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A bacterial effector protein uncovers a plant metabolic pathway involved in tolerance to bacterial wilt disease

摘要Bacterial wilt caused by the soil-borne plant pathogen Ralstonia solanacearum is a devastating disease worldwide.Upon plant colonization,R.solanacearum replicates massively,causing plant wilting and death;collapsed infected tissues then serve as a source of inoculum.In this work,we show that the plant meta-bolic pathway mediated by pyruvate decarboxylases(PDCs)contributes to plant tolerance to bacterial wilt disease.Arabidopsis and tomato plants respond to R.solanacearum infection by increasing PDC activity,and plants with deficient PDC activity are more susceptible to bacterial wilt.Treatment with either pyruvic acid or acetic acid(substrate and product of the PDC pathway,respectively)enhances plant tolerance to bacterial wilt disease.An effector protein secreted by R.solanacearum,RipAK,interacts with PDCs and in-hibits their oligomerization and enzymatic activity.Collectively,our work reveals a metabolic pathway involved in plant resistance to biotic and abiotic stresses,and a bacterial virulence strategy to promote dis-ease and the completion of the pathogenic life cycle.

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作者 Yaru Wang [1] Achen Zhao [1] Rafael J.L.Morcillo [2] Gang Yu [2] Hao Xue [1] Jose S.Rufian [2] Yuying Sang [2] Alberto P.Macho [2] 学术成果认领
作者单位 Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences;Chinese Academy of Sciences,Shanghai 201602,China;University of Chinese Academy of Sciences,Beijing,China [1] Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences;Chinese Academy of Sciences,Shanghai 201602,China [2]
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发布时间 2021-09-28
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分子植物(英文版)

分子植物(英文版)

2021年14卷8期

1281-1296页

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