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Behavioral genomics of honeybee foraging and nest defense

The honeybee has been the most important insect species for study of social behavior. The recently released draft genomic sequence for the bee will accelerate honeybee behavioral genetics. Although we lack sufficient tools to manipulate this genome easily, quantitative trait loci (QTLs) that influen...

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Autores principales: Hunt, Greg J., Amdam, Gro V., Schlipalius, David, Emore, Christine, Sardesai, Nagesh, Williams, Christie E., Rueppell, Olav, Guzmán-Novoa, Ernesto, Arechavaleta-Velasco, Miguel, Chandra, Sathees, Fondrk, M. Kim, Beye, Martin, Page, Robert E.
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1829419/
https://www.ncbi.nlm.nih.gov/pubmed/17171388
http://dx.doi.org/10.1007/s00114-006-0183-1
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author Hunt, Greg J.
Amdam, Gro V.
Schlipalius, David
Emore, Christine
Sardesai, Nagesh
Williams, Christie E.
Rueppell, Olav
Guzmán-Novoa, Ernesto
Arechavaleta-Velasco, Miguel
Chandra, Sathees
Fondrk, M. Kim
Beye, Martin
Page, Robert E.
author_facet Hunt, Greg J.
Amdam, Gro V.
Schlipalius, David
Emore, Christine
Sardesai, Nagesh
Williams, Christie E.
Rueppell, Olav
Guzmán-Novoa, Ernesto
Arechavaleta-Velasco, Miguel
Chandra, Sathees
Fondrk, M. Kim
Beye, Martin
Page, Robert E.
author_sort Hunt, Greg J.
collection PubMed
description The honeybee has been the most important insect species for study of social behavior. The recently released draft genomic sequence for the bee will accelerate honeybee behavioral genetics. Although we lack sufficient tools to manipulate this genome easily, quantitative trait loci (QTLs) that influence natural variation in behavior have been identified and tested for their effects on correlated behavioral traits. We review what is known about the genetics and physiology of two behavioral traits in honeybees, foraging specialization (pollen versus nectar), and defensive behavior, and present evidence that map-based cloning of genes is more feasible in the bee than in other metazoans. We also present bioinformatic analyses of candidate genes within QTL confidence intervals (CIs). The high recombination rate of the bee made it possible to narrow the search to regions containing only 17–61 predicted peptides for each QTL, although CIs covered large genetic distances. Knowledge of correlated behavioral traits, comparative bioinformatics, and expression assays facilitated evaluation of candidate genes. An overrepresentation of genes involved in ovarian development and insulin-like signaling components within pollen foraging QTL regions suggests that an ancestral reproductive gene network was co-opted during the evolution of foraging specialization. The major QTL influencing defensive/aggressive behavior contains orthologs of genes involved in central nervous system activity and neurogenesis. Candidates at the other two defensive-behavior QTLs include modulators of sensory signaling (Am5HT(7) serotonin receptor, AmArr4 arrestin, and GABA-B-R1 receptor). These studies are the first step in linking natural variation in honeybee social behavior to the identification of underlying genes.
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spelling pubmed-18294192007-03-22 Behavioral genomics of honeybee foraging and nest defense Hunt, Greg J. Amdam, Gro V. Schlipalius, David Emore, Christine Sardesai, Nagesh Williams, Christie E. Rueppell, Olav Guzmán-Novoa, Ernesto Arechavaleta-Velasco, Miguel Chandra, Sathees Fondrk, M. Kim Beye, Martin Page, Robert E. Naturwissenschaften Review The honeybee has been the most important insect species for study of social behavior. The recently released draft genomic sequence for the bee will accelerate honeybee behavioral genetics. Although we lack sufficient tools to manipulate this genome easily, quantitative trait loci (QTLs) that influence natural variation in behavior have been identified and tested for their effects on correlated behavioral traits. We review what is known about the genetics and physiology of two behavioral traits in honeybees, foraging specialization (pollen versus nectar), and defensive behavior, and present evidence that map-based cloning of genes is more feasible in the bee than in other metazoans. We also present bioinformatic analyses of candidate genes within QTL confidence intervals (CIs). The high recombination rate of the bee made it possible to narrow the search to regions containing only 17–61 predicted peptides for each QTL, although CIs covered large genetic distances. Knowledge of correlated behavioral traits, comparative bioinformatics, and expression assays facilitated evaluation of candidate genes. An overrepresentation of genes involved in ovarian development and insulin-like signaling components within pollen foraging QTL regions suggests that an ancestral reproductive gene network was co-opted during the evolution of foraging specialization. The major QTL influencing defensive/aggressive behavior contains orthologs of genes involved in central nervous system activity and neurogenesis. Candidates at the other two defensive-behavior QTLs include modulators of sensory signaling (Am5HT(7) serotonin receptor, AmArr4 arrestin, and GABA-B-R1 receptor). These studies are the first step in linking natural variation in honeybee social behavior to the identification of underlying genes. Springer-Verlag 2006-12-15 2007-04 /pmc/articles/PMC1829419/ /pubmed/17171388 http://dx.doi.org/10.1007/s00114-006-0183-1 Text en © Springer-Verlag 2006
spellingShingle Review
Hunt, Greg J.
Amdam, Gro V.
Schlipalius, David
Emore, Christine
Sardesai, Nagesh
Williams, Christie E.
Rueppell, Olav
Guzmán-Novoa, Ernesto
Arechavaleta-Velasco, Miguel
Chandra, Sathees
Fondrk, M. Kim
Beye, Martin
Page, Robert E.
Behavioral genomics of honeybee foraging and nest defense
title Behavioral genomics of honeybee foraging and nest defense
title_full Behavioral genomics of honeybee foraging and nest defense
title_fullStr Behavioral genomics of honeybee foraging and nest defense
title_full_unstemmed Behavioral genomics of honeybee foraging and nest defense
title_short Behavioral genomics of honeybee foraging and nest defense
title_sort behavioral genomics of honeybee foraging and nest defense
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1829419/
https://www.ncbi.nlm.nih.gov/pubmed/17171388
http://dx.doi.org/10.1007/s00114-006-0183-1
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