Guangdong Key Laboratory of Animal Conservation and Resource Utilization, Guangdong Public Laboratory of Wild Animal Conservation and Utilization, Institute of Zoology, Guangdong Academy of Sciences, Guangzhou 510260, China.
Guangdong Key Laboratory of Animal Conservation and Resource Utilization, Guangdong Public Laboratory of Wild Animal Conservation and Utilization, Institute of Zoology, Guangdong Academy of Sciences, Guangzhou 510260, China.
Sci Total Environ. 2023 Nov 20;900:165807. doi: 10.1016/j.scitotenv.2023.165807. Epub 2023 Jul 26.
Plastisphere is a new niche for microorganisms that complicate the ecological effects of plastics, and may profoundly influence biodiversity and habitat conservation. The DaGuishan National Nature Reserve, one of the largest habitats of the highly endangered crocodile lizard (Shinisaurus crocodilurus), is experiencing plastic pollution without sufficient attention. Here, plastisphere collected from captive tanks of crocodile lizards in this nature reserve was characterized for the first time. Three types of plastic (PE-PP, PE1, and PE2) together with the surrounding water and soil samples, were collected, and 16S rRNA sequencing technology was used to characterize the bacterial composition. The results demonstrated that plastisphere was driven by stochastic process and had a distinct bacterial community with higher diversity than that in surrounding water (p < 0.05). Bacteria related to nitrogen and carbon cycles (Pseudomonas psychrotolerans, Methylobacterium-Methylorubrum) were more abundant in plastisphere than in water or soil (p < 0.05). More importantly, plastics recruited pathogens and those bacteria function in antibiotic resistant genes (ARGs) coding. Bacteria related to polymer degradation also proliferated in plastisphere, especially Bacillus subtilis with a fold change of 42.01. The PE2 plastisphere, which had the lowest diversity and was dominated by Methylobacterium-Methylorubrum differed from PE 1 and PE-PP plastispheres totally. Plastics' morphology and aquatic nutrient levels contributed to the heterogeneity of different plastispheres. Overall, this study demonstrated that plastispheres diversify in composition and function, affecting ecosystem services directly or indirectly. Pathogens and bacteria related to ARGs expression enriched in the plastisphere should not be ignored because they may threaten the health of crocodile lizards by increasing the risk of infection. Plastic pollution control should be included in conservation efforts for crocodile lizards. This study provides new insights into the potential impacts of plastisphere, which is important for ecological risk assessments of plastic pollution in the habitats of endangered species.
生物膜是微生物的一个新栖息地,这使得它们对塑料的生态影响更加复杂,并可能深刻影响生物多样性和栖息地保护。大岭山国家级自然保护区是极度濒危的鳄蜥(Shinisaurus crocodilurus)最大的栖息地之一,但目前还没有足够重视该保护区内的塑料污染问题。本研究首次对该自然保护区内圈养鳄蜥水箱中的生物膜进行了特征描述。收集了三种类型的塑料(PE-PP、PE1 和 PE2)以及周围的水和土壤样本,并使用 16S rRNA 测序技术对细菌组成进行了特征描述。结果表明,生物膜是由随机过程驱动的,其细菌群落与周围水相比具有明显的差异,且多样性更高(p<0.05)。与氮和碳循环有关的细菌(Pseudomonas psychrotolerans、Methylobacterium-Methylorubrum)在生物膜中的丰度高于水或土壤(p<0.05)。更重要的是,塑料会招募病原体,而这些细菌在抗生素耐药基因(ARGs)编码中发挥作用。与聚合物降解有关的细菌也在生物膜中大量繁殖,尤其是枯草芽孢杆菌的丰度增加了 42.01 倍。PE2 生物膜的多样性最低,主要由 Methylobacterium-Methylorubrum 组成,与 PE1 和 PE-PP 生物膜完全不同。塑料的形态和水中的营养水平导致了不同生物膜的异质性。总的来说,本研究表明,生物膜在组成和功能上存在多样性,直接或间接地影响着生态系统服务。生物膜中富集的病原体和与 ARGs 表达相关的细菌不容忽视,因为它们可能通过增加感染风险,威胁到鳄蜥的健康。在保护鳄蜥的努力中,应包括控制塑料污染。本研究为生物膜的潜在影响提供了新的见解,这对于评估濒危物种栖息地中塑料污染的生态风险具有重要意义。