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佛罗里达侧耳与蛹虫草属间杂种多糖的气相色谱-质谱联用分析:一项比较研究

GC-MS Analysis of Polysaccharides from an Intergeneric Hybrid of Pleurotus florida and Cordyceps militaris: A Comparative Study.

作者信息

Meshram Varsha, Thakur Prachi, Jadhav Shailesh Kumar, Chandrawanshi Nagendra Kumar

机构信息

School of Studies in Biotechnology, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh, 492 010, India.

St. Thomas College, Ruabandha, Bhilai, Durg, Chhattisgarh, 490 006, India.

出版信息

Appl Biochem Biotechnol. 2025 Mar;197(3):1805-1830. doi: 10.1007/s12010-024-05121-z. Epub 2024 Nov 29.

Abstract

Edible and medicinal mushrooms are valuable sources of polysaccharides, known for their dual roles as immunostimulants and immunosuppressants. This study aimed to enhance polysaccharide content by fusing two mushroom species, P. florida and C. militaris, while exploring their antioxidant and antibacterial potential. These mushrooms have diverse health benefits, including lowering high cholesterol, providing anti-inflammatory effects, supporting diabetes management, aiding in cancer treatment, and enhancing the efficacy of COVID-19 vaccines. Successful hyphal fusion was achieved, and optimal culture conditions were determined using response surface methodology. The hybrids exhibited superior growth compared to the parental strains. Hyphal fusion improved several attributes, resulting in diverse hybrids with increased biomass and metabolite production. FTIR analysis confirmed the presence of exopolysaccharides, with concentrations measured at 28.4 g/L (P1), 31.50 g/L (CD), and 36.74 g/L (F3). GC-MS analysis identified various bioactive metabolites, including a higher concentration of dimethyl palmitamine in the hybrid, a novel compound, butanenitrile, 2-(methoxymethoxy), which was not found in the parental strains. These compounds are likely responsible for the enhanced antimicrobial and antioxidant activities.

摘要

食用和药用蘑菇是多糖的宝贵来源,以其作为免疫刺激剂和免疫抑制剂的双重作用而闻名。本研究旨在通过融合两种蘑菇物种佛罗里达侧耳(P. florida)和柱状田头菇(C. militaris)来提高多糖含量,同时探索它们的抗氧化和抗菌潜力。这些蘑菇具有多种健康益处,包括降低高胆固醇、提供抗炎作用、支持糖尿病管理、辅助癌症治疗以及增强新冠疫苗的效力。实现了成功的菌丝融合,并使用响应面法确定了最佳培养条件。与亲本菌株相比,杂种表现出更好的生长。菌丝融合改善了几个特性,产生了具有增加的生物量和代谢产物产量的多样化杂种。傅里叶变换红外光谱(FTIR)分析证实了胞外多糖的存在,其浓度分别为28.4克/升(P1)、31.50克/升(CD)和36.74克/升(F3)。气相色谱-质谱联用(GC-MS)分析鉴定了各种生物活性代谢产物,包括杂种中较高浓度的二甲基棕榈胺,一种新化合物2-(甲氧基甲氧基)丁腈,在亲本菌株中未发现。这些化合物可能是抗菌和抗氧化活性增强的原因。

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