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利用诱导-产生产物微生物共生体来破译天然化合物产生的机制。

Deciphering mechanisms of production of natural compounds using inducer-producer microbial consortia.

机构信息

Department of Engineering Science, University of Oxford, Parks Road, Oxford OX1 3PJ, United Kingdom.

Department of Engineering Science, University of Oxford, Parks Road, Oxford OX1 3PJ, United Kingdom.

出版信息

Biotechnol Adv. 2023 May-Jun;64:108117. doi: 10.1016/j.biotechadv.2023.108117. Epub 2023 Feb 20.

Abstract

Living organisms produce a wide range of metabolites. Because of their potential antibacterial, antifungal, antiviral, or cytostatic properties, such natural molecules are of high interest to the pharmaceutical industry. In nature, these metabolites are often synthesized via secondary metabolic biosynthetic gene clusters that are silent under the typical culturing conditions. Among different techniques used to activate these silent gene clusters, co-culturing of "producer" species with specific "inducer" microbes is a particularly appealing approach due to its simplicity. Although several "inducer-producer" microbial consortia have been reported in the literature and hundreds of different secondary metabolites with attractive biopharmaceutical properties have been described as a result of co-cultivating inducer-producer consortia, less attention has been devoted to the understanding of the mechanisms and possible means of induction for production of secondary metabolites in co-cultures. This lack of understanding of fundamental biological functions and inter-species interactions significantly limits the diversity and yield of valuable compounds using biological engineering tools. In this review, we summarize and categorize the known physiological mechanisms of production of secondary metabolites in inducer-producer consortia, and then discuss approaches that could be exploited to optimize the discovery and production of secondary metabolites.

摘要

生物体会产生广泛的代谢产物。由于这些天然分子具有潜在的抗菌、抗真菌、抗病毒或细胞抑制特性,因此受到制药行业的高度关注。在自然界中,这些代谢产物通常通过二次代谢生物合成基因簇合成,而这些基因簇在典型的培养条件下是沉默的。在用于激活这些沉默基因簇的不同技术中,“产生菌”物种与特定“诱导剂”微生物共培养是一种特别有吸引力的方法,因为它简单。尽管文献中已经报道了几种“诱导剂-产生菌”微生物共生体,并且由于共培养诱导剂-产生菌共生体已经描述了数百种具有吸引力的生物制药特性的次级代谢产物,但对于理解共培养中次级代谢产物产生的机制和可能的诱导手段的关注较少。对基本生物学功能和种间相互作用的这种缺乏理解,极大地限制了使用生物工程工具发现和生产有价值化合物的多样性和产量。在这篇综述中,我们总结和分类了诱导剂-产生菌共生体中次级代谢产物产生的已知生理机制,然后讨论了可以利用的方法来优化次级代谢产物的发现和生产。

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