Dietenberger Manuel, Jechow Andreas, Sann Manuela, Hölker Franz
Leibniz Institute of Freshwater Ecology and Inland Fisheries (IGB), Müggelseedamm 310, 12587, Berlin, Germany.
Institute of Biology, Freie Universität Berlin, Königin-Luise-Straße 1-3, 14195, Berlin, Germany.
Sci Rep. 2025 Feb 20;15(1):6237. doi: 10.1038/s41598-025-88111-3.
Artificial light at night (ALAN) contributes to the globally observed insect decline. ALAN attracts nocturnal insects from their native ecosystems and disturbs their functions in the food web. Road lights in this context are ubiquitous and relevant ALAN sources that are often not considered in conservation approaches. In a previous study we showed that shielded LED road lights are suited to be part of conservation measures by effectively reducing the attraction of nocturnal insects. Here we show that this positive effect holds true for parasitoid wasps in an experimental BACI design (Before-After-Control-Impact). Combining morphological with molecular and phylogenetic analyses, we identified 106 individuals (62 morphotypes) of a minimum of 45 genera out of 13 Hymenoptera families. We were able to identify 21 species, 11 of which are newly reported in Southern Germany (Baden-Württemberg). Further combining knowledge on life history and host appearance from our data and the literature, we discuss potential impacts of ALAN ranging from an influence on nocturnal pollination via parasitoid pressure on moth species and biological control of invasive pest species to tritrophic interactions between primary and secondary parasitoids. We conclusively think that shielded LED road lights will reduce the ecological impact of ALAN on parasitoid wasps in a large and undescribed number of taxa with different host associations, likely affecting associated ecosystem functions such as biological control.
夜间人工照明(ALAN)导致了全球范围内观察到的昆虫数量下降。ALAN将夜行性昆虫从其原生生态系统中吸引出来,并扰乱它们在食物网中的功能。在此背景下,路灯是无处不在且相关的ALAN来源,但在保护措施中往往未被考虑。在之前的一项研究中,我们表明,屏蔽式LED路灯通过有效减少对夜行性昆虫的吸引力,适合成为保护措施的一部分。在此我们表明,在一项实验性的BACI设计(前后对照影响)中,这种积极效果对于寄生蜂也成立。结合形态学、分子和系统发育分析,我们从13个膜翅目科中鉴定出至少45个属的106个个体(62个形态型)。我们能够鉴定出21个物种,其中11个是在德国南部(巴登-符腾堡州)首次报道的。进一步结合我们的数据和文献中关于生活史和寄主外观的知识,我们讨论了ALAN的潜在影响,范围从通过对蛾类物种的寄生压力对夜间授粉的影响、对入侵害虫物种的生物控制,到初级和次级寄生蜂之间的三级营养相互作用。我们最终认为,屏蔽式LED路灯将减少ALAN对大量未描述的具有不同寄主关联的类群中的寄生蜂的生态影响,可能会影响诸如生物控制等相关的生态系统功能。