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环境变化引起的群体基因组组成中的临界点和早期预警信号。

Tipping points and early warning signals in the genomic composition of populations induced by environmental changes.

作者信息

Aguirre Jacobo, Manrubia Susanna

机构信息

Centro de Astrobiología (INTA-CSIC), ctra. de Ajalvir km 4, 28850 Torrejón de Ardoz, Madrid, Spain.

Centro Nacional de Biotecnología, CSIC, c/Darwin 3, 28049 Madrid, Spain.

出版信息

Sci Rep. 2015 May 12;5:9664. doi: 10.1038/srep09664.

Abstract

We live in an ever changing biosphere that faces continuous and often stressing environmental challenges. From this perspective, much effort is currently devoted to understanding how natural populations succeed or fail in adapting to evolving conditions. In a different context, many complex dynamical systems experience critical transitions where their dynamical behaviour or internal structure changes suddenly. Here we connect both approaches and show that in rough and correlated fitness landscapes, population dynamics shows flickering under small stochastic environmental changes, alerting of the existence of tipping points. Our analytical and numerical results demonstrate that transitions at the genomic level preceded by early-warning signals are a generic phenomenon in constant and slowly driven landscapes affected by even slight stochasticity. As these genomic shifts are approached, the time to reach mutation-selection equilibrium dramatically increases, leading to the appearance of hysteresis in the composition of the population. Eventually, environmental changes significantly faster than the typical adaptation time may result in population extinction. Our work points out several indicators that are at reach with current technologies to anticipate these sudden and largely unavoidable transitions.

摘要

我们生活在一个不断变化的生物圈中,它面临着持续且常常具有压力的环境挑战。从这个角度来看,目前人们投入了大量精力来理解自然种群如何成功或未能适应不断演变的环境条件。在另一种背景下,许多复杂的动态系统会经历关键转变,其动态行为或内部结构会突然发生变化。在这里,我们将这两种方法联系起来,并表明在粗糙且相关的适应度景观中,种群动态在小的随机环境变化下会出现闪烁现象,这警示了临界点的存在。我们的分析和数值结果表明,在受哪怕轻微随机性影响的恒定且缓慢驱动的景观中,由早期预警信号预示的基因组水平的转变是一种普遍现象。当接近这些基因组转变时,达到突变 - 选择平衡的时间会大幅增加,导致种群组成出现滞后现象。最终,环境变化速度显著快于典型适应时间可能导致种群灭绝。我们的工作指出了一些现有技术能够达成的指标,以预测这些突然且在很大程度上不可避免的转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7a9/4428070/39ca59bdb18e/srep09664-f1.jpg

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