首页> 外文期刊>Frontiers in Plant Science >Genome-wide Association Study Identifies New Loci for Resistance to Leptosphaeria maculans in Canola
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Genome-wide Association Study Identifies New Loci for Resistance to Leptosphaeria maculans in Canola

机译:全基因组关联研究确定了新的对菜籽油中 Leptosphaeria maculans 的抗性位点

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Key message “We identified both quantitative and quantitative resistance loci to Leptosphaeria maculans , a fungal pathogen, causing blackleg disease in canola. Several genome-wide significant associations were detected at known and new loci for blackleg resistance. We further validated statistically significant associations in four genetic mapping populations, demonstrating that GWAS marker loci are indeed associated with resistance to L. maculans. One of the novel loci identified for the first time, Rlm12 , conveys adult plant resistance in canola.” Blackleg, caused by Leptosphaeria maculans , is a significant disease which affects the sustainable production of canola ( Brassica napus ). This study reports a genome-wide association study based on 18,804 polymorphic SNPs to identify loci associated with qualitative and quantitative resistance to L. maculans . Genomic regions delimited with 694 significant SNP markers, that are associated with resistance evaluated using 12 single spore isolates and pathotypes from four canola stubble were identified. Several significant associations were detected at known disease resistance loci including in the vicinity of recently cloned Rlm2 / LepR3 genes, and at new loci on chromosomes A01/C01, A02/C02, A03/C03, A05/C05, A06, A08, and A09. In addition, we validated statistically significant associations on A01, A07, and A10 in four genetic mapping populations, demonstrating that GWAS marker loci are indeed associated with resistance to L. maculans . One of the novel loci identified for the first time, Rlm12 , conveys adult plant resistance and mapped within 13.2 kb from Arabidopsis R gene of TIR-NBS class. We showed that resistance loci are located in the vicinity of R genes of Arabidopsis thaliana and Brassica napus on the sequenced genome of B. napus cv. Darmor- bzh . Significantly associated SNP markers provide a valuable tool to enrich germplasm for favorable alleles in order to improve the level of resistance to L. maculans in canola.
机译:关键信息“我们确定了对引起油菜中黑脚病的真菌病原体黄斑狼疮的定量和定量抗性基因座。在已知和新位点的黑腿病抗性中检测到数个全基因组显着关联。我们进一步验证了四个遗传作图种群中的统计学显着性关联,表明GWAS标记基因座确实与对黄斑狼疮菌的抗性相关。首次鉴定出的新基因座之一是Rlm12,可在油菜中表达成年植物的抗性。”黑斑病是由斑节杆菌引起的,它是一种严重的疾病,影响油菜的可持续生产(甘蓝型油菜)。这项研究报告了基于18,804个多态性SNP的全基因组关联研究,以鉴定与定性和定量抗黄斑狼疮相关的基因座。用694个重要SNP标记界定的基因组区域与使用12种单孢子分离物评估的抗性相关,并鉴定了来自四个油菜籽茬的致病型。在已知的疾病抗性基因座(包括最近克隆的Rlm2 / LepR3基因附近)和染色体A01 / C01,A02 / C02,A03 / C03,A05 / C05,A06,A08和A09的新基因座上检测到几个重要的关联。此外,我们验证了四个遗传作图种群中A01,A07和A10在统计学上的显着相关性,表明GWAS标记基因座确实与抗黄斑狼疮相关。首次鉴定出的一个新基因座Rlm12可以传递成年植物抗性,并定位在距TIR-NBS类拟南芥R基因13.2 kb之内。我们显示抗性基因座位于拟南芥cv的测序基因组上的拟南芥和甘蓝型油菜的R基因附近。达莫布日。显着相关的SNP标记提供了有价值的工具,可以丰富有利于等位基因的种质,从而提高双低油菜籽中对斑节对虾的抗性水平。

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