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Multiplicative models for interaction in three-way ANOVA, with applications to plant breeding

机译:三向方差分析中相互作用的乘法模型及其在植物育种中的应用

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摘要

In plant breeding, multiplicative models for two-way analysis of variance interaction have become a general means of describing genotype-by-environment interaction. These models offer parsimonious descriptions and facilitate interpretations in biological terms. A disadvantage of the prevailing dominance of two-way multiplicative models is that data with more complicated environmental structure are often forced to fit the two-way framework. As a partial solution to this problem, three-way multiplicative models are presented that can be used in addition to the more familiar two-way multiplicative models. Most importantly, a three-way generalization is given of the two-way singular-value decomposition that can be applied for closer inspection of three-way analysis of variance interaction, much in the same way as its two-way counterpart is used for two-way interaction. Two real data sets are analyzed to illustrate how two- and three-way multiplicative models for interaction jointly provide parsimonious descriptions of various types of genotype-by-environment interaction. These parsimonious descriptions are often open to meaningful biological interpretations as well. [References: 55]
机译:在植物育种中,用于方差相互作用的双向分析的乘性模型已成为描述基因型逐环境相互作用的通用手段。这些模型提供了简约的描述,并有助于以生物学术语进行解释。双向乘法模型占主导地位的缺点是,环境结构更为复杂的数据通常被迫适应双向框架。作为此问题的部分解决方案,除了更熟悉的双向乘法模型外,还可以使用三向乘法模型。最重要的是,给出了双向奇异值分解的三向概括,该分解可用于更仔细地检查方差相互作用的三向分析,其方式与将两向对应方法用于两个双向交互。分析了两个真实的数据集,以说明双向交互的三元和三元乘法模型如何联合提供对各种类型的基因型-环境交互的简约描述。这些简约的描述通常也对有意义的生物学解释开放。 [参考:55]

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