International Centre of Insect Physiology and Ecology, Nairobi, Kenya.
Pan African University Institute for Basic Sciences Technology and Innovation, Nairobi, Kenya.
PLoS One. 2021 Feb 22;16(2):e0246452. doi: 10.1371/journal.pone.0246452. eCollection 2021.
Anopheles mosquitoes are colonized by diverse microorganisms that may impact on host biology and vectorial capacity. Eukaryotic symbionts such as fungi have been isolated from Anopheles, but whether they are stably associated with mosquitoes and transmitted transstadially across mosquito life stages or to subsequent generations remains largely unexplored. Here, we show that a Leptosphaerulina sp. fungus isolated from the midgut of An. gambiae can be stably associated with An. gambiae host and that it imposes low fitness cost when re-introduced through co-feeding. This fungus is transstadially transmitted across An. gambiae developmental stages and to their progeny. It is present in field-caught larvae and adult mosquitoes at moderate levels across geographical regions. We observed that Leptosphaerulina sp. induces a distinctive melanotic phenotype across the developmental stages of mosquito. As a eukaryotic symbiont that is stably associated with An. gambiae Leptosphaerulina sp. can be explored for paratransgenesis.
按蚊被多种微生物定殖,这些微生物可能影响宿主生物学和媒介能力。已经从按蚊中分离出真核共生菌,如真菌,但它们是否与蚊子稳定相关,并在蚊子的生活史阶段或向后代中进行跨期传播,在很大程度上仍未得到探索。在这里,我们表明,从冈比亚按蚊中肠分离出的一种 Leptosphaerulina 真菌可与冈比亚按蚊宿主稳定相关,并且当通过共同喂养重新引入时,它不会造成低适应度成本。这种真菌在冈比亚按蚊的发育阶段和后代中进行跨期传播。它存在于野外捕获的幼虫和成年蚊子中,在地理区域内的水平中等。我们观察到 Leptosphaerulina sp. 在蚊子的发育阶段诱导出独特的黑色素表型。作为一种与冈比亚按蚊稳定相关的真核共生菌,Leptosphaerulina sp. 可以被探索用于共生基因转移。