German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, 04103 Leipzig, Germany.
Institute of Biology, Leipzig University, Leipzig 04109, Germany.
Philos Trans R Soc Lond B Biol Sci. 2023 Dec 18;378(1892):20220366. doi: 10.1098/rstb.2022.0366. Epub 2023 Oct 30.
Artificial light at night (ALAN) is increasing worldwide, but its effects on the soil system have not yet been investigated. We tested the influence of experimental manipulation of ALAN on two taxa of soil communities (microorganisms and soil nematodes) and three aspects of soil functioning (soil basal respiration, soil microbial biomass and carbon use efficiency) over four and a half months in a highly controlled Ecotron facility. We show that during peak plant biomass, increasing ALAN reduced plant biomass and was also associated with decreased soil water content. This further reduced soil respiration under high ALAN at peak plant biomass, but microbial communities maintained stable biomass across different levels of ALAN and times, demonstrating higher microbial carbon use efficiency under high ALAN. While ALAN did not affect microbial community structure, the abundance of plant-feeding nematodes increased and there was homogenization of nematode communities under higher levels of ALAN, indicating that soil communities may be more vulnerable to additional disturbances at high ALAN. In summary, the effects of ALAN reach into the soil system by altering soil communities and ecosystem functions, and these effects are mediated by changes in plant productivity and soil water content at peak plant biomass. This article is part of the theme issue 'Light pollution in complex ecological systems'.
人造夜间灯光(ALAN)在全球范围内不断增加,但它对土壤系统的影响尚未得到研究。我们在高度受控的 Ecotron 设施中进行了为期四个半月的实验,测试了人为操纵 ALAN 对两种土壤群落(微生物和土壤线虫)和土壤功能的三个方面(土壤基础呼吸、土壤微生物生物量和碳利用效率)的影响。我们发现,在植物生物量高峰期,增加 ALAN 会降低植物生物量,并且还与土壤水分含量降低有关。这进一步降低了在植物生物量高峰期高 ALAN 下的土壤呼吸,但微生物群落保持了在不同 ALAN 水平和时间下的稳定生物量,表明在高 ALAN 下微生物的碳利用效率更高。虽然 ALAN 不会影响微生物群落结构,但食植物线虫的丰度增加,并且在更高水平的 ALAN 下线虫群落趋于同质化,这表明土壤群落可能更容易受到高 ALAN 下的额外干扰。总的来说,ALAN 通过改变土壤群落和生态系统功能而影响土壤系统,这些影响是通过在植物生物量高峰期改变植物生产力和土壤水分含量来介导的。本文是主题为“复杂生态系统中的光污染”的一部分。