Molecular and social regulation of worker division of labour in fire ants

生物 觅食 分工 火蚁 工蜂 巢穴(蛋白质结构基序) 生态学 蜜蜂 进化生物学 遗传学 动物 膜翅目 经济 生物化学 市场经济
作者
Fabio Manfredini,Christophe Lucas,Michaël Nicolas,Laurent Keller,DeWayne Shoemaker,Christina M. Grozinger
出处
期刊:Molecular Ecology [Wiley]
卷期号:23 (3): 660-672 被引量:54
标识
DOI:10.1111/mec.12626
摘要

Abstract Reproductive and worker division of labour ( DOL ) is a hallmark of social insect societies. Despite a long‐standing interest in worker DOL , the molecular mechanisms regulating this process have only been investigated in detail in honey bees, and little is known about the regulatory mechanisms operating in other social insects. In the fire ant Solenopsis invicta , one of the most studied ant species, workers are permanently sterile and the tasks performed are modulated by the worker's internal state (age and size) and the outside environment (social environment), which potentially includes the effect of the queen presence through chemical communication via pheromones. However, the molecular mechanisms underpinning these processes are unknown. Using a whole‐genome microarray platform, we characterized the molecular basis for worker DOL and we explored how a drastic change in the social environment (i.e. the sudden loss of the queen) affects global gene expression patterns of worker ants. We identified numerous genes differentially expressed between foraging and nonforaging workers in queenright colonies. With a few exceptions, these genes appear to be distinct from those involved in DOL in bees and wasps. Interestingly, after the queen was removed, foraging workers were no longer distinct from nonforaging workers at the transcriptomic level. Furthermore, few expression differences were detected between queenright and queenless workers when we did not consider the task performed. Thus, the social condition of the colony (queenless vs. queenright) appears to impact the molecular pathways underlying worker task performance, providing strong evidence for social regulation of DOL in S. invicta .
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