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Eating local: Influences of habitat on the diet of little brown bats (Myotis lucifugus)

机译:局部饮食:栖息地对小棕蝙蝠(Myotis lucifugus)饮食的影响

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摘要

We employ molecular methods to profile the diet of the little brown bat, Myotis lucifugus, and describe spatial and temporal changes in diet over their maternity season. We identified 61 prey species of insects and 5 species of arachnid. The largest proportion of prey (~32%) were identified as species of the mass-emerging Ephemeroptera (mayfly) genus Caenis. Bats roosting in agricultural settings had lower dietary richness than those occupying a roost located on a forest fragment in a conservation area. We detected temporal fluctuations in diet over the maternity season. Dipteran (fly) species dominated the diet early in the season, replaced later by species of mayfly. Because our methodology provides species-level identification of prey, we were able to isolate environmental indicator species in the diet and draw conclusions about the location and type of their foraging habitat and the health of these aquatic systems. The species detected suggested that the bats use variable habitats; members of one agricultural roost foraged on insects originating in rivers or streams while those in another agricultural roost and the forest roost fed on insects from pond or lake environments. All source water for prey was of fair to good quality, though no species detected are intolerant of pollution thus the habitat cannot be classified as pristine. Our study outlines a model system to investigate the abiotic and biotic interactions between habitat factors through this simple food chain to the top predator.
机译:我们采用分子方法对小棕蝙蝠(Myotis lucifugus)的饮食进行剖析,并描述其产季饮食的时空变化。我们确定了61种昆虫的捕食物种和5种蜘蛛的物种。大量被捕食的猎物(〜32%)被确定为大量出现的星翅目(may)属Caenis的种类。在农业环境中栖息的蝙蝠比在保护区森林碎片上栖息的蝙蝠的饮食丰富度低。我们检测到了产妇季节饮食中的时间波动。在本季节初期,Dipteran(果蝇)种类占主导地位,后来被may蝇种类取代。由于我们的方法论可提供物种级别的猎物识别,因此我们能够分离饮食中的环境指标物种,并就其觅食栖息地的位置和类型以及这些水生系统的健康得出结论。所发现的物种表明,蝙蝠使用了可变的栖息地。一种农业栖息地的成员觅食源自河流或溪流的昆虫,而另一种农业栖息地和森林栖息地的成员则以池塘或湖泊环境中的昆虫为食。尽管没有发现任何物种不耐污染,但所有用于捕食的水源的水质都达到了良好的质量,因此不能将其归类为原始生物。我们的研究概述了一个模型系统,该模型系统通过此简单的食物链与顶级捕食者之间的关系来研究栖息地因素之间的非生物和生物相互作用。

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