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首页> 外文期刊>Global ecology and biogeography >Geographic isolation and climate govern the functional diversity of native fish communities in European drainage basins.
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Geographic isolation and climate govern the functional diversity of native fish communities in European drainage basins.

机译:地理隔离和气候控制着欧洲流域本地鱼类群落的功能多样性。

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Aim: In times of biodiversity crisis, it is extremely important to understand diversity gradients. In particular, the study of the diversity of ecological functions is a key issue for the management of ecosystem integrity. Here we identify areas of low functional diversity of the native fish fauna in European drainage basins and we determine the relative importance of three underlying mechanisms: environmental filtering, geographic isolation and climatic history. Location: The European continent. Methods: Based on 14 morphological traits that are closely related to fish function (habitat and dietary niches), three independent functional diversity indices [functional richness (FR), functional evenness (FE), functional divergence (FD)] were calculated for 128 European drainage basins with a total of 230 fish species. The indices were standardized for species richness using null models. The patterns of the standardized indices are described and three potentially underlying mechanisms are tested using variance partitioning and multi-linear regression models. Results: FR and FD were highest in eastern European drainage basins and in Great Britain and lowest in the Mediterranean. FE patterns were less pronounced. All observed patterns were mainly governed by geographic isolation and present environmental conditions. Within the environmental conditions, average annual temperature and precipitation were good predictors for functional diversity. The role of habitat diversity and size was negligible. Main conclusions: Geographic isolation coupled with harsh environmental conditions such as extreme temperatures and low precipitation, as in Mediterranean regions, can lead to low FR and FD. This can be explained by extinction that could not be compensated by re-colonization and high speciation. Due to their high functional redundancy, communities in these areas might better withstand further species extinctions on a small scale. Over the short term, however, their often extremely low FR suggests a less flexible functioning that can hinder their ability to withstand today's rapid environmental and anthropogenic threats.
机译:目的:在生物多样性危机时期,了解多样性梯度非常重要。特别是,对生态功能多样性的研究是管理生态系统完整性的关键问题。在这里,我们确定了欧洲流域内本地鱼类动物区系功能低下的区域,并确定了三种基本机制的相对重要性:环境过滤,地理隔离和气候历史。所在地:欧洲大陆。方法:根据与鱼类功能(栖息地和饮食生态位)密切相关的14个形态特征,计算了128个欧洲鱼类的三个独立的功能多样性指数[功能丰富度(FR),功能均匀度(FE),功能差异(FD)]。流域共有230种鱼类。使用零模型对物种丰富度的指标进行标准化。描述了标准化指标的模式,并使用方差划分和多线性回归模型测试了三种潜在的潜在机制。结果:FR和FD在东欧流域和英国最高,在地中海最低。有限元模式不太明显。所有观察到的模式主要受地理隔离和当前环境条件支配。在环境条件下,年平均温度和降水是功能多样性的良好预测指标。栖息地多样性和规模的作用可忽略不计。主要结论:在地中海地区,地理隔离加上恶劣的环境条件(例如极端温度和低降水)会导致FR和FD降低。这可以通过灭绝来解释,而灭绝不能通过重新定殖和高物种形成来补偿。由于它们具有高度的功能冗余性,这些地区的社区可能更好地承受小规模的进一步物种灭绝。但是,从短期来看,它们通常极低的帧频表明其功能不太灵活,可能会阻碍它们抵御当今快速的环境和人为威胁。

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