The potential of several agricultural wastes and by-products (wheat bran, oat bran, corn cob, brewer’s spent grain, malt sprout, artichoke stem, sugar beet pulp, olive seed, cotton stalk and hazelnut skin) was examined as the substrate for xylanase production by Aureobasidium pullulans Y-2311-1. Based on the screening studies, wheat bran was selected as the best substrate for further optimization studies. The effects of initial medium pH, temperature and incubation time on xylanase production in shake flask system were optimized by response surface methodology (RSM). The optimum levels of the process variables defined by the model (initial medium pH, 4.24; temperature, 30.27 °C; and incubation time 126.67 h) resulted in production of 85.19 ...
Fungi producing high xylanase levels have attracted considerable attention because of their potenti...
Xylanase production by Penicillium chrysogenum PCL501, newly isolated from wood-wastes, was monitor...
Response surface methodology (RSM) was performed to evaluate the effects of cultivation time, pH and...
WOS: 000398594100040The potential of several agricultural wastes and by-products (wheat bran, oat br...
The xylanase biosynthesis is induced by its substrate—xylan. The high xylan content in some wastes s...
WOS: 000402012500002PubMed ID: 27537074Statistical optimization of the factors affecting xylanase pr...
Agro-industrial residues are lignocellulosic materials with a high content of cellulose, hemicellul...
Xylanolytic enzymes were produced by Aspergillus niger NRRL3 grown on agro-industrial by-products ob...
Xylanases are important in producing several commercially valued bioproducts. In this study, xylanas...
282-289Production of xylanase from agro-industrial by-product such as wheat straw has been optimize...
Plant cell walls are composed mainly of cellulose (40—45%),hemicellulose (30—35%) and lig...
Xylanase production by wild-type Aspergillus niger ANL301, newly isolated from wood-waste, was moni...
Xylanase was produced by Aspergillus niger LPB 326 cultivated on lignocellulosic substrate composed ...
Solid-state fermentation of sugarcane bagasse by Penicillium citrinum MTCC 2553 was optimized to max...
Xylanase production by wild-type Aspergillus niger ANL301, newly isolated from wood-waste, was monit...
Fungi producing high xylanase levels have attracted considerable attention because of their potenti...
Xylanase production by Penicillium chrysogenum PCL501, newly isolated from wood-wastes, was monitor...
Response surface methodology (RSM) was performed to evaluate the effects of cultivation time, pH and...
WOS: 000398594100040The potential of several agricultural wastes and by-products (wheat bran, oat br...
The xylanase biosynthesis is induced by its substrate—xylan. The high xylan content in some wastes s...
WOS: 000402012500002PubMed ID: 27537074Statistical optimization of the factors affecting xylanase pr...
Agro-industrial residues are lignocellulosic materials with a high content of cellulose, hemicellul...
Xylanolytic enzymes were produced by Aspergillus niger NRRL3 grown on agro-industrial by-products ob...
Xylanases are important in producing several commercially valued bioproducts. In this study, xylanas...
282-289Production of xylanase from agro-industrial by-product such as wheat straw has been optimize...
Plant cell walls are composed mainly of cellulose (40—45%),hemicellulose (30—35%) and lig...
Xylanase production by wild-type Aspergillus niger ANL301, newly isolated from wood-waste, was moni...
Xylanase was produced by Aspergillus niger LPB 326 cultivated on lignocellulosic substrate composed ...
Solid-state fermentation of sugarcane bagasse by Penicillium citrinum MTCC 2553 was optimized to max...
Xylanase production by wild-type Aspergillus niger ANL301, newly isolated from wood-waste, was monit...
Fungi producing high xylanase levels have attracted considerable attention because of their potenti...
Xylanase production by Penicillium chrysogenum PCL501, newly isolated from wood-wastes, was monitor...
Response surface methodology (RSM) was performed to evaluate the effects of cultivation time, pH and...