CsGy1G019300 (gene) Cucumber (Gy14) v2.1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CTATGTTAATGTTAATGCCAATCACTTTCGCCCCTCTAGTTTATGACTTTATAGTCTCTGGTAATTCCGGCGACCTTTGCTTCAATCCATTTCCATGGCCTCCAAATCTCTCGCTCACAGCCTTCGTAATTTCTCAACCGTCTCTTCCTTTTGCAACGCTTCAACAATTTCCCGGACCACGTATACAACAATCTCTACATTTCGCCCAAAAGTACACCGCTCGATTTCGGTCGCCTCTCGTCCTGTATCGGTCACCGCCGGCAGTCTCACTTGGGACGACGTTGTCCATGTTTCTTTACCAGAAAGCTTTCAGGATGATCCTGCGGATTTGACGGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGCGGATCAGTAGGTCTCTTTCTCCTTTTCTTTTCTTGTTTCGCTGTACAAAAGAAAGATGTAAAGGCATTCATTCCGGTACCAATTTTACGCATTAGTTGCTTTTATGTTTTTTAGATTCAGTGCAGGAAAAGTTATAGACTGATGCAATGTGATTCCATGTCTGTTTTGAATGGACTAAAATTTTCTTACAGGATACGCAATCCGAATTTTTTCCGTTTGTCATCGATGGTCAAATTGTAGGCTACATGCACCACGGGTGAGGCTTCTGTATCTTTATGGATGACCAAATTTTTAGCTATGTTTGGTCGAAGCCACTTATTTACACTCATTTTGTCAACATTATCTCGTGTGCGGTTGCTATATACAATGGATAGGTTTAATCGGTTTGTTTTAATGAGCTTTATGCAGTTTCGTTAAACACCTGCAGCAGTATCCGAAGGTGTTTACCCGAGACGATTCTGTTAAATTTGGGGCTTTCTTAACCTTGCATGAATCCTTGAAGACACCTGAAGATAGGACGCGTGCAGTTGGAGATGTAGTTAAATGCTTGGGTGAAGAAGTCATTCCAGGTACACGGAATGAGGTACTGGTTTATGATTTCAATTTAAAGCAGTGATTACTTTACTTTTCAATACGTGTTTGCAACTGTTGGATTGAAGGAGAAAAAAAAAGAAGAAAGAATTTCCTTCTTCTGTTTAATGCTGGAAATAAACTGCTTCATTTTAGAAAGGTAATTTTAGAAGAAGACAATACTTCATGTGGCTAACTGTGGATAACTATAAACTCTTTCAGCTTTTCCCTGTTACTTCGTCATTTGGTGCGCTGAGCTTTTTTTCACTCGAACGTGCTGCAGCCCCTTATTTTGGAATAAAGGTGCAAAACAAATGTTCCCCTTTTACTGCTTTGTGGGGACTTTTAAAATTTTGTTCAATTTTTGTGAAATGCACTTGGGAAACTATATTTTAGTCCTGCTTTTTGTTAGGCTCTTGAGAATAGTAGGCCATTTGATTTGTTGAATCTGTTCATATAAGTTTGATTGTTAGGTCCAAATAAAATTGGAACTTGTTATATTTATGGTGGCCGGTGGCCACCTACTTAGGAATTAATTTTTTACAAGTTTTCTTGATACACAAATGTTGCAGAGTTAGGCTGGTTGTCCCATGAGATTACTCGAGGGGTGCGTAAGCTGATTTGGACATTCAAAGATATATAAAAGAAAAAAAATCCGAATATAAAGATTTGAAATAACATGATTTTGCAAACTTTCGGGCGCTAAAAAATTTTAGTTGGCAACTGTGTTTCTTTTACACGTGTCAATTAGAGGTTTAATCGTGGAATATGAGACGCACACAAAAAAGCCAGTATTTTATCCTCTTTTCTGCTTCTTCTGCCATCATTTTGACAACCTACATAACAAGACTAAAATCATTTTCATTGCTCATCTTCCCTCCGTTGATATTGGACTAAATTCAATCTTCCCTTGATTGAAACTCTGAAGTTTAAACTACACTAAATTCATGTTGGGAATAAATTTTGGTCATGGAAATAACCCGCACAGCAGTCCTATTAGTATTAGCTCTTGGTAAACATATTGCAAGATATCCTCACATCCTCCAGGTTGTTGATCATGGTGAGGCTAATCTTTTGGAGGCTTCTAGGAGAAAACTGCAGGGCTCTTTGGTTACTTTCAAAGCTTATACAGCTTAGCGAACAGAAATATATAAAAGATGTATGGGGAAGTGGTATAAGAGGAAATTTTAATGCTGGTAATATTTGGGAAGATATTTCTTTACTTAAATCGATGACTTGTTGACTCCTTGCATGATGAGAGTATTTAGGGCTTGACATTGACACCTGGATAAACCTAGAACCTTTCTTGAGATTTTGTGATGTGCCACCTCTTACCACCATGGTTGATACCTGTTTTGCAATGTTTGCCAACAATAAACTACAATGGAACTTTAAGCTCCCAGAAGGATCAGATTTTTCTTATGCTCCCTAGCCCATGCCAAAGAACAGTACCTAAAAGAAAAATATCTGTTTAGCCTTATTCCTCAATGCTATGGTTCACTAGGAAATGATTGGTCATGCCTCAAAGTAGCTCAAGAGGGCAATATTAGTTTTGCAGGTTAATTGAAACTCTTTGAAGGGTTATTATATATATAGAATATCTCTCATGGTGTAAATGGAAAATTCATTTTGCATAGGGTAAATCATACATAACCATAGATCAGTAAATGGAAAATTCATTTTGCATAGGGTAAATCATACATAACCATAGCTGATCTTTGAAGTTGTTCATACACTGTGATCTACTTGCAAAAGAAGTGGCTAGACATTGAAGGGAAATCTATTGTTGAATGTCAATGTTTCTTCTTCTTCTTCTTTATTTTATATTTGTGAGTGTTTGTGGGCTAGCTTACATGCACCTTGACTAATTTCCCTGGACAACCCGCTTGAATTTACAATATTTAAGTGTCAAAGAAACTCGTAGGAAATTAATTCCTAGGTAAGTAGCCAGCATGAGTTGAACTCATGATCTCTTAGTTAGTTATTGTCTACTTTTTTACCACTAGGCCAATCCATGATGGTTGTTAAATGTGCATGTTGGAGATGGAAATTGGCGGCTTGGTTGTAGATTAATGAAAGTTAGTTTACTTCACTACTTGGTTTCTCTAACTTTTACCTGCCTTCTCTTGGTGCTTTTCTTAGCACAGGTTTATGGCGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGATTGCTAAAAGAAGCCAAACGAAGCCAACTTTTCCTGGAATGTTGGATCATTTAGTAGCTGGAGGGCTGGTATGTAATATGTAATAGCTAACTGTTTTAAGTTTCCATACATGTGCTTCTGTCCCGTTAAAATATGAAAAGTAAAGACTTTTCTACTTTTTAAGATTGGATGTTATGGTGTGTTAGTTCCCCTAACCTTTATCTTTTCTTCTGCTTGGTATTTGTAGTTATATAAATACTTTCCAGTGGGTTAATATATCATTTAGCCTTCAAACTCTTTTTCAATTTTGGTTCATAATAATTTCCAAGTTGTAAGGGTTGATTTTACCCTTAAGATAGCAAAATATTTCAAAGTTCATATTATTTGTTGATATTGATAAAGAATGGTGACATGGAATTTTGAAATATTTTTTTGTATGCGCAAAAGTCTTTTGAATGTTAAGCATCCATCTTATCCTATTTACCTAAAAACTCCAACCTCCTTATTTACTATTTTAGTAAGGTAAGATAATATATATTTACCCTGTTTTATATAGTTTCATCGTCTTTATTGACTAAGGGCTTGATTGAACATTTTGATACCTATATAGATGTAAGCTTTAGAGGCTGAATTATATATTTGACCTTTCTGGTTAGTAATATTACATCCTGCTCCTGCTATAAAAGAATCTGTTTGTGTTTCAGTTTGCATCTCTAGTTTGATAAAGTTAGTATATACTATATACAGCAATTATTGAGCTTCACTTTATTTGACCGTCCATTTGGATATTAAAGTTTAAAAGTTATAAAAAACTAGACAAGGTTTTGATACTACAGTTTTTTTTTCTTGTTTGACGATTTACAACTCATCAATAAATTAATTGGTTAAACAGCAGTGTGTTGTATGGAGGGGTGTGAAATATGATGATGCTCATCGGAGCAGTTTGAAAGTCTGTATTTGAAAACGTAGTTATATATGCAAACCTTGATACTAATCAGAGGAAAAAAAGACAAATGTAAAATTTGAAATGTGATCTTGATCGCTGAATACTGCACTTATTGTGCCTTTGTAGCTATTCCCTTACATCTTGATTTTGACAGCCACAGGGCATCCCTTGTGGGGAGAATCTGATGAAAGAATGCCAGGAGGAAGCAGGCATACCGAGATCAATATCAAAAGAGTAATTTCCTATGAAGAATTTAATGACAATTGCACACGAATGTAACCTTCGTGTATTTCACAGTTGTGGTGGACCTAGTGGCTTCATATGATGCTTTTGATTTAGGGCCATACCAGTTGGTGCCATTTCATACACAGACATCAAAGGTTATGGTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTGTACCGGAGAATCAAGGTTAGCTAGACTGATAACTTTTTCTTTACATCGCAATTCAATATTTAACTTACAAAGTGTGGTACATTGCATTTGACTGGCTCCTAACTACTCTCTTTTTTTCATATCCCGTGTATATAAATAACTATGCATGCAATTTGTTTTTTTTTTTCATTACAAATTTTTGAATAGTTTGAAATCTCGTCACTAACTCGCTGACTGTACTTTTGTTAGATGGAGAGGTTGAAGGATTCATGTTGTTGCCTGTGACAAATGTTGCAAATGTGATCCGGAGGACACAGTTCTTCAAGCCTAATTGTTCTCTTGTTATTATCGATTTCCTGTTTCGACATGGGTACGATATACTATCTTCTCTGAATGTACCTTTGTTCCTCGACTATTATTTTATTTAGTTACAACTCTATTGTAGGTTTTGGTTATAAATATTCGTGGGTTCAACCAAATTTTCAGTAGTGCATTTTTTTCCCTAAACCACATAGAATGTAGTTGATTGGTGATCTAACAAGGGAGTTAAAATAGTTATATTCCATGTTTTCATAAGTTTTTAATACGTGGTTGTTCACTTGGTTTAGATGAGCAGATTTTTATTCTGAAAACAGTGAAAAGGCATAAATGTTTTGAAAAGATTCACTTCCTATACCCATATAATTTAAACACATTCTGATACTTTCATAAATAAGTCTATTAACAATAAAACTGTTAGTTTGTTATAACAGTTTGTTACAATCTGTTATGTAGTTTACCAGTTAATTAGTTAGATAGAAGTTACCAAGTTCCTCTATATAAAGGAACTTGGGTTCTGTAAATAAGAGAATAAATAAAATTCTTTTGTACAAACCTCTCCTTGTTATGGTACCAGAGCAATTTCTGCAAAGAGAGGATTAAGCCATACCCGAACGTCCTTATTACCCTGTGCAGTCTTCAACATGACAACACCTGAGAGTTCGACGTCTGGAAGCTCCAATGCCTCAACTCCGATTACTTCTTCTGAACTTGAGGCCCAACTGAATCCTTTCGTGCTGCACCATTCGATTATTCCGACCACCAACCTAGTCTCCACACCACTCACAGGATCAAACAATTATTCTTCATGGAACAGAGCTATGATGCTTGCACTCTCTGGAAAGAACAAGATGGTTCATAACCGGTGCAAACGAGAAACCTTCAGAAGGTAATCTTCTTTCAGCTTGAAAGTGTAACAATGACGTAACAGCTTCTTAGATCATTAACTCCATTTCAAAGGAAATTGCCACCAACCTAGTCTATAATGGAAGTGTAAAAGAAATATGGGATGAGTTAAAGAAGAGATACTGACAGTCTAATGGGCCTCACATATACCAGCTGCGAAAAGATTTGGTAACCACCACTCAAGGCAGTCTCTCAGTTGAAACATAAAATGCAAAGGTTACCACCATATGGCAAGAACTTGTTGAATATAGGCCTATGGATGAATGTACCTGTGAAGGGTCAAAGAAGATGATCGTTTTTTTAAATGCTGAGTTTGAGATGACTTTCCTTATGGGATTGAATGAGTCCTACTCCCAATTCCGAGCACAAATCTTGCTTATTGATCCCTTGCCACTAATAAATAAAGTATTCTCTCTTATCATCCAAGAAGAAAGACAGAGATCCATTGGATCTTCCCCTTCCATTGAAAGAATTACGTTGATGGCTAATACTAAGAATAGATTCTCTTTCGAAAGGTCCAAGAAGAAAAACACACAGCCGATATGTTCTAATTGTGGTTGCAGAGGCCACATTGCTGACAAGTGCTATAAGCTACATGGATACCCACCAGGACACAGATTGGCAAATAATAATTCAGTGCATCAACAAGGTAGAATAATTCTGTCCAAATCGAAAGTGAGAAGATAACAGAAGCTCCTAAAGGGAATCCGTCTGCATTCTTTGCAAGCCTTAACAATGATCAATATTCACAACTCTTAAATATGCTCCAAAGTTCCAAACACGCCTCAACACTTACCAAAATGGTGATAGTTCCAAAACAGAAACCACTCATATAGCAGGTACTTGTCTCTCTACCTCACTCACCAACTCTTCAGTTTGAATCATTGATTTTGGTGCTTCTTCACGTATATGCCATGACAAATCCATGTTCAATAACCTTCACAGCACTCAAAATATGTCAGTTATATTGCCCATTAAAACTCGCTTAATGGTTGAGTACACATAGGAGACATCTCCAGAGCAAAGCAAGTGATACTGAAAGATGTCCTTTATATTCCTGACTTCAAATACAATCTGCTATCAGTGAGTGTCCTTCTCAAGGATAAAAGATATTGTGTATCCTCTCTAACTCTGATTGTATTATTCAGAACAATTCACTTTTGAAAATGATTGGGAAGGTTGAACTAACCCGTGGACTCTACTTACTCAAAATAAAAGTAGAAAAGAGCAAAGACTACCCCATCCAACATACTGCACTGATCTGTAAAGCCTCAACATCCACATGGCACAACCACATGGGACATCCTTTTGTCAGTAGAATAAAAGAACTATAAAAATTGATAGAAATTTCTGATTCTTTAAACTGTAAAGAAGTCTGTCATATATGTTCCTTAGCTAAACAGAGGCGTCTTTCTTTTCTTGCTTTGAACAATATTGATGAACATACTTTTGATCTTGTGCGCTGTGATGTATGGGATCCATTTAAAACGCAAACACATGCTGGTCATTCTTATTTTGCCACCATTGTTGATGATAAGTCAAGTTATACATGGATTTATCTTTTGAGAAATAAAAATGAAATTCTATAAGTCATCCTTTGTTTCTTCAAGCTTATTGAGAACCAATTCTCAAAGATGATCAAAGCATTTCGTTCTGATAATGCTCTTGAGTTAAATTTCAGAGACTTCTTTGCTAAAACTGGAACCATCCACCAGTTCTCATGTGCCTATACTCTTCGACAAAACTTGGTTGTTGAAAGAAAACATCGGCACCTTCTCAATGTAGCAAGAGCCTTGATGTTCCAGTCCAAGGTTCCCCTTACCTTCTGGGGAGAATGTATCTTGAGTGCAGCCTGCTTGATCAACAGGACACCCATGGTCCTGCTTTCAAATAGCACCCCTTTCGCCACTTTGTTTAACAAAGATGCAGACTACAACATTATAAAAACTTTTGGTTGCCTCGCTTACGCCTCTACACCAACAAACAGATCCAAATTTGATCCAAGAGCACAAGCTTGTATCTTCATGGGATTCCCACCAGGCTACAAATTGTATGACATAACTAAGAAGAACTTTTTTTCCAGGGATGTCTTATTCTTGAAGAACTGTTTCCATTTCATTCTATCAAAGAAGATGACAACTCTCATTGAACAATTTTTCATACCATGCCCTTTATTTGATTGCTAGCAAAGGCATCATCACACAACACACTGCTGGAAATCCTATCACTCACACATCAGAAAATACTTATGAAGACAACCACGGTGATGATGTTCTAAATACCTACATTGAAACCTCATAAGAAACCAACAACCCTACCCAAGAAACCATACCCATGGCACCAAGAAGGCCATCACGACCACATTATCCACCTTCCTACCTAAAGACTTCCATTGCAACCTCACTTCCCAAAGGAAATCAGCCTTTTCCCTCACCAAATACCTCTCATATACTGCATATACCCAGAACCACAAAAATTACCTACCAAATGTTGCCTCCACTTATGAACCTTCCTACTATCACCAAGCTGTAAAACACTGAATTGGAGAAAAGCTATGGCAGAAGAAATGGACATAAATAATGGAAGAGAAATTGTCACTGTCATCTAGCCCTTGCTACATTCTACAATTGGTCCCTTACTCAAATGGACATAAATAATGCCTTCTTAAATGGAGATTTGTTTGAAGAAGTGCACATGTCCTTACCATTGAGCTATCAAACCTCACAGGGGCTAGGTAAAGGAGAAAAGCTAGCCTGCAAACTTATCAACTCCATATATGGCCTTAAGCAAGTTTCAAGACAGTGGTTCCTAAAGTTTGCAGCAACTCTATCCTCACATGGTTTTCACCAATCAAAGTTTGATTAGTCTCTGTTTACCTGAGGTAATGGAAGCAACTTTGTAGCGTTGTTAGTATATGTAGATTACAAATTACTAACTGGACCATCTCCCCAAATCAACTCAGTGAAAGACATCCTCAAGGGACACTTCAAACTCAATGAAGATTTGGGACAAGCAAAATATTTTCTGGGCTTAGAGTTATCACGGTCCCAACAGGGACTCATGCTCTCCCAAAGAAAATACTGCCTTCAGATACTTGAAGACATTGGTTTTCTTGATGCCAAACCAGCTAAAGCACCCATGGATCCTTATTTGAAACTATCAAAAAATGAAGGAAAACCCCTTGATGAAGAAGACATCACCTGCTATAGAAGACTACTTGGAAGGCTAATATATCTTCAGATATCCAGTCCAGACATTTGCTTTGCTGTTCACTGCCACAACTAGTTCATCCAAAGTCCTACAAAGATCCACTTAGATGCTGCTCATCACTTATTAAAATACCTAAAAAGTTCTCCGGTGACAAGGTATTCTAATAAGACCTATCACTTCCTTTCACCTAAAGGCCTTTGTGGATGTTGATTGGGGATCAAGGGGGATCATGTCTTGACACTAGAAGATCTATAACTGGGTTATGCATCTTCGTAGGAGATTCCATAATCTCTTGGAAATCCAAAAAGCAAGCAACTGTCTCCTGATCTTCGGCAGAAGCCGAGTACAGGGCCTTAGCATCAGTGATATGGATCACACAGCTTATTACTGACCTTCATGTGAAAGTCTTAATGCCAACAACAGTGTTATGTGACAATCAAGCAACAACTGCAATTGCTTCTAATCCAACGTTTCATGAAAGAACGAAGCATATAGAAATTGATTGCCACTTCGTCCGAGACAAGATAGTTGATGGATTTCTTAAAGTCCTACCTGTCAAATTCAGCCTACAACTAGCAGATATGTTCACTAAAGCACTACCTGCATCTACCTTATCTAGACTAATATCCAAGCTGGGAATCATTGACATTCATCGTCCAACTTGAGGGGGAGTATTAACAATGAAACTGTCAGTTTGTTACAAACTGTTATGTAGTTTACCAGTTAATTAGTGAGATAGAAGTTACCAAGTTCCTCTATATAAAGAACTTGGGTTCTGTAATTAAATTATAAGAGAATAAATGAAATTCTTTTGTACAAGCCTCTCCTTCTTGTTAAAGTCCATCAAATAGCAATTAATTAATGAATTCATTTGATTCAGTAAATTTGAAGAAAAGGAATTAAACTTGCATTAGATACCAAATTAACTTTTATAAATCCATTATTTCTTCCATGTTTTAAATCTTTCTACATGTGTGTGTGTAACCAACCCAGTATATGCTAATTACCACTCCTCAGGCTGTTCTTATATGATCCACAATATTTTGTATTAATGCATTTAAAAACTTGCAGATACATTAAACCCGAAAGTTCGGGGTACTTGGAGCTACTGCAGAGTTTGAGAGGTGGGACATGCTTCTGAATAAAACAATTTGCCGATGCATTTTGATGAGAGAAATCAGGTCAATCTTATAAAACATTAAATCTGGATGTTTTATACTATATTGTTTATGGTTTTCCAAGAACTTTCTTGCTCATTAGATGTATTTGTGAAGCAAACAGACTGCCCTAACCTTGCTTGGCTGTAGAGAATAAAATAAGAAGACTAAATTTTGGTACATCTATTAAATGAAAACACCTCAACAAAATTACACCTCAAATCCCATTACACAAAACAATCTTAATTTCATCAACTTCCCCCAGTAACTATAAACACACTACATTCCACACTGACTTTTACATTATTCACTTCCTTCCTAACCCAAGATTTCACTAAGATCTATTACATTTCAAAAGCCCAAGACTTCACCAAGAACTTGAAGCAACTCATGATGTGCAGTCAAGTGAGGGAAGTGTCCATTAGTGTTGATAACTCTCACTGTGCAACTTCCTTTGATTTTCTTCTGCATAAAAGTGGGAACTGAGGCAGGGACGACAATGTCGTTTTTTGTTTGCAGGATGATGCATGGAATGTCGACTTTTTCGAGAATCTCTCTCTCATCTACATTGAACACAGTCCTGGCCAAGGGTGTTGCAACTTCAGGCCTCATCTCTTTCAAGCATTTTTGAAACCTACTCAGTGACTGAGGATCGGATTCGTCCACAACAAGACAAGGAAAGTTTGTGGACCAATTTTCATAGTTGGATTCAATATTTGCTACAATTTGATCGATGTCTGATTTGTTGAAACCACCTTCATAGTCTTCTGTATTTATATACCTAACAACACAATTGTCTGTGTTAGCAATGATACATCATTAATGAATACTTCAATACTCATTCACATGGAGTTGAGATTTTGTTAGAAGATTTGATGAGTTAAAGTTAATATTAATATAAATC CTATGTTAATGTTAATGCCAATCACTTTCGCCCCTCTAGTTTATGACTTTATAGTCTCTGGTAATTCCGGCGACCTTTGCTTCAATCCATTTCCATGGCCTCCAAATCTCTCGCTCACAGCCTTCGTAATTTCTCAACCGTCTCTTCCTTTTGCAACGCTTCAACAATTTCCCGGACCACGTATACAACAATCTCTACATTTCGCCCAAAAGTACACCGCTCGATTTCGGTCGCCTCTCGTCCTGTATCGGTCACCGCCGGCAGTCTCACTTGGGACGACGTTGTCCATGTTTCTTTACCAGAAAGCTTTCAGGATGATCCTGCGGATTTGACGGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGCGGATCAGATACGCAATCCGAATTTTTTCCGTTTGTCATCGATGGTCAAATTGTAGGCTACATGCACCACGGTTTCGTTAAACACCTGCAGCAGTATCCGAAGGTGTTTACCCGAGACGATTCTGTTAAATTTGGGGCTTTCTTAACCTTGCATGAATCCTTGAAGACACCTGAAGATAGGACGCGTGCAGTTGGAGATGTAGTTAAATGCTTGGGTGAAGAAGTCATTCCAGGTACACGGAATGAGCTTTTCCCTGTTACTTCGTCATTTGGTGCGCTGAGCTTTTTTTCACTCGAACGTGCTGCAGCCCCTTATTTTGGAATAAAGGTTTATGGCGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGATTGCTAAAAGAAGCCAAACGAAGCCAACTTTTCCTGGAATGTTGGATCATTTAGTAGCTGGAGGGCTGCCACAGGGCATCCCTTGTGGGGAGAATCTGATGAAAGAATGCCAGGAGGAAGCAGGCATACCGAGATCAATATCAAAAGAGGCCATACCAGTTGGTGCCATTTCATACACAGACATCAAAGGTTATGGTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTGTACCGGAGAATCAAGATGGAGAGGTTGAAGGATTCATGTTGTTGCCTGTGACAAATGTTGCAAATGTGATCCGGAGGACACAGTTCTTCAAGCCTAATTGTTCTCTTGTTATTATCGATTTCCTGTTTCGACATGGATACATTAAACCCGAAAGTTCGGGGTACTTGGAGCTACTGCAGAGTTTGAGAGGTGGGACATGCTTCTGAATAAAACAATTTGCCGATGCATTTTGATGAGAGAAATCAGGATGATGCATGGAATGTCGACTTTTTCGAGAATCTCTCTCTCATCTACATTGAACACAGTCCTGGCCAAGGGTGTTGCAACTTCAGGCCTCATCTCTTTCAAGCATTTTTGAAACCTACTCAGTGACTGAGGATCGGATTCGTCCACAACAAGACAAGGAAAGTTTGTGGACCAATTTTCATAGTTGGATTCAATATTTGCTACAATTTGATCGATGTCTGATTTGTTGAAACCACCTTCATAGTCTTCTGTATTTATATACCTAACAACACAATTGTCTGTGTTAGCAATGATACATCATTAATGAATACTTCAATACTCATTCACATGGAGTTGAGATTTTGTTAGAAGATTTGATGAGTTAAAGTTAATATTAATATAAATC ATGGCCTCCAAATCTCTCGCTCACAGCCTTCGTAATTTCTCAACCGTCTCTTCCTTTTGCAACGCTTCAACAATTTCCCGGACCACGTATACAACAATCTCTACATTTCGCCCAAAAGTACACCGCTCGATTTCGGTCGCCTCTCGTCCTGTATCGGTCACCGCCGGCAGTCTCACTTGGGACGACGTTGTCCATGTTTCTTTACCAGAAAGCTTTCAGGATGATCCTGCGGATTTGACGGGCTATTTCGAGAAGGTCAAGCTCTGCAATCGCGGATCAGATACGCAATCCGAATTTTTTCCGTTTGTCATCGATGGTCAAATTGTAGGCTACATGCACCACGGTTTCGTTAAACACCTGCAGCAGTATCCGAAGGTGTTTACCCGAGACGATTCTGTTAAATTTGGGGCTTTCTTAACCTTGCATGAATCCTTGAAGACACCTGAAGATAGGACGCGTGCAGTTGGAGATGTAGTTAAATGCTTGGGTGAAGAAGTCATTCCAGGTACACGGAATGAGCTTTTCCCTGTTACTTCGTCATTTGGTGCGCTGAGCTTTTTTTCACTCGAACGTGCTGCAGCCCCTTATTTTGGAATAAAGGTTTATGGCGTTCATATGAATGGTTATGTTGAGAAGGAGGGAAAGAAGTTTTTGTGGATTGCTAAAAGAAGCCAAACGAAGCCAACTTTTCCTGGAATGTTGGATCATTTAGTAGCTGGAGGGCTGCCACAGGGCATCCCTTGTGGGGAGAATCTGATGAAAGAATGCCAGGAGGAAGCAGGCATACCGAGATCAATATCAAAAGAGGCCATACCAGTTGGTGCCATTTCATACACAGACATCAAAGGTTATGGTTACAAGAGAGATGTTCAATTCTGTTACGATTTAAAGCTTCCTGAAAGCTTTGTACCGGAGAATCAAGATGGAGAGGTTGAAGGATTCATGTTGTTGCCTGTGACAAATGTTGCAAATGTGATCCGGAGGACACAGTTCTTCAAGCCTAATTGTTCTCTTGTTATTATCGATTTCCTGTTTCGACATGGATACATTAAACCCGAAAGTTCGGGGTACTTGGAGCTACTGCAGAGTTTGAGAGGTGGGACATGCTTCTGA MASKSLAHSLRNFSTVSSFCNASTISRTTYTTISTFRPKVHRSISVASRPVSVTAGSLTWDDVVHVSLPESFQDDPADLTGYFEKVKLCNRGSDTQSEFFPFVIDGQIVGYMHHGFVKHLQQYPKVFTRDDSVKFGAFLTLHESLKTPEDRTRAVGDVVKCLGEEVIPGTRNELFPVTSSFGALSFFSLERAAAPYFGIKVYGVHMNGYVEKEGKKFLWIAKRSQTKPTFPGMLDHLVAGGLPQGIPCGENLMKECQEEAGIPRSISKEAIPVGAISYTDIKGYGYKRDVQFCYDLKLPESFVPENQDGEVEGFMLLPVTNVANVIRRTQFFKPNCSLVIIDFLFRHGYIKPESSGYLELLQSLRGGTCF* Homology
BLAST of CsGy1G019300 vs. ExPASy Swiss-Prot
Match: Q8VXZ0 (Nudix hydrolase 20, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=NUDT20 PE=2 SV=1) HSP 1 Score: 415.2 bits (1066), Expect = 7.6e-115 Identity = 203/334 (60.78%), Postives = 252/334 (75.45%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy Swiss-Prot
Match: P0C026 (Nudix hydrolase 24, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=NUDT24 PE=2 SV=1) HSP 1 Score: 391.7 bits (1005), Expect = 9.0e-108 Identity = 197/357 (55.18%), Postives = 252/357 (70.59%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy Swiss-Prot
Match: P47173 (Uncharacterized protein YJR142W OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=YJR142W PE=1 SV=1) HSP 1 Score: 152.9 bits (385), Expect = 7.0e-36 Identity = 89/212 (41.98%), Postives = 126/212 (59.43%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy Swiss-Prot
Match: P41888 (Thiamine pyrophosphokinase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=tnr3 PE=4 SV=1) HSP 1 Score: 134.0 bits (336), Expect = 3.4e-30 Identity = 89/277 (32.13%), Postives = 139/277 (50.18%), Query Frame = 0
BLAST of CsGy1G019300 vs. NCBI nr
Match: XP_004148712.1 (nudix hydrolase 20, chloroplastic isoform X3 [Cucumis sativus] >KGN65374.1 hypothetical protein Csa_020063 [Cucumis sativus]) HSP 1 Score: 751 bits (1939), Expect = 9.24e-274 Identity = 369/370 (99.73%), Postives = 370/370 (100.00%), Query Frame = 0
BLAST of CsGy1G019300 vs. NCBI nr
Match: XP_008463362.1 (PREDICTED: nudix hydrolase 20, chloroplastic-like isoform X1 [Cucumis melo]) HSP 1 Score: 707 bits (1824), Expect = 3.37e-256 Identity = 349/372 (93.82%), Postives = 356/372 (95.70%), Query Frame = 0
BLAST of CsGy1G019300 vs. NCBI nr
Match: XP_031737771.1 (nudix hydrolase 20, chloroplastic isoform X5 [Cucumis sativus]) HSP 1 Score: 704 bits (1816), Expect = 2.84e-255 Identity = 347/348 (99.71%), Postives = 348/348 (100.00%), Query Frame = 0
BLAST of CsGy1G019300 vs. NCBI nr
Match: XP_031737763.1 (nudix hydrolase 20, chloroplastic isoform X1 [Cucumis sativus]) HSP 1 Score: 707 bits (1824), Expect = 1.50e-254 Identity = 369/474 (77.85%), Postives = 370/474 (78.06%), Query Frame = 0
BLAST of CsGy1G019300 vs. NCBI nr
Match: KAA0046622.1 (nudix hydrolase 20 [Cucumis melo var. makuwa]) HSP 1 Score: 694 bits (1790), Expect = 1.21e-250 Identity = 349/395 (88.35%), Postives = 356/395 (90.13%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy TrEMBL
Match: A0A0A0LWL2 (Nudix hydrolase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G386580 PE=4 SV=1) HSP 1 Score: 751 bits (1939), Expect = 4.47e-274 Identity = 369/370 (99.73%), Postives = 370/370 (100.00%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy TrEMBL
Match: A0A1S3CJ09 (nudix hydrolase 20, chloroplastic-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501537 PE=4 SV=1) HSP 1 Score: 707 bits (1824), Expect = 1.63e-256 Identity = 349/372 (93.82%), Postives = 356/372 (95.70%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy TrEMBL
Match: A0A5A7TT66 (Nudix hydrolase 20 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold114G001740 PE=4 SV=1) HSP 1 Score: 694 bits (1790), Expect = 5.87e-251 Identity = 349/395 (88.35%), Postives = 356/395 (90.13%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy TrEMBL
Match: A0A1S3CJI7 (nudix hydrolase 20, chloroplastic-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103501537 PE=4 SV=1) HSP 1 Score: 645 bits (1663), Expect = 2.04e-232 Identity = 324/372 (87.10%), Postives = 330/372 (88.71%), Query Frame = 0
BLAST of CsGy1G019300 vs. ExPASy TrEMBL
Match: A0A6J1HA39 (LOW QUALITY PROTEIN: nudix hydrolase 20, chloroplastic-like OS=Cucurbita moschata OX=3662 GN=LOC111461857 PE=4 SV=1) HSP 1 Score: 635 bits (1637), Expect = 7.36e-228 Identity = 316/373 (84.72%), Postives = 333/373 (89.28%), Query Frame = 0
BLAST of CsGy1G019300 vs. TAIR 10
Match: AT5G19460.1 (nudix hydrolase homolog 20 ) HSP 1 Score: 415.2 bits (1066), Expect = 5.4e-116 Identity = 203/334 (60.78%), Postives = 252/334 (75.45%), Query Frame = 0
BLAST of CsGy1G019300 vs. TAIR 10
Match: AT5G19470.1 (nudix hydrolase homolog 24 ) HSP 1 Score: 391.7 bits (1005), Expect = 6.4e-109 Identity = 197/357 (55.18%), Postives = 252/357 (70.59%), Query Frame = 0
BLAST of CsGy1G019300 vs. TAIR 10
Match: AT5G19470.2 (nudix hydrolase homolog 24 ) HSP 1 Score: 377.9 bits (969), Expect = 9.6e-105 Identity = 193/357 (54.06%), Postives = 248/357 (69.47%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (Gy14) v2.1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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