Shih Hsiang-Wen, Wu Chia-Lin, Chang Sue-Wei, Liu Tsung-Ho, Lai Jason Sih-Yu, Fu Tsai-Feng, Fu Chien-Chung, Chiang Ann-Shyn
Institute of Biotechnology, National Tsing Hua University, Hsinchu 30013, Taiwan.
1] Department of Biochemistry and Graduate Institute of Biomedical Sciences, College of Medicine, Chang Gung University, Taoyuan 33302, Taiwan. [2] Department of Medical Research, Chang Gung Memorial Hospital, Taoyuan 33305, Taiwan.
Nat Commun. 2015 Jul 16;6:7775. doi: 10.1038/ncomms8775.
The detection of environmental temperature and regulation of body temperature are integral determinants of behaviour for all animals. These functions become less efficient in aged animals, particularly during exposure to cold environments, yet the cellular and molecular mechanisms are not well understood. Here, we identify an age-related change in the temperature preference of adult fruit flies that results from a shift in the relative contributions of two parallel mushroom body (MB) circuits—the β'- and β-systems. The β'-circuit primarily controls cold avoidance through dopamine signalling in young flies, whereas the β-circuit increasingly contributes to cold avoidance as adult flies age. Elevating dopamine levels in β'-afferent neurons of aged flies restores cold sensitivity, suggesting that the alteration of cold avoidance behaviour with ageing is functionally reversible. These results provide a framework for investigating how molecules and individual neural circuits modulate homeostatic alterations during the course of senescence.
环境温度的检测和体温调节是所有动物行为的重要决定因素。这些功能在老年动物中效率较低,尤其是在暴露于寒冷环境时,但细胞和分子机制尚不清楚。在这里,我们发现成年果蝇的温度偏好存在与年龄相关的变化,这是由两个平行的蘑菇体(MB)回路——β'-和β-系统的相对贡献变化引起的。β'-回路主要通过多巴胺信号传导控制年轻果蝇的避寒行为,而随着成年果蝇年龄的增长,β-回路对避寒的贡献越来越大。提高老年果蝇β'-传入神经元中的多巴胺水平可恢复冷敏感性,这表明随着年龄增长避寒行为的改变在功能上是可逆的。这些结果为研究分子和单个神经回路如何在衰老过程中调节稳态变化提供了一个框架。