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Divergent and nonuniform gene expression patterns in mouse brain
Authors:Morris John A  Royall Joshua J  Bertagnolli Darren  Boe Andrew F  Burnell Josh J  Byrnes Emi J  Copeland Cathy  Desta Tsega  Fischer Shanna R  Goldy Jeff  Glattfelder Katie J  Kidney Jolene M  Lemon Tracy  Orta Geralyn J  Parry Sheana E  Pathak Sayan D  Pearson Owen C  Reding Melissa  Shapouri Sheila  Smith Kimberly A  Soden Chad  Solan Beth M  Weller John  Takahashi Joseph S  Overly Caroline C  Lein Ed S  Hawrylycz Michael J  Hohmann John G  Jones Allan R
Affiliation:Allen Institute for Brain Science, Seattle, WA 98103, USA.
Abstract:Considerable progress has been made in understanding variations in gene sequence and expression level associated with phenotype, yet how genetic diversity translates into complex phenotypic differences remains poorly understood. Here, we examine the relationship between genetic background and spatial patterns of gene expression across seven strains of mice, providing the most extensive cellular-resolution comparative analysis of gene expression in the mammalian brain to date. Using comprehensive brainwide anatomic coverage (more than 200 brain regions), we applied in situ hybridization to analyze the spatial expression patterns of 49 genes encoding well-known pharmaceutical drug targets. Remarkably, over 50% of the genes examined showed interstrain expression variation. In addition, the variability was nonuniformly distributed across strain and neuroanatomic region, suggesting certain organizing principles. First, the degree of expression variance among strains mirrors genealogic relationships. Second, expression pattern differences were concentrated in higher-order brain regions such as the cortex and hippocampus. Divergence in gene expression patterns across the brain could contribute significantly to variations in behavior and responses to neuroactive drugs in laboratory mouse strains and may help to explain individual differences in human responsiveness to neuroactive drugs.
Keywords:brain evolution   gene regulation   genetic background   neuroanatomy   species difference
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