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温度和水分供应驱动温带和热带地区昆虫季节性变化。

Temperature and water availability drive insect seasonality across a temperate and a tropical region.

机构信息

Department of Bioinformatics and Genetics, Swedish Museum of Natural History, Stockholm 114 18, Sweden.

Entomology, California Academy of Sciences, San Francisco, CA 94118, USA.

出版信息

Proc Biol Sci. 2024 Jun;291(2025):20240090. doi: 10.1098/rspb.2024.0090. Epub 2024 Jun 19.

Abstract

The more insects there are, the more food there is for insectivores and the higher the likelihood for insect-associated ecosystem services. Yet, we lack insights into the drivers of insect biomass over space and seasons, for both tropical and temperate zones. We used 245 Malaise traps, managed by 191 volunteers and park guards, to characterize year-round flying insect biomass in a temperate (Sweden) and a tropical (Madagascar) country. Surprisingly, we found that local insect biomass was similar across zones. In Sweden, local insect biomass increased with accumulated heat and varied across habitats, while biomass in Madagascar was unrelated to the environmental predictors measured. Drivers behind seasonality partly converged: In both countries, the seasonality of insect biomass differed between warmer and colder sites, and wetter and drier sites. In Sweden, short-term deviations from expected season-specific biomass were explained by week-to-week fluctuations in accumulated heat, rainfall and soil moisture, whereas in Madagascar, weeks with higher soil moisture had higher insect biomass. Overall, our study identifies key drivers of the seasonal distribution of flying insect biomass in a temperate and a tropical climate. This knowledge is key to understanding the spatial and seasonal availability of insects-as well as predicting future scenarios of insect biomass change.

摘要

昆虫越多,食虫动物的食物就越多,与昆虫相关的生态系统服务的可能性就越高。然而,我们缺乏对热带和温带地区昆虫生物量在空间和季节上的驱动因素的了解。我们使用了 245 个粘虫陷阱,由 191 名志愿者和公园护林员管理,以描述一个温带(瑞典)和一个热带(马达加斯加)国家全年飞行昆虫的生物量。令人惊讶的是,我们发现当地的昆虫生物量在不同地区是相似的。在瑞典,当地的昆虫生物量随着积累的热量而增加,并在不同的栖息地之间有所变化,而在马达加斯加,生物量与所测量的环境预测因子无关。季节性的驱动因素在一定程度上趋同:在这两个国家,昆虫生物量的季节性在较温暖和较寒冷的地点以及较湿润和较干燥的地点之间存在差异。在瑞典,与预期的特定季节生物量的短期偏差可以用每周积累的热量、降雨量和土壤湿度的波动来解释,而在马达加斯加,土壤湿度较高的周份昆虫生物量更高。总的来说,我们的研究确定了温带和热带气候中飞行昆虫生物量季节性分布的关键驱动因素。这些知识是理解昆虫在空间和季节上的可利用性以及预测未来昆虫生物量变化情景的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e81e/11285739/edf1da74f245/rspb20240090f01.jpg

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