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The Tetracentron genome provides insight into the early evolution of eudicots and the formation of vessel elements

机译:四分离人体基因组可以深入了解销售早期演化和血管元素的形成

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BACKGROUND:Tetracentron sinense is an endemic and endangered deciduous tree. It belongs to the Trochodendrales, one of four early diverging lineages of eudicots known for having vesselless secondary wood. Sequencing and resequencing of the T. sinense genome will help us understand eudicot evolution, the genetic basis of tracheary element development, and the genetic diversity of this relict species.RESULTS:Here, we report a chromosome-scale assembly of the T. sinense genome. We assemble the 1.07?Gb genome sequence into 24 chromosomes and annotate 32,690 protein-coding genes. Phylogenomic analyses verify that the Trochodendrales and core eudicots are sister lineages and showed that two whole-genome duplications occurred in the Trochodendrales approximately 82 and 59 million years ago. Synteny analyses suggest that the γ event, resulting in paleohexaploidy, may have only happened in core eudicots. Interestingly, we find that vessel elements are present in T. sinense, which has two orthologs of AtVND7, the master regulator of vessel formation. T. sinense also has several key genes regulated by or regulating TsVND7.2 and their regulatory relationship resembles that in Arabidopsis thaliana. Resequencing and population genomics reveals high levels of genetic diversity of T. sinense and identifies four refugia in China.CONCLUSIONS:The T. sinense genome provides a unique reference for inferring the early evolution of eudicots and the mechanisms underlying vessel element formation. Population genomics analysis of T. sinense reveals its genetic diversity and geographic structure with implications for conservation.
机译:背景:四分离人龙,是一种地方和濒危落叶树。它属于TrochoCheDendes,申办的四个早期发散谱系中的一个,已知具有容器二级木材。 T.Inense Genome的测序和重新排序将有助于我们了解吸收性元素开发的遗传基础,以及这种遗传物种的遗传多样性。结果:在这里,我们报告了染色体级组装的T. sinense Genome 。我们将1.07?GB基因组序列组装成24个染色体,并注释32,690个蛋白质编码基因。系统核发生组学分析验证了TrochoCheDentres和核心拒名是姐妹谱系,并表明在大约82和5900万年前发生了两种全基因组重复。 Synteny分析表明,导致古ohexaproidy的γ事件可能只发生在核心销售中。有趣的是,我们发现血管元素存在于T.Inense中,其具有两个Orvnd7,血管形成的母稳压器。 T. Sinense还有几个受到TSVND7.2监管的关键基因,其监管关系类似于拟南芥。 ReseRequencing和群体基因组学揭示了T.Inense的高水平遗传多样性,并在中国鉴定了四种难民.Conclusions:T.Inense Genome提供了推断申销日早期演变的独特参考,以及血管元素形成的机制。 T. Sinense的群体基因组学分析揭示了其遗传多样性和地理结构,具有保护的影响。
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