THREE-MODAL THEORY OF EARLY EMBRYO ASYMMETRIC CLEAVAGE DETERMINATION.

Developmental biology attempts to understand the most remarkable phenomenon of life, the process of embryogenesis, and trace back the common link between different groups of animals to analyze when and how the advantage of multicellularity and pluripotency first emerged. Gradual changes accumulated...

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Publicado en:Cosmos & History Vol. 17; no. 1; pp. 299 - 326
Autor principal: Liebich, Steve
Formato: Artículo
Publicado: Ashton & Rafferty 2021
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        atl: THREE-MODAL THEORY OF EARLY EMBRYO ASYMMETRIC CLEAVAGE DETERMINATION.
      aug:
        au: Liebich, Steve
        affil: Clarkson University, Biomolecular Science & Chemistry Department Clarkson 10 Postdam, NY 13676.
      su:
        Developmental biology
        Embryos
        Mammalian embryos
        Zygotes
        Set theory
        Mammal conservation
      sug:
        subj:
          Developmental biology
          Embryos
          Mammalian embryos
          Zygotes
          Set theory
          Mammal conservation
      keyword:
        Embryo cleavage
        Embryo development
        Origins of life
      ab: Developmental biology attempts to understand the most remarkable phenomenon of life, the process of embryogenesis, and trace back the common link between different groups of animals to analyze when and how the advantage of multicellularity and pluripotency first emerged. Gradual changes accumulated in animal genomes and the environmental influence on gene expression have led to the emergence of a higher complexity in body patterning and tissue diversity best seen in mammals. Although many questions have been answered, even more await to be elucidated. Presented is a developmental biology theory set into three main hypothetical claims that are collectively harmonizing at the molecular level of animal embryogenesis. Focusing on vertebrates and mammals, the three-modal theory of early embryo asymmetric cleavage determination attempts to explain how over 200 mammalian cell lines originate from a single zygote. Within the theory, biophysical interactions between first mammalian embryo cells are expected to develop a biochemical niche pivotal for further interblastomeric communication and asymmetric fate determination distribution, including those of the maternal origin. The theory builds on extensive research data from the past century and coherently fits in modern molecular understanding of a plethora of embryological processes.
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    language: English
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