Microbial Communication Microbial Communication

Microbial Communication

Mathematical Modeling, Synthetic Biology and the Role of Noise

    • 119,99 €
    • 119,99 €

Description de l’éditeur

This book introduces the concept of bacterial communication systems from a mathematical modeling point of view. It sheds light on the research undertaken in the last three decades, and the mathematical models that have been proposed to understand the underlying mechanism of such systems. These communication systems are related to quorum sensing mechanisms and quorum sensing regulated processes such as biofilm formation, gene expression, bioluminescence, swarming and virulence. 
The book further describes the phenomenon of noise, and discusses how noise plays a crucial role in gene expression and the quorum sensing circuit operationusing a set of tools like frequency domain analysis, power spectral density, stochastic simulation and the whitening effect. It also explores various aspects of synthetic biology (related to bacterial communication), such as genetic toggle switch, bistable gene regulatory networks, transcriptional repressor systems, pattern formation, synthetic cooperation, predator-prey synthetic systems, dynamical quorum sensing, synchronized quorum of genetic clocks, role of noise in synthetic biology, the Turing test and stochastic Turing test.

GENRE
Science et nature
SORTIE
2020
15 septembre
LANGUE
EN
Anglais
LONGUEUR
192
Pages
ÉDITIONS
Springer Nature Singapore
DÉTAILS DU FOURNISSEUR
Springer Science & Business Media LLC
TAILLE
14
Mo
Cellular Computing Cellular Computing
2004
Biosystems Engineering II Biosystems Engineering II
2010
High Resolution Microbial Single Cell Analytics High Resolution Microbial Single Cell Analytics
2011
Understanding the Dynamics of Biological Systems Understanding the Dynamics of Biological Systems
2011
Systems Biology and Biotechnology of Escherichia coli Systems Biology and Biotechnology of Escherichia coli
2009
Synthetic Biology, 2 Volumes Synthetic Biology, 2 Volumes
2015