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Quasispecies: From Theory to Experimental Systems / edited by Esteban Domingo, Peter Schuster

Contributor(s): Domingo, Esteban., editor literario | Schuster, Peter., editor literario | SpringerLink (Online service)
Material type: materialTypeLabelE-bookSeries: (Current Topics in Microbiology and Immunology, 0070-217X; 392).Publisher: Cham : Springer International Publishing, 2016Edition: 1st ed.Description: 1 recurso en línea (XIV, 357 páginas) : 67 ilustraciones, 53 ilustraciones en color.ISBN: 9783319238982.Subject: Genética humana | InmunologíaDDC classification: 616.9101 Online resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
What is a quasispecies?- Historical origins and current scope -- The nucleation of semantic information in prebiotic matter -- Evolution of RNA-based networks -- Quasispecies on fitness landscapes -- Mathematical models of quasispecies theory and exact results for the dynamics -- Theoretical Models of Generalized Quasispecies -- Theories of lethal mutagenesis: from error catastrophe to lethal defection -- Estimating fitness of viral quasispecies from next-generation sequencing data -- Getting to know viral evolutionary strategies: Towards the next generation of quasispecies models -- Cooperative Interaction within RNA Virus Mutant Spectra -- Arenavirus Quasispecies And Their Biological Implications -- Models of viral population dynamics -- Fidelity variants and RNA quasispecies -- Antiviral strategies based on lethal mutagenesis and error threshold.
Summary: This volume brings together recent developments in quasispecies theory extended to variable environments and practical applications in elucidating viral dynamics and treatment designs. In particular, the existence of an error threshold in rugged fitness landscapes has opened the way to a new antiviral strategy termed lethal mutagenesis, which is now under intensive theoretical, experimental and clinical investigation. As such the book explains how an understanding of quasispecies dynamics within infected organisms has increased our knowledge of viral disease events. From a clinical perspective, population dynamics highlights important problems for viral disease control, such as the selection of drug-resistant mutants that often accompanies treatment failures, and suggests means of increasing the effectiveness of antiviral treatments. The book is intended for students and scientists interested in basic and applied aspects of biophysics, chemistry, biology, evolution and medical virology.�.
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud QR360 .Q37 2016 EB (Browse shelf(Opens below)) .i11613099 Acceso electrónico eBOOK .i11613099
Total holds: 0

What is a quasispecies?- Historical origins and current scope -- The nucleation of semantic information in prebiotic matter -- Evolution of RNA-based networks -- Quasispecies on fitness landscapes -- Mathematical models of quasispecies theory and exact results for the dynamics -- Theoretical Models of Generalized Quasispecies -- Theories of lethal mutagenesis: from error catastrophe to lethal defection -- Estimating fitness of viral quasispecies from next-generation sequencing data -- Getting to know viral evolutionary strategies: Towards the next generation of quasispecies models -- Cooperative Interaction within RNA Virus Mutant Spectra -- Arenavirus Quasispecies And Their Biological Implications -- Models of viral population dynamics -- Fidelity variants and RNA quasispecies -- Antiviral strategies based on lethal mutagenesis and error threshold.

This volume brings together recent developments in quasispecies theory extended to variable environments and practical applications in elucidating viral dynamics and treatment designs. In particular, the existence of an error threshold in rugged fitness landscapes has opened the way to a new antiviral strategy termed lethal mutagenesis, which is now under intensive theoretical, experimental and clinical investigation. As such the book explains how an understanding of quasispecies dynamics within infected organisms has increased our knowledge of viral disease events. From a clinical perspective, population dynamics highlights important problems for viral disease control, such as the selection of drug-resistant mutants that often accompanies treatment failures, and suggests means of increasing the effectiveness of antiviral treatments. The book is intended for students and scientists interested in basic and applied aspects of biophysics, chemistry, biology, evolution and medical virology.�.

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