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Warming impact on herbivore population composition affects top-down control by predators

机译:对食草动物群体组成的热身影响影响捕食者的自上而下控制

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Abstract Understanding warming impact on herbivores facilitates predicting plant/crop dynamics in natural/agricultural systems. However, it remains unclear how warming will affect herbivore population size and population composition, consequently altering herbivore colonization in a tri-trophic system (plant-herbivore-predator or crop-pest-biocontrol agent). We studied a soybean-aphid-lady beetle system, by conducting (1) a laboratory warming experiment to examine warming impact (+2 °C or +4 °C) on the aphid population size and composition (alate proportion), and (2) a field colonization experiment to examine whether the warming-induced effect subsequently interacts with predators (lady beetles) in affecting aphid colonization. The results showed that warming affected the initial aphid population composition (reduced alate proportion) but not population size; this warming-induced effect strengthened the top-down control by lady beetles and slowing aphid colonization. In other words, biocontrol on crop pests by predators could improve under 2–4 °C warming. Furthermore, aphid colonization was affected by an interaction between the alate proportion and predator (lady beetle) presence. This study suggests that warming affects herbivore population composition and likely mediates top-down control on herbivore colonization by predators. This mechanism may be crucial but underappreciated in climate change ecology because population composition (wing form, sex ratio, age/body size structure) shifts in many species under environmental change.
机译:摘要了解对食草动物的变暖影响有助于预测自然/农业系统中的植物/作物动态。然而,仍然尚不清楚变暖会影响食草动物群体大小和人口组成的热化,从而改变三次营养系统中的草食物定植(植物 - 食草动物 - 捕食者或作物 - 害虫生物控制剂)。我们研究了一个大豆 - 蚜虫甲虫系统,通过进行(1)实验室变暖实验,以检查蚜虫群体大小和组成(烯丙醛比例)上的温暖冲击(+ 2°C或+ 4°C),以及(2 )场殖民化实验,以检查变暖诱导的效果是否随后与影响蚜虫定植的捕食者(Lady Beetles)相互作用。结果表明,变暖影响初始蚜虫群体成分(减少烯丙烯比例)但不是群体规模;这种加热诱导的效果加强了Lady Beetles的自上而下的控制,蚜虫殖民化减慢。换句话说,捕食者在农作物害虫上的生物管道可以在2-4°C的变暖下改善。此外,蚜虫定植受烯丙比例和捕食者(Lady Beetle)存在之间的相互作用的影响。该研究表明,变暖会影响食草动物群体组成,并且可能通过捕食者对食草殖民化的自上而下控制。这种机制可能是至关重要的,但在气候变化生态学中受到估计,因为在环境变化下,人口成分(翼形式,性别比率,年龄/体型结构)在许多物种中转移。

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