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De Novo Genome Assembly of Populus simonii Further Supports That Populus simonii and Populus trichocarpa Belong to Different Sections

机译:小叶杨的新基因组大会进一步支持小叶杨和毛果杨属于不同部分

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摘要

is an important tree in the genus , widely distributed in the Northern Hemisphere and having a long cultivation history. Although this species has ecologically and economically important values, its genome sequence is currently not available, hindering the development of new varieties with wider adaptive and commercial traits. Here, we report a chromosome-level genome assembly of using PacBio long-read sequencing data aided by Illumina paired-end reads and related genetic linkage maps. The assembly is 441.38 Mb in length and contain 686 contigs with a contig N50 of 1.94 Mb. With the linkage maps, 336 contigs were successfully anchored into 19 pseudochromosomes, accounting for 90.2% of the assembled genome size. Genomic integrity assessment showed that 1,347 (97.9%) of the 1,375 genes conserved among all embryophytes can be found in the assembly. Genomic repeat analysis revealed that 41.47% of the genome is composed of repetitive elements, of which 40.17% contained interspersed repeats. A total of 45,459 genes were predicted from the genome sequence and 39,833 (87.6%) of the genes were annotated with one or more related functions. Phylogenetic analysis indicated that and should be placed in different sections, contrary to the previous classification according to morphology. The genome assembly not only provides an important genetic resource for the comparative and functional genomics of different species, but also furnishes one of the closest reference sequences for identifying genomic variants in an F hybrid population derived by crossing with other species.
机译:是该属的重要树,广泛分布于北半球,具有悠久的栽培历史。尽管该物种具有重要的生态和经济价值,但目前尚无其基因组序列,从而阻碍了具有更广泛的适应性和商业性状的新品种的开发。在这里,我们报告了使用Illumina的双末端读段和相关遗传连锁图辅助的PacBio长读测序数据的染色体级基因组装配。组件的长度为441.38 Mb,包含686个重叠群,重叠群N50为1.94 Mb。通过连锁图谱,将336个重叠群成功地锚定在19个假染色体中,占组装基因组大小的90.2%。基因组完整性评估表明,在所有胚植物中保守的1,375个基因中有1,347个(97.9%)可以在装配中找到。基因组重复分析表明,基因组的41.47%由重复元件组成,其中40.17%包含散布的重复。从基因组序列中预测总共有45,459个基因,其中39,833个(87.6%)基因带有一个或多个相关功能。系统发育分析表明,应将和放在不同的区域中,这与以前根据形态进行的分类相反。基因组装配不仅为不同物种的比较基因组和功能基因组学提供了重要的遗传资源,而且提供了最接近的参考序列之一,用于鉴定通过与其他物种杂交而获得的F杂种群体的基因组变异。

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