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The improvement of bioactive secondary metabolites accumulation in Rumex gmelini Turcz through co-culture with endophytic fungi

机译:通过与内参真菌共同培养的Rumex Gmelini turcz中生物活性次生代谢物积累的改善

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摘要

Abstract Aspergillus sp., Fusarium sp., and Ramularia sp. were endophytic fungi isolated from Rumex gmelini Turcz (RGT), all of these three strains could produce some similar bioactive secondary metabolites of their host. However the ability to produce active components degraded significantly after cultured these fungi alone for a long time, and were difficult to recover. In order to obtain more bioactive secondary metabolites, the co-culture of tissue culture seedlings of RGT and its endophytic fungi were established respectively, and RGT seedling was selected as producer. Among these fungi, Aspergillus sp. showed the most significant enhancement on bioactive components accumulation in RGT seedlings. When inoculated Aspergillus sp. spores into media of RGT seedlings that had taken root for 20 d, and made spore concentration in co-culture medium was 1 × 104 mL-1, after co-cultured for 12 d, the yield of chrysophaein, resveratrol, chrysophanol, emodin and physcion were 3.52-, 3.70-, 3.60-, 4.25-, 3.85-fold of the control group. The extreme value of musizin yield was 0.289 mg, which was not detected in the control groups. The results indicated that co-culture with endophytic fungi could significantly enhance bioactive secondary metabolites production of RGT seedlings.
机译:摘要曲霉菌sp。,镰刀菌sp。和ramularia sp。来自Rumex Gmelini Turcz(RGT)中分离的内生真菌,这三种菌株中的所有菌株都可以产生其宿主的一些类似的生物活性次生代谢物。然而,在长时间培养这些真菌后,产生活性成分的能力显着降低,并且难以恢复。为了获得更多的生物活性次级代谢物,分别建立了RGT的组织培养幼苗的共培养,并选择了RGT幼苗作为生产者。在这些真菌中,aspergillus sp。表现出最显着的增强RGT幼苗中的生物活性成分积累。当接种曲霉菌SP时。在共培养12d之后,在共培养培养基中捕获20d的RGT幼苗的介质,并在共培养培养基中孢子浓度为1×104mL-1,Chrysophaein,白藜芦醇,甲醇,大黄素和Physcion是3.52-,3.70-,3.60-,4.25-,3.85倍的对照组。麝香素产率的极值为0.289mg,在对照组中未检测到。结果表明,具有内生真菌的共培养可以显着提高RGT幼苗的生物活性次生代谢产物。

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