有限种群的生态进化动力学和噪音诱导的选择逆转
The American naturalist
|December 24, 2024
概括
人口随机性,或随机的环境波动,可以在有限的种群中推动进化的意想不到的方向. 这种"噪音诱导的偏见"甚至可以有利于反对自然选择的特征,改变进化轨迹.
科学领域:
- 人口生物学 人口生物学
- 进化的动力学.
- 理论生态学理论生态学
背景情况:
- 人口随机性显著影响有限种群的进化动态.
- 由于随机效应,自然选择不利的特征的频率可能会增加.
- 以前的研究强调了随机性对进化轨迹的影响.
研究的目的:
- 用人口统计学第一原则分析地描述有限种群中的生态进化动态.
- 为了研究噪音诱导的影响如何改变随机大小波动的人群的进化命运.
- 为了解随机性和选择的相互作用,得出一个一般的框架.
主要方法:
- 从一个通用的出生死亡过程中推导随机微分方程 (SDEs).
- 对具有离散特征的有限种群的生态进化动态分析.
- 现有模型的概括,如复制器-突变器和价格方程.
主要成果:
- 衍生的SDEs准确地恢复了无限人口极限中的已建立的进化动态.
- 随机性可预测地偏差了进化轨迹,被称为"噪音诱导的偏差".
- 确定了噪音诱导偏差的两个机制:直接 (投注对冲) 和间接 (频率/密度依赖的随机性).
结论:
- 噪音诱导的偏见可以导致进化,这与大群体中的自然选择预测相反.
- 人口随机性与自然选择和中性漂移相互作用,塑造生态进化动态.
- 该框架为具有波动大小的有限种群的进化提供了新的见解.
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