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Response surface methodology for optimizing process parameters for the mass production of Beauveria bassiana conidiospores

机译:用于优化白僵菌分生孢子大规模生产工艺参数的响应面方法

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Beauveria bassiana?is an insect pathogenic fungus and is currently being exploited as an effective commercial mycoinsecticide. Solid state fermentation is the most efficient way to mass produce?B. bassiana?conidiospores on solid substrates. Statistical optimization strategy was adopted to maximize the conidia production through solid state fermentation. Four substrates viz., rice (polished), crushed sorghum, wheat bran and rice bran at variable moisture content and yeast extract concentration were used. A full factorial central composite design was used to design the experiment and response surface method was used to study the optimal parameters required for large scale production. Optimization of the two most important factors like moisture content and yeast extract concentration at varied levels conferred best conidial yield of 28.8 × 109?/gm for the mixed substrate rice + wheat bran at 35% moisture content and 1.5% yeast extract concentration.
机译:球孢白僵菌是一种昆虫致病性真菌,目前正被用作一种有效的商业杀真菌剂。固态发酵是批量生产的最有效方法?固体基质上的鲈鱼分生孢子。采用统计优化策略以最大程度地通过固态发酵生产分生孢子。使用了四种底物,分别是可变水分含量和酵母提取物浓度的大米(抛光的),碾碎的高粱,麦麸和米糠。采用全因子中心复合设计设计实验,并使用响应面法研究大规模生产所需的最佳参数。水分含量和酵母提取物浓度在两个不同水平上的两个最重要因素的优化,在水分含量为35%和酵母提取物浓度为1.5%的情况下,混合底物大米和麦麸的最佳分生孢子产量为28.8×109?/ g。

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