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Gene Expression and Fast Construction of Distributed Evolutionary Representation

机译:基因表达与分布式进化表示的快速构建

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The gene expression process in nature produces different proteins in different cells from different portions of the DNA. Since proteins control almost every important activity in a living organism, at an abstract level, gene expression can be viewed as a process that evaluates the merit or “fitness” of the DNA. This distributed evaluation of the DNA would not be possible without a decomposed representation of the fitness function defined over the DNAs. This paper argues that, unless the living body was provided with such a representation, we have every reason to believe that it must have an efficient mechanism to construct this distributed representation. This paper demonstrates polynomial-time computability of such a representation by proposing a class of efficient algorithms. The main contribution of this paper is two-fold. On the algorithmic side, it offers a way to scale up evolutionary search by detecting the underlying structure of the search space. On the biological side, it proves that the distributed representation of the evolutionary fitness function in gene expression can be computed in polynomial-time. It advances our understanding about the representation construction in gene expression from the perspective of computing. It also presents experimental results support-ing the theoretical performance of the proposed algorithms.
机译:自然界中的基因表达过程从DNA的不同部分在不同的细胞中产生不同的蛋白质。由于蛋白质在抽象的水平上几乎控制着生物体中的所有重要活动,因此基因表达可以看作是评估DNA优劣或“适合性”的过程。如果不分解表示在DNA上的适应度函数,就无法对DNA进行这种分布式评估。本文认为,除非为生物提供这样的表示,否则我们有充分的理由相信它必须具有构建这种分布式表示的有效机制。通过提出一类有效的算法,本文证明了这种表示的多项式时间可计算性。本文的主要贡献有两个方面。在算法方面,它提供了一种通过检测搜索空间的基础结构来扩展进化搜索的方法。在生物学方面,它证明了可以在多项式时间内计算基因表达中进化适应度函数的分布式表示。它从计算的角度提高了我们对基因表达的表征结构的理解。它还提供了支持所提出算法的理论性能的实验结果。

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