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Multi-component thermostable cellulolytic enzyme production by Aspergillus niger HN-1 using pea pod waste: Appraisal of hydrolytic potential with lignocellulosic biomass

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논문

Multi-component thermostable cellulolytic enzyme production by Aspergillus niger HN-1 using pea pod waste: Appraisal of hydrolytic potential with lignocellulosic biomass

학술지

Process biochemistry

저자명

Sharma, R.; Rawat, R.; Bhogal, R.S.; Oberoi, H.S.

초록

Solid state fermentation with pea pod waste and Aspergillus niger HN-1 resulted in filter paper cellulase (FP) and &beta;-glucosidase (BGL) activity of 30FPU/gds and 270U/gds, respectively. Validation with the response surface optimized parameters (moisture content: 65%, pH 6.0, temperature: 33<SUP>o</SUP>C, time: 84h) in a solid-state tray fermentation enhanced FP and BGL activity by about 40 and 28%, respectively. Multi-component enzyme from A. niger HN-1 produced FP, BGL, endoglucanase (EG), cellobiohydrolase (CBHI), xylanase, &alpha;-l-arabinofuranosidase, &beta;-xylosidase and xylan esterase with activities of 41.07+/-2.11FPU/gds, 345.69+/-17.1, 480.3+/-21.5, 52.1+/-1.5, 2800.5+/-88.4, 88.1+/-9.3, 280.8+/-11.4 and 3321.7+/-14.8U/gds, respectively. Enzyme was optimally active at temperature and pH of 55<SUP>o</SUP>C and 5.0, respectively and demonstrated thermostability by retaining >95% activity for 6h at 55<SUP>o</SUP>C. SDS-PAGE showed the presence of 11 protein bands with molecular mass ranging between 20 and 200kDa, while zymogram revealed the presence of multiple forms of EG, CBH and BGL with varying molecular mass. Hydrolysis of sweet sorghum bagasse at relatively high substrate loading (15%, w/v) with crude enzyme at 20FPU/gds in thermostatically controlled glass reactor led to conversion of 82-91% of holocellulose to fermentable sugars in just 24h as evident from HPLC analysis, showing promise for the reported enzyme in bioprocessing applications.

발행연도

2015

발행기관

Elsevier Applied Science

ISSN

1359-5113

50

5

페이지

pp.696-704

주제어

Aspergillus niger HN-1; Cellulolytic enzymes; Hydrolysis; Pea pod waste; Response surface methodology; Sweet sorghum bagasse

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논문; 2015-05-01

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