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Whole-Genome Resequencing of a Cucumber Chromosome Segment Substitution Line and Its Recurrent Parent to Identify Candidate Genes Governing Powdery Mildew Resistance

机译:全基因组测序的黄瓜染色体区段替代系及其轮回亲本以鉴定控制白粉病抗性的候选基因

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摘要

Cucumber is an economically important vegetable crop worldwide. Powdery mildew (PM) is one of the most severe diseases that can affect cucumber crops. There have been several research efforts to isolate PM resistance genes for breeding PM-resistant cucumber. In the present study, we used a chromosome segment substitution line, SSL508-28, which carried PM resistance genes from the donor parent, JIN5-508, through twelve generations of backcrossing with a PM-susceptible inbred line, D8. We performed whole-genome resequencing of SSL508-28 and D8 to identify single nucleotide polymorphisms (SNPs), and insertions and deletions (indels). When compared against the reference genome of the inbred cucumber line 9930, a total of 468,616 SNPs and 67,259 indels were identified in SSL508-28, and 537,352 SNPs and 91,698 indels were identified in D8. Of these, 3,014 non-synonymous SNPs and 226 frameshift indels in SSL508-28, and 3,104 non-synonymous SNPs and 251 frameshift indels in D8, were identified. Bioinformatics analysis of these variations revealed a total of 15,682 SNPs and 6,262 indels between SSL508-28 and D8, among which 120 non-synonymous SNPs and 30 frameshift indels in 94 genes were detected between SSL508-28 and D8. Finally, out of these 94 genes, five resistance genes with nucleotide-binding sites and leucine-rich repeat domains were selected for qRT-PCR analysis. This revealed an upregulation of two transcripts, Csa2M435460.1 and Csa5M579560.1, in SSL508-28. Furthermore, the results of qRT-PCR analysis of these two genes in ten PM resistant and ten PM susceptible cucumber lines showed that when exposed to PM, Csa2M435460.1 and Csa5M579560.1 exhibited a higher expression level of resistant lines than susceptible lines. This indicates that Csa2M435460.1 and Csa5M579560.1 are candidate genes for PM resistance in cucumber. In addition, the non-synonymous SNPs in Csa2M435460.1 and Csa5M579560.1, identified in SSL508-28 and D8, might be the key to high PM-resistance in SSL508-28.
机译:黄瓜是全世界经济上重要的蔬菜作物。白粉病(PM)是可影响黄瓜作物的最严重的疾病之一。已经进行了一些研究工作来分离PM抗性基因以育种PM抗性黄瓜。在本研究中,我们使用了染色体区段替代系SSL508-28,该系携带来自供体亲本JIN5-508的PM抗性基因,通过与PM易感近交系D8的十二代回交。我们对SSL508-28和D8进行了全基因组重测序,以鉴定单核苷酸多态性(SNP),插入和缺失(indels)。当与自交黄瓜系9930的参考基因组进行比较时,在SSL508-28中鉴定出总共468,616个SNP和67,259个插入缺失,在D8中鉴定出了537,352个SNP和91,698个插入缺失。其中,确定了SSL508-28中的3,014个非同义SNP和226个移码插入缺失,以及D8中的3,104个非同义SNP和251个移码插入缺失。对这些变异的生物信息学分析显示,在SSL508-28和D8之间共有15682个SNP和6262个indel,其中在SSL508-28和D8之间检测到94个基因中的120个非同义SNP和30个移码indel。最后,从这94个基因中,选择5个具有核苷酸结合位点和富含亮氨酸的重复域的抗性基因进行qRT-PCR分析。这揭示了SSL508-28中两个转录本Csa2M435460.1和Csa5M579560.1的上调。此外,在10个PM抗性和10个PM易感黄瓜系中这两个基因的qRT-PCR分析结果表明,当暴露于PM时,Csa2M435460.1和Csa5M579560.1表现出比易感系更高的抗性表达水平。这表明Csa2M435460.1和Csa5M579560.1是黄瓜中PM抗性的候选基因。此外,SSL508-28和D8中标识的Csa2M435460.1和Csa5M579560.1中的非同义SNP可能是SSL508-28中高PM抵抗力的关键。

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