Freie Universität Berlin, Institute of Biology, Plant Ecology, D-14195, Berlin, Germany.
Berlin-Brandenburg Institute of Advanced Biodiversity Research (BBIB), D-14195, Berlin, Germany.
Environ Sci Technol. 2020 May 19;54(10):6166-6173. doi: 10.1021/acs.est.0c01051. Epub 2020 Apr 27.
Microplastics in soils can affect plant performance, as shown in studies using individual plants. However, we currently have no information about potential effects on plant community productivity and structure. In a plant community consisting of seven plant species that co-occur in temperate grassland ecosystems, we thus investigated the effect of microplastics (i.e., microfibers) and drought, a factor with which microfibers might interact, on plant productivity and community structure. Our results showed that at the community level, shoot and root mass decreased with drought but increased with microfibers, an effect likely linked to reduced soil bulk density, improved aeration, and better penetration of roots in the soil. Additionally, we observed that microfibers affected plant community structure. Species such as , invasive in Europe, and the allelophatic , became more dominant with microfibers, while species that potentially have the ability to facilitate the establishment of other plant species (e.g., ), decreased in biomass. As microfibers affect plant species dominance, the examination of cascade effects on ecosystem functions should be a high priority for future research.
土壤中的微塑料会影响植物的表现,这在使用单株植物的研究中已经得到证实。然而,我们目前还没有关于微塑料对植物群落生产力和结构的潜在影响的信息。在一个由七种在温带草原生态系统中共存的植物物种组成的植物群落中,我们因此调查了微塑料(即微纤维)和干旱(微纤维可能与之相互作用的一个因素)对植物生产力和群落结构的影响。我们的结果表明,在群落水平上,干旱会导致植物地上部和地下部生物量减少,但微纤维会增加生物量,这可能与土壤容重降低、通气改善和根系在土壤中更好地穿透有关。此外,我们观察到微纤维会影响植物群落结构。一些物种,如在欧洲入侵的物种,以及具有化感作用的物种,在微纤维的作用下变得更加占优势,而那些有可能促进其他植物物种建立的物种(如),生物量则减少。由于微纤维会影响植物物种的优势度,因此对生态系统功能的级联效应的研究应该是未来研究的重中之重。