Glyphosate exposure affected longevity-related pathways and reduced survival in asian honey bees (Apis cerana)

中华蜜蜂 生物 长寿 蜜蜂 转录组 工蜂 超氧化物歧化酶 草甘膦 养蜂女孩 植物 毒理 食品科学 生物技术 基因 生物化学 遗传学 基因表达
作者
Dong Zhi-Xiang,Wanli Li,LI Xi-Jie,LI Jia-li,Jun Zhang,Zhao Chong-Hui,Qi Huang,Zhe Cao,Chen Yuan,Zhao Hongmu,Jun Guo,Wenli Tian
出处
期刊:Chemosphere [Elsevier]
卷期号:351: 141199-141199 被引量:3
标识
DOI:10.1016/j.chemosphere.2024.141199
摘要

Glyphosate (N-(phosphonomethyl)glycine, GLY) ranks among the most extensively used and effective herbicides globally. However, excessive GLY utilization poses a substantial threat to the survival of honey bees (Apis cerana). Here we monitored the survival status of A. cerana treated with GLY, and conducted transcriptome sequencing of the bee gut and head to further explore potential GLY influences at the molecular level. We observed that the mortality rate of bees increased as GLY concentration escalated. Pivotal pathways emerged in response to the GLY treatment, with a substantial number of differentially expressed genes enriched in the longevity regulating pathway - multiple species. This strongly suggested that GLY may influence the physiological behavior of bees by impacting this particular pathway. Moreover, our analysis revealed a notable reduction in the enzymatic activities of CYP450 and AChE in both the bee head and intestines of when exposed to GLY. Conversely, the enzymatic activity of superoxide dismutase (SOD) in the head remained unaffected, whereas in the intestines, it exhibited a significant increase. Additionally, prophenol oxidase (PPO) and glutathione-S-transferases (GSTs) displayed contrasting trends in enzymatic activity in both organs. This study offers valuable insights into how GLY impacted the survival of A. cerana.
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