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体外进化过程中的重组

Recombination during in vitro evolution.

作者信息

Lehman Niles, Unrau Peter J

机构信息

Department of Chemistry, Portland State University, PO Box 751, Portland, OR 97207, USA.

出版信息

J Mol Evol. 2005 Aug;61(2):245-52. doi: 10.1007/s00239-004-0373-4. Epub 2005 Jun 30.

Abstract

Recombination, the swapping of large portions of genetic information between and among parental genotypes, can be applied to in vitro evolution experiments on functional nucleic acids. Both homologous and heterologous recombination can be achieved using standard laboratory techniques. In many cases, recombination can allow for the discovery of a ribozyme or DNAzyme phenotype that would not likely be encountered by reliance on point mutations alone. In addition, recombination can often aid in the discovery of global optima in sequence space and/or lessen the number of generations it would take to reach optima. Recombination is most efficiently used in combination with point mutations and applied after the first couple of rounds of selection but before high-fitness genotypes dominate the selection. The "recombination zone" describes that region of sequence space-defined by the residues that will ultimately participate in the function of the winning nucleic acid(s)-where recombination is expected to be the most beneficial in the search for high-fitness genotypes.

摘要

重组,即亲代基因型之间或之内大片段遗传信息的交换,可应用于功能性核酸的体外进化实验。使用标准实验室技术可实现同源重组和异源重组。在许多情况下,仅靠点突变不太可能遇到的核酶或脱氧核酶表型,通过重组就有可能被发现。此外,重组常常有助于在序列空间中发现全局最优解和/或减少达到最优解所需的代数。重组与点突变结合使用最为有效,应在最初几轮选择之后但在高适应性基因型主导选择之前应用。“重组区”描述了序列空间的那个区域,该区域由最终将参与获胜核酸功能的残基定义,在这个区域进行重组有望在寻找高适应性基因型的过程中最为有益。

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