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多极端盐湖中的微生物多样性及其潜在应用。

Microbial diversity in polyextreme salt flats and their potential applications.

机构信息

Laboratory of Environmental Bioprocesses, Centre of Biotechnology of Sfax, BP 1177, 3018, Sfax, Tunisia.

Biotechnology Program, Center for Sustainable Development, College of Arts and Sciences, Qatar University, 2713, Doha, Qatar.

出版信息

Environ Sci Pollut Res Int. 2024 Feb;31(8):11371-11405. doi: 10.1007/s11356-023-31644-9. Epub 2024 Jan 5.

Abstract

Recent geological, hydrochemical, and mineralogical studies performed on hypersaline salt flats have given insights into similar geo-morphologic features on Mars. These salt-encrusted depressions are widely spread across the Earth, where they are characterized by high salt concentrations, intense UV radiation, high evaporation, and low precipitation. Their surfaces are completely dry in summer; intermittent flooding occurs in winter turning them into transitory hypersaline lakes. Thanks to new approaches such as culture-dependent, culture-independent, and metagenomic-based methods, it is important to study microbial life under polyextreme conditions and understand what lives in these dynamic ecosystems and how they function. Regarding these particular features, new halophilic microorganisms have been isolated from some salt flats and identified as excellent producers of primary and secondary metabolites and granules such as halocins, enzymes, carotenoids, polyhydroxyalkanoates, and exopolysaccharides. Additionally, halophilic microorganisms are implemented in heavy metal bioremediation and hypersaline wastewater treatment. As a result, there is a growing interest in the distribution of halophilic microorganisms around the world that can be looked upon as good models to develop sustainable biotechnological processes for all fields. This review provides insights into diversity, ecology, metabolism, and genomics of halophiles in hypersaline salt flats worldwide as well as their potential uses in biotechnology.

摘要

最近对高盐盐湖进行的地质、水化学和矿物学研究,使人们深入了解了火星上类似的地貌特征。这些盐壳覆盖的洼地广泛分布在地球上,其特点是盐浓度高、紫外线辐射强烈、蒸发量大、降水量低。它们的表面在夏季完全干燥;冬季间歇性洪水泛滥,使它们变成短暂的高盐湖泊。由于新的方法,如依赖培养、独立培养和基于宏基因组的方法,研究多极端条件下的微生物生命以及了解生活在这些动态生态系统中的微生物以及它们的功能非常重要。关于这些特殊特征,已经从一些盐滩中分离出了一些耐盐微生物,并被鉴定为主要和次要代谢物以及颗粒(如卤菌素、酶、类胡萝卜素、聚羟基烷酸酯和胞外多糖)的优秀生产者。此外,耐盐微生物还应用于重金属生物修复和高盐废水处理。因此,人们对世界各地耐盐微生物的分布越来越感兴趣,这些微生物可以作为开发所有领域可持续生物技术过程的良好模型。本文综述了全球高盐盐湖中嗜盐微生物的多样性、生态学、代谢和基因组学,以及它们在生物技术中的潜在用途。

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