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新种不对称血变虫(Haemoproteus asymmetricus n. sp.)的描述,兼论血孢子虫寄生虫分类学研究中DNA单倍型网络的可预测性

Description of Haemoproteus asymmetricus n. sp. (Haemoproteidae), with remarks on predictability of the DNA haplotype networks in haemosporidian parasite taxonomy research.

作者信息

Valkiūnas Gediminas, Ilgūnas Mikas, Bukauskaitė Dovilė, Duc Mélanie, Iezhova Tatjana A

机构信息

Nature Research Centre, Akademijos 2, Vilnius 08412, Lithuania.

Nature Research Centre, Akademijos 2, Vilnius 08412, Lithuania.

出版信息

Acta Trop. 2021 Jun;218:105905. doi: 10.1016/j.actatropica.2021.105905. Epub 2021 Mar 26.

Abstract

Haemoproteus species (Haemosporida, Haemoproteidae) are cosmopolitan blood parasites, which have been neglected for over 100-years, but attracted attention recently due to reports of severe and even lethal haemoproteosis in birds and vectors. Approximately 150 species of avian Haemoproteus have been described and named, but molecular data suggest that hundreds of independently evolving molecular lineages might occur, indicating the existence of a remarkable undescribed species diversity. It is timely to develop a methodology, which allow the application of available genetic data in taxonomy of haemosporidians on species levels. This study aimed to test a hypothesis suggesting that DNA haplotype networks might aid in targeting genetically distinct, but still undescribed parasites, and might be used to direct taxonomic studies on haemosporidian species levels. Mainly, we tested a prediction that the lineage hTUPHI01, a common Haemoproteus parasite of Turdus philomelos, might be a new species, which is morphologically similar and genetically closely related to the parasites of Haemoproteus minutus group. Blood samples of T. philomelos naturally infected with this parasite lineage were collected and studied using microscopic examination of blood films and PCR-based methods. Haemoproteus asymmetricus n. sp. was found in this bird, described and characterised molecularly using partial cytochrome b (cytb) sequences. The new species shared some features with parasites of the H. minutus group, as was predicted by the DNA haplotype network. Due to the visualisation of closely related lineages as well as the evaluation of their host and geographic distributions, DNA haplotype networks can be recommended as the helpful methodology, able to direct and speed practical work on parasite species taxonomy and pathogen biodiversity. The combined molecular phylogenetic and morphological approaches showed that the well-supported clades in Bayesian phylogenetic trees based on the partial cytb gene sequences contain morphologically remarkably different Haemoproteus parasite species, which however, share some basic biological features. Phylogenetic analysis can be used for prediction of these basic features in still undescribed parasites. This study calls for further fusion of advanced molecular and microscopy approaches for better understanding haemosporidian parasite biology.

摘要

血变原虫属(血孢子虫目,血变原虫科)是一种遍布全球的血液寄生虫,在过去100多年里一直被忽视,但最近由于有报道称其在鸟类和媒介中会引发严重甚至致命的血变原虫病,从而引起了人们的关注。目前已描述并命名了约150种鸟类血变原虫,但分子数据表明可能存在数百个独立进化的分子谱系,这意味着存在大量未被描述的物种多样性。当下亟需开发一种方法,以便在物种层面将现有的遗传数据应用于血孢子虫的分类学研究。本研究旨在验证一个假设,即DNA单倍型网络可能有助于识别基因上不同但仍未被描述的寄生虫,并可用于指导血孢子虫物种层面的分类学研究。主要而言,我们检验了一个预测,即hTUPHI01谱系(歌鸫常见的血变原虫寄生虫)可能是一个新物种,它在形态上与微小血变原虫组的寄生虫相似,并且在基因上与之密切相关。采集了自然感染该寄生虫谱系的歌鸫的血样,并通过血涂片显微镜检查和基于PCR的方法进行研究。在这种鸟类中发现了不对称血变原虫新种,利用部分细胞色素b(cytb)序列对其进行了描述和分子特征分析。正如DNA单倍型网络所预测的那样,这个新物种与微小血变原虫组的寄生虫有一些共同特征。由于可以直观呈现密切相关的谱系,并评估它们的宿主和地理分布,因此DNA单倍型网络可作为一种有用的方法推荐,能够指导并加快寄生虫物种分类学和病原体生物多样性的实际研究工作。结合分子系统发育和形态学方法表明,基于部分cytb基因序列构建的贝叶斯系统发育树中得到充分支持的分支包含形态上明显不同的血变原虫寄生虫物种,但它们具有一些共同的基本生物学特征。系统发育分析可用于预测仍未被描述的寄生虫的这些基本特征。本研究呼吁进一步融合先进的分子和显微镜方法,以更好地理解血孢子虫寄生虫生物学。

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