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温度降低会诱导从喜马拉雅土壤中分离到的耐冷青霉 GEU_37 产生生物活性红色素。

A reduction in temperature induces bioactive red pigment production in a psychrotolerant Penicillium sp. GEU_37 isolated from Himalayan soil.

机构信息

Department of Biotechnology, Graphic Era (Deemed to be University), Dehradun, 248002, Uttarakhand, India.

Biotechnology Division, CSIR-Institute of Himalayan Bioresource Technology, Palampur, 176061, India.

出版信息

Fungal Biol. 2023 Mar;127(3):927-937. doi: 10.1016/j.funbio.2023.01.008. Epub 2023 Jan 25.

Abstract

Filamentous fungi are being globally explored for the production of industrially important bioactive compounds including pigments. In the present study, a cold and pH tolerant fungus strain Penicillium sp (GEU_37), isolated from the soil of Indian Himalaya, is characterized for the production of natural pigments as influenced by varying temperature conditions. The fungal strain produces a higher sporulation, exudation, and red diffusible pigment in Potato Dextrose (PD) at 15 °C as compared to 25 °C. In PD broth, a yellow pigment was observed at 25 °C. While measuring the effect of temperature and pH on red pigment production by GEU_37, 15 °C and pH 5, respectively, were observed to be the optimum conditions. Similarly, the effect of exogenous carbon and nitrogen sources and mineral salts on pigment production by GEU_37 was assessed in PD broth. However, no significant enhancement in pigmentation was observed. Chloroform extracted pigment was separated using thin layer chromatography (TLC) and column chromatography. The two separated fractions i.e., fractions I and II with Rf values 0.82 and 0.73, exhibited maximum light absorption, λ, at 360 nm and 510 nm, respectively. Characterization of pigments using GC-MS showed the presence of the compounds such as phenol, 2,4-bis (1,1-dimethylethyl) and eicosene from fraction I and derivatives of coumarine, friedooleanan, and stigmasterole in fraction II. However, LC-MS analysis detected the presence of derivatives of compound carotenoids from fraction II as well as derivative of chromenone and hydroxyquinoline as major compounds from both the fractions along with other numerous important bioactive compounds. The production of such bioactive pigments under low temperature conditions suggest their strategic role in ecological resilience by the fungal strain and may have biotechnological applications.

摘要

丝状真菌正在全球范围内被探索用于生产工业上重要的生物活性化合物,包括色素。在本研究中,从印度喜马拉雅山土壤中分离到的耐冷和耐酸的真菌Penicillium sp(GEU_37)菌株,其生产天然色素的特性受不同温度条件的影响。与 25°C 相比,该真菌菌株在 15°C 的马铃薯葡萄糖(PD)培养基中产生更高的孢子形成、渗出和红色可扩散色素。在 PD 培养基中,在 25°C 时观察到黄色色素。在测量温度和 pH 值对 GEU_37 产生红色色素的影响时,分别观察到 15°C 和 pH 5 是最佳条件。同样,在 PD 培养基中评估了外源碳、氮源和矿物质盐对 GEU_37 色素生产的影响,但未观察到明显的增强。使用薄层层析(TLC)和柱层析分离氯仿提取的色素。用薄层色谱(TLC)和柱色谱分离出的两种分离级分,即 Rf 值分别为 0.82 和 0.73 的级分 I 和 II,在 360nm 和 510nm 处分别表现出最大光吸收λ。使用 GC-MS 对色素进行的表征表明,级分 I 中存在化合物如酚、2,4-双(1,1-二甲基乙基)和二十碳烯,以及级分 II 中存在香豆素、friedooleanan 和豆甾醇的衍生物。然而,LC-MS 分析检测到级分 II 中存在类胡萝卜素衍生物以及色酮和羟基喹啉的衍生物作为主要化合物,以及来自两个级分的其他许多重要生物活性化合物。在低温条件下生产这种生物活性色素表明它们在真菌菌株的生态弹性中具有战略作用,并可能具有生物技术应用。

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