Krakowska Agata, Reczyński Witold, Muszyńska Bożena
Faculty of Materials Science and Ceramics, AGH University of Science and Technology, 30-059, Cracow, Poland.
Department of Pharmaceutical Botany, Jagiellonian University Collegium Medicum, Medyczna street 9, 30-688, Cracow, Poland.
Biol Trace Elem Res. 2016 Sep;173(1):231-40. doi: 10.1007/s12011-016-0638-y. Epub 2016 Feb 9.
Agaricus bisporus species (J.E. Lange) Imbach one of the most popular Basidiomycota species was chosen for the research because of its dietary and medicinal value. The presented herein studies included determination of essential mineral accumulation level in the mycelium of A. bisporus, cultivated on liquid cultures in the medium supplemented with addition of the chosen metals' salts. Quantitative analyses of Zn, Cu, Mg, and Fe in liquid cultures made it possible to determine the relationship between accumulation of the selected mineral in A. bisporus mycelium and the culture conditions. Monitoring of the liquid cultures and determination of the elements' concentrations in mycelium of A. bisporus were performed using the flame technique of AAS method. Concentration of Zn in the mycelium, maintained in the medium with the addition of its salt, was in a very wide range from 95.9 to 4462.0 mg/g DW. In the analyzed A. bisporus mycelium, cultured in the medium enriched with copper salt, this metal concentration changed from 89.79 to 7491.50 mg/g DW; considering Mg in liquid cultured mycelium (medium with Mg addition), its concentration has changed from 0.32 to 10.55 mg/g DW. The medium enriched with iron salts has led to bioaccumulation of Fe in mycelia of A. bisporus. Determined Fe concentration was in the range from 0.62 to 161.28 mg/g DW. The proposed method of liquid A. bisporus culturing on medium enriched with the selected macro- and microelements in proper concentrations ratio have led to obtaining maximal growth of biomass, characterized by high efficiency of the mineral accumulation. As a result, a dietary component of increased nutritive value was obtained.
双孢蘑菇(J.E. Lange)伊姆巴赫是最受欢迎的担子菌物种之一,因其饮食和药用价值而被选作研究对象。本文介绍的研究包括测定在添加了所选金属盐的培养基中液体培养的双孢蘑菇菌丝体中必需矿物质的积累水平。通过对液体培养物中的锌、铜、镁和铁进行定量分析,得以确定双孢蘑菇菌丝体中所选矿物质的积累与培养条件之间的关系。使用原子吸收光谱法(AAS)的火焰技术对液体培养物进行监测并测定双孢蘑菇菌丝体中的元素浓度。在添加了锌盐的培养基中培养的菌丝体中,锌的浓度范围非常宽,从95.9至4462.0毫克/克干重。在富含铜盐的培养基中培养的双孢蘑菇菌丝体中,这种金属的浓度从89.79变化到7491.50毫克/克干重;对于液体培养菌丝体中的镁(添加了镁的培养基),其浓度从0.32变化到10.55毫克/克干重。富含铁盐的培养基导致双孢蘑菇菌丝体中铁的生物积累。测定的铁浓度范围为0.62至161.28毫克/克干重。所提出的在富含适当浓度比例的所选大量和微量元素的培养基上液体培养双孢蘑菇的方法,导致获得了以高矿物质积累效率为特征的最大生物量增长。结果,获得了营养价值提高的饮食成分。