首页> 外文期刊>African Journal of Microbiology Research >Prokaryotic biodiversity of halophilic microorganisms isolated from Sehline Sebkha Salt Lake (Tunisia)
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Prokaryotic biodiversity of halophilic microorganisms isolated from Sehline Sebkha Salt Lake (Tunisia)

机译:从Sehline Sebkha Salt Lake(突尼斯)分离的嗜盐微生物的原核生物多样性

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摘要

North of Tunisia consists of numerous ecosystems including extreme hypersaline environments in which the microbial diversity has been poorly studied. The Sehline Sebkha is an important source of salt for food. Due to its economical importance with regards to its salt value, a microbial survey has been conducted. The purpose of this research was to examine the phenotypic features as well as the physiological and biochemical characteristics of the microbial diversity of this extreme ecosystem, with the aim of screening for metabolites of industrial interest. Four samples were obtained from 4 saline sites for physico-chemical and microbiological analyses. All samples studied were hypersaline (NaCl concentration ranging from 150 to 260 g/L). A specific halophilic microbial community was recovered from each site and initial characterization of isolated microorganisms was performed by using both phenotypic and phylogenetic approaches. The 16S rRNA genes from 77 bacterial strains and two archaeal strains were isolated and phylogenetically analyzed and belonged to two phyla Firmicutes and gamma-proteobacteria of the domain Bacteria. The results show that the Sehline Lake harbored novel prokaryotic diversity, never reported before for solar salterns. In addition, diversity measurement indicated an increase of bacterial diversity with rising salinity gradient, which is probably due to competition between bacteria and others species.
机译:突尼斯北部由众多生态系统组成,包括极端高盐环境,对微生物多样性的研究很少。 Sehline Sebkha是食物中盐的重要来源。由于其在盐值方面的经济重要性,因此进行了微生物调查。这项研究的目的是检查这种极端生态系统的微生物多样性的表型特征以及生理生化特征,目的是筛选具有工业价值的代谢物。从4个盐水位点获得了4个样品,用于理化和微生物分析。研究的所有样品均为高盐(NaCl浓度范围为150至260 g / L)。从每个位点回收一个特定的嗜盐微生物群落,并使用表型和系统发育方法对分离的微生物进行初步鉴定。分离并分析了来自77个细菌菌株和两个古细菌菌株的16S rRNA基因,并且属于细菌域的两个门菌纲和γ-蛋白细菌。结果表明,Sehline湖具有新颖的原核生物多样性,这是以前从未见过的太阳盐沼的报道。此外,多样性测量表明,随着盐度梯度的增加,细菌多样性增加,这可能是由于细菌与其他物种之间的竞争所致。

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