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幼虫接触重金属对成年(双翅目:蚊科)肠道微生物群组成的影响。

The Effect of Larval Exposure to Heavy Metals on the Gut Microbiota Composition of Adult (Diptera: Culicidae).

作者信息

Singh Ashmika, Misser Shristi, Allam Mushal, Chan Wai-Yin, Ismail Arshad, Munhenga Givemore, Oliver Shüné V

机构信息

Wits Research Institute for Malaria, School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg 2193, South Africa.

Centre for Emerging Zoonotic and Parasitic Diseases, National Institute for Communicable Diseases, Division of the National Health Laboratory Service, Johannesburg 2193, South Africa.

出版信息

Trop Med Infect Dis. 2024 Oct 21;9(10):249. doi: 10.3390/tropicalmed9100249.

Abstract

is a highly adaptable member of the . complex. Its flexible resting behaviour and diverse feeding habits make conventional vector control methods less effective in controlling this species. Another emerging challenge is its adaptation to breeding in polluted water, which impacts various life history traits relevant to epidemiology. The gut microbiota of mosquitoes play a crucial role in their life history, and the larval environment significantly influences the composition of this bacterial community. Consequently, adaptation to polluted breeding sites may alter the gut microbiota of adult mosquitoes. This study aimed to examine how larval exposure to metal pollution affects the gut microbial dynamics of adults. Larvae of were exposed to either cadmium chloride or copper nitrate, with larvae reared in untreated water serving as a control. Two laboratory strains (SENN: insecticide unselected, SENN-DDT: insecticide selected) and F larvae sourced from KwaZulu-Natal, South Africa, were exposed. The gut microbiota of the adults were sequenced using the Illumina Next Generation Sequencing platform and compared. Larval metal exposure affected alpha diversity, with a more marked difference in beta diversity. There was evidence of core microbiota shared between the untreated and metal-treated groups. Bacterial genera associated with metal tolerance were more prevalent in the metal-treated groups. Although larval metal exposure led to an increase in pesticide-degrading bacterial genera in the laboratory strains, this effect was not observed in the F population. In the F population, -protective bacterial genera were more abundant in the untreated group compared to the metal-treated group. This study therefore highlights the importance of considering the larval environment when searching for local bacterial symbionts for paratransgenesis interventions.

摘要

是该复合体中高度适应性强的成员。其灵活的静息行为和多样的摄食习性使得传统的病媒控制方法在控制该物种方面效果较差。另一个新出现的挑战是它适应在污染水中繁殖,这会影响与流行病学相关的各种生活史特征。蚊子的肠道微生物群在其生活史中起着关键作用,幼虫环境会显著影响这个细菌群落的组成。因此,对污染繁殖地的适应可能会改变成年蚊子的肠道微生物群。本研究旨在探讨幼虫暴露于金属污染如何影响成年蚊子的肠道微生物动态。将的幼虫暴露于氯化镉或硝酸铜中,以在未处理水中饲养的幼虫作为对照。使用了两个实验室品系(SENN:未选择杀虫剂,SENN-DDT:选择了杀虫剂)以及来自南非夸祖鲁-纳塔尔的F幼虫进行暴露实验。使用Illumina下一代测序平台对成年蚊子的肠道微生物群进行测序并比较。幼虫金属暴露影响了α多样性,β多样性的差异更为明显。在未处理组和金属处理组之间存在核心微生物群的证据。与金属耐受性相关的细菌属在金属处理组中更为普遍。虽然幼虫金属暴露导致实验室品系中农药降解细菌属增加,但在F群体中未观察到这种效应。在F群体中,未处理组中与保护相关的细菌属比金属处理组更为丰富。因此,本研究强调了在寻找用于共生转基因干预的本地细菌共生体时考虑幼虫环境的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58c4/11510740/fb8e2aeb117f/tropicalmed-09-00249-g001.jpg

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