Division of Animal Sciences, Department of Agricultural and Food Sciences, University of Bologna, Viale Giuseppe Fanin 46, 40127, Bologna, Italy.
Sci Rep. 2022 Nov 15;12(1):19541. doi: 10.1038/s41598-022-24101-z.
Awareness has been raised over the last years on the genetic integrity of autochthonous honey bee subspecies. Genomic tools available in Apis mellifera can make it possible to measure this information by targeting individual honey bee DNA. Honey contains DNA traces from all organisms that contributed or were involved in its production steps, including the honey bees of the colony. In this study, we designed and tested a genotyping by sequencing (GBS) assay to analyse single nucleotide polymorphisms (SNPs) of A. mellifera nuclear genome using environmental DNA extracted from honey. A total of 121 SNPs (97 SNPs informative for honey bee subspecies identification and 24 SNPs associated with relevant traits of the colonies) were used in the assay to genotype honey DNA, which derives from thousands of honey bees. Results were integrated with information derived from previous studies and whole genome resequencing datasets. This GBS method is highly reliable in estimating honey bee SNP allele frequencies of the whole colony from which the honey derived. This assay can be used to identify the honey bee subspecies of the colony that produced the honey and, in turn, to authenticate the entomological origin of the honey.
近年来,人们越来越关注土生土长的蜜蜂亚种的遗传完整性。在 Apis mellifera 中可用的基因组工具可以通过针对单个蜜蜂 DNA 来测量这些信息。蜂蜜中含有来自所有参与或涉及其生产步骤的生物体的 DNA 痕迹,包括蜂群中的蜜蜂。在这项研究中,我们设计并测试了一种基于测序的基因分型(GBS)分析方法,使用从蜂蜜中提取的环境 DNA 分析 A. mellifera 核基因组的单核苷酸多态性 (SNP)。该测定法共使用了 121 个 SNP(97 个 SNP 可用于鉴定蜜蜂亚种,24 个 SNP 与蜂群的相关特征有关)来对蜂蜜 DNA 进行基因分型,这些 DNA 源自数千只蜜蜂。结果与之前研究和全基因组重测序数据集的信息进行了整合。该 GBS 方法非常可靠,可以从产生蜂蜜的整个蜂群中估算蜜蜂 SNP 等位基因频率。该测定法可用于识别产生蜂蜜的蜂群的蜜蜂亚种,并可据此鉴定蜂蜜的昆虫学起源。