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Computational discovery and in vivo validation of hnf4 as a regulatory gene in planarian regeneration

机译:hnf4作为涡虫再生调控基因的计算发现和体内验证

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Motivation: Automated computational methods can infer dynamic regulatory network models directly from temporal and spatial experimental data, such as genetic perturbations and their resultant morphologies. Recently, a computational method was able to reverse-engineer the first mechanistic model of planarian regeneration that can recapitulate the main anterior-posterior patterning experiments published in the literature. Validating this comprehensive regulatory model via novel experiments that had not yet been performed would add in our understanding of the remarkable regeneration capacity of planarian worms and demonstrate the power of this automated methodology.
机译:动机:自动化的计算方法可以直接从时间和空间实验数据(例如遗传扰动及其产生的形态)推断动态调节网络模型。最近,一种计算方法能够逆向工程第一个平面模型,该模型可以概括文献中发表的主要前后图案实验。通过尚未进行的新颖实验来验证这种全面的调控模型,将有助于我们进一步了解the虫的非凡再生能力,并证明这种自动化方法的强大功能。

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