Introgression of an All-Stage and Broad-Spectrum Powdery Mildew Resistance Gene Pm3VS from Dasypyrum villosum Chromosome 3V into Wheat

Author:

Hou Fu12,Chen Heyu1,Zhang Ting1,Jin Yinyu1,Kong Lingna1,Liu Xiaoxue1,Xing Liping13ORCID,Cao Aizhong13,Zhang Ruiqi13ORCID

Affiliation:

1. College of Agronomy of Nanjing Agricultural University/State Key Laboratory of Crop Genetics and Germplasm Enhancement and Application/JCIC-MCP, Nanjing 210095, P.R. China

2. Huaiyin Institute of Agricultural Sciences of Xuhuai Area in Jiangsu, Huaian 223001, China

3. Zhongshan Biological Breeding Laboratory, Nanjing, Jiangsu 210014, China

Abstract

Powdery mildew, caused by Blumeria graminis f. sp. tritici (Bgt), is a serious disease that threatens wheat production globally. It is imperative to explore novel resistance genes to control this disease by developing and planting resistant varieties. Here, we identified a wheat-Dasypyrum villosum 3V (3D) disomic substitution line, NAU3815 (2n = 42), with a high level of powdery mildew resistance at both the seedling and adult-plant stages. Subsequently, NAU3815 was used to generate recombination between chromosomes 3V and 3D. Through genomic in situ hybridization (GISH), fluorescence in situ hybridization (FISH), and 3VS- and 3VL-specific markers analysis, four introgression lines were developed from the selfing progenies of 3V and 3D double monosomic line NAU3816, which was derived from the F1 hybrids of NAU3815/NAU0686. There were t3VS (3D) ditelosomic substitution line NAU3817, t3VL (3D) ditelosomic substitution line NAU3818, homozygous T3DL·3VS translocation line NAU3819, and homozygous T3DS·3VL translocation line NAU3820. Powdery mildew tests of these lines confirmed the presence of an all-stage and broad-spectrum powdery mildew resistance gene, Pm3VS, located on chromosome arm 3VS. When compared with the recurrent parent NAU0686 plants, the T3DL·3VS translocation line NAU3819 showed no obvious negative effect on yield-related traits. However, the introduction of the T3DL·3VS translocated chromosome had a strong effect on reducing the flag-leaf length. Consequently, the T3DL·3VS translocation line NAU3819 provides a new germplasm in breeding for both resistance and plant architecture.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Research and Development Fund Project of Huai’an Academy of Agricultural Sciences

Huai’an Natural Science Research Program (Guiding) Project

Publisher

Scientific Societies

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