AI Article Synopsis

  • Mammals, including humans, evolved unique characteristics like viviparous reproduction and advanced central nervous systems, raising questions about their evolutionary origins and genomic changes.
  • A key concept in understanding this evolution is "mammalian-specific genomic functions," which includes unique genetic and epigenetic traits.
  • Two significant factors in mammalian evolutionary development are genomic imprinting, essential for reproduction and placental function, and genes derived from LTR retrotransposons, which have generated unique traits essential for mammalian evolution.

Article Abstract

Mammals, including human beings, have evolved a unique viviparous reproductive system and a highly developed central nervous system. How did these unique characteristics emerge in mammalian evolution, and what kinds of changes did occur in the mammalian genomes as evolution proceeded? A key conceptual term in approaching these issues is "mammalian-specific genomic functions", a concept covering both mammalian-specific epigenetics and genetics. Genomic imprinting and LTR retrotransposon-derived genes are reviewed as the representative, mammalian-specific genomic functions that are essential not only for the current mammalian developmental system, but also mammalian evolution itself. First, the essential roles of genomic imprinting in mammalian development, especially related to viviparous reproduction via placental function, as well as the emergence of genomic imprinting in mammalian evolution, are discussed. Second, we introduce the novel concept of "mammalian-specific traits generated by mammalian-specific genes from LTR retrotransposons", based on the finding that LTR retrotransposons served as a critical driving force in the mammalian evolution via generating mammalian-specific genes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4773580PMC
http://dx.doi.org/10.2183/pjab.91.511DOI Listing

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