植物代谢建模:从网络重构到机制模型。

IF 21.3 1区 生物学 Q1 PLANT SCIENCES
Teresa J Clark, Longyun Guo, John Morgan, Jorg Schwender
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引用次数: 19

摘要

植物代谢的数学建模使植物科学界能够了解植物代谢的组织,获得对代谢功能的定量见解,并推导出代谢操纵的工程策略。在各种建模方法中,代谢途径分析可以剖析核心代谢亚部分的基本功能模式,如光呼吸,并揭示经典的代谢途径定义如何具有重叠的功能。在植物中使用基于约束的建模的许多研究中,目前有许多计算工具可用于分析大规模和基因组尺度的代谢网络。对于13c代谢通量分析,同位素稳态原理已用于研究异养植物组织,而非稳态同位素标记方法适用于光自养和次生代谢的研究。酶动力学模型探索机理细节的途径,我们讨论了确定或估计动力学参数的不同方法。在这篇综述中,我们描述了植物代谢建模的最新进展和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling Plant Metabolism: From Network Reconstruction to Mechanistic Models.

Mathematical modeling of plant metabolism enables the plant science community to understand the organization of plant metabolism, obtain quantitative insights into metabolic functions, and derive engineering strategies for manipulation of metabolism. Among the various modeling approaches, metabolic pathway analysis can dissect the basic functional modes of subsections of core metabolism, such as photorespiration, and reveal how classical definitions of metabolic pathways have overlapping functionality. In the many studies using constraint-based modeling in plants, numerous computational tools are currently available to analyze large-scale and genome-scale metabolic networks. For 13C-metabolic flux analysis, principles of isotopic steady state have been used to study heterotrophic plant tissues, while nonstationary isotope labeling approaches are amenable to the study of photoautotrophic and secondary metabolism. Enzyme kinetic models explore pathways in mechanistic detail, and we discuss different approaches to determine or estimate kinetic parameters. In this review, we describe recent advances and challenges in modeling plant metabolism.

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来源期刊
Annual review of plant biology
Annual review of plant biology 生物-植物科学
CiteScore
40.40
自引率
0.40%
发文量
29
期刊介绍: The Annual Review of Plant Biology is a peer-reviewed scientific journal published by Annual Reviews. It has been in publication since 1950 and covers significant developments in the field of plant biology, including biochemistry and biosynthesis, genetics, genomics and molecular biology, cell differentiation, tissue, organ and whole plant events, acclimation and adaptation, and methods and model organisms. The current volume of this journal has been converted from gated to open access through Annual Reviews' Subscribe to Open program, with all articles published under a CC BY license.
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