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Using Colony Monitoring Devices to Evaluate the Impacts of Land Use and Nutritional Value of Forage on Honey Bee Health

机译:使用菌落监测设备评估土地利用和饲用营养价值对蜜蜂健康的影响

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Colony monitoring devices used to track and assess the health status of honey bees are becoming more widely available and used by both beekeepers and researchers. These devices monitor parameters relevant to colony health at frequent intervals, often approximating real time. The fine-scale record of hive condition can be further related to static or dynamic features of the landscape, such as weather, climate, colony density, land use, pesticide use, vegetation class, and forage quality. In this study, we fit commercial honey bee colonies in two apiaries with pollen traps and digital scales to monitor floral resource use, pollen quality, and honey production. One apiary was situated in low-intensity agriculture; the other in high-intensity agriculture. Pollen traps were open for 72 h every two weeks while scales recorded weight every 15 min throughout the growing season. From collected pollen, we determined forage quantity per day, species identity using DNA sequencing, pesticide residues, amino acid content, and total protein content. From scales, we determined the accumulated hive weight change over the growing season, relating to honey production and final colony weight going into winter. Hive scales may also be used to identify the occurrence of environmental pollen and nectar dearth, and track phenological changes in plant communities. We provide comparisons of device-derived data between two apiaries over the growing season and discuss the potential for employing apiary monitoring devices to infer colony health in the context of divergent agricultural land use conditions.
机译:用于追踪和评估蜜蜂健康状况的菌落监测设备正变得越来越广泛,并且被养蜂人和研究人员所使用。这些设备会频繁地监视与菌落健康相关的参数,通常接近实时。蜂巢状况的精细记录可以进一步与景观的静态或动态特征相关,例如天气,气候,菌落密度,土地利用,杀虫剂利用,植被种类和草料质量。在这项研究中,我们用花粉陷阱和数字刻度将商业蜂群安装在两个养蜂场中,以监测花卉资源的使用,花粉质量和蜂蜜产量。一处养蜂场位于低强度农业中。另一个是高强度农业。花粉陷阱每两周开放72小时,而秤在整个生长季节每15分钟记录一次体重。从采集的花粉中,我们确定每天的饲草量,使用DNA测序,农药残留,氨基酸含量和总蛋白质含量确定的物种身份。根据天平,我们确定了整个生长季节中蜂巢重量的累积变化,这与冬季的蜂蜜产量和最终菌落重量有关。蜂巢量表还可用于识别环境花粉和花蜜缺乏的发生,并跟踪植物群落的物候变化。我们提供了两个养蜂场在生长季节中设备得出的数据的比较,并讨论了在农业土地使用条件不同的情况下,使用养蜂场监测设备推断殖民地健康的潜力。

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