蚊子肠道微生物群:综述。

IF 3.3 3区 医学 Q2 MICROBIOLOGY Pathogens Pub Date : 2024-08-15 DOI:10.3390/pathogens13080691
Hongmei Liu, Jianhai Yin, Xiaodan Huang, Chuanhui Zang, Ye Zhang, Jianping Cao, Maoqing Gong
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引用次数: 0

摘要

蚊子是许多重要人类疾病的传播媒介。杀虫剂的长期和广泛使用导致蚊子对这些杀虫剂产生抗药性。肠道微生物群被认为是宿主发育和生理的主宰;它影响着蚊子的生物学、疾病病原体的传播和对杀虫剂的抗性。了解蚊子肠道微生物群在蚊子对杀虫剂的抗药性中的作用和机制有助于制定新的策略来解决蚊子对杀虫剂的抗药性问题。我们检索了在线数据库,包括 PubMed、MEDLINE、SciELO、Web of Science 和中国科学引文数据库。我们检索了所有术语,包括微生物群和蚊子,或蚊子的任何特定属或种。我们审查了微生物群与蚊子生长、发育、生存、繁殖和疾病病原体传播之间的关系,以及微生物群与蚊子杀虫剂抗药性之间的相互作用。在对 8139 条搜索结果进行过滤后,共有 429 项研究被纳入本综述。蚊子肠道微生物群显示出复杂的群落结构,具有丰富的物种多样性、物种组成随时间(季节)和空间(环境)的动态变化,以及蚊子物种和蚊子发育阶段(幼虫与成虫)之间的差异。微生物群落的组成对蚊子的发育、生存和繁殖起着深远的作用。蚊子中肠微生物群与病毒感染之间存在相互影响。Wolbachia、Asaia 和 Serratia 是研究最多的三种影响疾病病原体传播的细菌。对杀虫剂的抗药性或接触导致抗药性蚊子中某些微生物的富集或减少,而对杀虫剂敏感的蚊子中其他微生物的富集则会增强,它们涉及许多不同种类/属/科的微生物。相反,微生物区系可通过分离和降解杀虫化合物或改变宿主基因和代谢解毒酶的表达,促进宿主对杀虫剂的抗药性。目前,有关蚊子肠道微生物群的群落结构及其与蚊子病原体传播和杀虫剂抗性有关的功能的知识还很少。应采用新的多组学技术来寻找环境、蚊子和宿主之间的联系,将蚊子微生物群研究提升到新的水平。
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Mosquito Gut Microbiota: A Review.

Mosquitoes are vectors of many important human diseases. The prolonged and widespread use of insecticides has led to the development of mosquito resistance to these insecticides. The gut microbiota is considered the master of host development and physiology; it influences mosquito biology, disease pathogen transmission, and resistance to insecticides. Understanding the role and mechanisms of mosquito gut microbiota in mosquito insecticide resistance is useful for developing new strategies for tackling mosquito insecticide resistance. We searched online databases, including PubMed, MEDLINE, SciELO, Web of Science, and the Chinese Science Citation Database. We searched all terms, including microbiota and mosquitoes, or any specific genera or species of mosquitoes. We reviewed the relationships between microbiota and mosquito growth, development, survival, reproduction, and disease pathogen transmission, as well as the interactions between microbiota and mosquito insecticide resistance. Overall, 429 studies were included in this review after filtering 8139 search results. Mosquito gut microbiota show a complex community structure with rich species diversity, dynamic changes in the species composition over time (season) and across space (environmental setting), and variation among mosquito species and mosquito developmental stages (larval vs. adult). The community composition of the microbiota plays profound roles in mosquito development, survival, and reproduction. There was a reciprocal interaction between the mosquito midgut microbiota and virus infection in mosquitoes. Wolbachia, Asaia, and Serratia are the three most studied bacteria that influence disease pathogen transmission. The insecticide resistance or exposure led to the enrichment or reduction in certain microorganisms in the resistant mosquitoes while enhancing the abundance of other microorganisms in insect-susceptible mosquitoes, and they involved many different species/genera/families of microorganisms. Conversely, microbiota can promote insecticide resistance in their hosts by isolating and degrading insecticidal compounds or altering the expression of host genes and metabolic detoxification enzymes. Currently, knowledge is scarce about the community structure of mosquito gut microbiota and its functionality in relation to mosquito pathogen transmission and insecticide resistance. The new multi-omics techniques should be adopted to find the links among environment, mosquito, and host and bring mosquito microbiota studies to the next level.

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来源期刊
Pathogens
Pathogens Medicine-Immunology and Allergy
CiteScore
6.40
自引率
8.10%
发文量
1285
审稿时长
17.75 days
期刊介绍: Pathogens (ISSN 2076-0817) publishes reviews, regular research papers and short notes on all aspects of pathogens and pathogen-host interactions. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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