生态入侵理论及其对生态进化动力学的影响。

ArXiv Pub Date : 2025-08-21
Zhijie Feng, Emmy Blumenthal, Pankaj Mehta, Akshit Goyal
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引用次数: 0

摘要

预测物种入侵的结果是生态学的中心目标,由于生态反馈,这项任务变得特别具有挑战性。为了解决这个问题,我们开发了一个适用于各种生态模型的生态入侵的一般理论:包括Lotka-Volterra模型,消费者资源模型和交叉喂养模型。重要的是,我们的框架即使在入侵进化(非随机)群落和入侵驱动物种灭绝的情况下仍然有效。我们推导了入侵适应度与入侵者丰度、群落迁移和灭绝概率之间的解析表达式。这些结果可以通过一个新的量来理解,我们称之为“穿衣入侵适应度”,它通过纳入生态反馈来增强传统的入侵适应度概念。我们运用我们的理论来分析短期进化动力学,通过一系列的突变入侵,其特征与现有的亲本相关。我们证明,一般来说,突变体和亲本可以共存,通常是通过推动低丰度物种的灭绝。我们对从植物到微生物原生生物跨越生态系统的实验数据集验证理论预测。我们的工作强调了生态反馈在塑造群落对入侵和突变的反应中的核心作用,表明亲本-突变共存在生态进化动力学中广泛存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A theory of ecological invasions and its implications for eco-evolutionary dynamics.

Predicting the outcomes of species invasions is a central goal of ecology, a task made especially challenging due to ecological feedbacks. To address this, we develop a general theory of ecological invasions applicable to a wide variety of ecological models: including Lotka-Volterra models, consumer resource models, and models with cross feeding. Importantly, our framework remains valid even when invading evolved (non-random) communities and accounts for invasion-driven species extinctions. We derive analytical expressions relating invasion fitness to invader abundance, shifts in the community, and extinction probabilities. These results can be understood through a new quantity we term ``dressed invasion fitness'', which augments the traditional notion of invasion fitness by incorporating ecological feedbacks. We apply our theory to analyze short-term evolutionary dynamics through a series of invasions by mutants whose traits are correlated with an existing parent. We demonstrate that, generically, mutants and parents can coexist, often by driving the extinction of low-abundance species. We validate theoretical predictions against experimental datasets spanning ecosystems from plants to microbial protists. Our work highlights the central role of ecological feedbacks in shaping community responses to invasions and mutations, suggesting that parent-mutant coexistence is widespread in eco-evolutionary dynamics.

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