A Review: Klebsiella pneumoniae, Klebisellaoxytoca and Biotechnology

C. Tomulescu, M. Moscovici, I. Lupescu, R. Stoica, A. Vamanu
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引用次数: 4

Abstract

Biotechnology, molecular biology and genetic engineering, and bioprospecting play a crucial role in our common future, enabling industrially important microorganisms to ensure sustainable products (fuels, chemicals, pharmaceuticals, food, drug delivery systems, medical devices etc.) and new bioeconomic opportunities. Biotechnological applications are able to provide cost-effective green alternatives to conventional industrial processes, which are currently affecting the nature and biodiversity. Klebsiella species are among the well-studied microbes both in medicine field, as ones of the most resilient opportunistic pathogens, and in industry, due to their promising biochemical properties, and their potential as better hosts than other microorganisms, for i.e. in genetic manipulation. Klebsiella oxytoca and Klebsiella pneumoniae are ubiquitously found in natural environments, but also as commensals in the human gut, and associated with a high-resistance to the first-line antibiotics. However, these specific strains are continuously isolated and studied for different industrial purposes (i.e. bulk chemicals and biofuels production, medical diagnosis, nanoparticles and exopolysaccharides synthesis, plant growth promoting activities, bioremediation and biodegradation agents etc.), and scientific results regarding their biotechnological potential could generate big impact for global bioeconomy development. Recently, research in synthetic biology gained a lot of attention, and new techniques highlight ways to reprogramme these microbial cells in view of high-yield or high-quality new chemicals obtainment. Therefore, some scientific research niches are emerging in biotechnology, and unknown metabolic pathways and genes are identified and further studied, to provide alternative solutions to the global challenges.
肺炎克雷伯菌、氧化克雷伯杆菌与生物技术综述
生物技术、分子生物学和基因工程以及生物勘探在我们共同的未来中发挥着至关重要的作用,使工业上重要的微生物能够确保可持续的产品(燃料、化学品、药品、食品、药物输送系统、医疗器械等)和新的生物经济机会。生物技术应用能够为目前正在影响自然和生物多样性的传统工业过程提供具有成本效益的绿色替代品。克雷伯菌是医学界和工业界研究得很好的微生物之一,是最具弹性的机会病原体之一,因为它们具有良好的生化特性,并且有可能成为比其他微生物更好的宿主,例如在基因操纵方面。氧化克雷伯菌和肺炎克雷伯杆菌在自然环境中普遍存在,但在人类肠道中也是共生菌,并与对一线抗生素的高耐药性有关。然而,这些特定菌株被不断分离和研究用于不同的工业目的(即散装化学品和生物燃料生产、医学诊断、纳米颗粒和胞外多糖合成、植物生长促进活性、生物修复和生物降解剂等),关于其生物技术潜力的科学结果可能会对全球生物经济发展产生重大影响。最近,合成生物学的研究获得了很多关注,新技术强调了从获得高产或高质量新化学物质的角度重新编程这些微生物细胞的方法。因此,生物技术中出现了一些科学研究领域,并确定和进一步研究了未知的代谢途径和基因,为应对全球挑战提供了替代解决方案。
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来源期刊
Romanian Biotechnological Letters
Romanian Biotechnological Letters 生物-生物工程与应用微生物
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