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Biological energy requirements as quantitative boundary conditions for life in the subsurface

机译:生物能量需求作为地下生命的定量边界条件

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摘要

All life requires energy, which must be extracted from the environment. For all known life, free energy must be available at finite minimum levels in order to be usefully harnessed and must be delivered at finite minimum rates in order to support basic biochemical integrity and function. While seldom tested in the high energy light- and oxygen-based metabolisms of the surface biosphere, the magnitude of these requirements - the biological energy quantum (BEQ) and maintenance energy (ME) requirements,respectively - is considerable with respect to the potential metabolisms and energy sources that characterize the deep subsurface realm. As such, they constitute a fundamental constraint on the possible nature, distribution, and activity of microbial life in that environment. Because the energy released in a chemical transformation can be equated to the concentrations of substrates and products, both the BEQ and ME requirements define the minimum substrate concentration and minimum substrate productionrate that must be sustained by a given environment for it to be capable of supporting life. The magnitudes of the BEQ and ME requirements are sensitive to a range of environmental parameters that may vary significantly in the subsurface. Temperature exerts a particularly strong control and is among the most important parameters to be considered in evaluating the energetic habitability of subsurface environments.
机译:所有生命都需要能量,必须从环境中提取能量。对于所有已知生命,必须以有限的最小水平提供自由能量,以进行有效利用,并且必须以有限的最小速率进行释放,以支持基本的生化完整性和功能。尽管很少在表面生物圈的高能量基于光和氧的新陈代谢中进行测试,但这些要求的大小-分别是生物能量子(BEQ)和维持能(ME)要求-对于潜在的新陈代谢而言是相当可观的以及表征深层地下领域的能源。这样,它们构成了对该环境中微生物生命的可能性质,分布和活动的根本限制。由于化学转化中释放的能量可以等于底物和产品的浓度,因此BEQ和ME要求都定义了在给定环境下必须能够维持的最低底物浓度和最小底物生产率,以使其能够维持生命。 BEQ和ME要求的大小对地下环境中可能发生显着变化的一系列环境参数敏感。温度具有特别强的控制能力,是评估地下环境的高能适居性时要考虑的最重要参数之一。

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