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Complex, Dynamic Combination of Physical, Chemical and Nutritional Variables Controls Spatio-Temporal Variation of Sandy Beach Community Structure

机译:物理,化学和营养变量的复杂动态组合控制着沙滩群落结构的时空变化

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摘要

Sandy beach ecological theory states that physical features of the beach control macrobenthic community structure on all but the most dissipative beaches. However, few studies have simultaneously evaluated the relative importance of physical, chemical and biological factors as potential explanatory variables for meso-scale spatio-temporal patterns of intertidal community structure in these systems. Here, we investigate macroinfaunal community structure of a micro-tidal sandy beach that is located on an oligotrophic subtropical coast and is influenced by seasonal estuarine input. We repeatedly sampled biological and environmental variables at a series of beach transects arranged at increasing distances from the estuary mouth. Sampling took place over a period of five months, corresponding with the transition between the dry and wet season. This allowed assessment of biological-physical relationships across chemical and nutritional gradients associated with a range of estuarine inputs. Physical, chemical, and biological response variables, as well as measures of community structure, showed significant spatio-temporal patterns. In general, bivariate relationships between biological and environmental variables were rare and weak. However, multivariate correlation approaches identified a variety of environmental variables (i.e., sampling session, the C:N ratio of particulate organic matter, dissolved inorganic nutrient concentrations, various size fractions of photopigment concentrations, salinity and, to a lesser extent, beach width and sediment kurtosis) that either alone or combined provided significant explanatory power for spatio-temporal patterns of macroinfaunal community structure. Overall, these results showed that the macrobenthic community on Mtunzini Beach was not structured primarily by physical factors, but instead by a complex and dynamic blend of nutritional, chemical and physical drivers. This emphasises the need to recognise ocean-exposed sandy beaches as functional ecosystems in their own right.
机译:沙滩生态学理论指出,除了耗散最大的沙滩外,沙滩的物理特征控制着大型底栖动物群落结构。然而,很少有研究同时评估物理,化学和生物学因素作为这些系统中潮间带群落结构的中尺度时空模式的潜在解释变量的相对重要性。在这里,我们调查的是微潮质亚热带海岸上的微潮沙滩的宏观底栖动物群落结构,受季节性河口输入的影响。我们在距离河口距离越来越远的一系列海滩样地上反复采样了生物和环境变量。采样时间为五个月,对应于干湿季之间的过渡。这样可以评估与一系列河口输入相关的化学和营养梯度之间的生物物理关系。物理,化学和生物响应变量以及群落结构的度量均显示出显着的时空格局。通常,生物学变量与环境变量之间的双变量关系很少见且较弱。但是,多变量相关方法确定了各种环境变量(例如,采样时间,颗粒有机物的C:N比,溶解的无机营养物浓度,光色素浓度的各种尺寸分数,盐度,以及在较小程度上的海滩宽度和沉积物峰度),无论是单独还是结合在一起,都可以为大型动物群落结构的时空格局提供重要的解释力。总体而言,这些结果表明,姆通齐尼海滩上的大型底栖动物群落并非主要由物理因素构成,而是由营养,化学和物理驱动因素的复杂动态混合而成。这强调了必须认识到海洋暴露的沙滩本身就是功能性生态系统。

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