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A High Diversity in Chitinolytic and Chitosanolytic Species and Enzymes and Their Oligomeric Products Exist in Soil with a History of Chitin and Chitosan Exposure

机译:具有几丁质和壳聚糖暴露史的土壤中存在高度的壳多糖和壳聚糖分解物种和酶及其寡聚产物多样性

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摘要

Chitin is one of the most abundant biomolecules on earth, and its partially de-N-acetylated counterpart, chitosan, is one of the most promising biotechnological resources due to its diversity in structure and function. Recently, chitin and chitosan modifying enzymes (CCMEs) have gained increasing interest as tools to engineer chitosans with specific functions and reliable performance in biotechnological and biomedical applications. In a search for novel CCME, we isolated chitinolytic and chitosanolytic microorganisms from soils with more than ten-years history of chitin and chitosan exposure and screened them for chitinase and chitosanase isoenzymes as well as for their patterns of oligomeric products by incubating their secretomes with chitosan polymers. Of the 60 bacterial strains isolated, only eight were chitinolytic and/or chitosanolytic, while 20 out of 25 fungal isolates were chitinolytic and/or chitosanolytic. The bacterial isolates produced rather similar patterns of chitinolytic and chitosanolytic enzymes, while the fungal isolates produced a much broader range of different isoenzymes. Furthermore, diverse mixtures of oligosaccharides were formed when chitosan polymers were incubated with the secretomes of select fungal species. Our study indicates that soils with a history of chitin and chitosan exposure are a good source of novel CCME for chitosan bioengineering.
机译:甲壳质是地球上最丰富的生物分子之一,由于其结构和功能的多样性,它的部分脱N-乙酰化的壳聚糖是最有前途的生物技术资源之一。近年来,作为在生物技术和生物医学应用中工程改造具有特定功能和可靠性能的壳聚糖的工具,几丁质和壳聚糖修饰酶(CCME)引起了越来越多的兴趣。在寻找新型CCME的过程中,我们从与甲壳素和壳聚糖接触已有十年历史的土壤中分离了壳多糖和壳聚糖微生物,并通过将分泌素与壳聚糖一起孵育,筛选了它们的壳多糖酶和壳聚糖酶同工酶及其寡聚产物模式。聚合物。在分离的60个细菌菌株中,只有8个是壳多糖和/或壳聚糖溶解的,而25个真菌分离株中有20个是壳多糖和/或壳聚糖分解的。细菌分离物产生了类似的壳多糖和壳聚糖分解酶模式,而真菌分离物则产生了范围更广的不同同工酶。此外,当将脱乙酰壳多糖聚合物与某些真菌物种的分泌组一起孵育时,形成了各种低聚糖混合物。我们的研究表明,具有几丁质和壳聚糖暴露史的土壤是壳聚糖生物工程新CCME的良好来源。

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