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From wild wolf to domestic dog : gene expression changes in the brain

Saetre, Peter (author)
Uppsala universitet,Evolutionsbiologi,Behavioral Genetics
Lindberg, Julia (author)
Uppsala universitet,Evolutionsbiologi,Behavioral Genetics
Leonard, Jennifer A (author)
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Olsson, Kerstin (author)
Petterson, Ulf (author)
Uppsala universitet,Medicinsk genetik
Ellegren, Hans (author)
Uppsala universitet,Evolutionsbiologi,Conservation Genetics
Bergström, Tomas F (author)
Uppsala universitet,Medicinsk genetik
Vilà, Carles (author)
Uppsala universitet,Evolutionsbiologi,Conservation Genetics
Jazin, Elena (author)
Uppsala universitet,Evolutionsbiologi,Behavioral Genetics
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 (creator_code:org_t)
Elsevier BV, 2004
2004
English.
In: Brain Research. Molecular Brain Research. - : Elsevier BV. - 0169-328X .- 1872-6941. ; 126:2, s. 198-206
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Despite the relatively recent divergence time between domestic dogs (Canis familiaris) and gray wolves (Canis lupus), the two species show remarkable behavioral differences. Since dogs and wolves are nearly identical at the level of DNA sequence, we hypothesize that the two species may differ in patterns of gene expression. We compare gene expression patterns in dogs, wolves and a close relative, the coyote (Canis latrans), in three parts of the brain: hypothalamus, amygdala and frontal cortex, with microarray technology. Additionally, we identify genes with region-specific expression patterns in all three species. Among the wild canids, the hypothalamus has a highly conserved expression profile. This contrasts with a marked divergence in domestic dogs. Real-time PCR experiments confirm the altered expression of two neuropeptides, CALCB and NPY. Our results suggest that strong selection on dogs for behavior during domestication may have resulted in modifications of mRNA expression patterns in a few hypothalamic genes with multiple functions. This study indicates that rapid changes in brain gene expression may not be exclusive to the development of human brains. Instead, they may provide a common mechanism for rapid adaptive changes during speciation, particularly in cases that present strong selective pressures on behavioral characters.

Subject headings

NATURVETENSKAP  -- Biologi -- Genetik (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Genetics (hsv//eng)

Keyword

DNA microarrays
Gene expression variation
Domestication
Brain evolution
Speciation
Genetics
Genetik

Publication and Content Type

ref (subject category)
art (subject category)

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