Interspecies control of development during mammalian gastrulation.

Emerg Top Life Sci

School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough LE12 5RD, U.K.

Published: December 2023

AI Article Synopsis

  • Gastrulation is a crucial phase in development, where errors can lead to major anatomical issues or congenital defects, and differences across mammalian species pose challenges for study.
  • Research using single-cell atlases and multi-species in vitro models, like gastruloids, has revealed both commonalities and variances in cell differentiation and developmental processes among species.
  • New insights highlight how intrinsic cell biochemistry and extrinsic factors, such as culture conditions, can influence embryonic development, emphasizing the need for more studies to fully understand these complex interactions.

Article Abstract

Gastrulation represents a pivotal phase of development and aberrations during this period can have major consequences, from minor anatomical deviations to severe congenital defects. Animal models are used to study gastrulation, however, there is considerable morphological and molecular diversity of gastrula across mammalian species. Here, we provide an overview of the latest research on interspecies developmental control across mammals. This includes single-cell atlases of several mammalian gastrula which have enabled comparisons of the temporal and molecular dynamics of differentiation. These studies highlight conserved cell differentiation regulators and both absolute and relative differences in differentiation dynamics between species. Recent advances in in vitro culture techniques have facilitated the derivation, maintenance and differentiation of cell lines from a range of species and the creation of multi-species models of gastrulation. Gastruloids are three-dimensional aggregates capable of self-organising and recapitulating aspects of gastrulation. Such models enable species comparisons outside the confines of the embryo. We highlight recent in vitro evidence that differentiation processes such as somitogenesis and neuronal maturation scale with known in vivo differences in developmental tempo across species. This scaling is likely due to intrinsic differences in cell biochemistry. We also highlight several studies which provide examples of cell differentiation dynamics being influenced by extrinsic factors, including culture conditions, chimeric co-culture, and xenotransplantation. These collective studies underscore the complexity of gastrulation across species, highlighting the necessity of additional datasets and studies to decipher the intricate balance between intrinsic cellular programs and extrinsic signals in shaping embryogenesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10754326PMC
http://dx.doi.org/10.1042/ETLS20230083DOI Listing

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