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在进化背景下定义蜜蜂亚种需要有策略地进行保护。

Defining honeybee subspecies in an evolutionary context warrants strategized conservation.

机构信息

Department of Entomology, College of Plant Protection, China Agricultural University, Beijing 100193, China.

Key Laboratory for Bee Genetics and Breeding, Jilin Provincial Institute of Apicultural Sciences, Jilin, Jilin 132108, China.

出版信息

Zool Res. 2023 May 18;44(3):483-493. doi: 10.24272/j.issn.2095-8137.2022.414.

Abstract

Despite the urgent need for conservation consideration, strategic action plans for the preservation of the Asian honeybee, Fabricius, 1793, remain lacking. Both the convergent and divergent adaptations of this widespread insect have led to confusing phenotypical traits and inconsistent infraspecific taxonomy. Unclear subspecies boundaries pose a significant challenge to honeybee conservation efforts, as it is difficult to effectively prioritize conservation targets without a clear understanding of subspecies identities. Here, we investigated genome variations in 362 worker bees representing almost all populations of mainland to understand how evolution has shaped its population structure. Whole-genome single nucleotide polymorphisms (SNPs) based on nuclear sequences revealed eight putative subspecies, with all seven peripheral subspecies exhibiting mutually exclusive monophyly and distinct genetic divergence from the widespread central subspecies. Our results demonstrated that most classic morphological traits, including body size, were related to the climatic variables of the local habitats and did not reflect the true evolutionary history of the organism. Thus, such morphological traits were not suitable for subspecific delineation. Conversely, wing vein characters showed relative independence to the environment and supported the subspecies boundaries inferred from nuclear genomes. Mitochondrial phylogeny further indicated that the present subspecies structure was a result of multiple waves of population divergence from a common ancestor. Based on our findings, we propose that criteria for subspecies delineation should be based on evolutionary independence, trait distinction, and geographic isolation. We formally defined and described eight subspecies of mainland . Elucidation of the evolutionary history and subspecies boundaries enables a customized conservation strategy for both widespread and endemic honeybee conservation units, guiding colony introduction and breeding.

摘要

尽管迫切需要考虑保护问题,但仍然缺乏针对亚洲蜜蜂(Fabricius,1793)的战略行动计划。这种广泛分布的昆虫的趋同和发散适应导致了混淆的表型特征和不一致的亚种分类。亚种边界不明确给蜜蜂保护工作带来了重大挑战,因为如果不明确亚种身份,就很难有效地确定保护目标的优先级。在这里,我们研究了代表大陆 几乎所有种群的 362 只工蜂的基因组变异,以了解进化如何塑造其种群结构。基于核序列的全基因组单核苷酸多态性(SNP)揭示了八个假定的亚种,其中所有七个外围亚种都表现出相互排斥的单系性和与广泛分布的中心亚种的明显遗传分化。我们的研究结果表明,大多数经典形态特征,包括体型,都与当地栖息地的气候变量有关,而不能反映生物体的真实进化历史。因此,这种形态特征不适合亚种划分。相反,翅脉特征对环境具有相对独立性,支持从核基因组推断的亚种边界。线粒体系统发育进一步表明,目前的亚种结构是由来自共同祖先的多次种群分歧形成的。基于我们的发现,我们提出亚种划分的标准应基于进化独立性、特征区别和地理隔离。我们正式定义和描述了大陆 的八个亚种。阐明进化历史和亚种边界可以为广泛分布和地方性蜜蜂保护单位制定定制化的保护策略,指导群体引入和繁殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85f7/10236295/b0fff136c421/zr-44-3-483-1.jpg

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