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Deforestation homogenizes tropical parasitoid-host networks

机译:砍伐森林使热带寄生虫-宿主网络同质化

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Human activities drive biotic homogenization (loss of regional diversity) of many taxa. However, whether species interaction networks (e.g., food webs) can also become homogenized remains largely unexplored. Using 48 quantitative parasitoid-host networks replicated through space and time across five tropical habitats, we show that deforestation greatly homogenized network structure at a regional level, such that interaction composition became more similar across rice and pasture sites compared with forested habitats. This was not simply caused by altered consumer and resource community composition, but was associated with altered consumer foraging success, such that parasitoids were more likely to locate their hosts in deforested habitats. Furthermore, deforestation indirectly homogenized networks in time through altered mean consumer and prey body size, which decreased in deforested habitats. Similar patterns were obtained with binary networks, suggesting that interaction (link) presence-absence data may be sufficient to detect network homogenization effects. Our results show that tropical agroforestry systems can support regionally diverse parasitoid-host networks, but that removal of canopy cover greatly homogenizes the structure of these networks in space, and to a lesser degree in time. Spatiotemporal homogenization of interaction networks may alter coevolutionary outcomes and reduce ecological resilience at regional scales, but may not necessarily be predictable from community changes observed within individual trophic levels.
机译:人类活动推动了许多类群的生物同质化(区域多样性丧失)。但是,物种相互作用网络(例如食物网)是否也可以变得同质化在很大程度上尚待探索。使用在五个热带生境中通过时空复制的48个数量化的拟寄生物-宿主网络,我们发现,森林砍伐在区域一级极大地均化了网络结构,因此与森林生境相比,水稻和牧场之间的相互作用组成变得更加相似。这不仅是由于消费者和资源社区组成的变化而引起的,而且还与消费者觅食成功的变化有关,因此,寄生虫更可能将其寄主安置在森林砍伐的生境中。此外,森林砍伐通过改变消费者和猎物的平均大小而在时间上间接地使网络同质化,森林砍伐的生境减少了。使用二进制网络获得了类似的模式,这表明交互(链接)存在/缺失数据可能足以检测网络均质化效果。我们的结果表明,热带农林业系统可以支持区域性的寄生虫-宿主网络,但是去除树冠覆盖可以使这些网络在空间上的结构同质化,并且时间上的影响较小。相互作用网络的时空同质化可能会改变共同演化的结果并降低区域尺度上的生态适应力,但不一定可以通过在单个营养级观察到的群落变化来预测。

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