Morphometric and genetic characterization as tools for selection of Apis mellifera (Hymenoptera: Apidae) stocks in an area of natural hybridization in Argentina

Leonardo Litvinoff, Francisco Menescardi, L. Porrini, Romina M. Russo, M. C. Liendo, Alejandro Nucci, Esteban Lusarreta, Rocio Ventura, Luna Espasadin, A. Monmany-Garzia, A. Scannapieco, A. Galindo-Cardona
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引用次数: 1

Abstract

Beekeepers around the world select bees’ characteristics that facilitate and favor production. In regions where hybridization among lineages is taking place, this selection is a challenge, given that these regions are “natural laboratories”, where the action of evolutionary processes of a population or species occurs in real time. A natural honeybee (Apis mellifera) hybrid zone exists in Argentina between 28° and 35° South, where Africanized (AHB) and European (EHB) populations converge. In this zone, beekeepers use selected genetic resources of European origin mostly, since the local Africanized bees show a higher defensive behavior, which is not desirable for management. Although EHB colonies have many advantages for honey production, they are not fully adapted to the subtropical climate and are susceptible to certain parasitosis such as varroosis. In addition, both AHB and EHB mate in drone congregation areas (DCAs), where males and virgin queens fly to meet, resulting in variability in the desired characteristics. In this study, we explored the degree of hybridization within a DCA and its reference apiary, located in the province of Entre Ríos, by applying two complementary techniques. First, morphotypes with different degrees of hybridization between European and African subspecies were observed in the reference apiary, indicating a high sensitivity of this morphometric approach to detect hybridization in these populations. Second, a genetic analysis revealed haplotypes of both origins for drones in DCAs, with a higher prevalence of European haplotypes, while all the colonies from the reference apiary exhibited European haplotypes. Overall, our results are in line with the strong impact that commercial beekeeping has on the genetics of DCAs. We show how wing morphometry may be used to monitor hybridization between European and African subspecies, a tool that may be evaluated in other regions of the world where hybridization occurs.
形态计量学和遗传特征作为阿根廷自然杂交地区蜜蜂(膜翅目:蜜蜂科)种群选择的工具
世界各地的养蜂人选择蜜蜂的特点,以促进和有利于生产。在发生谱系杂交的地区,这种选择是一种挑战,因为这些地区是“自然实验室”,种群或物种的进化过程是实时发生的。阿根廷在南纬28°至35°之间存在一个天然的蜜蜂杂交带,在那里非洲化(AHB)和欧洲化(EHB)种群聚集。在这个区域,养蜂人主要使用精选的欧洲遗传资源,因为当地的非洲化蜜蜂表现出更高的防御行为,这对管理来说是不可取的。虽然EHB菌落对蜂蜜生产有许多优势,但它们不能完全适应亚热带气候,并且容易受到某些寄生虫病的影响,如varroosis。此外,AHB和EHB都在无人机聚集区域(DCAs)交配,在那里雄性和处女蜂王飞行相遇,导致所需特征的变化。在这项研究中,我们通过应用两种互补的技术,探索了位于Entre Ríos省的DCA及其参考蜂房的杂交程度。首先,在参考蜂房中观察到欧洲和非洲亚种之间存在不同程度杂交的形态型,表明这种形态计量学方法在这些种群中检测杂交的灵敏度很高。其次,遗传分析显示DCAs中雄蜂的两个起源的单倍型,其中欧洲单倍型的发生率较高,而来自参考养蜂场的所有群体均表现出欧洲单倍型。总的来说,我们的结果与商业养蜂对dca基因的强烈影响是一致的。我们展示了如何使用翅膀形态测量学来监测欧洲和非洲亚种之间的杂交,这一工具可以在杂交发生的世界其他地区进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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