卵母细胞
生物
线粒体
细胞生物学
爪蟾
休眠
线粒体DNA
进化生物学
胚胎
遗传学
基因
植物
发芽
作者
Devesh Bahety,Elvan Böke,Aida Rodríguez‐Nuevo
标识
DOI:10.1016/j.tem.2024.03.002
摘要
Mitochondria have a crucial role in cellular function and exhibit remarkable plasticity, adjusting both their structure and activity to meet the changing energy demands of a cell. Oocytes, female germ cells that become eggs, undergo unique transformations: the extended dormancy period, followed by substantial increase in cell size and subsequent maturation involving the segregation of genetic material for the next generation, present distinct metabolic challenges necessitating varied mitochondrial adaptations. Recent findings in dormant oocytes challenged the established respiratory complex hierarchies and underscored the extent of mitochondrial plasticity in long-lived oocytes. In this review, we discuss mitochondrial adaptations observed during oocyte development across three vertebrate species (Xenopus, mouse, and human), emphasising current knowledge, acknowledging limitations, and outlining future research directions.
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