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OPTIMIZATION PROTOCOL OF BIOCHEMICAL NETWORKS FOR EFFECTIVE COLLABORATION BETWEEN INDUSTRIALISTS, BIOLOGISTS AND MODELLERS

机译:工业家,生物学家和主持人之间有效合作的生物化学网络优化协议

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Due to the growing number and size of biochemical network computer models an efficient co-operation among experts industrialists, biologists and modellers in industrial biotechnology is becoming a topical issue. In order to speed up the introduction of systems biology achievements into production an organism independent universal collaboration protocol is necessary incorporating a sequence of actions starting with a choice of criterion and model up to industrial tests. Protocol of cooperation of industrialists, biologists and modellers engineering the performance of a microorganism using systems biology approach to improve the efficiency of biotechnological process is developed. Method is described in form of an algorithm that consists of four consecutive stages starting with determination of the product of interest and optimization criteria and ending by an estimation of industrial process feasibility analysis taking into account the features of the available industrial equipment. Application of protocol in yeast glycolysis optimization is given as example. The protocol facilitates efficient resource usage and time savings in biochemical network optimization process due to rational sequence of operations and reduction of optimization duration.
机译:由于生化网络计算机模型的数量和规模不断增长,工业生物技术领域的专家,工业家,生物学家和建模人员之间的有效合作正成为一个热门话题。为了加快将系统生物学成果引入生产过程,必须有一个独立于有机体的通用协作协议,该协议包含一系列从选择标准和模型直到工业测试的动作序列。开发了使用系统生物学方法来提高生物技术过程效率的工业家,生物学家和建模者的合作协议,以对微生物的性能进行工程设计。以包括四个连续阶段的算法形式描述方法,该四个连续阶段从确定感兴趣的产品和优化标准开始,并在考虑到可用工业设备的特征的情况下,通过对工业过程可行性分析的估计来结束。以该方案在酵母糖酵解优化中的应用为例。由于合理的操作顺序和优化持续时间的减少,该协议有助于在生化网络优化过程中有效地利用资源并节省时间。

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