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The chromosome-scale assembly of the willow genome provides insight into Salicaceae genome evolution

机译:柳树基因组的染色体规模组装提供了对Salicaceae基因组进化的洞察力

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Salix suchowensis is an early-flowering shrub willow that provides a desirable system for studies on the basic biology of woody plants. The current reference genome of S. suchowensis was assembled with 454 sequencing reads. Here, we report a chromosome-scale assembly of S. suchowensis generated by combining PacBio sequencing with Hi-C technologies. The obtained genome assemblies covered a total length of 356?Mb. The contig N50 of these assemblies was 263,908?bp, which was ~65-fold higher than that reported previously. The contiguity and completeness of the genome were significantly improved. By applying Hi-C data, 339.67?Mb (95.29%) of the assembled sequences were allocated to the 19 chromosomes of haploid willow. With the chromosome-scale assembly, we revealed a series of major chromosomal fissions and fusions that explain the genome divergence between the sister genera of Salix and Populus. The more complete and accurate willow reference genome obtained in this study provides a fundamental resource for studying many genetic and genomic characteristics of woody plants.
机译:Salix SuchoWensis是一种早期开花的灌木柳,为木质植物的基本生物学提供了一种理想的系统。用454个测序读数组装了S.SupoWensis的当前参考基因组。在这里,我们通过将PACBIO测序与Hi-C技术组合来报告S. Supowensis的染色体级组件。所获得的基因组组件覆盖总长度为356Ωmb。这些组件的CONTIG N50为263,908磅,比先前报道的高〜65倍。基因组的邻缘和完整性显着改善。通过将Hi-C数据应用,将339.67·MB(95.29%)分配给单倍体杨氏的19个染色体。通过染色体级组件,我们揭示了一系列主要的染色体裂口和融合,解释了Salix和Populus的姐妹属之间的基因组差异。本研究中获得的更完整和准确的柳参考基因组提供了研究木本植物许多遗传和基因组特征的基本资源。

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