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气候、土壤和生物相互作用对高山植物多样性不同方面相互作用的影响。

Impacts of climate, soil and biotic interactions on the interplay of the different facets of alpine plant diversity.

机构信息

Departamento de Biología, Geología, Física y Química inorgánica, Universidad Rey Juan Carlos, Madrid, Spain.

Departamento de Biología, Geología, Física y Química inorgánica, Universidad Rey Juan Carlos, Madrid, Spain.

出版信息

Sci Total Environ. 2020 Jan 1;698:133960. doi: 10.1016/j.scitotenv.2019.133960. Epub 2019 Aug 28.

Abstract

Disentangling the processes that drive plant community assembly is critical for understanding the patterns of plant diversity. We studied how different abiotic and biotic factors shape the interplay between the facets of alpine plant diversity, functional (FD), phylogenetic (PD) and taxonomic diversity (TD), in three different mountain ranges with contrasting evolutionary histories and climate conditions (Pyrenees and Mediterranean-type mountains in central Spain and Chilean Andes). We hypothesized that the causal links vary in strength and sign across regions. We used species inventories, functional trait data, and a phylogeny from 84 plant communities spread throughout three high-mountain alpine grasslands. Structural equation models were used to test our causal hypotheses on the relationships observed between the three diversity facets, and the abiotic (elevation, potential solar radiation and soil total nitrogen) and biotic factors (C-score). Despite our causal model presented a high variability in each mountain range, TD always decreased with increasing elevation (sum of direct and indirect effects). We also found some patterns suggesting that assembly processes could be climatically/biogeographically structured such as the negative relationship between FD and elevation found in Mediterranean mountains and the negative relationship between FD and TD found in both Spanish mountain ranges (independently of their different climates). A remarkable finding of this study is that ecological factors such as soil total nitrogen and elevation indirectly alter the relationships between the diversity facets. Our results suggest that diversity facets are simultaneously affected by different ecological and biogeographical/evolutionary processes, resulting in some general trends but also in parallel idiosyncratic patterns. Our findings highlight that although FD stand out by its explanatory power of community processes, TD and PD provide a complementary and necessary view that should not be disregarded in the attempt to globally explain community assembly processes.

摘要

解析植物群落组装过程对于理解植物多样性模式至关重要。我们研究了不同的非生物和生物因素如何塑造高山植物多样性的不同方面(功能多样性、系统发育多样性和分类多样性)之间的相互作用,这三个地区具有不同的进化历史和气候条件(西班牙中部的比利牛斯山脉和地中海型山脉以及智利安第斯山脉)。我们假设因果关系在不同地区的强度和符号上有所不同。我们使用物种名录、功能性状数据以及来自分布在三个高山高山草原的 84 个植物群落的系统发育,来检验我们关于三个多样性方面之间观察到的关系以及非生物因素(海拔、潜在太阳辐射和土壤总氮)和生物因素(C 评分)的因果假设。尽管我们的因果模型在每个山脉中都表现出高度的可变性,但分类多样性总是随着海拔的升高而降低(直接和间接效应的总和)。我们还发现了一些表明组装过程可能受到气候/生物地理结构影响的模式,例如在地中海山脉中发现的功能多样性与海拔之间的负相关关系,以及在两个西班牙山脉中发现的功能多样性与分类多样性之间的负相关关系(独立于它们不同的气候)。本研究的一个显著发现是,生态因素(如土壤总氮和海拔)会间接改变多样性方面之间的关系。我们的研究结果表明,多样性方面同时受到不同的生态和生物地理/进化过程的影响,导致出现一些普遍趋势,但也存在平行的特殊模式。我们的研究结果强调,尽管功能多样性因其对群落过程的解释力而引人注目,但分类多样性和系统发育多样性提供了互补且必要的视角,在试图全面解释群落组装过程时不应忽视。

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