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University of Iowa
Iowa Research Online
Theses and Dissertations
2009
Evolutionary and functional genomics of
photosynthetic eukaryotes
Ahmed Moustafa
This dissertation is available at Iowa Research Online: http://ir.uiowa.edu/etd/311
Recommended Citation
Moustafa, Ahmed. "Evolutionary and functional genomics of photosynthetic eukaryotes." PhD diss., University of Iowa, 2009.
http://ir.uiowa.edu/etd/311.
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EVOLUTIONARY AND FUNCTIONAL GENOMICS
OF PHOTOSYNTHETIC EUKARYOTES
by
Ahmed Moustafa
An Abstract
Of a thesis submitted in partial fulfillment
of the requirements for the Doctor of Philosophy degree
in Genetics (Computational Genetics) in
the Graduate College of
The University of Iowa
July 2009
Thesis Supervisor: Professor Debashish Bhattacharya
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ABSTRACT
My dissertation focuses on genome and functional evolution of photosynthetic
eukaryotes and the design and implementation of computational methods and tools to
enable genome-wide studies to investigate these taxa.
In CHAPTER 1, I introduce what is currently known about the evolution of
plastids and photosynthesis in eukaryotes, an overview of marine harmful algae, and the
specific aims of my dissertation.
In CHAPTER 2, I describe the design and implementation of the phylogenetic
sorting tool, PhyloSort and the assembly of a high-throughput phylogenomic pipeline. I
also present a case study using these tools to estimate the cyanobacterial contribution to
the nuclear genome of Plantae.
In CHAPTER 3, I discuss the intriguing relationship of Chlamydiae-like bacteria
and plants and algae. Surprisingly, we identified more than fifty Chlamydiae-derived
genes in plants and algae. We propose a model for the role that a Chlamydiae-like
symbiont might have played in the establishment of the plastid in plants and algae.
In CHAPTER 4, I describe a study in which we explored the protein models of
two diatom organisms as representative for the chromalveolates and looked for genes that
might have been acquired through endosymbiotic or horizontal transfers from red or
green algae. Our study shows an unexpected green algal contribution that is fourfold
greater than that of the canonical red algal symbiont.
In CHAPTER 5, I describe the identification of the phylogenetic origin of the
genes involved in the biosynthetic pathway of saxitoxin in cyanobacteria. Here, we used
a pyrosequencing approach to sequence two strains, toxic and non-toxic, of Anabaena
circinalis. I show that the key enzymes are of foreign origin, acquired via horizontal
transfer from non-cyanobacterial sources.
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In CHAPTER 6, I describe a gene expression study in which we used massively
parallel signature sequencing to investigate RNA abundance patterns in the toxic
dinoflagellate Alexandrium tamarense and to estimate of the number of the distinct
genes. Our data indicate that dinoflagellates possess a great metabolic flexibility that
allows them to toggle between photoautotrophy and heterotrophy based on the
environmental conditions.
Abstract Approved:
Thesis Supervisor
Title and Department
Date
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EVOLUTIONARY AND FUNCTIONAL GENOMICS
OF PHOTOSYNTHETIC EUKARYOTES
by
Ahmed Moustafa
A thesis submitted in partial fulfillment
of the requirements for the Doctor of Philosophy degree
in Genetics (Computational Genetics) in
the Graduate College of
The University of Iowa
July 2009
Thesis Supervisor: Professor Debashish Bhattacharya
End of preview.