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Chromosome-Level Assembly of the Caenorhabditis remanei Genome Reveals Conserved Patterns of Nematode Genome Organization

机译:Caenorhabditis的染色体水平组装揭露了Nematode基因组组织的保守模式

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The nematode Caenorhabditis elegans is one of the key model systems in biology, including possessing the first fully assembled animal genome. Whereas C. elegans is a self-reproducing hermaphrodite with fairly limited within-population variation, its relative C. remanei is an outcrossing species with much more extensive genetic variation, making it an ideal parallel model system for evolutionary genetic investigations. Here, we greatly improve on previous assemblies by generating a chromosome-level assembly of the entire C. remanei genome (124.8 Mb of total size) using long-read sequencing and chromatin conformation capture data. Like other fully assembled genomes in the genus, we find that the C. remanei genome displays a high degree of synteny with C. elegans despite multiple within-chromosome rearrangements. Both genomes have high gene density in central regions of chromosomes relative to chromosome ends and the opposite pattern for the accumulation of repetitive elements. C. elegans and C. remanei also show similar patterns of interchromosome interactions, with the central regions of chromosomes appearing to interact with one another more than the distal ends. The new C. remanei genome presented here greatly augments the use of the Caenorhabditis as a platform for comparative genomics and serves as a basis for molecular population genetics within this highly diverse species.
机译:Nematode caenorhabditise elegans是生物学的关键模型系统之一,包括拥有第一个完全组装的动物基因组。虽然C.Cegans是一种自我复制的雌雄同体,其内部内部有限,其相对C. remanei是一种具有更广泛的遗传变异的突出物种,使其成为进化遗传调查的理想并行模型系统。在这里,我们通过使用长读取测序和染色质构象捕获数据产生整个C. Hemanei基因组(总尺寸的124.8MB)的染色体水平组装来大大改善先前的组件。与属属的其他完全组装的基因组一样,我们发现C.MemaNeI基因组在染色体内部重排型核心内重排,尽管染色体多重杆状虫,但胶叶酸酯基因组在C.杆状内带显示出高度的同时性。两个基因组在相对于染色体末端的染色体的中心区域中具有高基因密度和用于积聚重复元件的相反图案。 C. Elegans和C.MemaNei还显示出类似的同曲面组合物的​​相互作用模式,染色体的中央区域出现在彼此相互作用而不是远端相互作用。新的C.MemaNei基因组在这里展示了Caenorhabditis作为比较基因组学的平台的使用,并且作为这种高度多样化的物种中的分子群遗传学的基础。

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