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亚洲蜜蜂对亚致死剂量新烟碱类杀虫剂吡虫啉响应的生理分析和转录组分析

Physiological Analysis and Transcriptome Analysis of Asian Honey Bee () in Response to Sublethal Neonicotinoid Imidacloprid.

作者信息

Gao Jing, Jin San-Sheng, He Yan, Luo Jin-Hong, Xu Chun-Qin, Wu Yan-Yan, Hou Chun-Shen, Wang Qiang, Diao Qing-Yun

机构信息

Key Laboratory of Pollinating Insect Biology, Ministry of Agriculture, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China.

National Maize Improvement Center of China, Beijing Key Laboratory of crop genetic Improvement, China Agricultural University, Beijing 100083, China.

出版信息

Insects. 2020 Nov 3;11(11):753. doi: 10.3390/insects11110753.

Abstract

Asian honey bee () is the most important Chinese indigenous species, while its toxicological characteristic against neonicotinoids is poorly known. Here, we combined physiological experiments with a genome-wide transcriptome analysis to understand the molecular basis of genetic variation that responds to sublethal imidacloprid at different exposure durations in We found that LC dose of imidacloprid had a negative impact on climbing ability and sucrose responsiveness in . When bees were fed with LC dose of imidacloprid, the enzyme activities of P450 and CarE were decreased, while the GSTs activity was not influenced by the pesticide exposure. The dynamic transcriptomic profiles of workers exposed to LC dose of imidacloprid for 1 h, 8 h, and 16 h were obtained by high-throughput RNA-sequencing. We performed the expression patterns of differentially expressed genes (DEGs) through trend analysis, and conducted the gene ontology analysis and KEGG pathway enrichment analysis with DEGs in up- and down-regulated pattern profiles. We observed that more genes involved in metabolism, catalytic activity, and structural molecule activity are down-regulated; while more up-regulated genes were enriched in terms associated with response to stimulus, transporter activity, and signal transducer activity. Additionally, genes related to the phenylalanine metabolism pathway, FoxO signaling pathway, and mTOR signaling pathway as indicated in the KEGG analysis were significantly up-related in the exposed bees. Our findings provide a comprehensive understanding of Asian honey bee in response to neonicotinoids sublethal toxicity, and could be used to further investigate the complex molecular mechanisms in Asian honey bee under pesticide stress.

摘要

中华蜜蜂()是中国最重要的本土蜂种,但其对新烟碱类农药的毒理学特性却鲜为人知。在此,我们将生理学实验与全基因组转录组分析相结合,以了解中华蜜蜂在不同暴露时长下对亚致死剂量吡虫啉产生反应的遗传变异分子基础。我们发现,吡虫啉的LC剂量对中华蜜蜂的攀爬能力和蔗糖反应性有负面影响。当给蜜蜂喂食LC剂量的吡虫啉时,P450和CarE的酶活性降低,而GSTs活性不受农药暴露的影响。通过高通量RNA测序获得了暴露于LC剂量吡虫啉1小时、8小时和16小时的中华蜜蜂工蜂的动态转录组图谱。我们通过趋势分析对差异表达基因(DEGs)的表达模式进行了分析,并对上调和下调模式图谱中的DEGs进行了基因本体分析和KEGG通路富集分析。我们观察到,更多参与代谢、催化活性和结构分子活性的基因被下调;而上调的基因更多地富集在与刺激反应、转运蛋白活性和信号转导活性相关的术语中。此外,KEGG分析中显示的与苯丙氨酸代谢途径、FoxO信号通路和mTOR信号通路相关的基因在暴露的蜜蜂中显著上调。我们的研究结果全面了解了中华蜜蜂对新烟碱类农药亚致死毒性的反应,并可用于进一步研究中华蜜蜂在农药胁迫下的复杂分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69ef/7692690/326a107368db/insects-11-00753-g001.jpg

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