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Transition patterns across an evergreen-deciduous broad-leaved forest ecotone: the effect of topographies

机译:常绿落叶阔叶林过渡带的过渡格局:地形的影响

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Question: Topography has distinct effects on local-scale vegetation distribution by creating heterogeneous habitats. In ecotones, which are sensitive to environmental variation, this effect on vegetation differentiation may be magnified at a regional scale. Here, we evaluate vegetation transition patterns across an evergreen-deciduous broad-leaved forest ecotone (EDF ecotone) in eastern China, to investigate whether the transition pattern differs between two topographic positions with different habitats, and identify underlying environmental mechanisms driving variation in species-and trait-based community structure.Location: Anhui Province, China.Methods: Across an EDF ecotone, community data were collected in 47 20 x 20-m plots situated on upper and lower hill slopes. Trait-based community structure was constructed based on seven functional traits and weighted by species abundance. Environmental variables were grouped into three categories: thermal conditions, water availability and edaphic variables. Trends in species richness and dominance along latitude were evaluated for both evergreen broad-leaved species (EBT) and deciduous broad-leaved species (DBT). Variation partitioning analysis was used to distinguish the roles of the three environmental variables in determining transition patterns within the two topographies.Results: For both EBT and DBT, species richness showed similar transition patterns along the latitudinal gradient on both the upper and the lower slope. However, species dominance changed more abruptly on the upper than on the lower slope. Compared with edaphic variables, both thermal conditions and water availability had a larger impact on transitions across the EDF ecotone, but their relative roles differed between the upper and the lower slopes. Thermal conditions primarily explained the variation in species-and trait-based community structure on the upper slope, while water availability primarily explained variation on the lower slope.Conclusions: Our results suggest different roles of thermal conditions and water availability in determining transition patterns between the two topographies. Evergreen Castanopsis trees, having less cold tolerance, make transitions on the upper slope more sensitive to thermal conditions. Cyclobalanopsis trees, which prefer wet habitats, make the transition on the lower slope more sensitive to water availability. Based on the present findings, we predict that the EDF ecotone will become narrower and there will be a sharper boundary between the evergreen and deciduous broad-leaved forests of eastern China under warmer and drier climate conditions
机译:问:地形通过创造异质生境对当地尺度的植被分布具有明显的影响。在对环境变化敏感的过渡带中,这种对植被分化的影响可能在区域范围内被放大。在这里,我们评估了中国东部常绿落叶阔叶森林过渡带(EDF生态过渡带)的植被过渡模式,以调查过渡模式在两个具有不同生境的地形位置之间是否不同,并确定驱动物种变化的潜在环境机制-地点:中国安徽省。方法:在一个EDF过渡带中,收集了位于上,下山坡的47个20 x 20-m样地的社区数据。基于特质的社区结构是基于七个功能性状构建的,并按物种丰富度加权。环境变量可分为三类:热条件,水的可利用性和水生变量。对常绿阔叶树种(EBT)和落叶阔叶树种(DBT)的物种丰富度和优势度沿纬度的趋势进行了评估。结果:对于EBT和DBT,物种丰富度在上坡和下坡的纬度梯度上都表现出相似的过渡模式。但是,物种优势在上坡的变化比下坡的变化大。与edaphic变量相比,热力条件和可用水量对整个EDF过渡带的过渡影响较大,但它们的相对作用在上下坡之间有所不同。热条件主要解释了上坡上基于物种和特征的群落结构的变化,而水可利用性主要解释了下坡上的变化。结论:我们的结果表明,热条件和水可利用性在确定坡地之间的过渡模式中具有不同的作用。两个地形。耐寒性较低的常绿Cast锥树使上坡的过渡对热条件更加敏感。青冈树木更喜欢潮湿的栖息地,这使得下坡的过渡对水的利用更加敏感。根据目前的发现,我们预测在温暖和干燥的气候条件下,中国东部的常绿和落叶阔叶林之间的EDF过渡带将变窄,边界将更加清晰。

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