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.的生物学特性、人工驯化条件优化及生物活性成分

Biological Characteristics, Artificial Domestication Conditions Optimization, and Bioactive Components of .

作者信息

Cao Wang, Yu Changxia, Zhao Yan, Lin Qunying, Deng Chunying, Li Chuanhua

机构信息

Institute of Edible Fungi, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.

Nanjing Institute for Comprehensive Utilization of Wild Plants, China Co-ops, Nanjing 210110, China.

出版信息

Microorganisms. 2024 Jul 29;12(8):1554. doi: 10.3390/microorganisms12081554.

Abstract

In this study, one strain of was isolated from wild fruiting bodies collected from Guizhou Province, China, and its species identification, biological characteristics, domestication, and cultivation methods were studied along with polysaccharide and adenosine content analysis. The mycelia were identified by ITS sequencing, and the fruiting bodies of were domestically cultivated for the first time using wheat and rice as basic cultivation media. The carbon sources, nitrogen sources, cultivation temperatures, and pH for mycelial growth were optimized through single-factor experiments and response surface methodology (RSM) experiments. The polysaccharide content was detected by the phenol-sulfuric acid method, and the adenosine content was measured by high-performance liquid chromatography (HPLC). The results confirmed that the identified mycelia were . The optimum medium for solid culture was 25.8 g/L glycerol, 10.9 g/L yeast extract, 1 g/L MgSO·7HO, 1 g/L KHPO, 10 mg/L vitamin B, and 20 g/L agar; the optimum pH was 6.5, and the optimum culture temperature was 25 °C. The optimal liquid culture medium was 26.2 g/L glycerol, 11.1 g/L yeast extract, 1 g/L MgSO·7HO, 1 g/L KHPO, and 10 mg/L vitamin B; the mycelia grew well at pH 6.6 and 25 °C. The average biological efficiencies of fruiting bodies on wheat and rice as culture media were 1.880% and 2.115%, respectively; the polysaccharide contents of fruiting bodies on the two media were 6.635% and 9.264%, respectively, while the adenosine contents were 0.145% and 0.150%, respectively. This study provides a valuable reference for further artificial cultivation and utilization of by investigating its biological characteristics, cultivation conditions for artificial domestication, and polysaccharide and adenosine contents in cultivated fruiting bodies.

摘要

在本研究中,从中国贵州省采集的野生子实体中分离出一株[菌种名称缺失],并对其进行了物种鉴定、生物学特性研究、驯化及栽培方法研究,同时分析了多糖和腺苷含量。通过ITS测序鉴定菌丝体,并首次以小麦和大米作为基础栽培基质对[菌种名称缺失]的子实体进行驯化栽培。通过单因素实验和响应面法(RSM)实验优化了菌丝体生长的碳源、氮源、培养温度和pH值。采用苯酚-硫酸法检测多糖含量,用高效液相色谱法(HPLC)测定腺苷含量。结果证实鉴定出的菌丝体为[菌种名称缺失]。固体培养的最佳培养基为25.8 g/L甘油、10.9 g/L酵母提取物、1 g/L MgSO₄·7H₂O、1 g/L KH₂PO₄、10 mg/L维生素B和20 g/L琼脂;最佳pH值为6.5,最佳培养温度为25℃。最佳液体培养基为26.2 g/L甘油、11.1 g/L酵母提取物、1 g/L MgSO₄·7H₂O、1 g/L KH₂PO₄和10 mg/L维生素B;菌丝体在pH 6.6和25℃下生长良好。以小麦和大米为培养基的子实体平均生物学效率分别为1.880%和2.115%;两种培养基上子实体的多糖含量分别为6.635%和9.264%,而腺苷含量分别为0.145%和0.150%。本研究通过调查[菌种名称缺失]的生物学特性、人工驯化的栽培条件以及栽培子实体中的多糖和腺苷含量,为其进一步的人工栽培和利用提供了有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f0/11356643/a533e925396f/microorganisms-12-01554-g001.jpg

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