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Alonso-Saez, L.

Publications and source records attributed to Alonso-Saez, L..

2 recordsLinked to original sources

Gene expression response to temperature acclimation in a model photoheterotrophic marine flavobacterium (Dokdonia sp. MED134)

Temperature stands as one of the key factors influencing the community structure and distribution of marine microorganisms. Yet, the physiological adaptations of marine bacteria to rising temperatures remain underexplored. This study examines the transcriptional response of Dokdonia sp. MED134, a proteorhodopsin-based phototrophic organism within the class Flavobacteriia, to a gradient of temperature acclimation conditions from 10 to 34{degrees}C. Light availability during day/night cycles exerted minimal influence on the transcriptional patterns of this strain, with only a few genes mostly related to light sensing, light protecting mechanisms and phototrophy being upregulated during daytime. By contrast, temperature significantly impacted the expression of a large fraction of MED134 genes (>60%), including components of the stress response, cellular translation, DNA replication, and some metabolic pathways such as the anaplerotic carbon fixation and the glyoxylate shunt, suggesting intracellular carbon flow adjustments to temperature. Notably, the expression of some highly expressed TonB transporters, prominent in flavobacteria, was also temperature-sensitive. Our findings provide insights into the transcriptional adjustments of Dokdonia sp. MED134 in response to temperature variations, suggesting potential implications for carbon cycling and organic matter processing in marine environments.

microbiology↗

Diversity and biotechnological potential of filamentous fungi isolated from sediments of Basque estuaries

Marine environments harbor a vast diversity of microorganisms, which have developed multiple strategies to adapt to challenging conditions and represent a valuable source for new products such as pigments, enzymes and bioactive compounds. From all microorganisms inhabiting marine environments, fungi have been the least studied, despite their ubiquitous presence and great biotechnological potential. Here, we focused on the isolation and characterization of filamentous fungi from marine sediment samples, which were collected along the Basque coast in Spain. Through phenotypic characterization, we identified isolates potentially able to produce secondary metabolites or grow on minimal culture medium supplemented with recalcitrant algal polysaccharides. Based on this screening, two Sordariomycetes isolates were selected for further analyses through genome sequencing and omics techniques: 1) a Marquandomyces marquandii strain able to stain the culture medium in yellow, indicative of secretion of pigments and secondary metabolites and 2) an Albophoma yamanashiensis strain able to grow in minimal culture medium supplemented with the recalcitrant algal polysaccharide fucoidan. Fungal co-culture experiments suggested an inhibitory effect of the secretome of M. marquandii on fungal growth. Under culture conditions inducing pigment secretion, a set of secondary metabolite gene clusters were differentially expressed, as analysed by RNA-seq. On the other hand, transcriptomic and proteomic experiments on A. yamanashiensis unveiled the enzymatic activities expressed in response to the presence of fucoidan. Overall, our results indicate that the isolated marine fungal strains could serve as a source of new enzymatic activities and secondary metabolites.

microbiology↗