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Evolution of genes and genomes on the Drosophila phylogeny
Authors:Drosophila Genomes Consortium  Clark Andrew G  Eisen Michael B  Smith Douglas R  Bergman Casey M  Oliver Brian  Markow Therese A  Kaufman Thomas C  Kellis Manolis  Gelbart William  Iyer Venky N  Pollard Daniel A  Sackton Timothy B  Larracuente Amanda M  Singh Nadia D  Abad Jose P  Abt Dawn N  Adryan Boris  Aguade Montserrat  Akashi Hiroshi  Anderson Wyatt W  Aquadro Charles F  Ardell David H  Arguello Roman  Artieri Carlo G  Barbash Daniel A  Barker Daniel  Barsanti Paolo  Batterham Phil  Batzoglou Serafim  Begun Dave  Bhutkar Arjun  Blanco Enrico  Bosak Stephanie A  Bradley Robert K  Brand Adrianne D  Brent Michael R
Affiliation:Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA. ac347@cornell.edu
Abstract:Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the precision and sensitivity of evolutionary inference, producing more robust results than single-genome analyses can provide. The genomes of 12 Drosophila species, ten of which are presented here for the first time (sechellia, simulans, yakuba, erecta, ananassae, persimilis, willistoni, mojavensis, virilis and grimshawi), illustrate how rates and patterns of sequence divergence across taxa can illuminate evolutionary processes on a genomic scale. These genome sequences augment the formidable genetic tools that have made Drosophila melanogaster a pre-eminent model for animal genetics, and will further catalyse fundamental research on mechanisms of development, cell biology, genetics, disease, neurobiology, behaviour, physiology and evolution. Despite remarkable similarities among these Drosophila species, we identified many putatively non-neutral changes in protein-coding genes, non-coding RNA genes, and cis-regulatory regions. These may prove to underlie differences in the ecology and behaviour of these diverse species.
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