Genome-wide association analysis of type II resistance to Fusarium head blight in common wheat

Author:

Wang Dehua1,Zhao Yunzhe1,Zhao Xinying1,Ji Mengqi1,Guo Xin2,Tian Jichun13,Chen Guangfeng4,Deng Zhiying1

Affiliation:

1. State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai’an, Shandong, China

2. Taiyuan Agro-Tech Extension and Service Center, Taiyuan, Shanxi, China

3. Shandong Huatian Agricultural Technology Co., Ltd, Tai’an, Shandong, China

4. College of Ecology and Garden Architecture, Dezhou University, Dezhou, Shandong, China

Abstract

Background Fusarium head blight (FHB) is a disease affecting wheat spikes caused by some Fusarium species and leads to cases of severe yield reduction and seed contamination. Identifying resistance genes/QTLs from wheat germplasm may help to improve FHB resistance in wheat production. Methods Our study evaluated 205 elite winter wheat cultivars for FHB resistance. A high-density 90K SNP array was used for genotyping the panel. A genome-wide association study (GWAS) from cultivars from three different environments was performed using a mixed linear model (MLM). Results Sixty-six significant marker-trait associations (MTAs) were identified (P < 0.001) on fifteen chromosomes that explained the phenotypic variation ranging from 5.4 to 11.2%. Some important new MTAs in genomic regions involving FHB resistance were found on chromosomes 2A, 3B, 5B, 6A, and 7B. Six MTAs at 92 cM on chromosome 7B were found in cultivars from two different environments. Moreover, there were 11 MTAs consistently associated with diseased spikelet rate and diseased rachis rate as pleiotropic effect loci and D_contig74317_533 on chromosome 5D was novel for FHB resistance. Eight new candidate genes of FHB resistance were predicated in wheat in this study. Three candidate genes, TraesCS5D02G006700, TraesCS6A02G013600, and TraesCS7B02G370700 on chromosome 5DS, 6AS, and 7BL, respectively, were perhaps important in defending against FHB by regulating intramolecular transferase activity, GTP binding, or chitinase activity in wheat, but further validation in needed. In addition, a total of five favorable alleles associated with wheat FHB resistance were discovered. These results provide important genes/loci for enhancing FHB resistance in wheat breeding by marker-assisted selection.

Funder

Agricultural Improved Variety Project of Shandong Province

Agricultural Improved Variety Project of Tai’an City

Shandong Province Postgraduate Education Tutor Capacity Improvement Program

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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