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首页> 外文期刊>BioMed research international >An Insight into the '-Omics' Based Engineering of Streptomycetes for Secondary Metabolite Overproduction
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An Insight into the '-Omics' Based Engineering of Streptomycetes for Secondary Metabolite Overproduction

机译:对基于“ -Omics”的链霉菌二次代谢产物过量生产工程的见解

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摘要

Microorganisms produce a range of chemical substances representing a vast diversity of fascinating molecular architectures not available in any other system. Among them, Streptomyces are frequently used to produce useful enzymes and a wide variety of secondary metabolites with potential biological activities. Streptomyces are preferred over other microorganisms for producing more than half of the clinically useful naturally originating pharmaceuticals. However, these compounds are usually produced in very low amounts (or not at all) under typical laboratory conditions. Despite the superiority of Streptomyces, they still lack well documented genetic information and a large number of in-depth molecular biological tools for strain improvement. Previous attempts to produce high yielding strains required selection of the genetic material through classical mutagenesis for commercial production of secondary metabolites, optimizing culture conditions, and random selection. However, a profound effect on the strategy for strain development has occurred with the recent advancement of whole-genome sequencing, systems biology, and genetic engineering. In this review, we demonstrate a few of the major issues related to the potential of "-omics" technology (genomics, transcriptomics, proteomics, and metabolomics) for improving streptomycetes as an intelligent chemical factory for enhancing the production of useful bioactive compounds.
机译:微生物会产生一系列化学物质,这些化学物质代表着任何其他系统都无法提供的令人着迷的迷人分子结构。其中,链霉菌常用于产生有用的酶和具有潜在生物学活性的多种次级代谢产物。链霉菌优于其他微生物,因为它可生产超过一半的临床上有用的天然来源药物。但是,这些化合物通常在典型的实验室条件下以非常低的量(或根本没有)产生。尽管链霉菌具有优越性,但它们仍然缺乏有据可查的遗传信息和大量用于菌株改良的深入分子生物学工具。先前生产高产菌株的尝试要求通过经典诱变方法选择遗传物质,以商业化生产次级代谢产物,优化培养条件和随机选择。但是,随着全基因组测序,系统生物学和基因工程的最新发展,对菌株开发策略产生了深远的影响。在这篇综述中,我们展示了一些与“-组学”技术(基因组学,转录组学,蛋白质组学和代谢组学)的潜力相关的几个主要问题,这些技术可以改善链霉菌素,作为智能化工厂来提高有用的生物活性化合物的生产。

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