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Mesophilic mineral-weathering bacteria inhabit the critical-zone of a perennially cold basaltic environment

机译:嗜温矿物风化细菌栖息在常年寒冷的玄武岩环境的临界区

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摘要

The weathering of silicate in the world’s critical-zone (rock-soil interface) is a natural mechanism providing a feedback on atmospheric CO2 concentrations through the carbonate-silicate cycle. We examined culturable bacterial communities from a critical-zone in western Iceland to determine the optimum growth temperature, ability to solubilise phosphate-containing minerals, which are abundant within the critical-zone area examined here. The majority of isolated bacteria were able to solubilize mineral-state phosphate. Almost all bacterial isolates were mesophilic (growth optima of 20-45°C), despite critical-zone temperatures that were continuously below 15°C, although all isolates could grow at temperatures associated with the critical-zone (-2.8 – 13.1°C). Only three isolates were shown to have thermal optima for growth that were within temperatures experienced at the critical-zone. These findings show that the bacteria that inhabit the western Icelandic critical-zone have temperature growth optima suboptimally adapted to their environment, implying that other adaptations may be more important for their long-term persistence in this environment. Moreover, our study showed that the cold basaltic critical-zone is a region of active phosphate mineral-weathering.
机译:世界上关键区域(岩石-土壤界面)中硅酸盐的风化是一种自然机制,可通过碳酸盐-硅酸盐循环提供有关大气中二氧化碳浓度的反馈。我们检查了冰岛西部关键区域的可培养细菌群落,以确定最佳生长温度,增溶含磷酸盐矿物质的能力,这些矿物质在此处研究的关键区域内丰富。大多数分离出的细菌能够溶解矿物态的磷酸盐。尽管临界区温度持续低于15°C,几乎所有细菌分离株都是嗜温的(生长最适温度为20-45°C),尽管所有分离株都可以在与临界区相关的温度(-2.8 – 13.1°C)下生长)。仅显示了三个分离株具有在临界区所经历的温度范围内的生长最佳温度。这些发现表明,居住在冰岛西部临界区的细菌对环境的温度增长的优化低于其环境,这意味着其他适应性条件对于它们在该环境中的长期持久性可能更为重要。此外,我们的研究表明,寒冷的玄武岩临界区是活性磷酸盐矿物风化的区域。

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