Pyramiding of triple Clubroot resistance loci conferred superior resistance without negative effects on agronomic traits in Brassica napus

Author:

Baloch Amanullah1ORCID,Shah Nadil1,Idrees Fahad1,Zhou Xueqing1,Gan Longcai1,Atem Jalal Eldeen Chol1,Zhou Yuanwei2,Piao Zhongyun3,Chen Peng1,Zhan Zongxiang3,Zhang Chunyu1ORCID

Affiliation:

1. National Key Lab of Crop Genetic Improvement and College of Plant Science and Technology, Huazhong Agricultural University Wuhan China

2. Yichang Academy of Agricultural Science Yichang China

3. Shenyang Agricultural University Shenyang China

Abstract

AbstractClubroot disease caused by Plasmodiophora brassicae is becoming a serious threat to rapeseed (Brassica napus) production worldwide. Breeding resistant varieties using CR (clubroot resistance) loci is the most promising solution. Using marker‐assisted selection and speed‐breeding technologies, we generated Brassica napus materials in homozygous or heterozygous states using CRA3.7, CRA08.1, and CRA3.2 loci in the elite parental line of the Zhongshuang11 background. We developed three elite lines with two CR loci in different combinations and one line with three CR loci at the homozygous state. In our study, we used six different clubroot strains (Xinmin, Lincang, Yuxi, Chengdu, Chongqing, and Jixi) which are categorized into three groups based on our screening results. The newly pyramided lines with two or more CR loci displayed better disease resistance than the parental lines carrying single CR loci. There is an obvious gene dosage effect between CR loci and disease resistance levels. For example, pyramided lines with triple CR loci in the homozygous state showed superior resistance for all pathogens tested. Moreover, CR loci in the homozygous state are better on disease resistance than the heterozygous state. More importantly, no negative effect was observed on agronomic traits for the presence of multiple CR loci in the same background. Overall, these data suggest that the pyramiding of triple clubroot resistance loci conferred superior resistance with no negative effects on agronomic traits in Brassica napus.

Funder

Ministry of Agriculture and Rural Affairs of the People's Republic of China

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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