Department of Molecular Biology and Biotechnology, Atomic Energy Commission of Syria, Damascus, Syria.
Appl Biochem Biotechnol. 2010 Nov;162(6):1626-34. doi: 10.1007/s12010-010-8944-x. Epub 2010 Apr 10.
Fungi are well known for their ability to excrete enzymes into the environment. The aim of this work was to evaluate xylanase production by fungi isolated from soil. One hundred and thirty-six fungal isolates were screened for xylanase production. Two xylanase producing isolates, FSS117 and FSS129, were identified on the basis of analyses of 5,8S gene sequencing. The closest phylogenetic neighbors according to 5,8S gene sequence data for the two isolates were Aspergillus tubingensis and Aspergillus terreus, respectively. When birchwood xylan or corn cob hulls was used as a substrate for 5 days under submerged culture cultivation, xylanase production from A. terreus FSS129 was 113 and 174 IU ml(-1), respectively. The pH and temperature for optimum xylanase activity were 8 and 65 degrees C.
真菌以能够向环境中分泌酶而著称。本工作旨在评估从土壤中分离出的真菌产木聚糖酶的能力。从 136 株真菌分离株中筛选出木聚糖酶产生菌。根据 5.8S 基因测序分析,从两种产木聚糖酶的分离株 FSS117 和 FSS129 中鉴定出两种产木聚糖酶的分离株。根据 5.8S 基因序列数据,这两个分离株的最接近的系统发育近缘种分别是土曲霉和构巢曲霉。当在液体深层培养中以桦木木聚糖或玉米芯外壳作为底物培养 5 天时,来自构巢曲霉 FSS129 的木聚糖酶的产量分别为 113 和 174IU/ml。木聚糖酶活性的最适 pH 和温度分别为 8 和 65°C。