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Power of the joint segregation analysis method for testing mixed major-gene and polygene inheritance models of quantitative traits

机译:联合偏析分析方法对定量性状的主基因和多基因混合遗传模型的测试能力

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摘要

Understanding the genetic architecture of quantitative traits can greatly assist the design of strategies for their manipulation in plant-breeding programs. For a number of traits, genetic variation can be the result of segregation of a few major genes and many polygenes (minor genes). The joint segregation analysis (JSA) is a maximum-likelihood approach for fitting segregation models through the simultaneous use of phenotypic information from multiple generations. Our objective in this paper was to use computer simulation to quantify the power of the JSA method for testing the mixed-inheritance model for quantitative traits when it was applied to the six basic generations: both parents (P1 and P2), F1, F2, and both backcross generations (B1 and B2) derived from crossing the F1 to each parent. A total of 1968 genetic model-experiment scenarios were considered in the simulation study to quantify the power of the method. Factors that interacted to influence the power of the JSA method to correctly detect genetic models were: (1) whether there were one or two major genes in combination with polygenes, (2) the heritability of the major genes and polygenes, (3) the level of dispersion of the major genes and polygenes between the two parents, and (4) the number of individuals examined in each generation (population size). The greatest levels of power were observed for the genetic models defined with simple inheritance; e.g., the power was greater than 90% for the one major gene model, regardless of the population size and major-gene heritability. Lower levels of power were observed for the genetic models with complex inheritance (major genes and polygenes), low heritability, small population sizes and a large dispersion of favourable genes among the two parents; e.g., the power was less than 5% for the two major-gene model with a heritability value of 0.3 and population sizes of 100 individuals. The JSA methodology was then applied to a previously studied sorghum data-set to investigate the genetic control of the putative drought resistance-trait osmotic adjustment in three crosses. The previous study concluded that there were two major genes segregating for osmotic adjustment in the three crosses. Application of the JSA method resulted in a change in the proposed genetic model. The presence of the two major genes was confirmed with the addition of an unspecified number of polygenes.
机译:了解数量性状的遗传结构可以极大地帮助设计在植物育种程序中对其进行操纵的策略。对于许多性状,遗传变异可能是几个主要基因和许多多基因(次要基因)分离的结果。联合隔离分析(JSA)是通过同时使用来自多个世代的表型信息来拟合隔离模型的最大似然方法。本文的目的是使用计算机模拟来量化JSA方法在将六个遗传代(P1 和P2 )应用于六个基本世代的数量性状的混合遗传模型时的功效。 sub>),F1 ,F2 ,以及通过将F1 传递给每个父代而产生的两个回交代(B1 和B2 )。在模拟研究中总共考虑了1968年的遗传模型实验场景,以量化该方法的功效。影响JSA方法正确检测遗传模型的能力的相互作用因素包括:(1)是否有一个或两个主要基因与多基因组合,(2)主要基因和多基因的遗传力,(3)两个亲本之间主要基因和多基因的分散水平,以及(4)每代中检查的个体数量(种群大小)。对于简单继承定义的遗传模型,观察到了最大的权力。例如,对于一个主要基因模型,无论种群大小和主要基因遗传力如何,其功效均大于90%。在遗传复杂的遗传模型(主要基因和多基因),遗传力低,种群规模小以及有利的基因在两个亲本之间的分散性较大的遗传模型中,观察到的能力水平较低。例如,两个主要基因模型的遗传力小于5%,遗传力值为0.3,人口规模为100个个体。然后将JSA方法应用于先前研究的高粱数据集,以研究三个杂交中推定的抗旱性-性状渗透调节的遗传控制。先前的研究得出的结论是,在三个杂交中有两个主要的基因被隔离以进行渗透调节。 JSA方法的应用导致了提出的遗传模型的改变。通过添加不确定数量的多基因,证实了两个主要基因的存在。

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  • 来源
    《Theoretical and Applied Genetics》 |2001年第5期|804-816|共13页
  • 作者单位

    Wheat Program CIMMYT Adpo. Postal 6-641 06600 Mexico D.F. Mexico;

    School of Land and Food Sciences The University of Queensland Brisbane Queensland 4072 Australia e-mail: d.podlich@mailbox.uq.edu.au Fax: +61 7-3365-2036 Present address: M. Cooper Pioneer Hi-Bred International Incorporated 7300 N.W. 62nd Avenue PO Box 1004 Johnston Iowa 50131 USA;

    School of Land and Food Sciences The University of Queensland Brisbane Queensland 4072 Australia e-mail: d.podlich@mailbox.uq.edu.au Fax: +61 7-3365-2036 Present address: M. Cooper Pioneer Hi-Bred International Incorporated 7300 N.W. 62nd Avenue PO Box 1004 Johnston Iowa 50131 USA;

    School of Land and Food Sciences The University of Queensland Brisbane Queensland 4072 Australia e-mail: d.podlich@mailbox.uq.edu.au Fax: +61 7-3365-2036 Present address: M. Cooper Pioneer Hi-Bred International Incorporated 7300 N.W. 62nd Avenue PO Box 1004 Johnston Iowa 50131 USA;

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  • 正文语种 eng
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  • 关键词

    Keywords Joint segregation analysis (JSA); Mixed inheritance model; Osmotic adjustment; Power analysis; QU-GENE;

    机译:关键词联合分离分析;混合遗传模型;渗透调节;功率分析;QU-GENE;

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