生物
滞育
水蚤
水母
动物
进化生物学
生态学
蛇床子属
幼虫
珊瑚
作者
Yongxue Li,Pengzhen Xu,Tingting Sun,Saijun Peng,Fanghan Wang,Lei Wang,Yixuan Xing,Wenhui Wang,Jianmin Zhao,Zhijun Dong
摘要
Abstract Understanding the mechanisms underlying diapause formation is crucial for gaining insight into adaptive survival strategies across various species. In this study, we aimed to uncover the pivotal role of temperature and food availability in regulating diapausing podocyst formation in the jellyfish Aurelia coerulea . Furthermore, we explored the cellular and molecular basis of diapause formation using single‐cell RNA sequencing. Our results showed cell‐type‐specific transcriptional landscapes during podocyst formation, which were underscored by the activation of specific transcription factors and signalling pathways. In addition, we found that the heat shock protein‐coding genes HSC70 and HSP90a potentially act as hub genes that regulate podocyst formation. Finally, we mapped the single‐cell atlas of diapausing podocysts and identified cell types involved in metabolism, environmental sensing, defence and development that may collectively contribute to the long‐term survival and regulated excystment of diapausing podocysts. Taken together, the findings of this study provide novel insights into the molecular mechanisms that regulate diapause formation and contributes to a better understanding of adaptive survival strategies in a variety of ecological contexts.
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