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生命、死亡与能量:自然选择什么?

Life, Death and Energy: What Does Nature Select?

机构信息

Department of Biology, University of New Mexico, Albuquerque, New Mexico, USA.

Department of Biological Sciences, Missouri University of Science and Technology, Rolla, Missouri, USA.

出版信息

Ecol Lett. 2024 Oct;27(10):e14517. doi: 10.1111/ele.14517.

Abstract

Evolutionary biology is poised for a third major synthesis. The first presented Darwin's evidence from natural history. The second incorporated genetic mechanisms. The third will be based on energy and biophysical processes. It should include the equal fitness paradigm (EFP), which quantifies how organisms convert biomass into surviving offspring. Natural selection tends to maximise energetic fitness, , where is mass-specific rate of cohort biomass production, is generation time, is fraction of cohort production that is passed to surviving offspring, and is energy density of biomas. At steady state, parents replace themselves with offspring of equal mass-specific energy content,  ≈ 22.4 kJ/g, and biomass,  ≈ 1 g/g. The EFP highlights: (i) the energetic basis of survival and reproduction; (ii) how natural selection acts directly on the parameters of ; (iii) why there is no inherent intrinsic fitness advantage for higher metabolic power, ontogenetic or population growth rate, fecundity, longevity, or resource use efficiency; and (iv) the role of energy in animals with a variety of life histories. Underlying the spectacular diversity of living things is pervasive similarity in how energy is acquired from the environment and used to leave descendants offspring in future generations.

摘要

进化生物学即将迎来第三次重大综合。第一次综合呈现了达尔文从自然历史中得出的证据。第二次综合纳入了遗传机制。第三次综合将基于能量和生物物理过程。它应该包括等同适存范式(EFP),它量化了生物体如何将生物量转化为存活后代。自然选择倾向于最大化能量适存性,其中是特定质量的群体生物量产生率,是世代时间,是传递给存活后代的群体生产的分数,是生物量的能量密度。在稳定状态下,父母用具有相等质量特异性能量含量的后代来替代自己,,而生物量,。EFP 强调了:(i)生存和繁殖的能量基础;(ii)自然选择如何直接作用于参数;(iii)为什么更高的代谢功率、个体发育或种群增长率、繁殖力、寿命或资源利用效率没有内在的固有适存优势;以及(iv)能量在具有各种生活史的动物中的作用。在生物多样性的背后,是从环境中获取能量并用于在未来几代留下后代的普遍相似性。

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