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Valadez-Cano, C.

Publications and source records attributed to Valadez-Cano, C..

2 recordsLinked to original sources

Gene expression analysis of carbohydrate catabolism in Leucoagaricus gongylophorus LEU18496.

Transcriptomic profiles were obtained by RNA-seq of Leucoagaricus gongylophorus growing on two carbon sources (glucose and cellulose) during different growth phases (exponential and stationary) with the aim of analyzing the variations in metabolism depending on the substrate and/or growth state. Principal component analysis (PCA) showed that 99.5% of the variation in gene expression is related to the substrate (PC1), clearly separating the experimental conditions, while the differences between growth phases are reflected in secondary components (PC2). Special attention was paid to the differential expression of CAZymes and FOLymes enzymes, demonstrating that, during the exponential phase of cellulose culture, there is an overexpression of enzymes from the GH6 and GH7 families (cellulases and cellobiosehydrolases), related to the degradation of complex polysaccharides such as cellulose. During the exponential phase of growth on glucose, expression of CAZymes enzymes ({beta}-glucosidase, pectinase and endo-{beta}-1,3-glucanase) was observed, in addition to an overexpression of laccases in this carbon source. Enrichment analysis identified significantly enriched functions related to carbohydrate catabolism and transport, evidence of the metabolic versatility of L. gongylophorus. High expression of the creA repressor factor was found in the presence of glucose, suggesting its regulatory role in the modulation of carbohydrate degradation. In the stationary phase, genes related to the response to oxidative stress and nutrient solubilization were activated under glucose, in contrast to cellulose, where the activation of secondary metabolism pathways was promoted, including the overexpression of trichodiene synthase.

genomics↗

Novel lytic and lysogenic cyanophages predicted to infect Microcoleus associated with anatoxin-producing benthic mats

Proliferations of toxic benthic cyanobacteria are increasingly being reported around the world. Of particular concern are Microcoleus-dominated mats associated with anatoxin production that have resulted in dog fatalities. Although the impact of cyanophages has been demonstrated in planktonic systems, their role in the population dynamics of benthic cyanobacteria has received little attention. Here we use metagenomics to explore phage presence in benthic mats from the Wolastoq|Saint John River (WR; New Brunswick, Canada) and Eel River (ER; California, US). Our survey recovered multiple viral-like sequences associated with different putative bacterial hosts, including two cyanophage genomes with apparently different replication strategies. A lysogenic cyanophage (predicted as a prophage) was found integrated in the genomes of Microcoleus sp. 3 recovered from five ER mat samples. This Microcoleus phage is related to previously described Phormidium phage counterparts. Also, we recovered lytic cyanophages from WR and ER mats dominated by anatoxin-producing Microcoleus, which was predicted as the putative host. Despite the geographical distance between WR and ER, the lytic Microcoleus phage genomes recovered from each river have similar sizes (circa 239 Kbp) and share similar gene content with high sequence identity. Phylogenetic analysis suggests that these lytic Microcoleus phages are distant from any other cyanophage previously described. Our results constitute the first report of cyanophages predicted to infect and therefore influence the population dynamics of mat-forming Microcoleus spp. associated with anatoxin production.

microbiology↗