| Literature DB >> 24288534 |
Anish Kumari Bhuwal1, Gulab Singh, Neeraj Kumar Aggarwal, Varsha Goyal, Anita Yadav.
Abstract
Background.Entities:
Year: 2013 PMID: 24288534 PMCID: PMC3830821 DOI: 10.1155/2013/752821
Source DB: PubMed Journal: Int J Biomater ISSN: 1687-8787
Figure 1(a) Pink/orange florescence under UV light by PHB producer isolate NAP11. (b) No florescence under UV light by Non-PHB producer with Nile blue A staining by viable colony method.
List of PHA accumulating bacteria with source of isolation.
| Name of isolate | Source of isolate | Gram reaction | PHA concentration (g/L) | PHA content (%) |
|---|---|---|---|---|
| NAP11 | Pulp industry sludge | +ve | 5.236 | 79.27 ± 0.3 |
| NAP4 | Pulp industry sludge | +ve | 3.682 | 65.75 ± 0.2 |
| NAW2 | Waste water from cardboard manufacturing industry | −ve | 4.012 | 76.26 ± 0.26 |
| NAW24 | Waste water from cardboard manufacturing industry | +ve | 4.018 | 62.90625 ± 0.11 |
| NAW19 | Waste water from cardboard manufacturing industry | +ve | 3.824 | 59.52 ± 0.34 |
| NAW23 | Waste water from cardboard manufacturing industry | +ve | 3.63 | 58.54839 ± 0.27 |
| NAW27 | Waste water from cardboard manufacturing industry | −ve | 2.966 | 51.13793 ± 0.16 |
| NAW34 | Waste water from cardboard manufacturing industry | +ve | 1.61 | 40.25 ± 0.18 |
| NAC1 | Waste sludge from cardboard manufacturing industry | −ve | 4.042 | 77.63 ± 0.3 |
| NAC24 | Waste sludge from cardboard manufacturing industry | +ve | 4.006 | 65.75 ± 0.12 |
| NAC10 | Waste sludge from cardboard manufacturing industry | −ve | 3.97 | 64.80 ± 0.16 |
| NAC9 | Waste sludge from cardboard manufacturing industry | +ve | 3.802 | 70.92 ± 0.13 |
| NAC12 | Waste sludge from cardboard manufacturing industry | +ve | 3.682 | 68.28 ± 0.04 |
| NAK8 | Kraft industry sludge | +ve | 3.83 | 71.53571 ± 0.05 |
| NAK31 | Kraft industry sludge | +ve | 3.366 | 62.33 ± 0.13 |
| NAK17 | Kraft industry sludge | +ve | 3.184 | 63.68 ± 0.18 |
|
| MTCC | −ve | 2.974 | 41.86 ± 0.1 |
Figure 2Comparison of PHB production from selected isolates with Ralstonia eutropha.
Morphological and biochemical characters of selected isolates.
| Morphological characters | NAP11 | NAC1 |
|---|---|---|
| Colony color | White | Cream |
| Colony texture | Smooth | Smooth-elevated |
| Gram reaction | +ve | −ve |
| Cell shape | Cocci-shaped | Rod-shaped |
| Cell arrangement | Chain | Chain |
| Spore formation | −ve | −ve |
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| Biochemical tests | ||
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| Citrate utilization test | −ve | −ve |
| Indole test | +ve | +ve |
| Methyl red test | −ve | −ve |
| V-P test | −ve | −ve |
| H2S production test | +ve | +ve |
| Amylase production test | −ve | −ve |
| Sucrose | +ve | −ve |
| Dextrose | +ve | +ve |
| Mannitol | +ve | +ve |
| Trehalose | +ve | +ve |
| D-Arabinose | −ve | −ve |
| Maltose | +ve | +ve |
| Glucose | +ve | +ve |
| Raffinose | +ve | +ve with gas production |
| Xylose | −ve | −ve |
| Sorbitol | −ve | −ve |
| Lactose | −ve | −ve |
| Mannose | −ve | −ve |
| Fructose | +ve | −ve |
| Ribose | −ve | −ve |
| Inulin | −ve | −ve |
| Esculin | −ve | −ve |
| Mellibiose | −ve | −ve |
| Ramanose | −ve | −ve |
Figure 31H NMR spectra of extracted PHB from isolates: (a) PHB standard (PHB Sigma Aldrich), (b) NAP11, and (c) NAC1.
Figure 4FTIR graph of extracted polymer of (a) NAP11 and (b) NAC1 isolates.
Figure 5GC/MS analysis of poly(3HB) purified from NAP11 and NAC1 isolates. (a) GC of NAP11 showing main peak at 13.667 min of 3HB dimer. (b) GC of NAC1 showing main peak at 13.667 min of 3HB dimer and 3 other peaks indicating the presence of 3HV in the purified polymer. (c) MS graph showing that the major peak at m/z 73 is of hexadecanoic acid.