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1 April 2010 The Functional Genomics of Inbreeding Depression: A New Approach to an Old Problem
Ken N. Paige
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Abstract

The fitness consequences of inbreeding have attracted the attention of biologists since the time its harmful effects were first recognized by Charles Darwin. Although inbreeding depression has been a central theme in biological research for over a century, little is known about its underlying molecular basis. With the generation of vast amounts of DNA sequence information and the advent of microarrays we are now able to describe biological processes from a total genomic perspective. This article reviews the ways in which microarrays have advanced our understanding of the molecular basis of inbreeding depression, including our first look at the number of genes associated with inbreeding depression, which genes or functional classes of genes are responsible for the decrease in fitness associated with inbreeding, the underlying cause of inbreeding depression—overdominance or partially recessive deleterious alleles—and environmental influences on gene-expression patterns.

© 2010 by American Institute of Biological Sciences. AU rights reserved. Request permission to photocopy or reproduce article content at the University of California Press's Rights and Permissions Web site at www.ucpressjournals.com/reprintinfo.asp.
Ken N. Paige "The Functional Genomics of Inbreeding Depression: A New Approach to an Old Problem," BioScience 60(4), 267-277, (1 April 2010). https://doi.org/10.1525/bio.2010.60.4.5
Published: 1 April 2010
JOURNAL ARTICLE
11 PAGES

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KEYWORDS
Drosophila melanogaster
fitness
genomics
inbreeding depression
microarray
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