| Literature DB >> 24324893 |
Natalia Kmiecik1, Magdalena Klimek-Ochab, Małgorzata Brzezińska-Rodak, Paulina Majewska, Ewa Zymańczyk-Duda.
Abstract
Biodegradable capacities of fungal strains of Fusarium oxysporum (DSMZ 2018) and Fusarium culmorum (DSMZ 1094) were tested towards racemic mixture of chiral 2-hydroxy-2-(ethoxyphenylphosphinyl) acetic acid-a compound with two stereogenic centres. The effectiveness of decomposition was dependent on external factors such as temperature and time of the process. Optimal conditions of complete mineralization were established. Both Fusarium species were able to biodegrade every isomer of tested compound at 30°C, but F. culmorum required 10 days and F. oxysporum 11 days to accomplish the process, which was continuously monitored using the (31)P NMR technique.Entities:
Year: 2013 PMID: 24324893 PMCID: PMC3842079 DOI: 10.1155/2013/927361
Source DB: PubMed Journal: Biotechnol Res Int ISSN: 2090-3146
Figure 131P NMR spectra of substrate. (a) Without quinine; (b) with quinine.
Figure 231P NMR spectra of postbiotransformation mixtures recorded for Fusarium oxysporum used as biocatalysts (recorded without quinine).
Figure 331P NMR spectra (with the quinine addition) of postbiotransformation mixtures recorded for Fusarium oxysporum used as biocatalysts.
Figure 431P NMR spectra of postbiotransformation mixtures recorded for Fusarium culmorum biocatalysis.
Figure 531P NMR spectra of postbiotransformation mixtures, recorded for Fusarium culmorum and Fusarium oxysporum used as biocatalysts in biotransformation carried out under variable time conditions. Results recorded without (a) and with quinine (b).
Correlation between the biodegradation process duration and its effectiveness.
| Microorganisms | Time [h] | Conversion [%] |
|---|---|---|
|
| 72 | 42.4 |
| 144 | 91.54 | |
| 264 | 98.48 | |
|
| ||
|
| 120 | 10.02 |
| 192 | 79.04 | |
| 240 | 100 | |