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春小麦品种“Linkert”中Ug99条锈病抗性的遗传学

The genetics of Ug99 stem rust resistance in spring wheat variety 'Linkert'.

作者信息

Edae Erena A, Kosgey Zennah, Bajgain Prabin, Ndung'u Kimani C, Gemechu Ashenafi, Bhavani Sridhar, Anderson James A, Rouse Matthew N

机构信息

Department of Plant Pathology, University of Minnesota, Saint Paul, MN, United States.

Kenya Agricultural and Livestock Research Organization (KALRO), Food Crops Research Centre, Njoro, Kenya.

出版信息

Front Plant Sci. 2024 Mar 7;15:1343148. doi: 10.3389/fpls.2024.1343148. eCollection 2024.

Abstract

Wheat stem rust caused by f. sp. threatens wheat production worldwide. The objective of this study was to characterize wheat stem rust resistance in 'Linkert', a variety with adult plant resistance effective to emerging wheat stem rust pathogen strain Ug99. Two doubled haploid (DH) populations and one recombinant inbred line (RIL) population were developed with 'Linkert' as a stem rust resistant parent. Hard red spring wheat variety 'Forefront' and genetic stock 'LMPG' were used as stem rust susceptible parents of the DH populations. Breeding line 'MN07098-6' was used as a susceptible parent of the RIL population. Both DH and RIL populations with their parents were evaluated both at the seedling stage and in the field against races. Genotyping data of the DH populations were generated using the wheat iSelect 90k SNP assay. The RIL population was genotyped by genotyping-by-sequencing. We found QTL consistently associated with wheat stem rust resistance on chromosome 2BS for the Linkert/Forefront DH population and the Linkert/MN07098-6 RIL population both in Ethiopia and Kenya. Additional reliable QTL were detected on chromosomes 5BL (125.91 cM) and 4AL () for the Linkert/LMPG population in Ethiopia and Kenya. Different QTL identified in the populations reflect the importance of examining the genetics of resistance in populations derived from adapted germplasm (Forefront and MN07098-6) in addition to a genetic stock (LMPG). The associated markers in this study could be used to track and select for the identified QTL in wheat breeding programs.

摘要

由禾柄锈菌小麦专化型引起的小麦秆锈病威胁着全球小麦生产。本研究的目的是对“Linkert”中的小麦秆锈病抗性进行特征分析,“Linkert”是一个对新出现的小麦秆锈病病原菌小种Ug99具有成株抗性的品种。以“Linkert”作为秆锈病抗性亲本,构建了两个双单倍体(DH)群体和一个重组自交系(RIL)群体。硬红春小麦品种“Forefront”和遗传材料“LMPG”被用作DH群体的秆锈病感病亲本。育种系“MN07098 - 6”被用作RIL群体的感病亲本。DH群体和RIL群体及其亲本在苗期和田间针对不同小种进行了评估。使用小麦iSelect 90k SNP分析方法生成了DH群体的基因分型数据。RIL群体通过简化基因组测序进行基因分型。我们发现,在埃塞俄比亚和肯尼亚,Linkert/Forefront DH群体以及Linkert/MN07098 - 6 RIL群体中, consistently与小麦秆锈病抗性相关的QTL位于2BS染色体上。在埃塞俄比亚和肯尼亚,Linkert/LMPG群体在5BL染色体(125.91 cM)和4AL染色体()上检测到了其他可靠的QTL。在这些群体中鉴定出的不同QTL反映了除遗传材料(LMPG)外,研究源自适应性种质(Forefront和MN07098 - 6)群体中抗性遗传的重要性。本研究中的相关标记可用于小麦育种计划中对已鉴定QTL的追踪和选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59e3/10954791/80b733f9b619/fpls-15-1343148-g001.jpg

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