Department of Zoology, Institute of Biological Sciences, University of Zielona Góra, Room 504, Profesora Zygmunta Szafrana 1, 65-516, Zielona Góra, Poland.
Doctoral School of Exact and Technical Sciences, University of Zielona Góra, al. Wojska Polskiego 69, 65-762, Zielona Góra, Poland.
Sci Rep. 2024 Jun 12;14(1):13574. doi: 10.1038/s41598-024-61432-5.
Microplastic pollution is a significant global environmental issue, and impacts span from individual organisms to the entire ecosystems. This study investigated the properties of microplastics in amphibian larvae, shedding light on their environmental interactions and potential ecological consequences. We examined microplastics extracted from amphibian larvae of 10 taxa, sampled from sites experiencing different levels of human impact. Our findings revealed a predominance of blue microplastics and fibres, each comprising 53% of the total microplastics in amphibian larvae. Microplastic fibres were also notably longer than other morphological types of microplastics. Furthermore, we observed variations in the surface area of microplastics among different amphibian families. An interesting observation from our research is the apparent positive relationship between the size of amphibian larvae and the length of granular and flake-shaped microplastics. Conversely, we observed a negative relationship between the length of these microplastics and human environmental impact. These insights significantly contribute to the understanding of microplastic pollution in freshwater environments, highlighting its complexities beyond marine ecosystems. Our research emphasises the intricate relationships between microplastics and freshwater organisms, underscoring the need for comprehensive strategies to mitigate microplastic pollution.
微塑料污染是一个全球性的重大环境问题,其影响范围从单个生物体到整个生态系统。本研究调查了两栖动物幼虫中微塑料的特性,揭示了它们与环境的相互作用以及潜在的生态后果。我们从受人类影响程度不同的 10 个分类的两栖动物幼虫中提取微塑料,并对其进行了研究。我们的研究结果表明,蓝色微塑料和纤维占两栖动物幼虫中总微塑料的 53%,是主要的微塑料类型。微塑料纤维也明显长于其他形态类型的微塑料。此外,我们还观察到不同两栖动物科之间微塑料表面积的差异。我们研究的一个有趣的发现是,两栖动物幼虫的大小与颗粒状和片状微塑料的长度之间存在明显的正相关关系。相反,我们观察到这些微塑料的长度与人类环境影响之间呈负相关关系。这些发现极大地促进了对淡水环境中微塑料污染的理解,突显了其复杂性超越了海洋生态系统。我们的研究强调了微塑料与淡水生物之间的复杂关系,强调了需要采取综合策略来减轻微塑料污染。