Cucsat.G12125.T7 (mRNA) Cucumber (B10) v3
Overview
Sequences
The following sequences are available for this feature:
Legend: exonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.CAATCCAAACGGCCTCTGGAGGGGTCGATTTTTAAATTTGAATAGTTAGGACCGGTTTTGGAATTTGGCCCTAATATTTTATATTTCTCTCCAATTTAGCATAAAATGATTCTCATCGAAAAGTATGGATGTATATATAAAACATCCCCCATTTGAAAACCCTAAAACCCAAAACCCTCAAACTCGCTTGCTCCAATTTTGCTCGCAGACACTGTGCTCAAATTTCCCTTCTCTTTGTTCCTGAATTCCGCAGTTGCTTGAAACTAAGTCATCCATGGCTACCGAGATGGATATAGAGCATAGGGAAACAACCAACAATGTCATGATCCTCTTGACGGACCCCGAAGGCACTCCTTTGGGAGCTCCCATGTATCTTCCCCAAAATGCAGGGCCTCAGCAACTTCAGCAGATGGTCAATAAGCTACTCAGCAATGTAAGCTTCGTTAACACCAACCTTTTCTTATTAAGTTTCGAGGAAACTGGCTCTTTTTTTTTTTAAAAAAAATTGTTTGATCGTCGATATTATAATCTTTCACTAATTGTGGAACTGTTTTTTTTATTCAAAGTGATAATTATGGATAGAAGAAATGGGCATTTGTAATAACCCAATTGGTTATAACTTCTTTTAAACAGAAAGAAACCGATTAATAATTTTCTAACAGGTTTCGTAACCTTTATTAGATAACATCCTCCCTCAAATTTATGACACTTGAGTCATAAGTTTGGATCGCAAAAAATAAAAATGTTTACAAGTCAATGGTTTTGTAAGAATGTAATCCAGTTGTAATTGTGTTGGAACATGTTGAAGGCATGTCTTTTCGAACGATTTTTTCTCTTATAAAATGAAAATAAACTTTTATATGCGTTGTTCTTCCATGAAAAACTGGATCGTGAGCCAACTGAATTTTTGATTTATTATCATATCAAAGAAGAGGACGATGGTTACCAAATATTTGTAAGTCACAGAGTAGTAGACGTATCCAATAGAGATCGGCAGCAGTAAAGGCTAAAAAGCACAATATTCAGCTTCTGGATACTGTACTTTGTTTCTTATCAACCCAAGAGATTGGATTTTCACCAAGAAAAATAGCAAACCCATTTGTTGACCGTTGATCTAATGTGTTGCCTGCCCAATCTGAATCTGAAAATGCATTTATGTTCAAACCAGTTGAAAATTTCTTGAACAGTAGACCATGAGTTGATGTTCCAGCAAGGTAAGAAGAACTCTTTTGGCTGCTGTTAGGTGACTCAGGTTTGGAGAGTGCATATACTGAGATAAATGACTGACTGTATAAGCAATATCAAGTCTAGTAAATGTCAAATACTGCAATACTACAATCATGGTATGATATGCTTTGTAGCAGTGATATCAGTTGAGTGTGAGAGAGATATAGGAGTGTTGCACGTTTCACAACCAGTCATACTGAAACGTTGAAGGACATCTTTTGTATATTTTGTCTGTGTAACAGATATAACGGCTGTAGTTTGTAGTACTTCAAGTCCCAAGTCAGTCATATCAAATTGTAGTTTTAATTGACTCAACAGAGTAGCTGTAATGGGCATCATTTCCTGTCACAATTATGTCGTGAACATATAGAAGAAGATAGGTAATAGATGGTCCAACCTTTCAAATGAATAGAGATGAATCAGCCATTGAAGCAACAAATCCCAAAGTTCACAAATGAGAGGTAAAGCATTCGAACCAAGCCCTTGGAGGTTGTTTGAGACCAAATAGAGACTTTTGCAGCTTGCACACAAGATTTGGTTGTTGAACAAATCCTTGAGGTTGTTGCAAAGAGACTTCTTCTTTAAGTTTTCCACGTAGAAAGACATTTTTGACATCATGTTGCCTTGAGTCCCATCCAAGATTTGCAGCCATGAAAGGGAATTTCTTCTCTTTTGGTCTGTTTAGGAATAGTGGATTCTTCAGCTTTCATCAGGCTATGAAGTTCAGAGAAGGAAACTGATTGTGAACGAGTTCTCATTGACGTGCAAAAAGTATTATATTCATCAGGGAGACCATTCAACGCATAAATTAGCAGGTCTTCATCAAGAGTAGTAATCGAAACATTTGTCAGTTCATCTTTAATTTCTTTAATACACTTAACATACAAATCAATGGATTCATCAGTTTTCTTCGCGACGGACTGTATTTGTCTTCAGCGTAACGATATTTGATTGAGAATTGGAAGAATAATGTTTTTTGAGTGTAGTCCATAACTCATAGGACGAAGTGCATCAAAAAATATATGCTAGGGCTTCTCAGGAGATAGTGTTACATTGACTAACGTCATGAGAGCTTATCCTCAGCAATCCAATCATCATATATTGGATTCGCAACCATAGAAGTAGTGGAGGTTGATGATGATGGTTTGCCAGAAGTAGTTGCCTGGACAGCAATCCTGACGGTCCGAGCTATATTCGAACCATCAACGAACTCAGAGTTCGTATGCTTTCAACATGGAGAAGAATTGAAACTTCCAAAGGACATAGTTGGATGAATCAAGTTGTATAGAGGTGAGACTGCAGCGTTGGTGAGAATGAATAGAGGAGACTAGATTTCTCTTGGTTGAGTATCAGACGTGGAAGCCATAAACAGAATGCCCAGGTCGAAAAAAGATCTTATACCGTATAATCTTTCACTAATTGTGAAAATGTTATTTATTCATAGGGATAATTATGGATACAAGAAATGGGCATTTATAATAACCCTTTGGTTATAACTTCTTTTGAACAGAAAGTAACTGACTCGTAACCTTCTAACCTTCCAATAGGTTTCTTAACCCCTATTAGATAACAGATACAAGGTGCTTTATTGAATTGGGACTAGCTGAATTTTGAATATCAAGCGGTCTGGAATGTTTTGAATTGGTTTTAAGAGGTTCCTATTTTTGGGTCGGAGGAATGTGAATTATGAATTAAAAAGTTCTCAGAGGTCACAACAATAGTTTGATAATTTAAATTTCTCTGGAACGATGTAATTGGTAGGTTGCTAGTGGGGAAATATTTTCCCTTTCTTATTCCTAAAATGAAACTAGTTGCACATATTTTCGAAGTATTTTAGCTTTTGATAATTCAACTTCTCGTAATCATCAAGGACTTAACCCTTCTCTATCTTCATTATATATTTATTCATTTATGGAAAGCCAACTTTCATAAAGAAAAAGAAAAGAAAATAAAGAACGAAAAAGTAGAAGAGCATCTAAAAAAACTAAGGCCACAAGAGGAGTTTAATGAGATAAAAGGACTCTAGTGAAGAAGAATGAAGACCAAGATAATAATTACATAAATGACTTTGTCATTGATGCCAAAGATTTTGGTGTTGTTTGATACCAAAATAATAGATTGTTTTGAAATTGTTTAGGAGGAGAAGCTACCGTATGCTTTTTACATATCTGATCAGGAGCTTACTGTTTCACTTGGGGCCTACTTAGAGAAGAACAAAGGTAATTGATTGCTTGAAAAAGCGTTTTCCAACAAAGTTATCCATCGATTACATTCAATGGTGGTAAAATTCATTTTTATGGCTCGTGGGCTTAGTTTCTTCTCTTGAACATATCTGCAGTTTCTGTTGAAAAGGTGCTTACTGTAGTTTATCAGCCACAAGCAGTATTCCGTATACGTCCTGTTAGTCGATGTTCGGCAACAATTTCTGGTACGTTTTGTGTTTCCCTATTTTTTAAGTTATATATGGTTATTGTTGTGAAGGTTTAATCAGCCCATTGTACTTTTCTTCAGGTCATGCTGAAGCTGTTCTTTCTGTTTCTTTTAGCCCTGATGGACGCCAGTTGGCAAGTGGTTCAGGTGACACTACAGTTCGACTATGGGACCTTAATACGCAAACACCGTTGTTCACCTGTACAGGTAAGAAACACATCTATGCAGCTAAGTTGTTAGCCTGATATTGAAGCTTTTGAATATACTATATCAAAACTTAATTTTATTATTAATTTTATTCAATGCAAATCTTCCTTCAAGGTATATGATGTATATATGTATATATTTGTCATTCCTAGAGGGTAAAAGATGTCTACTTTGTATCATAGTGGTTCATATGTGGATTTTTGTTATGGCACTGCCCTTGGTTTGAAAAATGCCATATTTTTGTTTTTGTTCTTTTTTGTGTGTTTTCTTTTTCTTTTTCTTTTCATTTTTGAACTAGTTTGCTTTGCCATTTATTAATATCCATAGTTTCTACACATCAAGCTGTAGTCAGGAAGTTTTTCCTTTCTCCCAGGGCATAAAAATTGGGTTCTTTCTATTGCTTGGTCTCCTGATGGGAAGCATCTTGTAAGCGGGAGCAAAGCTGGGGAACTTTTTTGCTGGGATCCGCTGACGGGGAAGCCATTGGGCAATCCACTCACTGTAAAGACTTTTCCCATAATTTACTGTACTTTTGAAATGTTTGTTAAGTTTGATGACTATTTTGCCCAACCGAGAGTCAAACCAGACAAACCAAAATCCGATTTCTAAGTTTTATAGTTGTATGGTGTGCTATTTTGTTCAAGAGTATTTTTGTTCTGGAATTTGATATATTTTTTCTATATTTCACCAGTGGATTTCAAGTTATAAAGAAAGATCGTGGAAATAATTCCATTGCATTGCCCAACTTTTATTTATTGATGTATTTCTGTGCAGCTAAGAAATTTTCTATTTTCTTCTTTGTTTGACCATTGGCTAGCATGTCCATGTCTGACACTTGAACGCTCCAACACTTATTAGCACAATGGATATCCTAAATTTGTTAATCACATATCAAACACTTGACTTTGAATAAATTTTGAGAGTTAAATGCCTGAAAATCATTTTTAAACATATAAATGTATTGAACCTATTGACTTTGAAGTTTATTTTGTATAAAAATGATATTTATTTTAAAGAATGTATATTATAATAAATGTTTCCTTGTATTGATCGTGTCCTAGGTTTTTTACATATGAATTGTCAAAAATTCGTGCTTGTACTCATGGCGGTGTGTCATATTTATGTTTTATATCCATGTCCGTGCTTCTTAACTTTGCAAGGTTTCAAACTGTTCCAATATTATTGTTTGAAGTCACTTCAACCTTTTATTCTTTGAGTAAACTTGTTTGTGCAACCCTAGGTACCCAGTTACTTTCAAGTTTTCTGTCTGGAGTTAAAAATTATGTCATATTGAAGCATCTATGTCTTGAAGCAATAAACTCTGGGGGCATGTTCATAGATTGTATAGTAGGAGCAGTAGTTTTCAACTGCATGCTTTTATTATTGTATGAATATTTAATCGTATTCATGTTTCCACTCTTTAAATGTTCTAATGGTTGTAGGGCATGTTTACACCGTGGTTAGAATCAAACTTTGGTGGCCACCTATCTGGAATAAAATCCTACATGTTTTCTTGACAACAAAATATTGTAGAGTATGGTGGTTGTCCTATGAGATTAGCCCAAGGGTGAGCAGGATTAGGCACTTGTAGATATCAAAAAATTTGTAGGACACTAAGTTTCAAATTTTCAACTCATTGTTGCTTTTTGTCTTTTCTATTCATATTGTTAGATGCTGTTGGTTGTTAGTTAGCAAAACAATTTATATAAGCTCTATGGTAAACAGTGCTTAGAAGTTTGATTATAGTTGGAATGGTATACACTGTAAATGTTGAAATGCTTGAGCCACAGGAATTTTTTTTGTAACTAAAACCTCCTCATAATTTAATGATCATTATTGATTGGAAGGGCATTCTTCTGTAGTTCTTTGGGGAGGGTTGTGTACTAGAGACTCTTAGTTTGTTCTCCTTTTTGTTAATAGACTATTACTCCGTTTCTTTTCCTACAACCAGAAGAGATTGGTTCTATTTTCTTATTGACAAGGAAAAACCTAAAATCATGGTGGCATTTTTCATCACTCTTTGATGCCTAAACGATGATTAAATATAAATTATTTTTATATTTATAGGTTTATTGGGGTGAAATAATTAATTATGTTTGAAACTCATGTTATAGGGCCACAAGAAATGGATTACTGGTATTTCATGGGAGCCTTTGCATTTAAGTGCTCCATGCCGTCGCTTTGTGAGTTCTAGCAAGGATGGTGATGCACGCATATGGGATGTTTCTTTGAAAAAGTGTGTTATATGTCTCAGTGGTCATACTCTTGCAATAACCTGCGTCAAATGGGGTGGAGATGGAGTTATATACACAGGGTATGCTGATGTTCCTTTTTTTCATTTTTTCTCAATGGAAGTGGTTGTTTCTATAGAAAAAAGGGTATGCTGATGTTCCTTATTTCTCTATGTTACTTAAGAAAATAAAATGAAAAATGAAGTGAGAAAGTGAGAGGGAGGAGCCACTATGGAAGCATTCTAGCATTCTTGATGCCATTGAGTTTGAACATCTACGTATAGTGTACTTGAGCCTGATCTACCTTCTTACATCTGATAGCAAACAAAATCACTTCACACCTGTGCATGCTTAGAGTCAGTTTGATAACTGACCATGGACTAAATTTGTACTACTAAAGGCTAAAATGTCTGCTTCTTTCAGTCTGTAGAAATGCTAACTTTTGGTACCATTCATTGCCTATGCAGTCAGCAATTGAGCTACAGTTAATTTTTCTGAAGACTGATCGCATTTCCAACTTTTCTTGTATTCTGAAATCAAAATGTTTTTTCTCAAATGCCCCAGTTCTCAGGATTGTACTATTAAGGTTTGGGAAACTAAGCAAGGAAAACTAATACGTGAATTGAAGGTATGCTGCATAACACTTTCTGTACTATGAACTTTTTAAATTATTATTTATTATTATTCTGGGTTAAAATACGTTAGGAGTTATTCAATCCTTTTGGGATCATCTTTGTGAGTTTCTGAAGGGCTATTTTGTTGCTTTACGAGTCAAAAAATCTAACAGTTGCGATACAGAGTTCACTTTTATTTATTATAAAGAAAAATGAAAAAAATTGTATTTATTATTTAGTGATAAGCCCTCTCAATTTTTAACATTTTCCAAACGATGTTTGAGAATTTGATTTGGACCTATTTTGTTTTTCATAATGAGTAGTTCAGTTCCTCATACTGCACCTTTTTTTCTATCTGGTATTGTGACAGGGACATGGTCATTGGGTTAACTCTCTTGCACTAAGCACTGAATATGTTCTCCGCACAGGAGCTTTTGATCATACAGGGAAACAGTTCTCTTCCCCAGAGGAAATGAAGAAGGTAAGATGATTTGGAGTGTTCTGATTCTTCTTAGTGTCCTTTCTCATACTAAACGAAACAATTTTGTATAAACACAATTTTATGCAAATGATGGTTTTTTTTTTTTACATGGAAATGAAAACTTTTGTGAAGCCTTTTGAGAGGGTGTGAGTGTGAGTGAGGTGTGGTCCAGCATTAGGTTCAATATATTTGTAATTATCCATTAGGTCTTATTTTGTTGGATTGGAAGCCGTTTTTGTAGGCTGTCTCCCTTTCTTGTGGGCTCTCCTTATGCGTATGCATGTGTCATTTTTCATTTCTTCTCATTGAAACTTCAGCTGTTCATAACACATATGTATAGAATCAGATTATTAGTGCAATCTTTTAAATTTATTCTTAAAAATTTTCAGGACCAAAAACTCTGGGGCCAAATATACATGTTATTCAAAACTCTATTTCTCAAACAGGGTCTTAGTTTTCATTTTTTTAAAAAAATAAAAATTGACTACAGTTTCAAAAGTACTTTCAGGAAGTGGAAAAACATGCATACAAAGTTGTTCTTCGTCCTATCAACAAAAGGCATACACACATGATTTTTAAGAAACTGAACTAAACAAATTAGTTATTCTTTTTAAAAAAATTTAAAAACCAAAATAGTCACTAAATGGAGTCATTGGTTTCTAATCAGTTAACTATCTATTTCATTTTGCACTTTCTTCTTCCATGATTCGCAGGTTGCTTTAGAAAGGTATAATAAGATGAAAGGCAGTGCTCCGGAAAGATTGGTTTCAGGATCTGATGATTTTACTATGTTTCTATGGGAACCTGCAGTTAGCAAGCAACCTAAGATACGTATGACAGGCCATCAACAGGTATATTTCTTTGTAAATGTTTTTCTTCCTGGAATATCATGCATCACACATGAATTGTGGCATTCCATAGTCATCCTGCTTCTTATCAACTGCATTTTCACCATGTTACCATGTTTCTAGTCTTTTGTGAACTAGATGCCACAAGAACTCTTCATAAACATTACCATTTGGACATGGTCATTTGTCCTAGTTCTTATTTCTAATGGGTGAAATGGAGTAGCCGAAACAATTTTTTGTAGTGACACCTGTCAGCATTCTCTCTATCAAACTAGATCGGAAGGTCTTCTTGTAATTTTTGTATCAGGGAGGGGATTCCTTGCCCCCTTTTCCTTTAGGTTCTCTGAATTTTTTGGAGGAATAAAGTTCTGCTGATCTTTTCTTGTAAAGAAAAAGGAAAAGAAAAGAAAAAGAATAAGGGTATGATGTATTTTTTTGGGACTGTTCATTTGATCGACTAGTCAAGATGAAATTTTTTGTACACCTCCCATCATTGATTTGCTTGAATCCTTAGCTAAGTTTGTCAAATTGTAAAGTCTCTACCGTTGAAGGAAAGAAAGCTACGGGAAAAGTTTTGAAGTGAAAATAATTGACTTTAAGTCATATCATTAGCATACTTTCCTATCGAAATAATATCCCAAGCATACTCGAATTAACATGTTCATTAGATGTTTATCCATGTAAGTCAAACGGATATGCTTGTATGAGTATGCAATTTAAAAAGTTTGTGCATTGAGCCTTTTTGGAGTTCTCATTCATAAGTGAAGCATAAACTTCTTGCGTACTTTCAGCTTGTGAATCATGTTTATTTCTCACCCGATGGACAATGGGTGGCCAGTGCATCCTTTGATAAGTCTGTGAAACTGTGGAATGGCATTACCGGAAAATTTGTTGCTGCTTTTCGGGGTCACGTAGGACCTGTTTATCAAATCAGGTTTGTTTCATTTAATTTCTGTGCTTCAATTAACCATTCAATTTACTGAATTTATTTATTGTTTTCCCCTTGCAGTTGGTCTGCTGATAGTAGGCTTCTTTTGAGCGGCAGCAAAGACTCCACCCTGAAGGTATTTTGGATGTATATGTTTGCCCTAATCCGTCTAGTGTTTCCTAAAATGAATGCATTGAGTTGAGTTGGTGCGTGATGCATGTTCTGTTTAGATGCAAATGCAAACTGTAAATGAATCAAATGGTTGAAGTTGTATCTCTATCCTCTAGGGACTGGTGGTTTTACAAGTGCACTGGAGATTTACTGTTTTTTTTACAGTTGTCTGCGTGTTTTGTGGAATTTTTCCATACTATTTTAGGCTAAAAGTTGATTTCTATGGTTTGCGTTTTGTGTCTCAAGGAGTTTGCTCCGTACTACTTTAGGCTAAATGTTGATTTCTATTTGTCTAGATTTGGGATATCAGAACACACAAGTTGAAAGAGGATCTTCCAGGCCATGCGGATGAGGTATGGTTCCATCATATTGTTAGACACATCGTGGTTCCCCTTAATGCATTCCTCTCATCACCATATTCTAAAGTTAGGTCTTGATTTTGTGCAGGTTTTTGCTGTTGATTGGAGTCCTGATGGTGAGAAGGTGGCTTCTGGTGGAAAGGATAAAGTATTAAAGCTATGGATGGGCTAGGGGATAGCTGAGGGTGCTAATTCAATTGTAATTGTGGAAGTCGGTAAAAATATGTCACTGAATGTATGCGTCACAATCATACTGCCAAAGGATATAGGTGTTGAATGATATAAAGGCAAGCAAAAGGGATGTGGATGGAAAGCAGAACCGGCATACAGGTTGGGTTTTGCACTAACATTTTGGTTCTGCTGTGGCTGCTGATCTTGAGCAGGATTTGGGGCTGGGTCTCGACCATTATTATTGGCTCACTCTCTTCTTTGCACGACTGCTGCAGAGTGCAGAAACTGGAGAATATGCAGTACATGACATGATATCCTAATCTTTGTCTTGGCTGGTTTGTCATATTCTACAAGTTTGTGTTGTGTTAACATATCCACCAGTATTTGTAATTTTCTTTTTCCATTGCATATTATGTCCTTTTGACTAGTAATGGAATAGATGCCAATTTATACAATAAATTGTTAGCTGTCACCATTTGGGATGTAGATTTTTATTCTCTGCAAATGGTATTTTTTGAACGATGAAGCTACTGAAATTTGTATTACTGCAACCCGAATCAGTTAATGTTAGTTGAGTTTTGTTGAGGAACCATGTTGCTTTCTGAGG ATGGCTACCGAGATGGATATAGAGCATAGGGAAACAACCAACAATGTCATGATCCTCTTGACGGACCCCGAAGGCACTCCTTTGGGAGCTCCCATGTATCTTCCCCAAAATGCAGGGCCTCAGCAACTTCAGCAGATGGTCAATAAGCTACTCAGCAATGAGGAGAAGCTACCGTATGCTTTTTACATATCTGATCAGGAGCTTACTGTTTCACTTGGGGCCTACTTAGAGAAGAACAAAGTTTCTGTTGAAAAGGTGCTTACTGTAGTTTATCAGCCACAAGCAGTATTCCGTATACGTCCTGTTAGTCGATGTTCGGCAACAATTTCTGGTCATGCTGAAGCTGTTCTTTCTGTTTCTTTTAGCCCTGATGGACGCCAGTTGGCAAGTGGTTCAGGTGACACTACAGTTCGACTATGGGACCTTAATACGCAAACACCGTTGTTCACCTGTACAGGGCATAAAAATTGGGTTCTTTCTATTGCTTGGTCTCCTGATGGGAAGCATCTTGTAAGCGGGAGCAAAGCTGGGGAACTTTTTTGCTGGGATCCGCTGACGGGGAAGCCATTGGGCAATCCACTCACTGGCCACAAGAAATGGATTACTGGTATTTCATGGGAGCCTTTGCATTTAAGTGCTCCATGCCGTCGCTTTGTGAGTTCTAGCAAGGATGGTGATGCACGCATATGGGATGTTTCTTTGAAAAAGTGTGTTATATGTCTCAGTGGTCATACTCTTGCAATAACCTGCGTCAAATGGGGTGGAGATGGAGTTATATACACAGGTTCTCAGGATTGTACTATTAAGGTTTGGGAAACTAAGCAAGGAAAACTAATACGTGAATTGAAGGGACATGGTCATTGGGTTAACTCTCTTGCACTAAGCACTGAATATGTTCTCCGCACAGGAGCTTTTGATCATACAGGGAAACAGTTCTCTTCCCCAGAGGAAATGAAGAAGGTTGCTTTAGAAAGGTATAATAAGATGAAAGGCAGTGCTCCGGAAAGATTGGTTTCAGGATCTGATGATTTTACTATGTTTCTATGGGAACCTGCAGTTAGCAAGCAACCTAAGATACGTATGACAGGCCATCAACAGGTATATTTCTTTGTAAATGTTTTTCTTCCTGGAATATCATGCATCACACATGAATTGTGGCATTCCATAGTCATCCTGCTTCTTATCAACTGCATTTTCACCATGTTACCATGTTTCTAG MATEMDIEHRETTNNVMILLTDPEGTPLGAPMYLPQNAGPQQLQQMVNKLLSNEEKLPYAFYISDQELTVSLGAYLEKNKVSVEKVLTVVYQPQAVFRIRPVSRCSATISGHAEAVLSVSFSPDGRQLASGSGDTTVRLWDLNTQTPLFTCTGHKNWVLSIAWSPDGKHLVSGSKAGELFCWDPLTGKPLGNPLTGHKKWITGISWEPLHLSAPCRRFVSSSKDGDARIWDVSLKKCVICLSGHTLAITCVKWGGDGVIYTGSQDCTIKVWETKQGKLIRELKGHGHWVNSLALSTEYVLRTGAFDHTGKQFSSPEEMKKVALERYNKMKGSAPERLVSGSDDFTMFLWEPAVSKQPKIRMTGHQQVYFFVNVFLPGISCITHELWHSIVILLLINCIFTMLPCF Homology
BLAST of Cucsat.G12125.T7 vs. ExPASy Swiss-Prot
Match: Q9FLX9 (Notchless protein homolog OS=Arabidopsis thaliana OX=3702 GN=NLE1 PE=2 SV=1) HSP 1 Score: 617.1 bits (1590), Expect = 1.4e-175 Identity = 290/371 (78.17%), Postives = 328/371 (88.41%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy Swiss-Prot
Match: Q5RFF8 (Notchless protein homolog 1 OS=Pongo abelii OX=9601 GN=NLE1 PE=2 SV=3) HSP 1 Score: 440.3 bits (1131), Expect = 2.4e-122 Identity = 200/356 (56.18%), Postives = 258/356 (72.47%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy Swiss-Prot
Match: Q58D20 (Notchless protein homolog 1 OS=Bos taurus OX=9913 GN=NLE1 PE=2 SV=3) HSP 1 Score: 438.0 bits (1125), Expect = 1.2e-121 Identity = 198/356 (55.62%), Postives = 257/356 (72.19%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy Swiss-Prot
Match: Q9NVX2 (Notchless protein homolog 1 OS=Homo sapiens OX=9606 GN=NLE1 PE=1 SV=4) HSP 1 Score: 438.0 bits (1125), Expect = 1.2e-121 Identity = 198/356 (55.62%), Postives = 258/356 (72.47%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy Swiss-Prot
Match: Q8VEJ4 (Notchless protein homolog 1 OS=Mus musculus OX=10090 GN=Nle1 PE=1 SV=4) HSP 1 Score: 437.6 bits (1124), Expect = 1.6e-121 Identity = 198/356 (55.62%), Postives = 258/356 (72.47%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. NCBI nr
Match: XP_004149723.1 (notchless protein homolog [Cucumis sativus] >XP_008461819.1 PREDICTED: notchless protein homolog [Cucumis melo] >KAE8650926.1 hypothetical protein Csa_002095 [Cucumis sativus]) HSP 1 Score: 757 bits (1955), Expect = 7.65e-274 Identity = 369/373 (98.93%), Postives = 369/373 (98.93%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. NCBI nr
Match: XP_022935438.1 (notchless protein homolog [Cucurbita moschata] >XP_022983466.1 notchless protein homolog [Cucurbita maxima]) HSP 1 Score: 741 bits (1914), Expect = 1.34e-267 Identity = 360/373 (96.51%), Postives = 363/373 (97.32%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. NCBI nr
Match: XP_023526266.1 (notchless protein homolog [Cucurbita pepo subsp. pepo]) HSP 1 Score: 740 bits (1911), Expect = 3.84e-267 Identity = 359/373 (96.25%), Postives = 363/373 (97.32%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. NCBI nr
Match: XP_022152686.1 (notchless protein homolog [Momordica charantia]) HSP 1 Score: 736 bits (1900), Expect = 1.82e-265 Identity = 357/373 (95.71%), Postives = 362/373 (97.05%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. NCBI nr
Match: XP_038905776.1 (notchless protein homolog [Benincasa hispida]) HSP 1 Score: 733 bits (1891), Expect = 4.27e-264 Identity = 356/373 (95.44%), Postives = 361/373 (96.78%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy TrEMBL
Match: A0A1S3CGX2 (notchless protein homolog OS=Cucumis melo OX=3656 GN=LOC103500329 PE=4 SV=1) HSP 1 Score: 757 bits (1955), Expect = 3.70e-274 Identity = 369/373 (98.93%), Postives = 369/373 (98.93%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy TrEMBL
Match: A0A6J1J2A5 (notchless protein homolog OS=Cucurbita maxima OX=3661 GN=LOC111482061 PE=4 SV=1) HSP 1 Score: 741 bits (1914), Expect = 6.50e-268 Identity = 360/373 (96.51%), Postives = 363/373 (97.32%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy TrEMBL
Match: A0A6J1FAJ5 (notchless protein homolog OS=Cucurbita moschata OX=3662 GN=LOC111442312 PE=4 SV=1) HSP 1 Score: 741 bits (1914), Expect = 6.50e-268 Identity = 360/373 (96.51%), Postives = 363/373 (97.32%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy TrEMBL
Match: A0A6J1DIH2 (notchless protein homolog OS=Momordica charantia OX=3673 GN=LOC111020346 PE=4 SV=1) HSP 1 Score: 736 bits (1900), Expect = 8.81e-266 Identity = 357/373 (95.71%), Postives = 362/373 (97.05%), Query Frame = 0
BLAST of Cucsat.G12125.T7 vs. ExPASy TrEMBL
Match: A0A0A0LET9 (WD_REPEATS_REGION domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G687770 PE=4 SV=1) HSP 1 Score: 706 bits (1821), Expect = 8.10e-252 Identity = 369/496 (74.40%), Postives = 369/496 (74.40%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (B10) v3
Date Performed: 2021-10-25
Relationships
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
|