埃及伊蚊中肠微生物群在消化过程中的动态变化揭示了可能的共生体

João Felipe M Salgado, Balakrishnan N V Premkrishnan, Elaine L Oliveira, Vineeth Kodengil Vettath, Feng Guang Goh, Xinjun Hou, Daniela I Drautz-Moses, Yu Cai, Stephan C Schuster, Ana Carolina M Junqueira
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摘要

血食对埃及伊蚊的繁殖周期以及向宿主传播虫媒病毒至关重要。据推测,血食可能会影响蚊子的微生物组,但消化过程中微生物多样性和功能的变化仍然难以捉摸。我们使用全基因组霰弹枪元基因组学监测了埃及疟蚊 60 只雌蚊在血餐或糖餐后 12、24 和 48 小时整个消化过程中的中肠微生物组。元基因组的高覆盖率允许在物种分类水平上对微生物进行分类,同时还提供了功能分析。处于消化后期的雌虫和幼虫的微生物组多样性较低。在进食血液的蚊子的消化过程中,观察到了肠杆菌的显著增殖。在微生物组成发生变化的同时,与碳水化合物和蛋白质新陈代谢有关的基因以及抗菌和清除的毒力因子也丰富起来。已知的人类病原体 Elizabethkingia anophelis(黄杆菌属)是血液消化末期的优势物种。系统发生组学表明,它与噬血蚊子的结合发生过多次。我们认为,从这种关联中产生的宿主与微生物之间互利互动的证据,可能是蚊子抵抗虫媒病毒感染的关键。在消化后,观察到的血饲雌蚊中肠的变化转变为类似糖饲的微生物特征。这项研究深入揭示了埃及蝇的微生物组是如何在血食后被调节以发挥消化作用的,强调了潜在共生体的增殖以应对动态的中肠环境。
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The dynamics of the midgut microbiome in aedes aegypti during digestion reveal putative symbionts
Blood feeding is crucial for the reproductive cycle of the mosquito Aedes aegypti, as well as for the transmission of arboviruses to hosts. It is postulated that blood meals may influence the mosquito microbiome but shifts in microbial diversity and function during digestion remain elusive. We used whole-genome shotgun metagenomics to monitor the midgut microbiome in 60 individual females of A. aegypti throughout digestion, after 12, 24, and 48 hours following blood or sugar meals. Additionally, ten individual larvae were sequenced, showing microbiomes dominated by Microbacterium sp. The high metagenomic coverage allowed for microbial assignments at the species taxonomic level, also providing functional profiling. Females in the post-digestive period and larvae displayed low microbiome diversities. A striking proliferation of Enterobacterales was observed during digestion in blood-fed mosquitoes. The compositional shift was concomitant with enrichment in genes associated with carbohydrate and protein metabolism, as well as virulence factors for antimicrobial resistance and scavenging. The bacterium Elizabethkingia anophelis (Flavobacteriales), a known human pathogen, was the dominant species at the end of blood digestion. Phylogenomics suggests that its association with hematophagous mosquitoes occurred several times. We consider evidence of mutually beneficial host-microbe interactions raised from this association, potentially pivotal for the mosquito’s resistance to arbovirus infection. After digestion, the observed shifts in blood-fed females’ midguts shifted to a sugar-fed-like microbial profile. This study provides insights into how the microbiome of A. aegypti is modulated to fulfill digestive roles following blood meals, emphasizing proliferation of potential symbionts in response to the dynamic midgut environment.
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