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Diesel in Antarctica and a Bibliometric Study on Its Indigenous Microorganisms As Remediation Agent

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Publisher MDPI
Date 2021 Feb 10
PMID 33562609
Citations 8
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Abstract

Diesel acts as a main energy source to complement human activities in Antarctica. However, the increased expedition in Antarctica has threatened the environment as well as its living organisms. While more efforts on the use of renewable energy are being done, most activities in Antarctica still depend heavily on the use of diesel. Diesel contaminants in their natural state are known to be persistent, complex and toxic. The low temperature in Antarctica worsens these issues, making pollutants more significantly toxic to their environment and indigenous organisms. A bibliometric analysis had demonstrated a gradual increase in the number of studies on the microbial hydrocarbon remediation in Antarctica over the year. It was also found that these studies were dominated by those that used bacteria as remediating agents, whereas very little focus was given on fungi and microalgae. This review presents a summary of the collective and past understanding to the current findings of Antarctic microbial enzymatic degradation of hydrocarbons as well as its genotypic adaptation to the extreme low temperature.

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References
1.
Baraniecki C, Aislabie J, Foght J . Characterization of Sphingomonas sp. Ant 17, an aromatic hydrocarbon-degrading bacterium isolated from Antarctic soil. Microb Ecol. 2002; 43(1):44-54. DOI: 10.1007/s00248-001-1019-3. View

2.
Macoustra G, King C, Wasley J, Robinson S, Jolley D . Impact of hydrocarbons from a diesel fuel on the germination and early growth of subantarctic plants. Environ Sci Process Impacts. 2015; 17(7):1238-48. DOI: 10.1039/c4em00680a. View

3.
Gran-Scheuch A, Fuentes E, Bravo D, Jimenez J, Perez-Donoso J . Isolation and Characterization of Phenanthrene Degrading Bacteria from Diesel Fuel-Contaminated Antarctic Soils. Front Microbiol. 2017; 8:1634. PMC: 5581505. DOI: 10.3389/fmicb.2017.01634. View

4.
Varjani S . Microbial degradation of petroleum hydrocarbons. Bioresour Technol. 2016; 223:277-286. DOI: 10.1016/j.biortech.2016.10.037. View

5.
Xaaldi Kalhor A, Movafeghi A, Mohammadi-Nassab A, Abedi E, Bahrami A . Potential of the green alga Chlorella vulgaris for biodegradation of crude oil hydrocarbons. Mar Pollut Bull. 2017; 123(1-2):286-290. DOI: 10.1016/j.marpolbul.2017.08.045. View