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首页> 外文期刊>Fundamental and applied limnology >Understanding the natural variability of diatom assemblages in springs of the Adamello-Brenta Nature Park (south-eastern Alps) on a temporal scale
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Understanding the natural variability of diatom assemblages in springs of the Adamello-Brenta Nature Park (south-eastern Alps) on a temporal scale

机译:在时间尺度上了解阿达梅洛-布伦塔自然公园(南阿尔卑斯山)的泉水中硅藻组合的自然变异性

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It is thought that long-term monitoring is an essential tool through which conservationists and managers (i) are alerted when the system departs from the natural state, (ii) can check their environmental policy, and (iii) can detect disturbance effects. However, while long-term studies are growing in number, the lack of information on the background rates of natural changes could lead to a biased interpretation of results. In this study we analyzed the diatom composition of yearly samples (14-16 yrs) in four springs with the following goals: (1) to estimate the consequences of sampling-related processes on the species composition and relative abundance; (2) to determine the form of the assemblages' variation, evaluating whether the assemblages can be predicted by cyclic, directional, or stochastic changes; (3) to test if, and to what extent, the diatom variability (variation in species composition, rela-tive abundance and diversity) on a temporal scale is driven by the environment; (4) to evaluate the degree of tempo-ral concordance among the diatom assemblages inhabiting four springs. Results showed that because the effect of sampling was inversely proportional to the species abundances, the presence of the least abundant species over the years were mainly a result of chance. The analyses allowed us to discriminate between stochastic and directional patterns, revealing the ongoing changes in two out of four springs. Because the environmental variables did not explain a significant portion of this variability, other hypotheses are put forward. The assemblages' dynamics of species composition over time were significantly synchronous in two out of six couples of springs, and regardless of the environment. This result can suggest that internal, within springs, drivers may be more important than extrinsic forces operating over regional spatial scales. Overall, these results provide a benchmark of diatom variability over time and in natural conditions delimiting the "limits of acceptable changes".
机译:人们认为,长期监测是必不可少的工具,通过该工具,环保主义者和管理者(i)当系统脱离自然状态时会得到警报,(ii)可以检查其环境政策,并且(iii)可以检测干扰影响。但是,尽管长期研究的数量在增加,但缺乏有关自然变化本底率的信息可能会导致对结果的偏见。在这项研究中,我们分析了四个春季年度样本(14-16岁)的硅藻组成,其目标如下:(1)估计与采样有关的过程对物种组成和相对丰度的影响; (2)确定组合的变化形式,评估组合是否可以通过周期性,方向性或随机变化来预测; (3)测试时间尺度上的硅藻变异性(物种组成,相对丰度和多样性的变化)是否以及在何种程度上受到环境的驱动; (4)评估居住在四个泉水中的硅藻组件之间的时间一致程度。结果表明,由于采样的效果与物种的丰度成反比,因此多年来最不丰富的物种的存在主要是偶然的结果。分析使我们能够区分随机模式和方向性模式,从而揭示了四个弹簧中有两个弹簧的持续变化。由于环境变量并不能解释这种可变性的很大一部分,因此提出了其他假设。在不考虑环境的情况下,六对泉水中有两对泉水随时间变化的种群动态显着同步。该结果表明,在区域内,内部弹簧驱动器可能比在区域空间尺度上运行的外部力更为重要。总的来说,这些结果提供了硅藻随时间变化和在自然条件下变化的基准,从而界定了“可接受变化的极限”。

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