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植物功能类型与土壤因子对苔原物种多样性和群落组成的交互作用。

Interactive effects between plant functional types and soil factors on tundra species diversity and community composition.

作者信息

Iturrate-Garcia Maitane, O'Brien Michael J, Khitun Olga, Abiven Samuel, Niklaus Pascal A, Schaepman-Strub Gabriela

机构信息

Department of Evolutionary Biology and Environmental Studies University of Zurich Zurich Switzerland.

Department of Evolutionary Biology and Environmental Studies University of Zurich Zurich Switzerland; Estación Experimental de Zonas Áridas Consejo Superior de Investigaciones Científicas Almería Spain.

出版信息

Ecol Evol. 2016 Oct 17;6(22):8126-8137. doi: 10.1002/ece3.2548. eCollection 2016 Nov.

Abstract

Plant communities are coupled with abiotic factors, as species diversity and community composition both respond to and influence climate and soil characteristics. Interactions between vegetation and abiotic factors depend on plant functional types (PFT) as different growth forms will have differential responses to and effects on site characteristics. However, despite the importance of different PFT for community assembly and ecosystem functioning, research has mainly focused on vascular plants. Here, we established a set of observational plots in two contrasting habitats in northeastern Siberia in order to assess the relationship between species diversity and community composition with soil variables, as well as the relationship between vegetation cover and species diversity for two PFT (nonvascular and vascular). We found that nonvascular species diversity decreased with soil acidity and moisture and, to a lesser extent, with soil temperature and active layer thickness. In contrast, no such correlation was found for vascular species diversity. Differences in community composition were found mainly along soil acidity and moisture gradients. However, the proportion of variation in composition explained by the measured soil variables was much lower for nonvascular than for vascular species when considering the PFT separately. We also found different relationships between vegetation cover and species diversity according the PFT and habitat. In support of niche differentiation theory, species diversity and community composition were related to edaphic factors. The distinct relationships found for nonvascular and vascular species suggest the importance of considering multiple PFT when assessing species diversity and composition and their interaction with edaphic factors. : Identifying vegetation responses to edaphic factors is a first step toward a better understanding of vegetation-soil feedbacks under climate change. Our results suggest that incorporating differential responses of PFT is important for predicting vegetation shifts, primary productivity, and in turn, ecosystem functioning in a changing climate.

摘要

植物群落与非生物因素相互关联,因为物种多样性和群落组成既对气候和土壤特征做出响应,也会对其产生影响。植被与非生物因素之间的相互作用取决于植物功能类型(PFT),因为不同的生长形式对场地特征会有不同的响应和影响。然而,尽管不同的植物功能类型对群落组装和生态系统功能很重要,但研究主要集中在维管植物上。在这里,我们在西伯利亚东北部两个截然不同的栖息地建立了一组观测地块,以评估物种多样性和群落组成与土壤变量之间的关系,以及两种植物功能类型(非维管植物和维管植物)的植被覆盖度与物种多样性之间的关系。我们发现,非维管物种多样性随土壤酸度和湿度的增加而降低,在较小程度上也随土壤温度和活动层厚度的增加而降低。相比之下,维管物种多样性未发现此类相关性。群落组成的差异主要沿土壤酸度和湿度梯度出现。然而,当分别考虑植物功能类型时,非维管物种的群落组成变化中由实测土壤变量解释的比例远低于维管物种。我们还发现,根据植物功能类型和栖息地的不同,植被覆盖度与物种多样性之间存在不同关系。支持生态位分化理论的是,物种多样性和群落组成与土壤因素有关。非维管植物和维管植物的不同关系表明,在评估物种多样性和组成及其与土壤因素的相互作用时,考虑多种植物功能类型很重要。识别植被对土壤因素的响应是更好地理解气候变化下植被 - 土壤反馈的第一步。我们的结果表明,纳入植物功能类型的差异响应对于预测植被变化、初级生产力以及进而预测变化气候下的生态系统功能很重要。

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