首页> 外文期刊>Transactions of the American Fisheries Society >Do Nonnative Salmonines Exhibit Greater Density and Production than the Natives They Replace? A Comparison of Nonnative Brook Trout with Native Cutthroat Trout
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Do Nonnative Salmonines Exhibit Greater Density and Production than the Natives They Replace? A Comparison of Nonnative Brook Trout with Native Cutthroat Trout

机译:非本地鲑鱼的密度和产量是否比其替代的土著人更高?非本地布鲁克鳟鱼与本地割喉鳟鱼的比较

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The replacement of native species by nonnative species has been widely documented. In aquatic ecosystems, nonnative trout often replace native trout species to which they are closely related. For example, nonnative brook trout Salvelinus fontinalis have replaced native cutthroat trout Oncorhynchus clarkii throughout western North America. We hypothesized that when brook trout replace cutthroat trout, they exhibit greater density, biomass, and annual production than were achieved by the cutthroat trout before replacement. We tested this hypothesis in five paired streams in the Teton River drainage, Idaho, over a 4-year period. Streams were paired based on similar habitat characteristics and the presence of brook trout or cutthroat trout as the dominant species. Fish were surveyed annually by means of multipass depletion along representative stream reaches. Consistent with our hypothesis, brook trout exhibited 2.4 times greater density, 1.7 times greater biomass, and 2.5 times higher annual production than cutthroat trout. Because age-0 fish were difficult to capture during electrofishing, we also analyzed the data without this age-class. When age-0 fish were excluded, brook trout exhibited 1.3, 1.6, and 2.1 times greater density, biomass, and annual production, respectively, than cutthrout trout. These results are consistent with the hypothesis that nonnative salmonines exhibit greater density and production than the native fishes they replace, though the generality of this finding remains to be tested. The differences that we observed not only testify to the success of brook trout as an introduced species in western North America but also point to likely changes in ecosystem function that may accompany their replacement of native cutthroat trout.
机译:用非本地物种替代本地物种已被广泛记录。在水生生态系统中,非本地鳟鱼经常替代与其密切相关的本地鳟鱼物种。例如,在整个北美西部,非本地河鳟Salvelinus fontinalis取代了本地的喉咙鳟鱼Oncorhynchus clarkii。我们假设,当溪鳟代替cut鳟时,它们的密度,生物量和年产量都比replacement鳟在更换前更高。在4年的时间里,我们在爱达荷州提顿河排水中的五对成对河流中检验了该假设。根据相似的栖息地特征和溪鳟或尖吻鳟作为主要物种,将溪流配对。每年通过沿代表性河段的多程耗水对鱼类进行调查。与我们的假设相符,小鳟鱼的密度比尖嘴鳟鱼高2.4倍,生物量高1.7倍,年产量高2.5倍。由于0岁鱼很难在电钓鱼过程中捕获,因此我们也分析了没有该年龄段的数据。如果剔除0岁鱼,则河鳟的密度,生物量和年产量分别比死角鳟高1.3倍,1.6倍和2.1倍。这些结果与以下假设相符:非本地鲑鱼比其替代的本地鱼类具有更高的密度和产量,尽管这一发现的普遍性尚待检验。我们观察到的差异不仅证明了溪鳟作为北美西部引进物种的成功,而且还指出了生态系统功能的可能变化,这些生态变化可能伴随着它们取代了原住民的鳟鱼。

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