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分子与进化生物学的熵视角。

Entropy Perspectives of Molecular and Evolutionary Biology.

机构信息

Department of Life Sciences, University of Alcalá, 28805 Alcalá de Henares, Madrid, Spain.

出版信息

Int J Mol Sci. 2022 Apr 7;23(8):4098. doi: 10.3390/ijms23084098.

Abstract

Attempts to find and quantify the supposed low entropy of organisms and its preservation are revised. The absolute entropy of the mixed components of non-living biomass (approximately -1.6 × 10 J K L) is the reference to which other entropy decreases would be ascribed to life. The compartmentation of metabolites and the departure from the equilibrium of metabolic reactions account for reductions in entropy of 1 and 40-50 J K L, respectively, and, though small, are distinctive features of living tissues. DNA and proteins do not supply significant decreases in thermodynamic entropy, but their low informational entropy is relevant for life and its evolution. No other living feature contributes significantly to the low entropy associated with life. The photosynthetic conversion of radiant energy to biomass energy accounts for most entropy (2.8 × 10 J K carbon kg) produced by living beings. The comparatively very low entropy produced in other processes (approximately 4.8 × 10 J K L day in the human body) must be rapidly exported outside as heat to preserve low entropy decreases due to compartmentation and non-equilibrium metabolism. Enzymes and genes are described, whose control minimizes the rate of production of entropy and could explain selective pressures in biological evolution and the rapid proliferation of cancer cells.

摘要

尝试寻找并量化生物体所谓的低熵及其保存情况的研究被修正。非生命生物量混合成分的绝对熵(约-1.6×10^19 J K^-1 L)是其他熵减少归因于生命的参考值。代谢物的区室化和代谢反应的远离平衡状态分别导致熵减少 1 和 40-50 J K^-1 L,尽管很小,但却是活组织的独特特征。DNA 和蛋白质不会导致热力学熵的显著减少,但它们的低信息熵与生命及其进化有关。没有其他生命特征对与生命相关的低熵有显著贡献。光合作用将辐射能转化为生物质能,占生物产生的大部分熵(2.8×10^19 J K^-1碳 kg)。其他过程产生的熵相对非常低(人体中约为 4.8×10^19 J K^-1 L 天),必须迅速以热量形式排出体外,以保持由于区室化和非平衡代谢导致的低熵减少。描述了酶和基因,它们的控制将熵的产生速率最小化,这可以解释生物进化中的选择压力和癌细胞的快速增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c49/9029946/90f917ed152e/ijms-23-04098-g001.jpg

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