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首页> 外文期刊>Journal of Vegetation Science >Canopy composition and drought shape understorey plant assemblages in a young tree diversity experiment
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Canopy composition and drought shape understorey plant assemblages in a young tree diversity experiment

机译:冠层组成和干旱形状下滑植物组合在一棵年轻的树分分集实验中

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Questions Tree diversity is key to the functioning of forest ecosystems. However, which components of tree diversity are responsible for tree diversity effects on associated organisms, and in which context, is poorly understood. Location ORPHEE Experimental site, Cestas-Pierroton in the southwest of France. Methods We used a large-scale tree diversity experiment in which we controlled water availability by an irrigation treatment to address tree diversity and water stress effects on the diversity and height of forest understorey vegetation. We assessed the species richness and height of understorey vegetation in irrigated and non-irrigated 20 m x 20 m plots, either being monocultures ofPinus pinaster,Betula pendulaorQuercus robur, or either mixtures of two to five species amongPinus pinaster,Betula pendula,Quercus robur,Quercus ilexandQuercus pyrenaica. Results Tree species composition, i.e. the proportion of birch or pine, had a significant effect on understorey plant assemblage, species richness and diversity. The proportion of the fast-growing deciduous angiospermBetula pendulawas negatively correlated to understorey plant richness and diversity, and positively correlated with understorey vegetation height. Understorey vegetation was higher in irrigated plots than in non-irrigated plots, but irrigation had no clear effect on the species richness, diversity or composition of understorey plant assemblages. Conclusions Forest tree species composition and in particular the relative proportions of different tree species had stronger effects on understorey plants than tree species richness per se. These effects were consistent across irrigation treatments. Even in young forest plantations, effects of tree mixture on understorey vegetation may be observed and seem mainly driven by the functional type of tree in the canopy and initial dynamics of plant regeneration in planted forests.
机译:问题树的多样性是森林生态系统运作的关键。然而,树分多样性的哪些组成部分负责对相关生物的树分集会,并且在哪个背景下理解得很差。地点奥氏实验遗址,法国西南部的Cestas-Pierroton。方法采用大规模的树木分集实验,我们通过灌溉处理控制了水可用性,以解决树分多样性和水分应激影响对森林人民币植被的多样性和高度。我们评估了灌溉和非灌溉20 mx 20 mx 20 m磅的人物丰富性和高度,无论是单栽培素,Betula pendulardercus robur,或两到五种种类的混合物中的百叶草,Betula pendula,栎疣,栎inlexandquercus pyrenaica。结果树种组成,即桦木或松的比例对人类的植物组合,物种丰富和多样性产生了显着影响。快速生长的落叶高管penetula pendulawas的比例与下变性植物丰富和多样性呈负相关,并与下层植被高度呈正相关。灌溉植被比在非灌溉的地块中更高,但灌溉对人类丰富,多样性或组成的灌溉没有明显影响。结论森林树种组成,特别是不同树种的相对比例对下层植物的效果比树种类丰富。这些效果在灌溉治疗中一致。即使在年轻的森林种植园中,树脂的影响也可以观察到下层植被的效果,并且似乎主要由种植森林植物再生的冠层功能类型的树木。

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