Valenzuela Antonio, Ballestero Diego, Gan Cristina, Lorca Guillermo, Langa Elisa, Pino-Otín María Rosa
Faculty of Health Sciences, Universidad San Jorge, Villanueva de Gállego, 50830 Zaragoza, Spain.
Toxics. 2024 Jan 29;12(2):115. doi: 10.3390/toxics12020115.
Despite widespread industrial use, the environmental safety of hydroquinone (HQ), a benzene compound from plants used in processes like cosmetics, remains uncertain. This study evaluated the ecotoxicological impact of HQ on soil and river environments, utilizing non-target indicator organisms from diverse trophic levels: , , , and . For a more environmentally realistic assessment, microbial communities from a river and untreated soil underwent 16S rRNA gene sequencing, with growth and changes in community-level physiological profiling assessed using Biolog EcoPlate™ assays. The water indicator exhibited the highest sensitivity to HQ (EC = 0.142 µg/mL), followed by (EC = 1.446 µg/mL), and (LC = 7.631 µg/mL), while showed the highest resistance (EC = 234 mg/Kg). Remarkably, microbial communities mitigated HQ impact in both aquatic and terrestrial environments. River microorganisms displayed minimal inhibition, except for a significant reduction in polymer metabolism at the highest concentration (100 µg/mL). Soil communities demonstrated resilience up to 100 µg/mL, beyond which there was a significant decrease in population growth and the capacity to metabolize carbohydrates and polymers. Despite microbial mitigation, HQ remains highly toxic to various trophic levels, emphasizing the necessity for environmental regulations.
尽管对苯二酚(HQ)在工业上广泛使用,但这种用于化妆品等生产过程的植物源苯化合物的环境安全性仍不确定。本研究利用来自不同营养级的非靶标指示生物,评估了HQ对土壤和河流环境的生态毒理影响: 、 、 以及 。为了进行更符合环境实际情况的评估,对一条河流和未处理土壤中的微生物群落进行了16S rRNA基因测序,并使用Biolog EcoPlate™ 检测法评估其生长情况和群落水平生理特征的变化。水生指示生物 对HQ表现出最高的敏感性(EC = 0.142 µg/mL),其次是 (EC = 1.446 µg/mL)和 (LC = 7.631 µg/mL),而 表现出最高的抗性(EC = 234 mg/Kg)。值得注意的是,微生物群落在水生和陆地环境中均减轻了HQ的影响。河流微生物除在最高浓度(100 µg/mL)下聚合物代谢显著减少外,受到的抑制作用最小。土壤群落对高达100 µg/mL的HQ具有恢复力,超过该浓度后,种群生长以及代谢碳水化合物和聚合物的能力会显著下降。尽管微生物起到了缓解作用,但HQ对各个营养级仍然具有高毒性,这凸显了环境监管的必要性。