首页> 外文期刊>Journal of applied microbiology >Algorithm-based design of novel synthetic media for Metarhizium anisopliae simulating its nutritional conditions in the environment.
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Algorithm-based design of novel synthetic media for Metarhizium anisopliae simulating its nutritional conditions in the environment.

机译:基于算法的新型合成金属厌氧菌培养基的设计,可模拟其在环境中的营养状况。

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Aims: The objective of this study was to develop a novel synthetic growth medium for increased conidium production of the entompathogenic fungus Metarhizium anisopliae. The medium should simulate natural nutritional conditions. Methods and Results: Macro- and micronutrients were selected in concentrations found in insects or from sources which are believed to be advantageous for virulence. Medium development was guided by a problem-oriented genetic algorithm (GA) implemented with 'mutation' and 'recombination' operators specific for this optimization problem. Following five optimization steps and a total of 181 medium variations, 19 synthetic media led to increased conidium production as compared with the standard Sabouraud dextrose agar medium: increases in conidia yields of up to 120% and a 17-fold higher conidium production per square centimetre of mycelium were achieved. Rapid germination of conidia, conidial C:N ratio, as well as spore-bound Pr1 protease production were monitored as proposed quality control markers for a virulent inoculum. Conclusions: It was demonstrated that our problem-oriented GA is a powerful tool for the design of chemically defined cultivation media with special/enhanced properties for anamorphic fungi. Significance and Impact of the Study: This is the first study, which demonstrates the advantage of the use of a GA for the rapid design of solid synthetic media for maximum production of virulent conidia.
机译:目的:本研究的目的是开发一种新型的合成生长培养基,以提高昆虫致病性真菌Metanhizium anisopliae的分生孢子产生。培养基应模拟自然营养条件。方法和结果:大量和微量营养素的选择以昆虫中发现的浓度或从认为对毒力有利的来源中选择。培养基的开发是由面向问题的遗传算法(GA)指导的,该算法使用针对此优化问题的“变异”和“重组”算子实现。经过五个优化步骤和总共181种培养基后,与标准的Sabouraud葡萄糖琼脂培养基相比,有19种合成培养基导致了分生孢子产量增加:分生孢子产量提高了120%,每平方厘米的分生孢子产量提高了17倍获得了菌丝体。监测分生孢子的快速发芽,分生孢子的C:N比以及与孢子结合的Pr1蛋白酶的产生,将其作为强效接种物的拟议质量控制标记。结论:证明了我们的问题导向遗传算法是设计具有特定/增强性质的变形真菌的化学成分确定的培养基的强大工具。研究的意义和影响:这是第一项研究,证明了使用GA进行快速设计固体合成培养基以最大程度生产有毒分生孢子的优势。

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