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Low-Temperature Stress during Capped Brood Stage Increases Pupal Mortality Misorientation and Adult Mortality in Honey Bees

机译:上限育雏阶段的低温胁迫增加了蜜蜂的Pu死亡率定向错误和成年死亡率

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摘要

Honey bees (Apis mellifera) are key pollinators, playing a vital role in ecosystem maintenance and stability of crop yields. Recently, reduced honey bee survival has attracted intensive attention. Among all other honey bee stresses, temperature is a fundamental ecological factor that has been shown to affect honey bee survival. Yet, the impact of low temperature stress during capped brood on brood mortality has not been systematically investigated. In addition, little was known about how low temperature exposure during capped brood affects subsequent adult longevity. In this study, capped worker broods at 12 different developmental stages were exposed to 20°C for 12, 24, 36, 48, 60, 72, 84 and 96 hours, followed by incubation at 35°C until emergence. We found that longer durations of low temperature during capped brood led to higher mortality, higher incidences of misorientation inside cells and shorter worker longevity. Capped brood as prepupae and near emergence were more sensitive to low-temperature exposure, while capped larvae and mid-pupal stages showed the highest resistance to low-temperature stress. Our results suggest that prepupae and pupae prior to eclosion are the most sensitive stages to low temperature stress, as they are to other stresses, presumably due to many physiological changes related to metamorphosis happening during these two stages. Understanding how low-temperature stress affects honey bee physiology and longevity can improve honey bee management strategies.
机译:蜜蜂(Apis mellifera)是重要的授粉媒介,在生态系统维护和作物产量稳定中起着至关重要的作用。最近,降低的蜜蜂存活率引起了广泛的关注。在所有其他的蜜蜂压力中,温度是一个基本的生态因素,已证明会影响蜜蜂的生存。然而,尚未系统地研究加盖育雏过程中低温胁迫对育雏死亡率的影响。此外,关于加盖育雏过程中的低温暴露如何影响随后的成年寿命,鲜为人知。在这项研究中,将处于12个不同发育阶段的带帽工人雏鸡暴露于20°C下12、24、36、48、60、72、84和96小时,然后在35°C下孵育直到出现。我们发现,在加盖育雏过程中,低温持续时间较长会导致更高的死亡率,更高的细胞内部定向错误发生率和较短的工人寿命。带帽的幼体和足部幼虫对低温暴露更为敏感,而带帽的幼虫和-中段则表现出对低温胁迫的最高抵抗力。我们的研究结果表明,羽化之前的and和are是对低温胁迫最敏感的阶段,就像对其他胁迫一样,这是由于这两个阶段中发生的许多与变态有关的生理变化所致。了解低温压力如何影响蜜蜂的生理和寿命可以改善蜜蜂的管理策略。

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