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http://nopr.niscpr.res.in/handle/123456789/24482| Title: | A preliminary assessment of phenol tolerance and degradation by spent mycelium substrate (SMS) of novel edible mushroom Hypsizygus ulmarius |
| Authors: | Ranjini, R Padmavathi, T |
| Keywords: | Amylose;Cellulose;Hypsizygus ulmarius;Ligninolytic media;Non-ligninolytic media;Phenol Tolerance and Degradation;Spent Mycelium Substrate |
| Issue Date: | Dec-2013 |
| Publisher: | NISCAIR-CSIR, India |
| Abstract: | In assessing phenol tolerance and degradation using SMS of Hypsizygus ulmarius, growth media using amylose gave mycelial growth of 16.28 sq cm at 200 mg/L phenol; this was reduced to 11.22 sq cm and further to 10.62 sq cm when phenol was increased to 400 and 800 mg/L. There was growth reduction of 13.26% and 1.57% from 200 to 800 mg/L phenol. Tolerance to lower phenol concentrations was better (5 sq.cm) in non-ligninolytic (Nx10 Cx10) media, while ligninolytic (N/10 C/10) condition provided better tolerance (3.38 sq.cm) at higher concentrations. Excessive reduction or increase of nutrients increased growth (N/10 C/10 – 11.29 sq cm; Nx10 Cx10 - 9.07 sq cm). When cellulose was used, growth of 22.46 sq cm at 200 mg/L phenol got reduced to 16.96 sq cm at 400 mg/L, and negligible decrease thereafter. Growth reduced by 9.77% from 200 to 800 mg/L phenol. All variations of ligninolytic (N/2 C/2; N/10; N/2; C/2) media offered good tolerance (7.18 sq cm). There was 47.1% phenol degradation in ligninolytic media (N/10 C/10; N/2; N/10) using amylose, while it was only 21.3% in non-ligninolytic condition (Nx10 Cx10). Degradation decreased by 3.7% and 1.46% when phenol increased to 400 and 800 mg/L. Ligninolytic cellulose (N/2 C/2; N/2; N/10) media gave 67.05% degradation, while it was only 35.4% in non-ligninolytic condition (Nx10; Nx2 Cx2). There was 9% decrease in degradation when phenol increased to 400mg/L and negligible thereafter. Overall, there was reduction in tolerance and degradation when phenol was increased from 200 to 400 mg/L; it was negligible beyond 400mg/L. Ligninolytic media was suitable for enhanced tolerance and degradation; the maximum potential achieved when nitrogen was reduced to one-tenth of optimum level. Cellulose was the preferred carbon source for tolerance; while better degradation was achieved in amylose. There was high similarity of growth pattern in non-ligninolytic conditions of the two carbon sources, indicated by correlation value of 0.78. |
| Page(s): | 767-771 |
| ISSN: | 0975-1084 (Online); 0022-4456 (Print) |
| Appears in Collections: | JSIR Vol.72(12) [December 2013] |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| JSIR 72(12) 767-771.pdf | 369.62 kB | Adobe PDF | View/Open |
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