CaltechTHESIS
  A Caltech Library Service

Engineering Synthetic Biofilm-Forming Microbial Consortia

Citation

Brenner, Sarah Katherine (2009) Engineering Synthetic Biofilm-Forming Microbial Consortia. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/PMZ3-4Z96. https://resolver.caltech.edu/CaltechETD:etd-04212009-104756

Abstract

Most bacteria on earth live in heterogeneous surface-bound congregations called biofilms, and vast reaches of the earth are coated in these living films. In many cases, the microorganisms comprising this ubiquitous coating form complex, interactive communities called consortia. Microbial consortia are implicated in processes of great importance to humans, from environmental remediation and wastewater treatment to assistance in food digestion. Synthetic biologists are honing their ability to program the behavior of individual microbial populations, forcing the microbes to focus on specific applications, such as the production of drugs and fuels. Given that microbial consortia can perform even more complicated tasks and endure more changeable environments than monocultures can, they represent an important new frontier for synthetic biology. This thesis describes two engineered microbial consortia that live and perform their designed functions in biofilms. The biofilm consortium elucidated in Chapter 2 serves as a proof of concept for the development of the symbiotic biofilm consortium of Chapter 3. To provide a context for these two consortia, the first chapter highlights the salient features of microbial consortia that are of interest to synthetic biologists and reviews recent efforts to engineer synthetic microbial consortia, while the final chapter suggests challenges associated with and future directions for engineering microbial consortia.

Item Type:Thesis (Dissertation (Ph.D.))
Subject Keywords:biofilm; cell circuit; directed evolution; evolution; quorum sensing; Synthetic biology
Degree Grantor:California Institute of Technology
Division:Engineering and Applied Science
Major Option:Bioengineering
Thesis Availability:Public (worldwide access)
Research Advisor(s):
  • Arnold, Frances Hamilton
Thesis Committee:
  • Arnold, Frances Hamilton (chair)
  • Newman, Dianne K.
  • Leadbetter, Jared R.
  • Elowitz, Michael B.
Defense Date:24 March 2009
Non-Caltech Author Email:ktbrenner (AT) gmail.com
Record Number:CaltechETD:etd-04212009-104756
Persistent URL:https://resolver.caltech.edu/CaltechETD:etd-04212009-104756
DOI:10.7907/PMZ3-4Z96
Default Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:1444
Collection:CaltechTHESIS
Deposited By: Imported from ETD-db
Deposited On:28 Apr 2009
Last Modified:08 Nov 2023 00:11

Thesis Files

[img]
Preview
PDF (Brenner-CompleteThesis.pdf) - Final Version
See Usage Policy.

1MB
[img]
Preview
PDF (Brenner-TitlePage.pdf) - Final Version
See Usage Policy.

70kB
[img]
Preview
PDF (Brenner-CopyrightPage.pdf) - Final Version
See Usage Policy.

55kB
[img]
Preview
PDF (Brenner-Acknowledgements.pdf) - Final Version
See Usage Policy.

62kB
[img]
Preview
PDF (Brenner-Abstract.pdf) - Final Version
See Usage Policy.

57kB
[img]
Preview
PDF (Brenner-TOC.pdf) - Final Version
See Usage Policy.

61kB
[img]
Preview
PDF (Brenner-Chapter1.pdf) - Final Version
See Usage Policy.

235kB
[img]
Preview
PDF (Brenner-Chapter2.pdf) - Final Version
See Usage Policy.

400kB
[img]
Preview
PDF (Brenner-Chapter3.pdf) - Final Version
See Usage Policy.

648kB
[img]
Preview
PDF (Brenner-Chapter4.pdf) - Final Version
See Usage Policy.

93kB
[img]
Preview
PDF (Brenner-Bibliography.pdf) - Final Version
See Usage Policy.

120kB
[img]
Preview
PDF (Brenner-AppendixA.pdf) - Final Version
See Usage Policy.

221kB
[img]
Preview
PDF (Brenner-AppendixB.pdf) - Final Version
See Usage Policy.

788kB

Repository Staff Only: item control page