Profiles of bacterial communities and environmental factors associated with proliferation of malaria vector mosquitoes within the Kenyan Coast.

Access Microbiology Pub Date : 2023-08-17 eCollection Date: 2023-01-01 DOI:10.1099/acmi.0.000606.v4
Josphat Mutinda, Samuel Mwakisha Mwamburi, Kennedy Omondi Oduor, Maurice Vincent Omolo, Regina Mongina Ntabo, James Muhunyu Gathiru, Joseph Mwangangi, James O M Nonoh
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Abstract

Background: Since Anopheles mosquitoes which transmit and maintain the malaria parasite breed in the outdoor environment, there is an urgent need to manage these mosquito breeding sites. In order to elaborate more on the ecological landscape of mosquito breeding sites, the bacterial community structure and their interactions with physicochemical factors in mosquito larval habitats was characterised in Kwale County (Kenya), where malaria is endemic.

Methods: The physical characteristics and water physicochemical parameters of the habitats were determined and recorded. Water samples were also collected from the identified sites for total metagenomic DNA extraction in order to characterise the bacterial communities within the breeding sites.

Results and discussion: Sites where mosquito larvae were found were described as positive and those without mosquito larvae as negative. Electrical conductivity, total dissolved solids, salinity and ammonia were lower in the rainy season than in the dry season, which also coincided with a high proportion of positive sites. Pseudomonadota was the most common phyla recovered in all samples followed by Bacteroidota and then Actinomycetota. The presence or absence of mosquito larvae in a potential proliferation site was not related to the bacterial community structure in the sampled sites, but was positively correlated with bacterial richness and evenness.

Conclusion: Generally, the presence of Anopheles mosquito larvae was found to be positively correlated with rainy season, bacterial richness and evenness, and negatively correlated with electrical conductivity, total dissolved solids, salinity and ammonia. The findings of this study have implications for predicting the potential of environmental water samples to become mosquito proliferation sites.

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肯尼亚沿海地区与疟疾病媒蚊子大量繁殖有关的细菌群落和环境因素概况。
背景:由于传播和维持疟疾寄生虫的按蚊在室外环境中繁殖,因此迫切需要对这些蚊子繁殖地进行管理。为了进一步阐明蚊子孳生地的生态景观,研究人员在疟疾流行的肯尼亚夸莱县(Kwale County)对蚊子幼虫栖息地的细菌群落结构及其与理化因素的相互作用进行了描述:方法:确定并记录了栖息地的物理特征和水理化参数。方法:确定了栖息地的物理特征和水的理化参数,并从确定的地点采集水样进行总元基因组 DNA 提取,以确定繁殖地内细菌群落的特征:发现蚊子幼虫的地点为阳性地点,没有蚊子幼虫的地点为阴性地点。雨季的电导率、溶解固体总量、盐度和氨氮均低于旱季,这也与阳性地点比例较高相吻合。假单胞菌是所有样本中最常见的菌门,其次是类杆菌科,再次是放线菌科。潜在增殖点是否有蚊子幼虫与取样点的细菌群落结构无关,但与细菌丰富度和均匀度呈正相关:总体而言,按蚊幼虫的存在与雨季、细菌丰富度和均匀度呈正相关,而与电导率、溶解性总固体、盐度和氨呈负相关。这项研究的结果对预测环境水样成为蚊子扩散地点的可能性具有重要意义。
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