Skip to content
Open access

Experimental, Genomic, and Structural Evidence Supporting Putative PET‐Hydrolases in Thermophilic Bacteria Isolated From Hot Springs in Cajamarca, Peru

Aug 2026 · MicrobiologyOpen · Vol 15 · 0 citations · 85 references
Medicine

Abstract

ABSTRACT Polyethylene terephthalate (PET) waste represents a major environmental challenge due to limited recycling solutions. Thermophilic bacteria from geothermal environments harbor diverse enzymatic machinery adapted to extreme conditions, offering promising biocatalysts for plastic degradation; however, biological resources from Peru and other South American countries remain scarce. We characterized four bacterial strains isolated from two geothermal sites in Cajamarca, Peru, screened for PET hydrolysis at 50°C. Whole‐genome sequencing using hybrid assembly achieved near‐complete circular genomes. GTDB‐Tk classification identified three species: Neobacillus thermocopriae (strain 19A), Bacillus licheniformis (strains 16P and BI2), and Brevibacillus agri (strain BI8). Quantitative assays revealed that strain 16P achieved the highest mass loss (0.598%), followed by strain BI8 (0.449%). ATR‐FTIR analysis of the incubated sheets showed a significant reduction of the ester carbonyl index in strains 16P, 19A, and BI8 relative to both non‐incubated PET and an abiotic control, whereas strain BI2 did not differ from the controls, indicating preferential modification of ester bonds at the sheet surface. Genome mining and structure‐based homology searches identified multiple candidate enzymes similar to validated PETases and carboxylesterases, including PETase46‐like homologs in strains BI8 and 16P and a terephthalate‐active carboxylesterase homolog in strain 16P. Molecular docking supported the conservation of catalytic geometry and substrate‐binding sites in these candidates. This work represents one of the first systematic genomic and structural characterizations of putative PET‐hydrolases in Peruvian geothermal bacteria, expanding knowledge of extremophile diversity and advancing thermostable enzymes for sustainable plastic waste management.

Read PDF

Similar papers

Review Aug 2026

Diverse thermophilic anaerobes from Indian hot springs show potential for bioenergy production from lignocellulosic biomass

Various isolates exhibited cellulase, xylanase, and esterase activities on untreated rice and wheat straw, demonstrating the capacity to deconstruct lignocellulosic biomass without prior pretreatment, and Enzymatic activities and fermentation profiles varied substantially among strains.

Sai Suresh Hivarkar, P. Dhakephalkar, S. Dagar · 0 citations
Open access Jul 2026

Whole genome sequencing and molecular characterization of two Bacillus licheniformis strains isolated from hot springs in yellowstone ational park

Two B. licheniformis strains isolated from extreme environments are isolated from the Five Sisters hot spring in Yellowstone National Park and whole-genome sequencing reveals an open pangenome of 10,374 genes, providing a genomic foundation for future exploration of novel bioactive compounds with potential applications in drug discovery, agriculture, and biotechnology.

O. Elsakhawy, Mohamed A. Abouelkhair, S. Kania · 0 citations
Open access Jul 2026

Metagenomic insights into potential PET hydrolases from Antarctic soils and rhizospheres

A metagenomic analysis of soil and rhizosphere samples from the Antarctic vascular plants Deschampsia antarctica and Colobanthus quitensis is conducted, as sources of microbial enzymes with potential PET-hydrolytic activity, demonstrating the diversity of PET-hydrolase-like genes within Antarctic rhizosphere and soil microbiomes.

Valentín Berrios-Farías, Sergio Guajardo-Leiva, Jorge Gallardo-Cerda et al. · 0 citations
Open access Aug 2026

Genomic insights from a long-read assembly of a deep-sea Chromohalobacter israelensis strain from Santos Basin pockmarks field

Analysis revealed genes for metabolizing diverse carbohydrate sources, a complete ectoine synthesis cluster essential for halophily, and genes conferring tolerance to osmotic stress, low temperatures, and pH, underscoring its polyextremophilic capacity.

Ian Ariel Barbosa Nunes, Adan Rodrigues de Oliveira, Adonney Allan de Oliveira Veras et al. · 0 citations