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  5. Site-Specific Hydrocarbon-Degrading Bacteria Consortium Developed Using Functional and Genomic Analyses

Site-Specific Hydrocarbon-Degrading Bacteria Consortium Developed Using Functional and Genomic Analyses

Author(s)
Lelli, Davide
Russo, Cristina
Liberati, Dario
De Angelis, Paolo  
Petruccioli, Maurizio  
more
Date Issued
February 6, 2026
Type
article
text::journal::journal article
Volume
16
Issue
3
DOI
10.3390/app16031671
ISSN
2076-3417
Journal
APPLIED SCIENCES  
Abstract
Bioaugmentation, defined as the strategic incorporation of specifically selected microbial biomass into contaminated environments, can significantly enhance the biodegradation of pollutants and is extensively employed in soil bioremediation efforts. A multistep screening process was applied to develop an autochthonous microbial consortium, including (i) hydrocarbonoclastic strain isolation from soil chronically contaminated with petroleum hydrocarbons, (ii) bacterial selection according to genomic and functional traits, and (iii) consortium validation in the native contaminated soil through microcosm experiments. The selection of strains with the ability to degrade alkanes and aromatic hydrocarbons on synthetic media was further supported by genomic analysis, delivering a consortium with complementary degradative properties. The outcomes of the microcosm experiments corroborated the efficacy of the selected indigenous consortium, demonstrating that the combination of Acinetobacter guillouiae, A. radioresistens, and Pseudomonas zarinae as an inoculum in the bioaugmentation strategy was successful in achieving the removal of up to 26% and 76% of linear and polycyclic aromatic hydrocarbons, respectively, thereby effectively addressing areas where natural attenuation was insufficient.
Subjects

bioaugmentation

hydrocarbonoclastic c...

genomic analysis

bio-treatability test...

Handle
https://dspace.unitus.it/handle/2067/65255
File(s)
Thumbnail Image
Name

applsci-16-01671-v2.pdf

Size

1.27 MB

Format

Adobe PDF

Checksum (MD5)

abdd6603791a43ebda005370951df00b

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