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Metabolomics Standards and Metabolic Modeling for Synthetic Biology in Plants

机译:植物合成生物学的代谢组学标准和代谢建模

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摘要

Life on earth depends on dynamic chemical transformations that enable cellular functions, including electron transfer reactions, as well as synthesis and degradation of biomolecules. Biochemical reactions are coordinated in metabolic pathways that interact in a complex way to allow adequate regulation. Biotechnology, food, biofuel, agricultural, and pharmaceutical industries are highly interested in metabolic engineering as an enabling technology of synthetic biology to exploit cells for the controlled production of metabolites of interest. These approaches have only recently been extended to plants due to their greater metabolic complexity (such as primary and secondary metabolism) and highly compartmentalized cellular structures and functions (including plant-specific organelles) compared with bacteria and other microorganisms. Technological advances in analytical instrumentation in combination with advances in data analysis and modeling have opened up new approaches to engineer plant metabolic pathways and allow the impact of modifications to be predicted more accurately. In this article, we review challenges in the integration and analysis of large-scale metabolic data, present an overview of current bioinformatics methods for the modeling and visualization of metabolic networks, and discuss approaches for interfacing bioinformatics approaches with metabolic models of cellular processes and flux distributions in order to predict phenotypes derived from specific genetic modifications or subjected to different environmental conditions.
机译:地球上的生命取决于能够实现细胞功能的动态化学转化,包括电子转移反应以及生物分子的合成和降解。生化反应在代谢途径中进行协调,这些代谢途径以复杂的方式相互作用以进行适当的调节。生物技术,食品,生物燃料,农业和制药行业对代谢工程非常感兴趣,因为代谢工程是合成生物学的一项使能技术,可以利用细胞来控制目标代谢产物的生产。这些方法由于与细菌和其他微生物相比具有更高的代谢复杂性(例如初级和次级代谢)以及高度分隔的细胞结构和功能(包括植物特异性细胞器),因此最近才扩展到植物。分析仪器的技术进步与数据分析和建模的进步相结合,为工程化植物代谢途径开辟了新途径,并使人们可以更准确地预测修饰的影响。在本文中,我们回顾了大规模代谢数据的集成和分析中的挑战,概述了当前用于代谢网络建模和可视化的生物信息学方法,并讨论了将生物信息学方法与细胞过程和通量代谢模型接口的方法分布以预测源自特定遗传修饰或经受不同环境条件的表型。

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