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宏基因组学及其从碱性盐湖环境中回收酶基因。

Metagenomics and recovery of enzyme genes from alkaline saline environments.

机构信息

Department of Infection, Immunity and Inflammation, The University of Leicester, Leicester LE1 9HN, UK.

出版信息

Environ Technol. 2010 Sep;31(10):1135-43. doi: 10.1080/09593331003646661.

Abstract

Enzymes functioning at alkaline pH are widely used in the detergent industry as additives to improve the stain removal properties of domestic and industrial cleaning products. This industry provides by far the major mass market for enzymes. With constantly changing formulations in detergents and concerns over energy demands, new and improved enzymes are constantly in demand. Soda lakes host dense populations of alkali-loving microbes and, as such, provide vast reservoirs of potentially useful enzymes for such an industry. Traditional recovery methods for new enzymes have involved the isolation of microbes, preferably from a compatible chemical environment such as a soda lake, followed by screening of the isolates for useful enzymic activity. At least two commercially significant enzymes originating from soda lake microbes have been marketed following this route. However, the failure to cultivate more than a small percentage of microbes from most environments necessarily markedly reduces the recovery of new enzymes. In recent years, interest has focussed on more comprehensive recovery methods based around detecting appropriate enzyme genes in nucleic acids extracted from potentially useful sites, thus maximizing coverage of the whole genetic resource in a particular biotope. Here we review progress to date in soda lake biotopes and discuss ways the field may develop in the future.

摘要

在碱性 pH 值下发挥作用的酶被广泛应用于洗涤剂行业,作为添加剂来提高家用和工业清洁产品的去污性能。这个行业提供了迄今为止主要的大众市场的酶。随着洗涤剂配方的不断变化以及对能源需求的关注,新的和改进的酶不断受到需求。苏打湖拥有密集的嗜碱微生物种群,因此为这种工业提供了大量潜在有用的酶。传统的新酶回收方法涉及微生物的分离,最好是从类似于苏打湖的相容化学环境中分离,然后对分离物进行有用酶活性的筛选。至少有两种来自苏打湖微生物的商业上重要的酶就是通过这种途径上市的。然而,由于大多数环境中只能培养出不到一小部分微生物,这必然大大减少了新酶的回收。近年来,人们的兴趣集中在更全面的回收方法上,这些方法基于从潜在有用的地点提取的核酸中检测到合适的酶基因,从而最大限度地覆盖特定生物区系中的整个遗传资源。在这里,我们回顾了迄今为止在苏打湖生物区系方面的进展,并讨论了该领域未来可能的发展方向。

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