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Global patterns in sandy beach macrofauna: Species richness, abundance,biomass and body size

机译:沙滩大型动物的全球格局:物种丰富度,丰度,生物量和体型

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Global patterns in species richness in sandy beach ecosystems have been poorly understood until comparatively recently, because of the difficulty of compiling high-resolution databases at continental scales. We analyze information from more than 200 sandy beaches around the world, which harbor hundreds of macrofauna species, and explore latitudinal trends in species richness, abundance and biomass. Species richness increases from temperate to tropical sites. Abundance follows contrasting trends depending on the slope of the beach: in gentle slope beaches, it is higher at temperate sites, whereas in steep-slope beaches it is higher at the tropics. Biomass follows identical negative trends for both climatic regions at the whole range of beach slopes, suggesting decreasing rates in carrying capacity of the environment towards reflective beaches. Various morphodynamic variables determine global trends in beach macrofauna. Species richness, abundance and biomass are higher at dissipative than at reflective beaches, whereas a body size follows the reverse pattern. A generalized linear model showed that large tidal range (which determines the vertical dimension of the intertidal habitat), small size of sand particles and flat beach slope (a product of the interaction among wave energy, tidal range and grain size) are correlated with high species richness, suggesting that these parameters represent the most parsimonious variables for modelling patterns in sandy beach macrofauna. Large-scale patterns indicate a scaling of abundance to a body size, suggesting that dissipative beaches harbor communities with highest abundance and species with the smallest body sizes. Additional information for tropical and northern hemisphere sandy beaches (underrepresented in our compilation) is required to decipher more conclusive trends, particularly in abundance, biomass and body size. Further research should integrate meaningful oceanographic variables, such as temperature and primary production, in deciphering latitudinal trends.
机译:直到最近,人们才对沙滩生态系统中物种丰富度的全球格局了解得很少,因为难以在大陆范围内汇编高分辨率数据库。我们分析了来自全球200多个包含数百种大型动物物种的沙滩的信息,并探讨了物种丰富度,丰度和生物量的纬度趋势。从温带地区到热带地区,物种丰富度增加。丰度遵循不同的趋势,具体取决于海滩的坡度:在缓坡海滩中,温带地区较高,而在陡坡海滩中热带地区较高。在整个海滩坡度范围内,两个气候区的生物量都遵循相同的负趋势,这表明环境对反射海滩的承载能力下降。各种形态动力学变量决定了海滩大型动物的全球趋势。耗散性比反光海滩的物种丰富度,丰度和生物量更高,而体型遵循相反的模式。广义线性模型表明,大的潮差范围(决定潮间带栖息地的垂直尺寸),小尺寸的沙粒和平坦的海滩坡度(波浪能,潮差范围和颗粒尺寸之间的相互作用的产物)与高潮量相关。物种丰富度,表明这些参数代表了沙滩大型动物模型建模中最简约的变量。大型模式表明丰度随体型的变化而变化,这表明耗散的海滩上栖息着丰度最高的社区,而物种体型最小。需要热带和北半球沙滩的其他信息(在我们的汇编中未代表),才能破译更明确的趋势,尤其是在丰度,生物量和体型方面。进一步的研究应在解释纬度趋势时综合考虑有意义的海洋学变量,例如温度和初级生产。

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