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Topography and neighborhood crowding can interact to shape species growth and distribution in a diverse Amazonian forest

作者:Claire Fortunel, Jesse R. Lasky, María Teresa Uriarte, Renato Valencia, S. Joseph Wright‬, Nancy C. Garwood, Nathan J. B. Kraft · 发表于:Ecology · 年份:2018 · DOI:10.1002/ecy.2441 · 被引用次数:112 · 研究领域:Ecology and Vegetation Dynamics Studies、Plant and animal studies、Species Distribution and Climate Change

Abiotic constraints and biotic interactions act simultaneously to shape communities. However, these community assembly mechanisms are often studied independently, which can limit understanding of how they interact to affect species dynamics and distributions. We develop a hierarchical Bayesian neighborhood modeling approach to quantify the simultaneous effects of topography and crowding by neighbors on the growth of 124,704 individual stems ≥1 cm DBH for 1,047 tropical tree species in a 25-ha mapped rainforest plot in Amazonian Ecuador. We build multi-level regression models to evaluate how four key functional traits (specific leaf area, maximum tree size, wood specific gravity and seed mass) mediate tree growth response to topography and neighborhood crowding. Tree growth is faster in valleys than on ridges and is reduced by neighborhood crowding. Topography and crowding interact to influence tree growth in ~10% of the species. Specific leaf area, maximum tree size and seed mass are associated with growth responses to topography, but not with responses to neighborhood crowding or with the interaction between topography and crowding. In sum, our study reveals that topography and neighborhood crowding each influence tree growth in tropical forests, but act largely independently in shaping species distributions. While traits were associated with species response to topography, their role in species response to neighborhood crowding was less clear, which suggests that trait effe...