Meadow Ridge Enterprises Ltd., Saskatoon, SK, Canada.
Vaccine and Infectious Disease Organization, University of Saskatchewan, Saskatoon, SK, Canada.
Sci Rep. 2020 Feb 7;10(1):2117. doi: 10.1038/s41598-020-58927-2.
The mite Varroa destructor is a serious threat to honeybee populations. Selective breeding for Varroa mite tolerance could be accelerated by biomarkers within individual bees that could be applied to evaluate a colony phenotype. Previously, we demonstrated differences in kinase-mediated signaling between bees from colonies of extreme phenotypes of mite susceptibility. We expand these findings by defining a panel of 19 phosphorylation events that differ significantly between individual pupae from multiple colonies with distinct Varroa mite tolerant phenotypes. The predictive capacity of these biomarkers was evaluated by analyzing uninfested pupae from eight colonies representing a spectrum of mite tolerance. The pool of biomarkers effectively discriminated individual pupae on the basis of colony susceptibility to mite infestation. Kinome analysis of uninfested pupae from mite tolerant colonies highlighted an increased innate immune response capacity. The implication that differences in innate immunity contribute to mite susceptibility is supported by the observation that induction of innate immune signaling responses to infestation is compromised in pupae of the susceptible colonies. Collectively, biomarkers within individual pupae that are predictive of the susceptibility of colonies to mite infestation could provide a molecular tool for selective breeding of tolerant colonies.
瓦螨是威胁蜜蜂种群的严重威胁。通过个体蜜蜂体内的生物标志物,可以加速对瓦螨耐受性的选择育种,这些标志物可用于评估蜂群表型。先前,我们证明了来自对螨虫易感性具有极端表型的蜂群的蜜蜂之间激酶介导的信号传导存在差异。我们通过定义一个由 19 个磷酸化事件组成的面板来扩展这些发现,这些事件在具有不同瓦螨耐受性表型的多个蜂群的个体蛹之间存在显著差异。通过分析代表螨虫耐受性范围的 8 个蜂群的未受感染蛹来评估这些生物标志物的预测能力。生物标志物库能够有效地根据蜂群对螨虫感染的易感性来区分个体蛹。对具有瓦螨耐受性的蜂群的未受感染蛹的激酶组分析突出了先天免疫反应能力的提高。对易感性的观察结果表明,先天免疫反应的差异有助于螨虫的易感性,这一观察结果表明,在易感性蜂群的蛹中,对感染的先天免疫信号反应的诱导受到了损害。总的来说,能够预测蜂群对螨虫感染易感性的个体蛹内的生物标志物可以为具有耐受性的蜂群的选择性育种提供分子工具。