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两种盘绕虫(扁形动物:单殖吸虫目)的线粒体基因组揭示了盘绕虫目的并系发生和广泛的 tRNA 基因重排。

Mitochondrial genomes of two diplectanids (Platyhelminthes: Monogenea) expose paraphyly of the order Dactylogyridea and extensive tRNA gene rearrangements.

机构信息

Key Laboratory of Aquaculture Disease Control, Ministry of Agriculture, and State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, People's Republic of China.

University of Chinese Academy of Sciences, Beijing, People's Republic of China.

出版信息

Parasit Vectors. 2018 Nov 20;11(1):601. doi: 10.1186/s13071-018-3144-6.

Abstract

BACKGROUND

Recent mitochondrial phylogenomics studies have reported a sister-group relationship of the orders Capsalidea and Dactylogyridea, which is inconsistent with previous morphology- and molecular-based phylogenies. As Dactylogyridea mitochondrial genomes (mitogenomes) are currently represented by only one family, to improve the phylogenetic resolution, we sequenced and characterized two dactylogyridean parasites, Lamellodiscus spari and Lepidotrema longipenis, belonging to a non-represented family Diplectanidae.

RESULTS

The L. longipenis mitogenome (15,433 bp) contains the standard 36 flatworm mitochondrial genes (atp8 is absent), whereas we failed to detect trnS1, trnC and trnG in L. spari (14,614 bp). Both mitogenomes exhibit unique gene orders (among the Monogenea), with a number of tRNA rearrangements. Both long non-coding regions contain a number of different (partially overlapping) repeat sequences. Intriguingly, these include putative tRNA pseudogenes in a tandem array (17 trnV pseudogenes in L. longipenis, 13 trnY pseudogenes in L. spari). Combined nucleotide diversity, non-synonymous/synonymous substitutions ratio and average sequence identity analyses consistently showed that nad2, nad5 and nad4 were the most variable PCGs, whereas cox1, cox2 and cytb were the most conserved. Phylogenomic analysis showed that the newly sequenced species of the family Diplectanidae formed a sister-group with the Dactylogyridae + Capsalidae clade. Thus Dactylogyridea (represented by the Diplectanidae and Dactylogyridae) was rendered paraphyletic (with high statistical support) by the nested Capsalidea (represented by the Capsalidae) clade.

CONCLUSIONS

Our results show that nad2, nad5 and nad4 (fast-evolving) would be better candidates than cox1 (slow-evolving) for species identification and population genetics studies in the Diplectanidae. The unique gene order pattern further suggests discontinuous evolution of mitogenomic gene order arrangement in the Class Monogenea. This first report of paraphyly of the Dactylogyridea highlights the need to generate more molecular data for monogenean parasites, in order to be able to clarify their relationships using large datasets, as single-gene markers appear to provide a phylogenetic resolution which is too low for the task.

摘要

背景

最近的线粒体系统发育基因组学研究报告称,Capsalidea 和 Dactylogyridea 目是姐妹群关系,这与之前基于形态和分子的系统发育不一致。由于目前仅代表一个家族的 Dactylogyridea 线粒体基因组(mitogenome),为了提高系统发育分辨率,我们对属于未代表的 Diplectanidae 家族的两种指环虫寄生虫 Lamellodiscus spari 和 Lepidotrema longipenis 进行了测序和特征描述。

结果

L. longipenis mitogenome(15433bp)包含标准的 36 个扁形动物线粒体基因(缺失 atp8),而我们未能在 L. spari 中检测到 trnS1、trnC 和 trnG(14614bp)。两个线粒体基因组都表现出独特的基因排列(在单殖吸虫纲中),并伴随着一些 tRNA 的重排。两个长非编码区都包含许多不同的(部分重叠的)重复序列。有趣的是,这些重复序列包括串联排列的假定 tRNA 假基因(L. longipenis 中有 17 个 trnV 假基因,L. spari 中有 13 个 trnY 假基因)。核苷酸多样性、非同义/同义取代比和平均序列同一性分析一致表明,nad2、nad5 和 nad4 是最具变异性的 PCGs,而 cox1、cox2 和 cytb 是最保守的。系统基因组分析表明,新测序的 Diplectanidae 科物种与 Dactylogyridae+Capsalidae 分支形成姐妹群。因此,嵌套的 Capsalidea(由 Capsalidae 代表)分支使 Dactylogyridea(由 Diplectanidae 和 Dactylogyridae 代表)成为并系群(具有高度统计支持)。

结论

我们的研究结果表明,nad2、nad5 和 nad4(快速进化)比 cox1(缓慢进化)更适合用于 Diplectanidae 科的物种鉴定和种群遗传学研究。独特的基因排列模式进一步表明,线粒体基因组基因排列在单殖吸虫纲中是不连续进化的。这是首次报道 Dactylogyridea 的并系性,突出表明需要为单殖吸虫寄生虫生成更多的分子数据,以便能够使用大型数据集来阐明它们的关系,因为单个基因标记似乎提供的系统发育分辨率对于该任务太低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27f/6245931/7585f30f1b3b/13071_2018_3144_Fig1_HTML.jpg

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