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An endophytic fungus interacts with the defensin-like protein OsCAL1 to regulate cadmium allocation in rice

摘要Defensin-like proteins are conserved in multicellular organisms and contribute to innate immune re-sponses against fungal pathogens.In rice,defensins play a novel role in regulating cadmium(Cd)efflux from the cytosol.However,whether the antifungal activity of defensins correlates with Cd-efflux function remains unknown.In this study,we isolated an endophytic Fusarium,designed Fo10,by a comparative mi-crobiome analysis of rice plants grown in a paddy contaminated with Cd.Fo10 is tolerant to high levels of Cd,but is sensitive to the defensin-like protein OsCAL1,which mediates Cd efflux to the apoplast.We found that Fo10 symbiosis in rice is regulated by OsCAL1 dynamics,and Fo10 coordinates multiple plant pro-cesses,including Cd uptake,vacuolar sequestration,efflux to the environment,and formation of Fe pla-ques in the rhizosphere.These processes are dependent on the salicylic acid signaling pathway to keep Cd levels low in the cytosol of rice cells and to decrease Cd levels in rice grains without any yield penalty.Fo10 also plays a role in Cd tolerance in the poaceous crop maize and wheat,but has no observed effects in the eudicot plants Arabidopsis and tomato.Taken together,these findings provide insights into the mech-anistic basis underlying how a fungal endophyte and host plant interact to control Cd accumulation in host plants by adapting defense responses to promote the establishment of a symbiosis that permits adaptation to high-Cd environments.

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作者 Tianyu Gu [1] Ziai Qi [2] Yating Wang [2] Siying Chen [3] Jing Yan [4] Huapeng Qiu [2] Yanxuan Yu [2] Zijun Fang [5] Junmin Wang [6] Jiming Gong [7] 学术成果认领
作者单位 National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;School of Life Science and Technology,ShanghaiTech University,Shanghai 201210,China;Hunan Key Laboratory of Economic Crops Genetic Improvement and Integrated Utilization,College of Life Science,Hunan University of Science and Technology,Xiangtan 411201,China [1] National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;University of the Chinese Academy of Sciences,Beijing 100049,China [2] National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;Hunan Key Laboratory of Economic Crops Genetic Improvement and Integrated Utilization,College of Life Science,Hunan University of Science and Technology,Xiangtan 411201,China [3] National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;State Key Laboratory of Crop Stress Adaptation and Improvement,School of Life Sciences,Henan University,Kaifeng 475004,China [4] National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China [5] Institute of Crops and Nuclear Technology Utilization,Zhejiang Academy of Agricultural Sciences,Hangzhou 310021,China [6] National Key Laboratory of Plant Molecular Genetics,Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 200032,China;School of Life Science and Technology,ShanghaiTech University,Shanghai 201210,China;University of the Chinese Academy of Sciences,Beijing 100049,China [7]
栏目名称 Research articles
DOI 10.1016/j.molp.2023.12.022
发布时间 2024-05-07
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