Strain-level diversity in sulfonamide biodegradation: adaptation of Paenarthrobacter to sulfonamides

Author:

Huang Yue12,Pan Anxin12,Song Ying12,Deng Yu12,Wu Alnwick Long-Hei12,Lau Colin Shiu-Hay12,Zhang Tong12

Affiliation:

1. Environmental Microbiome Engineering and Biotechnology Lab , Department of Civil Engineering, , Pokfulam Road, Hong Kong SAR 999077 , China

2. The University of Hong Kong , Department of Civil Engineering, , Pokfulam Road, Hong Kong SAR 999077 , China

Abstract

Abstract The widespread occurrence of sulfonamides raises significant concerns about the evolution and spread of antibiotic resistance genes. Biodegradation represents not only a resistance mechanism but also a clean-up strategy. Meanwhile, dynamic and diverse environments could influence the cellular function of individual sulfonamide-degrading strains. Here, we present Paenarthrobacter from different origins that demonstrated diverse growth patterns and sulfonamide-degrading abilities. Generally, the degradation performance was largely associated with the number of sadA gene copies and also relied on its genotype. Based on the survey of sad genes in the public database, an independent mobilization of transposon-borne genes between chromosome and plasmid was observed. Insertions of multiple sadA genes could greatly enhance sulfonamide-degrading performance. Moreover, the sad gene cluster and sadA transposable element showed phylogenetic conservation currently, being identified only in two genera of Paenarthrobacter (Micrococcaceae) and Microbacterium (Microbacteriaceae). Meanwhile, Paenarthrobacter exhibited a high capacity for genome editing to adapt to the specific environmental niche, opening up new opportunities for bioremediation applications.

Funder

Hong Kong Theme Based Research Scheme

Publisher

Oxford University Press (OUP)

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