生物
卵母细胞
卵子发生
生殖系
配子
生殖细胞
生育率
进化生物学
选择(遗传算法)
破坏性选择
配子发生
胚胎
遗传学
细胞生物学
胚胎发生
自然选择
人类受精
人口
基因
人工智能
人口学
社会学
计算机科学
作者
Jay W Zussman,Dominic J. Skinner,Daniel E. Wagner,Stanislav Y. Shvartsman,Diana J. Laird
标识
DOI:10.1146/annurev-genet-021925-093551
摘要
The formation and maintenance of the finite mammalian ovarian reserve are critical for fertility and species survival. Genetic and developmental studies have uncovered various mechanisms underlying oocyte development and maturation, revealing two curious features of the ovarian germline: (a) The establishment of the follicle reserve involves an initial massive overproduction of oocyte precursors, and (b) the total number of ovulated oocytes across an animal's fertile lifetime is a very small proportion of the initial ovarian reserve. Many have proposed that this indicates the existence of selective quality control to ensure gamete fitness. Here, we review the findings underlying the hypotheses for germline quality control during prepubertal development, homeostatic fertility, and reproductive aging. We evaluate whether the existing evidence base distinguishes the active selection of specific germ cell subsets from neutral dynamics. Throughout, we discuss strategies for applying statistical frameworks to evaluate selection in oogenesis and the implications of neutrality versus selection at various points in oocyte development.
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