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资源专家主导与温度相关的当地昆虫群落更替——对蛾类和甲虫18年全季节记录的分析

Resource specialists lead local insect community turnover associated with temperature - analysis of an 18-year full-seasonal record of moths and beetles.

作者信息

Thomsen Philip Francis, Jørgensen Peter Søgaard, Bruun Hans Henrik, Pedersen Jan, Riis-Nielsen Torben, Jonko Krzysztof, Słowińska Iwona, Rahbek Carsten, Karsholt Ole

机构信息

Centre for GeoGenetics, Natural History Museum of Denmark, University of Copenhagen, Copenhagen, Denmark.

Center for Macroecology, Evolution and Climate, Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

J Anim Ecol. 2016 Jan;85(1):251-61. doi: 10.1111/1365-2656.12452. Epub 2015 Nov 2.

Abstract

Insect responses to recent climate change are well documented, but the role of resource specialization in determining species vulnerability remains poorly understood. Uncovering local ecological effects of temperature change with high-quality, standardized data provides an important first opportunity for predictions about responses of resource specialists, and long-term time series are essential in revealing these responses. Here, we investigate temperature-related changes in local insect communities, using a sampling site with more than a quarter-million records from two decades (1992-2009) of full-season, quantitative light trapping of 1543 species of moths and beetles. We investigated annual as well as long-term changes in fauna composition, abundance and phenology in a climate-related context using species temperature affinities and local temperature data. Finally, we explored these local changes in the context of dietary specialization. Across both moths and beetles, temperature affinity of specialists increased through net gain of hot-dwelling species and net loss of cold-dwelling species. The climate-related composition of generalists remained constant over time. We observed an increase in species richness of both groups. Furthermore, we observed divergent phenological responses between cold- and hot-dwelling species, advancing and delaying their relative abundance, respectively. Phenological advances were particularly pronounced in cold-adapted specialists. Our results suggest an important role of resource specialization in explaining the compositional and phenological responses of insect communities to local temperature increases. We propose that resource specialists in particular are affected by local temperature increase, leading to the distinct temperature-mediated turnover seen for this group. We suggest that the observed increase in species number could have been facilitated by dissimilar utilization of an expanded growing season by cold- and hot-adapted species, as indicated by their oppositely directed phenological responses. An especially pronounced advancement of cold-adapted specialists suggests that such phenological advances might help minimize further temperature-induced loss of resource specialists. Although limited to a single study site, our results suggest several local changes in the insect fauna in concordance with expected change of larger-scale temperature increases.

摘要

昆虫对近期气候变化的响应已有充分记录,但资源专业化在决定物种脆弱性方面的作用仍知之甚少。利用高质量、标准化的数据揭示温度变化的局部生态效应,为预测资源专家的响应提供了重要的首个机会,而长期时间序列对于揭示这些响应至关重要。在此,我们利用一个采样点进行研究,该采样点有来自二十年(1992 - 2009年)的超过二十五万条记录,这些记录是通过全季节对1543种蛾类和甲虫进行定量灯光诱捕获得的。我们在与气候相关的背景下,利用物种温度亲和力和当地温度数据,研究了当地昆虫群落与温度相关的变化。最后,我们在饮食专业化的背景下探讨了这些局部变化。在蛾类和甲虫中,专家型物种的温度亲和力通过热栖息物种的净增加和冷栖息物种的净减少而增加。泛化种与气候相关的组成随时间保持不变。我们观察到两组物种丰富度都有所增加。此外,我们观察到冷栖息物种和热栖息物种之间在物候响应上存在差异,分别提前和推迟了它们的相对丰度。物候提前在适应寒冷的专家型物种中尤为明显。我们的结果表明资源专业化在解释昆虫群落对局部温度升高的组成和物候响应方面具有重要作用。我们提出,特别是资源专家型物种受到局部温度升高的影响,导致该群体出现明显的温度介导的更替。我们认为,观察到的物种数量增加可能是由于适应寒冷和适应炎热的物种对延长的生长季节的不同利用所致,这从它们相反方向的物候响应中可以看出。适应寒冷的专家型物种尤其明显的提前表明,这种物候提前可能有助于最大限度地减少温度进一步升高导致的资源专家型物种的损失。尽管仅限于一个研究地点,但我们的结果表明昆虫动物群存在一些局部变化,与大规模温度升高的预期变化一致。

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