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Engineering and Analyzing Multicellular Systems

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Cover of 'Engineering and Analyzing Multicellular Systems'

Table of Contents

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    Book Overview
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    Chapter 1 Recent progress in engineering human-associated microbiomes.
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    Chapter 2 Constructing synthetic microbial communities to explore the ecology and evolution of symbiosis.
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    Chapter 3 Combining engineering and evolution to create novel metabolic mutualisms between species.
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    Chapter 4 Design, construction, and characterization methodologies for synthetic microbial consortia.
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    Chapter 5 An Observation Method for Autonomous Signaling-Mediated Synthetic Diversification in Escherichia coli.
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    Chapter 6 Integration-Free Reprogramming of Human Somatic Cells to Induced Pluripotent Stem Cells (iPSCs) Without Viral Vectors, Recombinant DNA, and Genetic Modification.
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    Chapter 7 Transformation of Bacillus subtilis.
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    Chapter 8 Culturing anaerobes to use as a model system for studying the evolution of syntrophic mutualism.
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    Chapter 9 Therapeutic microbes for infectious disease.
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    Chapter 10 Quantitative measurement and analysis in a synthetic pattern formation multicellular system.
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    Chapter 11 Transcriptome Analysis of a Microbial Coculture in which the Cell Populations Are Separated by a Membrane.
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    Chapter 12 Identification of Mutations in Laboratory-Evolved Microbes from Next-Generation Sequencing Data Using breseq.
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    Chapter 13 3D-Fluorescence In Situ Hybridization of Intact, Anaerobic Biofilm.
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    Chapter 14 The characterization of living bacterial colonies using nanospray desorption electrospray ionization mass spectrometry.
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    Chapter 15 Modeling community population dynamics with the open-source language R.
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    Chapter 16 Simulating microbial community patterning using biocellion.
Attention for Chapter 12: Identification of Mutations in Laboratory-Evolved Microbes from Next-Generation Sequencing Data Using breseq.
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