Trehalose‐6‐phosphate synthase 8 increases photosynthesis and seed yield in Brassica napus

Author:

Yuan Pan12,Zhou Guilong3,Yu Mingzhu12,Hammond John P.4,Liu Haijiang12,Hong Dengfeng15ORCID,Cai Hongmei12ORCID,Ding Guangda12ORCID,Wang Sheliang12,Xu Fangsen12ORCID,Wang Chuang12,Shi Lei12ORCID

Affiliation:

1. National Key Laboratory of Crop Genetic Improvement Huazhong Agricultural University Wuhan Hubei 430070 China

2. Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtze River), Microelement Research Centre, Ministry of Agriculture and Rural Affairs Huazhong Agricultural University Wuhan Hubei 430070 China

3. State Key Laboratory of Hybrid Rice, Institute for Advanced Studies (IAS) Wuhan University Wuhan Hubei 430072 China

4. School of Agriculture, Policy and Development University of Reading Reading RG6 6AR UK

5. National Research Center of Rapeseed Engineering and Technology, National Rapeseed Genetic Improvement Center (Wuhan Branch) Huazhong Agricultural University Wuhan Hubei 430070 China

Abstract

SUMMARYTrehalose‐6‐phosphate (T6P) functions as a vital proxy for assessing carbohydrate status in plants. While class II T6P synthases (TPS) do not exhibit TPS activity, they are believed to play pivotal regulatory roles in trehalose metabolism. However, their precise functions in carbon metabolism and crop yield have remained largely unknown. Here, BnaC02.TPS8, a class II TPS gene, is shown to be specifically expressed in mature leaves and the developing pod walls of Brassica napus. Overexpression of BnaC02.TPS8 increased photosynthesis and the accumulation of sugars, starch, and biomass compared to wild type. Metabolomic analysis of BnaC02.TPS8 overexpressing lines and CRISPR/Cas9 mutants indicated that BnaC02.TPS8 enhanced the partitioning of photoassimilate into starch and sucrose, as opposed to glycolytic intermediates and organic acids, which might be associated with TPS activity. Furthermore, the overexpression of BnaC02.TPS8 not only increased seed yield but also enhanced seed oil accumulation and improved the oil fatty acid composition in B. napus under both high nitrogen (N) and low N conditions in the field. These results highlight the role of class II TPS in impacting photosynthesis and seed yield of B. napus, and BnaC02.TPS8 emerges as a promising target for improving B. napus seed yield.

Funder

China Scholarship Council

National Natural Science Foundation of China

Publisher

Wiley

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