Cucsat.G7838.T3 (mRNA) Cucumber (B10) v3
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.AAGGAGTTAAAAAGATACGGTAGATCGTGAGCGCGGGAACAAACGAAGTGATTCCCTCCAATTTTTGTTCCCTTTTCCCCTCCGGGGTTCTTGCTCTACTTCGGATCACGTTTCCTTTCCAACAATGCTTAACCTCACTCTCACAGATTCTTCAATTTTCTCAAAACCCTAGTTCCTAATTTTCACTCATCGGAACATTCACAATTTGGGGTCAATTCATGGACACTCCGCCTCTGCAATCCGTGAATGCGACGGAAGTTGGTGCCACTGAGACCGCCAAACGGGAGCTCCGAACTGTTCCACGTAAACTGGTTCAGTCTACGCTGCTTCCTCACAAGCCTCAAGATCAGGAGGAGAATGGAGTCGATCGGGAGGAGGTGAACAATTGCCGCGAGGAGGAGGAATTATGCGGTAGTCAGGGCAAGAAGAAAAGGAAGTCGAAGGGGAAGACGACGCCTCAATCGCGAAGCTCAAAGAAGGTGAATTGGATTTAATTAGATAAATTACTACTTTAATTTCATAATACTTGTTAATAGGCCTGGGATTAGTCCATTTAGACTAAATTACTTGATGTTTGTGCTGGGAACTGGGATACTGTTGCAATTAGGCACTGGAATACGATATATGATGTGCCTTCTATTATTTTTTGTTTTCTGGGAAATTCAAATTAGAATAGTTCTGCACCTCGACATCAAACTATAATAATCTCTAAGGTGACATAATTATGTTCTACATTCAACAGGCGAAGGAAAAGCGAGCAGTAAACTTGACGCCAAAGAAAATTTTGAATTTTGAAGAGACAACTCCAACAATTCCCGACTTGCGTCTGGAGGCCAAAATGACCAGAGAGGTCAGTTACATAGTTTGTTGTTGAACTCTCACAATTTCTAGTTCCGCCTGTCAACCGTGAACTTGTGTTCTAATAGATGCTATTTTGTGTTCTCACAACGTGTTACCCGTAGAGATCTGAGTTTATATCTCAATTTTGGAATGCCCACCCGTAAATTAGGAGTCATTCTACGGAATGATTATTGCTTATATATTTGTTTAATGTCGTGATATTGAACAATTAAATCTCCATCCCTAAACTGTATTCGTATCACCAGGAAAATTCACGGATGTTTGCAGGAAGGCAAATGCATCCCTTCTTTTCATCCCTGAAAGCAGGGAAGAAAGGTCAGGAGGCAACTCAATCGGCAGAGAGAGGGTACACTGTTGAGAAAAAGGAAACTGGAACTGATTGTAATCCAATCCACGTTTTTGAAGAAACTGGGGTATGGTTTTTCTTGTCATAACTTCGTCAAGCTGCAAAAAATATGAAATTCTGCCACAGACAATTTGTGAAGTTTTGCGCATGCAATTTTTTTTTGTAAATATGTTTGTGAGATAGTACTATCTAATAATATATATTTAACACTTTGGTAGCCCACTGCTCTTGCTAAGCACTCTCCTCAAAATGTTGAAGGGTAGATCTTTTATTTTTCCTCCAGGGTGATAATATTGATAATACCATGCAGGATGATGAACTATCTCTAGACTGGAAAAACTGGACATTCACTGACAGAAATATTATACATAATGTTCATACGTTACAAAAAACTTGTTCATCAGTATGTGAAAGCTCAATAAAGTCTTTAAGTTTAGACGATCTTCCAATTGTGTTGGCACCCTCCGATTCTGCTAATGGTGCAATTGAGGAGCCCGTGGATCATAATTCCATCAAACAAGAATGCCTTAAAGAGTTAACGTCAAGTGTATACAGTGTGGATGTTGACCAGGAGACAATGCTCCATCACCTCCTAAGTAGTTCAAAAATGGTATATTTCATCCTGCATTCAAGTGTTTCCTTTCTTTCTTCTCTTACTTGTAGCTGCCAATGTCTCCTTTTGACCTTATCATCTCTTTCTTGTGAATTATTGCCAGGATGATAACCTGAATAAAACACGCGGGATTAGTGATTTTGAAGCAAGGCCAATTCCCGAGCATCAAAGTAGATTTCTTCAGGACAGGTTATTATTGTTATGAATAATTAAGTTCTTTGATCTCTCTTTAGAGAACCATGAGTTTTGATTAACATCTCCGCCACCCCCCACCCCAACTCTGCCTGCTCTAACTATGCTCTCAAACGCTACCAGTTCCACACTATAAGTTTACCCTCCACAAACAATAAACATTCTGAATCGAAAGTTGAAAGTTCTACAACTCAGTTTAAAATTTTGCATGTAGTGGGTTGTGGGTTGAATTTTAGCATATTTGGCCAGCTCTCATGCTTCTTTTTATAGGGTCTTTTTATATTACTGTGGCAATTGATTGAACTGAGATGTGGAAGAAGCATGTCATGTAGAACTGTTGAGTTTGAGCCATAATTTGAGTGCTGCCAAGATTTATGGCTTCAGTGTATGACGCTGCCTGCAAATGTTAGTGTTAGTATTATTGACAAGCAAACTTGAAGTCAGGTCGTTTCATACTTTATATAAGGAAACTTGTAGTTTTCTATCTTTATAGTTTCTTGGATTATATTATCGTTGTTCAATTAATGCATCATTCATCCTTATGAATGCTCTTTGCATTTCTAAATGTTTCAACATTTGATTGGTAGTTTTCAATAGGTATCTTTTTTCTCTCTGGAGAGATGATTATGATCTTCCTTGAATCATATATGGTTAATTTTCTTCTTGCTTCTCTCCTATTATTCATCCTGGAATTTTAAAAGTTGTTTTATAATAATAGAATGCAGTCCTACTATCTTCGTTGTCAAAGCCATTCCAAAAATTGTTTATGGACATATAAGTATCAGCCAAGGACGGCCATGGAGGTTGGTACCCAATCCGTTTTAGCAACTAAGCTTTCTAGTTTCTGTTTTCTTTTATCATCCATTTTTTGACACATGGTTTTGCAGGTATGTGGTAATCTCGAATCAGTCAAGTTCTTGAGTGAGTGGCTACACCTCTGGTATGAAAGAAATTCACAGAAGAAAAAAGATTTTGCTGGAGGGAAGAAATTTCAGAAGCAAGATAACAATGGTTACTGTTCCCAAAGTGATTCTGACTATGAGAGTCCAGATGAAGAGGATGGCCTGAAAAACGTTCTTCTTGTCACGGGATCATCTGGGGTATGCAGAAACTCACTATCATCACCTGATCATTTACGTTTTTTCCTTGTAATTTGTAGTTTTCATTGAAACAGTTTAACCTGGGGTGTGCAGAAATTACTTTTGTCTCTTTTTAATTCCTTTTCTACAAATAAATGGGGACCAAAATTGATTAGGAACTGAAAAAAATTAGAGATGCAAATAGTCAAGAAGTTTAATGGAAAATGTAAGTCTTTGATTTAGGTTTTCCTCCAGCAACTTCGTAGATTTCTTTGAGTTTCAAATTGGTGGTTTATATGGTATAGTTTCCAGTTACATTGTCTATTTTTGCTTGCCTCCTTAATTGGGATCCTGATATTCTCTTACCTTTGGGGAAGTAATTTTTAGAAGAACTCATTGTTATTCTCAATTTAAACTGTGCAATATAGGCTTATTACTTTTGATGCTGTAGATCCCACATCTCTCTTAAGATTGAAGGTTATGAATATGGGAACCGATTCTCTTAGTTGTTTATGATTTTTTTTCCCTCTTTGGTTCTAATGTTTCTATATGGTTGCAGAGTGGGAAATCTGCAGCCGTTCATGCCTGTGCTGAAGAGCATGGTTTCAGGGTTTTTGAGGTAATGCTAATTTGCATTTTTCTGCAATGTATTCCTTATGGTGGTGGTTTCCACTACCCCATCGTCTGTAGTAACTCCTTTTTTGACTGATGGATTATAGATACAAATATTGTTTCTTATTAAAAATATGAACTTTACTGTGTCTAATACATTGTCCTTCAGTTCAGTGCATCTGTCATTCGTTCAGGAGCTGTTCTCAAGCAGATGATTGGAGAGGCTTTACAATCTCATCAGCTAAAATGGTGCGTTCTATTTAAAATTTGGCTTAGATTTCTCCATGTTATAATTTCTTCCTTAACTAATATAATATTGCTCATTCTGCATGTAGTTGGTATCTGAAAGGAAAATATAGGTTAAATTACAAAAATGCCCCTGAACTTTAGGGTTTGTGTAAAAAATACTCCTAAATTTTCAACTGTTTAAAAATTGCCCTTAAAAAAAACAGATGGAAATCGTTAAAGTTTTGTTTTAAAATACTCTTGAACTATTGAAAAGTTTAATAAATGCCTTTGAGGTCGAAATAAGTTAAAAATTACTTAAATTTATTAACTATTAACATAGATCACGAACACAACCAATGTCAATATTTATTGTTGTAATTAATATAGTTAATTGTCAAATAAAAAATTGTATTTGACTATTAACCTACTGTGCTAGTCTAATAGATCATAGATCTATGAATGTGATACTTTTTTATTTGACTAATTAGTGTTTTAATTGTAAGAAATTTTTATTTTGAAAATTTGTGAGATTTTGTGGAATTTTATGTTTTAACTAAGGTTTAAAATATCGATGTTGATGGATATATTGAAATCTTAATTTGATAAAAATTACGATTTCGATGGATATTTTTGGAAAAATTATATTTTAAAAAATAAATTTAAGTAAATAAATGTTTTATTATTTTTCAAATAAGTAAAGATGACTATTATTTATAACAGTGTCATTTTGATGTTTATTTTTCATGATTTGTGTTTTTGTGATTCGTGTCTTTTTTACAATATAATGAAAATATCGATTCACCTGTTATATTGATATCGAACTCATGGAAATGTGAAAATATCGTCGGAAATGTTGATTTTATGGAATTAATCTATATTTCATTCATTATTTAGTAGAGATACAAGCCTATATATAACCATAGAGAAATACACTTAAGGAAATAATATCAAATAATATCTCCAGAATAATATCTCCTAAGAATAATCTAATTATATTAATACCCTCCCTCAAACTCTAGGTTGAAATCACAAACTTGAGTTTGCTAAGAACTAAGAAAAGAAACAATATATCTAGAATAGAATAAAAAACCCGAAGAACAAACACAAAGAACTTCTAGGTTAGAACAAACTCACGAAAAACTTCTGGGATAGAAACATAGATCCTCGTATAGAGATCTATAACAGAACCTAGGAAGAACAAAACAAGAACTTCGAGGGGCAAAATGAAAGAGCAAAACTGAAGCAAAGTAGAATCAAAGCTGGACGAAAACAGGGTCGGGATTGGACAAAAGTGTTTTGTCGGATCGGAATGGAACCGAACCAACTAAACTAGAGCAAGTCAGAATCAGATTAAATGGGAAATCTGGGGCGAACAGAACGGAAACTGAACTGAATGGAGCAGAGAGGCTTAGCGGATCTGAACAAAAACAGAATGGAGGCGTCGTTGGATCTGGGCTTCGATCTAAACTTCAAAGGCAGACATGAAGAATGGGTCTGAACGAAATCAGACAGGTCTGGAACATATTGGGGGCGGACGCGAGGATCTGAGGACATGGGGTTTCATGGGTTCTGTCGGGACAACATAAGAAGATGGAGCAACGACAACAAAACGCAGCGGTGAGCGGAGCTTCTTGGACGACGGACAAAACCGAAACTCTTCGGCTGGGCGTTCGGCTTCAATTGACAGAGGTTCAATCGGCTGCTTGGCTAACGGAAAAACAAGAGGTCGGACGAAGAACTATGAAGGAGATGGCCGCCGCGGACGCTAGTGAAAAACGAATGGGGTTTCTGGGGTTTGGATAGTTGCAGATTTGAACAGCAATGAGTGGCAAAGGGAAGGTGCAACGACAATGGCGGATTTGCAGATCTAAGGGGCGACTTCGGCTAATGGGAGATGATTCTGCCTCCGTTGATCATTCATCAACGGAGGCAGAGATCAAACGGGATGTGGAGGCTAGAAGGCAAAAACCCTAGAGCTTTGATACCATGTTGATTTTATGGAATTAATCTATATTTCATTCATTATTTCGTAGAGATACAAGCCTATATATAACCATAGAGAAATACACTTAAGGAAATAATATCAAATAATATCTCCATAATAATATCTCCTAAGAATAATCTAATTATATTAATAGGAAATATCAACATGTCGATGTAAATTAACTTTAGTTTTAACTTAAAATTTTGGTTCTTATTTTGGGTGTTAAGAAATTTGGTGTAAAAGTTGGATTAATGAGAGTATTTTTTAACTTTTTTTTAAGCTCAAGGGTATTTATGAAACTTTTAAATAGTTCGGGGGTATTTTTGAAACAAAACTTTAACGGTTTCCATGTAAAACTAACGATAAAGAGTATTTTTGAACTCCTTTCAAAAGTTTAAGGGCATTTTTGAAACTTTTGAAAGTTTATAGGTATTTTTGACACAAACCACAAAGTAAGTTTATAGGTATTTTTGACACAAACCACAAAGTTGAGGAACATTTTTTATAATTTCAATGTCTAGTGCATATTTATCACTGATTTCTTCTAAAAGAGACCATTCAACTATGCCTGGCTGGCCATTTTGATATTGTTCGACCAACAATCAATTTTTCTGTCAATTTATTTTTTTTGCTGGCCATAAACCTTTTCATGAATGACTGAAAGATGGTATCGTATAGGTCAGTAAAAAAATCCCAGGGACCGAGGAACAATTTTATTGAGAAATGCTCCTCTCTTCAAGAGAGTACAGCAGCTACATGTTTAGCTAGTGAGGTGACTGAACTCATCCCTTTATCAGACGATGATTCTAAAGATTACCTCAAAGGTGTTGGGGAGTTTGAATACATGGCATCTGAAAGCCTCAACAATCAAGTTGAAGCTAAGCCTTTAATTCTTTTAGAGGATGTGGATATCATTTTTCTCGAGGATCGTGGTTTTATTTCTGCAATTCAAGAGATCGCTGAGACAGGAAAGGGACCCATAATTTTGACCAGCAATAGTAAGAGTGCTTACTTGTTGAAGTGATTTTACAGTTTACAATGATGAATTCACTCATGTTTTATTCTTGAACTATAGATAGCGATCCTGTTCTCCCTGTTAATTTGGATAGGCTACAGATCTCTTTTATACGACCATCATCAACGGAACTACTCGGTCATTTATATAAGGTATGTGCTTCTGGCTCATCTATTAGTGGCATATTACTTGAACTTCCATTCTTTCGATTTCTTATTGCTATCCTTTCAGATTTGTGCTTCTGAAGGAGTCAGCATCCAACCATGCTTACTTGAGCGCATTATTCATTGTTGCCACAGAGATATACGGAAAACCATTATGCATCTCCAGTTCTGGAGCCAGGGTACAAGATTTAGAGGTCAGTATTGCTATCCAAGTACATATACAATGCAATTTAAACGTATAACTAATCAACATCCCCTTCCAACCCACTCTTCCCCCTCCCCCCCCCCCCCCCCCCCCCCCCCCCCTCTCTCTCTCACACACACCAAGCCCTCTTCTTCTACCATTCCTAAGTTCGTCTTACTATTATTGGGCTATGTGATGCTTTAATTTTAACAAGTTTATTGCTCGATAAATGCAGGTCCTGGTGTTTTTTCAAAAGAAATATTTGAAATGATTTTTAATTATGTTGATCATTTATCTCACTGATGTATTTTATCTTGCAGATAAAGTTCAGAAAAAGTATGGGTCGCTTTTATTTGATATTGATGCTGGCCATCAAATACTGCCGGTGATAATGCCATGGAGTTTCCCATCTCAGTTATCAGAGCTAGTTGACAAAGTGATCACAAAGACGTTAATAGAAATGGAAACAATTTGCTTGATGGAGACAGATGGAGGTGAATTTAATGAAGTGGAAATGCAAAATGGTCTGAACTACCAAAATTATGAAGCCAGCTGTCTTTTAGAGGCCAAGAAAGCAGCAATGTTGAGTAGGAATGGCTCAATTGAAGATCACAATGAATTTGTAGTTGATTTTGATACTGCACACGAGTGTTCTGATATTTCAGGAGCCCCCATTCCTTTACCCAGGAAGAAGCATCGAAGAAGGCTAGATATGGTGGTGTCTTCTGACTCTGAAGATATTCCTATCAACAAGGAATGCTCTCTAGTATCAAATACAGATGACGGTTTATTATCATCTCACCATCAAATATCTCCAAATTACCCAAGCCCATTAAATGGGTTGCTTTATCATATGTCAGATAATCCTGTGGAAGATTATTATCCAAGTTTAGAAACTGCAGGTGTACATGTGAATGAGATGTCCATGTCTGCTGCTACGTCATATGTGCCAGAATCAATTTTTGTTCCTGAGACTGAAATCCACGATATGGAGCTGTTTCCCAAAATGGTATCTCATGGTGATGCTGGTGCCAGTCCAGAAATTTCTATGGATGAGCTTTTTGATAATGTGTTAGCAGTTGAAGCCAATGGTTTTAGTTCACCTTCACATACTGTTCAAGAAACTACAGATGTTTTGGAAGATTCTTGCAATGTATTTAATTTATCTTGCCCAGAGGGGAAAGGATTTTCTTGTAATGGACATATGGAAAACAATGTCAGAGGGTATCCTGTGATGGATGAGTGCAGCCGTATAGACTTTAACAAGTCCAAATTTGTAGAGAAACCTGAATTGGAAGTGTCAGGTGATTCAGTGCAAGAATTGTGGAAACAACTTCGTTTCGGTCGCTTAGATCTTCTAGGAGATCATGTCACGCCAGAAAAGAAAGAAACCATTCAGATCATCGATTTAGTTCACAGAATGAGCCATCTAATTTCAGATTCAGACCTGCTTTCTTCGTGCCAACCACAAGTAAGTCCTTTAGACTGTGTATATCACAAACACTCCCATAATATTAACTGTATTTCTTTCTAGGATATTTTGGAAACACCAACATTTGAATTTGAGGAATCAGACTCATTCTCCTGGGGAGGTGAGCAATTGCAGATGGCATCTACAATTGCTCAGCATGGATTTAGCCTCATTGCAAACGATATTGCTACCACGGGTTCTCATGTCGGCTGTGATAGCAGTGTGGATATTGTATCAGAAATGCTTGCCTCCACAACTAATACAGCAGCATTGGGTAAATTATTGAGGCATTCTTCCACTACGAAGATTTTGAAACCGAGCCTTCCAGGATATTGTCATATGCTAGACAGGTAAGAGACGAAAATTAAAATTAAATATAAGAAATAAATTTCAAATTTTCCAAAAACAAAATTTTAAGATTTCCTAAAGACTGACCATATTGTTTACAGATTCAGTTTCACATGTTTGTTCTTTTTCTCACGGTTCTGAATGTCTTCTATGCAGAGATATGAAATCACACCTCTTCGACGTAATTCAGAAGGTGGCTCCAAACAGATTGTATTTGTCACTGAAAGGTGTTCAATTCTTTGAATATCTTTCTTCATTGCGTTGTATTTCAAGATCAGAAACTTTACGTATATCAAGAGGCCCTGATAAGACGAAAAGACGAAGGTATGTAGCTATAACGAGAGTTAAGTACAGGCTTCCTTTCACATCTCTAATAGTCACTCGTTACGCTCTATCTTTTTTCACTCCTTAATCATTCTTGATTGATTTGCAATGTAGGGGACGGGTTGCACGACATTACTTGAGTACTGGTTCTCATCTGTTCTCCCCCGAAGACATAACATTGCTGGGACAATCTAACCTTCCATACAAAGATATTCAAGGGTGTTGATACTATTTTCAGCAATTCATTCCCAAGGAATGATGCTAACAAGGTAGAGTTCACTAACACCTTTATGTTACTATGATATAATTGAATAGCTGTAGGGAATAGCTCAATAAAGCTGTTGAGAGGGAGGTCTTAATTGCATTTAGATTAGGTTTTTAGGTCGTTTATGTTTGTGATTAGATTGCCTCCCGTTTTTATCAAGCTTGCTTACACTGATTGATTTTGTAACTTATAGCAGTAATTAATAGAAAATCCTTATTTATCAACAAAACTGTCTAGATTTTCACTTTTTTGCTTTGTTTTGAAAGCCTAAAAAACCCTTCCTTGACATGATAGGAGCATTCGCATATTTCCATGAACTTGAATGCGTCGTTCTTCACACTAACGTTTTGTAGTTTTGAAAGTTACTTCCATATTGACCACTACTCGTGATTTGGAGTGTATACATGTGAAGTTAGGTTCTAAGGTTTAAATAAGCGGTGACGTCACTTTTCTTTTTTTATTTCATGTTTGGATTGACTTTCTAAATATTTTTTTAAAAAAGTATTTAAATCTGTATCCATTTTTTTCTCGTACATTTTAAATGGTCCGGTAGGTTTCTTAAATATCACTTTTATGTCAACTAGGTCTGACTATTTTTTTTTTAAAAAAAAGTTGATTTGTTGGATTTAAATTCAAATTGTCAATGGAATTTGAAAATTTTAATTCTCTAATGGGTTGGCGAATTTTTAAAGAACAAATTTGTTGGTTTGGAAGTGTTACTGCAAACTAATTTTGTAATTCAACCTTTCTTTTGAATCATTCGGTAAAATTGGCATCAATAAT ATGGACACTCCGCCTCTGCAATCCGTGAATGCGACGGAAGTTGGTGCCACTGAGACCGCCAAACGGGAGCTCCGAACTGTTCCACGTAAACTGGTTCAGTCTACGCTGCTTCCTCACAAGCCTCAAGATCAGGAGGAGAATGGAGTCGATCGGGAGGAGGTGAACAATTGCCGCGAGGAGGAGGAATTATGCGGTAGTCAGGGCAAGAAGAAAAGGAAGTCGAAGGGGAAGACGACGCCTCAATCGCGAAGCTCAAAGAAGGCGAAGGAAAAGCGAGCAGTAAACTTGACGCCAAAGAAAATTTTGAATTTTGAAGAGACAACTCCAACAATTCCCGACTTGCGTCTGGAGGCCAAAATGACCAGAGAGGAAAATTCACGGATGTTTGCAGGAAGGCAAATGCATCCCTTCTTTTCATCCCTGAAAGCAGGGAAGAAAGGTCAGGAGGCAACTCAATCGGCAGAGAGAGGGTACACTGTTGAGAAAAAGGAAACTGGAACTGATTGTAATCCAATCCACGTTTTTGAAGAAACTGGGGATGATGAACTATCTCTAGACTGGAAAAACTGGACATTCACTGACAGAAATATTATACATAATGTTCATACGTTACAAAAAACTTGTTCATCAGTATGTGAAAGCTCAATAAAGTCTTTAAGTTTAGACGATCTTCCAATTGTGTTGGCACCCTCCGATTCTGCTAATGGTGCAATTGAGGAGCCCGTGGATCATAATTCCATCAAACAAGAATGCCTTAAAGAGTTAACGTCAAGTGTATACAGTGTGGATGTTGACCAGGAGACAATGCTCCATCACCTCCTAAGTAGTTCAAAAATGGATGATAACCTGAATAAAACACGCGGGATTAGTGATTTTGAAGCAAGGCCAATTCCCGAGCATCAAAGTAGATTTCTTCAGGACAGAATGCAGTCCTACTATCTTCGTTGTCAAAGCCATTCCAAAAATTGTTTATGGACATATAAGTATCAGCCAAGGACGGCCATGGAGGTATGTGGTAATCTCGAATCAGTCAAGTTCTTGAGTGAGTGGCTACACCTCTGGTATGAAAGAAATTCACAGAAGAAAAAAGATTTTGCTGGAGGGAAGAAATTTCAGAAGCAAGATAACAATGGTTACTGTTCCCAAAGTGATTCTGACTATGAGAGTCCAGATGAAGAGGATGGCCTGAAAAACGTTCTTCTTGTCACGGGATCATCTGGGAGTGGGAAATCTGCAGCCGTTCATGCCTGTGCTGAAGAGCATGGTTTCAGGGTTTTTGAGTTCAGTGCATCTGTCATTCGTTCAGGAGCTGTTCTCAAGCAGATGATTGGAGAGGCTTTACAATCTCATCAGCTAAAATGGTCAGTAAAAAAATCCCAGGGACCGAGGAACAATTTTATTGAGAAATGCTCCTCTCTTCAAGAGAGTACAGCAGCTACATGTTTAGCTAGTGAGGTGACTGAACTCATCCCTTTATCAGACGATGATTCTAAAGATTACCTCAAAGGTGTTGGGGAGTTTGAATACATGGCATCTGAAAGCCTCAACAATCAAGTTGAAGCTAAGCCTTTAATTCTTTTAGAGGATGTGGATATCATTTTTCTCGAGGATCGTGGTTTTATTTCTGCAATTCAAGAGATCGCTGAGACAGGAAAGGGACCCATAATTTTGACCAGCAATAGTAAGAGTGCTTACTTGTTGAAGTGA MDTPPLQSVNATEVGATETAKRELRTVPRKLVQSTLLPHKPQDQEENGVDREEVNNCREEEELCGSQGKKKRKSKGKTTPQSRSSKKAKEKRAVNLTPKKILNFEETTPTIPDLRLEAKMTREENSRMFAGRQMHPFFSSLKAGKKGQEATQSAERGYTVEKKETGTDCNPIHVFEETGDDELSLDWKNWTFTDRNIIHNVHTLQKTCSSVCESSIKSLSLDDLPIVLAPSDSANGAIEEPVDHNSIKQECLKELTSSVYSVDVDQETMLHHLLSSSKMDDNLNKTRGISDFEARPIPEHQSRFLQDRMQSYYLRCQSHSKNCLWTYKYQPRTAMEVCGNLESVKFLSEWLHLWYERNSQKKKDFAGGKKFQKQDNNGYCSQSDSDYESPDEEDGLKNVLLVTGSSGSGKSAAVHACAEEHGFRVFEFSASVIRSGAVLKQMIGEALQSHQLKWSVKKSQGPRNNFIEKCSSLQESTAATCLASEVTELIPLSDDDSKDYLKGVGEFEYMASESLNNQVEAKPLILLEDVDIIFLEDRGFISAIQEIAETGKGPIILTSNSKSAYLLK Homology
BLAST of Cucsat.G7838.T3 vs. ExPASy Swiss-Prot
Match: Q4QY64 (ATPase family AAA domain-containing protein 5 OS=Mus musculus OX=10090 GN=Atad5 PE=1 SV=1) HSP 1 Score: 119.0 bits (297), Expect = 1.7e-25 Identity = 97/305 (31.80%), Postives = 151/305 (49.51%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy Swiss-Prot
Match: Q96QE3 (ATPase family AAA domain-containing protein 5 OS=Homo sapiens OX=9606 GN=ATAD5 PE=1 SV=4) HSP 1 Score: 111.3 bits (277), Expect = 3.6e-23 Identity = 109/392 (27.81%), Postives = 177/392 (45.15%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy Swiss-Prot
Match: O43086 (Telomere length regulation protein elg1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=elg1 PE=1 SV=1) HSP 1 Score: 58.5 bits (140), Expect = 2.8e-07 Identity = 65/265 (24.53%), Postives = 97/265 (36.60%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy Swiss-Prot
Match: P0C1D3 (Chromosome transmission fidelity protein 18 OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) OX=227321 GN=ctf18 PE=3 SV=1) HSP 1 Score: 55.5 bits (132), Expect = 2.3e-06 Identity = 39/130 (30.00%), Postives = 61/130 (46.92%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. NCBI nr
Match: XP_011653805.1 (uncharacterized protein LOC101216488 isoform X2 [Cucumis sativus] >KGN54574.1 hypothetical protein Csa_012139 [Cucumis sativus]) HSP 1 Score: 1097 bits (2837), Expect = 0.0 Identity = 561/566 (99.12%), Postives = 562/566 (99.29%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. NCBI nr
Match: XP_031740589.1 (uncharacterized protein LOC101216488 isoform X1 [Cucumis sativus]) HSP 1 Score: 1089 bits (2817), Expect = 0.0 Identity = 561/575 (97.57%), Postives = 562/575 (97.74%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. NCBI nr
Match: KAA0045241.1 (putative P-loop containing nucleoside triphosphate hydrolases superfamily protein [Cucumis melo var. makuwa]) HSP 1 Score: 1021 bits (2639), Expect = 0.0 Identity = 522/566 (92.23%), Postives = 539/566 (95.23%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. NCBI nr
Match: XP_008444145.1 (PREDICTED: uncharacterized protein LOC103487579 isoform X1 [Cucumis melo]) HSP 1 Score: 1021 bits (2639), Expect = 0.0 Identity = 522/566 (92.23%), Postives = 539/566 (95.23%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. NCBI nr
Match: TYK19269.1 (putative P-loop containing nucleoside triphosphate hydrolases superfamily protein [Cucumis melo var. makuwa]) HSP 1 Score: 1000 bits (2585), Expect = 0.0 Identity = 522/598 (87.29%), Postives = 539/598 (90.13%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy TrEMBL
Match: A0A0A0L0K9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G365040 PE=3 SV=1) HSP 1 Score: 1097 bits (2837), Expect = 0.0 Identity = 561/566 (99.12%), Postives = 562/566 (99.29%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy TrEMBL
Match: A0A5A7TUP8 (Putative P-loop containing nucleoside triphosphate hydrolases superfamily protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold30G002560 PE=3 SV=1) HSP 1 Score: 1021 bits (2639), Expect = 0.0 Identity = 522/566 (92.23%), Postives = 539/566 (95.23%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy TrEMBL
Match: A0A1S3BAF7 (uncharacterized protein LOC103487579 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103487579 PE=3 SV=1) HSP 1 Score: 1021 bits (2639), Expect = 0.0 Identity = 522/566 (92.23%), Postives = 539/566 (95.23%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy TrEMBL
Match: A0A5D3D6T0 (Putative P-loop containing nucleoside triphosphate hydrolases superfamily protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1493G00770 PE=3 SV=1) HSP 1 Score: 1000 bits (2585), Expect = 0.0 Identity = 522/598 (87.29%), Postives = 539/598 (90.13%), Query Frame = 0
BLAST of Cucsat.G7838.T3 vs. ExPASy TrEMBL
Match: A0A1S3BAH3 (uncharacterized protein LOC103487579 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103487579 PE=3 SV=1) HSP 1 Score: 872 bits (2254), Expect = 5.41e-307 Identity = 441/479 (92.07%), Postives = 455/479 (94.99%), 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.
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