Kovačević Marija, Amorim Mónica J B, Hackenberger Branimir K, Scott-Fordsmand Janeck J
Department of Biology, University of Osijek, Cara Hadrijana 8A, HR 31000 Osijek, Croatia.
Department of Biology & CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.
Nanomaterials (Basel). 2022 Sep 21;12(19):3276. doi: 10.3390/nano12193276.
Although standard testing guidelines use a species as a representative surrogate, species-specific sensitivity is well-known. The aim of this study was to investigate the species-specific difference in avoidance behaviour among Collembola species exposed to silver (Ag) nanomaterials (NM) (Ag NM300K). The avoidance test was performed with , an international standard species in laboratory tests, and five widely distributed species with different life history traits, commonly used in small multispecies systems (, , , and ). There was higher avoidance in euedaphic species, such as and , compared to the epiedaphic species , which showed the least avoidance behaviour. An explanation may be that euedaphic species (living in deeper soil layers) are more directly exposed within the soil pores and have developed a pronounced avoidance behaviour. In contrast, species living on the surface are likely less directly exposed and hence only avoid at higher total concentrations. Additionally, difference in cuticula between the groups, providing different degrees of protection against exposure, can explain the different behaviours. The present results highlight the importance of biodiversity for the ecosystem and raise awareness on species sensitivity.
尽管标准测试指南使用一个物种作为代表性替代物,但物种特异性敏感性是众所周知的。本研究的目的是调查暴露于银(Ag)纳米材料(NM)(Ag NM300K)的弹尾目物种之间在回避行为上的物种特异性差异。回避试验是用实验室测试中的一种国际标准物种以及五种具有不同生活史特征、在小型多物种系统中常用的广泛分布的物种(、、、和)进行的。与表土物种相比,土壤深层物种(如和)表现出更高的回避率,而表土物种的回避行为最少。一种解释可能是,土壤深层物种(生活在较深土层)在土壤孔隙中更直接地暴露,因此形成了明显的回避行为。相比之下,生活在地表的物种可能较少直接暴露,因此只有在总浓度较高时才会回避。此外,不同组之间表皮的差异提供了不同程度的暴露防护,这可以解释不同的行为。目前的结果突出了生物多样性对生态系统的重要性,并提高了对物种敏感性的认识。