首页> 外文期刊>Journal of Apicultural Research >Genetic integrity of the Dark European honey bee (Apis mellifera mellifera) from protected populations: a genome-wide assessment using SNPs and mtDNA sequence data
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Genetic integrity of the Dark European honey bee (Apis mellifera mellifera) from protected populations: a genome-wide assessment using SNPs and mtDNA sequence data

机译:来自受保护种群的欧洲黑蜂(Apis mellifera mellifera)的遗传完整性:使用SNP和mtDNA序列数据的全基因组评估

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The recognition that the Dark European honey bee, Apis mellifera mellifera, is increasingly threatened in its native range has led to the establishment of conservation programmes and protected areas throughout western Europe. Previous molecular surveys showed that, despite management strategies to preserve the genetic integrity of A. m. mellifera, protected populations had a measurable component of their gene pool derived from commercial C-lineage honey bees. Here we used both sequence data from the tRNA(leu)-COX2 intergenic mtDNA region and a genome-wide scan, with over 1183 single nucleotide polymorphisms (SNPs), to assess genetic diversity and introgression levels in several protected populations of A. m. mellifera, which were then compared with samples collected from unprotected populations. MtDNA analysis of the protected populations revealed a single colony bearing a foreign haplotype, whereas SNPs showed varying levels of introgression ranging from virtually zero in Norway to about 14% in Denmark. Introgression overall was higher in unprotected (30%) than in protected populations (8%), and is reflected in larger SNP diversity levels of the former, although opposite diversity levels were observed for nntDNA. These results suggest that, despite controlled breeding, some protected populations still require adjustments to the management strategies to further purge foreign alleles, which can be identified by SNPs.
机译:认识到欧洲黑暗蜜蜂Apis mellifera mellifera在其本地范围内受到的威胁越来越大,这导致在整个西欧建立保护计划和保护区。先前的分子调查表明,尽管采取了管理策略来保持A. m。的遗传完整性。蜜蜂,受保护群体的基因库中有可测量的成分,这些成分来自商业C谱系蜜蜂。在这里,我们既使用了来自tRNA(leu)-COX2基因间mtDNA区域的序列数据,又使用了具有1183个以上的单核苷酸多态性(SNP)的全基因组扫描来评估A.m.几个受保护种群的遗传多样性和基因渗入水平。然后将其与从未受保护的种群中收集的样品进行比较。对受保护种群的MtDNA分析表明,单个菌落带有外来单倍型,而SNPs的渗入水平却不同,从挪威的几乎为零到丹麦的约14%。尽管未观察到nntDNA的多样性相反,但未受保护的群体(30%)的基因渗入高于受保护的群体(8%),并反映在前者更大的SNP多样性水平上。这些结果表明,尽管育种受到控制,但某些受保护种群仍需要调整管理策略,以进一步清除外源等位基因,这可以由SNP识别。

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