School of BioSciences, Faculty of Science, University of Melbourne, Melbourne, VIC 3010, Australia.
Bio21 Institute, University of Melbourne, Parkville, VIC 3052, Australia.
Cells. 2023 Feb 17;12(4):648. doi: 10.3390/cells12040648.
A common herbicide, atrazine, is associated with poor health. Atrazine acts as an endocrine disruptor at supra-environmental levels. Little research, however, has been conducted regarding chronic exposure to environmental atrazine concentrations across generations. This study utilized comprehensive endpoint measures to investigate the effects of chronic exposure to a conservative atrazine concentration (0.02 ng/mL), measured in Australian waterways, on male mice fertility across two generations. Mice were exposed through the maternal line, from the pre-conception period and through the F1 and F2 generations until three or six months of age. Atrazine did not impact sperm function, testicular morphology nor germ cell parameters but did alter the expression of steroidogenic genes in the F1, down-regulating the expression of (Cytochrome P450 family 17, subfamily A member 1; = 0.0008) and (DEAD-box helicase 4; = 0.007), and up-regulating the expression of (Steroidogenic acute regulatory protein; = 0.017). In the F2, atrazine induced up-regulation in the expression of ( = 0.016). The current study demonstrates that chronic exposure to an environmentally relevant atrazine concentration perturbs testicular steroid-associated gene expression that varies across generations. Future studies through the paternal and combined parental lineages should be undertaken to further elucidate the multigenerational effects of atrazine on male fertility.
一种常见的除草剂莠去津与健康状况不佳有关。莠去津在超环境水平下作为一种内分泌干扰物发挥作用。然而,关于跨代环境莠去津浓度的慢性暴露的研究很少。本研究利用综合终点测量来研究慢性暴露于保守莠去津浓度(0.02ng/ml)对两代雄性小鼠生育力的影响,该浓度在澳大利亚水道中测量。通过母系,从受孕前时期到 F1 和 F2 代,直至 3 或 6 个月大,对小鼠进行暴露。莠去津没有影响精子功能、睾丸形态或生殖细胞参数,但确实改变了 F1 中类固醇生成基因的表达,下调了 (细胞色素 P450 家族 17,亚家族 A 成员 1; = 0.0008)和 (DEAD 盒螺旋酶 4; = 0.007)的表达,并上调了 (类固醇急性调节蛋白; = 0.017)的表达。在 F2 中,莠去津诱导了 ( = 0.016)的表达上调。本研究表明,慢性暴露于环境相关莠去津浓度会扰乱睾丸类固醇相关基因表达,这种变化在不同代际之间存在差异。应该通过父系和联合亲代谱系进行进一步的研究,以阐明莠去津对雄性生育力的多代影响。