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Karyotypic evolution in family Hipposideridae (Chiroptera, Mammalia) revealed by comparative chromosome painting, G- and C-banding. | LitMetric

AI Article Synopsis

  • Hipposideridae, compared to its closely related family Rhinolophidae, has been less investigated using cytogenetic methods, with only limited high-resolution karyotype studies previously reported.
  • Recent research utilized advanced techniques like chromosome painting and G-banding to analyze five hipposiderid species from China, leading to insights on their chromosomal evolution.
  • Findings indicated that significant chromosomal changes in Hipposideridae might involve mechanisms such as Robertsonian translocations and inversions, and suggested that their ancestral karyotype likely included bi-armed chromosomes rather than only acrocentric ones.

Article Abstract

Comparing to its sister-family (Rhinolophidae), Hipposideridae was less studied by cytogenetic approaches. Only a few high-resolution G-banded karyotypes have been reported so far, and most of the conclusions on the karyotypic evolution in Hipposideridae were based on conventional Giemsa-staining. In this study, we applied comparative chromosome painting, a method of choice for genome-wide comparison at the molecular level, and G- and C-banding to establish comparative map between five hipposiderid species from China, using a whole set of chromosome-specific painting probes from one of them (Aselliscus stoliczkanus). G-band and C-band comparisons between homologous segments defined by chromosome painting revealed that Robertsonian translocations, paracentric inversions and heterochromatin addition could be the main mechanism of chromosome evolution in Hipposideridae. Comparative analysis of the conserved chromosomal segments among five hipposiderid species and outgroup species suggests that bi-armed chromosomes should be included into the ancestral karyotype of Hipposideridae, which was previously believed to be exclusively composed of acrocentric chromosomes.

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Source
http://dx.doi.org/10.3724/SP.J.1141.2010.05453DOI Listing

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