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Comparative plastome analysis of Blumea with implications for genome evolution and phylogeny of Asteroideae

机译:Blumea的比较塑性分析具有对令人生目的基因组演化和系统发育的影响

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摘要

The genus Blumea (Asteroideae, Asteraceae) comprises about 100 species, including herbs, shrubs, and small trees. Previous studies have been unable to resolve taxonomic issues and the phylogeny of the genus Blumea due to the low polymorphism of molecular markers. Therefore, suitable polymorphic regions need to be identified. Here, we de novo assembled plastomes of the three Blumea species B. oxyodonta, B. tenella, and B. balsamifera and compared them with 26 other species of Asteroideae after correction of annotations. These species have quadripartite plastomes with similar gene content, genome organization, and inverted repeat contraction and expansion comprising 113 genes, including 80 protein‐coding, 29 transfer RNA, and 4 ribosomal RNA genes. The comparative analysis of codon usage, amino acid frequency, microsatellite repeats, oligonucleotide repeats, and transition and transversion substitutions has revealed high resemblance among the newly assembled species of Blumea. We identified 10 highly polymorphic regions with nucleotide diversity above 0.02, including rps16‐trnQ, ycf1, ndhF‐rpl32, petN‐psbM, and rpl32‐trnL, and they may be suitable for the development of robust, authentic, and cost‐effective markers for barcoding and inference of the phylogeny of the genus Blumea. Among these highly polymorphic regions, five regions also co‐occurred with oligonucleotide repeats and support use of repeats as a proxy for the identification of polymorphic loci. The phylogenetic analysis revealed a close relationship between Blumea and Pluchea within the tribe Inuleae. At tribe level, our phylogeny supports a sister relationship between Astereae and Anthemideae rooted as Gnaphalieae, Calenduleae, and Senecioneae. These results are contradictory to recent studies which reported a sister relationship between “Senecioneae and Anthemideae” and “Astereae and Gnaphalieae” or a sister relationship between Astereae and Gnaphalieae rooted as Calenduleae, Anthemideae, and then Senecioneae using nuclear genome sequences. The conflicting phylogenetic signals observed at the tribal level between plastidt and nuclear genome data require further investigation.
机译:Blumea(令人肠炎,奥斯特科伊)包含约100种,包括草药,灌木和小树。由于分子标记物的低多态性,以前的研究无法解决基因的分类问题和博卢姆的系统发育。因此,需要鉴定合适的多晶型区域。在这里,我们德诺·奥克罗迪塔,B.Tenella和B.Balsamifera的三种组装塑料,B. Tenella和B.Balsamifera,并在校正注释后将它们与26种Serteroideae进行比较。这些物种具有具有相似基因含量,基因组组织和倒置的重复收缩和膨胀的四藻塑料,包括113基因,包括80个蛋白质编码,29转移RNA和4个核糖体RNA基因。密码子使用,氨基酸频率,微卫星重复,寡核苷酸重复和转变和横转化取代的对比分析表明,新组装的Blumea种类中揭示了高相似之处。我们确定了10个高度多态性区域与核苷酸多样性以上0.02,包括rps16-trnQ,ycf1,ndhF-RPL32,PETN-PSBM,和RPL32-trnL的并且它们可以是适合的坚固,可信的,并且成本效益的标志物的开发对于Blumea属的条形码和推理。在这些高度多态性区域中,五个区域也与寡核苷酸重复和使用重复作为鉴定多晶型基因座的代理进行共同。系统发育分析揭示了部落内部血管发育与普鲁弗与普鲁西亚的密切关系。在部落层面,我们的系统发育支持Astereae和Anthemideae之间的姐妹关系,植根于牙龈,金发藻和脑膜。这些结果是矛盾的,以最近的研究报告,其利用核基因组序列“千里光春黄菊和”和“紫菀族和Gnaphalieae”或植根作为Calenduleae,紫菀族春黄菊和Gnaphalieae之间的姐妹关系,然后千里光之间的关系姐姐。在塑性体和核基因组数据之间的部落水平观察到的突出的系统发育信号需要进一步调查。

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