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越南双棘血蜱的首次报道、粒形硬蜱的分子地理关系及一种新的革蜱属物种

First report of Haemaphysalis bispinosa, molecular-geographic relationships of Ixodes granulatus and a new Dermacentor species from Vietnam.

作者信息

Hornok Sándor, Kontschán Jenő, Keve Gergő, Takács Nóra, Van Nguyen Dat, Ho Khanh Ngoc Phuong, Görföl Tamás, Wang Yuanzhi, Farkas Róbert, Dao Thanh Thi Ha

机构信息

Department of Parasitology and Zoology, University of Veterinary Medicine, Budapest, Hungary.

HUN-REN-UVMB Climate Change: New Blood-Sucking Parasites and Vector-Borne Pathogens Research Group, Budapest, Hungary.

出版信息

Parasit Vectors. 2025 Jan 23;18(1):21. doi: 10.1186/s13071-024-06641-7.

Abstract

BACKGROUND

Vietnam and its region are regarded as an ixodid tick biodiversity hotspot for at least two genera: Haemaphysalis and Dermacentor. To contribute to our knowledge on the tick fauna of this country, ticks from these two genera as well as an Ixodes species were analyzed morphologically and their molecular-phylogenetic relationships were examined in taxonomic and geographical contexts.

METHODS

For this study, seven Haemaphysalis sp. ticks were removed from dogs and collected from the vegetation. These showed morphological differences from congeneric species known to occur in Vietnam. In addition, three Ixodes sp. ticks were collected from pygmy slow lorises (Xanthonycticebus pygmaeus), and a Dermacentor female had been previously collected from the vegetation. After DNA extraction, these were molecularly or phylogenetically analyzed based on the cytochrome c oxidase subunit I (cox1) and 16S rRNA genes.

RESULTS

The three species were morphologically identified as (i) Ixodes granulatus, which had nearly or exactly 100% sequence identities to conspecific ticks reported from large (approximately 2000 km) geographical distances but was more different (having lower, only 94.2% cox1 and 96.7% 16S rRNA sequence identity) from samples collected within 1000 km of Vietnam in Southern China and Malaysia, respectively; (ii) Haemaphysalis bispinosa, which showed 100% sequence identity to samples reported within both narrow and broad geographical ranges; and (iii) a new species, Dermacentor pseudotamokensis Hornok sp. nov., described here morphologically and shown to be phylogenetically a sister species to Dermacentor tamokensis.

CONCLUSIONS

Haemaphysalis bispinosa shows genetic homogeneity in the whole of South and Southeast Asia, probably owing to its frequent association with domestic ruminants and dogs (i.e. frequently transported hosts). However, I. granulatus, the Asian rodent tick, has a mixed geographical pattern of haplotypes, probably because it may associate with either synanthropic or wild-living rodents as primary hosts. This tick species is recorded here, for the first time to our knowledge, as parasitizing lorises in Vietnam and its region. Based on phylogenetic analyses, D. pseudotamokensis Hornok sp. nov., recognized and described here for the first time, was almost certainly misidentified previously as Dermacentor steini, drawing attention to the need to barcode all Dermacentor spp. in Southern Asia.

摘要

背景

越南及其所在地区被视为至少两个硬蜱属(血蜱属和 Dermacentor 属)的硬蜱生物多样性热点地区。为了增进我们对该国蜱类动物群的了解,对来自这两个属的蜱以及一种硬蜱属物种进行了形态学分析,并在分类学和地理学背景下研究了它们的分子系统发育关系。

方法

在本研究中,从狗身上采集了 7 只血蜱属蜱,并从植被中收集到。这些蜱与已知在越南出现的同属物种在形态上存在差异。此外,从倭蜂猴(Xanthonycticebus pygmaeus)身上采集了 3 只硬蜱属蜱,之前还从植被中采集到一只 Dermacentor 属雌蜱。提取 DNA 后,基于细胞色素 c 氧化酶亚基 I(cox1)和 16S rRNA 基因对这些蜱进行分子或系统发育分析。

结果

这三个物种在形态上被鉴定为:(i)粒形硬蜱,其与从相距甚远(约 2000 公里)的地理区域报道的同种蜱的序列同一性接近或恰好为 100%,但与分别在中国南方和马来西亚距离越南 1000 公里范围内采集的样本差异更大(cox1 序列同一性较低,仅为 94.2%,16S rRNA 序列同一性为96.7%);(ii)二棘血蜱,其与在狭窄和广泛地理范围内报道的样本序列同一性均为 100%;(iii)一个新物种,伪塔莫 Dermacentor 蜱(Dermacentor pseudotamokensis Hornok sp. nov.),在此对其进行形态学描述,并显示在系统发育上是塔莫 Dermacentor 蜱(Dermacentor tamokensis)的姐妹物种。

结论

二棘血蜱在整个南亚和东南亚显示出遗传同质性,可能是由于它经常与家养反刍动物和狗(即经常被运输的宿主)相关联。然而,亚洲啮齿动物蜱粒形硬蜱具有混合的单倍型地理模式,可能是因为它可能与共栖或野生啮齿动物作为主要宿主相关联。据我们所知,该蜱种首次被记录在越南及其所在地区寄生于蜂猴。基于系统发育分析,首次在此识别和描述的新物种伪塔莫 Dermacentor 蜱几乎可以肯定之前被误鉴定为斯氏 Dermacentor 蜱(Dermacentor steini),这提请注意需要对南亚所有 Dermacentor 属物种进行条形码鉴定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b587/11755799/8aa8f8bc70b4/13071_2024_6641_Figa_HTML.jpg

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