BMC Microbiology | |
Metagenomic and culture-dependent approaches unveil active microbial community and novel functional genes involved in arsenic mobilization and detoxification in groundwater | |
Research | |
Mala Khan1  Md. Moniruzzaman1  M. Nazmul Hoque2  M. Shaminur Rahman3  Farhana Haque4  Munawar Sultana4  Farzana Diba5  M. Anwar Hossain6  Khondaker Md. Jaminur Rahman7  | |
[1] Bangladesh Reference Institute for Chemical Measurements (BRiCM), Dr. Qudrat-E-Khuda Road, 1205, Dhanmondi, Dhaka, Bangladesh;Department of Gynecology, Obstetrics and Reproductive Health, Bangabandhu Sheikh Mujibur Rahman Agricultural University, 1706, Gazipur, Bangladesh;Department of Microbiology, Jashore University of Science and Technology, 7408, Jashore, Bangladesh;Department of Microbiology, University of Dhaka, 1000, Dhaka, Bangladesh;Department of Microbiology, University of Dhaka, 1000, Dhaka, Bangladesh;Institute of Tissue Banking and Biomaterial Research, Atomic Energy Research Establishment, 1349, Savar, Dhaka, Bangladesh;Department of Microbiology, University of Dhaka, 1000, Dhaka, Bangladesh;Present address: Jashore University of Science and Technology, 7408, Jashore, Bangladesh;Environmental Science Division, National Institute of Biotechnology, 1349, Savar, Dhaka, Bangladesh; | |
关键词: Arsenotrophic bacteria; Arsenotrophic genes; Whole-genome shotgun sequencing; AMRs; VFGs; Bioremediation; | |
DOI : 10.1186/s12866-023-02980-0 | |
received in 2023-01-06, accepted in 2023-08-14, 发布年份 2023 | |
来源: Springer | |
【 摘 要 】
BackgroundArsenic (As) and its species are major pollutants in ecological bodied including groundwater in Bangladesh rendering serious public health concern. Bacteria with arsenotrophic genes have been found in the aquifer, converting toxic arsenite [As (III)] to less toxic arsenate [As (V)] that is easily removed using chemical and biological trappers. In this study, genomic and metagenomic approaches parallel to culture-based assay (Graphical abstract) have made it possible to decipher phylogenetic diversity of groundwater arsenotrophic microbiomes along with elucidation of their genetic determinants.ResultsSeventy-two isolates were retrieved from six As-contaminated (average As concentration of 0.23 mg/L) groundwater samples from Munshiganj and Chandpur districts of Bangladesh. Twenty-three isolates harbored arsenite efflux pump (arsB) gene with high abundance, and ten isolates possessing arsenite oxidase (aioA) gene, with a wide range of minimum inhibitory concentration, MICAs (2 to 32 mM), confirming their role in arsenite metabolism. There was considerable heterogeneity in species richness and microbial community structure. Microbial taxa from Proteobacteria, Firmicutes and Acidobacteria dominated these diversities. Through these combinatorial approaches, we have identified potential candidates such as, Pseudomonas, Acinetobacter, Stenotrophomonas, Achromobacter, Paraburkholderia, Comamonas and Klebsiella and associated functional genes (arsB, acr3, arsD, arsH, arsR) that could significantly contribute to arsenite detoxification, accumulation, and immobilization.ConclusionsCulture-dependent and -independent shotgun metagenomic investigation elucidated arsenotrophic microbiomes and their functions in As biogeochemical transformation. These findings laid a foundation for further large-scale researches on the arsenotrophic microbiomes and their concurrent functions in As biogeochemical transformation in As-contaminated areas of Bangladesh and beyond.
【 授权许可】
CC BY
© BioMed Central Ltd., part of Springer Nature 2023
【 预 览 】
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