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Basic Gene Grammars and DNA-ChartParser for language processing of Escherichia coli promoter DNA sequences.

机译:基本基因语法和DNA-ChartParser,用于大肠杆菌启动子DNA序列的语言处理。

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MOTIVATION: The field of 'DNA linguistics' has emerged from pioneering work in computational linguistics and molecular biology. Most formal grammars in this field are expressed using Definite Clause Grammars but these have computational limitations which must be overcome. The present study provides a new DNA parsing system, comprising a logic grammar formalism called Basic Gene Grammars and a bidirectional chart parser DNA-ChartParser. RESULTS: The use of Basic Gene Grammars is demonstrated in representing many formulations of the knowledge of Escherichia coli promoters, including knowledge acquired from human experts, consensus sequences, statistics (weight matrices), symbolic learning, and neural network learning. The DNA-ChartParser provides bidirectional parsing facilities for BGGs in handling overlapping categories, gap categories, approximate pattern matching, and constraints. Basic Gene Grammars and the DNA-ChartParser allowed different sources of knowledge for recognizing E.coli promoters to be combined to achieve better accuracy as assessed by parsing these DNA sequences in real-world data sets.
机译:动机:“ DNA语言学”的领域源于计算语言学和分子生物学的开创性工作。该领域中的大多数形式语法都是使用定语从句语法表示的,但是它们具有必须克服的计算限制。本研究提供了一种新的DNA解析系统,包括一个称为基本基因语法的逻辑语法形式主义和一个双向图表解析器DNA-ChartParser。结果:基本基因文法的使用被证明代表了许多大肠杆菌启动子的知识,包括从人类专家那里获得的知识,共有序列,统计量(权重矩阵),符号学习和神经网络学习。 DNA-ChartParser为BGG提供双向解析功能,以处理重叠类别,缺口类别,近似模式匹配和约束。基本基因语法和DNA-ChartParser允许将识别大肠杆菌启动子的不同知识来源组合在一起,以实现更好的准确性(通过在现实世界数据集中解析这些DNA序列进行评估)。

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