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Molecular Assessment of Genes Linked to Immune Response Traits of Honey Bees in Conventional and Organically Managed Apiaries

机译:与常规和有机管理的养蜂物中蜂蜜蜜蜂的免疫应答性状相关的基因的分子评估

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Honey bees are of great economic importance, not only for honey production but also for crop pollination. However, honey bee populations continue to decline mainly due to exposure to pesticides, pathogens and beekeeping practices. In this study, total soluble protein was measured, total RNA was extracted and first-strand cDNAs were generated. Quantitative PCR was used to assess the relative expression (transcript abundances) of immune function-related genes in honey bees collected from organically and conventionally managed hives. Honey bees collected from conventionally managed hives with 0% Varroa mite infestation levels displayed an upregulated expression of the prophenoloxidase gene (cellular defense). Similarly, honey bees collected from organically managed hives had increased levels of the vitellogenin gene (immune function and longevity). The gene expression for malvolio (sucrose responsiveness) was highest in organically managed hives with 0% Varroa mite infestations. Young adult bees collected from organically managed hives with 5% Varroa mite infestation levels had upregulated expressions of the gene spaetzle, whereas bees from similarly infested, conventionally managed hives did not, suggesting that honey bees from organically managed hives could mount an immune response. In young adult bees collected from organically managed hives only, the expression of the immune deficiency gene (antimicrobial defense) was upregulated. The relative gene expression for superoxide dismutase 1 increased in young adult bees collected from hives with 5% Varroa mite infestation levels as expected. However, for superoxide dismutase 2, there was a high level of gene expression in adult bees from both conventionally managed hives with 0% Varroa mite infestation levels and organically managed hives with 5% Varroa mite infestations. The gene CYP9Q3 (pesticide detoxification) that metabolizes coumaphos and fluvalinate was upregulated in adult bees collected from organically managed bees. Overall, these findings provide useful insights into the genetic response of honey bees to some environmental stressors and could be an important component of best beekeeping practices that intend to enhance honey bee health.
机译:蜂蜜蜜蜂具有很大的经济意义,不仅适用于蜂蜜生产,也适用于作物授粉。然而,蜜蜂种群继续下降主要是由于暴露于杀虫剂,病原体和养蜂实践。在该研究中,测量总可溶性蛋白质,萃取总RNA,并产生第一链CDNA。定量PCR用于评估从有机物和常规管理的荨麻疹收集的蜂蜜蜜蜂中免疫函数相关基因的相对表达(转录物丰度)。蜂蜜蜜蜂从常规管理的荨麻疹中收集,具有0%Varroa螨虫灭绝水平呈现出丙甲酸钠酶基因(细胞防御)的上调表达。同样,从有机管理的荨麻疹收集的蜂蜜蜜蜂具有增加的Vitellogenin基因水平(免疫功能和寿命)。 Matvolio(蔗糖反应性)的基因表达在有机管理的荨麻疹中最高,患有0%Varroa螨虫侵扰。从有机管理的荨麻疹收集的年轻成年人患有5%的Varroa螨虫灭绝水平的基因Spaetzle表达了表达,而来自类似侵染的蜜蜂,常规管理的荨麻疹没有,这表明来自有机管理的荨麻疹的蜂蜜蜜蜂可以达到免疫反应。在从有机管理的荨麻疹收集的年轻成年人中,上调了免疫缺陷基因(抗微生物防御)的表达。超氧化物歧化酶1的相对基因表达1在从荨麻疹收集的年轻成年蜜蜂中增加,预期的5%Varroa螨虫侵扰水平。然而,对于超氧化物歧化酶2,来自常规管理荨麻疹的成年蜜蜂中存在高水平的基因表达,其中0%Varroa螨虫灭绝水平和有机管理的荨麻疹,具有5%的Varroa螨虫害。基因CYP9Q3(农药解毒)代谢COMAPHOS和氟苯胺酸盐在从有机管理蜜蜂收集的成年蜜蜂中上调。总体而言,这些调查结果为蜂蜜蜜蜂到某些环境压力源的遗传反应提供了有用的见解,并且可能成为最佳养蜂实践的重要组成部分,这些实践打算增强蜂蜜蜜蜂健康。

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