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Identification isolation and optimization of antifungal metabolites from the Streptomyces Malachitofuscus ctf9

机译:链霉菌链霉菌ctf9的抗真菌代谢产物的鉴定分离和优化

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摘要

An indigenous Streptomyces isolate CTF9, exhibiting promising antifungal activity against Mucor miehei and Candida albicans in pre-screening studies, was investigated by cultivation in a 50-L fermenter and by subsequent isolation, purification, and structure elucidation of the active metabolites. Based on the morphological, biochemical, and physiological characterization, as well as the 16S rRNA gene sequence, the isolate CTF9 was identified as Streptomyces malachitofuscus. Using a series of chromatographic techniques, two pure compounds were isolated from the obtained extracts after the fermentation of the isolate CTF9. The isolated compounds were identified as phenylacetic acid and indolyl-3-lactic acid by mass spectrometry (MS) and NMR analysis. The culture optimization studies revealed that the isolate CTF9 can use a variety of low-cost carbon and nitrogen sources to generate the maximum quantity of industrially important metabolites at an elevated temperature of 35°C and at a pH 7.8.
机译:通过在50 L发酵罐中进行培养以及随后的活性代谢物的分离,纯化和结构鉴定,研究了在筛选前研究中展现出对Mucor miehei和白色念珠菌具有抗真菌活性的原生链霉菌分离株CTF9。根据形态,生化和生理特征,以及16S rRNA基因序列,分离株CTF9被鉴定为疟原虫链霉菌。使用一系列色谱技术,在分离物CTF9发酵后,从获得的提取物中分离出两种纯净的化合物。通过质谱(MS)和NMR分析将分离出的化合物鉴定为苯乙酸和吲哚基-3-乳酸。培养优化研究表明,分离株CTF9可以使用多种低成本的碳和氮源,以在35°C的高温和pH 7.8的条件下产生最大量的工业重要代谢物。

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