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环境稳定性及其对达尔文进化论出现的重要性。

Environmental Stability and Its Importance for the Emergence of Darwinian Evolution.

作者信息

Daga Khushi R, Feray Çoşar Mensura, Lowenkron Abigail, Hao Jihua, Rouillard Joti

机构信息

Blue Marble Space Institute of Science, Seattle, WA 98104, USA.

Deep Space Exploration Laboratory/CAS Key Laboratory of Crust-Mantle Materials and Environments, University of Science and Technology of China, Hefei 230026, China.

出版信息

Life (Basel). 2023 Sep 25;13(10):1960. doi: 10.3390/life13101960.

Abstract

The emergence of Darwinian evolution represents a central point in the history of life as we know it. However, it is generally assumed that the environments in which life appeared were hydrothermal environments, with highly variable conditions in terms of pH, temperature or redox levels. Are evolutionary processes favored to appear in such settings, where the target of biological adaptation changes over time? How would the first evolving populations compete with non-evolving populations? Using a numerical model, we explore the effect of environmental variation on the outcome of the competition between evolving and non-evolving populations of protocells. Our study found that, while evolving protocells consistently outcompete non-evolving populations in stable environments, they are outcompeted in variable environments when environmental variations occur on a timescale similar to the average duration of a generation. This is due to the energetic burden represented by adaptation to the wrong environmental conditions. Since the timescale of temperature variation in natural hydrothermal settings overlaps with the average prokaryote generation time, the current work indicates that a solution must have been found by early life to overcome this threshold.

摘要

正如我们所知,达尔文进化论的出现是生命史上的一个核心要点。然而,人们普遍认为生命出现时的环境是热液环境,其pH值、温度或氧化还原水平等条件变化很大。在这样的环境中,生物适应的目标会随时间变化,进化过程是否更有利于出现呢?最早进化的种群将如何与未进化的种群竞争?我们使用一个数值模型,探究了环境变化对进化的原始细胞种群与未进化的原始细胞种群之间竞争结果的影响。我们的研究发现,虽然在稳定环境中,进化的原始细胞始终比未进化的种群更具竞争力,但当环境变化发生的时间尺度与一代的平均持续时间相似时,它们在多变环境中会被超越。这是由于适应错误环境条件所带来的能量负担。由于自然热液环境中的温度变化时间尺度与原核生物的平均世代时间重叠,当前的研究表明早期生命必定已经找到了克服这一阈值的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/965c/10608181/7375df0079e7/life-13-01960-g001.jpg

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