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首页> 外文期刊>mSphere >Effects of Organic Amendments on Microbiota Associated with the Culex nigripalpus Mosquito Vector of the Saint Louis Encephalitis and West Nile Viruses
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Effects of Organic Amendments on Microbiota Associated with the Culex nigripalpus Mosquito Vector of the Saint Louis Encephalitis and West Nile Viruses

机译:有机修改对与圣路易斯脑炎和西尼罗河病毒的库蚊蚊媒相关的微生物群的影响

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摘要

Pollution from nutrients in aquatic habitats has been linked to increases in disease vectors, including mosquitoes and other pestiferous insects. One possibility is that changes in mosquito microbiomes are impacted by nutrient enrichments and that these changes affect various traits, including larval development, susceptibility to larval control agents, and susceptibility of the adult mosquitoes to pathogens. We tested this hypothesis using field mesocosms supplemented with low- and high-organic-nutrient regimens and then sampled microbial communities associated with the naturally colonizing Culex nigripalpus mosquito vector. By high-throughput sequencing of 16S rRNA gene sequences, we found no significant differences in overall microbial communities associated with sampled mosquitoes, despite detecting discernible differences in environmental variables, including pH, dissolved oxygen, and nutrient amendments. Nevertheless, indicator species analysis revealed that members of the Clostridiales were significantly associated with mosquitoes that originated from high-nutrient enrichments. In contrast, members of the Burkholderiales were associated with mosquitoes from the low-nutrient enrichment. High bacterial variability associated with the life stages of the C.?nigripalpus was largely unaffected by levels of nutrient enrichments that impacted larval microbial resources, including bacteria, ciliates, and flagellates in the larval environments. IMPORTANCE Mosquito microbiota provide important physiological and ecological attributes to mosquitoes, including an impact on their susceptibility to pathogens, fitness, and sensitivity to mosquito control agents. Culex nigripalpus mosquito populations transmit various pathogens, including the Saint Louis and West Nile viruses, and proliferate in nutrient-rich environments, such as in wastewater treatment wetlands. Our study examined whether increases in nutrients within larval mosquito developmental habitats impact microbial communities associated with C.?nigripalpus mosquitoes. We characterized the effects of organic enrichments on microbiomes associated with C.?nigripalpus mosquitoes and identified potential bacterial microbiota that will be further investigated for whether they alter mosquito life history traits and for their potential role in the development of microbial-based control strategies.
机译:水生生境中养分的污染与包括蚊子和其他害虫在内的疾病媒介的增加有关。一种可能性是蚊子微生物区系的变化会受到营养物质富集的影响,这些变化会影响各种特征,包括幼虫发育,对幼虫控制剂的敏感性以及成年蚊虫对病原体的敏感性。我们使用补充了低有机和高有机营养方案的田间环境进行了这一假设的检验,然后抽样了与自然定居的库蚊(Culex nigripalpus)蚊子载体相关的微生物群落。通过对16S rRNA基因序列进行高通量测序,尽管检测到环境变量(包括pH值,溶解氧和营养成分)存在明显差异,但我们发现与采样蚊子相关的整体微生物群落没有显着差异。然而,指示剂种类分析显示梭状芽胞杆菌的成员与源自高营养富集的蚊子显着相关。相反,伯克霍尔德氏菌的成员与低营养富集的蚊子有关。与黑ni的生命阶段相关的高细菌变异性在很大程度上不受营养丰富水平的影响,营养水平影响幼虫微生物资源,包括幼虫环境中的细菌,纤毛和鞭毛。重要事项蚊子菌群为蚊子提供了重要的生理和生态属性,包括对它们对病原体的敏感性,适应性以及对灭蚊剂的敏感性的影响。黑蚊(Culex nigripalpus)蚊子种群传播各种病原体,包括圣路易斯和西尼罗河病毒,并在营养丰富的环境中繁殖,例如在废水处理湿地中繁殖。我们的研究检查了幼体蚊子发育栖息地中营养物质的增加是否会影响与黑ni蚊相关的微生物群落。我们表征了有机富集对与黑线虫蚊相关的微生物群的影响,并确定了潜在的细菌菌群,将进一步调查它们是否改变了蚊子的生活史特征以及它们在基于微生物的控制策略发展中的潜在作用。

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