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首页> 外文期刊>Scientific reports. >Identifying candidate genes for Phytophthora capsici resistance in pepper (Capsicum annuum) via genotyping-by-sequencing-based QTL mapping and genome-wide association study
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Identifying candidate genes for Phytophthora capsici resistance in pepper (Capsicum annuum) via genotyping-by-sequencing-based QTL mapping and genome-wide association study

机译:通过基于序列序列的QTL测绘和基因组 - 范围协会研究鉴定辣椒(Capsicum Annuum)植物(辣椒瘤)中植物基因的候选基因

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Phytophthora capsici (Leon.) is a globally prevalent, devastating oomycete pathogen that causes root rot in pepper (Capsicum annuum). Several studies have identified quantitative trait loci (QTL) underlying resistance to P. capsici root rot (PcRR). However, breeding for pepper cultivars resistant to PcRR remains challenging due to the complexity of PcRR resistance. Here, we combined traditional QTL mapping with GWAS to broaden our understanding of PcRR resistance in pepper. Three major-effect loci (5.1, 5.2, and 5.3) conferring broad-spectrum resistance to three isolates of P. capsici were mapped to pepper chromosome P5. In addition, QTLs with epistatic interactions and minor effects specific to isolate and environment were detected on other chromosomes. GWAS detected 117 significant SNPs across the genome associated with PcRR resistance, including SNPs on chromosomes P5, P7, and P11 that colocalized with the QTLs identified here and in previous studies. Clusters of candidate nucleotide-binding site-leucine-rich repeat (NBS-LRR) and receptor-like kinase (RLK) genes were predicted within the QTL and GWAS regions; such genes often function in disease resistance. These candidate genes lay the foundation for the molecular dissection of PcRR resistance. SNP markers associated with QTLs for PcRR resistance will be useful for marker-assisted breeding and genomic selection in pepper breeding.
机译:Phytophthora Capsici(莱昂)是一种全球普遍的毁灭性的oomycete病原体,导致辣椒(辣椒汤)的根腐腐烂。几项研究已经鉴定了对P. Capsici Root Root(PCRR)的抗性的定量性状基因座(QTL)。然而,由于PCRR抗性的复杂性,对PCRR的耐抗PCRR的品种育种仍然挑战。在这里,我们将传统的QTL测绘与GWA相结合,以扩大我们对胡椒中PCRR抗性的理解。将广谱耐药性的三个主要效果基因座(5.1,5.2和5.3)映射到辣椒染色体P5胶囊胶囊的三个分离物。此外,在其他染色体上检测到具有特异性孤立和环境特异性的QTL。 Gwas在与PCRR抗性相关的基因组上检测到117个重要的SNP,包括染色体P5,P7和P11上的SNP,与此处和先前的研究中鉴定的QTL分开。在QTL和GWAS区域内预测候选核苷酸结合位点 - 富含核苷酸结合位点 - 富氨酸的重复(NBS-LRR)和受体样激酶(RLK)基因;这种基因经常在抗病抗性中起作用。这些候选基因为PCRR抗性的分子解剖奠定了基础。与QTL用于PCRR抗性相关的SNP标记对于辣椒育种中的标记辅助育种和基因组选择是有用的。

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