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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Microbial material cycling, energetic constraints and ecosystem expansion in subsurface ecosystems
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Microbial material cycling, energetic constraints and ecosystem expansion in subsurface ecosystems

机译:地下生态系统中的微生物材料循环,精力充沛的约束和生态系统扩展

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To harvest energy from chemical reactions, microbes engage in diverse catabolic interactions that drive material cycles in the environment. Here, we consider a simple mathematical model for cycling reactions between alternative forms of an element (A and A(e)), where reaction 1 converts A to A(e) and reaction 2 converts A(e) to A. There are two types of microbes: type 1 microbes harness reaction 1, and type 2 microbes harness reaction 2. Each type receives its own catabolic resources from the other type and provides the other type with the by-products as the catabolic resources. Analyses of the model show that each type increases its steady-state abundance in the presence of the other type. The flux of material flow becomes faster in the presence of microbes. By coupling two catabolic reactions, types 1 and 2 can also expand their realized niches through the abundant resource premium, the effect of relative quantities of products and reactants on the available chemical energy, which is especially important for microbes under strong energetic limitations. The plausibility of mutually beneficial interactions is controlled by the available chemical energy (Gibbs energy) of the system. We conclude that mutualistic catabolic interactions can be an important factor that enables microbes in subsurface ecosystems to increase ecosystem productivity and expand the ecosystem.
机译:为了从化学反应中收获能量,微生物在各种分解代谢相互作用中接触,在环境中驱动材料循环。在这里,我们考虑一种简单的数学模型,用于元素(a和a(e))的替代形式之间的循环反应,其中反应1将a转换为a(e)并反应2将(e)转换为a。有两个微生物类型:1型微生物线束反应1,2型微生物线束反应2.每种类型从其他类型接收其自己的分解代谢资源,并提供其他类型的副产物作为分解资源。模型的分析表明,每种类型在其他类型的存在下增加其稳态丰度。在微生物存在下,物质流动的磁通量变得更快。通过偶联两种分解代谢反应,1和2型也可以通过丰富的资源溢价来扩展其实现的利基,相对量的产品和反应物对可用化学能的影响,这对于在强大的能量限制下微生物尤为重要。互利相互作用的合理性由系统的可用化学能(GIBBS能量)控制。我们得出结论,互动的分解代谢相互作用可能是使微生物在地下生态系统中能够增加生态系统生产力并扩大生态系统的重要因素。

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