首页> 外文期刊>Journal of Apicultural Research >Naturally selected honey bee (Apis mellifera) colonies resistant to Varroa destructor do not groom more intensively
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Naturally selected honey bee (Apis mellifera) colonies resistant to Varroa destructor do not groom more intensively

机译:自然选择的蜂蜜蜜蜂(Apis mellifera)殖民地抵抗Varroa Destructor不会更集中地培养

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摘要

The ectoparasitic mite Varroa destructor is an important cause of high colony losses of the honey bee Apis mellifera. In The Netherlands, two resistant A. mellifera populations developed naturally after ceasing varroa control. As a result, mite infestation levels of the colonies of these populations are generally between 5-10%. However, the mechanisms behind mite resistance are still unclear. Since grooming behavior is a typical resistance trait that occurs in A. mellifera, we compared grooming between colonies of these two resistant populations and control colonies that had been treated against varroa twice a year in previous years. Grooming was investigated by measuring mite fall in broodless colonies in the field and in small cages with a fixed number of mites and bees in the lab. Furthermore, grooming was investigated at the individual level by measuring the effectiveness to remove dust by individual bees from the resistant and control colonies. We found that the grooming behavior of resistant colonies was unexpectedly equally or even less effective than that of control colonies. These results were supported by the effectiveness of individual bees to remove dust. Based on our results, we discuss that the trigger for grooming behavior may be density-dependent: grooming may be only beneficial at high mite infestation levels. Other resistance mechanisms than grooming are more likely to explain the varroa resistance of our two populations.
机译:异肝螨Varroa析构探测器是蜂蜜蜂蒙皮的高菌落损失的重要原因。在荷兰,在停止Varroa控制后,两个抗性A. Mellifera种群在停止后自然发展。结果,这些群体的菌落的螨虫病水平通常在5-10%之间。然而,螨虫抗性背后的机制仍然不清楚。由于梳理行为是一种典型的抗性特征,即在A. mellifera中,我们将在这两个耐药群体和对照菌落的殖民地进行梳理,并在前几年每年两次治疗varroa治疗两次。通过测量领域的无骨殖民地,小笼子和实验室中的螨虫和蜜蜂数量的小笼子来调查美容。此外,通过测量来自抗性和控制菌落的单个蜂的含量去除灰尘的有效性,在个人水平上进行修饰。我们发现抗性菌落的梳理行为意外地同样甚至比对照菌落的效果较小。这些结果得到了单个蜜蜂去除粉尘的有效性。根据我们的结果,我们讨论了对梳理行为的触发可能是密度依赖性的:梳理可能仅受益于高螨虫侵扰水平。其他抗性机制比修饰更有可能解释我们两个人群的varroa抵抗力。

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