Identification of oogonial stem cells in chicken ovary.

Cell Prolif

Shandong Provincial Key Laboratory of Animal Biotechnology and Disease Control and Prevention, College of Animal Science and Veterinary Medicine, Shandong Agricultural University, Taian, China.

Published: March 2023

AI Article Synopsis

  • - This study investigates the existence and function of oogonial stem cells (OSCs) in adult chickens, focusing on their role in producing oocytes for egg-laying.
  • - Researchers isolated and expanded chicken OSCs in culture and found that these cells can migrate, differentiate, and undergo meiosis when transplanted into embryos.
  • - The findings confirm the presence of functional OSCs in birds, which could enhance egg production and aid in the preservation of endangered species.

Article Abstract

Objectives: Oogonial stem cells (OSCs) are germ cells that can sustain neo-oogenesis to replenish the pool of primary follicles in adult ovaries. In lower vertebrates, fresh oocytes are produced by numerous OSCs through mitosis and meiosis during each reproduction cycle, but the OSCs in adult mammals are rare. The birds have retained many conserved features and developed unique features of ovarian physiology during evolution, and the presence of OSCs within avian species remain unknown.

Materials And Methods: In this study, we investigated the existence and function of OSCs in adult chickens. The chicken OSCs were isolated and expanded in culture. We then used cell transplantation system to evaluate their potential for migration and differentiation in vivo.

Results: DDX4/SSEA1-positive OSCs were identified in both the cortex and medulla of the adult chicken ovary. These putative OSCs undergo meiosis in the reproductively active ovary. Furthermore, the isolated OSCs were expanded in vitro for months and found to express germline markers similar to those of primordial germ cells. When transplanted into the bloodstream of recipient embryos, these OSCs efficiently migrated into developing gonads, initiated meiosis, and then derived oocytes in postnatal ovaries.

Conclusions: This study has confirmed the presence of functional OSCs in birds for the first time. The identification of chicken OSCs has great potential for improving egg laying and preserving endangered species.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977656PMC
http://dx.doi.org/10.1111/cpr.13371DOI Listing

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