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Direct vs. microclimate-driven effects of tree species diversity on litter decomposition in young subtropical forest stands

机译:亚热带森林幼林中树木物种多样性对凋落物分解的直接与小气候驱动作用

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摘要

Effects of tree species diversity on decomposition can operate via a multitude of mechanism, including alterations of microclimate by the forest canopy. Studying such effects in natural settings is complicated by the fact that topography also affects microclimate and thus decomposition, so that effects of diversity are more difficult to isolate. Here, we quantified decomposition rates of standard litter in young subtropical forest stands, separating effects of canopy tree species richness and topography, and quantifying their direct and micro-climate-mediated components. Our litterbag study was carried out at two experimental sites of a biodiversity-ecosystem functioning field experiment in south-east China (BEF-China). The field sites display strong topographical heterogeneity and were planted with tree communities ranging from monocultures to mixtures of 24 native subtropical tree species. Litter bags filled with senescent leaves of three native tree species were placed from Nov. 2011 to Oct. 2012 on 134 plots along the tree species diversity gradient. Topographic features were measured for all and microclimate in a subset of plots. Stand species richness, topography and microclimate explained important fractions of the variations in litter decomposition rates, with diversity and topographic effects in part mediated by microclimatic changes. Tree stands were 2-3 years old, but nevertheless tree species diversity explained more variation (54.3%) in decomposition than topography (7.7%). Tree species richness slowed litter decomposition, an effect that slightly depended on litter species identity. A large part of the variance in decomposition was explained by tree species composition, with the presence of three tree species playing a significant role. Microclimate explained 31.4% of the variance in decomposition, and was related to lower soil moisture. Within this microclimate effect, species diversity (without composition) explained 8.9% and topography 34.4% of variance. Topography mainly affected diurnal temperature amplitudes by varying incident solar radiation.
机译:树木物种多样性对分解的影响可以通过多种机制起作用,包括森林冠层改变小气候。由于地形还影响微气候并因此影响分解,因此在自然环境中研究此类影响十分复杂,因此更加难以区分多样性的影响。在这里,我们量化了年轻亚热带森林林分中标准凋落物的分解率,分离了冠层树种丰富度和地形的影响,并量化了其直接和微气候介导的成分。我们的垃圾袋研究是在中国东南部(BEF-China)的一个生物多样性-生态系统功能性田间试验的两个试验地点进行的。田间地点显示出强烈的地形异质性,并种植了树木群落,从单一栽培到24种本地亚热带树木物种的混合物。从2011年11月至2012年10月,在沿树种多样性梯度分布的134个样地上放置装有三个衰老树种衰老叶片的垃圾袋。在一个子集中测量了所有地形和微气候的地形特征。林分物种的丰富性,地形和微气候解释了凋落物分解速率变化的重要部分,多样性和地形影响部分是由微气候变化介导的。林分年龄为2-3年,但树木种类的多样性解释了比地形(7.7%)更多的变化(54.3%)。树种的丰富性减慢了凋落物的分解,这种作用在某种程度上取决于凋落物的种类。分解的很大一部分由树种组成解释,其中三种树种起着重要作用。小气候解释了31.4%的分解变化,并与较低的土壤湿度有关。在这种微气候效应下,物种多样性(无组成)解释了8.9%的变化,而地形则解释了34.4%的变化。地形主要是通过改变入射太阳辐射来影响昼夜温度幅度。

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