Iron efflux by IetA enhances β-lactam aztreonam resistance and is linked to oxidative stress through cellular respiration in Riemerella anatipestifer

Author:

Liu Mafeng1234,Wang Mengying1234,Huang Mi1234,Gao Qun1234,Zhu Dekang1234ORCID,Wang Mingshu1234,Jia Renyong1234,Chen Shun1234,Zhao Xinxin1234,Yang Qiao1234,Wu Ying1234,Zhang Shaqiu1234,Huang Juan1234,Ou Xumin1234,Mao Sai1234,Tian Bin1234,Sun Di1234,Cheng Anchun1234ORCID

Affiliation:

1. Engineering Research Center of Southwest Animal Disease Prevention and Control Technology, Ministry of Education of the People's Republic of China , Chengdu 611130 , China

2. Key Laboratory of Animal Disease and Human Health of Sichuan Province , Chengdu 611130 , China

3. International Joint Research Center for Animal Disease Prevention and Control of Sichuan Province , Chengdu 611130 , China

4. Research Center of Avian Disease, College of Veterinary Medicine, Sichuan Agricultural University , Chengdu 611130 , China

Abstract

Abstract Background Riemerella anatipestifer encodes an iron acquisition system, but whether it encodes the iron efflux pump and its role in antibiotic resistance are largely unknown. Objectives To screen and identify an iron efflux gene in R. anatipestifer and determine whether and how the iron efflux gene is involved in antibiotic resistance. Methods In this study, gene knockout, streptonigrin susceptibility assay and inductively coupled plasma mass spectrometry were used to screen for the iron efflux gene ietA. The MIC measurements, scanning electron microscopy and reactive oxygen species (ROS) detection were used to verify the role of IetA in aztreonam resistance and its mechanism. Mortality and colonization assay were used to investigate the role of IetA in virulence. Results The deletion mutant ΔietA showed heightened susceptibility to streptonigrin, and prominent intracellular iron accumulation was observed in ΔfurΔietA under excess iron conditions. Additionally, ΔietA exhibited increased sensitivity to H2O2-produced oxidative stress. Under aerobic conditions with abundant iron, ΔietA displayed increased susceptibility to the β-lactam antibiotic aztreonam due to heightened ROS production. However, the killing efficacy of aztreonam was diminished in both WT and ΔietA under anaerobic or iron restriction conditions. Further experiments demonstrated that the efficiency of aztreonam against ΔietA was dependent on respiratory complexes Ⅰ and Ⅱ. Finally, in a duckling model, ΔietA had reduced virulence compared with the WT. Conclusion Iron efflux is critical to alleviate oxidative stress damage and β-lactam aztreonam killing in R. anatipestifer, which is linked by cellular respiration.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Sichuan Province

China Agricultural Research System

Sichuan Veterinary Medicine and Drug Innovation Group of the China Agricultural Research System

Publisher

Oxford University Press (OUP)

Reference52 articles.

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