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Douchet, P.

Publications and source records attributed to Douchet, P..

2 recordsLinked to original sources

Environmental RNA improves detection and surveillance of schistosomiasis transmission

Environmental diagnosis of schistosomiasis, a tropical disease affecting more than 250 million people globally, is still challenging, which limits efficient eradication plans. There is a crucial need for resolutive and highly sensitive environmental tools to improve disease control. However, a major obstacle is the inability of current methods, including environmental DNA (eDNA), to distinguish infectious parasite life stages. Here, we develop and validate an environmental RNA (eRNA) approach that enables the detection and absolute quantification of Schistosoma mansoni miracidia and cercariae directly from water samples. After identifying life stage-specific transcripts, we design specific ddPCR assays which are strongly specific to S. mansoni and to each life stage. Comparing with eDNA assays, laboratory experiments demonstrate that stage-specific eRNA assays accurately reflect the relative abundance of each life stage, detect nucleic acids released from organisms, exhibit detection limits tenfold lower than eDNA assays. Also, under laboratory conditions, RNA persists in water longer than DNA. Field validation at six endemic sites in Brazil confirms that eRNA outperforms eDNA and conventional snail surveys in detecting active presence of S. mansoni cercariae, which indicates schistosomiasis transmission risk to humans locally. By enabling active-stage discrimination in environmental monitoring and improving sensitivity (compared to eDNA), our study advances both fundamental understanding and applied surveillance of schistosomiasis transmission, supporting elimination initiatives in affected regions.

ecology↗

Evidences that host genetic background more than the environment shapes the microbiota of the snail Bulinus truncatus, an intermediate host of Schistosoma species.

Microbiota are increasingly recognized as key players in regulating host biological functions, influencing both the ecology and evolution of organisms. However, the factors shaping microbiota diversity and structure in natural environments remain underexplored, especially the relative importance of host genetics versus environmental factors. In this study, we address this gap using the freshwater snail Bulinus truncatus, an intermediate host for some human and animal Schistosoma parasites, as a model species. We developed 31 new microsatellite markers to assess the population structure of B. truncatus across 9 sites in Senegal. We then applied metabarcoding to characterize the diversity and structure of individual snail bacterial microbiota and environmental communities associated with each sampling site using environmental DNA. We also used molecular diagnostics to determine trematode infection status of B. truncatus individuals. By integrating these data through multiple regression on distance matrices (MRM) analyses, we quantified the influence of B. truncatus population genetics, spatial distribution, environmental bacterial communities, and infection status on the snails microbiota structure. Our results show that the genetic structure of B. truncatus populations, and to a lower extent geographic distribution, are the main factors explaining the snails microbiota compositions. Neither the environmental bacterial communities nor trematode infection status significantly contributed to microbiota structure. A portion of the variance in microbiota composition remains unexplained, suggesting that additional ecological or intrinsic factors might be involved. These findings provide new insights into the drivers of microbiota structure in natural populations and highlight the complexity of host-microbiota-environment interactions. Key-words: Bulinus truncatus, Microbiota, Spatial structure, Population genetics, Trematodes, Multiple regressions on distance matrices

ecology↗