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Pijx confers broad-spectrum seedling and panicle blast resistance by promoting the degradation of ATP β subunit and OsRbohC-mediated ROS burst in rice

摘要Rice blast,caused by the fungal pathogen Magnaporthe oryzae,is one of the most important diseases of rice.Utilization of blast-resistance genes is the most economical,effective,and environmentally friendly way to control the disease.However,genetic resources with broad-spectrum resistance(BSR)that is effec-tive throughout the rice growth period are rare.In this work,using a genome-wide association study,we identify a new blast-resistance gene,Pijx,which encodes a typical CC-NBS-LRR protein.Pijx is derived from a wild rice species and confers BSR to M.oryzae at both the seedling and panicle stages.The func-tions of the resistant haplotypes of Pijx are confirmed by gene knockout and overexpression experiments.Mechanistically,the LRR domain in Pijx interacts with and promotes the degradation of the ATP synthase βsubunit(ATPb)via the 26S proteasome pathway.ATPb acts as a negative regulator of Pijx-mediated panicle blast resistance,and interacts with OsRbohC to promote its degradation.Consistently,loss of ATPb func-tion causes an increase in NAPDH content and ROS burst.Remarkably,when Pijx is introgressed into two japonica rice varieties,the introgression lines show BSR and increased yields that are approximately 51.59%and 79.31%higher compared with those of their parents in a natural blast disease nursery.In addi-tion,we generate PPLPijx Pigm and PPLPijx Piz-t pyramided lines and these lines also have higher BSR to panicle blast compared with Pigm-or Piz-t-containing rice plants.Collectively,this study demonstrates that Pijx not only confers BSR to M.oryzae but also maintains high and stable rice yield,providing new ge-netic resources and molecular targets for breeding rice varieties with broad-spectrum blast resistance.

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作者 Ning Xiao [1] Yunyu Wu [1] Xiaoxiang Zhang [1] Zeyun Hao [2] Zichun Chen [1] Zefeng Yang [3] Yue Cai [1] Ruyi Wang [2] Ling Yu [1] Zhiping Wang [1] Yue Lu [3] Wei Shi [1] Cunhong Pan [1] Yuhong Li [1] Changhai Zhou [1] Jianju Liu [1] Niansheng Huang [1] Guangqing Liu [1] Hongjuan Ji [1] Shuhao Zhu [1] Shuai Fang [1] Yuese Ning [2] Aihong Li [1] 学术成果认领
作者单位 Institute of Agricultural Sciences for Lixiahe Region in Jiangsu,Yangzhou Rice Experiment Station of the China Agricultural Research System,Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding,Yangzhou 225009,China [1] State Key Laboratory for Biology of Plant Diseases and Insect Pests,Institute of Plant Protection,Chinese Academy of Agricultural Sciences,Beijing 100193,China [2] Key Laboratory of Plant Functional Genomics,Ministry of Education,Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding,Agricultural College of Yangzhou University,Yangzhou 225009,China [3]
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DOI 10.1016/j.molp.2023.10.001
发布时间 2024-04-10(万方平台首次上网日期,不代表论文的发表时间)
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分子植物(英文版)

分子植物(英文版)

2023年16卷11期

1832-1846页

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