14.0e-3393.24hypothetical protein E6C27_scaffold120G003210 [Cucumis melo var. makuwa] >TYK131... [more]
KGN49203.12.6e-0887.50hypothetical protein Csa_002915 [Cucumis sativus][more]
KGN49204.14.9e-0778.26hypothetical protein Csa_003775 [Cucumis sativus][more]
Match NameE-valueIdentityDescription
Relationships

The following mRNA feature(s) are a part of this gene:

Feature NameUnique NameType
Lsi01G003380.1Lsi01G003380.1mRNA