Niche Theory and Species Range Limits along Elevational Gradients: Perspectives and Future Directions

I-Ching Chen, Sheng-Feng Shen, Shih-Fan Chan
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Abstract

Despite two centuries of research, the mechanisms underlying the formation of species’ elevational range limits remain poorly understood. The climatic variability hypothesis highlights the role of climatic conditions in shaping species’ thermal tolerance and distribution ranges, while the species interactions–abiotic stress hypothesis underscores the relative importance of biotic factors and abiotic stress along environmental gradients. We emphasize Darwin's perspective on the ubiquity of interspecific competition across climatic gradients and the importance of understanding how climate modulates biotic interactions to shape species distributions. Niche theory provides a comprehensive framework, combined with empirical research, to explore how environmental gradients influence species traits, leading to context-dependent species interactions that constrain distributions. In particular, the application of the concept of environmentally weighted performance can further elucidate these complex ecological mechanisms. Future research should integrate multiple approaches, including field and laboratory manipulative experiments, theoretical modeling, and interdisciplinary collaboration, to improve our understanding of species distributions in mountain regions and to inform biodiversity conservation strategies in the face of rapid environmental change.
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高程梯度上的生态位理论和物种分布范围限制:展望与未来方向
尽管经过两个世纪的研究,人们对物种海拔分布范围极限的形成机制仍然知之甚少。气候变异假说强调了气候条件在形成物种热耐受性和分布范围方面的作用,而物种相互作用-非生物压力假说则强调了生物因素和非生物压力在环境梯度上的相对重要性。我们强调达尔文关于跨气候梯度的种间竞争无处不在的观点,以及理解气候如何调节生物相互作用以塑造物种分布的重要性。生态位理论提供了一个全面的框架,并与实证研究相结合,探讨环境梯度如何影响物种特征,从而导致与环境相关的物种相互作用,制约物种分布。特别是,环境加权表现概念的应用可以进一步阐明这些复杂的生态机制。未来的研究应整合多种方法,包括野外和实验室操作实验、理论建模和跨学科合作,以提高我们对山区物种分布的理解,并为面对快速环境变化的生物多样性保护战略提供信息。
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来源期刊
CiteScore
19.90
自引率
1.70%
发文量
21
期刊介绍: The Annual Review of Ecology, Evolution, and Systematics is a scholarly publication that has been in circulation since 1970. It focuses on important advancements in the areas of ecology, evolutionary biology, and systematics, with relevance to all forms of life on Earth. The journal features essay reviews that encompass various topics such as phylogeny, speciation, molecular evolution, behavior, evolutionary physiology, population dynamics, ecosystem processes, and applications in invasion biology, conservation, and environmental management. Recently, the current volume of the journal transitioned from a subscription-based model to open access through the Annual Reviews' Subscribe to Open program. Consequently, all articles published in the current volume are now available under a CC BY license.
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