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Plant epigenomics—deciphering the mechanisms of epigenetic inheritance and plasticity in plants

机译:植物表观基因组学—解读植物的表观遗传和可塑性机制

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Background: The history of African indigenous cattle and their adaptation to environmental and human selection pressure is at the root of their remarkable diversity. Characterization of this diversity is an essential step towards understanding the genomic basis of productivity and adaptation to survival under African farming systems. Results: We analyze patterns of African cattle genetic variation by sequencing 48 genomes from five indigenous populations and comparing them to the genomes of 53 commercial taurine breeds. We find the highest genetic diversity among African zebu and sanga cattle. Our search for genomic regions under selection reveals signatures of selection for environmental adaptive traits. In particular, we identify signatures of selection including genes and/ or pathways controlling anemia and feeding behavior in the trypanotolerant N’Dama, coat color and horn development in Ankole, and heat tolerance and tick resistance across African cattle especially in zebu breeds. Conclusions: Our findings unravel at the genome-wide level, the unique adaptive diversity of African cattle while emphasizing the opportunities for sustainable improvement of livestock productivity on the continent.
机译:背景:非洲土著牛的历史及其对环境和人类选择压力的适应是其非凡多样性的根源。对这种多样性进行表征是了解非洲农业体系下生产力和适应生存的基因基础的重要步骤。结果:我们通过对来自五个土著种群的48个基因组进行测序,并将其与53个商业牛磺酸品种的基因组进行比较,来分析非洲牛遗传变异的模式。我们发现非洲封牛和桑加牛的遗传多样性最高。我们对选择中的基因组区域的搜索揭示了环境适应性状选择的特征。特别是,我们确定了选择的特征,包括控制锥虫耐性N'Dama中的贫血和进食行为的基因和/或途径,在Ankole中的皮毛颜色和角形成,以及整个非洲牛(特别是在zebu品种中)的耐热性和抗tick性。结论:我们的发现在全基因组水平上得到了揭示,这是非洲牛的独特适应性多样性,同时强调了可持续改善非洲大陆牲畜生产力的机会。

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