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Cellulolytic and xerophilic fungi from old manuscripts of European paper origin

机译:来自欧洲造纸起源的旧手稿的纤维素分解和Xerophilic真菌

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Keraton Kasepuhan Cirebon and the former library of Faculty of Humanities Universitas Indonesia have collections of old manuscripts of European paper origin from 19-20th centuries. This study investigated the cellulolytic and xerophilic characters of 22 fungal strains from nine deteriorated old manuscripts of European paper origin. Detection of cellulolytic fungi by using well diffusion method, modified Czapek's Dox Agar (CDA) with 0.1% (w/v) carboxymethyl cellulose (CMC) as a sole carbon source, 0.2% (w/v) Congo red as a chromogenic dye, and cell suspension of approximately 1×10~7 cell/mL. Cellulolytic fungi formed clear zones around the fungal colonies due to the radial diffusion of the enzyme excreted to the medium. Detection of xerophilic fungi by using Dichloran glycerol Agar (DG18) which contained 18% glycerol to reduce water availability in the medium. Fifteen fungal strains have the ability to use derivative cellulose in CMC as a sole carbon source indicating that these strains possessed endoglucanase (CMCase) activity. The action of cellulolytic enzyme from fungi could dissolve cellulose fibers, or might discolor the paper. All the fungal strains were xerophiles, which indicated that they were able to grow in manuscripts, a condition of reduced water activity. Further studies are required to determine exoglucanase activity by using crystalline cellulose, and molecular identification by using internal transcribed spacer (ITS) sequences to determine the species identities of the fungal strains.
机译:Keraton Kasepuhan Cirebon和前者的人文大学学院图书馆来自19-20世纪的欧洲造纸旧手稿。本研究调查了欧洲造纸起源的九个恶化旧手稿的22种真菌菌株的纤维素分解和血清菌特征。通过使用孔扩散法检测纤维素溶解性,用0.1%(w / v)羧甲基纤维素(CMC)作为唯一碳源,0.2%(w / v)刚果红色作为发色染料,和细胞悬浮液约为1×10〜7个细胞/ ml。由于酶排出到培养基的径向扩散,纤维素分解真菌在真菌菌落周围形成透明区域。使用含有18%甘油的二氯甘油琼脂(DG18)检测Xerophilic真菌,其含有18%甘油以降低培养基中的水可用性。十五个真菌菌株的能力在CMC中使用CMC中的衍生纤维素作为唯一的碳源,表明这些菌株具有内葡聚糖酶(CMCASE)活性。来自真菌的纤维素溶解酶的作用可以溶解纤维素纤维,或者可能会褪色纸张。所有真菌菌株都是辛维尔,表明它们能够在手稿中生长,一种降低水性活性的条件。需要进一步的研究来通过使用结晶纤维素来确定外葡聚糖酶活性,以及​​通过使用内部转录的间隔物(其)序列来确定真菌菌株的物种标识。

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