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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >A genomics approach reveals the global genetic polymorphism, structure, and functional diversity of ten accessions of the marine model diatom Phaeodactylum tricornutum
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A genomics approach reveals the global genetic polymorphism, structure, and functional diversity of ten accessions of the marine model diatom Phaeodactylum tricornutum

机译:基因组学方法揭示了海洋模型硅藻土三术术的全球遗传多态性,结构和功能多样性。

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摘要

Diatoms emerged in the Mesozoic period and presently constitute one of the main primary producers in the world's ocean and are of a major economic importance. In the current study, using whole genome sequencing of ten accessions of the model diatom Phaeodactylum tricornutum, sampled at broad geospatial and temporal scales, we draw a comprehensive landscape of the genomic diversity within the species. We describe strong genetic subdivisions of the accessions into four genetic clades (A-D) with constituent populations of each clade possessing a conserved genetic and functional makeup, likely a consequence of the limited dispersal of P. tricornutum in the open ocean. We further suggest dominance of asexual reproduction across all the populations, as implied by high linkage disequilibrium. Finally, we show limited yet compelling signatures of genetic and functional convergence inducing changes in the selection pressure on many genes and metabolic pathways. We propose these findings to have significant implications for understanding the genetic structure of diatom populations in nature and provide a framework to assess the genomic underpinnings of their ecological success and impact on aquatic ecosystems where they play a major role. Our work provides valuable resources for functional genomics and for exploiting the biotechnological potential of this model diatom species.
机译:硅藻在中生代期出现,目前构成了世界海洋主要生产者之一,具有重要的经济意义。在目前的研究中,利用全基因组测序的硅藻肌肌瘤三型术,在广泛的地理空间和时间尺度上采样,我们在物种内绘制了基因组多样性的综合景观。我们将遗传细分的遗传细分分为四种遗传片(A-D),其每个思想的组成群具有具有保守遗传和功能化妆的组成群,可能是P. Tricornutum在开阔海洋中的有限分散的结果。我们进一步推荐各种群体的无性繁殖的主导地位,如高挂接不平衡所暗示。最后,我们展示了有限但令人兴奋的遗传和功能会聚诱导在许多基因和代谢途径上的选择压力变化。我们提出了这些调查结果,以对理解自然界抗硅藻群的遗传结构并提供框架,以评估其生态成功的基因组基因,并对水生生态系统产生重大作用的影响。我们的工作为功能基因组学提供了宝贵的资源,并利用这种模型硅藻种的生物技术潜力。

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