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Functional redundancy and sensitivity of fish assemblages in European rivers lakes and estuarine ecosystems

机译:欧洲河流湖泊和河口生态系统中鱼群的功能冗余和敏感性

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摘要

The impact of species loss on ecosystems functioning depends on the amount of trait similarity between species, i.e. functional redundancy, but it is also influenced by the order in which species are lost. Here we investigated redundancy and sensitivity patterns across fish assemblages in lakes, rivers and estuaries. Several scenarios of species extinction were simulated to determine whether the loss of vulnerable species (with high propensity of extinction when facing threats) causes a greater functional alteration than random extinction. Our results indicate that the functional redundancy tended to increase with species richness in lakes and rivers, but not in estuaries. We demonstrated that i) in the three systems, some combinations of functional traits are supported by non-redundant species, ii) rare species in rivers and estuaries support singular functions not shared by dominant species, iii) the loss of vulnerable species can induce greater functional alteration in rivers than in lakes and estuaries. Overall, the functional structure of fish assemblages in rivers is weakly buffered against species extinction because vulnerable species support singular functions. More specifically, a hotspot of functional sensitivity was highlighted in the Iberian Peninsula, which emphasizes the usefulness of quantitative criteria to determine conservation priorities.
机译:物种丧失对生态系统功能的影响取决于物种之间性状相似性的数量,即功能冗余,但也受到物种丧失顺序的影响。在这里,我们调查了湖泊,河流和河口中鱼类种群的冗余度和敏感性模式。对物种灭绝的几种情况进行了模拟,以确定易损物种的丧失(面对威胁时具有高度灭绝的倾向)是否比随机灭绝引起更大的功能改变。我们的结果表明,功能性冗余往往随着湖泊和河流中物种丰富度的增加而增加,而不是在河口。我们证明了i)在这三个系统中,功能性状的某些组合得到非冗余物种的支持,ii)河流和河口中的稀有物种支持优势物种不具备的奇异功能,iii)脆弱物种的丧失可能导致更大的河流中的功能变化比湖泊和河口中的变化大。总体而言,河流中鱼类种群的功能结构对物种灭绝的缓冲作用较弱,因为脆弱的物种具有奇异的功能。更具体地说,伊比利亚半岛突出了功能敏感性的热点,强调了定量标准对确定保护重点的有用性。

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