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Ubiquity, diversity and physiological characteristics of Geodermatophilaceae in Shapotou National Desert Ecological Reserve

机译:沙坡头国家沙漠生态保护区嗜地皮科的普遍性,多样性和生理特性

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摘要

The goal of this study was to gain insight into the diversity of culturable actinobacteria in desert soil crusts and to determine the physiological characteristics of the predominant actinobacterial group in these crusts. Culture-dependent method was employed to obtain actinobacterial strains from desert soil samples collected from Shapotou National Desert Ecological Reserve (NDER) located in Tengger Desert, China. A total of 376 actinobacterial strains were isolated and 16S rRNA gene sequences analysis indicated that these isolates belonged to 29 genera within 18 families, among which the members of the family Geodermatophilaceae were predominant. The combination of 16S rRNA gene information and the phenotypic data allowed these newly-isolated Geodermatophilaceae members to be classified into 33 “species clusters,” 11 of which represented hitherto unrecognized species. Fermentation broths from 19.7% of the isolated strains showed activity in at least one of the six screens for antibiotic activity. These isolates exhibited bio-diversity in enzymatic characteristics and carbon utilization profiles. The physiological characteristics of the isolates from different types of crusts or bare sand samples were specific to their respective micro-ecological environments. Our study revealed that members of the family Geodermatophilaceae were ubiquitous, abundant, and diverse in Shapotou NDER, and these strains may represent a new major group of potential functional actinobacteria in desert soil.
机译:这项研究的目的是了解荒漠土壤结皮中可培养的放线菌的多样性,并确定这些结皮中主要的放线菌群的生理特征。采用文化依赖的方法,从位于中国腾格里沙漠的沙坡头国家沙漠生态保护区(NDER)收集的沙漠土壤样品中获得放线菌菌株。共分离到376株放线菌,16S rRNA基因序列分析表明,这些菌株属于18个科的29属,其中以嗜地皮科为主要成员。结合16S rRNA基因信息和表型数据,可以将这些新近分离的嗜地皮科成员划分为33个“物种簇”,其中11个代表迄今尚未被认识的物种。来自19.7%分离菌株的发酵液在六种抗生素活性筛选中至少一种显示出活性。这些分离物在酶学特征和碳利用率方面表现出生物多样性。来自不同类型的硬皮或裸砂样品的分离物的生理特征是它们各自的微生态环境所特有的。我们的研究显示,沙坡头NDER中的嗜地球芽孢杆菌科成员无处不在,丰富而多样,这些菌株可能代表了沙漠土壤中潜在的功能放线菌的新的主要群体。

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