Effects of Nitrogen Management on Protein Expression of Flag Leaves at Grain-Filling Stage in Large Panicle Rice

Q3 Agricultural and Biological Sciences
Zhi-Xing ZHANG , Zhong LI , Jun CHEN , Qi-Song LI , Long-Huai CHEN , Hong-Fei CHEN , Jin-Wen HUANG , Wen-Xiong LIN
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引用次数: 8

Abstract

To explain the metabolic mechanism of leaf during grain filling of rice (Oryza sativa L.) in response to nitrogen application, the differential expression patterns of leaf proteins were investigated at different time points of grain filling using two-dimensional electrophoresis (2-DE) technique. Thirty-two differentially expressed proteins were detected including 27 up-regulated and 5 down-regulated proteins in response to increased nitrogen application at grain-filling stage. These proteins were classified into 5 main categories according to their deduced functions, which were involved in photosynthesis (12), response to adversity resistance (5), hormone synthesis and signal transduction (5), cell growth and differentiation (5), and unknown functions (5). The photosynthesis-related features, together with adversity-defense-related indicators, were then determined to reveal the regulation of nitrogen to rice leaf. As appropriate increase of nitrogen application at late growth stage, the adversity-defense ability of leaf was strengthened during grain filling by delaying degradation of chlorophyll and soluble protein, prolonging photosynthesis, activating superoxide dismutase, peroxidase, and catalase, and depressing lipid peroxidation. These physiological changes verified the result of proteomics. Therefore, appropriate increased nitrogen supply at late growth stage is favorable to leaf metabolisms during grain filling in rice.

氮素管理对大穗稻灌浆期旗叶蛋白质表达的影响
为了解释水稻灌浆过程中叶片代谢机制对施氮的响应,采用双向电泳(2-DE)技术研究了灌浆过程中叶片蛋白质在不同时间点的差异表达模式。结果表明,灌浆期施氮量增加对32个蛋白的表达有影响,其中27个蛋白表达上调,5个蛋白表达下调。根据推导出的功能将这些蛋白分为5大类,分别参与光合作用(12)、逆境抗性响应(5)、激素合成与信号转导(5)、细胞生长与分化(5)和未知功能(5)。通过测定光合作用相关特征和逆境防御相关指标,揭示氮素对水稻叶片的调控作用。生育后期适当增加施氮量,通过延缓叶绿素和可溶性蛋白降解,延长光合作用,激活超氧化物歧化酶、过氧化物酶和过氧化氢酶,抑制脂质过氧化作用,增强籽粒灌浆过程中叶片的逆境防御能力。这些生理变化验证了蛋白质组学的结果。因此,生育后期适当增加氮素供应有利于水稻灌浆期叶片代谢。
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CiteScore
1.50
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