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The transcription factor ultraspiracle influences honey bee social behavior and behavior-related gene expression
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نویسنده
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ament s.a. ,wang y. ,chen c. ,blatti c.a. ,hong f. ,liang z.s. ,negre n. ,white k.p. ,rodriguez-zas s.l. ,mizzen c.a. ,sinha s. ,zhong s. ,robinson g.e.
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منبع
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plos genetics - 2012 - دوره : 8 - شماره : 3
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چکیده
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Behavior is among the most dynamic animal phenotypes,modulated by a variety of internal and external stimuli. behavioral differences are associated with large-scale changes in gene expression,but little is known about how these changes are regulated. here we show how a transcription factor (tf),ultraspiracle (usp; the insect homolog of the retinoid x receptor),working in complex transcriptional networks,can regulate behavioral plasticity and associated changes in gene expression. we first show that rnai knockdown of usp in honey bee abdominal fat bodies delayed the transition from working in the hive (primarily nursing brood) to foraging outside. we then demonstrate through transcriptomics experiments that usp induced many maturation-related transcriptional changes in the fat bodies by mediating transcriptional responses to juvenile hormone. these maturation-related transcriptional responses to usp occurred without changes in usp's genomic binding sites,as revealed by chip-chip. instead,behaviorally related gene expression is likely determined by combinatorial interactions between usp and other tfs whose cis-regulatory motifs were enriched at usp's binding sites. many modules of jh- and maturation-related genes were co-regulated in both the fat body and brain,predicting that usp and cofactors influence shared transcriptional networks in both of these maturation-related tissues. our findings demonstrate how single gene effects on behavioral plasticity can involve complex transcriptional networks,in both brain and peripheral tissues. © 2012 ament et al.
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آدرس
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neuroscience program,university of illinois at urbana-champaign,urbana,il, United States, department of cellular and developmental biology,university of illinois at urbana-champaign,urbana,il, United States, department of bioengineering,university of illinois at urbana-champaign,urbana,il, United States, department of computer science,university of illinois at urbana-champaign,urbana,il, United States, department of statistics,university of illinois at urbana-champaign,urbana,il, United States, neuroscience program,university of illinois at urbana-champaign,urbana,il, United States, institute for genomics and systems biology,department of human genetics,the university of chicago,chicago,il, United States, institute for genomics and systems biology,department of human genetics,the university of chicago,chicago,il, United States, department of animal sciences,university of illinois at urbana-champaign,urbana,il, United States, department of cellular and developmental biology,university of illinois at urbana-champaign,urbana,il,united states,institute for genomic biology,university of illinois at urbana-champaign,urbana,il, United States, department of computer science,university of illinois at urbana-champaign,urbana,il,united states,institute for genomic biology,university of illinois at urbana-champaign,urbana,il, United States, department of bioengineering,university of illinois at urbana-champaign,urbana,il,united states,department of computer science,university of illinois at urbana-champaign,urbana,il,united states,department of statistics,university of illinois at urbana-champaign,urbana,il,united states,institute for genomic biology,university of illinois at urbana-champaign,urbana,il, United States, neuroscience program,university of illinois at urbana-champaign,urbana,il,united states,department of cellular and developmental biology,university of illinois at urbana-champaign,urbana,il,united states,institute for genomic biology,university of illinois at urbana-champaign,urbana,il,united states,department of entomology,university of illinois at urbana-champaign,urbana,il, United States
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Authors
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