Zhu Long, Zhou Shangjie, Huang Li, Wang Xiaotian, Huang Yutong, Yu Jiachen, Wang Zaizhao
College of Marine Science and Fisheries, Jiangsu Ocean University, Lianyungang, Jiangsu 222005, China; Marine Resources Development Institute of Jiangsu, Jiangsu Ocean University, Lianyungang, Jiangsu 222005, China.
College of Marine Science and Fisheries, Jiangsu Ocean University, Lianyungang, Jiangsu 222005, China.
J Environ Sci (China). 2025 Aug;154:691-702. doi: 10.1016/j.jes.2024.05.053. Epub 2024 Jun 8.
Bisphenol A (BPA) is a recognized estrogenic endocrine disruptor that poses a threat to the reproductive health of fish. However, it remains unclear whether and how paternal BPA exposure can lead to developmental toxicity in offspring. To explore the potential paternal BPA exposure impacts on craniofacial cartilage growth in offspring, male rare minnows were subjected to BPA and subsequently mated with normal females to produce progeny. Our results demonstrated that paternal BPA exposure resulted in increased malformation and delayed craniofacial cartilage development in the F1 offspring. Furthermore, BPA exposure led to differential expression of 28 miRNAs in paternal sperm in F0 generation (13 upregulated and 15 downregulated), among which 7 miRNAs were involved in the regulation of bone development. BPA also downregulated the expression of bmp2a and Runx1 during F1 embryonic development. The inhibited bmp2a expression might derive from BPA's stimulation of one miRNA, aca-miR-16a-5P, due to bmp2a being one of its target genes. Notably, paternal BPA exposure did not affect craniofacial cartilage development or gonadal development in the F2 generation. Overall, our study sheds light on the molecular mechanisms underlying the impact of paternal BPA exposure on facial chondrogenesis in offspring and provides theoretical support for the ecological protection of fish populations.
双酚A(BPA)是一种公认的具有雌激素活性的内分泌干扰物,对鱼类的生殖健康构成威胁。然而,父本暴露于BPA是否以及如何导致子代发育毒性仍不清楚。为了探究父本暴露于BPA对后代颅面软骨生长的潜在影响,将雄性稀有鮈鲫暴露于BPA,随后与正常雌性交配产生后代。我们的结果表明,父本暴露于BPA导致F1代后代畸形增加,颅面软骨发育延迟。此外,BPA暴露导致F0代父本精子中28种miRNA表达差异(13种上调,15种下调),其中7种miRNA参与骨骼发育调控。BPA在F1胚胎发育过程中还下调了bmp2a和Runx1的表达。bmp2a表达受抑制可能源于BPA对一种miRNA(aca-miR-16a-5P)的刺激作用,因为bmp2a是其靶基因之一。值得注意的是,父本暴露于BPA对F2代的颅面软骨发育或性腺发育没有影响。总体而言,我们的研究揭示了父本暴露于BPA对后代面部软骨形成影响的分子机制,为鱼类种群的生态保护提供了理论支持。