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Xylanase production by Aspergillus awamori under solid state fermentation conditions on tomato pomace

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논문

Xylanase production by Aspergillus awamori under solid state fermentation conditions on tomato pomace

학술지

Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology]

저자명

Umsza-Guez, Marcelo A.; Dí az, Ana B.; de Ory, Ignacio; Blandino, Ana; Gomes, Eleni; Caro, Ildefonso

초록

<P>In this work, tomato pomace, a waste abundantly available in the Mediterranean and other temperate climates agro-food industries, has been used as raw material for the production of some hydrolytic enzymes, including xylanase, exo-polygalacturonase (exo-PG), cellulase (CMCase) and &alpha;-amylase. The principal step of the process is the solid state fermentation (SSF) of this residue by <I>Aspergillus awamori</I>. In several laboratory experiments, maximum xylanase and exo-PG activities were measured during the first days of culture, reaching values around 100 and 80 IU/gds (international units of enzyme activity per gram of dried solid), respectively. For CMCase and &alpha;-amylase production remained almost constant along fermentation, with average values of 19 and 21.5 IU/gds, respectively. Experiments carried out in a plate-type bioreactor at lab scale showed a clear positive effect of aeration on xylanase and CMCase, while the opposite was observed for exo-PG and &alpha;-amylase. In general, xylanase was the enzyme produced in higher levels, thus the optimum conditions for the determination of the enzyme activity was characterized. The xylanase activity shows an optimum pH of 5 and an optimum temperature of 50 ºC. The enzyme is activated by Mg<SUP>2+</SUP>, but strongly inhibited by Hg<SUP>2+</SUP> and Cu<SUP>2+</SUP>. The enzymatic activity remains quite high if the extract is preserved in a range of pH from 3 to 10 and a temperature between 30 ºC to 40 ºC.</P>

발행연도

2011

발행기관

Sociedade Brasileira de Microbiologia

라이선스

cc-by-nc

ISSN

1517-8382

ISSN

1678-4405

42

4

페이지

pp.1585-1597

주제어

Solid state fermentation (SSF); tomato pomace; hydrolytic enzymes; plate-type bioreactor; xylanase production

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논문; 2011-12-01

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