中国宁夏回族自治区从环境中分离的流产布鲁氏菌的分子流行病学。

IF 2.6 4区 医学 Q3 INFECTIOUS DISEASES Infection Genetics and Evolution Pub Date : 2024-07-03 DOI:10.1016/j.meegid.2024.105635
Cong Yang , Jianwei Gao , Ran Xian , Xiang Liu , Wenhe Kuai , Cai Yin , Haohao Fan , Jinhua Tian , Xueping Ma , Jiangtao Ma
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引用次数: 0

摘要

布鲁氏菌病是中国重点人畜共患传染病之一,宁夏回族自治区是主要流行区,也是该地区因病致贫的主要原因之一。宁夏对布鲁氏菌的研究较多,但对流产布鲁氏菌的分子流行病学研究却很少。因此,本研究旨在对从宁夏环境中分离的流产布鲁氏菌进行病原分离和分子流行病学研究,为推进该地区布鲁氏菌病的防控措施提供见解和证据。本研究在传统病原检测方法的基础上,利用全基因组测序技术和生物信息学软件,对宁夏菌株和不同地理来源的流产布鲁氏菌菌株进行了系统发育比较。结果表明,4株流产布鲁氏菌被归类为生物变种3和MLST类型ST2。结果表明,本地菌株与来自亚洲和欧洲国家的菌株在系统发育关系上更为接近。流产布鲁氏菌在宁夏某些环境区域的存在表明,存在从环境传播给动物进而传播给人类的风险。综上所述,流产布鲁氏菌存在于宁夏部分养殖环境中,且存在时间较长。因此,有必要加强对养殖环境消毒效果的监测,为布鲁氏菌病防控关口前移提供依据。
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Molecular epidemiology of Brucella abortus isolated from the environment in Ningxia Hui autonomous region, China

Brucellosis is among the key zoonotic infectious diseases in China, and The Ningxia Hui Autonomous Region represents a major endemic area, and it is one of the main causes of poverty in the region due to illness. In Ningxia, there is substantial research on Brucella melitensis, studies on the molecular epidemiology of Brucella abortus are notably scarce. Consequently, this study aims to undertake pathogenic isolation and molecular epidemiological research on Brucella abortus isolated from the environment in Ningxia, providing insights and evidence to advance the prevention and control measures for brucellosis in the region. Building on traditional pathogenic detection methods, this research employs whole-genome sequencing(WGS) techniques and bioinformatics software to conduct a phylogenetic comparison of Ningxia strains and strains of Brucella abortus from various geographical origins. The results indicate that four Brucella abortus strains are classified as biovar 3 and MLST type ST2. It is shown that the local strains were closer phylogenetic relationships with strains from Asian and European countries. The presence of Brucella abortus in certain environmental sectors of Ningxia indicates a risk of transmission from the environment to animals and subsequently to humans. In conclusion, the Brucella abortus exists in some farming environments in Ningxia, and exists for a long time. Therefore, it is necessary to strengthen the monitoring of the disinfection effect of the farming environment to provide a basis for the forward movement of the gate of brucellosis prevention and control.

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来源期刊
Infection Genetics and Evolution
Infection Genetics and Evolution 医学-传染病学
CiteScore
8.40
自引率
0.00%
发文量
215
审稿时长
82 days
期刊介绍: (aka Journal of Molecular Epidemiology and Evolutionary Genetics of Infectious Diseases -- MEEGID) Infectious diseases constitute one of the main challenges to medical science in the coming century. The impressive development of molecular megatechnologies and of bioinformatics have greatly increased our knowledge of the evolution, transmission and pathogenicity of infectious diseases. Research has shown that host susceptibility to many infectious diseases has a genetic basis. Furthermore, much is now known on the molecular epidemiology, evolution and virulence of pathogenic agents, as well as their resistance to drugs, vaccines, and antibiotics. Equally, research on the genetics of disease vectors has greatly improved our understanding of their systematics, has increased our capacity to identify target populations for control or intervention, and has provided detailed information on the mechanisms of insecticide resistance. However, the genetics and evolutionary biology of hosts, pathogens and vectors have tended to develop as three separate fields of research. This artificial compartmentalisation is of concern due to our growing appreciation of the strong co-evolutionary interactions among hosts, pathogens and vectors. Infection, Genetics and Evolution and its companion congress [MEEGID](http://www.meegidconference.com/) (for Molecular Epidemiology and Evolutionary Genetics of Infectious Diseases) are the main forum acting for the cross-fertilization between evolutionary science and biomedical research on infectious diseases. Infection, Genetics and Evolution is the only journal that welcomes articles dealing with the genetics and evolutionary biology of hosts, pathogens and vectors, and coevolution processes among them in relation to infection and disease manifestation. All infectious models enter the scope of the journal, including pathogens of humans, animals and plants, either parasites, fungi, bacteria, viruses or prions. The journal welcomes articles dealing with genetics, population genetics, genomics, postgenomics, gene expression, evolutionary biology, population dynamics, mathematical modeling and bioinformatics. We also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services .
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