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首页> 外文期刊>Microbiological Research >Disclosing a crypt: microbial diversity and degradation activity of the microflora isolated from funeral clothes of Cardinal Peter Pazmany.
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Disclosing a crypt: microbial diversity and degradation activity of the microflora isolated from funeral clothes of Cardinal Peter Pazmany.

机译:揭露土窖:从红衣主教彼得·帕兹曼尼的葬礼服分离出的微生物群的微生物多样性和降解活性。

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A crypt can be considered as a particular environment where different microbial communities contribute to decomposition of organic materials present inside during a long interval of time. The textile remains of the funeral clothes (biretta and tunic) of Cardinal Pazmany, an important historic figure dead in Bratislava the 19th March 1637, conserved in this kind of environment were subjected to microbial investigation. The sampling comprised three different approaches and the use of various kinds of cultivation media. Two different PCR-based clustering methods, f-ITS and f-CBH, were employed in order to select the bacterial and fungal microfloras which were identified in a second step by the 16S rRNA and ITS sequencing respectively. The isolated microflora was tested for its proteolytic, keratinolytic and cellulolytic activities and for its ability to grow on Fibroin agar medium. The combination of cultural, molecular and biodegradative assays was able to isolate and characterize a bacterial community composed mainly by members of the phyla Firmicutes and Actinobacteria. The fungal community appeared more diversified, together with several Penicillium and Aspergillus strains, members belonging to the species Beauveria bassiana, Eurotium cristatum, Xenochalara juniperi, Phialosimplex caninus and Myriodontium keratinophilum were isolated. Bacteria, especially the Bacillus members, showed their strong ability to degrade keratin and gelatin and a large portion of them was able to growth on Fibroin agar. The fungal isolates displayed a widespread cellulolytic activity and fibroin utilization, although they possessed a weaker and slower proteolytic and keratinolytic properties respect to bacterial counterpart. The present study can be considered perhaps as the first or among the few microbial investigations which treated the textile biodegradation from such unusual environment
机译:隐窝可以被认为是一种特殊的环境,在该环境中,不同的微生物群落会在很长一段时间内导致内部有机物质的分解。一个重要的历史人物红衣主教Pazmany的葬礼上的织物遗迹(比雷塔和中山装)于1637年3月19日在布拉迪斯拉发逝世,在这种环境下保存后,进行了微生物调查。抽样包括三种不同的方法以及各种栽培培养基的使用。为了选择细菌和真菌菌群,采用了两种不同的基于PCR的聚类方法f-ITS和f-CBH,分别在第二步中分别通过16S rRNA和ITS测序进行了鉴定。测试了分离的菌群的蛋白水解,角蛋白分解和纤维素分解活性,以及​​在丝心蛋白琼脂培养基上生长的能力。文化,分子和生物降解性检测的结合能够分离并鉴定主要由菌门和放线菌组成的细菌群落。真菌群落似乎更加多样化,并分离了几种青霉和曲霉菌株,它们分别属于球孢白僵菌,cr 、,草,Xenochalara juniperi,犬毛虫和角膜Myriodontium keratinophilum。细菌,特别是芽孢杆菌属细菌,显示出强大的降解角蛋白和明胶的能力,其中很大一部分能够在丝心蛋白琼脂上生长。真菌分离物表现出广泛的纤维素分解活性和纤维蛋白利用,尽管它们相对于细菌对应物具有较弱和较慢的蛋白水解和角蛋白分解特性。可以将本研究视为处理这种异常环境下的纺织品生物降解的微生物研究中的第一个或其中之一

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