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无脊椎动物寄生性扁平虫 Paratetraonchoides inermis(扁形动物门:单殖吸虫纲)完整线粒体基因组测序:tRNA 基因重排及其对系统发育的影响。

Sequencing of the complete mitochondrial genome of a fish-parasitic flatworm Paratetraonchoides inermis (Platyhelminthes: Monogenea): tRNA gene arrangement reshuffling and implications for phylogeny.

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, People's Republic of China.

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

出版信息

Parasit Vectors. 2017 Oct 10;10(1):462. doi: 10.1186/s13071-017-2404-1.

Abstract

BACKGROUND

Paratetraonchoides inermis (Monogenea: Tetraonchoididae) is a flatworm parasitising the gills of uranoscopid fishes. Its morphological characteristics are ambiguous, and molecular data have never been used to study its phylogenetic relationships, which makes its taxonomic classification controversial. Also, several decades of unsuccessful attempts to resolve the relationships within the Monogenea present a strong indication that morphological datasets may not be robust enough to be used to infer evolutionary histories. As the use of molecular data is currently severely limited by their scarcity, we have sequenced and characterized the complete mitochondrial (mt) genome of P. inermis. To investigate its phylogenetic position, we performed phylogenetic analyses using Bayesian inference and maximum likelihood approaches using concatenated amino acid sequences of all 12 protein-coding genes on a dataset containing all available monogenean mt genomes.

RESULTS

The circular mt genome of P. inermis (14,654 bp) contains the standard 36 genes: 22 tRNAs, two rRNAs, 12 protein-encoding genes (PCGs; Atp8 is missing) and a major non-coding region (mNCR). All genes are transcribed from the same strand. The A + T content of the whole genome (82.6%), as well as its elements, is the highest reported among the monogeneans thus far. Three tRNA-like cloverleaf structures were found in mNCR. Several results of the phylogenomic analysis are in disagreement with previously proposed relationships: instead of being closely related to the Gyrodactylidea, Tetraonchidea exhibit a phylogenetic affinity with the Dactylogyridea + Capsalidea clade; and the order Capsalidea is neither basal within the subclass Monopisthocotylea, nor groups with the Gyrodactylidea, but instead forms a sister clade with the Dactylogyridea. The mt genome of P. inermis exhibits a unique gene order, with an extensive reorganization of tRNAs. Monogenea exhibit exceptional gene order plasticity within the Neodermata.

CONCLUSIONS

This study shows that gene order within monopisthocotylid mt genomes is evolving at uneven rates, which creates misleading evolutionary signals. Furthermore, our results indicate that all previous attempts to resolve the evolutionary history of the Monogenea may have produced at least partially erroneous relationships. This further corroborates the necessity to generate more molecular data for this group of parasitic animals.

摘要

背景

无钩绦虫(单殖吸虫目:四钩科)是一种寄生在 Uranoscopidae 鱼类鳃上的扁虫。其形态特征不明确,且分子数据从未用于研究其系统发育关系,这使得其分类学分类存在争议。此外,几十年来,Monogenea 内部关系的研究一直未能成功,这强烈表明形态数据集可能不够强大,无法用于推断进化历史。由于目前分子数据的使用受到其稀缺性的严重限制,我们已经对 P. inermis 的完整线粒体(mt)基因组进行了测序和特征描述。为了研究其系统发育位置,我们使用贝叶斯推断和最大似然方法,对包含所有可用的单殖吸虫 mt 基因组的数据集进行了基于所有 12 个蛋白编码基因(缺失 Atp8)的氨基酸序列的系统发育分析。

结果

P. inermis 的圆形 mt 基因组(14654bp)包含标准的 36 个基因:22 个 tRNA、两个 rRNA、12 个蛋白编码基因(缺失 Atp8)和一个主要非编码区(mNCR)。所有基因均从同一链转录。整个基因组(82.6%)及其元件的 A+T 含量是迄今为止报道的单殖吸虫中最高的。在 mNCR 中发现了三个 tRNA 样三叶结构。系统基因组分析的几个结果与之前提出的关系不一致:Tetraonchidea 与 Gyrodactylidea 关系密切,而不是与 Dactylogyridea + Capsalidea 分支关系密切;并且,Capsalidea 目既不是亚纲 Monopisthocotylea 的基础,也不与 Gyrodactylidea 分组,而是与 Dactylogyridea 形成姐妹分支。P. inermis 的 mt 基因组表现出独特的基因排列,tRNA 广泛重排。单殖吸虫在 Neodermata 内表现出非凡的基因排列可塑性。

结论

本研究表明,单殖吸虫线粒体基因组中单系科的基因排列以不均匀的速度进化,这会产生误导性的进化信号。此外,我们的结果表明,以前解决 Monogenea 进化历史的所有尝试可能都产生了至少部分错误的关系。这进一步证实了为这群寄生动物生成更多分子数据的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a79/5633893/f2045c1ceb27/13071_2017_2404_Fig1_HTML.jpg

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