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doctoral thesis

The Drosophila gut response to infection : a systems approach

Bou Sleiman, Maroun  
2016

Genetic, physiological, and biochemical studies have successfully ascribed functions to genes in diverse processes. However, the majority of our knowledge in biology is qualitative in nature and is usually based on classical screens, where large effects on a qualitative phenotype are usually sought. While very essential to our mechanistic understanding, these methods can be inadequate when it comes to understanding inter-individual differences in complex quantitative traits. The intensive characterization of the Drosophila gut response to infection has led to the identification of many of its major players and canonical pathways. However, knowledge of what genes and pathways are relevant in determining inter-individual differences in a natural population is still lacking. This study addresses this question by using a systems genetics approach where the effects of natural genomic perturbations on the outcome of enteric infection are explored, often revealing unexpected determinants of infection resistance.

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Type
doctoral thesis
DOI
10.5075/epfl-thesis-7151
Author(s)
Bou Sleiman, Maroun  
Advisors
Lemaitre, Bruno  
•
Deplancke, Bart  
Jury

Prof. Pierre Gönczy (président) ; Prof. Bruno Lemaitre, Prof. Bart Deplancke (directeurs) ; Prof. Jacques Fellay, Prof. Thomas Flatt, Dr Roderic Guigó (rapporteurs)

Date Issued

2016

Publisher

EPFL

Publisher place

Lausanne

Public defense year

2016-09-22

Thesis number

7151

Total of pages

140

Subjects

Systems Genetics

•

Genetics

•

Quantitative Trait

•

Complex Trait

•

Natural Variation

•

Drosophila melanogaster

•

Gut

•

Enteric infection

•

Gene Expression

•

Alternative Splicing

EPFL units
UPLEM  
Faculty
SV  
School
GHI  
Doctoral School
EDMS  
Available on Infoscience
September 12, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/129299
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