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探寻微生物生理学原理。

Searching for principles of microbial physiology.

机构信息

Systems Biology Lab, AIMMS, De Boelelaan 1108, 1081 HZ, VU University, Amsterdam, The Netherlands.

Department of Mathematics, De Boelelaan 1111, 1081 HV, VU University, Amsterdam, The Netherlands.

出版信息

FEMS Microbiol Rev. 2020 Nov 24;44(6):821-844. doi: 10.1093/femsre/fuaa034.

Abstract

Why do evolutionarily distinct microorganisms display similar physiological behaviours? Why are transitions from high-ATP yield to low(er)-ATP yield metabolisms so widespread across species? Why is fast growth generally accompanied with low stress tolerance? Do these regularities occur because most microbial species are subject to the same selective pressures and physicochemical constraints? If so, a broadly-applicable theory might be developed that predicts common microbiological behaviours. Microbial systems biologists have been working out the contours of this theory for the last two decades, guided by experimental data. At its foundations lie basic principles from evolutionary biology, enzyme biochemistry, metabolism, cell composition and steady-state growth. The theory makes predictions about fitness costs and benefits of protein expression, physicochemical constraints on cell growth and characteristics of optimal metabolisms that maximise growth rate. Comparisons of the theory with experimental data indicates that microorganisms often aim for maximisation of growth rate, also in the presence of stresses; they often express optimal metabolisms and metabolic proteins at optimal concentrations. This review explains the current status of the theory for microbiologists; its roots, predictions, experimental evidence and future directions.

摘要

为什么进化上不同的微生物表现出相似的生理行为?为什么从高 ATP 产率到低(更低)ATP 产率代谢的转变在物种间如此普遍?为什么快速生长通常伴随着低应激耐受性?这些规律是否是因为大多数微生物物种受到相同的选择压力和物理化学限制?如果是这样,那么可能会发展出一种具有广泛适用性的理论,可以预测常见的微生物行为。微生物系统生物学家在过去二十年中一直在根据实验数据制定这一理论的轮廓。它的基础是来自进化生物学、酶生物化学、代谢、细胞组成和稳态生长的基本原理。该理论对蛋白质表达的适应性成本和收益、细胞生长的物理化学限制以及最大生长速率的最佳代谢特征做出了预测。将该理论与实验数据进行比较表明,微生物通常旨在最大程度地提高生长速率,即使在存在压力的情况下也是如此;它们通常以最佳浓度表达最佳代谢物和代谢蛋白。这篇综述为微生物学家解释了该理论的现状;其根源、预测、实验证据和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/822d/7685786/e2ed25c1b669/fuaa034fig1.jpg

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