Interkingdom interactions shape the fungal microbiome of mosquitoes.

IF 4.9 Q1 MICROBIOLOGY Animal microbiome Pub Date : 2024-03-07 DOI:10.1186/s42523-024-00298-4
Shivanand Hegde, Kamil Khanipov, Emily A Hornett, Pornjarim Nilyanimit, Maria Pimenova, Miguel A Saldaña, Charissa de Bekker, George Golovko, Grant L Hughes
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Abstract

Background: The mosquito microbiome is an important modulator of vector competence and vectoral capacity. Unlike the extensively studied bacterial microbiome, fungal communities in the mosquito microbiome (the mycobiome) remain largely unexplored. To work towards getting an improved understanding of the fungi associated with mosquitoes, we sequenced the mycobiome of three field-collected and laboratory-reared mosquito species (Aedes albopictus, Aedes aegypti, and Culex quinquefasciatus).

Results: Our analysis showed both environment and host species were contributing to the diversity of the fungal microbiome of mosquitoes. When comparing species, Ae. albopictus possessed a higher number of diverse fungal taxa than Cx. quinquefasciatus, while strikingly less than 1% of reads from Ae. aegypti samples were fungal. Fungal reads from Ae. aegypti were < 1% even after inhibiting host amplification using a PNA blocker, indicating that this species lacked a significant fungal microbiome that was amplified using this sequencing approach. Using a mono-association mosquito infection model, we confirmed that mosquito-derived fungal isolates colonize Aedes mosquitoes and support growth and development at comparable rates to their bacterial counterparts. Strikingly, native bacterial taxa isolated from mosquitoes impeded the colonization of symbiotic fungi in Ae. aegypti suggesting interkingdom interactions shape fungal microbiome communities.

Conclusion: Collectively, this study adds to our understanding of the fungal microbiome of different mosquito species, that these fungal microbes support growth and development, and highlights that microbial interactions underpin fungal colonization of these medically relevent species.

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王国间的相互作用塑造了蚊子的真菌微生物群。
背景:蚊子微生物组是病媒能力和病媒传播能力的重要调节器。与被广泛研究的细菌微生物组不同,蚊子微生物组(真菌生物组)中的真菌群落在很大程度上仍未被探索。为了更好地了解与蚊子相关的真菌,我们对三种野外采集和实验室饲养的蚊子(白纹伊蚊、埃及伊蚊和库蚊)的真菌生物群进行了测序:我们的分析表明,环境和宿主物种对蚊子真菌微生物组的多样性都有影响。在物种比较中,白纹伊蚊比五带喙库蚊拥有更多不同的真菌类群,而来自埃及伊蚊样本的真菌读数却不足1%。埃及伊蚊的真菌读数是 结论:总之,这项研究增加了我们对不同蚊子物种真菌微生物组的了解,这些真菌微生物支持了蚊子的生长和发育,并强调了微生物的相互作用是这些具有医学价值的物种真菌定殖的基础。
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来源期刊
CiteScore
7.20
自引率
0.00%
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0
审稿时长
13 weeks
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