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Population genomics and morphological features underlying the adaptive evolution of the eastern honey bee (Apis cerana)

机译:东部蜜蜂(API CERANA)的自适应演化依据群体基因组学与形态特征

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BACKGROUND:The adaptation of organisms to changing environments is self-evident, with the adaptive evolution of organisms to environmental changes being a fundamental problem in evolutionary biology. Bees can pollinate in various environments and climates and play important roles in maintaining the ecological balance of the earth.RESULTS:We performed an analysis of 462 Apis cerana (A. cerana) specimens from 31 populations in 11 regions and obtained 39 representative morphological features. We selected 8 A. cerana samples from each population and performed 2b-RAD simplified genome sequencing. A total of 11,506 high-quality single nucleotide polymorphism (SNP) loci were obtained. For these SNPs, the minor allele frequency (MAF) was ?1%, the average number of unique labels for each sample was 49,055, and the average depth was 72.61x. The ratios of the unique labels of all samples were 64.27-86.33%.CONCLUSIONS:Using 39 morphological characteristics as the data set, we proposed a method for the rapid classification of A. cerana. Using genomics to assess population structure and genetic diversity, we found that A. cerana has a large genetic difference at the ecotype level. A comparison of A. cerana in North China revealed that some physical obstacles, especially the overurbanization of the plains, have isolated the populations of this species. We identified several migration events in North China and Central China. By comparing the differences in the environmental changes in different regions, we found that A. cerana has strong potential for climate change and provides a theoretical basis for investigating and protecting A. cerana.
机译:背景:生物体对不断变化的环境的适应是不言而喻的,有机体的适应性进化对环境变化是进化生物学的根本问题。蜜蜂可以在各种环境中授粉和气候,并在维持地球的生态平衡方面发挥重要作用。结果:我们在11个地区的31个种群中对462个API Cerana(A.Cerana)标本进行了分析,并获得了39个代表性形态特征。我们选择了来自每种群体的8 A.Cerana样品并进行了2B-RAD简化基因组测序。获得总共11,506个高质量的单核苷酸多态性(SNP)基因座。对于这些SNP,次要等位基因频率(MAF)>α1%,每个样品的平均独特标记数为49,055,平均深度为72.61倍。所有样品的独特标记的比率为64.27-86.33%。结论:使用39个形态特征作为数据集,我们提出了一种快速分类A. Cerana的方法。利用基因组学评估人口结构和遗传多样性,我们发现A.Cerana在生态型水平上具有很大的遗传差异。北方的A. Cerana的比较揭示了一些物理障碍,尤其是平原溢出,孤立了该物种的群体。我们确定了中国华北和中国中部的若干移民活动。通过比较不同地区环境变化的差异,我们发现A.Cerana对气候变化具有很强的潜力,为调查和保护A. Cerana提供了理论依据。

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