Univ Lyon, Université Claude Bernard Lyon 1, CNRS, INRAE, VetAgro Sup, UMR Ecologie Microbienne, F-69622 Villeurbanne, France.
CIRMF, Franceville, B.P. 769, Gabon.
FEMS Microbiol Ecol. 2022 Feb 21;98(1). doi: 10.1093/femsec/fiac016.
Mosquito larvae are naturally exposed to microbial communities present in a variety of larval development sites. Several earlier studies have highlighted that the larval habitat influences the composition of the larval bacterial microbiota. However, little information is available on their fungal microbiota, i.e. the mycobiota. In this study, we provide the first simultaneous characterization of the bacterial and fungal microbiota in field-collected Aedes aegypti larvae and their respective aquatic habitats. We evaluated whether the microbial communities associated with the breeding site may affect the composition of both the bacterial and fungal communities in Ae. aegypti larvae. Our results show a higher similarity in microbial community structure for both bacteria and fungi between larvae and the water in which larvae develop than between larvae from different breeding sites. This supports the hypothesis that larval habitat is a major factor driving microbial composition in mosquito larvae. Since the microbiota plays an important role in mosquito biology, unravelling the network of interactions that operate between bacteria and fungi is essential to better understand the functioning of the mosquito holobiont.
蚊子幼虫自然会接触到各种幼虫发育场所存在的微生物群落。几项早期研究强调了幼虫栖息地会影响幼虫细菌微生物组的组成。然而,关于其真菌微生物组(即真菌群落)的信息却很少。在这项研究中,我们首次对现场采集的埃及伊蚊幼虫及其各自的水生栖息地中的细菌和真菌微生物组进行了同时描述。我们评估了与繁殖地相关的微生物群落是否可能影响埃及伊蚊幼虫中细菌和真菌群落的组成。我们的研究结果表明,无论是细菌还是真菌,幼虫与其生长的水体之间的微生物群落结构比来自不同繁殖地的幼虫之间更为相似。这支持了幼虫栖息地是驱动蚊子幼虫微生物组成的主要因素这一假说。由于微生物组在蚊子生物学中起着重要作用,揭示细菌和真菌之间相互作用的网络对于更好地理解蚊子整体生物的功能至关重要。