Similarities and differences among the chromosomes of the wild guinea pig Cavia tschudii and the domestic guinea pig Cavia porcellus (Rodentia, Caviidae).

Comp Cytogenet

Laboratorio de Citogenética Evolutiva, Instituto de Ciencias Biomédicas, Facultad de Medicina, Universidad de Chile, Santiago, Chile. Casilla 70061, Santiago 7, Chile.

Published: August 2014

AI Article Synopsis

  • Cavia tschudii is a wild guinea pig species from South America that is genetically close to the domestic guinea pig, Cavia porcellus.
  • The study analyzed the chromosome structures (karyotypes) of both species and found that while they have the same number of chromosomes (64), C. tschudii has distinct submetacentric chromosome pairs not found in C. porcellus.
  • Genetic differences were observed in banding patterns and chromosome morphology, indicating that domestication may have led to specific chromosomal changes in C. tschudii, suggesting its role in the divergence of these two guinea pig species.

Article Abstract

Cavia tschudii Fitzinger, 1867 is a wild guinea pig species living in South America that according to the analysis of mitochondrial genes is the closest wild form of the domestic guinea pig. To investigate the genetic divergence between the wild and domestic species of guinea pigs from a cytogenetic perspective, we characterized and compared the C, G and AgNOR banded karyotypes of molecularly identified Cavia tschudii and Cavia porcellus Linnaeus, 1758 specimens for the first time. Both species showed 64 chromosomes of similar morphology, although C. tschudii had four medium size submetacentric pairs that were not observed in the C. porcellus karyotype. Differences in the C bands size and the mean number of AgNOR bands between the karyotypes of the two species were detected. Most of the two species chromosomes showed total G band correspondence, suggesting that they probably represent large syntenic blocks conserved over time. Partial G band correspondence detected among the four submetacentric chromosomes present only in the C. tschudii karyotype and their subtelocentric homologues in C. porcellus may be explained by the occurrence of four pericentric inversions that probably emerged and were fixed in the C. tschudii populations under domestication. The role of the chromosomal and genomic differences in the divergence of these two Cavia species is discussed.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4137285PMC
http://dx.doi.org/10.3897/CompCytogen.v8i2.7509DOI Listing

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