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Responses of community-level plant-insect interactions to climate warming in a meadow steppe

机译:社区水平植物 - 昆虫与草原草原气候变暖的反应

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Climate warming may disrupt trophic interactions, consequently influencing ecosystem functioning. Most studies have concentrated on the temperature-effects on plant-insect interactions at individual and population levels, with a particular emphasis on changes in phenology and distribution. Nevertheless, the available evidence from the community level is limited. A 3-year field manipulative experiment was performed to test potential responses of plant and insect communities, and plant-insect interactions, to elevated temperature in a meadow steppe. Warming increased the biomass of plant community and forbs, and decreased grass biomass, indicating a shift from grass-dominant to grass-forb mixed plant community. Reduced abundance of the insect community under warming, particularly the herbivorous insects, was attributed to lower abundance of Euchorthippus unicolor and a Cicadellidae species resulting from lower food availability and higher defensive herbivory. Lower herbivore abundance caused lower predator species richness because of reduced prey resources and contributed to an overall decrease in insect species richness. Interestingly, warming enhanced the positive relationship between insect and plant species richness, implying that the strength of the plant-insect interactions was altered by warming. Our results suggest that alterations to plant-insect interactions at a community level under climate warming in grasslands may be more important and complex than previously thought.
机译:气候变暖可能会破坏营养互动,从而影响生态系统功能。大多数研究专注于对个体和人口水平对植物 - 昆虫相互作用的温度影响,特别强调候选和分布的变化。然而,来自社区一级的可用证据是有限的。进行了3年的现场操纵实验,以测试植物和昆虫群落的潜在反应,以及植物 - 昆虫相互作用,在草原草原中升高。暖和植物群落和杂草的生物质增加,以及降低的草生物量,表明从草Forb混合植物群落中的草地占据偏移。减少在变暖的昆虫群落,特别是食草昆虫的丰富性归因于较低丰富的欧盟群岛单色和由较低的食物可用性和更高的防守食草造成的枸杞种类。由于猎物资源降低,较低的食草动物丰富导致较低的捕食者物种丰富性,并导致昆虫物种丰富的总体减少。有趣的是,变暖增强了昆虫和植物物种丰富的正面关系,这意味着通过变暖改变了植物 - 昆虫相互作用的强度。我们的研究结果表明,在草原上气候变暖的社区一级的植物昆虫相互作用的变化可能比以前想到的更重要和复杂。

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