生物合成有用化合物的人工代谢途径的设计与构建。

IF 1.4 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Tomokazu Shirai
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引用次数: 0

摘要

为了有效地利用生物细胞生产有用的化合物,必须优化设计所有代谢反应和途径,不仅包括细胞内碳的流动,还包括能量的产生和消耗以及氧化还原的平衡。计算科学方法是合理设计代谢途径和优化代谢通量的有效方法。在此蓝图的基础上,准确构建细胞,测试和分析其是否符合设计,并从结果中吸取教训,在有效的循环中重新设计系统是至关重要的。本文介绍了合成生物学中代谢设计的基本技术,并讨论了在合成生物学中有效利用植物细胞或植物基因生产有用化合物的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and construction of artificial metabolic pathways for the bioproduction of useful compounds.

To efficiently produce useful compounds using biological cells, it is essential to optimally design all metabolic reactions and pathways, including not only the flow of carbon within the cell but also the production and consumption of energy and the balance of oxidation-reduction. Computational scientific methods are effective for the rational design of metabolic pathways and the optimization of metabolic fluxes. Based on this blueprint, it is crucial to accurately construct the cell, test and analyze whether it conforms to the design, and learn from the results to redesign the system in an effective cycle. This review introduces essential metabolic design techniques in synthetic biology and discusses the potential of using plant cells or plant genes effectively in synthetic biology for the production of useful compounds.

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来源期刊
Plant Biotechnology
Plant Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-PLANT SCIENCES
CiteScore
2.90
自引率
18.80%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Plant Biotechnology is an international, open-access, and online journal, published every three months by the Japanese Society for Plant Biotechnology. The journal, first published in 1984 as the predecessor journal, “Plant Tissue Culture Letters” and became its present form in 1997 when the society name was renamed to Japanese Society for Plant Cell and Molecular Biology, publishes findings in the areas from basic- to application research of plant biotechnology. The aim of Plant Biotechnology is to publish original and high-impact papers, in the most rapid turnaround time for reviewing, on the plant biotechnology including tissue culture, production of specialized metabolites, transgenic technology, and genome editing technology, and also on the related research fields including molecular biology, cell biology, genetics, plant breeding, plant physiology and biochemistry, metabolic engineering, synthetic biology, and bioinformatics.
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