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Evolution of extreme polyandry in the honeybee Apis mellifera L

机译:蜜蜂Apis mellifera L中极端一妻多夫制的演变

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A number of hypotheses have been proposed to explain the evolution of multiple mating in the honeybee queen. In particular, the consequences of reduced intracolonial relatedness provide plausible explanations for multiple mating with up to 10 drones, but fail to account for the much higher mating frequencies observed in nature. Here, an alternative mechanism is proposed which builds on non-linear relationships between intracolonial frequencies in genotypic worker specialization and colony fitness.If genes for any worker specialization confer an advantage on colony fitness only when they are rare, this would require a stable mix of sperm from a few drones which contribute that trait, and many which do not. To ensure both specific, low within-colony proportions of "rare specialist" genes, and to reduce random variation of these proportions would require mating with high numbers of drones. The quantitative implementation shows that moderate to very high numbers of matings are required to exploit colony advantages from genotypic allocation of workers to rare tasks. Extreme polyandry thus could result from colony selection dependent on the intracolonial frequency of rare genetic specialists.
机译:已经提出了许多假设来解释蜜蜂女王中多重交配的进化。尤其是,殖民地内亲缘关系减少的后果为多达10架无人机的多次交配提供了合理的解释,但却无法解释自然界中观察到的更高的交配频率。在这里,我们提出了一种替代机制,该机制建立在基因型工作者专业化中的殖民地频率与菌落适应性之间的非线性关系上,如果任何工作者专业化的基因仅在罕见时才赋予菌落适应性优势,那么就需要稳定混合少数具有这种特征的无人机产生的精子,而许多则没有。为了确保“稀有专业”基因的特定,低殖民地比例,以及减少这些比例的随机变异,都需要与大量无人机交配。定量实施表明,从基因型分配工人到稀有任务,要利用殖民地优势,需要适度到非常高数量的交配。因此,取决于稀有遗传专家的菌落内频率,菌落选择可能导致极端的一妻多夫制。

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