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Lera-Lozano, D.

Publications and source records attributed to Lera-Lozano, D..

2 recordsLinked to original sources

Evaluation of full-length 16S rRNA amplicon sequencing using Oxford Nanopore Technologies for diversity surveys of understudied microbiomes

O_LIThe use of long-read sequencing using portable Oxford Nanopore Technologies (ONT) is becoming increasingly popular in the study of host-associated microbiomes. However, its application has not yet been optimized for characterizing understudied microbiomes, such as those in marine environments. C_LIO_LIWe evaluated the accuracy and consistency of ONT sequencing of full-length 16S rRNA genes for diversity surveys of symbiotic dinoflagellate (family Symbiodiniaceae) microbiomes. C_LIO_LIWhen comparing amplicon sequencing of the full-length bacterial 16S rRNA gene with only its V4 hypervariable gene region using a known microbial community, the former recapitulated the bacterial taxonomic composition more accurately. C_LIO_LIONT sequencing was also highly consistent between sequencing runs and flow cells. C_LIO_LILong-read sequencing technologies enable microbiome surveys using the full-length 16S rRNA gene, achieving higher accuracy and resolution. C_LIO_LIThis work validates ONT long-read sequencing as a powerful tool for marine microbiome studies to catalyze advancements in the fields of ecology and evolution, resource management, and conservation. C_LI

ecology↗

The Potential of CCA-associated Bacteria to Fight Antimicrobial-Resistant Pathogens: a Genomic Survey

The global rise of antimicrobial resistance has intensified efforts in bioprospecting, with researchers increasingly exploring unique marine environments for novel antimicrobials. In line with this trend, our study focused on bacteria isolated from the unique microbiome of crustose coralline algae (CCA), which has yet to be investigated for antimicrobial discovery. In the present work, bacteria were isolated from the CCA Hydrolithon boergesenii. After running antimicrobial assays against antibiotic-resistant human and marine pathogens, three isolates were selected for genome sequencing using the Oxford Nanopore technology. Genome mining of the high-quality assemblies revealed 100 putative Biosynthetic Gene Clusters (BGCs) across the three genomes. Further analysis uncovered BGCs potentially involved in the biosynthesis of novel antimicrobial compounds. Our study provides valuable resources for future research aimed at the discovery of novel antimicrobials, particularly in the face of the antibiotic-resistance global crisis and highlights the potential of specialized marine environments like CCA biofilms.

genomics↗