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Population status and ecology of the Salmo trutta complex in an Italian river basin under multiple anthropogenic pressures

机译:在多个人为压力下,意大利河流域萨尔莫特拉特拉综合体的人口现状与生态

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Salmonids inhabiting Mediterranean rivers are of particular concern for biodiversity conservation, as they are threatened by various stressors, including habitat alterations, overfishing, climate change, and introgressive hybridization with alien species. In the Tiber River basin (Central Italy), genetic introgression phenomena of the native Salmo cettii with the non‐native Salmo trutta hinder the separate analysis of the two species, which are both included in the S.?trutta complex. Little is known about the factors currently limiting the trout populations in this area, particularly with respect to climate change. With the intention of filling this gap, the aims of the current study were to (a) quantify changes in the climate and (b) analyze the distribution, status, and ecology of trout populations, in the context of changing abiotic conditions over the last decades. Fish stock assessments were carried out by electrofishing during three census periods (1998–2004, 2005–2011, and 2012–2018) at 129 sites. The trend over time of meteorological parameters provided evidence for increased air temperature and decreased rainfall. Multivariate analysis of trout densities and environmental data highlighted the close direct correlation of trout abundance with water quality, altitude, and current speed. Climate‐induced effects observed over time in the sites where trout were sampled have not yet led to local extinctions or distribution shifts, indicating a marked resilience of trout, probably due to the buffering effect of intrinsic population dynamics. Decreasing body conditions over time and unbalanced age structures support the hypothesis that variations in hydraulic regime and water temperature could overcome these compensatory effects, which may lead to a severe decline in trout populations in the near future. In a climate change context, habitat availability plays a key role in the distribution of cold‐water species, which often do not have the possibility to move upstream to reach their thermal optimum because of water scarcity in the upper river stretches.
机译:栖息地中海河流的鲑鱼对生物多样性保护特别关注,因为它们受到各种压力源的威胁,包括栖息地改变,过度捕捞,气候变化以及与外来物种的血液杂交。在Tiber River河流域(意大利中部),天然Salmo Cettii的遗传速度现象与非本地Salmo Trutta阻碍了两种物种的单独分析,既包含在S.?TRUTTA复合物中。对于目前限制该领域的鳟鱼群体的因素,特别是对于气候变化来说很少。随着填补这一差距的意图,目前研究的目的是(a)量化气候和(b)的变化分析鳟鱼群体的分布,地位和生态,在不断变化的背景下的背景下几十年。在129个地点的三个人口普查期间(1998-2004,2005-2011和2012-2018)在三个人口普查期间进行了鱼类股票评估。气象参数随着时间的推移提供了增加的空气温度和降雨量减少的证据。鳟鱼密度和环境数据的多变量分析强调了鳟鱼丰富与水质,高度和电流速度的紧密直接相关。在鳟鱼被取样的地点随着时间的推移尚未导致局部灭绝或分布换档的遗址,表明鳟鱼的显着弹性,可能是由于内在人口的缓冲效应,因此尚未导致局部灭绝或分布换档。随着时间的推移和不平衡年龄结构的假设减少了身体条件,可以克服这些补偿效果的假设,这可能导致不久的将来鳟鱼群体的严重下降。在气候变化背景下,栖息地可用性在冷水物种的分布中起着关键作用,这通常没有可能在上游移动以达到其热最佳的,因为上河延伸的水资源稀缺。

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