Wu Yunfei, Dong Xiaofeng, Kadowaki Tatsuhiko
Department of Biological Sciences, Xi'an Jiaotong-Liverpool UniversitySuzhou, China.
School of Life Sciences, Jiangsu Normal UniversityXuzhou, China.
Front Microbiol. 2017 Aug 22;8:1558. doi: 10.3389/fmicb.2017.01558. eCollection 2017.
Recent honey bee colony losses, particularly during the winter, have been shown to be associated with the presence of both ectoparasitic mites and Deformed Wing Virus (DWV). Whilst the role of mites as a viral vector is well established, the role of mites in viral transmission has not been fully investigated. In this study, we tested the effects that and infestation have on fluctuation of the DWV copy number and alteration of the virus variants in honey bees by characterizing individual pupae and their infesting mites. We observed that both mite species were associated with increased viral copy number in honey bee pupae. We found a positive correlation between DWV copy number in pupae and copy number in infesting mites, and the same DWV type A variant was present in either low or high copy number in both honey bee pupae and infesting . These data also suggest that variant diversity is similar between honey bee pupae and the mites that infest them. These results support a previously proposed hypothesis that DWV suppresses the honey bee immune system when virus copy number reaches a specific threshold, promoting greater replication.
近期蜜蜂蜂群数量的减少,尤其是在冬季,已被证明与体表寄生螨和变形翅病毒(DWV)的存在有关。虽然螨作为病毒载体的作用已得到充分证实,但螨在病毒传播中的作用尚未得到充分研究。在本研究中,我们通过对单个蛹及其寄生螨进行特征分析,测试了[此处原文有缺失信息]和螨感染对蜜蜂体内DWV拷贝数波动及病毒变体变化的影响。我们观察到两种螨类均与蜜蜂蛹中病毒拷贝数增加有关。我们发现蛹中的DWV拷贝数与寄生螨中的拷贝数呈正相关,并且相同的A型DWV变体在蜜蜂蛹和寄生螨中均以低拷贝数或高拷贝数存在。这些数据还表明,蜜蜂蛹与其寄生螨之间的变体多样性相似。这些结果支持了先前提出的一个假设,即当病毒拷贝数达到特定阈值时,DWV会抑制蜜蜂免疫系统,从而促进病毒更多地复制。