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QU-GENE: a simulation platform for quantitative analysis of genetic models.

机译:QU-GENE:用于遗传模型定量分析的仿真平台。

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MOTIVATION: Classical quantitative genetics theory makes a number of simplifying assumptions in order to develop mathematical expressions that describe the mean and variation (genetic and phenotypic) within and among populations, and to predict how these are expected to change under the influence of external forces. These assumptions are often necessary to render the development of many aspects of the theory mathematically tractable. The availability of high-speed computers today provides opportunity for the use of computer simulation methodology to investigate the implications of relaxing many of the assumptions that are commonly made. RESULTS: QU-GENE (QUantitative-GENEtics) was developed as a flexible computer simulation platform for the quantitative analysis of genetic models. Three features of the QU-GENE software that contribute to its flexibility are (i) the core E(N:K) genetic model, where E is the number of types of environment, N is the number of genes, K indicates the level of epistasis and the parentheses indicate that different N:K genetic models can be nested within types of environments, (ii) the use of a two-stage architecture that separates the definition of the genetic model and genotype-environment system from the detail of the individual simulation experiments and (iii) the use of a series of interactive graphical windows that monitor the progress of the simulation experiments. The E(N:K) framework enables the generation of families of genetic models that incorporate the effects of genotype-by-environment (G x E) interactions and epistasis. By the design of appropriate application modules, many different simulation experiments can be conducted for any genotype-environment system. The structure of the QU-GENE simulation software is explained and demonstrated by way of two examples. The first concentrates on some aspects of the influence of G x E interactions on response to selection in plant breeding, and the second considers the influence of multiple-peak epistasis on the evolution of a four-gene epistatic network. AVAILABILITY: QU-GENE is available over the Internet at {http://pig.ag.uq.edu.au/qu-gene/} CONTACT: m.cooper
机译:动机:经典的定量遗传学理论做出了许多简化的假设,以便开发出描述群体内部和群体之间的均值和变异(遗传和表型)的数学表达式,并预测在外力影响下期望它们如何变化。这些假设通常是使该理论的许多方面在数学上易于处理的必要条件。当今高速计算机的可用性为使用计算机仿真方法研究放松许多通常的假设所带来的影响提供了机会。结果:QU-GENE(QUantitative-GENEtics)被开发为用于遗传模型定量分析的灵活计算机仿真平台。 QU-GENE软件的三个功能为其灵活性做出了贡献:(i)核心E(N:K)遗传模型,其中E是环境类型的数量,N是基因的数量,K表示环境水平。上位性和括号表示不同的N:K遗传模型可以嵌套在不同类型的环境中,(ii)使用两阶段结构将遗传模型和基因型-环境系统的定义与个体细节分开模拟实验;以及(iii)使用一系列交互式图形窗口来监视模拟实验的进度。 E(N:K)框架能够生成遗传模型族,这些遗传模型结合了按环境分基因型(G x E)相互作用和上位性的影响。通过设计适当的应用模块,可以对任何基因型-环境系统进行许多不同的模拟实验。通过两个示例对QU-GENE仿真软件的结构进行了说明和演示。第一个集中于G x E相互作用对植物育种中选择响应的影响的某些方面,第二个考虑了多峰上位性对四基因上位性网络进化的影响。可用性:QU-GENE可通过Internet访问{http://pig.ag.uq.edu.au/qu-gene/}。联系人:m.cooper

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