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Cascading effects of predatory fish on the composition of benthic algae in high-altitude streams

机译:捕食性鱼类对高海拔河流底栖藻类组成的级联效应

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Cascading effects of predators can affect ecosystem properties by changing plant biomass, distribution and assemblage composition. Using data from field surveys and whole-stream experiments we tested the hypothesis that predatory trout change assemblage composition of benthic algae in high-elevation streams mediated by grazer behavior. Field surveys revealed that the taxonomic composition of algal assemblages differed significantly between streams that contained trout and those that were fishless; but comparisons of palatable versus unpalatable algal taxa between fish and fishless streams were equivocal because of high natural variability. Therefore, we tested for a behavioral (non-consumptive) trophic cascade experimentally by adding brook trout chemical cues to six naturally fishless streams for 25 days and compared responses of grazers and algae to six reference streams without fish cues added. Algal response variables included rates of change in the abundance of three physiognomic categories, from most palatable (attached erect and prostrate diatoms) to least palatable (non-diatoms), as determined from food selectivity analyses of the most common grazers (mayflies and caddisflies). Fish cues did not affect the mean densities or changes in densities of total grazers or any individual grazer species. However, in streams where fish cues were added, rates of accrual of attached erect diatoms, which was the preferred algal type for the grazer most vulnerable to trout predation (Baetis), were higher and their densities increased significantly faster with increasing densities of this grazer species than in reference streams. Results of his experiment support the hypothesis that predator induced suppression of grazer foraging behavior, rather than cascading effects of top predators on grazer density, may contribute to variation in the composition of algal assemblages among streams by allowing proliferation of most palatable algal species.
机译:捕食者的级联效应可通过改变植物的生物量,分布和组合组成来影响生态系统特性。使用来自野外调查和全流实验的数据,我们检验了以下假设:掠食者行为介导的高海拔河流底栖藻类的掠食性鳟鱼变化组合组成。实地调查表明,含鳟鱼的溪流和无鱼的溪流之间藻类组合的分类学组成明显不同。但是由于高自然变异性,鱼和无鱼流之间可口和不可口藻类分类的比较是模棱两可的。因此,我们通过将溪鳟鱼化学提示添加到六个自然无鱼流中25天,通过实验测试了行为性(非消耗性)营养级联,并比较了放牧者和藻类对六个不添加鱼提示的参考流的响应。藻类反应变量包括从最可口的(附着的直立和pro直的硅藻)到最不可口的(非硅藻)三种生理学类别的丰度变化率,这是根据对最常见的食草动物(may和and)的食物选择性分析确定的。鱼类线索并不影响总放牧者或任何单个放牧者的平均密度或密度变化。但是,在添加了鱼线索的溪流中,附着的直立硅藻的积累率较高,并且密度随着密度的增加而显着加快,而直立的硅藻是最容易被鳟鱼捕食(Baetis)的放牧者首选的藻类。物种比参考流中的物种多。他的实验结果支持这样的假设:捕食者抑制了放牧者的觅食行为,而不是顶级掠食者对放牧者密度的级联效应,可能通过允许大多数可食藻类物种的繁殖而导致溪流中藻类组成的变化。

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