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从阿塔卡马盐湖分离出的一种非海洋生物中温度与盐度耐受性相互作用及色素沉着的生态连贯性

The Ecological Coherence of Temperature and Salinity Tolerance Interaction and Pigmentation in a Non-marine Isolated from Salar de Atacama.

作者信息

Gallardo Karem, Candia Jonathan E, Remonsellez Francisco, Escudero Lorena V, Demergasso Cecilia S

机构信息

Centro de Biotecnología, Universidad Católica del Norte Antofagasta, Chile.

Departamento de Ingeniería Química, Universidad Católica del Norte Antofagasta, Chile.

出版信息

Front Microbiol. 2016 Dec 1;7:1943. doi: 10.3389/fmicb.2016.01943. eCollection 2016.

Abstract

The occurrence of microorganisms from the genus in saline lakes from northern Chile had been evidenced using Numerical Taxonomy decades before and, more recently, by phylogenetic analyses of environmental samples and isolates. Most of the knowledge about this genus came from marine isolates and showed temperature and salinity to be integral agents in shaping the niche of the populations. The stress tolerance phenotypes of sp. Teb5a1 isolated from Salar de Atacama was investigated. It was able to grow without NaCl and tolerated up to 100 g/L of the salt. Furthermore, it grew between 17° and 49°C (optimum 30°C) in the absence of NaCl, and the range was expanded into cold temperature (4-49°C) in the presence of the salt. Other additional adaptive strategies were observed in response to the osmotic stress: pigment production, identified as the known antibacterial prodigiosin, swimming and swarming motility and synthesis of a polar flagellum. It is possible to infer that environmental congruence might explain the cellular phenotypes observed in sp. considering that coupling between temperature and salinity tolerance, the production of antibacterial agents at higher temperatures, flagellation and motility increase the chance of sp. to survive in salty environments with high daily temperature swings and UV radiation.

摘要

早在数十年前,通过数值分类法就已证实智利北部盐湖中该属微生物的存在,最近,通过对环境样本和分离株的系统发育分析也证实了这一点。关于该属的大部分知识来自海洋分离株,研究表明温度和盐度是塑造该种群生态位的重要因素。对从阿塔卡马盐湖分离出的Teb5a1菌株的应激耐受表型进行了研究。它能够在无氯化钠的条件下生长,并且能够耐受高达100克/升的盐。此外,在无氯化钠的情况下,它能在17°C至49°C(最适温度30°C)之间生长,在有盐的情况下,其生长温度范围扩大到低温(4°C至49°C)。在应对渗透胁迫时还观察到了其他适应性策略:色素生成,鉴定为已知的抗菌灵菌红素;游动和群体运动;以及合成极生鞭毛。鉴于温度和盐度耐受性之间的耦合、在较高温度下产生抗菌剂、鞭毛形成和运动能力,环境适应性可能解释了在该菌株中观察到的细胞表型,这增加了该菌株在日温度波动大且有紫外线辐射的咸水环境中生存的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/066a/5130992/a035a8db093c/fmicb-07-01943-g001.jpg

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