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在一个海拔梯度上,树种多样性随着同种负密度依赖而增加。

Tree species diversity increases with conspecific negative density dependence across an elevation gradient.

作者信息

LaManna Joseph A, Jones F Andrew, Bell David M, Pabst Robert J, Shaw David C

机构信息

Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin, USA.

Department of Botany & Plant Pathology, Oregon State University, Corvallis, Oregon, USA.

出版信息

Ecol Lett. 2022 May;25(5):1237-1249. doi: 10.1111/ele.13996. Epub 2022 Mar 15.

Abstract

Elevational and latitudinal gradients in species diversity may be mediated by biotic interactions that cause density-dependent effects of conspecifics on survival or growth to differ from effects of heterospecifics (i.e. conspecific density dependence), but limited evidence exists to support this. We tested the hypothesis that conspecific density dependence varies with elevation using over 40 years of data on tree survival and growth from 23 old-growth temperate forest stands across a 1,000-m elevation gradient. We found that conspecific-density-dependent effects on survival of small-to-intermediate-sized focal trees were negative in lower elevation, higher diversity forest stands typically characterised by warmer temperatures and greater relative humidity. Conspecific-density-dependent effects on survival were less negative in higher elevation stands and ridges than in lower elevation stands and valley bottoms for small-to-intermediate-sized trees, but were neutral for larger trees across elevations. Conspecific-density-dependent effects on growth were negative across all tree size classes and elevations. These findings reveal fundamental differences in biotic interactions that may contribute to relationships between species diversity, elevation and climate.

摘要

物种多样性的海拔梯度和纬度梯度可能由生物相互作用介导,这种生物相互作用会导致同种个体对生存或生长的密度依赖效应不同于异种个体的效应(即同种密度依赖),但支持这一观点的证据有限。我们利用跨越1000米海拔梯度的23个老龄温带森林林分40多年来的树木生存和生长数据,检验了同种密度依赖随海拔变化的假设。我们发现,对于中小型目标树木的生存,同种密度依赖效应在海拔较低、多样性较高的森林林分中为负,这些林分通常具有较高的温度和相对湿度。对于中小型树木,同种密度依赖对生存的影响在高海拔林分和山脊中比在低海拔林分和谷底中负面程度更小,但对于所有海拔的大型树木而言,这种影响是中性的。同种密度依赖对生长的影响在所有树木大小类别和海拔上均为负。这些发现揭示了生物相互作用的根本差异,这些差异可能导致物种多样性、海拔和气候之间的关系。

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