非洲蜜蜂的地理和种群多样性(膜翅目:蜜蜂科)研究进展

G. Legesse, E. Getu
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摘要

本文综述了非洲蜜蜂Apismellifera L.的地理和遗传多样性的研究进展,以及各种先进分类工具在亚种水平上的应用。非洲蜜蜂在热带有利气候条件下进化,形成了独特的形态、行为和生理。非洲蜜蜂种群之间的差异有助于根据形态特征产生地理亚种。然而,随着分子分类学工具的引入,非洲和世界其他地区的亚种和谱系的数量以及进化谱系的亚种组成出现了差异。在亚洲、非洲和欧洲的不同时期,关于蜜蜂的起源中心的不同报道,也引发了关于蜜蜂进化史的争议。不仅是使用的工具,而且亚种内、蜂场内和同一蜂群内的个体之间的遗传变异也是不断出现差异的因素。在地理过渡区相邻亚种种群之间的自然杂交和主要由人类对蜜蜂理想性状的需求驱动的通过引入蜂群的基因渗入一直是蜜蜂亚种歧视的挑战之一。因此,在今后的遗传多样性和分类学研究中,从亚种水平上考虑这些自然变异,制定从采样到分析的标准化和综合程序,将有助于建立普遍认可的数据库,这对解决非洲和其他地区蜜蜂亚种分类学和命名法不一致的问题至关重要。
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Geographical and population diversity of African honeybees, Apismellifera L. (Hymenoptera: Apidae): A review
This review was prepared to summarize the information on geographic and genetic diversity of Apismellifera L. of African honeybees and the progresses made through time and applications of various advanced tools in their taxonomy at subspecies level. African honeybees have developed distinct morphology, behavior and physiology as they evolved in tropical favorable climate. The variations among the African honeybee populations have helped to produce geographic subspecies based on the morphological characteristics. However, the introduction of molecular taxonomic tools has come up with discrepancies in the number of subspecies and lineages, and subspecies composition of evolutionary lineages in Africa and other parts of the world. It has also brought up controversies in the evolutionary history of A. mellifera reporting different location as the center of origin of the species at different times: Asia, Africa and Europe. It is not only the tools that are used, but also the genetic variations within subspecies, within colonies in an apiary site and within individuals of the same colony temporally are the factors for continually appearing discrepancies. Natural hybridization between populations of adjacent subspecies along the geographic transition zones and introgression of genes through introduction of colonies that is mainly driven by human demand for desirable traits of honeybees have been among the challenges for discrimination of honeybee subspecies. Therefore, in future genetic diversity and taxonomic investigations, considering these natural variations at subspecies level and developing standardized and integrated procedures from sampling to analysis methods would help to produce generally recognized data base that is critically important to resolve the problem of inconsistencies in taxonomy and nomenclature of  honeybee subspecies of Arica and elsewhere.  
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