Department of Molecular and Integrative Physiology and Geriatrics Center, University of Michigan, Ann Arbor, Michigan, United States of America.
PLoS Biol. 2023 Jun 13;21(6):e3002149. doi: 10.1371/journal.pbio.3002149. eCollection 2023 Jun.
Sensory perception modulates aging, yet we know little about how. An understanding of the neuronal mechanisms through which animals orchestrate biological responses to relevant sensory inputs would provide insight into the control systems that may be important for modulating lifespan. Here, we provide new awareness into how the perception of dead conspecifics, or death perception, which elicits behavioral and physiological effects in many different species, affects lifespan in the fruit fly, Drosophila melanogaster. Previous work demonstrated that cohousing Drosophila with dead conspecifics decreases fat stores, reduces starvation resistance, and accelerates aging in a manner that requires both sight and the serotonin receptor 5-HT2A. In this manuscript, we demonstrate that a discrete, 5-HT2A-expressing neural population in the ellipsoid body (EB) of the Drosophila central complex, identified as R2/R4 neurons, acts as a rheostat and plays an important role in transducing sensory information about the presence of dead individuals to modulate lifespan. Expression of the insulin-responsive transcription factor foxo in R2/R4 neurons and insulin-like peptides dilp3 and dilp5, but not dilp2, are required, with the latter likely altered in median neurosecretory cells (MNCs) after R2/R4 neuronal activation. These data generate new insights into the neural underpinnings of how perceptive events may impact aging and physiology across taxa.
感觉知觉调节衰老,但我们对其知之甚少。了解动物协调对相关感觉输入的生物反应的神经元机制将为可能对调节寿命很重要的控制系统提供深入了解。在这里,我们提供了新的认识,即对死亡同种个体的感知,或死亡感知,如何影响果蝇黑腹果蝇的寿命。以前的工作表明,与死亡同种个体共居会减少脂肪储存,降低抗饥饿能力,并加速衰老,这种方式既需要视觉,也需要血清素受体 5-HT2A。在本手稿中,我们证明了果蝇中央复合体中的椭圆体(EB)中表达 5-HT2A 的离散神经群体,即 R2/R4 神经元,作为变阻器发挥作用,并在将有关死亡个体存在的感觉信息转换为调节寿命方面发挥重要作用。R2/R4 神经元中胰岛素反应性转录因子 foxo 的表达以及胰岛素样肽 dilp3 和 dilp5(但不是 dilp2)是必需的,后者可能在 R2/R4 神经元激活后在中神经分泌细胞(MNC)中改变。这些数据为感知事件如何影响跨分类群的衰老和生理学提供了新的见解。