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食肉动物尸体带来的感染风险可能会影响蝇蛆和食虫性雀形目鸟类之间的营养相互作用。

Infection risk associated with carnivore carcasses may govern trophic interactions between maggots and insectivorous passerine birds.

机构信息

College of Bioresource Science, Nihon University , Fujisawa, Kanagawa, Japan.

Biodiversity Research Center, Research Institute of Environment, Agriculture and Fisheries , Neyagawa, Osaka, Japan.

出版信息

Biol Lett. 2024 Jun;20(6):20240069. doi: 10.1098/rsbl.2024.0069. Epub 2024 Jun 19.

Abstract

Infection risk by pathogenic agents motivates hosts to avoid using resources with high risks. This, in turn, results in increased availability of these resources for other species that are more tolerant of infections. For instance, carcasses of mammalian carnivores are frequently avoided by conspecific or closely related carnivores, allowing them to be almost exclusively used by maggots. This may lead to novel interactions with other species. This study investigated the consumption of maggots from carnivore carcasses by non-corvid passerines. We successfully monitored 66 raccoon carcasses in Hokkaido, Japan, from 2016 to 2019. Vertebrates only scavenged 14 carcasses before maggot dispersal; the other 52 carcasses produced abundant maggots that regularly fed at least 12 species of non-corvid passerines. Surprisingly, predation occurred at a distance from the carcasses, mainly after maggot dispersal for pupation, despite the higher efficiency of feeding on maggot masses on the carcasses. Birds are likely to reduce the potential risk of infection from the carcass and/or from maggots on the carcasses. Overall, only 1% of maggots were consumed. Our results suggest that necrophagous flies could benefit from the infection risk associated with carnivore carcasses, which may decrease scavenging by other carnivores and constrain maggot consumption by insectivorous birds.

摘要

病原体感染的风险促使宿主避免使用高风险的资源。这反过来又导致这些资源对其他更能耐受感染的物种的可用性增加。例如,哺乳动物食肉动物的尸体经常被同种或亲缘关系密切的食肉动物回避,这使得它们几乎完全被蛆虫利用。这可能会导致与其他物种的新的相互作用。本研究调查了非鸦科雀形目鸟类对食肉动物尸体上的蛆的消耗。我们成功地在 2016 年至 2019 年间监测了日本北海道的 66 只浣熊尸体。在蛆虫扩散之前,只有脊椎动物捕食了 14 具尸体;其他 52 具尸体产生了大量的蛆虫,定期喂养至少 12 种非鸦科雀形目鸟类。令人惊讶的是,尽管在尸体上捕食蛆虫的效率更高,但捕食行为是在远离尸体的地方发生的,主要是在蛆虫扩散为蛹后。鸟类可能会降低从尸体和/或尸体上的蛆虫感染的潜在风险。总的来说,只有 1%的蛆虫被消耗。我们的研究结果表明,食腐蝇可能会受益于与食肉动物尸体相关的感染风险,这可能会减少其他食肉动物的捕食,并限制食虫鸟类对蛆虫的消耗。

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