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首页> 外文期刊>Aquatic Biosystems >Infaunal macrobenthic community dynamics in a manipulated hyperhaline ecosystem: a long-term study
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Infaunal macrobenthic community dynamics in a manipulated hyperhaline ecosystem: a long-term study

机译:高盐度生态系统中的臭虫大型底栖动物群落动态:一项长期研究

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Background Understanding the responses of ecological communities to human-induced perturbations is crucial for establishing conservation goals. Ecological communities are dynamic entities undergoing fluctuations due to their intrinsic characteristics as well as anthropogenic pressures varying over time. In this respect, long-term studies, based on large spatial and temporal datasets, may provide useful information in understanding patterns and processes influencing the communities’ structure. Theoretical evidence suggests that a role of biodiversity is acting as a compensatory buffer against environmental variability by decreasing the temporal variance in ecosystem functioning and by raising the level of community response to perturbations through the selection of better performing species. Therefore, the spatial and temporal changes in the specialization of the community components may be used as an effective tool to monitor the effects of natural and anthropogenic alterations of the environment in dynamic systems. We examined the temporal dynamics of macroinvertebrate community structure in the hyperhaline habitat of Tarquinia Saltworks (central Italy). We aimed at: (i) investigating the relationships between the level of community specialization and the alterations of the environment across fourteen years; (ii) comparing the ability of aggregate community parameters such as the average abundance vs. species specialization in describing patterns of community composition.
机译:背景技术了解生态社区对人为干扰的反应对于建立保护目标至关重要。生态群落是动态实体,由于其内在特征以及人为压力随时间而变化,因此它们会发生波动。在这方面,基于大量时空数据集的长期研究可能会为理解影响社区结构的模式和过程提供有用的信息。理论证据表明,生物多样性的作用是通过减少生态系统功能的时间变化并通过选择性能更好的物种来提高社区对摄动的反应水平,从而抵制环境变异。因此,社区组件专业化的时空变化可以用作监测动态系统中自然和人为环境变化影响的有效工具。我们研究了塔奎尼亚盐厂(意大利中部)的高盐生境中大型无脊椎动物群落结构的时间动态。我们的目标是:(i)调查十四年来社区专业化水平与环境变化之间的关系; (ii)比较总体群落参数(例如平均丰度与物种专业化)描述群落组成模式的能力。

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