2018•bioRxiv (Cold Spring Harbor Laboratory)Open access

Novel Wolbachia strains in Anopheles malaria vectors from Sub-Saharan Africa

Claire Louise Jeffries, Gena G. Lawrence, George Golovko, Mojca Kristan, James Orsborne, Kirstin A Spence, Eliot Hurn, Janvier B. Bandibabone, Michaël Luciano Tantely, Fara Nantenaina Raharimalala, Kalil Keita, Denka Camara, Yaya Barry, Francis Wat’senga, Emile Z. Manzambi, Yaw Asare Afrane, Abdul Rahim Mohammed, Tarekegn A. Abeku, Shivanand Manjunath Hegde, Kamil Khanipov, Maria Pimenova, Yuriy Fofanov, Sébastien Boyer, Seth R. Irish, Grant L. Hughes, Thomas Walker

Open full text 14 citations

Abstract

Abstract Anopheles (An.) mosquitoes contain bacteria that can influence Plasmodium parasites. Wolbachia , a common insect endosymbiont, has historically been considered absent from Anopheles but has recently been found in An. gambiae populations. Here, we assessed a range of Anopheles species from five malaria-endemic countries for Wolbachia and Plasmodium infection. Strikingly, we found Wolbachia infections in An. coluzzii, An. gambiae s.s, An. arabiensis, An. moucheti and An. species ‘A’ increasing the number of Anopheles species known to be naturally infected by this endosymbiont. Molecular analysis suggests the presence of phylogenetically diverse novel strains, while qPCR and 16S rRNA sequencing indicates that Wolbachia is the dominant member of the microbiota in An. moucheti and An. species ‘A’. We found no evidence of Wolbachia/Asaia co-infections, and presence of these endosymbionts did not have significant effects on malaria prevalence. We discuss the importance of novel Wolbachia strains in Anopheles and potential implications for disease control.

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Abstract Anopheles (An.) mosquitoes contain bacteria that can influence Plasmodium parasites. Wolbachia , a common insect endosymbiont, has historically been considered absent from Anopheles but has recently been found in An. gambiae populations. Here, we assessed a range of Anopheles species from five malaria-endemic countries for Wolbachia and Plasmodium infection. Strikingly, we found Wolbachia infections in An. coluzzii, An. gambiae s.s, An. arabiensis, An. moucheti and An. species ‘A’ increasing the number of Anopheles species known to be naturally infected by this endosymbiont. Molecular analysis suggests the presence of phylogenetically diverse novel strains, while qPCR and 16S rRNA sequencing indicates that Wolbachia is the dominant member of the microbiota in An. moucheti and An. species ‘A’. We found no evidence of Wolbachia/Asaia co-infections, and presence of these endosymbionts did not have significant effects on malaria prevalence. We discuss the importance of novel Wolbachia strains in Anopheles and potential implications for disease control.

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Available abstract

Abstract Anopheles (An.) mosquitoes contain bacteria that can influence Plasmodium parasites. Wolbachia , a common insect endosymbiont, has historically been considered absent from Anopheles but has recently been found in An. gambiae populations. Here, we assessed a range of Anopheles species from five malaria-endemic countries for Wolbachia and Plasmodium infection. Strikingly, we found Wolbachia infections in An. coluzzii, An. gambiae s.s, An. arabiensis, An. moucheti and An. species ‘A’ increasing the number of Anopheles species known to be naturally infected by this endosymbiont. Molecular analysis suggests the presence of phylogenetically diverse novel strains, while qPCR and 16S rRNA sequencing indicates that Wolbachia is the dominant member of the microbiota in An. moucheti and An. species ‘A’. We found no evidence of Wolbachia/Asaia co-infections, and presence of these endosymbionts did not have significant effects on malaria prevalence. We discuss the importance of novel Wolbachia strains in Anopheles and potential implications for disease control.

Key concepts: Wolbachia, Anopheles gambiae, Biology, Malaria, Anopheles, Plasmodium (life cycle), Zoology, Ecology

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