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The evolution of cellular computing: nature's solution to a computational problem.

机译:蜂窝计算的演进:自然界对计算问题的解决方案。

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摘要

How do cells and nature 'compute'? They read and 'rewrite' DNA all the time, by processes that modify sequences at the DNA or RNA level. In 1994, Adleman's elegant solution to a seven-city directed Hamiltonian path problem using DNA launched the new field of DNA computing, which in a few years has grown to international scope. However, unknown to this field, two ciliated protozoans of the genus Oxytricha had solved a potentially harder problem using DNA several million years earlier. The solution to this problem, which occurs during the process of gene unscrambling, represents one of nature's ingenious solutions to the problem of the creation of genes. RNA editing, which can also be viewed as a computational process, offers a second algorithm for the construction of functional genes from encrypted pieces of the genome.
机译:细胞与自然如何“计算”?他们通过在DNA或RNA水平修饰序列的过程来始终读取和“重写” DNA。 1994年,阿德曼(Adleman)用DNA巧妙地解决了七城市定向哈密顿路径问题,开创了DNA计算的新领域,在短短几年内,它已发展到国际范围。然而,对于该领域未知,Oxytricha属的两个纤毛原生动物已经使用了数百万年前的DNA解决了一个潜在的难题。这个问题的解决方案是在基因解扰过程中发生的,它代表了自然界对基因创造问题的巧妙解决方案之一。 RNA编辑(也可以看作是计算过程)提供了第二种算法,用于从基因组的加密片段中构建功能基因。

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