Expanding the Toolkit for Metabolic Engineering

The essence of metabolic engineering is the modification of microbes for the overproduction of useful compounds. These cellular factories are increasingly recognized as an environmentally-friendly and cost-effective way to convert inexpensive and renewable feedstocks into products, compared to tradi...

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Main Author: Ng, Yao Zong
Language:English
Published: 2016
Subjects:
Online Access:https://doi.org/10.7916/D8RB74SX
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spelling ndltd-columbia.edu-oai-academiccommons.columbia.edu-10.7916-D8RB74SX2019-05-09T15:15:10ZExpanding the Toolkit for Metabolic EngineeringNg, Yao Zong2016ThesesBioengineeringMolecular evolutionMicrobial genetic engineeringChemistryMolecular biologyThe essence of metabolic engineering is the modification of microbes for the overproduction of useful compounds. These cellular factories are increasingly recognized as an environmentally-friendly and cost-effective way to convert inexpensive and renewable feedstocks into products, compared to traditional chemical synthesis from petrochemicals. The products span the spectrum of specialty, fine or bulk chemicals, with uses such as pharmaceuticals, nutraceuticals, flavors and fragrances, agrochemicals, biofuels and building blocks for other compounds. However, the process of metabolic engineering can be long and expensive, primarily due to technological hurdles, our incomplete understanding of biology, as well as redundancies and limitations built into the natural program of living cells. Combinatorial or directed evolution approaches can enable us to make progress even without a full understanding of the cell, and can also lead to the discovery of new knowledge. This thesis is focused on addressing the technological bottlenecks in the directed evolution cycle, specifically de novo DNA assembly to generate strain libraries and small molecule product screens and selections.Englishhttps://doi.org/10.7916/D8RB74SX
collection NDLTD
language English
sources NDLTD
topic Bioengineering
Molecular evolution
Microbial genetic engineering
Chemistry
Molecular biology
spellingShingle Bioengineering
Molecular evolution
Microbial genetic engineering
Chemistry
Molecular biology
Ng, Yao Zong
Expanding the Toolkit for Metabolic Engineering
description The essence of metabolic engineering is the modification of microbes for the overproduction of useful compounds. These cellular factories are increasingly recognized as an environmentally-friendly and cost-effective way to convert inexpensive and renewable feedstocks into products, compared to traditional chemical synthesis from petrochemicals. The products span the spectrum of specialty, fine or bulk chemicals, with uses such as pharmaceuticals, nutraceuticals, flavors and fragrances, agrochemicals, biofuels and building blocks for other compounds. However, the process of metabolic engineering can be long and expensive, primarily due to technological hurdles, our incomplete understanding of biology, as well as redundancies and limitations built into the natural program of living cells. Combinatorial or directed evolution approaches can enable us to make progress even without a full understanding of the cell, and can also lead to the discovery of new knowledge. This thesis is focused on addressing the technological bottlenecks in the directed evolution cycle, specifically de novo DNA assembly to generate strain libraries and small molecule product screens and selections.
author Ng, Yao Zong
author_facet Ng, Yao Zong
author_sort Ng, Yao Zong
title Expanding the Toolkit for Metabolic Engineering
title_short Expanding the Toolkit for Metabolic Engineering
title_full Expanding the Toolkit for Metabolic Engineering
title_fullStr Expanding the Toolkit for Metabolic Engineering
title_full_unstemmed Expanding the Toolkit for Metabolic Engineering
title_sort expanding the toolkit for metabolic engineering
publishDate 2016
url https://doi.org/10.7916/D8RB74SX
work_keys_str_mv AT ngyaozong expandingthetoolkitformetabolicengineering
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