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Competitive effect, but not competitive response, varies along a climatic gradient depending on tree species identity

树(集合论) 身份(音乐) 生态系统 生态学 气候变化 环境科学 地理 生物 数学 物理 数学分析 声学
作者
Teresa Valor,Lluís Coll,David I. Forrester,Hans Pretzsch,Miren del Rı́o,Kamil Bielak,Bogdan Brzeziecki,Franz Binder,Torben Hilmers,Zuzana Sitková,Roberto Tognetti,Aitor Améztegui
出处
期刊:Forest Ecosystems [Springer Science+Business Media]
卷期号:: 100176-100176
标识
DOI:10.1016/j.fecs.2024.100176
摘要

Understanding the role of species identity in interactions among individuals is crucial for assessing the productivity and stability of mixed forests over time. However, there is limited knowledge concerning the variation in competitive effect and response of different species along climatic gradients. In this study, we investigated the importance of climate, tree size, and competition on the growth of three tree species: spruce (Picea abies), fir (Abies alba), and beech (Fagus sylvatica), and examined their competitive response and effect along a climatic gradient. We selected 39 plots distributed across the European mountains with records of the position and growth of 5759 individuals. For each target species, models relating tree growth to tree size, climate and competition were proposed. Competition was modelled using a neighbourhood competition index that considered the effects of inter- and intra-specific competition on target trees. Competitive responses and effects were related to climate. Likelihood methods and information theory were used to select the best model. Our findings revealed that competition had a greater impact on target species growth than tree size or climate. Climate did influence the competitive effects of neighbouring species, but it did not affect the target species' response to competition. The strength of competitive effects varied along the gradient, contingent on the identity of the interacting species. When the target species exhibited an intermediate competitive effect relative to neighbouring species, both higher inter-than intra-specific competitive effects and competition reduction occurred along the gradient. Notably, species competitive effects were most pronounced when the target species’ growth was at its peak and weakest when growing conditions were far from their maximum. Climate modulates the effects of competition from neighbouring trees on the target tree and not the susceptibility of the target tree to competition. The modelling approach should be useful in future research to expand our knowledge of how competition modulates forest communities across environmental gradients.

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