Asekova Sovetgul, Oh Eunyoung, Kulkarni Krishnanand P, Siddique Muhammad Irfan, Lee Myoung Hee, Kim Jung In, Lee Jeong-Dong, Kim Minsu, Oh Ki-Won, Ha Tae-Joung, Kim Sung-Up, Cho Kwang-Soo
Department of Southern Area Crop Science, National Institute of Crop Science, RDA, Miryang-si, South Korea.
School of Applied Biosciences, Kyungpook National University, Daegu, South Korea.
Front Plant Sci. 2021 Feb 16;12:604709. doi: 10.3389/fpls.2021.604709. eCollection 2021.
Phytophthora blight (PB) caused by is a highly destructive disease in sesame ( L.). In this study, we used linkage mapping and genome-wide association study (GWAS) to identify quantitative trait loci (QTL) and candidate genes associated with PB resistance. The QTL mapping in 90 RILs of the Goenbaek × Osan cross using genotyping-by-sequencing detected significant QTLs for PB resistance on chromosome 10, explaining 12.79%-13.34% of phenotypic variation. Association of this locus to PB resistance was also revealed through bulked segregant analysis in second RIL population (Goenbaek × Milsung cross) comprising 188 RILs. The GWAS of 87 sesame accessions evaluated against three isolates identified 29 SNPs on chromosome 10 significantly associated with PB resistance. These SNPs were located within a 0.79 Mb region, which co-located with the QTL intervals identified in RIL populations, and hence scanned for identifying candidate genes. This region contained several defense-related candidate genes, five of which were selected for quantitative expression analysis. One of these genes, was found to show significantly higher expression in the resistant parent compared to that in the susceptible parents and selected RILs. Paired-end sequencing of the gene in parental cultivars revealed two synonymous SNPs between Goenbaek and Osan in exon 2 of coding DNA sequence. These results suggested as one of the candidate gene conferring PB resistance in sesame. The findings from this study will be useful in the marker-assisted selection as well as the functional analysis of PB resistance candidate gene(s) in sesame.
由疫霉菌引起的芝麻疫病(PB)是芝麻(Sesamum indicum L.)中一种极具破坏性的病害。在本研究中,我们利用连锁图谱和全基因组关联研究(GWAS)来鉴定与芝麻疫病抗性相关的数量性状位点(QTL)和候选基因。通过对Goenbaek×Osan杂交组合的90个重组自交系(RIL)进行简化基因组测序进行QTL定位,检测到10号染色体上存在与芝麻疫病抗性相关的显著QTL,可解释表型变异的12.79%-13.34%。在由188个RIL组成的第二个RIL群体(Goenbaek×Milsung杂交组合)中,通过混合分组分析法也揭示了该位点与芝麻疫病抗性的关联。对87份芝麻种质针对三种疫霉菌株进行评估的GWAS分析,在10号染色体上鉴定出29个与芝麻疫病抗性显著相关的单核苷酸多态性(SNP)。这些SNP位于一个0.79 Mb的区域内,该区域与在RIL群体中鉴定出的QTL区间共定位,因此对其进行扫描以鉴定候选基因。该区域包含几个与防御相关的候选基因,从中选择了5个进行定量表达分析。其中一个基因,被发现在抗性亲本中表达显著高于感病亲本和所选的RIL。对亲本品种中该基因进行双末端测序,发现在编码DNA序列的外显子2中,Goenbaek和Osan之间存在两个同义SNP。这些结果表明该基因是芝麻中赋予疫病抗性的候选基因之一。本研究结果将有助于芝麻疫病抗性候选基因的标记辅助选择以及功能分析。