| Literature DB >> 22583489 |
Hélvia W Casullo de Araújo1,2, Marta Cristina de Freitas Siva2, Clarissa I Matos Lins2,3, Aline Elesbão do Nascimento2, Carlos Alberto Alves da Silva2,4, Galba M Campos-Takaki2,4.
Abstract
BACKGROUND: The desulphurization of dibenzothiophene (DBT), a recalcitrant thiophenic fossil fuel component by Serratia marcescens (UCP 1549) in order for reducing the Sulphur content was investigated. The Study was carried out establishing the growth profile using Luria Bertani medium to different concentrations of DBT during 120 hours at 28°C, and orbital Shaker at 150 rpm.Entities:
Year: 2012 PMID: 22583489 PMCID: PMC3503566 DOI: 10.1186/1754-6834-5-33
Source DB: PubMed Journal: Biotechnol Biofuels ISSN: 1754-6834 Impact factor: 6.040
Kinetic of growth of (UCP 1549) on the absence and different concentrations of dibenzothiophene (DBT), using Luria Bertani medium at 28°C, 150 rpm
| 0.324 | 2.12 | |
| 0.150 | 4.60 | |
| 0.110 | 6.27 | |
| 0.050 | 13.80 |
*Without DBT.
Figure 1Growth profile of the S in Luria Bertani (LB) containing 0.0 0.5, 1.0 and 2.0 mM DBT, under orbital agitation 150 rpm, at 28°C during 144 hours.
Figure 2strain by transmission electron microscopy [[19]] (A); Electron micrographs of (UCP1549) and shown high electron density points in the cell surface (x 20.000)-(B).
Kinetic of removal dibenzothiophene (DBT) by S during the growth in Luria Bertani medium
| – | – | – | – | |
| 0.038 | 50.00 | 100 | 100 | |
| 0.022 | 84.30 | 97.80 | 100 | |
| 0.038 | 98.00 | 99.05 | 100 | |
*Without DBT-(0% of DBT removal).
Figure 3Mass spectrogram of the metabolite formed in the degradation of 2 mM of dibenzothiophene DBT by SUCP (1549) at 20°C. Transformation of biphenyl (m/z = 154). (A) - conversion in 90% of biphenyl to 11.3 min for 16 hours of fermentation, (B) - 100% of biphenyl in 24 hours of fermentation, (C) - 100% of biphenyl in 144 hours of fermentation.
Figure 4Proposed (so called 4S) pathway for DBT desulfurization by (UCP 1549). The DBT desulfurization pathway results: (1) dibenzothiophene, (2) dibenzothiophene oxide, (3) dibenzothiophene dioxide, (4) sulfinato phenyl phenol, (5) hydroxyphenyl (6) biphenyl. The structure on parentheses is the metabolite detected, other structures are suggested, not detected.