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Synthesis of Glycols by Microbial Transformation of Some Monocyclic Terpenes

机译:通过一些单环萜烯的微生物转化合成乙二醇

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The transformation of three monocyclic terpenes by three soil microorganisms have been studied. The organisms were isolated on, and grew rapidly in, mineral salts medium containing the appropriate terpene substrates as sole carbon sources. These organisms belong to the class Fungi Imperfecti, and two of them have been tentatively identified as Cladosporium species. A Cladosporium species designated T1 was isolated from terpene-soaked soil, using 1-menthene as the sole source of carbon. The major catabolic product isolated from the growth medium of this organism was found to be a cyclic 1,2-diol identified as trans-p-methane-1,2-diol. A similar but biochemically distinct Cladosporium sp. designated T7 was isolated on D-limonene. After growth, the medium of this organism contained 1.5 g/liter of the analogous product, trans-limonene-1,2-diol. Minor quantities of the corresponding cis-1,2-diol were also isolated. The third organism, designated as laboratory culture T8, was isolated on 3-menthene and yielded a diol identified as trans-p-menthane-3,4-diol. From these results it is concluded that the formation of diols is a common intermediate in the fungal metabolism of monocyclic terpenes.
机译:研究了三种土壤微生物对三种单环萜烯的转化。生物体在含有适当萜烯底物作为唯一碳源的矿物盐培养基上分离并快速生长。这些生物属于不完全真菌类,其中两个已被初步鉴定为枝孢菌属物种。使用1-薄荷烯作为唯一碳源,从被萜烯浸透的土壤中分离出一种名为T1的枝孢菌。从该生物的生长培养基中分离出的主要分解代谢产物被发现是被鉴定为反-对-甲烷-1,2-二醇的环状1,2-二醇。相似但生化上不同的Cladosporium sp。在D-柠檬烯上分离了指定的T7。生长后,该生物的培养基含有1.5 g /升的类似产物反式柠檬烯-1,2-二醇。还分离出少量的相应的顺式1,2-二醇。在3-薄荷烯上分离出第三种生物,命名为实验室培养物T8,得到鉴定为反-对-薄荷烷3,4-二醇的二醇。从这些结果可以得出结论,二醇的形成是单环萜烯真菌代谢中的常见中间体。

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