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两个 Hypnales(苔藓)的染色体水平基因组组装揭示了高度的属间同线性。

Chromosome-Level Genome Assemblies of Two Hypnales (Mosses) Reveal High Intergeneric Synteny.

机构信息

College of Life Sciences, University of Chinese Academy of Sciences, Beijing, China.

Key Laboratory of Southern Subtropical Plant Diversity, Fairy Lake Botanical Garden, Shenzhen & Chinese Academy of Sciences, Shenzhen, Guangdong, China.

出版信息

Genome Biol Evol. 2022 Feb 4;14(2). doi: 10.1093/gbe/evac020.

Abstract

Mosses compose one of the three lineages of bryophytes. Today, about 13,000 species of mosses are recognized from across the globe, and at least one-third of this diversity composes the Hypnales, a lineage characterized by an early rapid radiation. We sequenced and de novo assembled the genomes of two hypnalean mosses, namely Entodon seductrix and Hypnum curvifolium, based on the 10x genomics and Hi-C data. The genome assemblies of E. seductrix and H. curvifolium comprise 348.4 and 262.0 Mb, respectively, estimated by k-mer analyses to represent 93.3% and 97.2% of their total genome size. Both genomes were assembled at the chromosome level, with scaffold N50 of 30.0 and 20.7 Mb, respectively. The annotated genome of E. seductrix comprises 25,801 protein-coding genes and that of H. curvifolium 29,077, estimated to represent 96.8% and 97.2%, respectively, of the total gene spaces based on BUSCO (Benchmarking Universal Single-Copy Ortholog) assessment. For both genomes, most contigs were anchored to the largest 11 pseudomolecules, corresponding to the 11 chromosomes of the two species, and each with a putative sex-related chromosome characterized by low gene density. The chromosomes of E. seductrix and H. curvifolium are highly syntenic, suggests limited architectural shifts occurred following the rapid radiation of the Hypnales. We compared their genomic features to the model moss Physcomitrium patens. The hypnalean moss genomes lack signatures of recent whole-genome duplication. The presented high-quality moss genomes provide new resources for comparative genomics to potentially unveil the genomic evolution of derived moss lineages.

摘要

藓类植物是苔藓植物的三个谱系之一。如今,全球约有 13000 种藓类植物被识别出来,其中至少有三分之一的物种组成了 Hypnales,这一谱系以早期快速辐射为特征。我们基于 10x 基因组学和 Hi-C 数据,对两种 Hypnales 藓类植物,即 Entodon seductrix 和 Hypnum curvifolium 进行了测序和从头组装。E. seductrix 和 H. curvifolium 的基因组组装分别包含 348.4 和 262.0 Mb,通过 k-mer 分析估计分别代表其总基因组大小的 93.3%和 97.2%。这两个基因组都在染色体水平上组装,支架 N50 分别为 30.0 和 20.7 Mb。E. seductrix 的注释基因组包含 25801 个蛋白质编码基因,H. curvifolium 包含 29077 个,根据 BUSCO(基准通用单拷贝直系同源物)评估,这两个基因组分别估计代表总基因空间的 96.8%和 97.2%。对于这两个基因组,大多数 Contigs 都锚定在最大的 11 个假染色体上,与这两个物种的 11 条染色体相对应,每条染色体都有一个推测与性别相关的染色体,其特点是基因密度低。E. seductrix 和 H. curvifolium 的染色体高度同线性,表明在 Hypnales 的快速辐射之后,发生的结构变化有限。我们将它们的基因组特征与模式藓类植物 Physcomitrium patens 进行了比较。Hypnales 藓类植物的基因组缺乏最近全基因组复制的特征。所提供的高质量藓类植物基因组为比较基因组学提供了新的资源,可能揭示衍生藓类植物谱系的基因组进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73f4/8859630/493f287f3374/evac020f1.jpg

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