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在蜜蜂模型中获取具有衰老减缓、加速和逆转的样本。

Obtaining specimens with slowed, accelerated and reversed aging in the honey bee model.

作者信息

Münch Daniel, Baker Nicholas, Rasmussen Erik M K, Shah Ashish K, Kreibich Claus D, Heidem Lars E, Amdam Gro V

机构信息

Department of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences.

出版信息

J Vis Exp. 2013 Aug 29(78):50550. doi: 10.3791/50550.

Abstract

Societies of highly social animals feature vast lifespan differences between closely related individuals. Among social insects, the honey bee is the best established model to study how plasticity in lifespan and aging is explained by social factors. The worker caste of honey bees includes nurse bees, which tend the brood, and forager bees, which collect nectar and pollen. Previous work has shown that brain functions and flight performance senesce more rapidly in foragers than in nurses. However, brain functions can recover, when foragers revert back to nursing tasks. Such patterns of accelerated and reversed functional senescence are linked to changed metabolic resource levels, to alterations in protein abundance and to immune function. Vitellogenin, a yolk protein with adapted functions in hormonal control and cellular defense, may serve as a major regulatory element in a network that controls the different aging dynamics in workers. Here we describe how the emergence of nurses and foragers can be monitored, and manipulated, including the reversal from typically short-lived foragers into longer-lived nurses. Our representative results show how individuals with similar chronological age differentiate into foragers and nurse bees under experimental conditions. We exemplify how behavioral reversal from foragers back to nurses can be validated. Last, we show how different cellular senescence can be assessed by measuring the accumulation of lipofuscin, a universal biomarker of senescence. For studying mechanisms that may link social influences and aging plasticity, this protocol provides a standardized tool set to acquire relevant sample material, and to improve data comparability among future studies.

摘要

高度社会化动物群体中,亲缘关系相近的个体之间存在巨大的寿命差异。在社会性昆虫中,蜜蜂是研究社会因素如何解释寿命和衰老可塑性的最佳模型。蜜蜂的工蜂阶层包括照料幼虫的保育蜂和采集花蜜与花粉的采蜜蜂。先前的研究表明,采蜜蜂的大脑功能和飞行能力比保育蜂衰老得更快。然而,当采蜜蜂恢复到保育任务时,大脑功能可以恢复。这种加速和逆转的功能衰老模式与代谢资源水平的变化、蛋白质丰度的改变以及免疫功能有关。卵黄蛋白原是一种在激素控制和细胞防御中具有适应性功能的卵黄蛋白,可能是控制工蜂不同衰老动态的网络中的主要调节元件。在这里,我们描述了如何监测和操纵保育蜂和采蜜蜂的出现,包括将通常寿命较短的采蜜蜂转变为寿命较长的保育蜂。我们的代表性结果展示了在实验条件下,年龄相仿的个体如何分化为采蜜蜂和保育蜂。我们举例说明了如何验证采蜜蜂向保育蜂的行为逆转。最后,我们展示了如何通过测量脂褐素(一种衰老的通用生物标志物)的积累来评估不同的细胞衰老。对于研究可能将社会影响与衰老可塑性联系起来的机制,本方案提供了一套标准化的工具集,用于获取相关样本材料,并提高未来研究之间的数据可比性。

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