8个新测序的石竹科植物叶绿体基因组序列及系统发育分析。

Rongpeng Liu, Zejing Mu, Xiaolang Du, Guoyue Zhong, Xiaoyun Wang
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摘要

背景:石竹科是一个由许多经济和药用物种组成的大科。然而,该科的系统发育不充分,许多物种缺乏基因组数据。目的:利用新一代测序技术(NGS)获得毛蕊草(Eremogone acacularis)叶绿体基因组。, E. brevipetala (Tsui & L.H.Zhou) Sadeghian & Zarre, E.苔藓植物(Fernald) Pusalkar & D.K.Singh, E. kansuensis (Maxim.)Dillenb。& Kadereit, Shivparvatia glanduligera (Edgew.)Pusalkar & D.K.Singh, Silene atsaensis (Marq.)Bocquet, S. caespitella Williams和S. lhassana (Williams) Majumdar。方法:采用生物信息学软件对这些cp基因组进行比较基因组和系统发育分析。结果:8个cp基因组长度为132,188 ~ 151,919 bp,包含130 ~ 132个基因。A/T在简单序列重复序列(SSRs)中占主导地位。在长末端重复序列中,正向重复和回文重复最为常见。与4种褐毛蛾相比,caespitella、S. atsaensis、S. lhassana和S. glanduligera的IR边界明显扩大。在大单拷贝(LSC)区和小单拷贝(SSC)区分别鉴定出4个和1个突变热点。非同义取代与同义取代的比值(Ka/Ks比值)表明这些cp基因组可能经历了强烈的纯化选择。在系统发育树上,Silene L.和Eremogone均为单系类群。然而,腺毒苋与苋属植物有着密切的亲缘关系。结论:这些结果为石竹科植物的物种鉴定、进化和遗传研究提供了新的证据和有用信息。本研究首次报道了石竹科植物8个新测序的cp基因组。
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Chloroplast Genome Sequences and Phylogenetic Analysis of Eight Newly Sequenced Caryophyllaceae Species.

Background: Caryophyllaceae is a big family composed of many economic and medicinal species. However, the phylogeny of the family is insufficient and genome data are lacking for many species.

Objective: Using next-generation sequencing (NGS) to acquire the chloroplast (cp) genomes of Eremogone acicularis (F.N.Williams) Ikonn., E. brevipetala (Tsui & L.H.Zhou) Sadeghian & Zarre, E. bryophylla (Fernald) Pusalkar & D.K.Singh, E. kansuensis (Maxim.) Dillenb. & Kadereit, Shivparvatia glanduligera (Edgew.) Pusalkar & D.K.Singh, Silene atsaensis (Marq.) Bocquet, S. caespitella Williams, and S. lhassana (Williams) Majumdar.

Methods: Bioinformatic software was used to conduct the comparative genome and phylogeny analysis of these cp genomes.

Results: The eight cp genomes were 132 188-151 919 bp in length, containing 130-132 genes. A/T was dominant in simple sequence repeats (SSRs). Forward repeats and palindromic repeats were the most frequent in long terminal repeats (LTRs). Compared with the four species of Eremogone Fenzl, the inverted repeat (IR) boundaries of S. caespitella, S. atsaensis, S. lhassana, and Sh. glanduligera were significantly expanded. Four and one mutational hotspots were identified in the large single copy (LSC) region and small single copy (SSC) region, respectively. The ratio of nonsynonymous substitution to synonymous substitution (Ka/Ks ratio) showed these cp genomes may have undergone strong purifying selection. In the phylogenetic trees, both Silene L. and Eremogone were monophyletic groups. However, Sh. glanduligera was closely related to Amaranthus hypochondriacus.

Conclusion: These results have provided new evidence and useful information for species identification, evolution, and genetic research on the Caryophyllaceae.

Highlights: In this study, eight newly sequenced cp genomes of Caryophyllaceae species were reported for the first time.

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