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人造夜间光谱驱动昼行物种在昆虫食物网中的影响。

Spectrum of artificial light at night drives impact of a diurnal species in insect food web.

机构信息

Environment and Sustainability Institute, University of Exeter, Penryn Campus, Penryn, Cornwall TR10 9FE, United Kingdom.

Environment and Sustainability Institute, University of Exeter, Penryn Campus, Penryn, Cornwall TR10 9FE, United Kingdom.

出版信息

Sci Total Environ. 2022 Jul 20;831:154893. doi: 10.1016/j.scitotenv.2022.154893. Epub 2022 Mar 29.

Abstract

Artificial light at night (ALAN) has become a profound form of global anthropogenic environmental change differing in from natural light regimes in intensity, duration, distribution and spectra. It is clear that ALAN impacts individual organisms, however, population level effects, particularly of spectral changes, remain poorly understood. Here we exposed experimental multigenerational aphid-parasitoid communities in the field to seven different light spectra at night ranging from 385 to 630 nm and compared responses to a natural day-night light regime. We found that while aphid population growth was initially unaffected by ALAN, parasitoid efficiency declined under most ALAN spectra, leading to reduced top-down control and higher aphid densities. These results differ from those previously found for white light, showing a strong impact on species' daytime performance. This highlights the importance of ALAN spectra when considering their environmental impact. ALAN can have large impacts on the wider ecological community by influencing diurnal species.

摘要

夜间人工光照(ALAN)已经成为一种深刻的全球性人为环境变化形式,与自然光照在强度、持续时间、分布和光谱上有所不同。很明显,ALAN 会影响个体生物,但种群水平的影响,特别是光谱变化的影响,仍然知之甚少。在这里,我们在野外将实验性的多世代蚜虫-寄生蜂群落暴露在夜间的七种不同光谱下,范围从 385 到 630nm,并将其与自然的昼夜光照制度进行了比较。我们发现,虽然蚜虫种群的生长最初不受 ALAN 的影响,但在大多数 ALAN 光谱下,寄生蜂的效率下降,导致自上而下的控制减少和蚜虫密度增加。这些结果与以前对白光的研究结果不同,表明对物种日间性能有强烈的影响。这凸显了当考虑其环境影响时,ALAN 光谱的重要性。ALAN 通过影响昼行性物种,对更广泛的生态群落产生重大影响。

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