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A synthetic glycolate metabolism bypass in rice chloroplasts increases photosynthesis and yield

作者:X Chen, G. H. Li, Haohui He, Wenle Xie, Lili Cui, Zhisheng Zhang, Xinxiang Peng, Guohui Zhu · 发表于:The Crop Journal · 年份:2025 · DOI:10.1016/j.cj.2025.03.001 · 被引用次数:7 · 研究领域:Photosynthetic Processes and Mechanisms、Plant Stress Responses and Tolerance、Plant nutrient uptake and metabolism

Photorespiration consumes photosynthetically fixed carbon and reduces yields by 20%–50% in C 3 crops. In an attempt to increase photosynthetic efficiency in rice by bypassing the carbon-consuming process of photorespiration, a photorespiratory bypass consisting of Chlamydomonas reinhardtii glycolate dehydrogenase and Cucurbita maxima malate synthase (termed the GMS bypass) was introduced into the rice cultivar Zhonghua 11 and osplgg1b , a mutant of the rice chloroplast glycolate transporter, to generate GMS/ZH11 and GMS/ osplgg1b transgenic plants. The GMS bypass reduced photorespiration and increased photosynthesis in the transgenic plants. The straw biomass of GMS/ZH11 and GMS/ osplgg1b increased by up to 16.0% and 85.7%, respectively. The yield of GMS/ZH11 increased by 22.0%–34.7% in paddy fields. Thus, the GMS bypass can increase photosynthetic efficiency and yield in rice.