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Functionalized para-substituted benzenes as 1,8-cineole production modulators in an endophytic Nodulisporium species

机译:官能化对替代的苯并在内生肌孢菌物种中为1,8-桉树植物

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A Nodulisporium species (designated Ti-13) was isolated as an endophyte from Cassia fistula. The fungus produces a spectrum of volatile organic compounds (VOCs) that includes ethanol, acetaldehyde and 1,8-cineole as major components. Initial observations of the fungal isolate suggested that reversible attenuation of the organism via removal from the host and successive transfers in pure culture resulted in a 50?% decrease in cineole production unrelated to an overall alteration in fungal growth. A compound (CPM1) was obtained from Betula pendula (silver birch) that increases the production of 1,8-cineole by an attenuated Ti-13 strain to its original level, as measured by a novel bioassay method employing a 1,8-cineole-sensitive fungus (Sclerotinia sclerotiorum). The host plant produces similar compounds possessing this activity. Bioactivity assays with structurally similar compounds such as ferulic acid and gallic acid suggested that the CPM1 does not act as a simple precursor to the biosynthesis of 1,8-cineole. NMR spectroscopy and HPLC-ES-MS indicated that the CPM1 is a para-substituted benzene with alkyl and carboxyl substituents. The VOCs of Ti-13, especially 1,8-cineole, have potential applications in the industrial, fuel and medical fields.
机译:糖尿病种类(指定的TI-13)被分离为来自Cassia Fistula的内心细胞。真菌产生挥发性有机化合物(VOC)的光谱,其包括乙醇,乙醛和1,8-鳞状作为主要组分。真菌分离物的初步观察表明,通过从宿主和纯培养中的连续转移中除去生物体的可逆衰减导致50μm的曲调产生减少与真菌生长的整体变化无关。从Betula侧链(银桦)获得化合物(CPM1),其通过衰减的Ti-13菌株增加1,8-肺部的产量,其通过采用1,8-鞘翅的新型生物测定方法测量 - 敏感真菌(Sclerotinia sclerotiorum)。宿主植物产生具有该活性的类似化合物。具有结构上类似化合物的生物活性测定,例如阿魏酸和神经酸,表明CPM1不作为1,8-鞘内的生物合成的简单前体。 NMR光谱和HPLC-ES-MS表明CPM1是具有烷基和羧基取代基的对副取代的苯。 TI-13,尤其是1,8- Cineole的VOC,具有工业,燃料和医疗领域的潜在应用。

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