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非洲单殖吸虫(扁形动物门:Gyrodactylidae 和 Dactylogyridae)线粒体系统发育的第一代下一代测序方法。

The first next-generation sequencing approach to the mitochondrial phylogeny of African monogenean parasites (Platyhelminthes: Gyrodactylidae and Dactylogyridae).

机构信息

Department of Botany and Zoology, Faculty of Science, Masaryk University, Kotlářská 2, CZ-611 37, Brno, Czech Republic.

Zoology Unit, Finnish Museum of Natural History, University of Helsinki, P.O.Box 17, FI-00014, Helsinki, Finland.

出版信息

BMC Genomics. 2018 Jul 4;19(1):520. doi: 10.1186/s12864-018-4893-5.

Abstract

BACKGROUND

Monogenean flatworms are the main ectoparasites of fishes. Representatives of the species-rich families Gyrodactylidae and Dactylogyridae, especially those infecting cichlid fishes and clariid catfishes, are important parasites in African aquaculture, even more so due to the massive anthropogenic translocation of their hosts worldwide. Several questions on their evolution, such as the phylogenetic position of Macrogyrodactylus and the highly speciose Gyrodactylus, remain unresolved with available molecular markers. Also, diagnostics and population-level research would benefit from the development of higher-resolution genetic markers. We aim to offer genetic resources for work on African monogeneans by providing mitogenomic data of four species (two belonging to Gyrodactylidae, two to Dactylogyridae), and analysing their gene sequences and gene order from a phylogenetic perspective.

RESULTS

Using Illumina technology, the first four mitochondrial genomes of African monogeneans were assembled and annotated for the cichlid parasites Gyrodactylus nyanzae, Cichlidogyrus halli, Cichlidogyrus mbirizei (near-complete mitogenome) and the catfish parasite Macrogyrodactylus karibae (near-complete mitogenome). Complete nuclear ribosomal operons were also retrieved, as molecular vouchers. The start codon TTG is new for Gyrodactylus and for Dactylogyridae, as is the incomplete stop codon TA for Dactylogyridae. Especially the nad2 gene is promising for primer development. Gene order was identical for protein-coding genes and differed between the African representatives of these families only in a tRNA gene transposition. A mitochondrial phylogeny based on an alignment of nearly 12,500 bp including 12 protein-coding and two ribosomal RNA genes confirms that the Neotropical oviparous Aglaiogyrodactylus forficulatus takes a sister group position with respect to the other gyrodactylids, instead of the supposedly 'primitive' African Macrogyrodactylus. Inclusion of the African Gyrodactylus nyanzae confirms the paraphyly of Gyrodactylus. The position of the African dactylogyrid Cichlidogyrus is unresolved, although gene order suggests it is closely related to marine ancyrocephalines.

CONCLUSIONS

The amount of mitogenomic data available for gyrodactylids and dactylogyrids is increased by roughly one-third. Our study underscores the potential of mitochondrial genes and gene order in flatworm phylogenetics, and of next-generation sequencing for marker development for these non-model helminths for which few primers are available.

摘要

背景

单殖吸虫是鱼类的主要外寄生虫。种类繁多的 Gyrodactylidae 和 Dactylogyridae 家族的代表,尤其是那些感染慈鲷鱼和鲶鱼的种类,是非洲水产养殖中的重要寄生虫,由于它们的宿主在全球范围内大规模人为转移,情况更是如此。可用分子标记物仍未解决其进化方面的几个问题,例如 Macrogyrodactylus 的系统发育位置和高度特化的 Gyrodactylus。此外,诊断和种群水平的研究将受益于开发更高分辨率的遗传标记物。我们旨在通过提供四种非洲单殖吸虫物种(两种属于 Gyrodactylidae,两种属于 Dactylogyridae)的线粒体基因组数据,并从系统发育角度分析其基因序列和基因顺序,为非洲单殖吸虫的研究提供遗传资源。

结果

使用 Illumina 技术,组装并注释了四种非洲单殖吸虫的第一个线粒体基因组,分别为慈鲷寄生虫 Gyrodactylus nyanzae、Cichlidogyrus halli、Cichlidogyrus mbirizei(近乎完整的线粒体基因组)和鲶鱼寄生虫 Macrogyrodactylus karibae(近乎完整的线粒体基因组)。还检索到了完整的核核糖体基因簇,作为分子凭证。起始密码子 TTG 是 Gyrodactylus 和 Dactylogyridae 的新密码子,Dactylogyridae 的不完全终止密码子 TA 也是新密码子。特别是 nad2 基因在引物开发方面很有前景。蛋白质编码基因的基因顺序相同,这些家族的非洲代表仅在一个 tRNA 基因转位上有所不同。基于包含 12 个蛋白质编码基因和两个核糖体 RNA 基因的近 12500bp 序列的线粒体系统发育分析证实,新热带产卵的 Aglaiogyrodactylus forficulatus 与其他 Gyrodactylus 形成姐妹群,而不是假设的“原始”非洲 Macrogyrodactylus。包含非洲 Gyrodactylus nyanzae 证实了 Gyrodactylus 的并系性。非洲 Dactylogyrus 的位置尚未解决,尽管基因顺序表明它与海洋的 Ancyrocephalinae 密切相关。

结论

Gyrodactylidae 和 Dactylogyridae 的线粒体基因组数据量增加了大约三分之一。我们的研究强调了线粒体基因和基因顺序在扁形动物系统发育中的潜力,以及下一代测序在这些非模式扁形动物的标记物开发中的潜力,这些寄生虫的引物很少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fde/6032552/5efed1eaabba/12864_2018_4893_Fig1_HTML.jpg

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