Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development

In the holometabolous insect Drosophila melanogaster, genetic, physiological and anatomical aspects of olfaction are well known in the adult stage, while larval stages olfactory behavior has received some attention it has been less studied than its adult counterpart. Most of these studies focus on o...

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Autores principales: Lavagnino, N.J., Arya, G.H., Korovaichuk, A., Fanara, J.J.
Formato: JOUR
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00018244_v43_n4_p348_Lavagnino
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spelling todo:paper_00018244_v43_n4_p348_Lavagnino2023-10-03T13:52:11Z Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development Lavagnino, N.J. Arya, G.H. Korovaichuk, A. Fanara, J.J. Development Drosophila melanogaster Genetic architecture Olfactory behavior article controlled study Drosophila melanogaster dynamics female gene gene expression gene function gene insertion gene rearrangement genetic analysis genetic organization genetic similarity genetic underpinning genetic variability heredity larval stage nonhuman olfactory system ontogeny OR gene smelling animal gene gene expression profiling gene expression regulation genetics homozygote larva mutagenesis nucleotide sequence odor olfactory receptor physiology time Drosophila melanogaster Hexapoda Animals DNA Mutational Analysis Drosophila melanogaster Gene Expression Profiling Gene Expression Regulation, Developmental Genes, Insect Homozygote Larva Mutagenesis Olfactory Receptor Neurons Smell Time Factors In the holometabolous insect Drosophila melanogaster, genetic, physiological and anatomical aspects of olfaction are well known in the adult stage, while larval stages olfactory behavior has received some attention it has been less studied than its adult counterpart. Most of these studies focus on olfactory receptor (Or) genes that produce peripheral odor recognition. In this paper, through a loss-of-function screen using P-element inserted lines and also by means of expression analyses of larval olfaction candidate genes, we extended the uncovering of the genetic underpinnings of D. melanogaster larval olfactory behavior by demonstrating that larval olfactory behavior is, in addition to Or genes, orchestrated by numerous genes with diverse functions. Also, our results point out that the genetic architecture of olfactory behavior in D. melanogaster presents a dynamic and changing organization across environments and ontogeny. © 2013 Springer Science+Business Media New York. Fil:Lavagnino, N.J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Fanara, J.J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00018244_v43_n4_p348_Lavagnino
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Development
Drosophila melanogaster
Genetic architecture
Olfactory behavior
article
controlled study
Drosophila melanogaster
dynamics
female
gene
gene expression
gene function
gene insertion
gene rearrangement
genetic analysis
genetic organization
genetic similarity
genetic underpinning
genetic variability
heredity
larval stage
nonhuman
olfactory system
ontogeny
OR gene
smelling
animal
gene
gene expression profiling
gene expression regulation
genetics
homozygote
larva
mutagenesis
nucleotide sequence
odor
olfactory receptor
physiology
time
Drosophila melanogaster
Hexapoda
Animals
DNA Mutational Analysis
Drosophila melanogaster
Gene Expression Profiling
Gene Expression Regulation, Developmental
Genes, Insect
Homozygote
Larva
Mutagenesis
Olfactory Receptor Neurons
Smell
Time Factors
spellingShingle Development
Drosophila melanogaster
Genetic architecture
Olfactory behavior
article
controlled study
Drosophila melanogaster
dynamics
female
gene
gene expression
gene function
gene insertion
gene rearrangement
genetic analysis
genetic organization
genetic similarity
genetic underpinning
genetic variability
heredity
larval stage
nonhuman
olfactory system
ontogeny
OR gene
smelling
animal
gene
gene expression profiling
gene expression regulation
genetics
homozygote
larva
mutagenesis
nucleotide sequence
odor
olfactory receptor
physiology
time
Drosophila melanogaster
Hexapoda
Animals
DNA Mutational Analysis
Drosophila melanogaster
Gene Expression Profiling
Gene Expression Regulation, Developmental
Genes, Insect
Homozygote
Larva
Mutagenesis
Olfactory Receptor Neurons
Smell
Time Factors
Lavagnino, N.J.
Arya, G.H.
Korovaichuk, A.
Fanara, J.J.
Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
topic_facet Development
Drosophila melanogaster
Genetic architecture
Olfactory behavior
article
controlled study
Drosophila melanogaster
dynamics
female
gene
gene expression
gene function
gene insertion
gene rearrangement
genetic analysis
genetic organization
genetic similarity
genetic underpinning
genetic variability
heredity
larval stage
nonhuman
olfactory system
ontogeny
OR gene
smelling
animal
gene
gene expression profiling
gene expression regulation
genetics
homozygote
larva
mutagenesis
nucleotide sequence
odor
olfactory receptor
physiology
time
Drosophila melanogaster
Hexapoda
Animals
DNA Mutational Analysis
Drosophila melanogaster
Gene Expression Profiling
Gene Expression Regulation, Developmental
Genes, Insect
Homozygote
Larva
Mutagenesis
Olfactory Receptor Neurons
Smell
Time Factors
description In the holometabolous insect Drosophila melanogaster, genetic, physiological and anatomical aspects of olfaction are well known in the adult stage, while larval stages olfactory behavior has received some attention it has been less studied than its adult counterpart. Most of these studies focus on olfactory receptor (Or) genes that produce peripheral odor recognition. In this paper, through a loss-of-function screen using P-element inserted lines and also by means of expression analyses of larval olfaction candidate genes, we extended the uncovering of the genetic underpinnings of D. melanogaster larval olfactory behavior by demonstrating that larval olfactory behavior is, in addition to Or genes, orchestrated by numerous genes with diverse functions. Also, our results point out that the genetic architecture of olfactory behavior in D. melanogaster presents a dynamic and changing organization across environments and ontogeny. © 2013 Springer Science+Business Media New York.
format JOUR
author Lavagnino, N.J.
Arya, G.H.
Korovaichuk, A.
Fanara, J.J.
author_facet Lavagnino, N.J.
Arya, G.H.
Korovaichuk, A.
Fanara, J.J.
author_sort Lavagnino, N.J.
title Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
title_short Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
title_full Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
title_fullStr Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
title_full_unstemmed Genetic architecture of olfactory behavior in drosophila melanogaster: Differences and similarities across development
title_sort genetic architecture of olfactory behavior in drosophila melanogaster: differences and similarities across development
url http://hdl.handle.net/20.500.12110/paper_00018244_v43_n4_p348_Lavagnino
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AT aryagh geneticarchitectureofolfactorybehaviorindrosophilamelanogasterdifferencesandsimilaritiesacrossdevelopment
AT korovaichuka geneticarchitectureofolfactorybehaviorindrosophilamelanogasterdifferencesandsimilaritiesacrossdevelopment
AT fanarajj geneticarchitectureofolfactorybehaviorindrosophilamelanogasterdifferencesandsimilaritiesacrossdevelopment
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