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Genetic diversity, colony chemical phenotype, and nest mate recognition in the ant Formica fusca

机译:蚁Form的遗传多样性,群体化学表型和巢伴侣识别

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摘要

Recognition of relatives is often crucial for adaptive social behavior, but availability of recognition cues may limit adaptation. Social insect workers direct altruism toward relatives through nest mate recognition. We studied whether genetic diversity increases nest mate recognition cue diversity and weakens nest mate recognition behavior in the ant Formica fusca that has both multiple and single queen societies in sympatric populations. Despite larger genetic diversity in multiple queen than single queen colonies, we found no differences in chemical recognition cue diversity or aggression toward non-nest mates in behavioral bioassays. The results suggest that the relationship between individual genotypes and the colony chemical phenotype is a complex interaction of genes and the environment, including the social setting of the colony and that increase in genetic diversity does not increase cue diversity to levels that would cause informational constraints on recognition behavior in the species.
机译:识别亲戚通常对于适应性社会行为至关重要,但是获得识别线索可能会限制适应性。社交昆虫工作者通过巢伙伴识别将利他主义指向亲戚。我们研究了遗传多样性是否在同胞种群中具有多个和单个女王社会的蚂蚁福米卡蚁中,是否增加了巢伴侣识别线索的多样性并削弱了巢伴侣的识别行为。尽管多个皇后区的遗传多样性比单一皇后区更大,但在行为生物测定中,我们没有发现化学识别线索的多样性或对非巢友的攻击。结果表明,个体基因型与菌落化学表型之间的关系是基因与环境(包括菌落的社会环境)之间的复杂相互作用,遗传多样性的增加不会将提示多样性增加到会导致信息约束的水平。物种中的识别行为。

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