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来自安第斯山脉高海拔湖泊的多极端嗜热细菌:抗砷特性及生物膜形成

Polyextremophilic Bacteria from High Altitude Andean Lakes: Arsenic Resistance Profiles and Biofilm Production.

作者信息

Zannier Federico, Portero Luciano Raúl, Ordoñez Omar Federico, Martinez Luciano José, Farías María Eugenia, Albarracin Virginia Helena

机构信息

Laboratorio de Investigaciones Microbiológicas de Lagunas Andinas (LIMLA), Planta Piloto de Procesos Industriales y Microbiológicos (PROIMI), CCT, CONICET, Av. Belgrano y Pasaje Caseros, 4000 San Miguel de Tucumán, Argentina.

Centro de Investigaciones y Servicios de Microscopía Electrónica (CISME), CCT-CONICET Tucumán-Universidad Nacional de Tucumán, Finca El Manantial, Camino de Sirga, 4107 Yerba Buena, Tucumán, Argentina.

出版信息

Biomed Res Int. 2019 Feb 21;2019:1231975. doi: 10.1155/2019/1231975. eCollection 2019.

Abstract

High levels of arsenic present in the High Altitude Andean Lakes (HAALs) ecosystems selected arsenic-resistant microbial communities which are of novel interest to study adaptations mechanisms potentially useful in bioremediation processes. We herein performed a detailed characterization of the arsenic tolerance profiles and the biofilm production of two HAAL polyextremophiles, sp. Ver3 (Ver3) and sp. S17 (S17). Cellular adherence over glass and polypropylene surfaces were evaluated together with the effect of increasing doses and oxidative states of arsenic over the quality and quantity of their biofilm production. The arsenic tolerance outcomes showed that HAAL strains could tolerate higher arsenic concentrations than phylogenetic related strains belonging to the German collection of microorganisms and cell cultures (Deutsche Sammlung von Mikroorganismen und Zellkulturen, DSMZ), which suggest adaptations of HAAL strains to their original environment. On the other hand, the crystal violet method (CV) and SEM analysis showed that Ver3 and S17 were able to attach to solid surfaces and to form the biofilm. The quantification of biofilms production in 48 hours' cultures through CV shows that Ver3 yielded higher production in the treatment without arsenic cultured on a glass support, while S17 yield higher biofilm production under intermediate arsenic concentration on glass supports. Polypropylene supports had negative effects on the biofilm production of Ver3 and S17. SEM analysis shows that the highest biofilm yields could be associated with a larger number of attached cells as well as the development of more complex 3D multicellular structures.

摘要

高海拔安第斯湖泊(HAALs)生态系统中存在的高浓度砷筛选出了抗砷微生物群落,这对于研究可能在生物修复过程中有用的适应机制具有新的意义。我们在此对两种HAAL多极端嗜热菌Ver3菌株(Ver3)和S17菌株(S17)的耐砷谱和生物膜产生进行了详细表征。评估了它们在玻璃和聚丙烯表面的细胞粘附情况,以及砷剂量增加和氧化态变化对其生物膜产生的质量和数量的影响。耐砷结果表明,与德国微生物和细胞培养物保藏中心(Deutsche Sammlung von Mikroorganismen und Zellkulturen, DSMZ)的系统发育相关菌株相比,HAAL菌株能够耐受更高的砷浓度,这表明HAAL菌株对其原始环境具有适应性。另一方面,结晶紫法(CV)和扫描电子显微镜(SEM)分析表明,Ver3和S17能够附着在固体表面并形成生物膜。通过CV对48小时培养物中的生物膜产生进行定量分析表明,Ver3在玻璃载体上无砷培养的处理中产生量更高,而S17在玻璃载体上中等砷浓度下产生更高的生物膜量。聚丙烯载体对Ver3和S17的生物膜产生有负面影响。SEM分析表明,最高的生物膜产量可能与更多附着细胞以及更复杂的三维多细胞结构的形成有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03dc/6409018/38cbbb5dffb6/BMRI2019-1231975.001.jpg

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