Literature DB >> 32253628

Enrichment and key features of a robust and consistent indigenous marine-cognate microbial consortium growing on oily bilge wastewaters.

Melina Nisenbaum1, Georgina Corti-Monzón2, Marcela Villegas-Plazas3, Howard Junca3, Adriana Mangani4, María L Patat5, Jorge F González6, Silvia E Murialdo6.   

Abstract

Oily bilge wastewater (OBW) is a hazardous hydrocarbon-waste generated by ships worldwide. In this research, we enriched, characterized and study the hydrocarbon biodegradation potential of a microbial consortium from the bilges of maritime ships. The consortium cZ presented a biodegradation efficiency of 66.65% for total petroleum hydrocarbons, 72.33% for aromatics and 97.76% removal of n-alkanes. This consortium showed the ability to grow in OBWs of diverse origin and concentration. A 67-fold increase in biomass was achieved using a Sequential Batch Reactor with OBW as the only carbon and energy source. The bacterial community composition of the enriched OBW bacterial consortium at the final stable stage was characterized by 16S amplicon Illumina sequencing showing that 25 out of 915 of the emerged predominant bacterial types detected summed up for 84% of total composition. Out of the 140 taxa detected, 13 alone accumulated 94.9% of the reads and were classified as Marinobacter, Alcanivorax, Parvibaculum, Flavobacteriaceae, Gammaproteobacteria PYR10d3, Novispirillum and Xanthomonadaceae among the most predominant, followed by Thalassospira, Shewanella, Rhodospirillaceae, Gammaprotobacteria, Rhodobacteriaceae and Achromobacter. The microbial community from OBW bioreactor enrichments is intrinsically diverse with clear selection of predominant types and remarkably exhibiting consistent and efficient biodegradation achieved without any nutrient or surfactant addition. Due to there is very little information available in the OBW biodegradation field, this work contributes to the body of knowledge surrounding the treatment improvement of this toxic waste and its potential application in wastewater management.

Entities:  

Keywords:  Biodegradation; Consortium; Hydrocarbons; Microbiome; Oily bilge wastewater

Year:  2020        PMID: 32253628     DOI: 10.1007/s10532-020-09896-w

Source DB:  PubMed          Journal:  Biodegradation        ISSN: 0923-9820            Impact factor:   3.909


  2 in total

1.  Degradation characteristics of crude oil by a consortium of bacteria in the existence of chlorophenol.

Authors:  Jing Li; Qiyou Liu; Shuo Sun; Xiuxia Zhang; Xiuying Zhao; Junlong Yu; Wu Cui; Yi Du
Journal:  Biodegradation       Date:  2022-06-21       Impact factor: 3.731

2.  Complete Genome Analysis of Rhodococcus opacus S8 Capable of Degrading Alkanes and Producing Biosurfactant Reveals Its Genetic Adaptation for Crude Oil Decomposition.

Authors:  Yanina Delegan; Kirill Petrikov; Ekaterina Frantsuzova; Natalia Rudenko; Viktor Solomentsev; Nataliya Suzina; Vasili Travkin; Inna P Solyanikova
Journal:  Microorganisms       Date:  2022-06-07
  2 in total

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