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Metabolic and signaling aspects underpinning the regulation of plant carbon nitrogen interactions. (Special Issue: Assimilate partitioning and plant development.)

机译:代谢和信号方面支持植物碳氮相互作用的调控。 (特刊:同化分区和植物开发。)

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摘要

In addition to light and water, CO2 and mineral elements are required for plant growth and development. Among these factors, nitrogen is critical, since it is needed to synthesize amino acids, which are the building elements of protein, nucleotides, chlorophyll, and numerous other metabolites and cellular components. Therefore, nitrogen is required by plants in higher quantities and this investment in nitrogen supports the use of CO2, water, and inorganic nitrogen to produce sugars, organic acids, and amino acids, the basic building blocks of biomass accumulation. This system is maintained by complex metabolic machinery, which is regulated at different levels according to environmental factors such as light, CO2, and nutrient availability. Plants integrate these signals via a signaling network, which involves metabolites as well as nutrient-sensing proteins. Due to its importance, much research effort has been expended to understand how carbon and nitrogen metabolism are integrated and regulated according to the rates of photosynthesis, photorespiration, and respiration. Thus, in this article, we both discuss recent advances in carbonitrogen metabolisms as well as sensing and signaling systems in illuminated leaves of C3-plants and provide a perspective of the type of experiments that are now required in order to take our understanding to a higher level.
机译:除了光和水,植物生长发育还需要CO 2 和矿物质。在这些因素中,氮至关重要,因为需要氮来合成氨基酸,氨基酸是蛋白质,核苷酸,叶绿素以及许多其他代谢物和细胞成分的构成要素。因此,植物对氮的需求量更大,而对氮的投资则支持使用CO 2 ,水和无机氮来生产糖,有机酸和氨基酸(糖的基本组成部分)生物量积累。该系统由复杂的代谢机制维持,该机制根据环境因素(例如光,CO 2 和养分的有效性)在不同的水平上进行调节。植物通过一个信号网络整合这些信号,该网络涉及代谢产物以及营养敏感蛋白。由于其重要性,已经进行了大量研究工作以了解如何根据光合作用,光呼吸和呼吸的速率整合和调节碳和氮代谢。因此,在本文中,我们将讨论C3植物光照叶片中碳/氮代谢以及感测和信号系统的最新进展,并为现在的实验类型提供一个视角,以便使我们理解更高的水平。

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