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Presence of Aedes and Anopheles mosquito larvae is correlated to bacteria found in domestic water-storage containers

机译:AEDES和Anopheles蚊子幼虫的存在与国内储水容器中发现的细菌相关

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Water-storage containers are common in households where access to water is scarce and often act as breeding sites for vector mosquitoes. Bacteria in these containers may be important for attracting or repelling ovipositing mosquitoes. We hypothesized that bacterial community composition in water-storage containers would represent either inhibitory or suitable environmental conditions for mosquito larvae. To investigate this, we characterized the bacterial community composition in water-storage containers and correlated these communities to Aedes and Anopheles larval densities. Water samples were collected over two years from 13 containers in an Indian village and analyzed by high throughput 16S rRNA gene amplicon sequencing. Comparisons of bacterial community composition between water with and without mosquito larvae showed that Xanthomonadaceae, Comamonadaceae and Burkholderiaceae were more common (P 0.05) in absence of larvae, while Lachnospiraceae, Synechococcaceae, Alcaligenaceae and Cryomorphaceae were more common ( 0.05) in presence of larvae. Indicator analysis identified operational taxonomic units designated as CL500-29 marine group (Acidimicrobiaceae) and FukuN101 (Microbacteriaceae) for absence and presence of larvae, respectively. These results contribute to the understanding of which bacteria, directly or indirectly, can be linked to absence or presence of mosquitoes around households and set the basis for potential measures to be taken against these vector mosquitoes.
机译:储水容器在进入水的家庭中是常见的,并且通常充当矢量蚊子的繁殖网站。这些容器中的细菌对于吸引或排斥卵形蚊子可能是重要的。我们假设水储物容器中的细菌群落组合物将代表蚊虫幼虫的抑制或合适的环境条件。为了研究这一点,我们在储水容器中表征了细菌群落组成,并将这些社区与AEDES和Anopheles幼虫密度相关联。从印度村的13个容器中收集两年内的水样,并通过高通量16s rRNA基因扩增子测序分析。与蚊子幼虫的水之间的细菌群落组成的比较表明,Xanthomonadaceae,Comamonadaceae和Burkholderiaceae在没有幼虫的情况下更常见(P <0.05),而Lachnospheae,SneCechococcaceae,AlcaligeNaceae和低温素映射更常见(<0.05)存在幼虫。指示器分析鉴定为CL500-29海洋组(酸IMICrobiaceae)和Fukun101(微生物杆菌)的运营分类单位分别用于缺乏和存在幼虫。这些结果有助于了解哪些细菌直接或间接地,可以与家庭周围蚊子的缺失或存在相关联,并为这些传染媒介蚊子采取潜在措施的基础。

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