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Genetic differentiation across a behavioural boundary in a primitively eusocial bee, Halictus poeyi Lepeletier (Hymenoptera, Halictidae)

机译:在原本是共社会的蜜蜂Halictus poeyi Lepeletier(膜翅目,Halictidae)的行为边界上的遗传分化

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摘要

In Florida, the primitively eusocial bee, Halictus poeyi Lepeletier exhibits two different colony cycles: populations in northern and central Florida are univoltine with an annually brooded colony cycle, while populations in southern Florida, including the Florida Keys, are multivoltine with a continuously brooded colony cycle. In this study, we test the hypothesis of reduced gene flow between the colony types by comparing levels of genetic differentiation among populations having similar colony phenologies with that among populations having different colony phenologies. We use allozyme markers to estimate F ST, a robust measure of genetic differentiation. We found that genetic differentiation is not significantly higher between populations having different colony phenologies than between populations having similar colony phenologies. Environmental conditions thus may play an important role in influencing the expression of the alternative colony types of H. poeyi populations in Florida.
机译:在佛罗里达州,原本是与人共处的蜜蜂,Halictus poeyi Lepeletier表现出两种不同的菌落周期:佛罗里达州北部和中部的种群是单伏群,每年繁殖的菌落周期,而佛罗里达州南部的种群,包括佛罗里达群岛,是多菌落,种群不断繁殖。周期。在这项研究中,我们通过比较具有相似菌落物候特征的种群之间的遗传分化水平和具有不同菌落物候特征的种群之间的遗传分化水平,来检验菌落类型之间基因流减少的假设。我们使用同工酶标记来估计F ST ,这是遗传分化的可靠方法。我们发现,具有不同菌落物候的种群之间的遗传分化并不明显高于具有相似菌落物候的种群之间的遗传分化。因此,环境条件可能在影响佛罗里达州嗜血杆菌的替代菌落类型的表达中起重要作用。

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