AI Article Synopsis

  • Hybrid sterility plays a key role in the process of speciation, and studying hybrids of dwarf hamsters offers insights into the biological mechanisms underlying this phenomenon.
  • Research indicated that while hybrid males experienced greater issues with chromosome pairing during meiosis, both male and female hybrids could still engage in normal autosomal recombination.
  • The study suggests that the specific recombination patterns in the X and Y chromosomes contribute to the genetic incompatibility seen in hybrid males, accelerating the divergence between parental species.

Article Abstract

Hybrid sterility is an important step in the speciation process. Hybrids between dwarf hamsters and provide a good model for studies in cytological and genetic mechanisms of hybrid sterility. Previous studies in hybrids detected multiple abnormalities of spermatogenesis and a high frequency of dissociation between the X and Y chromosomes at the meiotic prophase. In this study, we found that the autosomes of the hybrid males and females underwent paring and recombination as normally as their parental forms did. The male hybrids showed a significantly higher frequency of asynapsis and recombination failure between the heterochromatic arms of the X and Y chromosomes than the males of the parental species. Female hybrids as well as the females of the parental species demonstrated a high incidence of centromere misalignment at the XX bivalent and partial asynapsis of the ends of its heterochromatic arms. In all three karyotypes, recombination was completely suppressed in the heterochromatic arm of the X chromosome, where the pseudoautosomal region is located. We propose that this recombination pattern speeds up divergence of the X- and Y-linked pseudoautosomal regions between the parental species and results in their incompatibility in the male hybrids.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5977167PMC
http://dx.doi.org/10.3390/genes9050227DOI Listing

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