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Scatter Search Applied to the Inference of a Development Gene Network

机译:散点搜索在发展基因网络推断中的应用

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Efficient network inference is one of the challenges of current-day biology. Its application to the study of development has seen noteworthy success, yet a multicellular context, tissue growth, and cellular rearrangements impose additional computational costs and prohibit a wide application of current methods. Therefore, reducing computational cost and providing quick feedback at intermediate stages are desirable features for network inference. Here we propose a hybrid approach composed of two stages: exploration with scatter search and exploitation of intermediate solutions with low temperature simulated annealing. We test the approach on the well-understood process of early body plan development in flies, focusing on the gap gene network. We compare the hybrid approach to simulated annealing, a method of network inference with a proven track record. We find that scatter search performs well at exploring parameter space and that low temperature simulated annealing refines the intermediate results into excellent model fits. From this we conclude that for poorly-studied developmental systems, scatter search is a valuable tool for exploration and accelerates the elucidation of gene regulatory networks.
机译:高效的网络推理是当今生物学的挑战之一。它在发展研究中的应用取得了显着的成功,但是多细胞环境,组织生长和细胞重排增加了额外的计算成本,并阻碍了当前方法的广泛应用。因此,减少计算成本并在中间阶段提供快速反馈是网络推理的理想功能。在这里,我们提出了一种由两个阶段组成的混合方法:分散搜索探索和低温模拟退火中间解决方案的开发。我们以果蝇基因网络为研究对象,对果蝇早期身体计划制定过程的深入理解过程进行了测试。我们将混合方法与模拟退火进行了比较,模拟退火是一种具有可靠记录的网络推理方法。我们发现散点搜索在探索参数空间方面表现良好,并且低温模拟退火将中间结果提炼为出色的模型拟合。由此得出的结论是,对于研究不足的发育系统,散点搜索是探索的宝贵工具,可加速基因调控网络的阐明。

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