High-resolution mapping of SrTm4, a recessive resistance gene to wheat stem rust

Author:

Li Hongna1,Luo Jing1,Zhang Wenjun2,Hua Lei3,Li Kun2,Wang Jian1,Xu Binyang3,Yang Chen3,Wang Guiping3,Rouse Matthew N.4,Dubcovsky Jorge2,Chen Shisheng3ORCID

Affiliation:

1. National key Laboratory of wheat improvement, Peking University of Advanced Agricultural Sciences, Shandong Laboratory of Advanced Agriculture Sciences in Weifang, Weifang, Shandong 261325, China

2. Department of plant sciences, University of California, Davis, CA95616, USA

3. National key laboratory of wheat improvement, Peking university institute of Advanced Agricultural Sciences, Shandong laboratory of advanced agriculture Sciences in Weifang, Weifang, Shandong 261325, China

4. US department of agriculture-agricultural research service, cereal disease laboratory and department of plant pathology, university of minnesota, st. paul, MN 55108, USA

Abstract

Abstract Race Ug99 of Puccinia graminis f. sp. tritici (Pgt), the causal agent of wheat stem (or black) rust is one of the most serious threats to global wheat production. The identification, mapping, and deployment of effective stem rust resistance (Sr) genes are critical to reduce this threat. In this study, we generated SrTm4 monogenic lines and found that this gene confers resistance to North American and Chinse Pgt races. Using a large mapping population (9,522 gametes), we mapped SrTm4 within a 0.06 cM interval flanked by marker loci CS4211 and 130K1519, which corresponds to a 1.0-Mb region in the Chinese Spring reference genome v2.1. Physical map of the SrTm4 region was constructed with 11 overlapping BACs from the resistant T. monococcum PI 306540. The comparison of the 754-kb physical map with the genomic sequence of Chinese Spring and the discontinuous BAC sequence of DV92 revealed a 593-kb chromosomal inversion in PI 306540. Within the candidate region, we identified an L-type lectin-domain containing receptor kinase (LLK1), which was disrupted by the proximal inversion breakpoint, as a potential candidate gene. Two diagnostic dominant markers were developed to detect the inversion breakpoints. In a survey of T. monococcum accessions, we identified only 10 domesticated T. monococcum subsp. monococcum genotypes, mainly from the Balkans, carrying the inversion and showing similar mesothetic resistant infection types against Pgt races. The high-density map and the tightly linked molecular markers developed in this study are useful tools to accelerate the deployment of SrTm4-mediated resistance in wheat breeding programs.

Publisher

Research Square Platform LLC

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