The Hidden Guardians: From Active Cells to Spores in a 20-Year Journey into the Microbial Heart of a Drying Oasis
Gonzalez-Sanchez, A.; Cordero-Martinez, E.; Rodriguez-Torres, D.; Islas-Robles, A.; Garcia-Miranda, N.; Navarro-Miranda, M.; Zapien-Campos, R. U.; Garcia-Oliva, F.; Eguiarte, L. E.; Souza, V. O.; Olmedo-Alvarez, G.
Show abstract
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.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dispersal provides trophic-level dependent insurance against a heatwave in freshwater ecosystems 93%
- Predicting the effects of multiple global change drivers onmicrobial communities remains challenging 92%
- Anaerobic methane oxidizing archaea offset sediment methane concentrations in Arctic thermokarst lagoons 92%
Similar papers in this journal
- Nutrient supplementation experiments with saltern microbial communities implicate utilization of DNA as a source of phosphorus 95%
- Frequency of change determines effectiveness of microbial response strategies in sulfidic stream microbiomes 95%
- Depth-discrete metagenomics reveals the roles of microbes in biogeochemical cycling in the tropical freshwater Lake Tanganyika 94%
Similar papers in this journal
- Cryptic cycling by electroactive bacterioplankton in Trout Bog Lake 95%
- Differences in the genomic potential of soil bacterial and viral communities between urban greenspaces and natural arid soils 94%
- Metabolic and Population Profiles of Active Subseafloor Autotrophs in Young Oceanic Crust at Deep-Sea Hydrothermal Vents 93%
Similar papers in this journal
- Upwelling periodically disturbs the ecological assembly of microbial communities in Lake Ontario 95%
- A widely distributed genus of soil Acidobacteria genomically enriched in biosynthetic gene clusters 94%
- Meta-omics reveals role of photosynthesis in Microbially Induced Carbonate Precipitation at a CO2-rich Geyser 94%
Similar papers in this journal
- Life on the edge: microbial diversity, resistome, and virulome in soils from the Union Glacier cold desert 94%
- Aquatic microbial community is partially functionally redundant: insights from an in situ reciprocal transplant experiment 93%
- Rainwater-driven transport of matter and microbes from phyllosphere to soil in a temperate beech forest 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.