首页> 外文期刊>Oikos: A Journal of Ecology >Seasonal variation in the trophic structure of a spatial prey subsidy linking aquatic and terrestrial food webs: adult aquatic insects
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Seasonal variation in the trophic structure of a spatial prey subsidy linking aquatic and terrestrial food webs: adult aquatic insects

机译:连接水生和陆地食物网的空间猎物补贴的营养结构的季节性变化:成年水生昆虫

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Research over the past decade has established spatial resource subsidies as important determinants of food web dynamics. However, most empirical studies have considered the role of subsidies only in terms of magnitude, ignoring an important property of subsidies that may affect their impact in recipient food webs: the trophic structure of the subsidy relative to in situ resources. This may be especially important when subsidies are composed of organisms, as opposed to nutrient subsidies, because the trophic position of subsidy organisms may differ from in situ prey. I explored the relative magnitude and trophic structure of a cross-habitat prey subsidy, adult aquatic insects, in terrestrial habitats along three streams in the south-central United States. Overall, adult aquatic insects contributed more than one-third of potential insect prey abundance and biomass to the terrestrial habitat. This contribution peaked along a permanent spring stream, reaching as high as 94% of abundance and 86% of biomass in winter. Trophic structure of adult aquatic and terrestrial insects differed. Nearly all adult aquatic insects were non-consumers as adults, whereas all but one taxon of terrestrial insects were consumers. Such a difference created a strong relationship between the relative contribution of the prey subsidy and the trophic structure of the prey assemblage: as the proportion of adult aquatic insects increased, the proportion of consumers in the prey assemblage declined. Specific effects varied seasonally and with distance from the stream as the taxonomic composition of the subsidy changed, but general patterns were consistent. These findings show that adult aquatic insect subsidies to riparian food webs not only elevate prey availability, but also alter the trophic structure of the entire winged insect prey assemblage.
机译:过去十年的研究已经建立了空间资源补贴,作为食物网动态的重要决定因素。但是,大多数实证研究都只是在幅度上考虑了补贴的作用,而忽略了可能影响补贴对接收者食物网影响的补贴的重要属性:补贴相对于原地资源的营养结构。当补贴由生物体组成时,这与营养补贴相比尤为重要,因为补贴生物体的营养位置可能与原地猎物不同。我研究了在美国中南部的三大溪流中陆地栖息地中跨栖息地猎物补贴,成年水生昆虫的相对大小和营养结构。总体而言,成年水生昆虫为陆地生境贡献了三分之一以上的潜在昆虫猎物丰富度和生物量。这一贡献沿着永久的春季溪流达到顶峰,冬季高达​​94%的丰度和86%的生物量。成年水生和陆生昆虫的营养结构不同。几乎所有成年水生昆虫都不像成年消费者那样消费,而陆生昆虫的一个分类群(除一个分类群外)都是消费者。这种差异在猎物补贴的相对贡献与猎物组合的营养结构之间建立了密切的关系:随着成年水生昆虫比例的增加,猎物组合中消费者的比例下降。具体的影响随季节而变化,并且随着补贴的生物分类组成的变化而与溪流的距离不同,但总体模式是一致的。这些发现表明,成年水生昆虫对河岸食物网的补贴不仅提高了猎物的可利用性,而且还改变了整个有翅昆虫猎物组合的营养结构。

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