Publications

Detailed Information

Olfactory sensitivity, behaviors, and transcriptional profiling by high fat diet-induced stress in Drosophila melanogaster

DC Field Value Language
dc.contributor.advisor안용준 교수님-
dc.contributor.authorJinhee Kim-
dc.date.accessioned2017-07-14T06:52:03Z-
dc.date.available2017-07-14T06:52:03Z-
dc.date.issued2014-02-
dc.identifier.other000000018256-
dc.identifier.urihttps://hdl.handle.net/10371/126056-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 농생명공학부(바이오모듈레이션전공), 2014. 2. 안용준.-
dc.description.abstractEnergy homeostasis is essential to most organisms for survival affected by internal state and external factors. Unbalanced nutrient supplies cause obesity and give detrimental effects on a sensory system. In particular, sensory-mediated responses are crucial to maintain energy balance as involved in a metabolic regulation. However, investigating effects and relationship between HFD-induced stress and its effects on the sensory system have yet to be elucidated. To gain insights into how HFD-induced stress affects olfactory sensitivity and behavioral responses, we used a male Drosophila melanogaster model to test this hypothesis involving olfactory and nutrient-related signaling by using physiological, behavioral and transcriptional analysis. Here we demonstrated that lifespan and climbing ability in HFD-treated flies were decreased and moreover olfactory sensitivity and behavioral responses to odorants were modified after HFD treatment. Overall, flies showed reduction of olfactory sensitivity to most odorants after HFD treatment. Interestingly, flies showed increased behavioral attraction to benzaldehyde in both 7-day and 14-day HFD treatment. This behavioral and physiological modulation in HFD-treated flies were accompanied by a significant decreased DmOrco gene expression in antennae organ, suggesting some mediators might regulate olfactory processing through the actions of metabolic and sensory signals. The gene expression profiles of antennae indicated significantly differences in olfactory receptors, odorant-binding proteins, and insulin signaling-related genes. These transcriptional changes affected the genes in functional gene ontology. Taken together, olfactory sensitivity and behavioral responses by HFD-induced stress might be in modulation through olfactory and nutrient-related signaling in Drosophila, reflecting to functional variation of genes and modification the sensory processing from antennae to brains.-
dc.description.tableofcontentsABSTRACT
CONTENTS
LIST OF FIGURES
LIST OF TABLES
LIST OF ABBRIVIATION

Ⅰ. INTRODUCTION

Ⅱ. MATERIALS AND METHODS
2.1 Drosophila stocks and diet treatment
2.2 Life span and climbing assays
2.3 Odor stimulation
2.4 Electrophysiological recordings
2.5 Quantitative RT-PCR
2.6 Behavioral assay
2.7 Differentially expressed genes (DEG) analysis of HFD-fed flies
2.8 Statistical analysis

Ⅲ. RESULTS
3.1. Effects of HFD treatment on life span and climbing abilities in male flies
3.2. Modification of olfactory sensitivity by HFD treatment
3.3 Reduction of DmOrco gene expression in the fly antenna after HFD treatment
3.4 Modification of odorant choice behaviors by HFD treatment
3.5 Alteration of gene expression profiles by HFD treatment

Ⅳ. DISCUSSION
4.1 A high-fat diet leads to olfactory dysfunction on homeostatic processing in Drosophila
4.2 The mechanisms of high-fat-induced olfactory modulation are conserved and mediated both metabolic and olfactory signaling

Ⅴ. REFERENCES

ABSTRACT IN KOREAN
-
dc.formatapplication/pdf-
dc.format.extent1326342 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectDrosophila melanogaster-
dc.subjectHigh fat diet-induced stress-
dc.subjectOlfaction-
dc.subjectBehavioral response-
dc.subjectTranscriptional profiling-
dc.subject.ddc571-
dc.titleOlfactory sensitivity, behaviors, and transcriptional profiling by high fat diet-induced stress in Drosophila melanogaster-
dc.typeThesis-
dc.contributor.AlternativeAuthor김진희-
dc.description.degreeMaster-
dc.citation.pagesⅶ, 43-
dc.contributor.affiliation농업생명과학대학 농생명공학부(바이오모듈레이션전공)-
dc.date.awarded2014-02-
Appears in Collections:
Files in This Item:

Altmetrics

Item View & Download Count

  • mendeley

Items in S-Space are protected by copyright, with all rights reserved, unless otherwise indicated.

Share