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Effects of High Salt Stress on Secondary Metabolite Production in the Marine-Derived Fungus Spicaria elegans

机译:高盐胁迫对海洋衍生线虫Spicaria elegans次级代谢产物产生的影响

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摘要

To obtain structurally novel and bioactive natural compounds from marine-derived microorganisms, the effect of high salt stress on secondary metabolite production in the marine-derived fungal strain, Spicaria elegans KLA-03, was investigated. The organism, which was isolated from marine sediment, produced different secondary metabolites when cultured in 3% and 10% saline conditions. Four characteristic metabolites, only produced in the 10% salinity culture, were isolated, and their structures were identified as (2E,2′Z)-3,3′-(6,6′-dihydroxybiphenyl-3,3′-diyl)diacrylic acid (1), aspulvinone E (2), aspochalasin E (3) and trichodermamide B (6), according to their 1D and 2D NMR spectra. Compound 1 is a new compound. High salt stress may therefore be a promising means to induce the production of new and chlorinated compounds in halotolerant fungi. Compound 1 showed moderate antibacterial activity against Pseudomonas aeruginosa and Escherichia coli with minimum inhibitory concentration (MIC) values of 0.038 and 0.767 mM, respectively.
机译:为了从海洋微生物中获得结构新颖且具有生物活性的天然化合物,研究了高盐胁迫对海洋真菌Spicaria elegans KLA-03中次生代谢产物产生的影响。从海洋沉积物中分离出来的生物体在3%和10%的盐水条件下培养时会产生不同的次生代谢产物。分离出仅在10%盐度培养中产生的四种特征代谢物,其结构被鉴定为(2E,2'Z)-3,3'-(6,6'-二羟基联苯-3,3'-二基)根据它们的1D和2D NMR谱图,可以看到二丙烯酸(1),天冬酰胺E(2),天冬氨酸蛋白酶E(3)和曲霉酰胺B(6)。化合物1是新化合物。因此,高盐胁迫可能是在卤代耐性真菌中诱导产生新的和氯化的化合物的有前途的手段。化合物1对铜绿假单胞菌和大肠杆菌显示出中等抑菌活性,最小抑菌浓度(MIC)值分别为0.038和0.767 mM。

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