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Heat Shock Proteins and Whole Body Adaptation to Extreme Environments / by Michael B. Evgen'ev, David G. Garbuz, Olga G. Zatsepina.

By: Evgen'ev, Michael B.
Contributor(s): Garbuz, David G. | Zatsepina, Olga G. | SpringerLink (Online service)
Material type: materialTypeLabelE-bookPublisher: Dordrecht, Netherlands, Netherlands : Springer, 2014Description: 1 recurso en línea (XVII, 218 páginas) : 47 ilustraciones, 38 ilustraciones en color.ISBN: 9789401792356.Subject: ProteínasDDC classification: 610 Online resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- The discovery of heat shock response system andÂ{uD86A}or groups of heat shock proteins -- Molecular functions of heat shock proteins -- Regulation of heat shockÂ{u796E}es expression -- Heat shock proteins and adaptation to variable and extreme environments -- Different trends in the evolution of heat shock genes systems.-Â{u4A25} role of mobile elements in the evolution and function of Hsps systems -- Fine tuning of the HSR in various organisms -- Experimental modulation of heat shock response -- Glossary.
Summary: For many years, the authors have investigated the adaptive role of heat shock proteins (HSPs) in different animals, including the representatives of homothermic and poikilothermic organisms that inhabit regions with contrasting thermal conditions. The investigation of ecological and geographical variation in HSPs expression, begun by Evgenâ€{u5DA0}and colleagues is now widespread. This book will summarize the data accumulated in the course of these studies and describe the general molecular mechanisms underlying the adaptation of various organisms to aggressive environments. They also concentrate on different evolutionary trends characteristic for HSP systems in the course of adaptation to fluctuating environmental conditions. In addition, the authors describe the peculiarities in the regulatory regions of heat shock genes necessary for fine tuning of these systems providing the adaptation to adverse conditions. Special emphasis is given to the role of mobile elements in the evolution and functioning of various groups of HSP genes. The book combines the results of field studies and laboratory analysis of stress genes systems.
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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 QP552.H43 E94 2014 EB (Browse shelf(Opens below)) .i11556894 Acceso electrónico eBOOK .i11556894
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Introduction -- The discovery of heat shock response system andÂ{uD86A}or groups of heat shock proteins -- Molecular functions of heat shock proteins -- Regulation of heat shockÂ{u796E}es expression -- Heat shock proteins and adaptation to variable and extreme environments -- Different trends in the evolution of heat shock genes systems.-Â{u4A25} role of mobile elements in the evolution and function of Hsps systems -- Fine tuning of the HSR in various organisms -- Experimental modulation of heat shock response -- Glossary.

For many years, the authors have investigated the adaptive role of heat shock proteins (HSPs) in different animals, including the representatives of homothermic and poikilothermic organisms that inhabit regions with contrasting thermal conditions. The investigation of ecological and geographical variation in HSPs expression, begun by Evgenâ€{u5DA0}and colleagues is now widespread. This book will summarize the data accumulated in the course of these studies and describe the general molecular mechanisms underlying the adaptation of various organisms to aggressive environments. They also concentrate on different evolutionary trends characteristic for HSP systems in the course of adaptation to fluctuating environmental conditions. In addition, the authors describe the peculiarities in the regulatory regions of heat shock genes necessary for fine tuning of these systems providing the adaptation to adverse conditions. Special emphasis is given to the role of mobile elements in the evolution and functioning of various groups of HSP genes. The book combines the results of field studies and laboratory analysis of stress genes systems.

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