首页|期刊导航|Crop Design|Genetic dissection and identification of blast resistance genes in an elite broad-spectrum resistance rice variety Xiushui114

Genetic dissection and identification of blast resistance genes in an elite broad-spectrum resistance rice variety Xiushui114OA

中文摘要

Rice blast,caused by Magnaporthe oryzae(M.oryzae),is one of the most destructive diseases of rice and poses a critical threat to global food security.Breeding rice varieties with broad-spectrum and durable resistance through the deployment of resistance(R)genes remains the most effective and economical control strategy.In this study,we identified a highly blast-resistant rice variety,Xiushui114(XS),by screening diverse rice accessions across three blast nurseries from 2016 to 2019.Pathogenicity assays demonstrated that XS exhibits resistance to more than 16 M.oryzae strains collected from major rice-growing regions,indicating a broad-spectrum resistance phenotype.Genetic analyses revealed that XS carries multiple R genes.Using a map-based cloning approach and sequence analysis further confirmed the presence of several known blast R genes,including Pizh,Pik-KA,Pita,and Pib,in XS.Resistance-spectrum evaluation indicated that Pizh contributes predominantly to the strong resistance observed in XS.Together,these findings establish XS as a valuable germplasm resource for improving rice blast resistance and provide new insights for breeding programs aiming to develop durable,broad-spectrum blast-resistant cultivars.

Yihan Gao;Shasha Liu;Qingshuo Gu;Haoyan Wang;Xin Wang;Qun Li;Zuhua He;Yiwen Deng

State Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,China School of Life Science and Technology,ShanghaiTech University,Shanghai,201210,ChinaState Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,ChinaState Key Laboratory of Rice Biology and Breeding,Zhejiang Key Laboratory of Crop Germplasm Innovation and Utilization,College of Agriculture and Biotechnology,Zhejiang University,Hangzhou,310058,ChinaShanghai Key Laboratory of Plant Molecular Sciences,College of Life Sciences,Shanghai Normal University,Shanghai,200234,ChinaState Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,ChinaState Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,ChinaState Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,ChinaState Key Laboratory of Rice Biology and Breeding,Zhejiang Key Laboratory of Crop Germplasm Innovation and Utilization,College of Agriculture and Biotechnology,Zhejiang University,Hangzhou,310058,China State Key Laboratory of Plant Trait Design,CAS Center for Excellence in Molecular Plant Sciences,Shanghai Institute of Plant Physiology and Ecology,Chinese Academy of Sciences,Shanghai,200032,China

农业科技

Gene stackingRice blastBroad-spectrum resistanceR genes

《Crop Design》 2026 (1)

P.1-8,8

supported by grants from STI 2030-Major Projects(2022ZD0400201)Biological Breeding-National Science and Technology Major Projects(2023ZD04070)The Science and Technology Commission of Shanghai Municipality(23ZR1470200).

10.1016/j.cropd.2025.100130

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