To b or not to b: a pheromone-binding protein regulates colony social organization in fire ants.
نویسنده
چکیده
A major distinction in the social organization of ant societies is the number of reproductive queens that reside in a single colony. The fire ant Solenopsis invicta exists in two distinct social forms, one with colonies headed by a single reproductive queen and the other containing several to hundreds of egg-laying queens. This variation in social organization has been shown to be associated with genotypes at the gene Gp-9. Specifically, single-queen colonies have only the B allelic variant of this gene, whereas multiple-queen colonies always have the b variant as well. Subsequent studies revealed that Gp-9 shares the highest sequence similarity with genes encoding pheromone-binding proteins (PBPs). In other insects, PBPs serve as central molecular components in the process of chemical recognition of conspecifics. Fire ant workers regulate the number of egg-laying queens in a colony by accepting queens that produce appropriate chemical signals and destroying those that do not. The likely role of GP-9 in chemoreception suggests that the essential distinction in colony queen number between the single and multiple-queen form originates from differences in workers' abilities to recognize queens. Other, closely related fire ant species seem to regulate colony social organization in a similar fashion.
منابع مشابه
Identification of a major gene regulating complex social behavior.
Colony queen number, a major feature of social organization in fire ants, is associated with worker genotypes at the gene Gp-9. We sequenced Gp-9 and found that it encodes a pheromone-binding protein, a crucial molecular component in chemical recognition of conspecifics. This suggests that differences in worker Gp-9 genotypes between social forms may cause differences in workers' abilities to r...
متن کاملAlternative genetic foundations for a key social polymorphism in fire ants.
Little is known about the genetic foundations of colony social organization. One rare example in which a single major gene is implicated in the expression of alternative social organizations involves the presumed odorant-binding protein gene Gp-9 in fire ants. Specific amino acid substitutions in this gene invariably are associated with the expression of monogyny (single queen per colony) or po...
متن کاملThe Quarterly Review of Biology GENETIC REGULATION OF COLONY SOCIAL ORGANIZATION IN FIRE ANTS: AN INTEGRATIVE OVERVIEW
Expression of colony social organization in fire ants appears to be under the control of a single Mendelian factor of large effect. Variation in colony queen number in Solenopsis invicta and its relatives is associated with allelic variation at the gene Gp-9, but not with variation at other unlinked genes; workers regulate queen identity and number on the basis of Gp-9 genotypic compatibility. ...
متن کاملGenetic regulation of colony social organization in fire ants: an integrative overview.
Expression of colony social organization in fire ants appears to be under the control of a single Mendelian factor of large effect. Variation in colony queen number in Solenopsis invicta and its relatives is associated with allelic variation at the gene Gp-9, but not with variation at other unlinked genes; workers regulate queen identity and number on the basis of Gp-9 genotypic compatibility. ...
متن کاملDiscovering Pheromones of the Red Imported Fire Ant (Solenopsis invicta Buren): A Review and Proposed New Target for Pheromone Disruption1
A method is described for discovering pheromones of the red imported fire ant, Solenopsis invicta Buren (Hymenoptera: Formicidae), using affinity chromatography with the pheromone-binding proteins of the ant. Proteins in the pheromoneand odorant-binding protein family, which are abundant in moths and other insect species, are not apparent in fire ant antennae. Two other types of hydrophobic lig...
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ورودعنوان ژورنال:
- BioEssays : news and reviews in molecular, cellular and developmental biology
دوره 27 1 شماره
صفحات -
تاریخ انتشار 2005