College of Life Sciences, Sun Yat-sen University, Guangzhou, China.
J Insect Physiol. 2010 Sep;56(9):1207-18. doi: 10.1016/j.jinsphys.2010.03.019. Epub 2010 Mar 31.
Varroa destructor mite is currently the most serious threat to the world bee industry. Differences in mite tolerance are reported between two honey bee species Apis mellifera and Apis cerana. Differential gene expression of two honey bee species induced by V. destructor infection was investigated by constructing two suppression subtractive hybridization (SSH) libraries, as first steps toward elucidating molecular mechanisms of Varroa tolerance. From the SSH libraries, we obtained 289 high quality sequences which clustered into 132 unique sequences grouped in 26 contigs and 106 singlets where 49 consisted in A. cerana subtracted library and 83 in A. mellifera. Using BLAST, we found that 85% sequences had counterpart known genes whereas 15% were undescribed. A Gene Ontology analysis classified 51 unique sequences into different functional categories. Eight of these differentially expressed genes, representative of different regulation patterns, were confirmed by qRT-PCR. Upon the mite induction, the differentially expressed genes from both bee species were different, except hex 110 gene, which was up-regulated in A. cerana but down-regulated in A. mellifera, and Npy-r gene, which was down-regulated in both species. In general, most of the differential expression genes were involved in metabolic processes and nerve signaling. The results provide information on the molecular response of these two bee species to Varroa infection.
瓦螨是目前对世界养蜂业最严重的威胁。已报道两种蜜蜂物种,即意大利蜜蜂和中华蜜蜂,对螨虫的耐受性存在差异。通过构建两个抑制性消减杂交(SSH)文库,研究了瓦螨感染诱导的两种蜜蜂物种的差异基因表达,作为阐明瓦螨耐受性分子机制的第一步。从 SSH 文库中,我们获得了 289 条高质量的序列,这些序列聚类为 132 个独特的序列,分为 26 个连续序列和 106 个单序列,其中 49 个序列存在于中华蜜蜂消减文库中,83 个序列存在于意大利蜜蜂消减文库中。使用 BLAST,我们发现 85%的序列具有对应的已知基因,而 15%的序列是未知的。GO 分析将 51 个独特序列分为不同的功能类别。通过 qRT-PCR 验证了其中 8 个差异表达基因,它们代表了不同的调控模式。在螨诱导后,两种蜜蜂的差异表达基因不同,除了 hex 110 基因,它在中华蜜蜂中上调,而在意大利蜜蜂中下调,以及 Npy-r 基因,它在两种物种中都下调。总的来说,大多数差异表达基因参与代谢过程和神经信号转导。这些结果为这两种蜜蜂物种对瓦螨感染的分子反应提供了信息。