School of Pharmaceutical Science and Technology, Tianjin University, 300072 Tianjin, China.
Academy of Medical Engineering and Translational Medicine, Tianjin University, 300072 Tianjin, China.
Sci Total Environ. 2023 Nov 20;900:165680. doi: 10.1016/j.scitotenv.2023.165680. Epub 2023 Jul 25.
Pb pollution can harm human health and the ecosystem. Therefore, it is worthwhile to study the metabolic processes of heavy metals in individual bodies and their influence on ecological systems. In this work, we analyzed the genetic responses and physiological changes of D. melanogaster which took diets exposed to different doses of Pb using transcriptomic analysis, ICP-MS, and various other physiological methods. We found that the Pb accumulated in D. melanogaster in a nonlinear pattern with the increase of Pb content in food. Metallothioneins (Mtns), especially the MtnB directly affects the accumulation and excretion of metal Pb in D. melanogaster, and causes the nonlinear accumulation. Metal regulatory transcription factor-1 (MTF-1) is involved in the regulation of Pb-induced high expressions of Mtns. Furthermore, an interaction between the metal metabolism pathway and xenobiotic response pathway leads to the cross-tolerances of Pb-exposed D. melanogaster to insecticides and other toxins. The oxidative stress induced by Pb toxicity may be the bridge between them. Our findings provide a physiological and molecular genetic basis for further study of the accumulation and metabolism of Pb in D. melanogaster.
铅污染会危害人类健康和生态系统。因此,研究重金属在个体体内的代谢过程及其对生态系统的影响是值得的。在这项工作中,我们使用转录组分析、ICP-MS 和各种其他生理方法,分析了摄入不同剂量铅的 D. melanogaster 的基因反应和生理变化。我们发现,随着食物中铅含量的增加,D. melanogaster 体内的铅积累呈非线性模式。金属硫蛋白(Mtns),特别是 MtnB 直接影响 D. melanogaster 中金属 Pb 的积累和排泄,导致非线性积累。金属调节转录因子-1(MTF-1)参与调节 Pb 诱导的 Mtns 的高表达。此外,金属代谢途径和外源化学物质反应途径之间的相互作用导致了暴露于 Pb 的 D. melanogaster 对杀虫剂和其他毒素的交叉耐受。由 Pb 毒性引起的氧化应激可能是它们之间的桥梁。我们的研究结果为进一步研究 D. melanogaster 中 Pb 的积累和代谢提供了生理和分子遗传基础。