Department of Biological Sciences, School of Sciences and Languages, São Paulo State University (UNESP), Campus Assis, São Paulo, Brazil; Graduate Program in Pharmacology and Biotechnology, Institute of Biosciences, UNESP, Botucatu, São Paulo, Brazil.
School of Agriculture and Food Science, University College Dublin, Ireland.
Animal. 2023 May;17 Suppl 1:100866. doi: 10.1016/j.animal.2023.100866.
The oocyte is the basis of life, supporting development from a fertilized cell to an independent multicellular organism. The oocyte's competence to drive the first cell cycles postfertilization are critical to embryonic survival and subsequent successful pregnancy. Coupled with the complex processes of follicle assembly, activation, differentiation, growth, and terminal maturation, oocyte developmental competence is gradually acquired during oocyte growth and meiotic maturation. Most reproduction management technologies and interventions are centered around these highly coordinated processes, targeting the ovarian follicle and the oocyte within. Thus, our objective was to highlight key aspects of oocyte and follicle development in cattle, and to discuss recent advances in oocyte and follicle-centered reproductive biotechnologies.
卵母细胞是生命的基础,支持从受精卵到独立多细胞生物的发育。卵母细胞在受精后驱动第一个细胞周期的能力对胚胎存活和随后的成功妊娠至关重要。加上卵泡组装、激活、分化、生长和终末成熟的复杂过程,卵母细胞的发育能力在卵母细胞生长和减数分裂成熟过程中逐渐获得。大多数生殖管理技术和干预措施都集中在这些高度协调的过程上,针对卵巢卵泡和卵泡内的卵母细胞。因此,我们的目标是强调牛的卵母细胞和卵泡发育的关键方面,并讨论卵母细胞和卵泡为中心的生殖生物技术的最新进展。