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Genome-Wide Characterization of Genetic Variation in the Unicellular, Green Alga Chlamydomonas reinhardtii

机译:单细胞,绿藻莱茵衣藻遗传变异的全基因组表征。

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摘要

Chlamydomonas reinhardtii is a model system for studying cilia, photosynthesis, and other core features of eukaryotes, and is also an emerging source of biofuels. Despite its importance to basic and applied biological research, the level and pattern of genetic variation in this haploid green alga has yet to be characterized on a genome-wide scale. To improve understanding of C. reinhardtii's genetic variability, we generated low coverage whole genome resequencing data for nearly all of the available isolates of this species, which were sampled from a number of sites in North America over the past ∼70 years. Based on the analysis of more than 62,000 single nucleotide polymorphisms, we identified two groups of isolates that represent geographical subpopulations of the species. We also found that measurements of genetic diversity were highly variable throughout the genome, in part due to technical factors. We studied the level and pattern of linkage disequilibrium (LD), and observed one chromosome that exhibits elevated LD. Furthermore, we detected widespread evidence of recombination across the genome, which implies that outcrossing occurs in natural populations of this species. In summary, our study provides multiple insights into the sequence diversity of C. reinhardtii that will be useful to future studies of natural genetic variation in this organism.
机译:莱茵衣藻是用于研究纤毛,光合作用和真核生物其他核心特征的模型系统,也是新兴的生物燃料来源。尽管它对基础生物学和应用生物学研究具有重要意义,但这种单倍体绿藻的遗传变异水平和模式尚未在全基因组范围内表征。为了更好地了解莱茵衣藻的遗传变异性,我们生成了该物种几乎所有可用分离株的低覆盖度全基因组重测序数据,这些数据是在过去70多年来从北美多个地点取样的。基于对超过62,000个单核苷酸多态性的分析,我们确定了代表该物种地理亚群的两组分离株。我们还发现,遗传多样性的测量在整个基因组中变化很大,部分原因是技术因素。我们研究了连锁不平衡(LD)的水平和模式,并观察到一条显示LD升高的染色体。此外,我们发现了在基因组中重组的广泛证据,这表明该物种的自然种群发生了异源杂交。总而言之,我们的研究为莱茵衣藻的序列多样性提供了多种见解,这将有助于对该生物自然遗传变异的进一步研究。

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