
CSPI07G06800 (gene) Cucumber (PI 183967) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGATCAAGAGTTACCTGATAATGAGCATTTGCTCACTCGTATCCAACAGTTGGAATATGGTATGTCGTCTCCCATTTCTTGTACATGGTTTTTAAATGTGGGCAAAATTGCTTCAATATATTATTTTGAACATCTCTTGTACTTTTGCATATTAGTTGTACTCGAAGAAATAGTGCTGAGGAATACTTTCATTTTAAAAAAATTTAGGACACTTTAATTAAGATGTACATTTTCAACAATCTATATAGTTTTTATATCCTAAGAAAATTCAAAGTTAATGGGTTGATGCATTTATATGCTGAAAAATTAGTTTGATTTCACACTCGAAATTTATTATTTTTGTCATATATGTGTCTTTTTTAGTCTATTCAACAAGTGTTCTAAGCATGTTTGACCTATGTGCTATACTAACAAATGTTTGTTATCATATACACGTGCCAAAGTGTCCAAGTGTCTAACACGAGTCTGACACAAACACCCAGCCAAACTAAAATGTTTGTGTTTCATAGTGTGCAACATATCTTTATCATTATTATTTGTTTACACAAAGTTTTTGAGGCTCAAATTTGACAATTCGGAGTCTTCTGCTTATTTTTATGGTAGGGTACTAGGGTTTGTGTAGCCATTTAACTTTTTTAGTTTTTGGGTCTGGGGTTTTCTATAGTTTATTTTGCTACATTTATTTTATGATGTTTTCAATGCTGATTTTTACATCCCGCAGAGCGTGATGAGTTAAGGAAAGATATCGAACAATTATGTATGCAGCAAGCTGGACCTGGTTACCTTTCTGTGGCTACTCGCATGCATTTTCAGAGGTACTATAACTTTTCCAAATTGTTTTCCTGTTCAGAGGTAGGTTTCCATATGTTTAGTGTAGTTGAAGGTTGGTCTTGGACTTTGAGTTATAAATAATGGGATTACTAAACTTTTACGACCCTATTAGGACAGCTGGCCTGGAACAGGAGATTGAGAACCTGAAAAAGAAGTTTGCTGCTTGTACCAGAGAGAATCACAATCTTCAAGAGGAACTCGCAGAAGCCTACAGAATAAAAGTATGATGGTTAGTTTTTCATTCAAGTCAGGGATAAACCTCCTTACTAGCTTATATTTCTCTTCAATGTCACCAGAGTCAGCTGGCAGATCTGCACAGTTCAGAGGTTGCAAAGGTCCTTTTCTTGATTCCTGCTCTTGTGTACTTGTGCTTCTTTTAGTAACTTTTCTTTTTTCTAAAAAAGGAATTGGATATACCAACACCTTTGTTAATAATTAATTAAAGAAGTTTACTATAAGGAAGGAGGCAGGGAGAAGGTTTTTTTAGTTAATATTCACGTGTTAAACTTGCTGTGTCAATTGTAGTTGCTTCATCCTCCATCTCAGTTGTAATCATAAACATTCTTTATTTCCAGAATTTGGAATCGGAGAAGCAGCTTAAGTTTTTCCAGGGTTGCGTTGCTACTGCTTTTGCTGAGCGGGATCATTCTATTATGGAGGTCATAAAAACCCTCATTTTTAAGTTTTCTGGTTATACTTTTCTTCTCTTTCTAATAAAAATAATTTTGAATCTGCTATATGATCGATACCAGGCTGAAAAGGCGAAGGAGAAAGAAGAAACGATGTCACAAAAGCTAAAAGAGGTCGAAAATAGGTATCTCATATCTTTTCATCAGATATTTGTTGCTGAAAGATCACACTAGAGTGAGACAATGAATCAAGTGCAAGTAATTGATTAATTTATCTTTGCTTGAAAGAAATAGGAGAGTCTTCGGTTATAAGGCAAGTCTCTTTGCCAAGGTTTGGGTATTGATTAGGTTCAGGGTGTCCCTTCGGATTTACTCACCAATAAGGACTTTAGTGGTTATCATCTATCTTTCATTCTTTTGAATTGGAGCTCCTTTTTGTAAATTTGCAACTTTTTTGTTTTGTTTCTTTTGGCCTGGGCTCTCCTTTTTGTTTTGCCATTGAATATGCTTTCCTTCGTTCTCAATGAATAATGTTTCCTTTTATTCTTTCTTTCTTTCTATGTTTTTTTAAAATCTAGTCTCTGTTATTGGAGGACCCATATTAAAAAATGTTTTTCAAGACCTATCAATTTACATTGAGAATTTCAGCGTATTTAACCATATGTGAAAGATGCTTGGAAGTCGAAGCAGAAAAGACAACCCACTGCTAACTGAACCAGACAGCCAATTAAGCAGCTGGAAAACCTACACATACTATAAACCATTTCATGAACTCATAAACCTATCCTCAACATTGAGAGGGCTGAAAATCTAATAGTTGTTGGACAAGTTTTTACTTCTCGTTTCACTTTATTTTCTATCTTCTTATCATCTTCTCCTCACAATTATTGACTAGGTGCTTTGGCTGTATCAATTGTGAAGCTTTGTTAGATAGTGTAGCAAGTTTGCTTCATATTACATATTGTGTGTTCCTCTCCTCATTTTTTGTTATTTTGTTCCTTTCTTTCCCTGTTTAGGAGTTCCAAATGGTGGTAGACAGTATAGTTTCTAGGTTTTATGGGATTGCTATATATTGTTTTACCACTTCCCTTCCTGTATTTTCTATTCCTCCCTCCCTCCATAATCATGACGTATCTTGTGTCGGTGATGCAGATTAGAGGAGTTGTCTTCTGACTGTCTAAATTTGAGGGAAACTAATGATACACTACGCATTAACCTAGCCAAGCAAGAAGAGTGGAATGAGGTCTCGAAACAGGTACCAAGCCATTAAAGTCCTTACCTACCCATCCTCCTTCTGTGCTGATATTTTGAACATCATTAGATGGTTGTCACTTCAGTTCAATCTTAAACCCTAAACGATATTGCAACCTGTCTAAAACTGTAACTAACATCTAGATATCTTGCTTTATTATTTGCTTTTTGTCCCAAAGATTCATATTGACATATTTCTTGGTGTCTCAAGTCAAACAGGCCTTTTGTTGGGTTGATTCTAGAAGATCGTAGGTATTTTTAGGGTTTTATTGAATAGAAAGAGGTTTTTGCTCCCAAATGATGTCACTTCCCGGCTGGCTTTGATTCATGTTGAACATCCTTCCACAAAGCAAAGAACTTGGCTCTACATTTCTGCAGAGCCCTTATTTGGTTTCTTCAGAATGAAGAGAAAAATAACAATCTTTAAAGATAGAAAAGTATTTGGTCTTTTCAGAATGAAATGAAAAATAACAATTTTTAAAGACAGAAATTGTTTGAAGTCCGCACGGATTTCCTAGCAATTGGCTATTTTTTGGTGTAAATTTTAAATTTCTCTCTTTTAGCCTTAAGCTCAACGAATTGAAGAAGCTTTGTATAACTTCTTTCATTTTTTTTCCAATGGAAGTTTTGTTATTCATTAAAGGGAAAAAAAAAATCTCCTGATCGGAATTTCTCCCTTTGTACGACTTTAATATTATCAATGTAAATTTTGTCATATTAAAATAATAATATGGGACATTTTCAAATTTTATTCCTAAACTTGTCATGTTGCATGAATTTTCATCCTAAACTTTCAATTTCATCTCATTGGACCCTTGACTTAGTTAAGTGTTGCCAATTTTTGCTAGTTCACTCGCTAATTTTAACAAACCAGGAAAAAAGAAATCAAATTTAAGTAAATTCATTAATTTCAATGATATCAAAATTTTCACAAATTTAAGTTTGATTAATGTGCAAATTAACCTTAAAATGAATTTATAATATAGCTGTTTTTTCTAATCATTGTTTCTGATTTGTTACTATCTATGCTCCTTTTCGGAGAATTCAACATTTAATGCATGGAGGTCATAGCATGAAGTTCTTCATTTCTTCCCATTGCTCATTTCTAATTCTAATAGCTATTTTCGCTCTATCTATTAGGTAATCAATAAGTTCTATGAGATCAGACAGAATTCTCTTGAAGGATTTATGGATACTAGCTGGGACGAAAAATGTCAGTGTCTTTTACACGATTCTTCAGAAATGTGGAGTTTCAATGATTCTTCAACGTTTAGATATATAGTAAGTTTCCATTTAGCAATTGGATTTTTCTCATTGTATGATATTATTTCGTATGAGCCAAAGCGAGCTTAGCTTAATAGTAATTGCCATGGGCTTCCTTCCTAGAAATCGGATGTTTGGTCCTCCACCCCAGTTATTGTACTTAAAAGAGATTTATTATTCGTATGGATTATTTGATATCTTTTTCTTTTATTTTTCTTCTAGTGATTAATTGTTCAGTTACTAACTAACTATAATTAATCAGGGAAAAAAATAATTTTCACCGTGAACTTAGCAAGGTGTATCCATTTTCCCCATTGAACTTTCAATTTTTATGAAATTAGGCCCTAAATTTAAATAAGTGTCACAATTTCTATCTTTGTTTCAATTTATGCTAACTCAACCACTAAATTTATATTGGTGTTGAAACTTGACATTTATCAATTTGTACTAGACATATATTTTGTAATTCTTTAACATACACGAAACTATCTTTTAACTATTCTTCTAACTAAAGTCTATTCGAAGGTATAAATTGTAACATTTTTATCCAAGTTTAAGGTAAAAAATTACAACATTTATCCAAGTTAAAGGTAAAATTTGTAATGTCTATCCATGTTTGCAAATTTTTATAATATCCTGATGGAACATGATGCCCGATCGATAAAGTGTAATGTCTATCCAAGCTTCAGTAATTCAATATGCAGTTTGGAATCTGGGGAGTACAATGGTTTCTATTTTTTGGATGAAGTACTTACCAATTTCCACAAGCTTTGTGCAATTGTGGTAAACTAGGGTCTTTGTTATGACTGATCACAAGGTGAGTATGTTAGGAATATGTTATGGAATATTAGGAGGGTATATTTGTGGTTAGAAAGGATTTAATTGTTAGAAGGTGATTATAACTGAGGGAATTAAGGTGTTGGTGTAGGTGATTTTTAAAAATAGTTTGTGTGAAGGTTGTTGCTTCTCAAAGTGCTTGGGGAACTTGTAAATCTCCTTGGAATCAATGCTATTTTTTTATTGTTGTGTCGGGTAAAGAGTCTGTTCTGCTTATAATTCTGTTCATATTACTGAATTCTTTTATGAATAATGTATGCTCTTTATAACTAGCAAATGAAATCATCCTTATTCCACATAATGCTATGTATTCCAGTTTTTTGGTTGAATATGGTTCTTGTGCAAATGGATTAACTTCTCTTTAGACAGAATTCTTTGGAAGAAGGACTGGAGACAATGAAGAAAACAGTGGACAATCTTCAAAATAAGCTACGCATGGTATGTTGGTTTCTCCAATGTTTCAACTCTGCGTTTAACTTCTTCAGCTGTTTTACTGTGAATCTTTATGCGGGTGTAGGGTGTGGAAATTGAAAAGCATTTAAAGGGAAAGGTGCATGATTTGGAATTGAAGCTGGTCAGTACTCCCACCTTTTGGGTAGAAGATATAACCTAATTTTATGCATATATCATCTTGTTTACCTCCAATGCAGATTCACATGGATGATATGGTCAAGAGCAAGATTTCAGGGTTTTGTCAAAACTATTCTCAATATCGAGATCATATATTGAATTTATTGGAAAAAGAAATGTCTAATATGCATTCGACAATAGGAGAGATTGAGGAAAAAATTGTTCAATATGGCTGGGGAGTTCAAAAATTGAAGGATTCTGAGAAAGTGCTGAGAGAAGAAAATGATTCCCAGGAGGGGCATTTGAGTACCAATGCCAAGGTGGGTATACTGGATGCAGAAATGAACTGCCTTCAATTGGGAATAAATGATAATAGAGAATCTATGCAGTATCTTGTTGTGTCAATACCCAATAGTATTATAGGCTTATGGATTTACTATCTGCTATTTTCTCATGCAGTAGTCCATTTGTCTATTGGTAGTTTGTATATAAGTATCCTTTAGTGAAACTACTTTTGGTCCATTTTATTGGGCTTTCTTATTCCGGTCTTCTTTCTTTGTGCTTCTTTGGGGTCGAGTAGCATGATATTTATATGGCAGCTGTGATATCTTGTAGACTAAAACTATAATGAAGCATTTAGCATGTAGGAATGAGATTCTTAAGCCCGCCCAGGATTAAACTGTTTGGATGTGCATGAGATTGTTATTTACTACAAGCCTGACAATATATATTAGTAGCGTTTCATTTGATGGAATGAAATTTATGAAAAGTATCTTGTAAATTATGTTTTATTTATAAGATATAATTTCTTAAATTAATTTATATTAACTGAATGAGAACTTTAATGTTTGTGAAAAGTATTGGCATTTGTTCTCAAAAGCCAAATTTTTTTCATCCTTCAGTGAAAAATTTTATAAGTGAATGTAGGGTTTGCCTATGGGGATGGAGTTAAATTTCTTACAACTGTTTAAACGCATTACAGATGGAAATTCATGGCTTACCAGATTCCGTTGCTGATGGAAACGCTGAAGCCCTTGCTTTGGCCCTTCAAGAAAAGGTATAATATTGTTCCCATAGTTCATTTCTGTCTCCCTGCAGTGTTATATTGCGTGATTCAGCAATATGCACTTCTATATTATCTTCGGGTGTATTGTCCTATCTTTCTTCTGATTGATCTCTTAACTATGGATCTTTCTGTAGGTTTCAGCTTTGTTACTTCTTTCACAACAGGAAGAGAGGCACATGCTGGAGAGAGATGTCAATGCAGCACTTCAAAGAAAAACAGAGGAGCTCCAGAGAAACTTACTGCAGGTTTTATACCCTTCACTTTGGGTTCAATATTTCAGATTATCGTTTTAAAATGTCTCAAAGACTGCCTACAGGCCACTATTATTTGGAATGAAAAGTGATGATGGGTTGATCTGTTTCTGAAATGATAGTGATATTGATTCCAGGTTACCCATGAAAAAGTTAAAGCACTAATGGAGCTGGCACAAGTAAAACAAGAACTTCAACTACTCAAAGAGTATGTGCATTGCAGCTTGAGACTGATTGTTGTCTTGTGTTTGATTCTCATGACAATGTATCATAGGAACTTGGTCCAGTAAATACAATTTGTGACTGCAACTGCTTTTTCATATTTTTCCCTCAAAATGATTTTACAATTGACCCGCATGTTATGTTCCTTGTGCAAGGAAAAGTGTTCATGACTTGAAACGAGGAGCAGACACTGTGGAAAGGAAACTTGTTACTCACGAGAGAGAGGGGAAATTAAAAGGCTTGCTGAAGGGTACATATCTGAGACGTTGGGTAGGTACACCAGAAATCAGTGGAAGTGAAGCTGCAGCTCACTTGGATAATGAAGAAAATTACTCTTCTCGGAAGTCTGCTGTTGATTTTGCCAGGTTAGTTAACATTCGTGATGTGCTTTGGAAGTGCAGGATTGTTACTCATGTGTGTACGGGTATTGCATGTGATATTCAGTGGCAACTACTCATGTATGAAAGGCTTGATTTTTTTTTTATTTTTTGCAGAATAAAAATTGAGAATGCAACTCTTAGAGAAAGTATTGAAAGCATGGAGCAACTGACCTCTTCAATTCACAGGCTTCGTCTCTATCTTCTGAAGGTGGCTATTTGCTTATTGCATCAATTGAGTTACTGGAAGAACATCAAATCACTTATTATGGGGCTCAAGTTGTCACAATTATAACTATTGTTAATTTGCAGGCTAAAGAGTCTGCTACGTCTGAAGGTCCAGGTACAAGTGTGTTGGAAGGTCTCAAGGGCATAATCAATGAGGCAAAACTCATAAAGACTGCACTTTGTAGCTCCTTACCCATTAGTTGGTCAGCTGAGGTAAATGCTGGATCCAGCGAGGAAACTTTACATGATTCTCATGATGTTTTAGGAGAGGGAGACTCTAGCCTGGGGAAGATAGATTTTGTTTCTGCTGCTGGTTTTGAGATGGTTGAGCTCCTTGTTTCTGTTGCTGAGTTGTTGATAAAGGATTACAAGGCTGAAAGTGGTTCTTGA ATGGATCAAGAGTTACCTGATAATGAGCATTTGCTCACTCGTATCCAACAGTTGGAATATGAGCGTGATGAGTTAAGGAAAGATATCGAACAATTATGTATGCAGCAAGCTGGACCTGGTTACCTTTCTGTGGCTACTCGCATGCATTTTCAGAGGACAGCTGGCCTGGAACAGGAGATTGAGAACCTGAAAAAGAAGTTTGCTGCTTGTACCAGAGAGAATCACAATCTTCAAGAGGAACTCGCAGAAGCCTACAGAATAAAAAGTCAGCTGGCAGATCTGCACAGTTCAGAGGTTGCAAAGAATTTGGAATCGGAGAAGCAGCTTAAGTTTTTCCAGGGTTGCGTTGCTACTGCTTTTGCTGAGCGGGATCATTCTATTATGGAGGCTGAAAAGGCGAAGGAGAAAGAAGAAACGATGTCACAAAAGCTAAAAGAGGTCGAAAATAGATTAGAGGAGTTGTCTTCTGACTGTCTAAATTTGAGGGAAACTAATGATACACTACGCATTAACCTAGCCAAGCAAGAAGAGTGGAATGAGGTCTCGAAACAGGTAATCAATAAGTTCTATGAGATCAGACAGAATTCTCTTGAAGGATTTATGGATACTAGCTGGGACGAAAAATGTCAGTGTCTTTTACACGATTCTTCAGAAATGTGGAGTTTCAATGATTCTTCAACGTTTAGATATATAAATTCTTTGGAAGAAGGACTGGAGACAATGAAGAAAACAGTGGACAATCTTCAAAATAAGCTACGCATGGGTGTGGAAATTGAAAAGCATTTAAAGGGAAAGGTGCATGATTTGGAATTGAAGCTGATTCACATGGATGATATGGTCAAGAGCAAGATTTCAGGGTTTTGTCAAAACTATTCTCAATATCGAGATCATATATTGAATTTATTGGAAAAAGAAATGTCTAATATGCATTCGACAATAGGAGAGATTGAGGAAAAAATTGTTCAATATGGCTGGGGAGTTCAAAAATTGAAGGATTCTGAGAAAGTGCTGAGAGAAGAAAATGATTCCCAGGAGGGGCATTTGAGTACCAATGCCAAGATGGAAATTCATGGCTTACCAGATTCCGTTGCTGATGGAAACGCTGAAGCCCTTGCTTTGGCCCTTCAAGAAAAGGTTTCAGCTTTGTTACTTCTTTCACAACAGGAAGAGAGGCACATGCTGGAGAGAGATGTCAATGCAGCACTTCAAAGAAAAACAGAGGAGCTCCAGAGAAACTTACTGCAGGTTACCCATGAAAAAGTTAAAGCACTAATGGAGCTGGCACAAGTAAAACAAGAACTTCAACTACTCAAAGAGAAAAGTGTTCATGACTTGAAACGAGGAGCAGACACTGTGGAAAGGAAACTTGTTACTCACGAGAGAGAGGGGAAATTAAAAGGCTTGCTGAAGGGTACATATCTGAGACGTTGGGTAGGTACACCAGAAATCAGTGGAAGTGAAGCTGCAGCTCACTTGGATAATGAAGAAAATTACTCTTCTCGGAAGTCTGCTGTTGATTTTGCCAGAATAAAAATTGAGAATGCAACTCTTAGAGAAAGTATTGAAAGCATGGAGCAACTGACCTCTTCAATTCACAGGCTTCGTCTCTATCTTCTGAAGGCTAAAGAGTCTGCTACGTCTGAAGGTCCAGGTACAAGTGTGTTGGAAGGTCTCAAGGGCATAATCAATGAGGCAAAACTCATAAAGACTGCACTTTGTAGCTCCTTACCCATTAGTTGGTCAGCTGAGGTAAATGCTGGATCCAGCGAGGAAACTTTACATGATTCTCATGATGTTTTAGGAGAGGGAGACTCTAGCCTGGGGAAGATAGATTTTGTTTCTGCTGCTGGTTTTGAGATGGTTGAGCTCCTTGTTTCTGTTGCTGAGTTGTTGATAAAGGATTACAAGGCTGAAAGTGGTTCTTGA ATGGATCAAGAGTTACCTGATAATGAGCATTTGCTCACTCGTATCCAACAGTTGGAATATGAGCGTGATGAGTTAAGGAAAGATATCGAACAATTATGTATGCAGCAAGCTGGACCTGGTTACCTTTCTGTGGCTACTCGCATGCATTTTCAGAGGACAGCTGGCCTGGAACAGGAGATTGAGAACCTGAAAAAGAAGTTTGCTGCTTGTACCAGAGAGAATCACAATCTTCAAGAGGAACTCGCAGAAGCCTACAGAATAAAAAGTCAGCTGGCAGATCTGCACAGTTCAGAGGTTGCAAAGAATTTGGAATCGGAGAAGCAGCTTAAGTTTTTCCAGGGTTGCGTTGCTACTGCTTTTGCTGAGCGGGATCATTCTATTATGGAGGCTGAAAAGGCGAAGGAGAAAGAAGAAACGATGTCACAAAAGCTAAAAGAGGTCGAAAATAGATTAGAGGAGTTGTCTTCTGACTGTCTAAATTTGAGGGAAACTAATGATACACTACGCATTAACCTAGCCAAGCAAGAAGAGTGGAATGAGGTCTCGAAACAGGTAATCAATAAGTTCTATGAGATCAGACAGAATTCTCTTGAAGGATTTATGGATACTAGCTGGGACGAAAAATGTCAGTGTCTTTTACACGATTCTTCAGAAATGTGGAGTTTCAATGATTCTTCAACGTTTAGATATATAAATTCTTTGGAAGAAGGACTGGAGACAATGAAGAAAACAGTGGACAATCTTCAAAATAAGCTACGCATGGGTGTGGAAATTGAAAAGCATTTAAAGGGAAAGGTGCATGATTTGGAATTGAAGCTGATTCACATGGATGATATGGTCAAGAGCAAGATTTCAGGGTTTTGTCAAAACTATTCTCAATATCGAGATCATATATTGAATTTATTGGAAAAAGAAATGTCTAATATGCATTCGACAATAGGAGAGATTGAGGAAAAAATTGTTCAATATGGCTGGGGAGTTCAAAAATTGAAGGATTCTGAGAAAGTGCTGAGAGAAGAAAATGATTCCCAGGAGGGGCATTTGAGTACCAATGCCAAGATGGAAATTCATGGCTTACCAGATTCCGTTGCTGATGGAAACGCTGAAGCCCTTGCTTTGGCCCTTCAAGAAAAGGTTTCAGCTTTGTTACTTCTTTCACAACAGGAAGAGAGGCACATGCTGGAGAGAGATGTCAATGCAGCACTTCAAAGAAAAACAGAGGAGCTCCAGAGAAACTTACTGCAGGTTACCCATGAAAAAGTTAAAGCACTAATGGAGCTGGCACAAGTAAAACAAGAACTTCAACTACTCAAAGAGAAAAGTGTTCATGACTTGAAACGAGGAGCAGACACTGTGGAAAGGAAACTTGTTACTCACGAGAGAGAGGGGAAATTAAAAGGCTTGCTGAAGGGTACATATCTGAGACGTTGGGTAGGTACACCAGAAATCAGTGGAAGTGAAGCTGCAGCTCACTTGGATAATGAAGAAAATTACTCTTCTCGGAAGTCTGCTGTTGATTTTGCCAGAATAAAAATTGAGAATGCAACTCTTAGAGAAAGTATTGAAAGCATGGAGCAACTGACCTCTTCAATTCACAGGCTTCGTCTCTATCTTCTGAAGGCTAAAGAGTCTGCTACGTCTGAAGGTCCAGGTACAAGTGTGTTGGAAGGTCTCAAGGGCATAATCAATGAGGCAAAACTCATAAAGACTGCACTTTGTAGCTCCTTACCCATTAGTTGGTCAGCTGAGGTAAATGCTGGATCCAGCGAGGAAACTTTACATGATTCTCATGATGTTTTAGGAGAGGGAGACTCTAGCCTGGGGAAGATAGATTTTGTTTCTGCTGCTGGTTTTGAGATGGTTGAGCTCCTTGTTTCTGTTGCTGAGTTGTTGATAAAGGATTACAAGGCTGAAAGTGGTTCTTGA MDQELPDNEHLLTRIQQLEYERDELRKDIEQLCMQQAGPGYLSVATRMHFQRTAGLEQEIENLKKKFAACTRENHNLQEELAEAYRIKSQLADLHSSEVAKNLESEKQLKFFQGCVATAFAERDHSIMEAEKAKEKEETMSQKLKEVENRLEELSSDCLNLRETNDTLRINLAKQEEWNEVSKQVINKFYEIRQNSLEGFMDTSWDEKCQCLLHDSSEMWSFNDSSTFRYINSLEEGLETMKKTVDNLQNKLRMGVEIEKHLKGKVHDLELKLIHMDDMVKSKISGFCQNYSQYRDHILNLLEKEMSNMHSTIGEIEEKIVQYGWGVQKLKDSEKVLREENDSQEGHLSTNAKMEIHGLPDSVADGNAEALALALQEKVSALLLLSQQEERHMLERDVNAALQRKTEELQRNLLQVTHEKVKALMELAQVKQELQLLKEKSVHDLKRGADTVERKLVTHEREGKLKGLLKGTYLRRWVGTPEISGSEAAAHLDNEENYSSRKSAVDFARIKIENATLRESIESMEQLTSSIHRLRLYLLKAKESATSEGPGTSVLEGLKGIINEAKLIKTALCSSLPISWSAEVNAGSSEETLHDSHDVLGEGDSSLGKIDFVSAAGFEMVELLVSVAELLIKDYKAESGS* Homology
BLAST of CSPI07G06800 vs. ExPASy TrEMBL
Match: A0A0A0K4E9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G071330 PE=4 SV=1) HSP 1 Score: 1216.4 bits (3146), Expect = 0.0e+00 Identity = 639/641 (99.69%), Postives = 641/641 (100.00%), Query Frame = 0
BLAST of CSPI07G06800 vs. ExPASy TrEMBL
Match: A0A1S3C0Q2 (kinetochore protein SLK19 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103495314 PE=4 SV=1) HSP 1 Score: 1164.8 bits (3012), Expect = 0.0e+00 Identity = 615/644 (95.50%), Postives = 628/644 (97.52%), Query Frame = 0
BLAST of CSPI07G06800 vs. ExPASy TrEMBL
Match: A0A5D3C6C4 (Kinetochore protein SLK19 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold13G001280 PE=4 SV=1) HSP 1 Score: 1164.8 bits (3012), Expect = 0.0e+00 Identity = 615/644 (95.50%), Postives = 628/644 (97.52%), Query Frame = 0
BLAST of CSPI07G06800 vs. ExPASy TrEMBL
Match: A0A1S3BZJ6 (kinetochore protein SLK19 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103495314 PE=4 SV=1) HSP 1 Score: 1142.1 bits (2953), Expect = 0.0e+00 Identity = 605/644 (93.94%), Postives = 618/644 (95.96%), Query Frame = 0
BLAST of CSPI07G06800 vs. ExPASy TrEMBL
Match: A0A6J1I610 (myosin-9 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111471015 PE=4 SV=1) HSP 1 Score: 1037.3 bits (2681), Expect = 2.6e-299 Identity = 565/645 (87.60%), Postives = 596/645 (92.40%), Query Frame = 0
BLAST of CSPI07G06800 vs. NCBI nr
Match: XP_004137083.1 (myosin-13 isoform X1 [Cucumis sativus] >XP_011658868.1 myosin-13 isoform X1 [Cucumis sativus] >XP_011658869.1 myosin-13 isoform X1 [Cucumis sativus] >KGN43844.1 hypothetical protein Csa_017114 [Cucumis sativus]) HSP 1 Score: 1216.4 bits (3146), Expect = 0.0e+00 Identity = 639/641 (99.69%), Postives = 641/641 (100.00%), Query Frame = 0
BLAST of CSPI07G06800 vs. NCBI nr
Match: XP_011658870.1 (myosin-13 isoform X2 [Cucumis sativus]) HSP 1 Score: 1207.2 bits (3122), Expect = 0.0e+00 Identity = 636/641 (99.22%), Postives = 639/641 (99.69%), Query Frame = 0
BLAST of CSPI07G06800 vs. NCBI nr
Match: XP_008455041.1 (PREDICTED: kinetochore protein SLK19 isoform X1 [Cucumis melo] >XP_008455042.1 PREDICTED: kinetochore protein SLK19 isoform X1 [Cucumis melo] >KAA0031372.1 kinetochore protein SLK19 isoform X1 [Cucumis melo var. makuwa] >TYK06824.1 kinetochore protein SLK19 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1164.8 bits (3012), Expect = 0.0e+00 Identity = 615/644 (95.50%), Postives = 628/644 (97.52%), Query Frame = 0
BLAST of CSPI07G06800 vs. NCBI nr
Match: XP_008455045.1 (PREDICTED: kinetochore protein SLK19 isoform X2 [Cucumis melo]) HSP 1 Score: 1142.1 bits (2953), Expect = 0.0e+00 Identity = 605/644 (93.94%), Postives = 618/644 (95.96%), Query Frame = 0
BLAST of CSPI07G06800 vs. NCBI nr
Match: XP_038886909.1 (mitotic spindle assembly checkpoint protein MAD1 isoform X1 [Benincasa hispida] >XP_038886910.1 mitotic spindle assembly checkpoint protein MAD1 isoform X1 [Benincasa hispida] >XP_038886911.1 mitotic spindle assembly checkpoint protein MAD1 isoform X1 [Benincasa hispida]) HSP 1 Score: 1099.7 bits (2843), Expect = 0.0e+00 Identity = 587/644 (91.15%), Postives = 612/644 (95.03%), Query Frame = 0
BLAST of CSPI07G06800 vs. TAIR 10
Match: AT2G14680.1 (myosin heavy chain-related ) HSP 1 Score: 527.7 bits (1358), Expect = 1.3e-149 Identity = 323/642 (50.31%), Postives = 432/642 (67.29%), Query Frame = 0
BLAST of CSPI07G06800 vs. TAIR 10
Match: AT2G14680.3 (myosin heavy chain-related ) HSP 1 Score: 527.7 bits (1358), Expect = 1.3e-149 Identity = 323/642 (50.31%), Postives = 432/642 (67.29%), Query Frame = 0
BLAST of CSPI07G06800 vs. TAIR 10
Match: AT2G14680.2 (myosin heavy chain-related ) HSP 1 Score: 520.8 bits (1340), Expect = 1.6e-147 Identity = 326/665 (49.02%), Postives = 434/665 (65.26%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (PI 183967) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
|