Aging Fly Cell Atlas Identifies Exhaustive Aging Features at Cellular Resolution

Author:

Lu Tzu-ChiaoORCID,Brbić MariaORCID,Park Ye-JinORCID,Jackson TylerORCID,Chen Jiaye,Kolluru Sai Saroja,Qi YanyanORCID,Katheder Nadja Sandra,Cai Xiaoyu Tracy,Lee Seungjae,Chen Yen-Chung,Auld NiccoleORCID,Liang Chung-Yi,Ding Sophia H.,Welsch Doug,D'Souza Samuel,Pisco Angela Oliveira,Jones Robert C.,Leskovec Jure,Lai Eric C.,Bellen Hugo J.,Luo Liqun,Jasper Heinrich,Quake Stephen R.,Li HongjieORCID

Abstract

Aging is characterized by a decline in tissue function, but the underlying changes at cellular resolution across the organism remain unclear. Here, we present the Aging Fly Cell Atlas, a single-nucleus transcriptomic map of the whole aging Drosophila. We characterize 163 distinct cell types and perform an in-depth analysis of changes in tissue cell composition, gene expression, and cell identities. We further develop aging clock models to predict the fly age and show that ribosomal gene expression is a conserved predictive factor for age. Combining all aging features, we find unique cell type-specific aging patterns. This atlas provides a valuable resource for studying fundamental principles of aging in complex organisms.

Publisher

Cold Spring Harbor Laboratory

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