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Implication of Quorum Sensing System in Biofilm Formation and Virulence / edited by Pallaval Veera Bramhachari

Contributor(s): Pallaval Veera Bramhachari, editor literario | SpringerLink (Online service)
Series: (Biomedical and Life Sciences (Springer-11642)).Publisher: Singapore : Springer Singapore, 2018Description: 1 recurso en línea (XIV, 381 páginas) : 64 ilustraciones, 43 ilustraciones a color.ISBN: 9789811324291.Subject: Interacción celular | BacteriologíaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Module 1_Introduction to Microbial Quorum Sensing -- Module 2_Functional Aspects of Quorum Sensing in Microbes -- Module 3_Quorum Sensing regulated behaviors in Fungi -- Module 4_Quorum Sensing regulated behaviours in Gram- Negative bacteria -- Module 5_QS-regulated behaviours in Gram- Positive bacteria.
Abstract: This book illustrates the importance and significance of Quorum sensing (QS), it's critical roles in regulating diverse cellular functions in microbes, including bioluminescence, virulence, pathogenesis, gene expression, biofilm formation and antibiotic resistance. Microbes can coordinate population behavior with small molecules called autoinducers (AHL) which serves as a signal of cellular population density, triggering new patterns of gene expression for mounting virulence and pathogenesis. Therefore, these microbes have the competence to coordinate and regulate explicit sets of genes by sensing and communicating amongst themselves utilizing variety of signals. This book descry emphasizes on how bacteria can coordinate an activity and synchronize their response to external signals and regulate gene expression. The chapters of the book provide the recent advancements on various functional aspects of QS systems in different gram positive and gram negative organisms. Finally, the book also elucidates a comprehensive yet a representative description of a large number of challenges associated with quorum sensing signal molecules viz. virulence, pathogenesis, antibiotic synthesis, biosurfactants production, persister cells, cell signaling and biofilms, intra and inter-species communications, host-pathogen interactions, social interactions & swarming migration in biofilms.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud QR96.5 2018 EB (Browse shelf(Opens below)) Acceso electrónico eBook.12022068
Total holds: 0

Module 1_Introduction to Microbial Quorum Sensing -- Module 2_Functional Aspects of Quorum Sensing in Microbes -- Module 3_Quorum Sensing regulated behaviors in Fungi -- Module 4_Quorum Sensing regulated behaviours in Gram- Negative bacteria -- Module 5_QS-regulated behaviours in Gram- Positive bacteria.

This book illustrates the importance and significance of Quorum sensing (QS), it's critical roles in regulating diverse cellular functions in microbes, including bioluminescence, virulence, pathogenesis, gene expression, biofilm formation and antibiotic resistance. Microbes can coordinate population behavior with small molecules called autoinducers (AHL) which serves as a signal of cellular population density, triggering new patterns of gene expression for mounting virulence and pathogenesis. Therefore, these microbes have the competence to coordinate and regulate explicit sets of genes by sensing and communicating amongst themselves utilizing variety of signals. This book descry emphasizes on how bacteria can coordinate an activity and synchronize their response to external signals and regulate gene expression. The chapters of the book provide the recent advancements on various functional aspects of QS systems in different gram positive and gram negative organisms. Finally, the book also elucidates a comprehensive yet a representative description of a large number of challenges associated with quorum sensing signal molecules viz. virulence, pathogenesis, antibiotic synthesis, biosurfactants production, persister cells, cell signaling and biofilms, intra and inter-species communications, host-pathogen interactions, social interactions & swarming migration in biofilms.

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