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A Laboratory of Extremophiles: Iceland Coordination Action for Research Activities on Life in Extreme Environments (CAREX) Field Campaign

机译:极端微生物实验室:针对极端环境中生命研究活动的冰岛协调行动(CAREX)野战

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摘要

Existence of life in extreme environments has been known for a long time, and their habitants have been investigated by different scientific disciplines for decades. However, reports of multidisciplinary research are uncommon. In this paper, we report an interdisciplinary three-day field campaign conducted in the framework of the Coordination Action for Research Activities on Life in Extreme Environments (CAREX) FP7EU program, with participation of experts in the fields of life and earth sciences. In situ experiments and sampling were performed in a 20 m long hot springs system of different temperature (57 °C to 100 °C) and pH (2 to 4). Abiotic factors were measured to study their influence on the diversity. The CO2 and H2S concentration varied at different sampling locations in the system, but the SO2 remained the same. Four biofilms, mainly composed by four different algae and phototrophic protists, showed differences in photosynthetic activity. Varying temperature of the sampling location affects chlorophyll fluorescence, not only in the microbial mats, but plants (Juncus), indicating selective adaptation to the environmental conditions. Quantitative polymerase chain reaction (PCR), DNA microarray and denaturing gradient gel electrophoresis (DGGE)-based analysis in laboratory showed the presence of a diverse microbial population. Even a short duration (30 h) deployment of a micro colonizer in this hot spring system led to colonization of microorganisms based on ribosomal intergenic spacer (RISA) analysis. Polyphasic analysis of this hot spring system was possible due to the involvement of multidisciplinary approaches.
机译:人们已经知道极端环境中的生命已经存在很长时间了,几十年来,他们的居住者已经被不同的科学学科研究过。但是,关于多学科研究的报道并不常见。在本文中,我们报告了在生命和地球科学领域的专家参与下,在针对极端环境中的生命的研究活动(CAREX)FP7EU计划的协调行动框架内进行的跨学科的为期三天的野外运动。在20 m长的温泉系统中进行原位实验和取样,该温泉系统的温度不同(57°C至100°C),pH不同(2至4)。测量非生物因素以研究其对多样性的影响。在系统中不同的采样位置,CO2和H2S的浓度有所不同,但SO2保持不变。四种生物膜主要由四种不同的藻类和光养生物组成,它们的光合活性不同。采样位置的温度变化不仅影响微生物垫,还影响植物(菌丝)的叶绿素荧光,表明对环境条件的选择性适应。实验室中的定量聚合酶链反应(PCR),DNA芯片和变性梯度凝胶电泳(DGGE)分析表明存在多种微生物。基于核糖体基因间隔子(RISA)分析,即使在此温泉系统中短时间(30小时)部署微型定植器,也会导致微生物定植。由于涉及多个学科,因此该温泉系统可以进行多相分析。

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