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在山地草原中,分类和功能多样性对特有石竹属植物群落组装的相对贡献。

Relative contributions of taxonomic and functional diversity to the assembly of plant communities hosting endemic Dianthus species in a mountain steppe.

机构信息

Herbarium FUMH, Ferdowsi University of Mashhad, Mashhad, Iran.

Department of Agricultural and Environmental Sciences (DiSAA), University of Milan, Via G. Celoria 2, 20133, Milan, Italy.

出版信息

Sci Rep. 2024 Mar 5;14(1):5471. doi: 10.1038/s41598-024-56099-x.

Abstract

Plant community assembly is the outcome of long-term evolutionary events (evident as taxonomic diversity; TD) and immediate adaptive fitness (functional diversity; FD); a balance expected to shift in favour of FD in 'harsh' habitats under intense selection pressures. We compared TD and FD responses along climatic and edaphic gradients for communities of two species (Dianthus pseudocrinitus and D. polylepis) endemic to the montane steppes of the Khorassan-Kopet Dagh floristic province, NE Iran. 75 plots at 15 sites were used to relate TD and FD to environmental gradients. In general, greater TD was associated with variation in soil factors (potassium, lime, organic matter contents), whereas FD was constrained by aridity (drought adaptation). Crucially, even plant communities hosting different subspecies of D. polylepis responded differently to aridity: D. polylepis subsp. binaludensis communities included a variety of broadly stress-tolerant taxa with no clear environmental response, but TD of D. polylepis subsp. polylepis communities was directly related to precipitation, with consistently low FD reflecting a few highly specialized stress-tolerators. Integrating taxonomic and functional diversity metrics is essential to understand the communities hosting even extremely closely related taxa, which respond idiosyncratically to climate and soil gradients.

摘要

植物群落组装是长期进化事件(表现为分类多样性;TD)和即时适应适应性(功能多样性;FD)的结果;预计在强烈选择压力下的“恶劣”栖息地中,这种平衡将有利于 FD。我们比较了两个物种(假瞿麦和 D. polylepis)群落沿气候和土壤梯度的 TD 和 FD 响应,这些物种是伊朗东北部科佩特达格山地草原植物区系省高山草原的特有种。在 15 个地点的 75 个样方中,将 TD 和 FD 与环境梯度相关联。总的来说,较高的 TD 与土壤因子(钾、石灰、有机质含量)的变化有关,而 FD 则受到干旱(耐旱性)的限制。至关重要的是,即使是宿主不同亚种的 D. polylepis 的植物群落对干旱的反应也不同:D. polylepis subsp. binaludensis 群落包含各种广泛耐受压力的类群,没有明显的环境响应,但 D. polylepis subsp. polylepis 群落的 TD 与降水直接相关,FD 始终较低,反映了少数高度专业化的耐受力。整合分类和功能多样性指标对于理解即使是极其密切相关的类群的群落至关重要,这些类群对气候和土壤梯度的反应是特殊的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb14/10915155/bdef268653be/41598_2024_56099_Fig1_HTML.jpg

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