Harpin Hpa1 Interacts with Aquaporin PIP1;4 to Promote the Substrate Transport and Photosynthesis in Arabidopsis

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作者
Liang Li
Hao Wang
Jorge Gago
Haiying Cui
Zhengjiang Qian
Naomi Kodama
Hongtao Ji
Shan Tian
Dan Shen
Yanjuan Chen
Fengli Sun
Zhonglan Xia
Qing Ye
Wei Sun
Jaume Flexas
Hansong Dong
机构
[1] Nanjing Agricultural University,Department of Plant Pathology
[2] Research Group on Plant Biology under Mediterranean Conditions,Agro
[3] Departament de Biologia,Meteorology Division
[4] Universitat de les Illes Balears,undefined
[5] Palma de Mallorca,undefined
[6] Institute of Grassland Science,undefined
[7] Northeast Normal University and National Ministry of Education Key Laboratory of Vegetation Ecology,undefined
[8] South China Botanical Garden,undefined
[9] Chinese Academy of Sciences,undefined
[10] National Institute for Agro-Environmental Sciences,undefined
来源
Scientific Reports | / 5卷
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摘要
Harpin proteins produced by plant-pathogenic Gram-negative bacteria are the venerable player in regulating bacterial virulence and inducing plant growth and defenses. A major gap in these effects is plant sensing linked to cellular responses and plant sensor for harpin Hpa1 from rice bacterial blight pathogen points to plasma membrane intrinsic protein (PIP). Here we show that Arabidopsis AtPIP1;4 is a plasma membrane sensor of Hpa1 and plays a dual role in plasma membrane permeability of CO2 and H2O. In particular, AtPIP1;4 mediates CO2 transport with a substantial contribute to photosynthesis and further increases this function upon interacting with Hpa1 at the plasma membrane. As a result, leaf photosynthesis rates are increased and the plant growth is enhanced in contrast to the normal process without Hpa1-AtPIP1;4 interaction. Our findings demonstrate the first case that plant sensing of a bacterial harpin protein is connected with photosynthetic physiology to regulate plant growth.
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