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Uncovering the genetic architecture of Colletotrichum lindemuthianum resistance through QTL mapping and epistatic interaction analysis in common bean

机译:通过QTL定位和上位互作分析揭示豆科炭疽病抗性的遗传结构

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摘要

Colletotrichum lindemuthianum is a hemibiotrophic fungal pathogen that causes anthracnose disease in common bean. Despite the genetics of anthracnose resistance has been studied for a long time, few quantitative trait loci (QTLs) studies have been conducted on this species. The present work examines the genetic basis of quantitative resistance to races 23 and 1545 of C. lindemuthianum in different organs (stem, leaf and petiole). A population of 185 recombinant inbred lines (RIL) derived from the cross PMB0225 × PHA1037 was evaluated for anthracnose resistance under natural and artificial photoperiod growth conditions. Using multi-environment QTL mapping approach, 10 and 16 main effect QTLs were identified for resistance to anthracnose races 23 and 1545, respectively. The homologous genomic regions corresponding to 17 of the 26 main effect QTLs detected were positive for the presence of resistance-associated gene cluster encoding nucleotide-binding and leucine-rich repeat (NL) proteins. Among them, it is worth noting that the main effect QTLs detected on linkage group 05 for resistance to race 1545 in stem, petiole and leaf were located within a 1.2 Mb region. The NL gene Phvul.005G117900 is located in this region, which can be considered an important candidate gene for the non-organ-specific QTL identified here. Furthermore, a total of 39 epistatic QTL (E-QTLs) (21 for resistance to race 23 and 18 for resistance to race 1545) involved in 20 epistatic interactions (eleven and nine interactions for resistance to races 23 and 1545, respectively) were identified. None of the main and epistatic QTLs detected displayed significant environment interaction effects. The present research provides essential information not only for the better understanding of the plant-pathogen interaction but also for the application of genomic assisted breeding for anthracnose resistance improvement in common bean through application of marker-assisted selection (MAS).
机译:Colletotrichum lindemuthianum是一种半生营养真菌病原体,可引起普通豆类炭疽病。尽管对炭疽病抗性的遗传学已进行了很长时间的研究,但对该物种进行的数量性状基因座(QTL)研究却很少。本工作研究了对不同器官(茎,叶和叶柄)中的C. lindemuthianum的23和1545小种定量抗性的遗传基础。在自然和人工光周期生长条件下,评估了185个来源于杂交PMB0225×PHA1037的重组自交系(RIL)的炭疽病抗性。使用多环境QTL作图方法,分别鉴定出10个和16个主要效应QTL对炭疽病23和1545的抗性。与检测到的26个主要效应QTL中的17个相对应的同源基因组区域在编码与核苷酸结合和富含亮氨酸的重复(NL)蛋白的抗性相关基因簇中呈阳性。其中,值得注意的是,在连锁群05上检测到的QTL对茎,叶柄和叶片中的1545种小种的抗性的主要效应位于1.2 Mb区域内。 NL基因Phvul.005G117900位于此区域,可以将其视为此处鉴定的非器官特异性QTL的重要候选基因。此外,共鉴定了涉及20个上位相互作用(分别为23和1545的抗性的11和9个相互作用)涉及的39个上位QTL(E-QTL)(21对23的抗性和18对1545的抗性)。 。检测到的主要和上位QTL均未显示出显着的环境相互作用效应。本研究不仅为更好地理解植物与病原体的相互作用提供了重要信息,而且为基因组辅助育种通过应用标记辅助选择(MAS)技术提高普通豆炭疽病抗性提供了重要信息。

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