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Synthetic Biology
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Synthetic Biology
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Synthetic Biology/ edited by Anton Glieder, Christian P. Kubicek, Diethard Mattanovich, Birgit Wiltschi, Michael Sauer.
其他作者:
Glieder, Anton.
面頁冊數:
VII, 368 p. 152 illus., 32 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Systems biology. -
電子資源:
https://doi.org/10.1007/978-3-319-22708-5
ISBN:
9783319227085
Synthetic Biology
Synthetic Biology
[electronic resource] /edited by Anton Glieder, Christian P. Kubicek, Diethard Mattanovich, Birgit Wiltschi, Michael Sauer. - 1st ed. 2016. - VII, 368 p. 152 illus., 32 illus. in color.online resource.
Xenobiotic life (artificial cells and cell like structures, biological nanostructures, XNA) -- Novel DNA and RNA (synthetic promoters, riboswitches, small RNAs, ribozymes, adaptamers, DNA walker, DNA machines) -- Expansion of the genetic code and protein building blocks (orthogonal mRNA-ribosome pairs, non canonical amino acids) -- DNA logics and circuit design (including sensors, TALORs, genome rewiring repressilator, oscillator, metabolator, „Multicellular circuits“) -- Protein engineering (directed evolution, domain engineering) -- Synthetic metabolic pathways (engineered pathways, non natural pathways, scaffolding) -- Reengineered chassis cells (minimal organisms, platform hosts, minimal genomes, synthetic genomes) -- In silico simulation and design of complex metabolic and signalling networks -- Novel synthetic biomaterials -- Key methods for synthetic biology (assembly technologies, genome engineering technologies, DNA synthesis, Standardization) -- Public awareness and risk management.
The emerging field of synthetic biology employs biotechnological approaches to recreate and enhance basic biological structures, intracellular processes and whole organisms. This book provides a comprehensive, up-to-date overview of the opportunities and challenges of this complex field of biotechnology, which combines various scientific disciplines. It addresses a broad range of topics, including redesigning complex metabolic pathways, DNA/RNA and protein engineering, as well as novel synthetic biomaterials. It discusses both “bottom up” and “top down” approaches and presents the latest genome engineering tools with predictions about how these could change our way of thinking and working. Since the use of synthetic biology raises a number of ethical questions, a chapter is devoted to public awareness and risk management. The book is of interest to scientists from both academia and industry, as well as PhD students and postdocs working in the field.
ISBN: 9783319227085
Standard No.: 10.1007/978-3-319-22708-5doiSubjects--Topical Terms:
600045
Systems biology.
LC Class. No.: QH301-705
Dewey Class. No.: 570
Synthetic Biology
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Xenobiotic life (artificial cells and cell like structures, biological nanostructures, XNA) -- Novel DNA and RNA (synthetic promoters, riboswitches, small RNAs, ribozymes, adaptamers, DNA walker, DNA machines) -- Expansion of the genetic code and protein building blocks (orthogonal mRNA-ribosome pairs, non canonical amino acids) -- DNA logics and circuit design (including sensors, TALORs, genome rewiring repressilator, oscillator, metabolator, „Multicellular circuits“) -- Protein engineering (directed evolution, domain engineering) -- Synthetic metabolic pathways (engineered pathways, non natural pathways, scaffolding) -- Reengineered chassis cells (minimal organisms, platform hosts, minimal genomes, synthetic genomes) -- In silico simulation and design of complex metabolic and signalling networks -- Novel synthetic biomaterials -- Key methods for synthetic biology (assembly technologies, genome engineering technologies, DNA synthesis, Standardization) -- Public awareness and risk management.
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The emerging field of synthetic biology employs biotechnological approaches to recreate and enhance basic biological structures, intracellular processes and whole organisms. This book provides a comprehensive, up-to-date overview of the opportunities and challenges of this complex field of biotechnology, which combines various scientific disciplines. It addresses a broad range of topics, including redesigning complex metabolic pathways, DNA/RNA and protein engineering, as well as novel synthetic biomaterials. It discusses both “bottom up” and “top down” approaches and presents the latest genome engineering tools with predictions about how these could change our way of thinking and working. Since the use of synthetic biology raises a number of ethical questions, a chapter is devoted to public awareness and risk management. The book is of interest to scientists from both academia and industry, as well as PhD students and postdocs working in the field.
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