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Gonzalez-Sanchez, A.

Publications and source records attributed to Gonzalez-Sanchez, A..

2 recordsLinked to original sources

The Hidden Guardians: From Active Cells to Spores in a 20-Year Journey into the Microbial Heart of a Drying Oasis

The Cuatro Cienegas Basin (CCB) in Coahuila, Mexico, a Ramsar Wetland, is historically characterized by a unique network of pozas renowned for microbial diversity. Among them, the Churince hydrological system epitomized a delicate balance of endemic species, stable water regimes, and complex microbial assemblages. Over the last five decades, however, Churince underwent a catastrophic [~]99% water loss, primarily driven by intensive agricultural extraction. We showed that this desiccation not only caused hydrological collapse but also reshaped microbial physiology. Longitudinal records from 2007 to 2019, combining satellite imagery, piezometer data, and field observations, documented progressive declines beginning in 2011 and culminating in the complete desiccation of the Intermediate Lagoon by 2019. To track microbial responses, we employed a cultivation-based approach distinguishing vegetative cells from dormant spores, enabling direct physiological assessment of metabolic activity versus dormancy. As water diminished, spore abundance increased relative to vegetative forms, revealing a shift toward dormancy as a survival strategy under extreme desiccation. Complementary mesocosm experiments showed that reduced diversity further enriched for spores, illustrating how loss of community complexity accelerated dormancy and erosion of active assemblages. Together, these results demonstrated that habitat loss triggered microbial community change, which we frame as a microbial extension of the ecological concept of community disassembly. By combining two decades of hydrological evidence with microbial physiology, this study fills a critical gap in understanding how wetland drying selects for microbial dormancy. These findings underscore the urgent need for sustainable agriculture and integrated water management to preserve biodiversity and ecosystem function in threatened wetlands worldwide.

microbiology↗

Chronic infection of Caenorhabditis elegans by Orsay virus induces age-dependent immunity and superinfection exclusion

Orsay virus (OrV) is a natural pathogen of C. elegans, which mounts an antiviral response upon infection and enables the investigation of the mechanisms governing infection and immunity. Here, we focus on two of these features, namely the effect of life-long infections and superinfection dynamics. By following the course of an infection throughout the lifespan of a synchronous wild-type population, we describe several viral load peaks followed by sharp decreases in viral load, suggesting that the infection is chronic and that animals manage to suppress viral replication successfully throughout most of their lives. Moreover, we show that animals that have been previously exposed to the virus are able to control viral replication upon a subsequent inoculation, indicative of superinfection exclusion. Primary infections produced transcriptomic and small RNA alterations, whose extent was highly dependent on the developmental stage of the worm at the time of infection and the time until sampling. Superinfection, in turn, had little impact on the overall transcriptome, but showed a misregulation of piRNAs, rRNAs, and tsRNAs. Superinfection exclusion was robust throughout larval development and adulthood, providing protection against various OrV isolates. However, the protective effect of the initial infection diminished over time, suggesting different mechanisms of action and ultimately favoring the primary infecting virus. This phenomenon was dependent on a functional RNA interference pathway.

genomics↗