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扩散受限聚合酶链反应的数学模型:高通量核酸检测及简单自组织系统的基础

Mathematical models of diffusion-constrained polymerase chain reactions: basis of high-throughput nucleic acid assays and simple self-organizing systems.

作者信息

Aach John, Church George M

机构信息

Department of Genetics and Lipper Center for Computational Genetics, Harvard Medical School, 77 Avenue Louis Pasteur, New Research Building, Rm 238, Boston, MA 02115, USA.

出版信息

J Theor Biol. 2004 May 7;228(1):31-46. doi: 10.1016/j.jtbi.2003.12.003.

Abstract

DNA templates amplified by polymerase chain reaction in thin polyacrylamide gels form diffusion-constrained amplicons called "polonies" (polymerase colonies) that have been used to phase DNA haplotypes over long distances, to analyse RNA splice variants, and to assay other phenomena of biological interest. We present two sets of mathematical models, one for single polony growth (SPGM) and one for two polony interaction (TPIM), that will be used to optimize polony technology. The models provide detailed predictions of polony yield, concentration profiles, growth of isolated polonies, and the interaction of neighboring polonies. The TPIM explains an experimental observation that nearby polonies deform against each other rather than interpenetrate, an effect important for optimizing polony protocols. However, the TPIM also predicts that polonies may invade each other with a complex geometry when sufficiently close. Polonies are also of interest as simple abiotic systems that exhibit lifelike properties of self-organization, growth, and development, and the models may also apply to biological phenomena involving propagation through tethering and diffusion. Our polony modeling software is available at our web site.

摘要

通过聚合酶链反应在薄聚丙烯酰胺凝胶中扩增的DNA模板形成了称为“克隆群落”(聚合酶菌落)的扩散受限扩增子,这些扩增子已被用于远距离分析DNA单倍型、分析RNA剪接变体以及检测其他具有生物学意义的现象。我们提出了两组数学模型,一组用于单克隆群落生长(SPGM),另一组用于两个克隆群落相互作用(TPIM),这两组模型将用于优化克隆群落技术。这些模型提供了关于克隆群落产量、浓度分布、孤立克隆群落生长以及相邻克隆群落相互作用的详细预测。TPIM解释了一个实验观察结果,即附近的克隆群落相互变形而不是相互渗透,这一效应对于优化克隆群落实验方案很重要。然而,TPIM还预测,当足够接近时,克隆群落可能会以复杂的几何形状相互侵入。克隆群落作为表现出自组织、生长和发育等逼真特性的简单非生物系统也很受关注,并且这些模型也可能适用于涉及通过系留和扩散进行传播的生物现象。我们的克隆群落建模软件可在我们的网站上获取。

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