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首页> 外文期刊>Estuarine Coastal and Shelf Science >The forgotten dimension in sandy beach ecology: Vertical distribution of the macrofauna and its environment
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The forgotten dimension in sandy beach ecology: Vertical distribution of the macrofauna and its environment

机译:沙滩生态中被遗忘的维度:大型动物及其环境的垂直分布

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Spatial and temporal environmental heterogeneity influences biodiversity distribution patterns and dynamics on sandy beaches. In these ecosystems, the microscale vertical distribution adds a dimension to the analysis of biological and physical processes, whose ecological patterns have been rarely described. An intensive across shore sampling in a dissipative beach was conducted, using a stratified corer to analyze small-scale vertical variations in macrofaunal and physical variables. Sediment temperature decreased towards the swash zone and at deeper sediments. Conversely, moisture, grain size and organic content increased seaward, concurrently with the highest vertical variability. Species richness and density increased from the dunes to the swath zone, being highest at the surface, whereas biomass was higher in sediments deeper than 15 cm as a consequence of larger individual sizes. Sediment moisture and temperature showed a consistent correlation with biological descriptors. Deconstructed by taxonomic group, a significant vertical segregation of body size was observed, suggesting different microhabitat preferences and burrowing abilities. Species spatial patterns varied according to life history traits and differential susceptibility to variations in environmental conditions. This study provides novel insights on vertical environmental and biological variations across the dune-shore axis in a dissipative beach. Expanding the findings of this research to larger spatio-temporal scales is a short-term need to decipher the processes underlying the community and population patterns outlined here.
机译:时空环境异质性影响沙滩上生物多样性的分布格局和动态。在这些生态系统中,微观垂直分布为生物学和物理过程的分析增加了一个维度,其生态模式很少被描述。在一个耗散性海滩上进行了一次密集的跨岸采样,使用分层的中心分析了大型动物和物理变量的小规模垂直变化。沉积物温度朝着斜流区和更深的沉积物降低。相反,水分,晶粒度和有机物含量向海增加,同时垂直变化最大。从沙丘到条带带,物种的丰富度和密度增加,在表层最高,而深于15 cm的沉积物中的生物量较高,这是由于个体尺寸较大。沉积物的水分和温度与生物学指标显示出一致的相关性。按分类学组进行解构,观察到明显的垂直体型分离,表明不同的微生境偏好和挖掘能力。物种的空间格局根据生活史特征和对环境条件变化的敏感性而变化。这项研究提供了关于耗散海滩上沙丘-岸轴垂直环境和生物变化的新颖见解。将这项研究的结果扩展到更大的时空范围是短期需要破译这里概述的社区和人口格局的过程。

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