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To understand the adaptive mechanism of bioleaching microorganism Acidithiobacillus caldus MTH-04, its physiology and metabolic changes at the transcriptional level were systemically studied. The results of growth curves, SO content, pH and flow cytometry analyses indicated that the higher the NaCl concentration, the more the strain was inhibited. The transcriptome response of A. caldus to elevated NaCl concentrations included changes in carbon flux, elevated glutathione synthesis, alterations in cell wall and membrane composition, the down-regulation in genes involved in flagellar synthesis and rotation, the reduced energy generation through sulfur oxidation, and the up-regulation in genes involved in DNA and protein repair. Based on the transcriptome results, the effects of proline and glutathione on NaCl adaptation in A. caldus were analyzed separately. We found that either the exogenous addition of proline and glutathione or the intracellular overexpression of the enzymes responsible for the synthesis of these two substances contributed to the enhancement of the adaptive capacity of A. caldus under NaCl stress. The findings offer insight into the design of chloride-based techniques for the bioprocessing of minerals.
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http://dx.doi.org/10.1186/s12934-023-02232-w | DOI Listing |
J Appl Microbiol
August 2025
Department of Research and Innovation, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Thandalam, Chennai - 602105, India.
Aim: To decipher the bacterial community transitions of poultry litter at various time frames over a 6-week rearing cycle in a commercial broiler chicken poultry farm in Marakanam, Tamil Nadu, India.
Methods And Results: The bacterial consortia of poultry litter were elucidated using the 16S rRNA-based metagenomic Oxford nanopore sequencing method, followed by taxonomic assignment using the Kraken2 tool. Our findings unveiled the varied dominance patterns of bacteria in poultry litter (P1-P6) with Sphingobacterium sp.
J Hazard Mater
September 2025
Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, Jiangsu 214122, China. Electronic address:
Bioleaching is a critical approach for processing low-grade copper ores, relying on the "contact" mechanism mediated by microbial extracellular polymeric substance (EPS) secretion and biofilm formation. In the typical leaching microorganism Acidithiobacillus caldus, there is a transcriptional regulatory factor EpsR that regulates EPS secretion. It has a typical PilZ domain that binds cyclic diguanylate (c-di-GMP) and can sense Cu to relieve its own repression.
View Article and Find Full Text PDFFront Microbiol
May 2025
Institute for Biological and Medical Engineering, Schools of Engineering, Medicine & Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.
Biomining is a sustainable alternative to conventional mineral processing that uses acidophilic microorganisms to catalyze the extraction of valuable metals from sulfide minerals. Mixed microbial consortia composed of moderate thermophiles such as and some species improve metal extraction efficiency at higher temperatures compared to pure cultures of mesophiles. However, quorum sensing (QS), which regulates microbial interactions and likely influences bioleaching performance, has not been studied in these species.
View Article and Find Full Text PDFExtremophiles
November 2024
The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, People's Republic of China.
The cell membrane remodeling mediated by cyclopropane fatty acid synthase (CfaS) plays a crucial role in microbial physiological processes resisting various environmental stressors, including acid. Herein, we found a relatively high proportion (24.8%-28.
View Article and Find Full Text PDFMicrobiology (Reading)
July 2024
School of Biological Sciences, University of Edinburgh, Edinburgh, EH9 3FF, UK.
In recent years, the demand for lithium-ion batteries (LIBs) has been increasing rapidly. Conventional recycling strategies (based on pyro- and hydrometallurgy) are damaging for the environment and more sustainable methods need to be developed. Bioleaching is a promising environmentally friendly approach that uses microorganisms to solubilize metals.
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