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希腊国内反刍动物中 spp. 的广泛全国性分子鉴定及高遗传多样性

Extensive Countrywide Molecular Identification and High Genetic Diversity of spp. in Domestic Ruminants in Greece.

作者信息

Arsenopoulos Konstantinos V, Minoudi Styliani, Symeonidou Isaia, Triantafyllidis Alexandros, Fthenakis George C, Papadopoulos Elias

机构信息

Laboratory of Parasitology and Parasitic Diseases, School of Veterinary Medicine, Faculty of Health Sciences, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

Laboratory of Genetics, Development and Molecular Biology, School of Biology, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Pathogens. 2024 Mar 8;13(3):238. doi: 10.3390/pathogens13030238.

Abstract

The gastrointestinal nematode parasite spp. is one of the most pathogenic parasites of ruminants, due to its blood-sucking activity, which causes large economic losses in the ruminant industry. The latest epizootiological data recorded an increase in the infection, not only in Greece but also in other countries, mainly attributed to climatic changes. The study of the population structure and the investigation of the phylogenetic relationships of spp. are essential for the understanding of its biology and epizootiology to implement appropriate control and prevention strategies. In addition, the molecular approach allows the determination of evolutionary relationships between different species of this parasite, the diverse hosts they infect, as well as the different geographic compartments from which they originate. Therefore, the aim of the present study was to identify the species of the sympatric populations of the genus , a nematode parasite infecting ruminants (sheep, goats, cattle, and buffaloes) from different regions of Greece (continental and insular) using molecular methods. At the same time, an attempt was made to identify the possible subpopulations of spp. in Greece, to investigate their phylogenetic relationships, as well as to determine the genetic diversity of each population. A total of 288 worms of the genus were processed using molecular methods; of these, 96 were collected from sheep, 96 from goats, 48 from cattle, and finally, 48 from buffaloes. A fragment of 321 base pairs of the second internal transcribed spacer (ITS2) sequence of nuclear DNA was amplified for species identification, and, after basic local alignment search tool (Blast) analysis, it was revealed that they belonged to . A fragment of 820 base pairs of subunit 4 of the nicotinamide dehydrogenase (ND4) gene of mitochondrial DNA was amplified for genetic diversity analysis. The Greek mitochondrial ND4 sequences of were classified into 140 haplotypes, and the values of the average nucleotide and haplotype diversity were lower compared to the respective values derived from Italy, Malaysia, the USA, and China. The phylogenetic analysis of the ND4 gene revealed a clear grouping of the Greek haplotypes when compared with Asian ones, and, at the same time, there was no profound grouping of the same haplotypes with regard to their different hosts and geographical origin within different regions of Greece. The aforementioned findings confirmed that prevails in our country and can infect all species of ruminants, without geographical boundaries, when the right conditions (i.e., common grazing) are created.

摘要

胃肠道线虫寄生虫 spp. 是反刍动物中致病性最强的寄生虫之一,因其吸血活动会给反刍动物产业造成巨大经济损失。最新的动物流行病学数据显示,不仅在希腊,在其他国家该寄生虫的感染率也有所上升,这主要归因于气候变化。研究 spp. 的种群结构及其系统发育关系对于理解其生物学特性和动物流行病学,从而实施适当的控制和预防策略至关重要。此外,分子方法有助于确定该寄生虫不同物种之间、它们所感染的不同宿主以及其起源的不同地理区域之间的进化关系。因此,本研究的目的是使用分子方法鉴定来自希腊不同地区(大陆和岛屿)感染反刍动物(绵羊、山羊、牛和水牛)的线虫寄生虫属的同域种群的物种。同时,尝试鉴定希腊境内 spp. 的可能亚种群,研究它们的系统发育关系,并确定每个种群的遗传多样性。共使用分子方法处理了288条该属的蠕虫;其中,96条从绵羊采集,96条从山羊采集,48条从牛采集,最后48条从水牛采集。扩增了核DNA第二内部转录间隔区(ITS2)序列的321个碱基对片段用于物种鉴定,经过基本局部比对搜索工具(Blast)分析,发现它们属于 。扩增了线粒体DNA烟酰胺脱氢酶(ND4)基因亚基4的820个碱基对片段用于遗传多样性分析。希腊的线粒体ND4序列被分类为140个单倍型,与来自意大利、马来西亚、美国和中国的相应值相比,平均核苷酸和单倍型多样性值较低。ND4基因的系统发育分析显示,与亚洲单倍型相比,希腊单倍型有明显的聚类,同时,就希腊不同地区内不同宿主和地理起源而言,相同单倍型没有明显的聚类。上述发现证实,在我国 占主导地位,当创造合适条件(即共同放牧)时,它可以感染所有反刍动物物种,不受地理界限限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5437/10974071/b3f48627b31a/pathogens-13-00238-g001.jpg

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