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首页> 外文期刊>Hydrobiologia >Community structure of fish in lowland streams differ substantially between subtropical and temperate climates
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Community structure of fish in lowland streams differ substantially between subtropical and temperate climates

机译:在亚热带和温带气候下,低地溪流中鱼类的群落结构差异很大

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Fish are important in the structuring of other communities and may have large effects on the functioning of aquatic ecosystems. The structure of fish communities, in turn, seems to differ with climate. We compared the characteristics of fish assemblages in lowland streams located in two contrasting climates (cold-temperate Europe and subtropical South America) by use of published and unpublished data on streams of similar depth, width, and slope (n total = 91 streams). We also selected a subset of seven comparable little-affected streams in the two contrasting climates: temperate (Denmark, 55°–57°N, Dk) and subtropical (Uruguay, 30°–35°S, Uy) and compared the fish community structures in relation to environmental characteristics. We then analysed a series of potential explanatory factors behind the patterns observed, in particular the effect of ambient temperature, by comparing temperature-corrected community metabolism. Significantly higher species richness, higher densities, lower biomass, smaller mean body size, and lower mean weight of fish were observed for the subtropical streams than for the temperate streams, both in the literature review and in the subset of streams. Several characteristics of fish assemblages in streams may be explained by direct and indirect effects of temperature. Accordingly, fish in subtropical systems had a temperature-corrected community metabolism I m−2 equal to that of fish in temperate systems, indicating that temperature, besides historical factors, is an important driver of different size structures. Our findings concur with differences previously found in littoral areas of shallow lakes, suggesting that these patterns are not restricted to running waters. Our results elucidate how fish community structure might be affected by increases in temperature triggered by climate warming.
机译:鱼类在其他社区的结构中很重要,并且可能对水生生态系统的功能产生重大影响。反过来,鱼类群落的结构似乎随气候而变化。我们通过使用深度,宽度和坡度相似的溪流(共计91条溪流)的已发表和未发表的数据,比较了处于两种截然不同的气候(冷温欧洲和亚热带南美)的低地溪流中鱼类的特征。我们还选择了两种相反气候中七个可比较受影响的溪流的子集:温带气候(丹麦,55°-57°N,Dk)和亚热带气候(乌拉圭,30°-35°S,Uy),并比较了鱼类群落与环境特征有关的结构。然后,我们通过比较温度校正后的社区代谢分析了观察到的模式背后的一系列潜在解释性因素,尤其是环境温度的影响。在亚热带河流中,与温带河流相比,亚热带河流的物种丰富度更高,密度更高,生物量更低,平均体形更小,平均体重更低,无论是在文献综述还是在河流的子集中。温度直接或间接的影响可以解释河流中鱼群的几个特征。因此,亚热带系统中鱼类的温度校正后的群落代谢I m-2 等于温带系统中鱼类的代谢,表明温度除了历史因素外,还是大小不同结构的重要驱动因素。我们的发现与以前在浅湖沿岸地区发现的差异一致,这表明这些模式并不局限于流水。我们的结果阐明了气候变暖引发的温度升高可能会影响鱼类群落结构。

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