Fine mapping and characterization of rust resistance genes Lr53 and Yr35 introgressed from Aegilops species

Author:

Xu Binyang1,Shen Tao2,Chen Hong3,Li Hongna2,Rehman Shams ur4,Lyu Shikai2,Hua Lei2,Wang Guiping2,Zhang Chaozhong5,Li Kairong2,Li Hao6,Lan Caixia7,Chen Guo-Yue8,Hao Ming8,Chen Shisheng9ORCID

Affiliation:

1. National Key Laboratory of Crop Genetic Improvement, Peking University institute of advanced agricultural sciences, Shandong laboratory of Advanced Agriculture sciences in Weifang

2. Peking University Institute of Advanced Agricultural Sciences

3. Sichuan Agricultural University - Chengdu Campus

4. Peking University Insttute of Advanced Agricultural Sciences

5. UC Davis: University of California Davis

6. Henan University - Minglun Campus: Henan University

7. Huazhong Agricultural University: Huazhong Agriculture University

8. Sichuan Agricultural University

9. 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

Abstract

Abstract

Wheat leaf rust and stripe rust are damaging fungal diseases of wheat worldwide. Breeding for resistance is a sustainable approach to control these two foliar diseases. In this study, we used SNP analysis, sequence comparisons and cytogenetic assays to determine that the chromosomal segment carrying Lr53 and Yr35 was originated from Ae. longissima or Ae. sharonensis or their derived species. In seedling tests, Lr53 conferred strong resistance against all five Chinese Pt races tested, and Yr35 showed effectiveness against Pst race CYR34 but susceptibility to race CYR32. Using a large population (3,892 recombinant gametes) derived from plants homozygous for the ph1b mutation obtained from the cross 98M71 × CSph1b, both Lr53 and Yr35 were successfully mapped to a 6.03 Mb telomeric region of chromosome arm 6BS in the Chinese Spring reference genome v1.1. Co-segregation between Lr53 and Yr35 was observed within this large mapping population. Within the candidate region, several nucleotide-binding leucine-rich repeat (NLR) genes and protein kinases were identified as candidate genes. Marker pku6B3127 was completely linked to both genes and accurately predicted the absence or presence of alien segment harboring Lr53 and Yr35 in 87 tetraploid and 149 hexaploid wheat genotypes tested. We developed a line with a smaller alien segment (< 6.03 Mb) to reduce any potential linkage drag and demonstrated that it conferred resistance levels similar to those of the original donor parent 98M71. The newly developed introgression line and closely linked PCR markers will accelerate the deployment of Lr53 and Yr35 in wheat breeding programs.

Publisher

Research Square Platform LLC

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