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Who Eats Whom in a Pool? A Comparative Study of Prey Selectivity by Predatory Aquatic Insects

机译:谁在游泳池里吃谁?捕食性水生昆虫对猎物选择性的比较研究

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Predatory aquatic insects are a diverse group comprising top predators in small fishless water bodies. Knowledge of their diet composition is fragmentary, which hinders the understanding of mechanisms maintaining their high local diversity and of their impacts on local food web structure and dynamics. We conducted multiple-choice predation experiments using nine common species of predatory aquatic insects, including adult and larval Coleoptera, adult Heteroptera and larval Odonata, and complemented them with literature survey of similar experiments. All predators in our experiments fed selectively on the seven prey species offered, and vulnerability to predation varied strongly between the prey. The predators most often preferred dipteran larvae; previous studies further reported preferences for cladocerans. Diet overlaps between all predator pairs and predator overlaps between all prey pairs were non-zero. Modularity analysis separated all primarily nectonic predator and prey species from two groups of large and small benthic predators and their prey. These results, together with limited evidence from the literature, suggest a highly interconnected food web with several modules, in which similarly sized predators from the same microhabitat are likely to compete strongly for resources in the field (observed Pianka’s diet overlap indices 0.85). Our experiments further imply that ontogenetic diet shifts are common in predatory aquatic insects, although we observed higher diet overlaps than previously reported. Hence, individuals may or may not shift between food web modules during ontogeny.
机译:捕食性水生昆虫是由小型无鱼水域中的顶级捕食者组成的多样化群体。关于它们饮食结构的知识是零碎的,这阻碍了人们对维持其高度局部多样性的机制及其对局部食物网结构和动态的影响的理解。我们使用成年和幼体鞘翅目,成年异翅目和幼虫纲等9种常见的捕食性水生昆虫进行了多项选择捕食实验,并对它们进行了类似实验的文献调查。在我们的实验中,所有捕食者都选择性地捕食所提供的7种猎物,捕食者之间的捕食脆弱性差异很大。捕食者最常喜欢双足类幼虫。先前的研究进一步报道了对锁骨的偏好。所有捕食者对之间的饮食重叠和所有猎物对之间的饮食重叠都不为零。模块化分析将所有主要的构造性捕食者和猎物种类从大大小小的底栖捕食者及其猎物两组中分离出来。这些结果以及来自文献的有限证据表明,具有多个模块的高度互连的食物网,其中来自相同微生境的类似大小的捕食者可能会在该领域争夺强大的资源(观察到的Pianka的饮食重叠指数> 0.85)。我们的实验进一步暗示,个体遗传饮食的变化在掠食性水生昆虫中很常见,尽管我们观察到饮食重叠比以前报道的要高。因此,个体在个体发育过程中可能会或可能不会在食物网模块之间移动。

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