Search bioRxiv⌕ Search

Biology subjects

Bousquet-Melou, A.

Publications and source records attributed to Bousquet-Melou, A..

2 recordsLinked to original sources

Promoting oak (Quercus pubescens Willd.) seedling development: finding the balance between canopy opening and grass competition under water stress

To adapt Mediterranean forests to increasingly harsh climatic conditions by promoting genetic diversity, thinning is often considered an effective strategy to enhance sexual regeneration within population diversity. However, determining an optimal thinning level that both increases local irradiance and maintains favorable microclimatic conditions for germination, without excessively promoting herbaceous competition, remains challenging. To better understand how abiotic and biotic factors influence oak seedling development and to help identify a balanced thinning level under climate change, we conducted a semi-controlled experiment testing the combined effects of competition with a grass species (Poaceae), two canopy opening levels, and soil water deficit. Our results highlight the crucial role of competition with Poaceae species - in our case Festuca ovina L. - in oak regeneration. Their presence not only intensifies competition for essential resources, but also modifies soil properties and alters belowground interactions, overall creating less favorable conditions for oak seedling establishment. In addition, our results highlight the significant impact of key abiotic factors like canopy opening that influences local irradiance and soil water deficit, as well as their interactions with the effects of competition. We observed a consistent need for adequate light to ensure optimal seedling performance, suggesting that successful regeneration depends on balancing sufficient canopy opening to improve light availability with maintaining sufficient cover to mitigate water stress and limit grass competition. Overall, our study contributes to the broader debate on sustainable forest management strategies under changing climatic conditions.

ecology↗

The selection of antibiotic- and bacteriophage-resistant Pseudomonas aeruginosa is prevented by their combination

ObjectivesBacteria developing resistance compromise the efficacy of antibiotics or bacteriophages (phages). We tested the association of these two antibacterials to circumvent resistance. MethodsWith the Hollow Fiber Infection Model (HFIM), we mimicked the concentration profile of ciprofloxacin in the lungs of patients treated orally for Pseudomonas aeruginosa infections and independently, mimicked a single inhaled administration of phages (one or two phages). ResultsEach treatment selects for antibiotic-or phage-resistant clones in less than 30 h. By contrast, no bacteria were recovered from the HFIM at 72 h when ciprofloxacin was started 4 h post-phage administration, even when increasing the initial bacterial concentration by a 1000 fold. ConclusionThe combination of phages with antibiotics used according to clinical regimens prevents the growth of resistant clones, providing opportunities to downscale the use of multiple antibiotics.

microbiology↗