College of Life Science, Shaanxi Normal University, Xi'an, 710119, China.
College of Life Science, Shaanxi Normal University, Xi'an, 710119, China.
Chemosphere. 2020 May;247:125925. doi: 10.1016/j.chemosphere.2020.125925. Epub 2020 Jan 19.
Environmental pollutants could change the intestinal microbiota communities, while data concerning the dynamics of the intestinal microbiota in response to different environmental chemicals in amphibian are lacking. We compared the effects of Cu, Cd, Cr and NO-N on intestinal microbiota of B. gargarizans tadpoles by using high-throughput 16S rRNA sequencing technology. Our results revealed that responses of intestinal microbiota to three metals and NO-N showed different characteristics. At the phylum level, the most 100 OTUs were predominantly colonized by Proteobacteria, and meanwhile, expansion of Proteobacteria was observed in Cu 64 μg/L, Cd (100 μg/L and 200 μg/L) and NO-N100 mg/L treatment groups. In addition, the abundance of Bacteroidetes significantly increased in the gut administrate with Cu, Cd, Cr, NO-N 20 mg/L exposures, while declined abundance of Fusobacteria was observed in Cu64 μg/L Cd100 μg/L Cd200μg/L-exposed groups. At the genus level, several genera exhibited increased prevalence of abundance such as Shewanella, Azospira and Flavobacterium. The functional prediction revealed that exposures of three metals and NO-N increase the risks of metabolic disorders and diseases. Our research could be an important step toward an assessment of the ecological risks of different chemicals to aquatic organisms using intestinal microbiota.
环境污染物可能会改变肠道微生物群落,而有关两栖动物对不同环境化学物质的肠道微生物群落动态的数据却很少。我们使用高通量 16S rRNA 测序技术比较了 Cu、Cd、Cr 和 NO-N 对 B. gargarizans 蝌蚪肠道微生物群的影响。我们的结果表明,肠道微生物群对三种金属和 NO-N 的反应表现出不同的特征。在门水平上,最 100 个 OTUs 主要由变形菌门定植,同时在 Cu 64μg/L、Cd(100μg/L 和 200μg/L)和 NO-N100mg/L 处理组中观察到变形菌门的扩张。此外,在 Cu、Cd、Cr 和 NO-N20mg/L 暴露的肠道中,拟杆菌门的丰度显著增加,而在 Cu64μg/L、Cd100μg/L 和 Cd200μg/L 暴露组中,梭杆菌门的丰度下降。在属水平上,有几个属的丰度增加,如希瓦氏菌属、固氮螺菌属和黄杆菌属。功能预测表明,三种金属和 NO-N 的暴露增加了代谢紊乱和疾病的风险。我们的研究可能是使用肠道微生物群评估不同化学物质对水生生物生态风险的重要一步。