Laboratory of Biochemistry, Faculty of Agriculture, Niigata University, Niigata 950-2181, Japan.
Department of Life and Food Sciences, Graduate School of Science and Technology, Niigata University, Niigata 950-2181, Japan.
Int J Mol Sci. 2020 Dec 30;22(1):318. doi: 10.3390/ijms22010318.
C and N are the most important essential elements constituting organic compounds in plants. The shoots and roots depend on each other by exchanging C and N through the xylem and phloem transport systems. Complex mechanisms regulate C and N metabolism to optimize plant growth, agricultural crop production, and maintenance of the agroecosystem. In this paper, we cover the recent advances in understanding C and N metabolism, regulation, and transport in plants, as well as their underlying molecular mechanisms. Special emphasis is given to the mechanisms of starch metabolism in plastids and the changes in responses to environmental stress that were previously overlooked, since these changes provide an essential store of C that fuels plant metabolism and growth. We present general insights into the system biology approaches that have expanded our understanding of core biological questions related to C and N metabolism. Finally, this review synthesizes recent advances in our understanding of the trade-off concept that links C and N status to the plant's response to microorganisms.
C 和 N 是植物有机化合物中最重要的必需元素。地上部分和根系通过木质部和韧皮部运输系统相互交换 C 和 N。复杂的机制调节 C 和 N 代谢,以优化植物生长、农业作物生产和农业生态系统的维持。本文综述了近年来对植物中 C 和 N 代谢、调节和运输及其潜在分子机制的理解进展。特别强调了质体中淀粉代谢的机制以及以前被忽视的对环境胁迫响应的变化,因为这些变化为植物代谢和生长提供了必需的 C 源。我们对系统生物学方法有了一般性的了解,这些方法扩展了我们对与 C 和 N 代谢相关的核心生物学问题的理解。最后,本文综述了我们对联系 C 和 N 状态与植物对微生物反应的权衡概念的理解的最新进展。