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Genome Sequencing of Pleurozium schreberi: The Assembled and Annotated Draft Genome of a Pleurocarpous Feather Moss

机译:侧耳侧耳的基因组测序:侧耳毛青苔的组装和注释基因组草图。

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摘要

The pleurocarpous feather moss Pleurozium schreberi is a ubiquitous moss species which plays a fundamental role in many terrestrial ecosystems, for instance within the boreal forest, the Earth’s largest terrestrial biome, this species plays a significant role in driving ecosystem nitrogen and carbon inputs and fluxes. By hosting dinitrogen (N2)-fixing cyanobacteria, the moss-cyanobacteria symbiosis constitutes the main nitrogen input into the ecosystem and by the high productivity and the low decomposability of the moss litter, P. schreberi contributes significantly to build-up soil organic matter, and therefore long-term C sequestration. Knowledge on P. schreberi genome will facilitate the development of ‘omics’ and system’s biology approaches to gain a more complete understanding of the physiology and ecological adaptation of the moss and the mechanisms underpinning the establishment of the symbiosis. Here we present the de novo assembly and annotation of P. schreberi genome that will help investigating these questions. The sequencing was performed using the HiSeq X platform with Illumina paired-end and mate-pair libraries prepared with CTAB extracted DNA. In total, the assembled genome was approximately 318 Mb, while repetitive elements account for 28.42% of the genome and 15,992 protein-coding genes were predicted from the genome, of which 84.23% have been functionally annotated. We anticipate that the genomic data generated will constitute a significant resource to study ecological and evolutionary genomics of P. schreberi, and will be valuable for evo-devo investigations as well as our understanding of the evolution of land plants by providing the genome of a pleurocarpous moss.
机译:胸膜羽毛苔藓Pleurozium schreberi是一种普遍存在的苔藓物种,在许多陆地生态系统中起着根本性的作用,例如在地球最大的陆地生物群落北方森林中,该物种在推动生态系统氮,碳输入和通量方面起着重要作用。苔藓-蓝细菌共生通过容纳固定氮(N2)的蓝细菌,构成了向生态系统输入的主要氮,并且由于苔藓凋落物的高生产力和低分解性,P。schreberi大大促进了土壤有机质的积累,因此,长期的C隔离。 schreberi基因组的知识将促进“组学”和系统生物学方法的发展,从而更全面地了解苔藓的生理学和生态适应性以及共生机制的建立。在这里,我们介绍从头大会和schreberi基因组的注释,这将有助于调查这些问题。使用HiSeq X平台进行测序,该平台具有用CTAB提取的DNA制备的Illumina配对末端和伴侣配对文库。总的来说,组装后的基因组约为318 Mb,而重复元件占基因组的28.42%,并且从基因组中预测到15,992个蛋白质编码基因,其中84.23%已被功能注释。我们预期所产生的基因组数据将构成研究P. schreberi的生态和进化基因组学的重要资源,并且将通过提供胸果皮的基因组,为进化研究和我们对陆地植物的进化的理解提供宝贵的信息。苔藓。

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