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各种聚合材料生物损伤的真菌微生物群。

Fungal microbiota of biodamages of various polymeric materials.

作者信息

Bagiyan Valeri, Ghazanchyan Narine, Khachaturyan Nune, Gevorgyan Sona, Barseghyan Sona, Davidyan Tamara, Chitchyan Karine

机构信息

Microbial Depository Center of the Scientific and Production Center of "Armbiotechnology" of NAS RA, Yerevan, 0056, Armenia.

出版信息

Braz J Microbiol. 2024 Dec;55(4):3251-3260. doi: 10.1007/s42770-024-01547-z. Epub 2024 Oct 23.

Abstract

Data on microbial fouling of various synthetic polymer materials, including those used in space technology, are summarized. It has been established that the dominant groups of microbiota of polymer fouling are the genera of mitosporous fungi Aspergillus, Penicillium, Alternaria, Trichoderma. The enzymatic properties of fungal strains from the collection of microbial cultures of the Microbial Depository Center of the National Academy of Sciences of Armenia were studied. It has been shown that Aspergillus fumigatus, Penicillium chrysogenum, P. steckii, Juxtiphoma eupyrena and a number of other fungi have biofouling activity towards polyethylene, polyethylene terephthalate and some other synthetic polymers. New fungal kits have been developed and proposed to evaluate the fungal resistance of polymeric materials. They include fungi isolated from bio-damaged polymers used in space technology and contain 2 to 5 fungal strains instead of 7 to 9 strains in previously used kits. Taking into account the obtained data, a comparative assessment of the fungal resistance of samples of synthetic polymeric materials of various classes that passed accelerated climatic tests has been carried out. It has been established that the kits of biodegradant fungi, composed of cultures of bio-damaged space technology, generally exceeded the activity of the previously used kits, based on which one can judge the obvious advantages of strains isolated from bio-damaged space technology. In the future, these kits could find application not only for biodegradation of polymers, but also for testing the biostability of various polymers, to use for the construction of aviation and space techniques. Moreover, new optimized kits may be developed based on the strains involved in this study.

摘要

总结了包括用于航天技术的各种合成聚合物材料的微生物污染数据。已确定聚合物污染的主要微生物群是分生孢子真菌属曲霉属、青霉属、链格孢属、木霉属。对亚美尼亚国家科学院微生物保藏中心微生物培养物收集中的真菌菌株的酶学性质进行了研究。结果表明,烟曲霉、产黄青霉、斯氏青霉、真核近聚壳霉和其他一些真菌对聚乙烯、聚对苯二甲酸乙二酯和其他一些合成聚合物具有生物污染活性。已开发并提出了新的真菌试剂盒来评估聚合物材料的抗真菌性。它们包括从航天技术中使用的生物受损聚合物中分离出的真菌,并且包含2至5个真菌菌株,而不是先前使用的试剂盒中的7至9个菌株。考虑到所获得的数据,对经过加速气候试验的各类合成聚合物材料样品的抗真菌性进行了比较评估。已确定,由生物受损航天技术培养物组成的生物降解真菌试剂盒的活性通常超过先前使用的试剂盒,据此可以判断从生物受损航天技术中分离出的菌株具有明显优势。未来,这些试剂盒不仅可用于聚合物的生物降解,还可用于测试各种聚合物的生物稳定性,以用于航空和航天技术的构建。此外,可基于本研究中涉及的菌株开发新的优化试剂盒。

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