Zhang Chenglin, Wang Zhen, Liang Huilin, Sun Shuai, Xing Weilong, Zhang Bing, Ge Feng, Wang Lei
Nanjing Institute of Environmental Science, Ministry of Ecology and Environment of the People's Republic of China, Nanjing 210042, China.
Key Laboratory of Pesticide Environmental Assessment and Pollution Control, Ministry of Ecology and Environment of the People's Republic of China, Nanjing 210042, China.
J Xenobiot. 2025 Mar 9;15(2):41. doi: 10.3390/jox15020041.
Bis(4-hydroxyphenyl) methane (BPF), as a bisphenolic compound, has toxic effects on organisms such as endocrine disruption and immobilization of growth and development. This study evaluated the effect concentrations of BPF on and investigated the impact of BPF exposure at various sub-lethal concentrations on the growth, development, and reproductive capacity of different instars of . The results demonstrated that exposure at concentrations of 2.0, 2.5, 3.0, and 4.0 mg·L delayed pupation, inhibited the development of imaginal discs, and caused an initial rise followed by a decline in the expression levels of genes related to larval development (, , ). Additionally, exposure at concentrations of 1.0, 1.5, and 2.0 mg·L led to fluctuations in the expression levels of genes related to adult development and reproduction (, , , , , , and ) in both female and male adults, with varying degrees of effect. Furthermore, BPF exposure inhibited male fertility, causing significant damage to the gonadal tissues, though it did not affect the final hatching of eggs. These findings indicate that BPF exhibits developmental and reproductive toxicity in , with 2.0 mg·L identified as the lowest effective concentration at which BPF affects pupation in midges.
双(4-羟苯基)甲烷(BPF)作为一种双酚类化合物,对生物体具有毒性作用,如内分泌干扰以及抑制生长发育。本研究评估了BPF对[某种生物]的效应浓度,并研究了不同亚致死浓度的BPF暴露对[该生物]不同龄期的生长、发育和繁殖能力的影响。结果表明,暴露于2.0、2.5、3.0和4.0 mg·L的浓度会延迟化蛹,抑制成虫盘的发育,并导致与幼虫发育相关的基因([具体基因名称])表达水平先升高后下降。此外,暴露于1.0、1.5和2.0 mg·L的浓度会导致雌雄成虫中与成虫发育和繁殖相关的基因([具体基因名称])表达水平波动,且影响程度各异。此外,BPF暴露会抑制雄性生育能力,对性腺组织造成显著损害,不过它并不影响卵的最终孵化。这些发现表明,BPF在[该生物]中表现出发育和生殖毒性,2.0 mg·L被确定为BPF影响蠓化蛹的最低有效浓度。