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Increased temperature alters feeding behavior of a generalist herbivore

机译:温度升高会改变多食草食动物的摄食行为

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Temperature can regulate a number of important biological processes and species interactions. For example, environmental temperature can alter insect herbivore consumption, growth and survivorship, suggesting that temperature-driven impacts on herbivory could influence plant community composition or nutrient cycling. However, few studies to date have examined whether rising temperature influences herbivore preference and performance among multiple plant species, which often dictates their impact at the community level. Here, we assessed the effects of temperature on the performance and preference of the generalist herbivore Popillia japonica among nine plant species. We show that, on average, consumption rates and herbivore performance increased at higher temperatures. However, there was considerable variation among plant species with consumption and performance increasing on some plant species at higher temperatures but decreasing on others. Plant nutritional quality appeared to influence these patterns as beetles increased feeding on high-nitrogen plants with increasing temperature, suggesting stronger nitrogen limitation. In addition to changes in feeding rates, feeding preferences of P. japonica shifted among temperatures, a pattern that was largely explained by differential deterrence of plant chemical extracts at different temperatures. In fact, temperature-induced changes in the efficacy of plant chemical extracts led P. japonica to reduce its diet breadth at higher temperatures. Our results indicate that rising temperatures will influence herbivore feeding behavior by altering the importance of plant nutritional and chemical traits, suggesting that climate change will alter the strength and sign of plant-insect interactions.
机译:温度可以调节许多重要的生物过程和物种相互作用。例如,环境温度可以改变昆虫食草动物的消费,生长和生存能力,这表明温度驱动的食草动物影响可能影响植物群落组成或养分循环。但是,迄今为止,很少有研究检查温度升高是否会影响多种植物物种中的草食动物的喜好和表现,这通常决定了它们对社区的影响。在这里,我们评估了温度对九种植物中全草食性日本小Pop的性能和偏好的影响。我们显示,平均而言,在较高温度下食用率和草食动物性能会提高。但是,植物种类之间存在相当大的差异,某些植物在较高温度下的消耗量和性能增加,而另一些则减少。植物的营养质量似乎会影响这些模式,因为甲虫会随着温度的升高而增加高氮植物的摄食量,这表明更强的氮限制。除了进食速率的变化外,粳稻的进食偏好在温度之间也有所变化,这种模式在很大程度上由不同温度下植物化学提取物的不同威慑作用所解释。实际上,温度诱导的植物化学提取物功效变化导致日本假单胞菌在较高温度下降低其饮食宽度。我们的结果表明,升高的温度将通过改变植物营养和化学特性的重要性来影响草食动物的进食行为,这表明气候变化将改变植物与昆虫相互作用的强度和迹象。

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