Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Adyari, Bob, Zhang, Lanping, Maravić, Ana, Chen, Jiaxin, Li, Laiyi, Gad, Mahmoud, Yu, Chang-Ping, Hu, Anyi
Format: Artículo científico
Sprache:en
Veröffentlicht: Environment international 2025
Schlagworte:
Online-Zugang:https://pubmed.ncbi.nlm.nih.gov/39729871/
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1868266263036297218
author Adyari, Bob
Zhang, Lanping
Maravić, Ana
Chen, Jiaxin
Li, Laiyi
Gad, Mahmoud
Yu, Chang-Ping
Hu, Anyi
author_facet Adyari, Bob
Zhang, Lanping
Maravić, Ana
Chen, Jiaxin
Li, Laiyi
Gad, Mahmoud
Yu, Chang-Ping
Hu, Anyi
Adyari, Bob
Zhang, Lanping
Maravić, Ana
Chen, Jiaxin
Li, Laiyi
Gad, Mahmoud
Yu, Chang-Ping
Hu, Anyi
collection PubMed - marine biology
contents Urbanization enhances consumer protist-driven ARGs dissemination in riverine ecosystems. Adyari, Bob Zhang, Lanping Maravić, Ana Chen, Jiaxin Li, Laiyi Gad, Mahmoud Yu, Chang-Ping Hu, Anyi Urbanization China Rivers Ecosystem Drug Resistance, Microbial Bacteria Eukaryota Environmental Monitoring Despite the emergence of antibiotic resistance genes (ARGs) and antibiotic resistant bacteria (ARBs), how biological inter-trophic interactions, modulated by watershed urbanization, shape the resistome remains unexplored. We collected water samples from the highly urbanized (western: 65 % built land, sewage-affected) and lesser-urbanized (northern: 25 % built land, drinking water source) downstream tributaries of the Jiulong River in southeast China over dry and wet seasons. We utilized metagenomic and amplicon (16S and 18S rDNA) sequencing to investigate the relationships among microeukaryotic algae, consumer protists, bacterial communities, and the resistome. Metagenomic results showed that ARG-MGE-carrying contigs (mobile ARGs), rather than ARG-carrying contigs (non-mobile ARGs), exhibited more pronounced discrepancies between tributaries. A higher total abundance of ARGs and a greater number of co-shared ARGs between pathogen and non-pathogen bacteria were observed in the more urbanized western tributary. Structural equation modeling revealed that consumer protist-bacteria and algae-bacteria cohesions predominantly influenced the resistome in the western and northern tributaries, respectively. Additionally, consumer protists had more significant associations (511 out of 634) with bacteria carrying mobile ARGs in western tributary, while algae had more significant associations (73 out of 105) in northern tributary. These results highlight the distinct inter-trophic driving factors of the resistome modulated by watershed urbanization.
format Artículo científico
id pubmed_39729871
institution PubMed
language en
publishDate 2025
publisher Environment international
record_format pubmed
spellingShingle Urbanization enhances consumer protist-driven ARGs dissemination in riverine ecosystems.
Adyari, Bob
Zhang, Lanping
Maravić, Ana
Chen, Jiaxin
Li, Laiyi
Gad, Mahmoud
Yu, Chang-Ping
Hu, Anyi
Urbanization
China
Rivers
Ecosystem
Drug Resistance, Microbial
Bacteria
Eukaryota
Environmental Monitoring
Urbanization enhances consumer protist-driven ARGs dissemination in riverine ecosystems. Adyari, Bob Zhang, Lanping Maravić, Ana Chen, Jiaxin Li, Laiyi Gad, Mahmoud Yu, Chang-Ping Hu, Anyi Urbanization China Rivers Ecosystem Drug Resistance, Microbial Bacteria Eukaryota Environmental Monitoring Despite the emergence of antibiotic resistance genes (ARGs) and antibiotic resistant bacteria (ARBs), how biological inter-trophic interactions, modulated by watershed urbanization, shape the resistome remains unexplored. We collected water samples from the highly urbanized (western: 65 % built land, sewage-affected) and lesser-urbanized (northern: 25 % built land, drinking water source) downstream tributaries of the Jiulong River in southeast China over dry and wet seasons. We utilized metagenomic and amplicon (16S and 18S rDNA) sequencing to investigate the relationships among microeukaryotic algae, consumer protists, bacterial communities, and the resistome. Metagenomic results showed that ARG-MGE-carrying contigs (mobile ARGs), rather than ARG-carrying contigs (non-mobile ARGs), exhibited more pronounced discrepancies between tributaries. A higher total abundance of ARGs and a greater number of co-shared ARGs between pathogen and non-pathogen bacteria were observed in the more urbanized western tributary. Structural equation modeling revealed that consumer protist-bacteria and algae-bacteria cohesions predominantly influenced the resistome in the western and northern tributaries, respectively. Additionally, consumer protists had more significant associations (511 out of 634) with bacteria carrying mobile ARGs in western tributary, while algae had more significant associations (73 out of 105) in northern tributary. These results highlight the distinct inter-trophic driving factors of the resistome modulated by watershed urbanization.
title Urbanization enhances consumer protist-driven ARGs dissemination in riverine ecosystems.
topic Urbanization
China
Rivers
Ecosystem
Drug Resistance, Microbial
Bacteria
Eukaryota
Environmental Monitoring
url https://pubmed.ncbi.nlm.nih.gov/39729871/