Cucsat.G11478 (gene) 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.AAGGAGCTTATTTAAATTGTGAAAATTTGCCACTTCTATAAATAGTACACCCAACCCTCAAACAAAACGCATTTAATAAGATTTTGCTTATTATCGTCTCTTTCATTGGAGTGCGTTTCCCTATGAAATAGAATCCGGCCACGCGAGTTTTGTACTCTGCTACTGCATTTTCCGACCATTCATCGAATCACTTGAATAAGAAAATCTCTCTGAAAGTAGAGGAGGGGGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGGAGAGGAGGGAGAGAGAGACTCATCGGAATCCCTCATTTGGGGCTCAATCGCTACGCTTATTTCTTTCTGAAGTGTTTTTGTTTGCGCCACTCACCGACTGGTTCGTTCTCGTTTGTTTTTTTTATAATTGTTTTCTGTCTTTTGTCTCTCTATCTCTCTCTCTCTCTCTCTTAGCGTGTGAGCTGTTTTTTAGCCCTGTTCTTCTTGGCCTGGGAAACAGAGTCGTTTTCTCTTTTTTATTAGGGCAATTTTTAGAGCTTAGTATAGGTAACAAACGATATTAGAAACCCTAGTTTTCAATAGGTTGTTAGAATTTACGTTTTTAGTGGGTTAGTTTATTTTTCAACTCATGGCATTTGATCAGAACGCAATTCCTACAGGCTTGCGGCCTTTAAATGTAGCTAGAACTTTAGTTGAAGATTCTCATCTAACGCTGGTTGCTAATACTGGTCAAAACCCCCAAAGGGTTACTCCTTTGCATCCCTACGACATTGCCAATGCAGACAATTTGCCTCTTCCTTGTAAGGGGAATGTCTCTGATATGGGACTTGCTGAGCTAGGATATCGAAATTTTGTTGCTGGTGTTACTGCATGGTGCCCTCGAATGCCTCCTCCCCTTGCGCATACTGCAACGGTTCCTGCCGTAGGACTTGGTTATGTCATGAGCAATCGTGGTGGTGCCAATGCCATTGAGCTTGCTAGTAGTTGCATGACAGTTGGGCCTAATCATAATACAAATTTAGGTCATCGAGTTGGGGGAGGTGGACTGGAATTTGTATGCAGTAATACCTCAATGGGATCTGGGGATAGTACCAATTTATGCAATAAGGTGACTGGTAATGATGATCAGATTAGTAGTGATAGTACTTCTGGATTTAGCTCCCACTTGAGGAGTTCGGTTGGTGGAAATAGTGGAAATGTGGTTGATCAAGTAAGTGAGGAGGGTGGAGATGGTTCCATTTCAAAAAAGAAAGTTAAGTTTATGTGCAGTTTCGGCGGCAAGATCTTTCCTAGACCGAGTGATGGTATGTTGAGATACATTGGAGGCCAAACAAGGATTATAAGTGTTAGAAGAGATGTGACTTTCAATGAGCTTAATCGAAAGATGGCTGATACATGCGGGCAGGCTGTGGTTATAAAGTATCAGCTCCCTGATGAGGATCTTGATGCTTTAATATCTGTTTCATGCCCTGATGATCTTGATAATATGATGGATGAGTATGAGAAGCTGGTTGAGAGGTCTTCAGATGGATCGACTAAATTGAGGATGTTTTTGTTCTCTGCTTCAGAACTTGACTCTTCAGGTATGGTGCAATTTGGCGATTTGCATGATAGTGGGCAGAGATATGTTGAAACGGTGAATGAGATATTTGATGGTGTTGGTGGCCGTATTACTAAGAAAGAGAGTTGTGCAAGTGCTACCTCAACTCAGAATTCTGACTTAAGTGGGACTGAGGCAATGGATATCCCAAATAATGATCTAGGGGTTGTGAGCGGACCTCCATCCACAACATTGCCCTTACCTGGAGGAAATTTAGGTACTGCAGTTGCTATTGACCCTGGATTGGTGAAGGTGGATCCCGTCTCTGCAGTTTTGTTAGATGCCTCTGCTGTTCCATCAAGCATTCCTTTTGTTAACTCTGTTCCTCCTGGAGCTTCTTTCCAGCCTGAGACAGAGTTAGGAAGGTCTGTGCCTGTTACTCTAATGCAGCAGCAACCGGGTGTTGACTTTTCTCCACCCGTGTCTCATTTACAGCCTACTGGTGATCCTCGACAAGCAGCATGTGTGAACTTTATACAACTTCGTCCACAACTAGGCTTTCCAAATTCCCATCATATAGGAGCATCTGGATCTGTGTTTATACAACAACCAAATACTCTTGGAATTACTCCTCATCAGTTTGTCCCTGCAGTTCACATGACAATGGCTCCTTCTTCTCGACCCAGTATTATGCCAAATGCCTATCAATCGATGGTTCAATATCCACAATCCCAGACAGAATGTTTTTCCAACCCAAGCACATTTGGTCCAAGGGTTGTCCAGCTATCAGCAGAACAAGGCTACAACTCAGCTCAGGTTCCAGCTCCTCCAATATCAGTAGGGGTTGGATTTGGTTTACATCAGGTACCTTGGCCTGATCAGACAGTTATATCTGATGAATTGGTATCTCATCATCAGACAACTTTTTCTGAGAAGATCGAGAGGTTGGATGACAGTTACTTCTGCCAGAAAGCAATGCCACATGCTCATTCCAATTCTTCATTGCAGAATCAAAGTGAAAATTTAGCAGACCTTGTAACTGATTCAAAATTTTCGTATTACAGTCATCACCTTGAAGATCAATTAACAGCCCATCCAATGAAAAATGTCACAGAAACTGTAGCTCTAGGGCAATCAACAATTGAACATGGTGTTGGAGTTCAAACCAGAATCTTTAATCCAATGGATCCAGAAGTTGAAAACCTTTCTGTGGACGTTCTTAGCTTCCCACAACATTTGGAGGACCGATATGAGAATGAAAACACTCTAAAAGATCAATGTAATCATGGTTGTGGTAGGATCTCAGCTCCGCAAGGTGCTCTTGGGAGGCAAGGTGATATTCAGTCACCCCATGTTGCTATTGTAGCCCAGAATCCTCAGTCTGGTGAAGTTGATACTCTCCAGCGCCATCATGTAGCTGTAGAGAATCAGTTCCATCCAAATTTAGTCGTGGACAGACACAATATTTGCTTTGGCGGTGCTCCTTTTCTTGCTTCAGAGTACAACACTCATGAAAATCCGGAAGAATACTCTAATAGTCATCATGGCATTATTTCAAACCAAAATGCTACCCACACTGGTATTCAGTATGACCATCTCAGACCAATTGTTGGAAATTTGGAAAGTCTAAGTATATGCCCAACTGATATTTGTGCTAATTTGGATCACTGCAAATCACCCATTGAAAGAACTAGGAAGGAGGACAATTTTGGAACCTGTTCACAACCAGTCTCACAGAGGGAAATTCTACTAGATAACAACTTTGTAAAGCCAATAGCGTTTCTTAACCCAAATCACATAGAATCAACTACCTTCACTTGCTCTTCATTAGAGGTTCCCTACTTGATGAATGAACGACCTGCTGAGTCTAGTGAAGTGGCACAATCTTCTGTCGGGGGCTTTCCTGGAACATTATCACAAGCAGAAAATGGGATACAATATTTAGAATCCAATGAAGTCTGTCATAGCAGAAATCTCCACCTATTTGACATGAAGACTGAACAAAGAAATAATGAAGTCTCAGTTTCTGCTGAATGGAAGGACCCTTCTCTATTTGAATCCGGGATGGTATCTGGTGATGTTGAATCTGTGTCTTTGCCTATCAGGACTGGAAATGTACAGGACACTGCGAATTCACTTTTCAGCAATCAGGATCCTTGGAACTTGCAGCACGACGCTCATCTTTTGCCTCCTAGACCAAATAAAATCCAAGCAAGGAATGAAGCCCTTGCCACCAGGGAACCCTTGACAGAGACTCCTTTCAGAAACGTTGGTGAACTAAATGTGGAAGCGTTACTGGATGATGGATTATGTCACCCATTGGTTAATTCAAACAAGGGTACCAATTCGAGACTGTCCAGTCTGACAAAACTAACTTTGTAGTTCTTAGTCGATTTGTATCAATCACCTTTCTATTATCATGTTTATGGGGGTGATTAATCTCATATAATTTCTTGTAGGCTCTGCAGAGGAACAAATTAGGAAAGATCTCCAAGCTGTTGCTGAGGGTGTAGCTGCTTCTGTTCTTCAGTCGGCTCAATCCTCCAACTCCGAATTGAATGAAAGAAGCAATTCAATTTGTGAGACTAGCACCGAAAGAGATGTTCAAAATAATGATGTGGGTTTGTAACCTAATCTCATATTGAATTTGGCTATTCAAGGGGAATATGTCATGTCTTTTACCATAGTTATTCACTTTTTCCTGTTTGCCCAGGATGGCAGGACAAGACATTCAGATAAAGCGAATCTTGGTTTTCCAATGTCAGAAGGCCTTGGCCGCTTGCAGGTAATAATTAGTTTTCCATTTTCAACCTTAAGGATGCACTTTATGTTTAAACTATCCATCCTAACATCCTTTTTTTTTTTCTCTTTTTCTTCTTTCCCTTAGGTAATAAAAAATAGCGATCTTGAAGAATTAAGAGAATTGGGGTCTGGCACATTTGGCACTGTTTATCATGGAAAATGGAGGGGAACTGATGTTGCTATCAAACGAGTTAATGATAGGTGTTTTGCTGGGAAGCCTTCTGAACAAGATCGCATGGTTGTTCTTTTTAAGTAATTGGCTTTTCTTTTCTTTTGTTATTCATGTGTTTTTCTTTTTGTTCCTTGACTCAAGTCCTTTTTATTGGTTTATGTTGTACCAGAGAGAAGATTTTTGGAATGAAGCAATTAAGCTTGCTGATTTGCACCACCCAAATGTGGTTGCTTTTTATGGTGTCGTGCTTGATGGCCCTGGGGGATCTGTGGCCACAGTAACAGAATATATGGTCAATGGTTCGCTTAGAAATGCTTTGTTGAAGAATGAAAAGTAACAATTGTTCTCATTTTTCATATGTTTAATTTAATTTGTTAGTAGTTGCGGTATAATATATCTTCACCCTTAGATTAAGCCATAAAATACAATTGATACAGGAGTCTTGACAAGCGGAAGCGCCTGTTGATTGCAATGGATACAGCTTTTGGAATGGAATACCTGCACAGAAAGAATATTGTGCACTTCGATTTGAAAAGTGATAATCTACTGGTCAATCTTCGAGATCCTCATCGCCCAATATGCAAGGTTTGTTGTTGCTGATAATAGCAGAATCATCATTGTAGTACATTACATCTAGTTAAACTCTTGATTTGATTTTTAAACTTTGATTTTTAAACAAAACAGGAGGATATAAAGGGGTACTGTCATTTATCATGATCATTCGTGCCCAATAGACATTTTGCAAATATTTAATACTATAATTTCACTTAATACACGCACATCAGTGAGATTAAGAGGCAGTTTTATTACGTGTTTTAGTAAAGCACGATGAGGACAAAGGGAGTTGTATTCATTTACCAAATAATTTATCATATCTTGGATTGGATACTTATTGCACTTTTGTGAAAATACCAAAGATGGTTATTTAGGATCTGCCAGGCAAATTTTTTCTCAGCCCATCAGGTAGTTTGAGATGTGAAAGGTATCATGAATAAACGATATTGATCTTATTAACAAGAATGGGTTGACAACCCTAAGTACATTTACTCAGAGCACAATCACAATCAATTGTCTCCGCCTCAACCTCTCACTCTCGAGAAGATTCTGCTAAGTAACTAACTACCCTTCCCTCTCTCAAACTTTCTATTTATAACCTCCCTCATAGTGGTCCCCACCCTTACTTGTTTCTCTCTTTCTTGCATTTACCTCTCCTATGATATTGATGTATAACTGGGGCCTAACAAGATTCTTTGTTGTAATTGTACTAAATAATGCTTCTTAAAACATAAAAATCACCTGCCTTCTCCTTAAACATGAAGTTAGTAAAAGGTTAGAATTAATACATGTAATTAAGGGAGTTTTAGGGACTCAAAAGATGGCAGAAATCTAGAGTCATCTGTTCCCAAAATCCTACTAGAAAACTGGAGAAGAGGAGGAAGAACTTTCTATTTCCAAAATCTTTATTGAGGACTGTAGAAGTTTGGCTTATGAACAGGAGATTGAAGGAGTTTATTCCCCCCTCCCCCCAAGATGTATACAAGAGATTCTGTATATATATATACACCCTAAAAGGGTCTATATTGGTGTCATATATTGTCCATGTCTTTTTTTATTAGAAGATTATTGTTGGGAGGTATGGCAATAGGTGAGTCATTGGAGATTTACCATCAATGGGATTGAAGCCAATGCTACTGAATATGAGGCAAGGGCAAAGCTAGAAATAGAGGGATATGACATTGGAGCATTTGATTGTGGGGGAGAGCAGAAGTAGTGAACCTAATAGGGGAGGTGCATTGTGCACGCAAGGAAATTCTAATGTGATTGTAAAAGACGAAAAAAAAAAGGAAGACTCAAGATCAGACTTGGCAGATGCCCCTTGTCGCTTTCCTGCTAGGTCCTAGACTAATGAGAAAAATCAAGGGAGAAGGCCTACAGTCGGAAAGGCGAATGAATACTAGTTGTGGTTTACGGCTGGTCCGATCCGATCCAACGAACTGGACACCCAGGGATGCTGGACGGTAAGTATGAAGTTGTCCTTCTAGACTAGAAGCATGAAGGTAGCAATACCGCTCTCTGCCGTGGTGAAGCTAGCACGCATCTCCGGTACCGCTTCTCCCTTGAAATGCATATTGAATGGATTTCAATTGGAAACATTAGAAAATAGGAATTTGCAGCAGAAGATTGAAAAAACATGAATCAGGATGCTTAGAGATGGAGAAATTTGAACCCATACAGATGCAAGGAGGGTTTAATAGACTATTTTATCACACTAGCAAGGGAAAGAGAGTTCAGGAAAATCTTCAGAGTTTAGTCTCAAATTCAAAACAATCGAGTGTGGTTGGTGGATTATGGGCACGGTTCTGGAATTTGTAGAGGGTGGACTAATACTAGGAGTGCAGAGGAAGGTCCATTATGAGAAGATCAAACAAATGCCATTCTACTGACTTTGTGATTTAAACTGTTTGTCATTGCATATATCTGAACAGGGATTTGTTGTCATTTCACCCCCATGCTGATTCATTATGAGCAATTTTGTTTCTCATTCCAAGAAAATTGTTAGTTTGAGTTTCTAAACATAAAAATGTTTGGAAGAGCTTTGTTTATGCTGCTTTTTTGCCTTTAGGTTGGTGACTTGGGCCTGTCAAAGGTGAAACGTCAGACATTGATATCAGGTGGTGTGCGAGGAACACTTCCATGGATGGCACCCGAGCTTTTGAATGGTAGCAGCAATATGGTATCTGAGAAGGTATACTAATACGTTTTACTCCTTGCAGTAGTTTGCCCTTGTATTACATGTGAAATTAAAATAGATGATATGTTACTTGTGTTTGTAGGTCGATGTGTTTTCCTTTGGTATTGTCTTATGGGAGCTCCTCACTGGAGAAGAACCTTACGCAAATTTGCATTATGGGGTTATTATAGGTAAACCTTTGGTATATGTATCCCATCTTATGCAATTATTCTGTAGGCAATTTATTTTATTATAGACAAAATTTGCTTAAGTTGAGCAAGAAGTTTGAGTTTAGATCTTCTAGTCCCACATCTGGTGAACTAAAATTTTCTCAACTTAAAATTCAGGTGGCATAGTAAGCAACACATTGCGACCGGAAGTACCAGAGTCCTGTGATCCAGAATGGAGGTCACTGATGGAGAGATGCTGGTCATCAGAGCCATTAGAGAGGCCAAGTTTCACTGAAATTGCAAATGAACTCCGCTCCATGGCTGCAAAAGTTCCTTCAAAAGTACCCAACTAACTGCAGTAGCTTTCTTCACTTAACTTCATCTTCAAGTTCTGGAGTAAATTTAGGAATATTGCCTCTCACATGGATCTTTCCTCTTCTAGTTGGTCTATGTTTCAGAATGGGAAAATACAAGTACGTTCTCAAGTTTTGGAATACGGTGGGTATTAGATTTGTTTTTTCAGTTCTAACAAAGAGAGAGATTAGAGTAGTTGGCAATGCATGCATAACCCCTTTTAATTTCAATTTGCAGCTATTTAGATTATGATTATTTGTTAGTATTATTTTGTTTTCTAAATATGGTACTAATTTGTTTGACACTCTTTCTTCGTTGTCAATATTTTCAATGTTATAGACAAACTTAGCAGACAAATTTGTCTCTAAAAAGGGCTGCCACTTTTGGAAGTTCATCTAGTGGAGTTTTGGACAAAAAGAAATTGTTGCCACCATTTTTCTTTTGATAAAGATTGTGAATATGAACTTCTTCCTGCCTGTTATGAACAA ATGGCATTTGATCAGAACGCAATTCCTACAGGCTTGCGGCCTTTAAATGTAGCTAGAACTTTAGTTGAAGATTCTCATCTAACGCTGGTTGCTAATACTGGTCAAAACCCCCAAAGGGTTACTCCTTTGCATCCCTACGACATTGCCAATGCAGACAATTTGCCTCTTCCTTGTAAGGGGAATGTCTCTGATATGGGACTTGCTGAGCTAGGATATCGAAATTTTGTTGCTGGTGTTACTGCATGGTGCCCTCGAATGCCTCCTCCCCTTGCGCATACTGCAACGGTTCCTGCCGTAGGACTTGGTTATGTCATGAGCAATCGTGGTGGTGCCAATGCCATTGAGCTTGCTAGTAGTTGCATGACAGTTGGGCCTAATCATAATACAAATTTAGGTCATCGAGTTGGGGGAGGTGGACTGGAATTTGTATGCAGTAATACCTCAATGGGATCTGGGGATAGTACCAATTTATGCAATAAGGTGACTGGTAATGATGATCAGATTAGTAGTGATAGTACTTCTGGATTTAGCTCCCACTTGAGGAGTTCGGTTGGTGGAAATAGTGGAAATGTGGTTGATCAAGTAAGTGAGGAGGGTGGAGATGGTTCCATTTCAAAAAAGAAAGTTAAGTTTATGTGCAGTTTCGGCGGCAAGATCTTTCCTAGACCGAGTGATGGTATGTTGAGATACATTGGAGGCCAAACAAGGATTATAAGTGTTAGAAGAGATGTGACTTTCAATGAGCTTAATCGAAAGATGGCTGATACATGCGGGCAGGCTGTGGTTATAAAGTATCAGCTCCCTGATGAGGATCTTGATGCTTTAATATCTGTTTCATGCCCTGATGATCTTGATAATATGATGGATGAGTATGAGAAGCTGGTTGAGAGGTCTTCAGATGGATCGACTAAATTGAGGATGTTTTTGTTCTCTGCTTCAGAACTTGACTCTTCAGGTATGGTGCAATTTGGCGATTTGCATGATAGTGGGCAGAGATATGTTGAAACGGTGAATGAGATATTTGATGGTGTTGGTGGCCGTATTACTAAGAAAGAGAGTTGTGCAAGTGCTACCTCAACTCAGAATTCTGACTTAAGTGGGACTGAGGCAATGGATATCCCAAATAATGATCTAGGGGTTGTGAGCGGACCTCCATCCACAACATTGCCCTTACCTGGAGGAAATTTAGGTACTGCAGTTGCTATTGACCCTGGATTGGTGAAGGTGGATCCCGTCTCTGCAGTTTTGTTAGATGCCTCTGCTGTTCCATCAAGCATTCCTTTTGTTAACTCTGTTCCTCCTGGAGCTTCTTTCCAGCCTGAGACAGAGTTAGGAAGGTCTGTGCCTGTTACTCTAATGCAGCAGCAACCGGGTGTTGACTTTTCTCCACCCGTGTCTCATTTACAGCCTACTGGTGATCCTCGACAAGCAGCATGTGTGAACTTTATACAACTTCGTCCACAACTAGGCTTTCCAAATTCCCATCATATAGGAGCATCTGGATCTGTGTTTATACAACAACCAAATACTCTTGGAATTACTCCTCATCAGTTTGTCCCTGCAGTTCACATGACAATGGCTCCTTCTTCTCGACCCAGTATTATGCCAAATGCCTATCAATCGATGGTTCAATATCCACAATCCCAGACAGAATGTTTTTCCAACCCAAGCACATTTGGTCCAAGGGTTGTCCAGCTATCAGCAGAACAAGGCTACAACTCAGCTCAGGTTCCAGCTCCTCCAATATCAGTAGGGGTTGGATTTGGTTTACATCAGGTACCTTGGCCTGATCAGACAGTTATATCTGATGAATTGGTATCTCATCATCAGACAACTTTTTCTGAGAAGATCGAGAGGTTGGATGACAGTTACTTCTGCCAGAAAGCAATGCCACATGCTCATTCCAATTCTTCATTGCAGAATCAAAGTGAAAATTTAGCAGACCTTGTAACTGATTCAAAATTTTCGTATTACAGTCATCACCTTGAAGATCAATTAACAGCCCATCCAATGAAAAATGTCACAGAAACTGTAGCTCTAGGGCAATCAACAATTGAACATGGTGTTGGAGTTCAAACCAGAATCTTTAATCCAATGGATCCAGAAGTTGAAAACCTTTCTGTGGACGTTCTTAGCTTCCCACAACATTTGGAGGACCGATATGAGAATGAAAACACTCTAAAAGATCAATGTAATCATGGTTGTGGTAGGATCTCAGCTCCGCAAGGTGCTCTTGGGAGGCAAGGTGATATTCAGTCACCCCATGTTGCTATTGTAGCCCAGAATCCTCAGTCTGGTGAAGTTGATACTCTCCAGCGCCATCATGTAGCTGTAGAGAATCAGTTCCATCCAAATTTAGTCGTGGACAGACACAATATTTGCTTTGGCGGTGCTCCTTTTCTTGCTTCAGAGTACAACACTCATGAAAATCCGGAAGAATACTCTAATAGTCATCATGGCATTATTTCAAACCAAAATGCTACCCACACTGGTATTCAGTATGACCATCTCAGACCAATTGTTGGAAATTTGGAAAGTCTAAGTATATGCCCAACTGATATTTGTGCTAATTTGGATCACTGCAAATCACCCATTGAAAGAACTAGGAAGGAGGACAATTTTGGAACCTGTTCACAACCAGTCTCACAGAGGGAAATTCTACTAGATAACAACTTTGTAAAGCCAATAGCGTTTCTTAACCCAAATCACATAGAATCAACTACCTTCACTTGCTCTTCATTAGAGGTTCCCTACTTGATGAATGAACGACCTGCTGAGTCTAGTGAAGTGGCACAATCTTCTGTCGGGGGCTTTCCTGGAACATTATCACAAGCAGAAAATGGGATACAATATTTAGAATCCAATGAAGTCTGTCATAGCAGAAATCTCCACCTATTTGACATGAAGACTGAACAAAGAAATAATGAAGTCTCAGTTTCTGCTGAATGGAAGGACCCTTCTCTATTTGAATCCGGGATGGTATCTGGTGATGTTGAATCTGTGTCTTTGCCTATCAGGACTGGAAATGTACAGGACACTGCGAATTCACTTTTCAGCAATCAGGATCCTTGGAACTTGCAGCACGACGCTCATCTTTTGCCTCCTAGACCAAATAAAATCCAAGCAAGGAATGAAGCCCTTGCCACCAGGGAACCCTTGACAGAGACTCCTTTCAGAAACGTTGGTGAACTAAATGTGGAAGCGTTACTGGATGATGGATTATGTCACCCATTGGTTAATTCAAACAAGGGCTCTGCAGAGGAACAAATTAGGAAAGATCTCCAAGCTGTTGCTGAGGGTGTAGCTGCTTCTGTTCTTCAGTCGGCTCAATCCTCCAACTCCGAATTGAATGAAAGAAGCAATTCAATTTGTGAGACTAGCACCGAAAGAGATGTTCAAAATAATGATGATGGCAGGACAAGACATTCAGATAAAGCGAATCTTGGTTTTCCAATGTCAGAAGGCCTTGGCCGCTTGCAGGTAATAAAAAATAGCGATCTTGAAGAATTAAGAGAATTGGGGTCTGGCACATTTGGCACTGTTTATCATGGAAAATGGAGGGGAACTGATGTTGCTATCAAACGAGTTAATGATAGGTGTTTTGCTGGGAAGCCTTCTGAACAAGATCGCATGAGAGAAGATTTTTGGAATGAAGCAATTAAGCTTGCTGATTTGCACCACCCAAATGTGGTTGCTTTTTATGGTGTCGTGCTTGATGGCCCTGGGGGATCTGTGGCCACAGTAACAGAATATATGGTCAATGGTTCGCTTAGAAATGCTTTGTTGAAGAATGAAAAGAGTCTTGACAAGCGGAAGCGCCTGTTGATTGCAATGGATACAGCTTTTGGAATGGAATACCTGCACAGAAAGAATATTGTGCACTTCGATTTGAAAAGTGATAATCTACTGGTCAATCTTCGAGATCCTCATCGCCCAATATGCAAGGTTGGTGACTTGGGCCTGTCAAAGGTGAAACGTCAGACATTGATATCAGGTGGTGTGCGAGGAACACTTCCATGGATGGCACCCGAGCTTTTGAATGGTAGCAGCAATATGGTATCTGAGAAGGTCGATGTGTTTTCCTTTGGTATTGTCTTATGGGAGCTCCTCACTGGAGAAGAACCTTACGCAAATTTGCATTATGGGGTTATTATAGGTGGCATAGTAAGCAACACATTGCGACCGGAAGTACCAGAGTCCTGTGATCCAGAATGGAGGTCACTGATGGAGAGATGCTGGTCATCAGAGCCATTAGAGAGGCCAAGTTTCACTGAAATTGCAAATGAACTCCGCTCCATGGCTGCAAAAGTTCCTTCAAAAGTACCCAACTAA MAFDQNAIPTGLRPLNVARTLVEDSHLTLVANTGQNPQRVTPLHPYDIANADNLPLPCKGNVSDMGLAELGYRNFVAGVTAWCPRMPPPLAHTATVPAVGLGYVMSNRGGANAIELASSCMTVGPNHNTNLGHRVGGGGLEFVCSNTSMGSGDSTNLCNKVTGNDDQISSDSTSGFSSHLRSSVGGNSGNVVDQVSEEGGDGSISKKKVKFMCSFGGKIFPRPSDGMLRYIGGQTRIISVRRDVTFNELNRKMADTCGQAVVIKYQLPDEDLDALISVSCPDDLDNMMDEYEKLVERSSDGSTKLRMFLFSASELDSSGMVQFGDLHDSGQRYVETVNEIFDGVGGRITKKESCASATSTQNSDLSGTEAMDIPNNDLGVVSGPPSTTLPLPGGNLGTAVAIDPGLVKVDPVSAVLLDASAVPSSIPFVNSVPPGASFQPETELGRSVPVTLMQQQPGVDFSPPVSHLQPTGDPRQAACVNFIQLRPQLGFPNSHHIGASGSVFIQQPNTLGITPHQFVPAVHMTMAPSSRPSIMPNAYQSMVQYPQSQTECFSNPSTFGPRVVQLSAEQGYNSAQVPAPPISVGVGFGLHQVPWPDQTVISDELVSHHQTTFSEKIERLDDSYFCQKAMPHAHSNSSLQNQSENLADLVTDSKFSYYSHHLEDQLTAHPMKNVTETVALGQSTIEHGVGVQTRIFNPMDPEVENLSVDVLSFPQHLEDRYENENTLKDQCNHGCGRISAPQGALGRQGDIQSPHVAIVAQNPQSGEVDTLQRHHVAVENQFHPNLVVDRHNICFGGAPFLASEYNTHENPEEYSNSHHGIISNQNATHTGIQYDHLRPIVGNLESLSICPTDICANLDHCKSPIERTRKEDNFGTCSQPVSQREILLDNNFVKPIAFLNPNHIESTTFTCSSLEVPYLMNERPAESSEVAQSSVGGFPGTLSQAENGIQYLESNEVCHSRNLHLFDMKTEQRNNEVSVSAEWKDPSLFESGMVSGDVESVSLPIRTGNVQDTANSLFSNQDPWNLQHDAHLLPPRPNKIQARNEALATREPLTETPFRNVGELNVEALLDDGLCHPLVNSNKGSAEEQIRKDLQAVAEGVAASVLQSAQSSNSELNERSNSICETSTERDVQNNDDGRTRHSDKANLGFPMSEGLGRLQVIKNSDLEELRELGSGTFGTVYHGKWRGTDVAIKRVNDRCFAGKPSEQDRMREDFWNEAIKLADLHHPNVVAFYGVVLDGPGGSVATVTEYMVNGSLRNALLKNEKSLDKRKRLLIAMDTAFGMEYLHRKNIVHFDLKSDNLLVNLRDPHRPICKVGDLGLSKVKRQTLISGGVRGTLPWMAPELLNGSSNMVSEKVDVFSFGIVLWELLTGEEPYANLHYGVIIGGIVSNTLRPEVPESCDPEWRSLMERCWSSEPLERPSFTEIANELRSMAAKVPSKVPN Homology
BLAST of Cucsat.G11478 vs. ExPASy Swiss-Prot
Match: Q12852 (Mitogen-activated protein kinase kinase kinase 12 OS=Homo sapiens OX=9606 GN=MAP3K12 PE=1 SV=2) HSP 1 Score: 95.5 bits (236), Expect = 3.7e-19 Identity = 48/99 (48.48%), Postives = 66/99 (66.67%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy Swiss-Prot
Match: Q60700 (Mitogen-activated protein kinase kinase kinase 12 OS=Mus musculus OX=10090 GN=Map3k12 PE=1 SV=1) HSP 1 Score: 95.5 bits (236), Expect = 3.7e-19 Identity = 48/99 (48.48%), Postives = 66/99 (66.67%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy Swiss-Prot
Match: Q63796 (Mitogen-activated protein kinase kinase kinase 12 OS=Rattus norvegicus OX=10116 GN=Map3k12 PE=1 SV=1) HSP 1 Score: 93.6 bits (231), Expect = 1.4e-18 Identity = 47/99 (47.47%), Postives = 65/99 (65.66%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy Swiss-Prot
Match: Q55A09 (Probable serine/threonine-protein kinase DDB_G0272254 OS=Dictyostelium discoideum OX=44689 GN=DDB_G0272254 PE=3 SV=1) HSP 1 Score: 93.2 bits (230), Expect = 1.8e-18 Identity = 45/92 (48.91%), Postives = 63/92 (68.48%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy Swiss-Prot
Match: A7J1T0 (Mitogen-activated protein kinase kinase kinase 13-B OS=Xenopus laevis OX=8355 GN=map3k13-b PE=2 SV=1) HSP 1 Score: 92.0 bits (227), Expect = 4.1e-18 Identity = 46/97 (47.42%), Postives = 64/97 (65.98%), Query Frame = 0
BLAST of Cucsat.G11478 vs. NCBI nr
Match: XP_031745513.1 (uncharacterized protein LOC101203826 isoform X2 [Cucumis sativus]) HSP 1 Score: 214 bits (545), Expect = 6.12e-62 Identity = 103/103 (100.00%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. NCBI nr
Match: XP_031745510.1 (uncharacterized protein LOC101203826 isoform X1 [Cucumis sativus] >KAE8653036.1 hypothetical protein Csa_019585 [Cucumis sativus]) HSP 1 Score: 214 bits (545), Expect = 6.15e-62 Identity = 103/103 (100.00%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. NCBI nr
Match: KAF8400567.1 (hypothetical protein HHK36_013866 [Tetracentron sinense]) HSP 1 Score: 191 bits (486), Expect = 6.35e-61 Identity = 90/100 (90.00%), Postives = 95/100 (95.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. NCBI nr
Match: TYK03642.1 (PB1 domain-containing protein/Pkinase_Tyr domain-containing protein [Cucumis melo var. makuwa]) HSP 1 Score: 211 bits (537), Expect = 7.35e-61 Identity = 101/103 (98.06%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. NCBI nr
Match: KAA0050038.1 (hypothetical protein E6C27_scaffold675G00130 [Cucumis melo var. makuwa]) HSP 1 Score: 211 bits (537), Expect = 7.35e-61 Identity = 101/103 (98.06%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy TrEMBL
Match: A0A0A0LW52 (Protein kinase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G265380 PE=4 SV=1) HSP 1 Score: 214 bits (545), Expect = 8.23e-70 Identity = 103/103 (100.00%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy TrEMBL
Match: A0A5A7U442 (Protein kinase domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold675G00130 PE=4 SV=1) HSP 1 Score: 211 bits (537), Expect = 3.56e-61 Identity = 101/103 (98.06%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy TrEMBL
Match: A0A5D3BXS4 (PB1 domain-containing protein/Pkinase_Tyr domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1369G00710 PE=4 SV=1) HSP 1 Score: 211 bits (537), Expect = 3.56e-61 Identity = 101/103 (98.06%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy TrEMBL
Match: A0A1S3B937 (uncharacterized protein LOC103487384 OS=Cucumis melo OX=3656 GN=LOC103487384 PE=4 SV=1) HSP 1 Score: 211 bits (537), Expect = 3.56e-61 Identity = 101/103 (98.06%), Postives = 103/103 (100.00%), Query Frame = 0
BLAST of Cucsat.G11478 vs. ExPASy TrEMBL
Match: A0A6J1JH23 (uncharacterized protein LOC111485047 OS=Cucurbita maxima OX=3661 GN=LOC111485047 PE=4 SV=1) HSP 1 Score: 208 bits (529), Expect = 4.26e-60 Identity = 100/103 (97.09%), Postives = 101/103 (98.06%), 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
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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