Dynamics of the Gut Microbiome and Transcriptome in Korea Native Ricefish (Oryzias latipes) during Chronic Antibiotic Exposure

Authors
Yoon, Ju BinHwang, SungminYang, Jun HyeokLee, SeungkiBang, Woo YoungMoon, Ki Hwan
Issue Date
2022-07
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Genes, v.13, no.7
Abstract
Antibiotics have been widely used to inhibit microbial growth and to control bacterial infection; however, they can trigger an imbalance in the gut flora of the host and dysregulate the host gene regulatory system when discharged into the aquatic environment. We investigated the effects of chronic exposure to a low concentration of erythromycin and ampicillin, focusing on gut microbiome and global gene expression profiles from Korea native ricefish (Oryzias latipes). The proportion of Proteobacteria (especially the opportunistic pathogen Aeromonas veronii) was significantly increased in the ricefish under the chronic exposure to erythromycin and ampicillin, whereas that of other bacterial phyla (i.e., Fusobacteria) decreased. In addition, the expression of genes involved in immune responses such as chemokines and immunocyte chemotaxis was significantly influenced in ricefish in the aquatic environment with antibiotics present. These results show that the internal microbial flora and the host gene expression are susceptible even at a low concentration of chronic antibiotics in the environment, supporting the importance of the appropriate use of antibiotic dose to maintain the sustainable and healthy aquaculture industry and water ecosystem.
Keywords
DYSBIOSIS; ENVIRONMENT; RESISTANCE; ricefish; microbiome; ampicillin; erythromycin; immune and stress-related genes
ISSN
2073-4425
URI
https://pubs.kist.re.kr/handle/201004/114870
DOI
10.3390/genes13071243
Appears in Collections:
KIST Article > 2022
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