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Fine-scale patterns of vegetation assembly in the monitoring of changes in coastal sand-dune landscapes

机译:监测沿海沙丘景观变化的植被集合的精细模式

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Understanding dune ecosystem responses to multi-scale environmental changes can provide the framework for reliable forecasts and cost-efficient protocols for detecting shifts in prevailing coastal dynamics. Based on the hypothesis that stress and disturbance interact as primary community controls in coastal dunes, we studied the fine-scale floristic assembly of foredune vegetation, in its relation to topography, along regional and local environmental gradients in the 200 km long coastline of northern Portugal, encompassing a major biogeographic transition in western Europe. Thirty topographic profiles perpendicular to the shoreline were recorded at ten sites along the regional climate gradient, and vegetation was sampled by recording the frequency of plant species along those profiles. Quantitative topographic attributes of vegetated dune profiles (e.g. length or height) exhibited wide variations relatable to differences in prevailing coastal dynamics. Metrics of taxonomic diversity (e.g. total species richness and its additive beta component) and of the functional composition of vegetation were highly correlated to attributes of dune topography. Under transgressive dynamics, vegetation profiles have fewer species, increased dominance, lower turnover rates, and lower total vegetation cover. These changes may drive a decrease in structural and functional diversity, with important consequences for resistance, resilience and other ecosystem properties. Moreover, differences in both vegetation assembly (in meta-stable dunes) and response to increased disturbance (in eroding dunes) between distinct biogeographic contexts highlight a possible decline in facilitation efficiency under extreme physical stress (i.e. under Mediterranean climate) and support the significance of functional approaches in the study of local ecosystem responses to disturbance along regional gradients. Our results strongly suggest that assessing fine-scale community assembly can provide insights on the relation between dune vegetation, environmental filters and ecosystem processes. A combination of cost-efficient indicators from dune topography and vegetation is thus suggested as a promising approach to survey, forecast and monitor changes in coastal dune ecosystems.
机译:了解沙丘生态系统对多尺度环境变化的反应,可以提供可靠的预测框架和具有成本效益的协议,以检测主要沿海动态的变化。基于这样的假设,即应力和干扰是沿海沙丘的主要群落控制相互作用,我们研究了葡萄牙北部长200 km海岸线上沿区域和局部环境梯度分布的,与地形有关的前藤植被的精细植物区系,涵盖了西欧的主要生物地理转型。在沿区域气候梯度的10个地点记录了30条垂直于海岸线的地形剖面,并通过记录沿这些剖面的植物物种的频率对植被进行了采样。植被沙丘剖面的定量地形特征(例如长度或高度)表现出与主要沿海动力学差异有关的广泛变化。分类学多样性的度量标准(例如总物种丰富度及其附加的β成分)和植被的功能组成与沙丘地形的属性高度相关。在海侵动态下,植被剖面具有更少的物种,更大的优势,更低的周转率和更低的总植被覆盖率。这些变化可能会导致结构和功能多样性的减少,从而对抵抗力,复原力和其他生态系统特性产生重要影响。此外,不同生物地理环境之间的植被组装(亚稳态沙丘)和对增加干扰的响应(沙丘侵蚀)的差异突出表明,在极端物理压力下(即在地中海气候下),促进效率可能下降,并支持研究局部生态系统对区域梯度扰动的响应的功能方法。我们的结果强烈表明,评估小型社区聚集可以提供有关沙丘植被,环境过滤器和生态系统过程之间关系的见解。因此,建议结合使用沙丘地形和植被的具有成本效益的指标,作为调查,预测和监测沿海沙丘生态系统变化的有前途的方法。

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