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全基因组关联研究揭示了面包小麦中新型抗白粉病基因座。

Genome-Wide Association Study Reveals Novel Powdery Mildew Resistance Loci in Bread Wheat.

作者信息

Kaur Ramandeep, Vasistha Neeraj Kumar, Ravat Vikas Kumar, Mishra Vinod Kumar, Sharma Sandeep, Joshi Arun Kumar, Dhariwal Raman

机构信息

Department of Genetics-Plant Breeding and Biotechnology, Dr. Khem Sigh Gill Akal College of Agriculture, Eternal University, Baru Sahib, Sirmour 173101, India.

Department of Genetics and Plant Breeding, Rajiv Gandhi University, Rono Hills, Itanagar 791112, India.

出版信息

Plants (Basel). 2023 Nov 15;12(22):3864. doi: 10.3390/plants12223864.

Abstract

Powdery mildew (PM), caused by the fungal pathogen f. sp. (), significantly threatens global bread wheat production. Although the use of resistant cultivars is an effective strategy for managing PM, currently available wheat cultivars lack sufficient levels of resistance. To tackle this challenge, we conducted a comprehensive genome-wide association study (GWAS) using a diverse panel of 286 bread wheat genotypes. Over three consecutive years (2020-2021, 2021-2022, and 2022-2023), these genotypes were extensively evaluated for PM severity under field conditions following inoculation with virulent isolates. The panel was previously genotyped using the Illumina 90K Infinium iSelect assay to obtain genome-wide single-nucleotide polymorphism (SNP) marker coverage. By applying FarmCPU, a multilocus mixed model, we identified a total of 113 marker-trait associations (MTAs) located on chromosomes 1A, 1B, 2B, 3A, 3B, 4A, 4B, 5A, 5B, 6B, 7A, and 7B at a significance level of ≤ 0.001. Notably, four novel MTAs on chromosome 6B were consistently detected in 2020-2021 and 2021-2022. Furthermore, within the confidence intervals of the identified SNPs, we identified 96 candidate genes belonging to different proteins including 12 disease resistance/host-pathogen interaction-related protein families. Among these, protein kinases, leucine-rich repeats, and zinc finger proteins were of particular interest due to their potential roles in PM resistance. These identified loci can serve as targets for breeding programs aimed at developing disease-resistant wheat cultivars.

摘要

白粉病(PM)由真菌病原体小麦白粉菌(Blumeria graminis f. sp. tritici)引起,对全球面包小麦生产构成重大威胁。尽管使用抗病品种是防治白粉病的有效策略,但目前可用的小麦品种抗性水平不足。为应对这一挑战,我们使用由286个面包小麦基因型组成的多样化群体进行了全面的全基因组关联研究(GWAS)。在连续三年(2020 - 2021年、2021 - 2022年和2022 - 2023年)中,这些基因型在接种致病力强的分离株后,于田间条件下对白粉病严重程度进行了广泛评估。该群体先前使用Illumina 90K Infinium iSelect检测法进行基因分型,以获得全基因组单核苷酸多态性(SNP)标记覆盖范围。通过应用多位点混合模型FarmCPU,我们在显著性水平≤0.001时,共鉴定出位于1A、1B、2B、3A、3B、4A、4B、5A、5B、6B、7A和7B染色体上的113个标记 - 性状关联(MTA)。值得注意的是,在2020 - 2021年和2021 - 2022年中,在6B染色体上一致检测到4个新的MTA。此外,在已鉴定SNP的置信区间内,我们鉴定出96个属于不同蛋白质的候选基因,包括12个与抗病性/宿主 - 病原体相互作用相关的蛋白质家族。其中,蛋白激酶、富含亮氨酸重复序列和锌指蛋白因其在白粉病抗性中的潜在作用而特别受关注。这些已鉴定的位点可作为旨在培育抗病小麦品种的育种计划的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36c8/10675159/e1a26d52128f/plants-12-03864-g001.jpg

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