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The Genetic Architecture of Sucrose Responsiveness in the Honeybee (Apis mellifera L.)

机译:蜜蜂蔗糖反应性的遗传结构

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摘要

One of the best examples of a natural behavioral syndrome is the pollen-hoarding syndrome in honeybees that ties together multiple behavioral phenotypes, ranging from foraging behavior to behavioral ontogeny and learning performance. A central behavioral factor is the bees' responsiveness to sucrose, measured as their proboscis extension reflex. This study examines the genetics of this trait in diploid worker and haploid male honeybees (drones) to learn more about the genetic architecture of the overall behavioral syndrome, using original strains selected for pollen-hoarding behavior. We show that a significant proportion of the phenotypic variability is determined by genotype in males and workers. Second, our data present overwhelming evidence for pleiotropic effects of previously identified quantitative trait loci for foraging behavior (pln-QTL) and epistatic interactions among them. Furthermore, we report on three genomic QTL scans (two reciprocal worker backcrosses and one drone hybrid population) derived from our selection strains. We present at least one significant and two putative new QTL directly affecting the sucrose response of honeybees. Thus, this study demonstrates the modular genetic architecture of behavioral syndromes in general, and elucidates the genetic architecture of the pollen-hoarding behavioral syndrome in particular. Understanding this behavioral syndrome is important for understanding the division of labor in social insects and social evolution itself.
机译:自然行为综合症的最佳例子之一是蜜蜂中的花粉ho积综合症,它将多种行为表型联系在一起,从觅食行为到行为个体发育以及学习成绩。行为的中心因素是蜜蜂对蔗糖的反应能力,以蜜蜂的舌长延伸反射来衡量。这项研究检查了使用二倍体工人和单倍体雄性蜜蜂(无人机)中此性状的遗传学,以了解更多有关整体行为综合症的遗传结构的信息,并使用了用于花粉ho积行为的原始菌株。我们表明,表型变异的很大一部分是由男性和工人的基因型决定的。其次,我们的数据提供了压倒性证据,这些证据表明先前确定的觅食行为(pln-QTL)的数量性状基因座及其间的上位相互作用具有多效性。此外,我们报告了来自我们选择菌株的三个基因组QTL扫描(两个互惠工人回交和一个无人机杂种种群)。我们提出了至少一个直接影响蜜蜂的蔗糖反应的重要和两个推定的新QTL。因此,本研究总体上证明了行为综合征的模块化遗传结构,特别是阐明了花粉积蓄行为综合征的遗传结构。了解这种行为综合症对于了解社会昆虫中的劳动分工和社会进化本身很重要。

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