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Microsporidia Nosema spp. – obligate bee parasites are transmitted by air

机译:Microclidia nosema spp。 - 牛寄生虫通过空气传播

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Microsporidia Nosema are transferred among bees via the faecal-oral route. Nosema spp. spores have been detected on flowers and transferred to hives along with the bee pollen. The aim of the present study was to determine whether Nosema microsporidia are transferred by air in an apiary, in a control area (without the presence of bee colonies), and/or in a laboratory during cage experiments with artificially infected bees. The novel way of transmission by air was investigated by the volumetric method using a Hirst-type aerobiological sampler located on the ground in the apiary, in the Botanical Garden and on the laboratory floor. Concurrently, the mean rate of Nosema infections in the foragers in the apiary was estimated with the Bürker haemocytometer method. Spore-trapping tapes were imaged by means of light microscopy, Nomarski interference contrast microscopy and scanning electron microscopy. The highest concentration of Nosema spores per 1msup3/sup of air (4.65) was recorded in August, while the lowest concentration (2.89) was noted in July. This was confirmed by a Real-Time PCR analysis. The presence of N. apis as well as N. ceranae was detected in each of the tested tapes from the apiary. The average copy number of N. apis was estimated at 14.4?×?10sup4/sup copies per 1?cmsup2/sup of the tape; whereas the number of N. ceranae was 2.24?×?10sup4/sup copies per tape per 1?cmsup2/sup. The results indicate that Nosema microsporidia were transferred by the wind in the apiary, but not in the Botanical Garden and laboratory by air. This was confirmed by genetic analyses. DNA from immobilised biological material was isolated and subjected to a PCR to detect the Nosema species. A fragment of the 16S rRNA gene, characteristic of Nosema apis and N. ceranae, was detected. Our research adds knowledge about the transfer of Nosema spp. microsporidia in the natural environment and indicates the season associated with the greatest risk of a bee colony infection with Nosema spp.
机译:Microclidia Nosema通过粪便口头路线在蜜蜂之间转移。 Nosema SPP。已经在鲜花上检测到孢子并与蜂花粉一起转移到荨麻疹。本研究的目的是确定NoSema MicroSclidia是否通过蜂房中的空气转移,在对照区域(没有蜂菌落的情况下)和/或在笼子实验期间的人工感染蜜蜂的实验室。通过使用位于养蜂场地的地面上的Hirst-型的健美机械采样器,在植物园和实验室地板上,通过使用位于养蜂场上的Hirst-型的健美机械采样器来研究空气传播方式。同时,用Bürker出血速度计方法估计了蜂房中觅食者中的鼻炎感染的平均速率。通过光学显微镜,Nomarski干扰对比显微镜和扫描电子显微镜对孢子捕获带进行成像。 8月份记录了每1米/米/ 3 / sup>空气(4.65)的最高浓度的NoSema孢子,而7月份注意到最低浓度(2.89)。这是通过实时PCR分析证实的。在来自蜂房的每个测试的胶带中检测到N.Apis以及N.Ceranae的存在。 N.API的平均拷贝数估计为14.4?×10 4 拷贝每1?cm 2 的磁带;而N. Ceranae的数量为2.24?×10 4 每磁带每1°C cm 2 。结果表明,NoSema Microsidia在蜂房中的风中转移,但不在植物园和实验室通过空气转移。这是通过遗传分析证实的。分离来自固定化的生物材料的DNA,并进行PCR以检测鼻内脏。检测到16S rRNA基因的片段,Nosema Apis和N.Ceranae的特征。我们的研究为NoSema SPP的转移增加了知识。在自然环境中的微生孢子,表明与NoSema SPP蜂菌感染的最大风险相关的季节。

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