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在热液生态系统的化学合成区域,甲酸盐作为微生物代谢的能量来源。

Formate as an energy source for microbial metabolism in chemosynthetic zones of hydrothermal ecosystems.

作者信息

Windman Todd, Zolotova Natalya, Schwandner Florian, Shock Everett L

机构信息

Department of Chemistry & Biochemistry, Arizona State University, Tempe, Arizona 85287, USA.

出版信息

Astrobiology. 2007 Dec;7(6):873-90. doi: 10.1089/ast.2007.0127.

Abstract

Formate, a simple organic acid known to support chemotrophic hyperthermophiles, is found in hot springs of varying temperature and pH. However, it is not yet known how metabolic strategies that use formate could contribute to primary productivity in hydrothermal ecosystems. In an effort to provide a quantitative framework for assessing the role of formate metabolism, concentration data for dissolved formate and many other solutes in samples from Yellowstone hot springs were used, together with data for coexisting gas compositions, to evaluate the overall Gibbs energy for many reactions involving formate oxidation or reduction. The result is the first rigorous thermodynamic assessment of reactions involving formate oxidation to bicarbonate and reduction to methane coupled with various forms of iron, nitrogen, sulfur, hydrogen, and oxygen for hydrothermal ecosystems. We conclude that there are a limited number of reactions that can yield energy through formate reduction, in contrast to numerous formate oxidation reactions that can yield abundant energy for chemosynthetic microorganisms. Because the energy yields are so high, these results challenge the notion that hydrogen is the primary energy source of chemosynthetic microbes in hydrothermal ecosystems.

摘要

甲酸盐是一种已知可支持化学营养型嗜热微生物的简单有机酸,存在于不同温度和pH值的温泉中。然而,利用甲酸盐的代谢策略如何促进热液生态系统中的初级生产力,目前尚不清楚。为了提供一个评估甲酸盐代谢作用的定量框架,研究人员使用了黄石温泉样品中溶解甲酸盐和许多其他溶质的浓度数据,以及共存气体成分的数据,来评估许多涉及甲酸盐氧化或还原反应的总吉布斯自由能。结果是对热液生态系统中涉及甲酸盐氧化为碳酸氢盐以及还原为甲烷并与各种形式的铁、氮、硫、氢和氧耦合的反应进行了首次严格的热力学评估。我们得出结论,与众多可为化学合成微生物产生大量能量的甲酸盐氧化反应相比,通过甲酸盐还原产生能量的反应数量有限。由于能量产量如此之高,这些结果挑战了氢气是热液生态系统中化学合成微生物主要能量来源的观点。

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