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Effect of 13-16 β-Glucan on Natural and Experimental Deformed Wing Virus Infection in Newly Emerged Honeybees (Apis mellifera ligustica)

机译:13-16β-葡聚糖对新出现的蜜蜂天然和实验性变形翼病毒感染的影响

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摘要

The Western Honeybee is a key pollinator for natural as well as agricultural ecosystems. In the last decade massive honeybee colony losses have been observed worldwide, the result of a complex syndrome triggered by multiple stress factors, with the RNA virus Deformed Wing Virus (DWV) and the mite Varroa destructor playing crucial roles. The mite supports replication of DWV to high titers, which exert an immunosuppressive action and correlate with the onset of the disease.The aim of this study was to investigate the effect of 1,3–1,6 β-glucan, a natural innate immune system modulator, on honeybee response to low-titer natural and high-titer experimental DWV infection. As the effects exerted by ß-glucans can be remarkably different, depending on the target organism and the dose administered, two parallel experiments were performed, where 1,3–1,6 ß-glucan at a concentration of 0.5% and 2% respectively, was added to the diet of three cohorts of newly emerged honeybees, which were sampled from a Varroa-free apiary and harboured a low endogenous DWV viral titer. Each cohort was subjected to one of the following experimental treatments: no injection, injection of a high-copy number DWV suspension into the haemocel (experimental DWV infection) or injection of PBS into the haemocoel (physical injury). Control bees fed a ß-glucan-free diet were subjected to the same treatments. Viral load, survival rate, haemocyte populations and phenoloxidase activity of each experimental group were measured and compared. The results indicated that oral administration of 0.5% ß-glucan to naturally infected honeybees was associated with a significantly decrease of the number of infected bees and viral load they carried, and with a significant increase of the survival rate, suggesting that this natural immune modulator molecule might contribute to increase honeybee resistance to viral infection.
机译:西方蜜蜂是自然和农业生态系统的重要传粉者。在过去的十年中,由于多种压力因素引发的复杂综合症,RNA病毒变形翼病毒(DWV)和螨螨Varroa的破坏因素起着举足轻重的作用,在全球范围内已观察到蜜蜂群的大量损失。螨虫支持DWV复制至高滴度,从而发挥免疫抑制作用并与疾病发作相关。本研究的目的是研究天然的天然免疫力1,3–1,6β-葡聚糖的作用。系统调节剂,对蜜蜂对低滴度自然和高滴度实验性DWV感染的反应。由于β-葡聚糖的作用可能会显着不同,具体取决于目标生物体和所施用的剂量,因此进行了两个平行实验,其中分别以0.5%和2%的浓度混合1,3–1,6β-葡聚糖,将其添加到三组新蜜蜂的饮食中,这些蜜蜂是从无Varroa的养蜂场取样并具有低内源性DWV病毒滴度。每个队列均接受以下实验处理之一:不注射,将高拷贝数的DWV悬浮液注射到haemocel中(实验性DWV感染)或PBS注射到血细胞中(物理损伤)。饲喂无β-葡聚糖饮食的对照蜜蜂接受相同的处理。测量并比较每个实验组的病毒载量,存活率,血细胞数量和酚氧化酶活性。结果表明,对天然感染的蜜蜂口服0.5%ß-葡聚糖可显着减少蜜蜂的感染数量和携带的病毒载量,并显着提高存活率,这表明这种天然免疫调节剂分子可能有助于提高蜜蜂对病毒感染的抵抗力。

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