Pan Yida, Meng Lingxin, Yoshida Kazuma, Qiu Liangjie, Ito Taichi, Yonezawa Ryo, Yoshitake Kazutoshi, Saito Shunsuke, Bailey-Kobayashi Nahoko, Yoshida Tetsuhiko, Kinoshita Shiheharu, Asakawa Shuichi
Department of Aquatic Bioscience, Laboratory of Aquatic Molecular Biology and Biotechnology, Graduate School of Agricultural and Life Sciences The University of Tokyo Bunkyo Tokyo Japan.
Department of Aquatic Bioscience, Signal Peptidome Research Laboratory, Graduate School of Agricultural and Life Sciences The University of Tokyo Bunkyo Tokyo Japan.
J Extracell Biol. 2025 Mar 9;4(3):e70038. doi: 10.1002/jex2.70038. eCollection 2025 Mar.
As a life history strategy, some semelparous organisms, such as the ayu fish (), reproduce only once in their lifetime and then die. They invest heavily in their single reproductive event, producing many offspring. However, the regulatory mechanisms that trigger mortality after reproduction are not well understood. Exosomes serve as an essential pathway for intercellular communication, with internal microRNA (miRNA) playing a crucial role in regulating physiological activities within the organism. This study aimed to elucidate the function of exosomal miRNA during the semelparous reproduction period in . Exosomes were successfully extracted from plasma during reproduction, and abundant miRNA molecules were discovered through small RNA sequencing. The miRNA expression patterns in ayu fish during reproduction exhibited notable differences between females and males. Furthermore, it was observed that key cellular processes and signalling pathways associated with intercellular transmission and intracellular stress are regulated by miRNA expression, and these changes in regulation may be responsible for post-breeding mortality. This study enhances our understanding of the function of exosomal miRNA during semelparous reproduction in ayu fish and provides further insight into the intrinsic mechanisms of ageing and mortality in organisms.
作为一种生活史策略,一些一次性繁殖生物,如香鱼(),一生中只繁殖一次,然后死亡。它们在单次繁殖活动中投入巨大,产生许多后代。然而,繁殖后引发死亡的调控机制尚未得到充分理解。外泌体是细胞间通讯的重要途径,其内部的微小RNA(miRNA)在调节生物体内生理活动中起关键作用。本研究旨在阐明外泌体miRNA在香鱼一次性繁殖期的功能。在繁殖期间成功从香鱼血浆中提取出外泌体,并通过小RNA测序发现了丰富的miRNA分子。香鱼繁殖期的miRNA表达模式在雌性和雄性之间表现出显著差异。此外,观察到与细胞间传递和细胞内应激相关的关键细胞过程和信号通路受miRNA表达调控,这些调控变化可能是繁殖后死亡的原因。本研究增进了我们对香鱼一次性繁殖中外泌体miRNA功能的理解,并为深入了解生物体衰老和死亡的内在机制提供了进一步的见解。