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慢性接触新烟碱会增加熊蜂抗菌肽基因的表达。

Chronic exposure to a neonicotinoid increases expression of antimicrobial peptide genes in the bumblebee Bombus impatiens.

机构信息

Department of Biology, Colby College, 5734 Mayflower Hill, Waterville, ME, 04901, USA.

National Human Genome Research Institute, 49 Convent Drive, Bethesda, MD, 20892, USA.

出版信息

Sci Rep. 2017 Mar 21;7:44773. doi: 10.1038/srep44773.

Abstract

Bumblebees are important pollinators in wild and agricultural settings. In recent decades pollinator declines have been linked to the effects of increased pesticide use and the spread of disease. Synergy between these factors has been suggested, but no physiological mechanism has been identified. This study examines the connection between neonicotinoid exposure and innate immune function in the bumblebee Bombus impatiens, which is an important wild and commercial pollinator in eastern North America. Experimental colonies in the field were enclosed and provided pollen and sugar syrup containing an agriculturally relevant range of imidacloprid concentrations. Bumblebees were collected from colonies over four weeks, and the expression of antimicrobial peptides was measured using multiplex quantitative real time PCR. Significant increases in the expression of abaecin, apidaecin and hymenoptaecin were found over time in treatments receiving moderate to high concentrations of the pesticide. Responses were dependent on time of exposure and dose. These results indicate that immune function in bumblebees is affected by neonicotinoid exposure and suggest a physiological mechanism by which neonicotinoids may impact the innate immune function of bumblebee pollinators in wild and agricultural habitats.

摘要

大黄蜂是野生和农业环境中重要的传粉媒介。近几十年来,传粉媒介的减少与杀虫剂使用增加和疾病传播的影响有关。有人提出这些因素之间存在协同作用,但尚未确定生理机制。本研究检查了在北美东部重要的野生和商业传粉媒介大黄蜂 Bombus impatiens 中,接触新烟碱类杀虫剂与先天免疫功能之间的联系。在野外封闭的实验群体中提供了含有农业相关范围的吡虫啉浓度的花粉和糖蜜。在四周的时间里,从群体中收集大黄蜂,并使用多重定量实时 PCR 测量抗菌肽的表达。在接受中等到高浓度杀虫剂处理的情况下,随着时间的推移,abaecin、apidaecin 和 hymenoptaecin 的表达显著增加。反应取决于暴露时间和剂量。这些结果表明,大黄蜂的免疫功能受到新烟碱类杀虫剂的影响,并表明新烟碱类杀虫剂可能影响野生和农业生境中大黄蜂传粉媒介先天免疫功能的生理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eff4/5359568/180da1a6badd/srep44773-f1.jpg

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