Assessing microbial ecology and antibiotic resistance genes in river sediments
Seyed Mehrdad Mirsalami, Mahsa Mirsalami
Islamic Azad University Central Tehran Branch Qazvin Islamic Azad University
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摘要与影响
Anthropogenic activities greatly affect the Karon River leading to deterioration of water quality. This investigation utilizes environmental genomic techniques to delineate microbial populations, examine functional genomics, and evaluate the occurrence of virulence determinants and antibiotic resistance genes (ARGs) in fluvial sediment. Taxonomic assessment identified that Firmicutes were the predominant phyla, with Bacillus being the most abundant genus across samples. Functional analysis revealed the metabolic capabilities of sediment-associated bacteria, linking them to biogeochemical processes and potential health impacts. The S2 samples exhibited the highest virulence factor genes, while the S3 samples had the most ARGs (30), highlighting concerns about pathogenicity. Analyzing ARGs provides critical insights into environmental data collected, such as water quality parameters (e.g., nutrient concentrations, pH) or pollution levels, prevalence, and distribution of these resistance factors within the sediment samples, helping to identify potential hotspots of antibiotic resistance in the Karon River ecosystem. The study identified similar operational taxonomic units (OTUs) across sampling sites at the phylogenetic level, indicating a consistent presence of certain microbial taxa. However, the lack of variation in functional classification suggests that while these taxa may be present, they are not exhibiting significant differences in metabolic capabilities or functional roles. These findings emphasize the significance of metagenomic methods in understanding microbial ecology and antibiotic resistance in aquatic environments, suggesting a need for further research into the restoration of microbial functions related to ARGs and virulence factors. • Firmicutes dominate Karon River sediments, with Bacillus as the most abundant genus. • River samples show the highest count of antibiotic resistance genes (30 ARGs). • Metagenomic techniques link bacterial functions to essential biogeochemical processes. • Virulence factor genes were notably present in S2 samples, indicating potential health risks. • Research emphasizes the need for better management of microbial ecology and antibiotic resistance.
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物理Pharmaceutical and Antibiotic Environmental Impacts
Environmental DNA in Biodiversity Studies · Microbial Community Ecology and Physiology
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