ENGLISH

Modelling protocells : the emergent synchronization of reproduction and molecular replication

Book information

Publisher
Springer
Year
2017
ISBN
978-94-024-1160-7, 9402411607, 978-94-024-1158-4
Language
english
Format
PDF
Filesize
4 MB (4628204 bytes)
Series
Understanding complex systems; Springer complexity
Pages
182\191
Time added
2017-10-15 16:00:00

Description

The monograph discusses models of synthetic protocells, which are cell-like structures obtained from non-living matter endowed with some rudimentary kind of metabolism and genetics, but much simpler than biological cells. They should grow and proliferate, generating offsprings that resemble in some way the parent protocells with some variation, so that selection may take place. Sustainable protocell populations have not yet been obtained experimentally and mathematical models are therefore extremely important to address key questions concerning their synthesis and behavior. Different protocell "architectures" have been proposed and high-level abstract models like those that are presented in this book are particularly relevant to gain a better understanding of the different properites. These models are able to treat all the major dynamical phenomena in a unified framework, so they can be seen as "virtual laboratories" for protocell research. Particular attention is paid to the problem of synchronization of the fission rate of the whole protocell and the duplication rate of its "protogenetic" material, which is shown to be an emergent property that spontaneously develops in successive generations. The book is of interest for a broad range of scientists working in soft matter physics, chemistry and biology, interested in the role protocells may play on the development of new technologies with medical, environmental and industrial applications as well as scientists interested in the origin of life. Read more... Abstract: The monograph discusses models of synthetic protocells, which are cell-like structures obtained from non-living matter endowed with some rudimentary kind of metabolism and genetics, but much simpler than biological cells. They should grow and proliferate, generating offsprings that resemble in some way the parent protocells with some variation, so that selection may take place. Sustainable protocell populations have not yet been obtained experimentally and mathematical models are therefore extremely important to address key questions concerning their synthesis and behavior. Different protocell "architectures" have been proposed and high-level abstract models like those that are presented in this book are particularly relevant to gain a better understanding of the different properites. These models are able to treat all the major dynamical phenomena in a unified framework, so they can be seen as "virtual laboratories" for protocell research. Particular attention is paid to the problem of synchronization of the fission rate of the whole protocell and the duplication rate of its "protogenetic" material, which is shown to be an emergent property that spontaneously develops in successive generations. The book is of interest for a broad range of scientists working in soft matter physics, chemistry and biology, interested in the role protocells may play on the development of new technologies with medical, environmental and industrial applications as well as scientists interested in the origin of life Front Matter ....Pages i-xv Introduction (Roberto Serra, Marco Villani)....Pages 1-14 Generic Properties of Dynamical Models of Protocells (Roberto Serra, Marco Villani)....Pages 15-27 Dynamical Models of Protocells and Synchronization (Roberto Serra, Marco Villani)....Pages 29-59 Models of Self-Replication (Roberto Serra, Marco Villani)....Pages 61-104 A Stochastic Model of Growing and Dividing Protocells (Roberto Serra, Marco Villani)....Pages 105-147 Conclusions, Open Questions and Perspectives (Roberto Serra, Marco Villani)....Pages 149-167 Back Matter ....Pages 169-182

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