Microbial Diversity of a Heavily Polluted Microbial Mat and Its Community Changes following Degradation of Petroleum Compounds

Author:

Abed Raeid M. M.12,Safi Nimer M. D.32,Köster Jürgen3,de Beer Dirk1,El-Nahhal Yasser2,Rullkötter Jürgen3,Garcia-Pichel Ferran4

Affiliation:

1. Max Planck Institute for Marine Microbiology, D-28359 Bremen

2. Environmental Protection and Research Institute, Gaza, Gaza Strip, Palestine

3. Institute for Chemistry and Biology of the Marine Environment, Carl von Ossietzky University of Oldenburg, D-26111 Oldenburg, Germany

4. Microbiology Department, Arizona State University, Tempe, Arizona 85287

Abstract

ABSTRACT We studied the microbial diversity of benthic cyanobacterial mats inhabiting a heavily polluted site in a coastal stream (Wadi Gaza) and monitored the microbial community response induced by exposure to and degradation of four model petroleum compounds in the laboratory. Phormidium- and Oscillatoria -like cyanobacterial morphotypes were dominant in the field. Bacteria belonging to different groups, mainly the Cytophaga - Flavobacterium - Bacteriodes group, the γ and β subclasses of the class Proteobacteria , and the green nonsulfur bacteria, were also detected. In slurry experiments, these communities efficiently degraded phenanthrene and dibenzothiophene completely in 7 days both in the light and in the dark. n -Octadecane and pristane were degraded to 25 and 34% of their original levels, respectively, within 7 days, but there was no further degradation until 40 days. Both cyanobacterial and bacterial communities exhibited noticeable changes concomitant with degradation of the compounds. The populations enriched by exposure to petroleum compounds included a cyanobacterium affiliated phylogenetically with Halomicronema . Bacteria enriched both in the light and in the dark, but not bacteria enriched in any of the controls, belonged to the newly described Holophaga - Geothrix - Acidobacterium phylum. In addition, another bacterial population, found to be a member of green nonsulfur bacteria, was detected only in the bacteria treated in the light. All or some of the populations may play a significant role in metabolizing the petroleum compounds. We concluded that the microbial mats from Wadi Gaza are rich in microorganisms with high biodegradative potential.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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