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通过香菇(Lentinus edodes)菌丝体的深层培养生产生物活性化合物香菇嘌呤。

Production of the bioactive compound eritadenine by submerged cultivation of shiitake (Lentinus edodes) mycelia.

作者信息

Enman Josefine, Hodge David, Berglund Kris A, Rova Ulrika

机构信息

Division of Biochemical and Chemical Process Engineering, Luleå University of Technology, SE-971 87 Luleå, Sweden.

出版信息

J Agric Food Chem. 2008 Apr 23;56(8):2609-12. doi: 10.1021/jf800091a. Epub 2008 Mar 26.

Abstract

Fruit bodies and mycelia of shiitake mushroom ( Lentinus edodes) have been shown to contain the cholesterol-reducing compound eritadenine, 2( R),3( R)-dihydroxy-4-(9-adenyl)butyric acid. In the search for a production method for eritadenine, shiitake mycelia were investigated in the present study. The mycelia were cultivated both in shake flasks and in bioreactors, to investigate the effects of pH, stirring rate, and reactor type on the production and distribution of eritadenine. Both the biomass and the culture broth were examined for their eritadenine content. In the shake flasks, the final concentration of eritadenine was 1.76 mg/L and eritadenine was equally distributed between the mycelia and the growth media. In the bioreactors, the shiitake mycelia were found to contain eritadenine in relatively low levels, whereas the majority, 90.6-98.9%, was detected in the growth media. Applying a stirring rate of 250 rpm during bioreactor cultivation resulted in the highest eritadenine concentrations: 10.23 mg/L when the pH was uncontrolled and 9.59 mg/L when the pH was controlled at 5.7. Reducing the stirring rate to 50 rpm resulted in a decreased eritadenine concentration, both at pH 5.7 (5.25 mg/L) and when pH was not controlled (5.50 mg/L). The mycelia in the shake flask cultures appeared as macroscopic aggregates, whereas mycelia cultivated in bioreactors grew more as freely dispersed filaments. This study demonstrates for the first time the extra- and intracellular distribution of eritadenine produced by shiitake mycelial culture and the influence of reactor conditions on the mycelial morphology and eritadenine concentrations.

摘要

香菇(Lentinus edodes)的子实体和菌丝体已被证明含有降胆固醇化合物香菇嘌呤,即2(R),3(R)-二羟基-4-(9-腺嘌呤基)丁酸。在寻找香菇嘌呤的生产方法时,本研究对香菇菌丝体进行了调查。在摇瓶和生物反应器中培养菌丝体,以研究pH值、搅拌速率和反应器类型对香菇嘌呤生产和分布的影响。对生物量和培养液中的香菇嘌呤含量进行了检测。在摇瓶中,香菇嘌呤的最终浓度为1.76 mg/L,且香菇嘌呤在菌丝体和生长培养基之间均匀分布。在生物反应器中,发现香菇菌丝体中香菇嘌呤的含量相对较低,而大部分(90.6-98.9%)存在于生长培养基中。在生物反应器培养过程中,采用250 rpm的搅拌速率可使香菇嘌呤浓度达到最高:pH值不受控制时为10.23 mg/L,pH值控制在5.7时为9.59 mg/L。将搅拌速率降至50 rpm会导致香菇嘌呤浓度降低,在pH值为5.7时(5.25 mg/L)以及pH值不受控制时(5.50 mg/L)均如此。摇瓶培养中的菌丝体呈现为宏观聚集体,而在生物反应器中培养的菌丝体则更多地以自由分散的细丝形式生长。本研究首次证明了香菇菌丝体培养产生的香菇嘌呤在细胞外和细胞内的分布情况,以及反应器条件对菌丝体形态和香菇嘌呤浓度的影响。

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