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Lie superalgebras and the multiplet structure of the genetic code. I. Codon representations

机译:李超代数和遗传密码的多重结构。 I.密码子表示

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It has been proposed by Hornos and Hornos [Phys. Rev. Lett. 71, 4401-4404 (1993)] that the degeneracy of the genetic code, i.e., the phenomenon that different codons (base triplets) of DNA are transcribed into the same amino acid, may be interpreted as the result of a symmetry breaking process. In their work, this picture was developed in the framework of simple Lie algebras. Here, we explore the possibility of explaining the degeneracy of the genetic code using basic classical Lie superalgebras, whose representation theory is sufficiently well understood, at least as far as typical representations are concerned. In the present paper, we give the complete list of all typical codon representations (typical 64-dimensional irreducible representations), whereas in the second part, we shall present the corresponding branching rules and discuss which of them reproduce the multiplet structure of the genetic code. (C) 2000 American Institute of Physics. [S0022-2488(00)06205-8]. [References: 19]
机译:它由Hornos和Hornos提出[Phys。莱特牧师71,4401-4404(1993)],遗传密码的简并性,即不同的DNA密码子(碱基三联体)被转录成相同的氨基酸的现象,可以解释为对称性破坏过程的结果。在他们的工作中,这张图是在简单的李代数框架内开发的。在这里,我们探索使用基本的经典李超代数来解释遗传密码的简并性的可能性,至少对于典型表示而言,其经典的表示理论已得到充分的理解。在本文中,我们给出了所有典型密码子表示形式的完整列表(典型的64维不可约表示形式),而在第二部分中,我们将介绍相应的分支规则并讨论其中的哪些规则可重现遗传密码的多重结构。 。 (C)2000美国物理研究所。 [S0022-2488(00)06205-8]。 [参考:19]

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