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Comparative Genomics [electronic resource] : RECOMB 2007, International Workshop, RECOMB-CG 2007, San Diego, CA, USA, September 16-18, 2007, Proceedings / edited by Glenn Tesler, Dannie Durand.

Contributor(s): Material type: TextSeries: Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2007Edition: 1st ed. 2007Description: XII, 193 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540749608
Subject(s): DDC classification:
  • 572 23
Online resources:
Contents:
Multi-break Rearrangements: From Circular to Linear Genomes -- A Pseudo-boolean Programming Approach for Computing the Breakpoint Distance Between Two Genomes with Duplicate Genes -- Improving Inversion Median Computation Using Commuting Reversals and Cycle Information -- Inferring a Duplication, Speciation and Loss History from a Gene Tree (Extended Abstract) -- How to Achieve an Equivalent Simple Permutation in Linear Time -- Baculovirus Phylogeny Based on Genome Rearrangements -- Learning Gene Regulatory Networks via Globally Regularized Risk Minimization -- Evolution of Tandemly Arrayed Genes in Multiple Species -- Selecting Genomes for Reconstruction of Ancestral Genomes -- A Heuristic Algorithm for Reconstructing Ancestral Gene Orders with Duplications -- Reconstructing an Inversion History in the Anopheles Gambiae Complex -- Recovering True Rearrangement Events on Phylogenetic Trees -- Parts of the Problem of Polyploids in Rearrangement Phylogeny -- A Rigorous Analysis of the Pattern of Intron Conservation Supports the Coelomata Clade of Animals.
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Multi-break Rearrangements: From Circular to Linear Genomes -- A Pseudo-boolean Programming Approach for Computing the Breakpoint Distance Between Two Genomes with Duplicate Genes -- Improving Inversion Median Computation Using Commuting Reversals and Cycle Information -- Inferring a Duplication, Speciation and Loss History from a Gene Tree (Extended Abstract) -- How to Achieve an Equivalent Simple Permutation in Linear Time -- Baculovirus Phylogeny Based on Genome Rearrangements -- Learning Gene Regulatory Networks via Globally Regularized Risk Minimization -- Evolution of Tandemly Arrayed Genes in Multiple Species -- Selecting Genomes for Reconstruction of Ancestral Genomes -- A Heuristic Algorithm for Reconstructing Ancestral Gene Orders with Duplications -- Reconstructing an Inversion History in the Anopheles Gambiae Complex -- Recovering True Rearrangement Events on Phylogenetic Trees -- Parts of the Problem of Polyploids in Rearrangement Phylogeny -- A Rigorous Analysis of the Pattern of Intron Conservation Supports the Coelomata Clade of Animals.

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