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An ASP Application in Integrative Biology: Identification of Functional Gene Units

机译:ASP在整合生物学中的应用:功能基因单位的鉴定

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Integrating heterogeneous knowledge is necessary to elucidate the regulations in biological systems. In particular, such an integration is widely used to identify functional units, that are sets of genes that can be triggered by the same external stimuli, as biological stresses, and that are linked to similar responses of the system. Although several models and algorithms shown great success for detecting functional units on well-known biological species, they fail in identifying them when applied to more exotic species, such as extremophiles, that are by nature unrefined. Indeed, approved methods on unrefined models suffer from an explosion in the number of solutions for functioned units, that are merely combinatorial variations of the same set of genes. This paper overcomes this crucial limitation by introducing the concept of "genome segments". As a natural extension of recent studies, we rely on the declarative modeling power of answer set programming (ASP) to encode the identification of shortest genome segments (SGS). This study shows, via experimental evidences, that SGS is a new model of functional units with a predictive power that is comparable to existing methods. We also demonstrate that, contrary to existing methods, SGS are stable in (ⅰ) computational time and (ⅱ) ability to predict functional units when one deteriorates the biological knowledge, which simulates cases that occur for exotic species.
机译:整合异类知识对于阐明生物系统中的法规是必不可少的。尤其是,这种整合被广泛用于识别功能单元,这些功能单元是可以由相同的外部刺激(如生物学压力)触发的基因集,并与系统的相似响应相关联。尽管几种模型和算法在检测已知生物物种上的功能单元方面显示出了巨大的成功,但当将其应用于自然界中尚未精炼的更多外来物种(例如极端微生物)时,它们无法识别它们。实际上,未经批准的模型的批准方法遭受功能单元解决方案数量激增的困扰,这些功能仅仅是同一组基因的组合变体。本文通过引入“基因组片段”的概念克服了这一关键限制。作为最近研究的自然延伸,我们依靠答案集编程(ASP)的声明式建模能力来编码最短基因组片段(SGS)的识别。这项研究通过实验证据表明,SGS是功能单元的新模型,具有与现有方法相当的预测能力。我们还证明,与现有方法相反,SGS在(ⅰ)计算时间和(ⅱ)预测功能单元(当一个人的生物学知识变差时可以预测功能单元)的能力方面保持稳定,从而可以模拟外来物种的发生情况。

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