The physiological response of photosynthesis to nitrogen deficiency

光合作用 生物能学 气孔导度 类囊体 植物 生物 维管束 鲁比斯科 C4光合作用 光系统II 电子传输链 园艺 生物化学 叶绿体 线粒体 基因
作者
Xiaohuan Mu,Yanling Chen
出处
期刊:Plant Physiology and Biochemistry [Elsevier]
卷期号:158: 76-82 被引量:487
标识
DOI:10.1016/j.plaphy.2020.11.019
摘要

Nitrogen (N), as a macro-element, plays a vital role in plant growth and development. N deficiency affects plant productivity by decreasing photosynthesis, leaf area and longevity of green leaf. To date, many studies have reported that the relationship between photosynthesis and N supply. Here, we summarized the physiological response of photosynthesis to N deficiency in leaf structure and N allocation within the leaf. In serious N stress, photosynthetic rate decreases for almost all plants. The reasons as follows:(1) reducing stomatal conductance of mesophyll cell (gs) and bundle sheath cells (gbs) which influences intercellular CO2 concentration; (2) reducing the content of bioenergetics and light-harvesting protein which inhibits electron transport rate and increase the light energy dissipated as heat; (3) reducing the content and/or activity of photosynthetic enzymes which reduces carboxylation rate. During reproductive stage, N stress induces plant senescence and N components degradation, especially photosynthetic enzymes and thylakoid N, and thus reduces photosynthesis. To keep high grain yield in low N deficiency, we should choose the genotype with higher N allocation within bioenergetics and lower degradation of photosynthetic enzymes. This review provides a generalized N allocation in response to N stress and gives a new prospect for breeding N-efficient genotypes.
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