Key Laboratory of Crop Integrated Pest Management in South China, Ministry of Agriculture, Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou, China.
Int J Biol Sci. 2017 Nov 27;13(12):1532-1539. doi: 10.7150/ijbs.22175. eCollection 2017.
Azadirachtin is a bio-rational insecticide used as an antifeedant and growth disruption agent against many insect species. However, recent studies have shown that there is a potential risk of this compound harming some beneficial insects. In such cases its application does not normally lead to death, but it may result in altered developmental regulation. Therefore, it is essential to obtain toxicological data to understand the mechanism of such sub-lethal effects, especially where they relate to important beneficial insects. Here, we found that azadirachtin could regulate growth and cocooning in silkworms, which may be associated with induced apoptotic effect on the prothoracic gland. However, azadirachtin treatment could not induce apoptosis in the prothoracic gland , in contrast to the effect of 20-hydroxyecdysone which suggesting that the apoptosis might not be direct effect of azadirachtin. Then we examined the activity of Ca-Mg-ATPase and found that azadirachtin could trigger a significant increase in intracellular Ca release in the Sf9 cell line, which suggested that the calcium signaling pathway might be involved in the process of apoptosis in prothoracic gland and growth regulation silkworms. Although more evidence is needed to fully understand the mechanism of azadirachtin in perturbing the growth of silkworms, this study provides some toxicological information and highlights the potential risks of azadirachtin in relation to silkworms.
印楝素是一种生物合理性杀虫剂,用作抗虫剂和生长抑制剂,可防治许多昆虫。然而,最近的研究表明,这种化合物可能对某些有益昆虫造成潜在的风险。在这种情况下,其应用通常不会导致死亡,但可能会导致发育调节改变。因此,有必要获得毒理学数据来了解这种亚致死效应的机制,特别是在涉及重要有益昆虫的情况下。在这里,我们发现印楝素可以调节家蚕的生长和结茧,这可能与对前胸腺的诱导凋亡作用有关。然而,与蜕皮激素的作用相反,印楝素处理不能诱导前胸腺发生凋亡,这表明凋亡可能不是印楝素的直接作用。然后,我们检查了 Ca-Mg-ATPase 的活性,发现印楝素可以触发 Sf9 细胞系中细胞内 Ca 释放的显著增加,这表明钙信号通路可能参与前胸腺凋亡和家蚕生长调节过程。尽管需要更多的证据来全面了解印楝素干扰家蚕生长的机制,但本研究提供了一些毒理学信息,并强调了印楝素对家蚕的潜在风险。