CsGy1G024850.1 (mRNA) Cucumber (Gy14) v2
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.CTATTCTGAGCATAGGAAAGAAAAACCAATTTGTTTTTCCTTTTAAAACTCATTTTTTATTTGTGTTTTGCTCTCTCTCTATGGCCAACCTTTTCCATTCCAATGCCAAAGGCCTTTCCACTTTGACCTTAATTTCTATTCTTTGTCTACTGCTACAAAATCTGCAAACCACAGGTTTCATTCTCCCTCCCTCTAAATATAATTCATAATTGTACGTTATTCTACAAATAAGTTGAAGAAAAAGAACACATAGCACATGGGAACCGTCTGAGTGGCATCTATATTGTTTTTTGTCAATACAGGCAACACTCAATAAAAAGTTTGTCATGTAATTGATATTAATTGTTGCACTGAATTATTGTCCTCTCTCTCTCTCTCTCTCTTTATATATATATATATATATATATATATATATATATATATATATATATAAGTATTGATCAATTCATTTCCAAAAAATAATATTGATTTAGTTTATTTTGAATTTTATGTAGGTGCTCAAATCGGTGTCTGCTATGGACAACTTGGCAACGACCTACCATCTCCCGCAGAAGTTATCGACCTTTACAACCAGAACAACATCCAAAGAATGCGACTTTACGCTCCAAATCAAGATACTTTTAATGCCCTTCGAGGCTCCAGCATTGAGCTCATGCTTGGCCTTCCCAATGATCAGATTCAATCTATGGCAGCGACTCAAGACAACGCTAATGCATGGATTCAAGACAACATCCTCAACTTTGCCGACGTAAATTTCAAGTACATCGTCGTTGGAAACGAAATAAAAACCAACGAAGAAGCTGCGAGATTTCTCGTGCCCGCCATGCAAAATATCCAAAATGCAATTTCAGCTGTTGGTTTGCAAGGGCAAATCAAAGTTTCCACTGCGTTCCACACTGGAATTCTTTCAGCAGAATCCTTCCCTCCTTCACACGGCTCCTTTGACGCCAACTATCTTCCAATTCTCAACCCGACTATCCGCTTCCTTCTCGACAACAACTCCCCATTGCTCCTCAACTTGTACCCTTACTTTAGTTATGTAGCAACTCCAAACATGGAACTTGATTATGCAATTTTTACCGGGACATCGTTAGTTGAAGATGGGGAGTTCAATTATCAAAACTTGTTCGATGCTATTTTGGATACTGTTTATTCAGCTTTGGAGAAGAATGGTGGAGGATCATTGGAGGTTGTTGTATCCGAGACCGGTTGGCCGACGGAGGGTGGAGAGGCTGCGACGGTTGACAATGCAAGGACTTACAATAACAATCTAATTCAACATGTGAAACAAGGGACTCCAAAGAGACAAGGAAGGGCTATTGAAACTTATGTGTTTGCTATGTTTGATGAGAATGAGAAGACAACTCCTCCGGAGGTTGAGAGACATTGGGGTTTGTTCTCTCCAAATAAGCAGCCTAAGTATCCAGTCAACTTCAACTAATTAGGATCATCACGTTAATTATGCGTTTAAATGACTAAACTATACTTTATTATTTTGAATTCTGTTGGAATGCTTTTATTTATATAATTGGATAAGCCTTTTAATTAAAATATGTTTAATGCATAATATATCCTTGTCTGCAACCAATATATATATATACACACATATATGATAATTAAGGGTGCAAAATAGTTTATCTTAAAATTTTTTAATTAATAAAGATTTAACTACAGTTTTGCCAAACCACTTTAAAAGTCGGTAAAGTAAGTGGTATATATGAAAAACAATTCAAAACAAAAAGAAAGTACGTAACATATATGCTTCCTTCACTGTAATGTTTCTTAAATGGAAAACTTCATCGAAAAATTTCACCGACATACCATAATTCACAATTTCATAAAAAAAATTAATAATATGAAACAAATATATACTCACGGAAAAAGAAAGAATGGACAAAGAGAAAGATCAAAAAGTGAAGAGAAATGGGACAGAGAGAAAGTATATCGAAAGAAATTTTAACTAAAATCATCCAAACAAAAATAATTGGGAGAAATTTTGATTAGGACCTCACCATAATTGAATTGATTATATACCATATTTAAATATGATATCTAATGAATGAAAATTTTAAAATTAAATGAAAATAAATATATTAAATAATGAGTAGACCAAATATGTAAGTTTTAGGGAATTTTTCATAAATCTCACAAACTGACAAAATATTTACGTAACAAAATAAAAAAACTCATGAAGCTGATCATTTTTTTTAAAAAAAAATTCAAATTTGATCTTTCTTGTCATCGTCTTTCCTCTTCTCTTCTTTACTGTATATTTTTCTTTTCCTCATTTGCAAATATTTTTCTTTCCATCTCATTTTCTCGTCTTCTCCAATTTTTTTTTCTTTTCATGTCATTTTCTCTTGTTCTGACTTTAAAAAAATGTTTTTTGTCCTTCATTTCCATATTCTTTCTCCTGCAATATTTTTTCCTTTCCATAGTCTTTTTCTCTCATTCTGTAATTTTTTTTTATTTTTTAAACTGTTATTTGGTTGTTTTTTCATTTCCAGTCTTTTTCTCTCATTTTGCAACTTTTTTTATATTTTTTCAAACTGTTATTTGATTGTTTAAGATCATGTGCTAAATATAAAAAATGTGAAAAAAATTGTTAGGATATTGGATTAAAAAAATTGTTAGAATATTGGATTGTCAAATATAAACGATTACAAAAAATAGATAAATCTAAACTATTTTTTTCAAATATAAACGACCGTGTACCCAAAAAATATTGAAAATAATTGTTGAGATTTGGCTATCTATCTAAAAAAATCGTGGAGATTTGGCTACCCAAATTTAAACGATTAATTTAAGCGATTGTGTGCTAAATCTAAACGATTGCGTGTCAGATCTAAACGATCATGTACACAGAATCTTGAAAAGATGGTTTTAGATTTGAATACGATCAAGTATGAACGATCATGTATGAAAGAATAACCAAATCTGAAACTATCATTTTCCAAATATATTAGACACATTGAATACCCGTTAATAGAGGGATGTTTTTCTTATTTTTTTATTATGGGTTTGTGAGCTTTTTTTTTGTTTTTAAAATTATTCTAAAGTGTGTAAATATTTGGATGAATTGTTATACTTTTTAAAAGACTCCTAATTTTTAATATAAATAATAAATATGAAATAAAATAATTATGGCAATAGATCATATATATTTTGAAATAGGAATCTATCCACATTTTGTACTTTTTTTTCTTTCTCTAATATTAATATTAAATGTGAGTAGTTTTATCATTTAGACTCAATATTTGTATAAATTTGTAGTCCATTCGAACTTTTGTAAAAGATATGACAGTGTTTAATATGTAAATAGAGATTGGTGTTTAGGCTATTCAAGTTAAAAGATCCGTAAAAAAAAATATAGATTTTATTATATCTTATAAATATTTTTAATTTTTGATTTTTTTTAAAAATATAACAAATTGATAAAATATTTACACTTTAATTAATAATTTTGAAAACGAAAAAAAGTACATGTATCCGCAATAAAAAATACAAAAAAAGTGCCAATCAAGACGTAATTCATTATTATTATATATATGAAAATTTATGACCCACTAGTTAAGTATCTCTCTAGCTATAAAAAGTGATTAATTATTTAACACGTCATTAAACAATTTAATATTTTATTATATACTGATTGCGAAGAAAAATTTAATATTTTATTATATACTCATTGCGTATGTTTTCTTCAATCGGTTTTCTTCGTCGTATAGGTCTTTCCTCTGCTTCACTTTTCTTCCAGTACCAGCCGCCGCCGCTACCACCAGATTCCGCCTTCCTTCTCGCCGGAAATTTCTTCCTTCCGCTCCAACTCACCGCCAAATTCCCTCCTCCAAATTTCACTCTATAGGTATTAATTTCTTTCAATGTTCCAGCACACTGGAATTTCTCCCAAATAAGATTATCTGATAGCTTTTAGAAACTCTTCATTTGATTCTTCATGAGAGAACTGAGTTTGCAGAGAGGCTGAGAACTTGAAACTTTAAAAATATTTGATTACAGACTGTATGTTTTTTGTTATGCATCTATATTTTATTTGGTTGCTGTTTTTCTGTTTTTCCTCCAATTTTTGACAGAAGCTGGTATACTTGATTCTTTACGAAGGATGTTGCCAACTGATGAGTTGAAAAGTATATCTTTTACCCGTTCTATAAGGGATGGAGATTTAGTCATTGTCTATGAGAGACATGATATCATGAAGGCTGTGAAAGTATGTGATGGTTCAACACTTCAGAATAGGTTTGGTGTGTTTAAACATTCGGATTGGATAGGAAAGCCATTTGGGTCCAAGGCGTTGAGTAACAAAGGTGGATTTGTCTACCTGTTAGCTCCAACTCCTGAATTATGGACTTTGGTACTAAGCCACAGGACACAGATTCTATACATTGCTGACATTAGCTTTGTAATCATGTTCTTGGAAATAGTTCCTGGCTGTTTAGTTCTAGAATCAGGGACAGGCAGTGGATCGTTGACAACCTCGTTAGCTAGGGCTGTAGCGCCTACTGGACACGTCTATACGTTTGATTTCCATGAGCAGAGAGCTTCCTCAGCAAGGTAGAAACTGGGTTTCACTGTATGTTCTCAAGTTGCCCTTTAGAGTAATTTTTCTATGATGGTTTTCTTGTCAGATCTTGAGGTAGTTTAAGAAAGTAGTTTCATTTACTTCTGTTCTTTTTTCAGAGAAGATTTTGAGAAGACTGGCTTGACTAGCCTTGTCACCGTGGGAGTTAGAGATATTCAAGGTCAGGGCTTTCCTGAAGAGTTTGTTGGATTGGCAGATTCAGTTTTCTTGGATCTACCCCAACCTTGGTTGGCTATTCCTTCAGCTGAGAGAATGTTGAAACAAGACGGCATGTTATGCTCCTTCTCTCCTTGTATCGAGCAAGTTCAACGTTCGGTCGAAACTCTTCGATCTAAGTTTACAGGTGACTTCTGAGTTCTGAATAACGTTATTCGCCATTTGACTTCATTTTTAGTGACAATGTTGCTTTCTGTTGTTCACATTTTGTTCTCCTTTGTGTAGATATAAGGACATTTGAGGTATTGCTTCGGACTTACGAGGTTAAGGAAGGTAGAACAGAGAGTAACCAGGTTGATGGGGGTGGTTCTGTTGGTCTTCCTCCATGTAAGAGACGGCTGAGATCGAAGGAGTCAGATGACATGGACAATGAATCTAGTACGACGGTCATGGTTCGCCCATGTAGTGAAGCCAGAGGTCACACTGGTTATTTAACATTTGCAAGACTTAGGTGTCTCTCATGA CTATTCTGAGCATAGGAAAGAAAAACCAATTTGTTTTTCCTTTTAAAACTCATTTTTTATTTGTGTTTTGCTCTCTCTCTATGGCCAACCTTTTCCATTCCAATGCCAAAGGCCTTTCCACTTTGACCTTAATTTCTATTCTTTGTCTACTGCTACAAAATCTGCAAACCACAGGTGCTCAAATCGGTGTCTGCTATGGACAACTTGGCAACGACCTACCATCTCCCGCAGAAGTTATCGACCTTTACAACCAGAACAACATCCAAAGAATGCGACTTTACGCTCCAAATCAAGATACTTTTAATGCCCTTCGAGGCTCCAGCATTGAGCTCATGCTTGGCCTTCCCAATGATCAGATTCAATCTATGGCAGCGACTCAAGACAACGCTAATGCATGGATTCAAGACAACATCCTCAACTTTGCCGACGTAAATTTCAAGTACATCGTCGTTGGAAACGAAATAAAAACCAACGAAGAAGCTGCGAGATTTCTCGTGCCCGCCATGCAAAATATCCAAAATGCAATTTCAGCTGTTGGTTTGCAAGGGCAAATCAAAGTTTCCACTGCGTTCCACACTGGAATTCTTTCAGCAGAATCCTTCCCTCCTTCACACGGCTCCTTTGACGCCAACTATCTTCCAATTCTCAACCCGACTATCCGCTTCCTTCTCGACAACAACTCCCCATTGCTCCTCAACTTGTACCCTTACTTTAGTTATGTAGCAACTCCAAACATGGAACTTGATTATGCAATTTTTACCGGGACATCGTTAGTTGAAGATGGGGAGTTCAATTATCAAAACTTGTTCGATGCTATTTTGGATACTGTTTATTCAGCTTTGGAGAAGAATGGTGGAGGATCATTGGAGGTTGTTGTATCCGAGACCGGTTGGCCGACGGAGGGTGGAGAGGCTGCGACGGTTGACAATGCAAGGACTTACAATAACAATCTAATTCAACATGTGAAACAAGGGACTCCAAAGAGACAAGGAAGGGCTATTGAAACTTATGTGTTTGCTATGTTTGATGAGAATGAGAAGACAACTCCTCCGGAGGTTGAGAGACATTGGGTACCAGCCGCCGCCGCTACCACCAGATTCCGCCTTCCTTCTCGCCGGAAATTTCTTCCTTCCGCTCCAACTCACCGCCAAATTCCCTCCTCCAAATTTCACTCTATAGAAGCTGGTATACTTGATTCTTTACGAAGGATGTTGCCAACTGATGAGTTGAAAAGTATATCTTTTACCCGTTCTATAAGGGATGGAGATTTAGTCATTGTCTATGAGAGACATGATATCATGAAGGCTGTGAAAGTATGTGATGGTTCAACACTTCAGAATAGGTTTGGTGTGTTTAAACATTCGGATTGGATAGGAAAGCCATTTGGGTCCAAGGCGTTGAGTAACAAAGGTGGATTTGTCTACCTGTTAGCTCCAACTCCTGAATTATGGACTTTGGTACTAAGCCACAGGACACAGATTCTATACATTGCTGACATTAGCTTTGTAATCATGTTCTTGGAAATAGTTCCTGGCTGTTTAGTTCTAGAATCAGGGACAGGCAGTGGATCGTTGACAACCTCGTTAGCTAGGGCTGTAGCGCCTACTGGACACGTCTATACGTTTGATTTCCATGAGCAGAGAGCTTCCTCAGCAAGAGAAGATTTTGAGAAGACTGGCTTGACTAGCCTTGTCACCGTGGGAGTTAGAGATATTCAAGGTCAGGGCTTTCCTGAAGAGTTTGTTGGATTGGCAGATTCAGTTTTCTTGGATCTACCCCAACCTTGGTTGGCTATTCCTTCAGCTGAGAGAATGTTGAAACAAGACGGCATGTTATGCTCCTTCTCTCCTTGTATCGAGCAAGTTCAACGTTCGGTCGAAACTCTTCGATCTAAGTTTACAGATATAAGGACATTTGAGGTATTGCTTCGGACTTACGAGGTTAAGGAAGGTAGAACAGAGAGTAACCAGGTTGATGGGGGTGGTTCTGTTGGTCTTCCTCCATGTAAGAGACGGCTGAGATCGAAGGAGTCAGATGACATGGACAATGAATCTAGTACGACGGTCATGGTTCGCCCATGTAGTGAAGCCAGAGGTCACACTGGTTATTTAACATTTGCAAGACTTAGGTGTCTCTCATGA ATGGCCAACCTTTTCCATTCCAATGCCAAAGGCCTTTCCACTTTGACCTTAATTTCTATTCTTTGTCTACTGCTACAAAATCTGCAAACCACAGGTGCTCAAATCGGTGTCTGCTATGGACAACTTGGCAACGACCTACCATCTCCCGCAGAAGTTATCGACCTTTACAACCAGAACAACATCCAAAGAATGCGACTTTACGCTCCAAATCAAGATACTTTTAATGCCCTTCGAGGCTCCAGCATTGAGCTCATGCTTGGCCTTCCCAATGATCAGATTCAATCTATGGCAGCGACTCAAGACAACGCTAATGCATGGATTCAAGACAACATCCTCAACTTTGCCGACGTAAATTTCAAGTACATCGTCGTTGGAAACGAAATAAAAACCAACGAAGAAGCTGCGAGATTTCTCGTGCCCGCCATGCAAAATATCCAAAATGCAATTTCAGCTGTTGGTTTGCAAGGGCAAATCAAAGTTTCCACTGCGTTCCACACTGGAATTCTTTCAGCAGAATCCTTCCCTCCTTCACACGGCTCCTTTGACGCCAACTATCTTCCAATTCTCAACCCGACTATCCGCTTCCTTCTCGACAACAACTCCCCATTGCTCCTCAACTTGTACCCTTACTTTAGTTATGTAGCAACTCCAAACATGGAACTTGATTATGCAATTTTTACCGGGACATCGTTAGTTGAAGATGGGGAGTTCAATTATCAAAACTTGTTCGATGCTATTTTGGATACTGTTTATTCAGCTTTGGAGAAGAATGGTGGAGGATCATTGGAGGTTGTTGTATCCGAGACCGGTTGGCCGACGGAGGGTGGAGAGGCTGCGACGGTTGACAATGCAAGGACTTACAATAACAATCTAATTCAACATGTGAAACAAGGGACTCCAAAGAGACAAGGAAGGGCTATTGAAACTTATGTGTTTGCTATGTTTGATGAGAATGAGAAGACAACTCCTCCGGAGGTTGAGAGACATTGGGTACCAGCCGCCGCCGCTACCACCAGATTCCGCCTTCCTTCTCGCCGGAAATTTCTTCCTTCCGCTCCAACTCACCGCCAAATTCCCTCCTCCAAATTTCACTCTATAGAAGCTGGTATACTTGATTCTTTACGAAGGATGTTGCCAACTGATGAGTTGAAAAGTATATCTTTTACCCGTTCTATAAGGGATGGAGATTTAGTCATTGTCTATGAGAGACATGATATCATGAAGGCTGTGAAAGTATGTGATGGTTCAACACTTCAGAATAGGTTTGGTGTGTTTAAACATTCGGATTGGATAGGAAAGCCATTTGGGTCCAAGGCGTTGAGTAACAAAGGTGGATTTGTCTACCTGTTAGCTCCAACTCCTGAATTATGGACTTTGGTACTAAGCCACAGGACACAGATTCTATACATTGCTGACATTAGCTTTGTAATCATGTTCTTGGAAATAGTTCCTGGCTGTTTAGTTCTAGAATCAGGGACAGGCAGTGGATCGTTGACAACCTCGTTAGCTAGGGCTGTAGCGCCTACTGGACACGTCTATACGTTTGATTTCCATGAGCAGAGAGCTTCCTCAGCAAGAGAAGATTTTGAGAAGACTGGCTTGACTAGCCTTGTCACCGTGGGAGTTAGAGATATTCAAGGTCAGGGCTTTCCTGAAGAGTTTGTTGGATTGGCAGATTCAGTTTTCTTGGATCTACCCCAACCTTGGTTGGCTATTCCTTCAGCTGAGAGAATGTTGAAACAAGACGGCATGTTATGCTCCTTCTCTCCTTGTATCGAGCAAGTTCAACGTTCGGTCGAAACTCTTCGATCTAAGTTTACAGATATAAGGACATTTGAGGTATTGCTTCGGACTTACGAGGTTAAGGAAGGTAGAACAGAGAGTAACCAGGTTGATGGGGGTGGTTCTGTTGGTCTTCCTCCATGTAAGAGACGGCTGAGATCGAAGGAGTCAGATGACATGGACAATGAATCTAGTACGACGGTCATGGTTCGCCCATGTAGTGAAGCCAGAGGTCACACTGGTTATTTAACATTTGCAAGACTTAGGTGTCTCTCATGA MANLFHSNAKGLSTLTLISILCLLLQNLQTTGAQIGVCYGQLGNDLPSPAEVIDLYNQNNIQRMRLYAPNQDTFNALRGSSIELMLGLPNDQIQSMAATQDNANAWIQDNILNFADVNFKYIVVGNEIKTNEEAARFLVPAMQNIQNAISAVGLQGQIKVSTAFHTGILSAESFPPSHGSFDANYLPILNPTIRFLLDNNSPLLLNLYPYFSYVATPNMELDYAIFTGTSLVEDGEFNYQNLFDAILDTVYSALEKNGGGSLEVVVSETGWPTEGGEAATVDNARTYNNNLIQHVKQGTPKRQGRAIETYVFAMFDENEKTTPPEVERHWVPAAAATTRFRLPSRRKFLPSAPTHRQIPSSKFHSIEAGILDSLRRMLPTDELKSISFTRSIRDGDLVIVYERHDIMKAVKVCDGSTLQNRFGVFKHSDWIGKPFGSKALSNKGGFVYLLAPTPELWTLVLSHRTQILYIADISFVIMFLEIVPGCLVLESGTGSGSLTTSLARAVAPTGHVYTFDFHEQRASSAREDFEKTGLTSLVTVGVRDIQGQGFPEEFVGLADSVFLDLPQPWLAIPSAERMLKQDGMLCSFSPCIEQVQRSVETLRSKFTDIRTFEVLLRTYEVKEGRTESNQVDGGGSVGLPPCKRRLRSKESDDMDNESSTTVMVRPCSEARGHTGYLTFARLRCLS
BLAST of CsGy1G024850.1 vs. NCBI nr
Match: KGN65972.1 (hypothetical protein Csa_1G555080 [Cucumis sativus]) HSP 1 Score: 1355.5 bits (3507), Expect = 0.0e+00 Identity = 686/705 (97.30%), Postives = 686/705 (97.30%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. NCBI nr
Match: XP_011659353.1 (PREDICTED: glucan endo-1,3-beta-glucosidase, basic isoform-like [Cucumis sativus]) HSP 1 Score: 659.1 bits (1699), Expect = 1.7e-185 Identity = 330/330 (100.00%), Postives = 330/330 (100.00%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. NCBI nr
Match: XP_004135565.1 (PREDICTED: tRNA (adenine(58)-N(1))-methyltransferase catalytic subunit TRMT61A [Cucumis sativus] >XP_011659360.1 PREDICTED: tRNA (adenine(58)-N(1))-methyltransferase catalytic subunit TRMT61A [Cucumis sativus]) HSP 1 Score: 624.8 bits (1610), Expect = 3.5e-175 Identity = 310/310 (100.00%), Postives = 310/310 (100.00%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. NCBI nr
Match: XP_008459107.1 (PREDICTED: glucan endo-1,3-beta-glucosidase, basic isoform-like [Cucumis melo]) HSP 1 Score: 614.8 bits (1584), Expect = 3.6e-172 Identity = 308/330 (93.33%), Postives = 318/330 (96.36%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. NCBI nr
Match: XP_008459104.1 (PREDICTED: tRNA (adenine(58)-N(1))-methyltransferase catalytic subunit TRMT61A isoform X1 [Cucumis melo]) HSP 1 Score: 614.0 bits (1582), Expect = 6.2e-172 Identity = 312/350 (89.14%), Postives = 324/350 (92.57%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TAIR10
Match: AT5G14600.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 479.6 bits (1233), Expect = 3.3e-135 Identity = 236/318 (74.21%), Postives = 270/318 (84.91%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TAIR10
Match: AT3G57270.1 (beta-1,3-glucanase 1) HSP 1 Score: 368.6 bits (945), Expect = 8.2e-102 Identity = 187/322 (58.07%), Postives = 242/322 (75.16%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TAIR10
Match: AT3G57240.1 (beta-1,3-glucanase 3) HSP 1 Score: 333.2 bits (853), Expect = 3.8e-91 Identity = 178/327 (54.43%), Postives = 232/327 (70.95%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TAIR10
Match: AT3G57260.1 (beta-1,3-glucanase 2) HSP 1 Score: 327.4 bits (838), Expect = 2.1e-89 Identity = 175/329 (53.19%), Postives = 232/329 (70.52%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TAIR10
Match: AT4G16260.1 (Glycosyl hydrolase superfamily protein) HSP 1 Score: 298.9 bits (764), Expect = 8.0e-81 Identity = 159/324 (49.07%), Postives = 224/324 (69.14%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. Swiss-Prot
Match: sp|P52408|E13B_PRUPE (Glucan endo-1,3-beta-glucosidase, basic isoform OS=Prunus persica OX=3760 GN=GNS1 PE=3 SV=1) HSP 1 Score: 380.6 bits (976), Expect = 3.8e-104 Identity = 197/325 (60.62%), Postives = 248/325 (76.31%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. Swiss-Prot
Match: sp|Q03773|E13A_SOYBN (Glucan endo-1,3-beta-glucosidase OS=Glycine max OX=3847 PE=1 SV=1) HSP 1 Score: 373.2 bits (957), Expect = 6.0e-102 Identity = 188/330 (56.97%), Postives = 249/330 (75.45%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. Swiss-Prot
Match: sp|Q9M2M0|BG1_ARATH (Probable glucan endo-1,3-beta-glucosidase BG1 OS=Arabidopsis thaliana OX=3702 GN=BG1 PE=2 SV=1) HSP 1 Score: 368.6 bits (945), Expect = 1.5e-100 Identity = 187/322 (58.07%), Postives = 242/322 (75.16%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. Swiss-Prot
Match: sp|A7PQW3|E13B_VITVI (Glucan endo-1,3-beta-glucosidase OS=Vitis vinifera OX=29760 GN=VIT_06s0061g00120 PE=1 SV=2) HSP 1 Score: 339.3 bits (869), Expect = 9.6e-92 Identity = 176/321 (54.83%), Postives = 240/321 (74.77%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. Swiss-Prot
Match: sp|P36401|E13H_TOBAC (Glucan endo-1,3-beta-glucosidase, acidic isoform PR-Q' OS=Nicotiana tabacum OX=4097 PE=1 SV=1) HSP 1 Score: 338.6 bits (867), Expect = 1.6e-91 Identity = 173/321 (53.89%), Postives = 234/321 (72.90%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TrEMBL
Match: tr|A0A0A0LYQ8|A0A0A0LYQ8_CUCSA (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G555080 PE=3 SV=1) HSP 1 Score: 1355.5 bits (3507), Expect = 0.0e+00 Identity = 686/705 (97.30%), Postives = 686/705 (97.30%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TrEMBL
Match: tr|A0A1S3C9Z3|A0A1S3C9Z3_CUCME (glucan endo-1,3-beta-glucosidase, basic isoform-like OS=Cucumis melo OX=3656 GN=LOC103498316 PE=3 SV=1) HSP 1 Score: 614.8 bits (1584), Expect = 2.4e-172 Identity = 308/330 (93.33%), Postives = 318/330 (96.36%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TrEMBL
Match: tr|A0A1S3C8X5|A0A1S3C8X5_CUCME (tRNA (adenine(58)-N(1))-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103498313 PE=3 SV=1) HSP 1 Score: 614.0 bits (1582), Expect = 4.1e-172 Identity = 312/350 (89.14%), Postives = 324/350 (92.57%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TrEMBL
Match: tr|A0A1S3C9I4|A0A1S3C9I4_CUCME (tRNA (adenine(58)-N(1))-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103498313 PE=3 SV=1) HSP 1 Score: 610.5 bits (1573), Expect = 4.5e-171 Identity = 302/312 (96.79%), Postives = 307/312 (98.40%), Query Frame = 0
BLAST of CsGy1G024850.1 vs. TrEMBL
Match: tr|A0A2P5EFC9|A0A2P5EFC9_9ROSA (tRNA (adenine(58)-N(1))-methyltransferase OS=Trema orientalis OX=63057 GN=TorRG33x02_199760 PE=3 SV=1) HSP 1 Score: 511.1 bits (1315), Expect = 3.7e-141 Identity = 248/310 (80.00%), Postives = 273/310 (88.06%), Query Frame = 0
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of cucumber Gy14 genome (v2)
Date Performed: 2018-09-25
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