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Elevated air temperature alters an old-field insect community in a multifactor climate change experiment

机译:气温升高在多因素气候变化实验中改变了旧田昆虫群落

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摘要

To address how multiple, interacting climate drivers may affect plant-insect community associations, we sampled insects that naturally colonized a constructed old-field plant community grown for over 2 years under simultaneous CO, temperature, and water manipulation. Insects were sampled using a combination of sticky traps and vacuum sampling, identified to morphospecies and the insect community with respect to abundance, richness, and evenness quantified. Individuals were assigned to four broad feeding guilds in order to examine potential trophic level effects. Although there were occasional effects of CO and water treatment, the effects of warming on the insect community were large and consistent. Warming significantly increased Order Thysanoptera abundance and reduced overall morphospecies richness and evenness. Nonmetric multidimensional scaling found that only temperature affected insect community composition, while a Scirensen similarity index showed less correspondence in the insect community between temperature treatments compared with CO or soil water treatments. Within the herbivore guild, elevated temperature significantly reduced richness and evenness. Corresponding reductions of diversity measures at higher trophic levels (i.e. parasitoids), along with the finding that herbivore richness was a significant predictor of parasitoid richness, suggest trophic-level effects within the insect community. When the most abundant species were considered in temperature treatments, a small number of species increased in abundance at elevated temperature, while others declined compared with ambient temperature. Effects of temperature in the dominant insects demonstrated that treatment effects were limited to a relatively small number of morphospecies. Observed effects of elevated CO concentration on whole-community foliar N concentration did not result in any effect on herbivores, which are probably the most susceptible guild to changes in plant nutritional quality. These results demonstrate that climatic warming may alter certain insect communities via effects on insect species most responsive to a higher temperature, contributing to a change in community structure.
机译:为了解决多种相互作用的气候驱动因素如何影响植物-昆虫群落之间的联系,我们对昆虫进行了采样,这些昆虫自然定植在一个同时在CO,温度和水调节下生长了2年以上的人工田地植物群落中。使用粘捕器和真空采样相结合的方式对昆虫进行采样,根据形态,物种和昆虫群落的丰度,丰富度和均匀度对昆虫进行鉴定。为了研究潜在的营养水平影响,将个体分配到四个广泛的喂养行会。尽管偶尔会有CO和水处理的影响,但变暖对昆虫群落的影响却是巨大且一致的。变暖显着增加了Th翅目的丰富度,并降低了整个形态种的丰富度和均匀度。非度量多维标度发现,仅温度影响昆虫群落组成,而Scirensen相似性指数显示,与CO或土壤水处理相比,温度处理之间昆虫群落的对应性较小。在草食动物行业,升高的温度会明显降低其丰富度和均匀度。在较高营养水平下(即类寄生物)相应地减少了多样性措施,同时发现草食动物的丰富度是类寄生物丰富度的重要预测指标,这表明昆虫群落内部的营养水平效应。当在温度处理中考虑到最丰富的物种时,少数物种在高温下的丰度增加,而其他物种则与环境温度相比下降。温度对优势昆虫的影响表明,治疗作用仅限于相对少量的形态物种。观察到CO浓度升高对整个社区叶片N浓度的影响并未对草食动物产生任何影响,而草食动物可能是最容易受到植物营养质量变化的影响。这些结果表明,气候变暖可能通过影响对温度最敏感的昆虫物种而改变某些昆虫群落,从而导致群落结构的变化。

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