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首页> 外文期刊>Journal of applied microbiology >ORIGINAL ARTICLE: Degradation of mikan (Japanese mandarin orange) peel by a novel Penicillium species with cellulolytic and pectinolytic activity
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ORIGINAL ARTICLE: Degradation of mikan (Japanese mandarin orange) peel by a novel Penicillium species with cellulolytic and pectinolytic activity

机译:原始文章:具有纤维素分解和果胶分解活性的新型青霉菌种对mikan(日本柑桔)果皮的降解

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Aims:The mikan, or Japanese mandarin orange, is a popular fruit in Japan, but its peel is one of the major agricultural wastes. The aims of this study were to screen, isolate, and characterize a mikan peel-degrading microbe. Methods and Results:Several samples including activated sludge, sediment, compost and spoiled mikan peel were collected and cultured in a minimal salt medium containing mikan peel as the sole carbon source. Degradation activity was found in a culture of the spoiled mikan peel, and a fungal strain, designated OP1, with both cellulolytic and pectinolytic activity was isolated. No toxic metabolites, such as mycotoxins, were found in OP1 cultures, as evaluated by gas chromatography/mass spectrometry. A phylogenetic analysis strongly suggested that OP1 is a novel species of the genus Penicillium. Conclusions:Results suggest that Penicillium sp. OP1 plays an important role in aerobic microbial degradation of cellulose/pectin-rich biomasses in soil ecology, and further imply that this strain may be useful for both simultaneous cellulase/pectinase production and reduction of agricultural waste. Significance and Impact of the Study:The present results advance our understanding of microbial degradation of cellulose/pectin-rich biomasses in the natural environment, and offer a new tool for reduction of agricultural waste, which is important for sustaining circulatory societies.
机译:目的:mikan,或日本橘子,在日本很受欢迎,但其果皮是主要的农业废料之一。这项研究的目的是筛选,分离和表征可降解微生物的微生物。方法和结果:收集了包括活性污泥,沉淀物,堆肥和变质的mikan果皮在内的数个样品,并在以mikan果皮为唯一碳源的基本盐培养基中培养。在变质的mikan果皮的培养物中发现降解活性,并分离了具有纤维素分解和果胶分解活性的真菌菌株OP1。通过气相色谱/质谱法评估,OP1培养物中未发现有毒代谢产物,例如霉菌毒素。系统发育分析强烈建议OP1是青霉属的一种新物种。结论:结果表明青霉属。 OP1在土壤生态系统中富含纤维素/果胶的生物质的好氧微生物降解中起重要作用,并且进一步暗示该菌株可用于同时生产纤维素酶/果胶酶和减少农业废弃物。研究的意义和影响:本研究结果提高了我们对自然环境中富含纤维素/果胶的生物质的微生物降解的理解,并为减少农业废弃物提供了新的工具,这对于维持循环社会至关重要。

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