Avian Primordial Germ Cells Are Bipotent for Male or Female Gametogenesis.

Front Cell Dev Biol

The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Edinburgh, United Kingdom.

Published: September 2021

AI Article Synopsis

  • In birds, males have the ZZ chromosomal configuration while females have ZW, and this study looks at how chromosomal sex affects germ cell competition and differentiation.
  • Researchers created genetically sterile layer cockerels and hens to serve as hosts for primordial germ cell transplantation using cryopreserved PGCs from Silkie broilers.
  • The results showed that sterile females with male PGCs could produce functional eggs and only male offspring, while sterile males with female PGCs produced functional sperm and viable progeny, indicating PGCs can function across sexes and have implications for poultry cryopreservation.

Article Abstract

In birds, males are the homogametic sex (ZZ) and females are the heterogametic sex (ZW). Here, we investigate the role of chromosomal sex and germ cell competition on avian germ cell differentiation. We recently developed genetically sterile layer cockerels and hens for use as surrogate hosts for primordial germ cell (PGC) transplantation. Using propagated and cryopreserved PGCs from a pedigree Silkie broiler breed, we now demonstrate that sterile surrogate layer hosts injected with same sex PGCs have normal fertility and produced pure breed Silkie broiler offspring when directly mated to each other in Sire Dam Surrogate mating. We found that female sterile hosts carrying chromosomally male (ZZ) PGCs formed functional oocytes and eggs, which gave rise to 100% male offspring after fertilization. Unexpectedly, we also observed that chromosomally female (ZW) PGCs carried by male sterile hosts formed functional spermatozoa and produced viable offspring. These findings demonstrate that avian PGCs are not sexually restricted for functional gamete formation and provide new insights for the cryopreservation of poultry and other bird species using diploid stage germ cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8511492PMC
http://dx.doi.org/10.3389/fcell.2021.726827DOI Listing

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