A comprehensive review on chromium (Cr) contamination and Cr(VI)-resistant extremophiles in diverse extreme environments
- PMID: 37046169
- DOI: 10.1007/s11356-023-26624-y
A comprehensive review on chromium (Cr) contamination and Cr(VI)-resistant extremophiles in diverse extreme environments
Abstract
Chromium (Cr) compounds are usually toxins and exist abundantly in two different forms, Cr(VI) and Cr(III), in nature. Their contamination in any environment is a major problem. Many extreme environments including cold climate, warm climate, acidic environment, basic/alkaline environment, hypersaline environment, radiation, drought, high pressure, and anaerobic conditions have accumulated elevated Cr contamination. These harsh physicochemical conditions associated with Cr(VI) contamination damage biological systems in various ways. However, several unique microorganisms belonging to phylogenetically distant taxa (bacteria, fungi, and microalgae) owing to different and very distinct physiological characteristics can withstand extremities of Cr(VI) in different physicochemical environments. These challenging situations offer great potential and extended proficiencies in extremophiles for environmental and biotechnological applications. On these issues, the present review draws attention to Cr(VI) contamination from diverse extreme environmental regions. The study gives a detailed account on the ecology and biogeography of Cr(VI)-resistant microorganisms in inhospitable environments, and their use for detoxifying Cr(VI) and other applications. The study also focuses on physiological, multi-omics, and genetic engineering approaches of Cr(VI)-resistant extremophiles.
Keywords: Chromium; Chromium detoxification; Ecology and biogeography; Extremophile; Harsh physical situations; Microorganisms.
© 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
References
-
- Abed RM, Shanti M, Muthukrishnan T, Al-Riyami Z, Pracejus B, Moraetis D (2020) The role of microbial mats in the removal of hexavalent chromium and associated shifts in their bacterial community composition. Front Microbiol 11:12. https://doi.org/10.3389/fmicb.2020.00012 - DOI
-
- Abo-Alkasem MI, Maany DA, El-Abd MA, Ibrahim AS (2022) Bioreduction of hexavalent chromium by a novel haloalkaliphilic Salipaludibacillus agaradhaerens strain NRC-R isolated from hypersaline soda lakes. 3 Biotech 12(1):1–15. https://doi.org/10.1007/s13205-021-03082-2 - DOI
-
- Aguilar-Barajas E, Paluscio E, Cervantes C, Rensing C (2008) Expression of chromate resistance genes from Shewanella sp. strain ANA-3 in Escherichia coli. FEMS Microbiol Lett 285(1):97–100. https://doi.org/10.1111/j.1574-6968.2008.01220.x - DOI
-
- Aksu Z, Akpinar D (2001) Competitive biosorption of phenol and chromium (VI) from binary mixtures onto dried anaerobic activated sludge. Biochem Eng J 7(3):183–193 - DOI
-
- Amadi AN, Olasehinde PI, Yisa J, Okosun EA, Nwankwoala HO, Alkali YB (2012) Geostatistical assessment of groundwater quality from coastal aquifers of Eastern Niger Delta, Nigeria. Geosciences 2(3):51–59
Publication types
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
