Gene expression evolves faster in narrowly than in broadly expressed mammalian genes

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Abstract

Despite much recent interest, it remains unclear what determines the rate of evolution of gene expression. To study this issue we develop a new measure, called "Expression Conservation Index" (ECI), to quantify the degree of tissue-expression conservation between two homologous genes. Applying this measure to a large set of gene expression data from human and mouse, we show that tissue expression tends to evolve rapidly for genes that are expressed in only a limited number of tissues, whereas tissue expression can be conserved for a long time for genes expressed in a large number of tissues. Therefore, expression breadth is an important determinant for evolutionary conservation of tissue expression. In addition, we find a rapid decrease in ECI with the synonymous divergence between duplicate genes, suggesting fast divergence in tissue expression between duplicate genes. © The Author 2005. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. All rights reserved.

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Yang, J., Su, A. I., & Li, W. H. (2005). Gene expression evolves faster in narrowly than in broadly expressed mammalian genes. Molecular Biology and Evolution, 22(10), 2113–2118. https://doi.org/10.1093/molbev/msi206

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