HSP90.2 promotes CO2 assimilation rate, grain weight and yield in wheat

Author:

Yan Yan12,Wang Meng‐Lu1ORCID,Guo Yue‐Ting13,Ding Ci‐Hang13,Niu Ke‐Xin13,Li Xiao‐Ming13,Sun Congwei2,Dong Zhongdong2,Cui Dangqun2,Rasheed Awais4,Hao Chenyang5ORCID,Zhang Xueyong5ORCID,Guo Ganggang6ORCID,Ni Zhongfu1ORCID,Sun Qixin1,Chen Feng2ORCID,Gou(缑金营) Jin‐Ying13ORCID

Affiliation:

1. Key Laboratory of Crop Heterosis and Utilization (MOE) and Beijing Key Laboratory of Crop Genetic Improvement China Agricultural University Beijing China

2. CIMMYT‐China Wheat and Maize Joint Research Center/National Key Laboratory of Wheat and Maize Crop Science/College of Agronomy Henan Agricultural University Zhengzhou China

3. MOE Engineering Research Center of Gene Technology School of Life Sciences Fudan University Shanghai China

4. Plant Sciences Quaid‐i‐Azam University Islamabad Pakistan

5. Key Laboratory of Crop Germplasm and Biotechnology, Ministry of Agriculture Institute of Crop Sciences, Chinese Academy of Agricultural Sciences Beijing China

6. Key Laboratory of Grain Crop Genetic Resources Evaluation and Utilization (MARA), The National Key Facility for Crop Gene Resources and Genetic Improvement Institute of Crop Sciences, Chinese Academy of Agricultural Sciences (ICS‐CAAS) Beijing China

Abstract

SummaryWheat fixes CO2 by photosynthesis into kernels to nourish humankind. Improving the photosynthesis rate is a major driving force in assimilating atmospheric CO2 and guaranteeing food supply for human beings. Strategies for achieving the above goal need to be improved. Here, we report the cloning and mechanism of CO2 ASSIMILATION RATE AND KERNEL‐ENHANCED 1 (CAKE1) from durum wheat (Triticum turgidum L. var. durum). The cake1 mutant displayed a lower photosynthesis rate with smaller grains. Genetic studies identified CAKE1 as HSP90.2‐B, encoding cytosolic molecular chaperone folding nascent preproteins. The disturbance of HSP90.2 decreased leaf photosynthesis rate, kernel weight (KW) and yield. Nevertheless, HSP90.2 over‐expression increased KW. HSP90.2 recruited and was essential for the chloroplast localization of nuclear‐encoded photosynthesis units, for example PsbO. Actin microfilaments docked on the chloroplast surface interacted with HSP90.2 as a subcellular track towards chloroplasts. A natural variation in the hexaploid wheat HSP90.2‐B promoter increased its transcription activity, enhanced photosynthesis rate and improved KW and yield. Our study illustrated an HSP90.2–Actin complex sorting client preproteins towards chloroplasts to promote CO2 assimilation and crop production. The beneficial haplotype of Hsp90.2 is rare in modern varieties and could be an excellent molecular switch promoting photosynthesis rate to increase yield in future elite wheat varieties.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Agronomy and Crop Science,Biotechnology

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