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Optimization of exopolysaccharide production by pleurotus ostreatus using diffrent cultivation strategies

机译:利用不同培养策略优化平菇生产胞外多糖的方法

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摘要

Pleurotus ostreatus or known as oyster mushroom was regarded as one of the most cultivated mushroom around the world. One of the qualities it has is it able to produced exopolysaccharide called pleuran which secreted into the medium during submerged fermentation. The polysaccharide composed mainly of ß-(1/3)-D glucose and ß-(1/6)-D glucose linked by glycosidic bond. It has molecular weight of 2.4 X 104 Da with molecular formula of (C6H10O5)x The importance of pleuran is that it has the immunomodulatory properties that associated in triggering our immune system response. Nowadays, submerged fermentation is considered as the best method in cultivation this kind of mushroom. However, the production process of this kind of mushroom and its exopolysaccharide production especially in term of medium component is still unclear. In this research, the objectives were to optimize the medium composition and to find the optimum carbon to nitrogen (C: N) ratio for high exopolysaccharide production. Eight different media was screened and followed by factor by factor optimization of the medium component. The factors that been studied were ideal concentration of glucose, yeast extract, ammonium sulfate and dipotassium phosphate. Media number six which contain glucose 60.0 g L-1, yeast extract 2.0 g L-1, (NH4)2SO4 5.0 g L-1, MgSO4.7H2O 0.2 g L-1, K2HPO4 1.0 g L-1 was selected as best media production for P. ostreatus cultivation . The experiment then was further with different concentration of each component in the medium six excluding magnesium sulfate heptahydrate which maintained at 0.2 g L-1 throughout all the experiment stage. The range concentration for glucose, yeast extract, ammonium sulfate and dipotassium phosphate was setup between 0 – 120 g L-1, 0 – 4 g L-1, 0 – 5 g L-1 and 0 – 2 g L-1 respectively. In order to get the best C: N ratio for highest exopolysaccharide production, eleven ratio of carbon to nitrogen was experimented ranging from 15:1 to 65:1.Result shown that the optimum concentration for glucose, yeast extract, ammonium sulfate and dipotassium phosphate was 80.0, 4.0, 2.5 and 1.0 g L-1 respectively whiles the optimal C: N ratio recorded was 40: 1. The optimized medium also produced 2.83 g L-1 of exopolysaccharide increasingly up to 49 % when compared with un-optimized medium which only produced 1.9 g L-1 of exopolysaccharide.
机译:平菇或被称为牡蛎蘑菇被认为是世界上最栽培的蘑菇之一。它具有的一种特性是能够产生称为胸膜脂肪的胞外多糖,该多糖在浸入式发酵过程中会分泌到培养基中。多糖主要由通过糖苷键连接的ß-(1/3)-D葡萄糖和ß-(1/6)-D葡萄糖组成。它的分子量为2.4 X 104 Da,分子式为(C6H10O5)x。胸膜脂肪的重要性在于它具有与触发我们的免疫系统反应相关的免疫调节特性。如今,深层发酵被认为是栽培这种蘑菇的最佳方法。然而,这种蘑菇的生产过程及其胞外多糖的生产,尤其是在培养基成分方面仍不清楚。在这项研究中,目标是优化培养基组成,并找到高产量胞外多糖的最佳碳氮比(C:N)。筛选了八种不同的培养基,然后逐个因子优化培养基成分。研究的因素是葡萄糖,酵母提取物,硫酸铵和磷酸氢二钾的理想浓度。选择含有葡萄糖60.0 g L-1,酵母提取物2.0 g L-1,(NH4)2SO4 5.0 g L-1,MgSO44.7H2O 0.2 g L-1,K2HPO4 1.0 g L-1的第六种培养基作为最佳培养基生产平菇。然后进一步进行实验,在六种培养基中各成分的浓度不同,七水合硫酸镁除外,在整个实验阶段中七水合硫酸镁保持在0.2 g L-1。葡萄糖,酵母提取物,硫酸铵和磷酸氢二钾的浓度范围分别设置为0 – 120 g L-1、0 – 4 g L-1、0 – 5 g L-1和0 – 2 g L-1。为了获得最佳的C:N比例以产生最高的胞外多糖,对碳氮比进行了11个实验,范围为15:1至65:1。结果表明,葡萄糖,酵母提取物,硫酸铵和磷酸氢二钾的最佳浓度分别为80.0、4.0、2.5和1.0 g L-1,而记录的最佳C:N比为40:1。与未优化的培养基相比,优化的培养基还产生2.83 g L-1的胞外多糖,其含量高达49%仅产生1.9 g L-1胞外多糖。

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