Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH

Biotechnol Biotechnol Equip. 2014 Jul 4;28(4):635-642. doi: 10.1080/13102818.2014.947725. Epub 2014 Oct 21.

Abstract

The aim of this study was to elucidate the role, the space distribution and the relationships of the bacteria from the genus Pseudomonas in a biofilm community during semi-continuous Amaranth decolourization process in model sand biofilters. The examined parameters of the process were as follows: technological parameters; key enzyme activities (azoreductase, succinate dehydrogenase, catechol-1,2-dioxygenase, catechol-2,3-dioxygenase); the number of azo-degrading bacteria and the bacteria from genus Pseudomonas (plate count technique); the amount and the location of Pseudomonas sp. using fluorescent in situ hybridization (FISH). The results showed that the increase of the Amaranth removal rate with 120% was accompanied with increase of the enzyme activities of the biofilm (azoreductase activity - with 25.90% and succinate dehydrogenase - with 10.61%). The enzyme assays showed absence of activity for сatechol-1,2-dioxygenase and catechol-2,3-dioxygenase at the early phase and high activities of the same oxygenases at the late phase (2.76 and 1.74 μmol/min mg protein, respectively). In the beginning of the process (0-191 h), the number of the culturable microorganisms from genus Pseudomonas was increased with 48.76% but at the late phase (191-455 h) they were decreased with 15.25% while the quantity of the non-culturable bacteria from this genus with synergetic relationships was increased with 23.26%. The dominant microbial factors were identified in the structure of the biofilm during the azo-degradation process by using FISH analysis. Furthermore, the inner mechanisms for increase of the rate and the range of the detoxification were revealed during the complex wastewater treatment processes.

Keywords: Amaranth; Pseudomonas sp.; fluorescent in-situ hybridization; non-culturable bacteria; technological parameters; wastewater treatment.

Grants and funding

This investigation has been supported financially by the National Scientific Fund at the Bulgarian Ministry of Education, Youth and Science [grant number DO02-294], [grant number BУ-Х-302], [grant number DMU03-56]; Scientific Fund of Sofia University ‘St. Kliment Ohridski’ [grant number 48/2013], [grant number 142/2014].