Am Nat. 2023 Aug;202(2):E53-E64. doi: 10.1086/724821. Epub 2023 Jun 15.
AbstractClassic ecological theory explains species coexistence in variable environments. While spatial variation is often treated as an intrinsic feature of a landscape, it may be shaped and even generated by the resident community. All species modify their local environment to some extent, driving changes that can feed back to affect the composition and coexistence of the community, potentially over timescales very different from population dynamics. We introduce a simple nested modeling framework for community dynamics in heterogeneous environments, including the possible evolution of heterogeneity over time due to community-environment feedbacks. We use this model to derive analytical conditions for species coexistence in environments where heterogeneity is either fixed or shaped by feedbacks. Among other results, our approach reveals how dispersal and environmental specialization interact to shape realized patterns of habitat association and demonstrates that environmental feedbacks can tune landscape conditions to allow the stable coexistence of any number of species. Our flexible modeling framework helps explain feedback dynamics that arise in a wide range of ecosystems and offers a generic platform for exploring the interplay between species and landscape diversity.
摘要经典生态学理论解释了物种在多变环境中的共存。虽然空间变异性通常被视为景观的固有特征,但它也可能被居住的群落塑造甚至产生。所有物种都会在一定程度上改变其局部环境,推动可能会对群落的组成和共存产生反馈影响的变化,其潜在的时间尺度可能与种群动态完全不同。我们引入了一个简单的嵌套模型框架,用于研究异质环境中的群落动态,包括由于群落-环境反馈而导致的异质性随时间演变的可能性。我们使用该模型推导出了在异质性是固定的或由反馈塑造的环境中物种共存的分析条件。在其他结果中,我们的方法揭示了扩散和环境特化如何相互作用来塑造栖息地关联的实际模式,并表明环境反馈可以调整景观条件,以允许任何数量的物种稳定共存。我们灵活的建模框架有助于解释在广泛的生态系统中出现的反馈动态,并为探索物种和景观多样性之间的相互作用提供了一个通用的平台。