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首页> 外文期刊>BMC Genomics >Complete plastome sequencing of both living species of Circaeasteraceae (Ranunculales) reveals unusual rearrangements and the loss of the ndh gene family
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Complete plastome sequencing of both living species of Circaeasteraceae (Ranunculales) reveals unusual rearrangements and the loss of the ndh gene family

机译:对菊苣科(Ranunculales)的两个活种进行完整的质体组测序,揭示了异常的重排和ndh基因家族的丢失

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Background Among the 13 families of early-diverging eudicots, only Circaeasteraceae (Ranunculales), which consists of the two monotypic genera Circaeaster and Kingdonia, lacks a published complete plastome sequence. In addition, the phylogenetic position of Circaeasteraceae as sister to Lardizabalaceae has only been weakly or moderately supported in previous studies using smaller data sets. Moreover, previous plastome studies have documented a number of novel structural rearrangements among early-divergent eudicots. Hence it is important to sequence plastomes from Circaeasteraceae to better understand plastome evolution in early-diverging eudicots and to further investigate the phylogenetic position of Circaeasteraceae. Results Using an Illumina HiSeq 2000, complete plastomes were sequenced from both living members of Circaeasteraceae: Circaeaster agrestis and Kingdonia uniflora . Plastome structure and gene content were compared between these two plastomes, and with those of other early-diverging eudicot plastomes. Phylogenetic analysis of a 79-gene, 99-taxon data set including exemplars of all families of early-diverging eudicots was conducted to resolve the phylogenetic position of Circaeasteraceae. Both plastomes possess the typical quadripartite structure of land plant plastomes. However, a large ~49?kb inversion and a small ~3.5?kb inversion were found in the large single-copy regions of both plastomes, while Circaeaster possesses a number of other rearrangements, particularly in the Inverted Repeat . In addition, infA was found to be a pseudogene and accD was found to be absent within Circaeaster , whereas all ndh genes, except for ndhE and ndhJ , were found to be either pseudogenized ( ΨndhA , ΨndhB , ΨndhD , ΨndhH and ΨndhK ) or absent ( ndhC , ndhF , ndhI and ndhG ) in Kingdonia . Circaeasteraceae was strongly supported as sister to Lardizabalaceae in phylogenetic analyses. Conclusion The first plastome sequencing of Circaeasteraceae resulted in the discovery of several unusual rearrangements and the loss of ndh genes, and confirms the sister relationship between Circaeasteraceae and Lardizabalaceae. This research provides new insight to characterize plastome structural evolution in early-diverging eudicots and to better understand relationships within Ranunculales .
机译:背景技术在13个早期分化的双子叶植物家族中,只有由两个单型属Circaeaster和Kingdonia组成的菊苣科(Ranunculales)缺乏完整的质体序列。此外,在以前的研究中,使用较小的数据集仅对中古菊科作为Lardizabalaceae的姐妹的系统发育位置提供了弱或中度支持。此外,以前的塑性组研究已经证明了早期分歧的双子叶植物中许多新颖的结构重排。因此,重要的是对菊苣科的质体进行测序,以更好地了解早生双子叶植物中质体的进化,并进一步研究菊科的系统发育位置。结果使用Illumina HiSeq 2000,从菊苣科的两个活体中测序:完整的塑性组:菊苣Circ和单花金藻。比较了这两个质体组以及其他早期分化的双子叶质体质体的质体结构和基因含量。进行了系统发育分析,分析了79个基因,99个分类单元数据集,包括早熟双子叶植物所有家族的示例,以解决菊科的系统发育位置。两种质体均具有陆地植物质体的典型四方结构。然而,在两个质体组的大单拷贝区域中发现了一个大的〜49?kb倒置和一个小的〜3.5?kb的倒置,而Circaeaster具有许多其他重排,特别是在反向重复中。此外,发现infA是伪基因,发现Circaeaster中不存在accD,而除ndhE和ndhJ外,所有ndh基因都被伪造了(ΨndhA,ΨndhB,ΨndhD,ΨndhH和ΨndhK)或不存在(ndhC,ndhF,ndhI和ndhG)在金登尼亚。在系统发育分析中,大力支持菊科作为Lardizabalaceae的姐妹。结论菊苣科的第一个质体组测序导致发现了一些异常的重排和ndh基因的丢失,并证实了菊苣科和Lardizabalaceae之间的姐妹关系。这项研究提供了新的见解,以表征早期散发的双子叶植物的质体结构演变,并更好地了解毛an内的关系。

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