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An Exploration into Fern Genome Space

机译:蕨基因组空间探索

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摘要

Ferns are one of the few remaining major clades of land plants for which a complete genome sequence is lacking. Knowledge of genome space in ferns will enable broad-scale comparative analyses of land plant genes and genomes, provide insights into genome evolution across green plants, and shed light on genetic and genomic features that characterize ferns, such as their high chromosome numbers and large genome sizes. As part of an initial exploration into fern genome space, we used a whole genome shotgun sequencing approach to obtain low-density coverage (∼0.4X to 2X) for six fern species from the Polypodiales (Ceratopteris, Pteridium, Polypodium, Cystopteris), Cyatheales (Plagiogyria), and Gleicheniales (Dipteris). We explore these data to characterize the proportion of the nuclear genome represented by repetitive sequences (including DNA transposons, retrotransposons, ribosomal DNA, and simple repeats) and protein-coding genes, and to extract chloroplast and mitochondrial genome sequences. Such initial sweeps of fern genomes can provide information useful for selecting a promising candidate fern species for whole genome sequencing. We also describe variation of genomic traits across our sample and highlight some differences and similarities in repeat structure between ferns and seed plants.
机译:蕨类植物是少数缺少完整基因组序列的陆地植物主要进化枝之一。蕨类植物中基因组空间的知识将有助于对陆地植物基因和基因组进行大规模的比较分析,深入了解绿色植物中的基因组进化,并阐明蕨类植物的遗传和基因组特征,例如其高染色体数和大基因组大小。作为对蕨类基因组空间的初步探索的一部分,我们使用了全基因组shot弹枪测序方法,从多足纲动物(Ceratopteris,Pteridium,Polypodium,Cystopteris),Cyatheales中获得了六种蕨类植物的低密度覆盖(约0.4X至2X)。 (Plagiogyria)和Gleicheniales(Dipteris)。我们探索这些数据来表征重复序列(包括DNA转座子,逆转座子,核糖体DNA和简单重复序列)和蛋白质编码基因所代表的核基因组的比例,并提取叶绿体和线粒体基因组序列。蕨类基因组的此类初始扫描可提供有用信息,可用于选择有前途的候选蕨类物种进行全基因组测序。我们还描述了整个样本中基因组性状的变化,并强调了蕨类植物和种子植物之间重复结构的一些差异和相似之处。

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