A Review on Bio Prospective Potential of Corynebacterium glutamicum

Asfaw Tora Kacho B.S.R. Pattnaik
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Abstract

Corynebacterium glutamicumis a nonpathogenic, aerobic, gram-positive soil bacterium used for the large-scale biotechnological production of several biomolecules. C. glutamicum is an industrial microbe traditionally used for the production of amino acids. It is a well known microbe as the workhorse in fermentation industry used since its first discovery in Japan in 1950s for production of monosodium glutamate (MSG)and L-lysine with a market size of 3.1 and 2.2 million. However, for the fermentative production of diverse products through genetic–metabolic engineering. Due to its industrial importance, several clones of C. glutamicum have been sequenced by both industry and academic groups. Furthermore it has also been exploited for the synthesis of a variety of other fuels and chemicals. Especially, the facultative anaerobic lifestyle of this Gram-positive bacterium formed the basis to engineer C. glutamicum for the production of reduced molecules such as organic acids (e.g., lactate, succinate) and alcohols (e.g., ethanol, isobutanol) under zero-growth anaerobic conditions. The present work is a review of various uses of C. glutamicum for which the researchers explored several resources including the PubMed database, Journals and online archives upto March 2019. The review in its analysis signifies the vital utility of C. glutamicum in various prospective. Most articles were on occurrence, metabolism, metabolic role, and industrial uses of bacterial polyhydroxyalkanoates. Through genetic alterations, this microbe showed its efficacy for the simultaneous utilization of hexose and pentose sugars of biomass hydrolysate for making value-added products, such as amino acids and polyamines, and thus making it a strain of choice to work in a bio-refinery concept. This soil microbe also showed its efficacy in bioremediation purposes, such as arsenic removal. Recently its extensive research has focused on engineering beyond the scope of amino acids for utilization of alternative carbon sources, (e.g. coming from wastes and unprocessed sources), and construction of C. glutamicum strains for production of new products such as diamines, organic acids and alcohols. Meanwhile, a variety of corynebacterial strains allows access to alternative carbon sources that allows production of a wide range of industrially relevant compounds. Some of these efforts set new standards in terms of titers and productivities achieved whereas others represent a proof-of-principle. These achievements manifest the position of C. glutamicum as an important industrial microorganism with capabilities far beyond the traditional amino acid production. According to the studies cited in different literatures C. glutamicum reported as the most effective and playing important roles as dominant bacteria in biotechnological applications as well as industrial processes and products. And, with recent advances in biotechnology, the economic contributions that these organisms can make in biotechnological applications and industrial processes can be exploited further for large scale benefit of mankind.
谷氨酸棒状杆菌生物前景研究进展
谷氨酸棒状杆菌是一种非致病性、需氧、革兰氏阳性的土壤细菌,用于大规模生物技术生产几种生物分子。谷氨酸梭菌是一种传统上用于生产氨基酸的工业微生物。它是20世纪50年代在日本首次发现的用于生产味精(MSG)和赖氨酸(l -赖氨酸)的发酵工业的主力微生物,市场规模分别为310万和220万。然而,对于通过基因代谢工程发酵生产多种产品。由于其在工业上的重要性,工业界和学术界已经对谷氨酰胺的几个克隆进行了测序。此外,它还被用于合成各种其他燃料和化学品。特别是,这种革兰氏阳性细菌的兼性厌氧生活方式为设计C. glutamicum在零生长厌氧条件下生产有机酸(如乳酸、琥珀酸)和醇(如乙醇、异丁醇)等还原性分子奠定了基础。目前的工作是对C. glutamicum的各种用途的回顾,研究人员为此探索了几种资源,包括PubMed数据库、期刊和截至2019年3月的在线档案。对其分析的综述表明了谷氨酰胺在各个方面的重要应用前景。大多数文章是关于细菌聚羟基烷酸酯的发生、代谢、代谢作用和工业用途。通过基因改变,这种微生物显示出同时利用生物质水解液中的己糖和戊糖制造附加值产品(如氨基酸和多胺)的功效,从而使其成为生物精炼厂概念中的首选菌株。该土壤微生物在除砷等生物修复方面也表现出了良好的效果。最近,其广泛的研究集中在氨基酸范围之外的工程利用替代碳源(例如来自废物和未加工的来源),以及C. glutamum菌株的构建,以生产新产品,如二胺,有机酸和醇。与此同时,多种棒状杆菌菌株可以获得替代碳源,从而可以生产各种工业相关化合物。其中一些工作在效价和生产率方面设定了新的标准,而另一些则代表了原理证明。这些成果表明,谷氨酰胺是一种重要的工业微生物,其能力远远超出了传统的氨基酸生产。根据不同文献的研究,谷氨酰胺是生物技术应用和工业生产过程中最有效和最重要的优势菌。而且,随着生物技术的最新进展,这些生物在生物技术应用和工业过程中所能作出的经济贡献可以进一步开发,为人类带来大规模的利益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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