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Linear codes and the mitochondrial genetic code

机译:线性码和线粒体遗传密码

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摘要

The origin of the genetic code can certainly be regarded as one of the most challenging problems in the theory of molecular evolution. Thus the known variants of the genetic code and a possible common ancestry of them haven been studied extensively in the literature. Gonzalez et al. (2012) developed the theory of a primeval mitochondrial genetic code composed of four base codons. These were called tesserae and it was shown that the tesserae code has some remarkable error detection capabilities. In our paper we will show that using classical coding theory we can construct the tessera code as a linear coding of the standard genetic code and at the same time it can be deduced from the code of all dinucleotides by Plotkin's construction. It shows that the tessera model of the mitochondrial code does not just have a biological explanation but also has a clear mathematical structure. This underlines the role that the tessera model might have played in evolution.
机译:遗传密码的起源当然可以被视为分子演化理论中最具挑战性问题之一。 因此,在文献中广泛地研究了遗传密码的已知变种和避风港的可能共同的祖先。 gonzalez等。 (2012)开发了由四个基密码子组成的原始线粒体遗传密码理论。 这些被称为Tesserae,并表明Tesserae代码具有一些显着的错误检测能力。 在我们的论文中,我们将表明,使用经典编码理论,我们可以将TESSERA代码构建为标准遗传代码的线性编码,同时它可以通过Plotkin的结构从所有二核苷酸的代码推导出来。 它表明,线粒体代码的TESSERA模型不仅具有生物学解释,而且还具有明确的数学结构。 这强调了Tessera模型可能在演变中发挥的作用。

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