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Initial sequence and comparative analysis of the cat genome. | LitMetric

AI Article Synopsis

  • The genome of an inbred Abyssinian domestic cat was sequenced and analyzed by comparing it with the genomes of six other mammals, revealing important genetic structures and chromosomal positions.
  • The study identified a variety of genetic features, including feline gene orthologs and conserved sequence blocks, while also noting the presence of repetitive elements and unique evolutionary markers.
  • Despite limited coverage, the research highlights the potential for understanding mammalian gene evolution and opens up avenues for future studies in cat genetics.

Article Abstract

The genome sequence (1.9-fold coverage) of an inbred Abyssinian domestic cat was assembled, mapped, and annotated with a comparative approach that involved cross-reference to annotated genome assemblies of six mammals (human, chimpanzee, mouse, rat, dog, and cow). The results resolved chromosomal positions for 663,480 contigs, 20,285 putative feline gene orthologs, and 133,499 conserved sequence blocks (CSBs). Additional annotated features include repetitive elements, endogenous retroviral sequences, nuclear mitochondrial (numt) sequences, micro-RNAs, and evolutionary breakpoints that suggest historic balancing of translocation and inversion incidences in distinct mammalian lineages. Large numbers of single nucleotide polymorphisms (SNPs), deletion insertion polymorphisms (DIPs), and short tandem repeats (STRs), suitable for linkage or association studies were characterized in the context of long stretches of chromosome homozygosity. In spite of the light coverage capturing approximately 65% of euchromatin sequence from the cat genome, these comparative insights shed new light on the tempo and mode of gene/genome evolution in mammals, promise several research applications for the cat, and also illustrate that a comparative approach using more deeply covered mammals provides an informative, preliminary annotation of a light (1.9-fold) coverage mammal genome sequence.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2045150PMC
http://dx.doi.org/10.1101/gr.6380007DOI Listing

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