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Identifying Effective Design Approaches to Allocate Genotypes in Two-Phase Designs: A Case Study in Pelargonium zonale

机译:识别有效的设计方法来分配两阶段设计中的基因型:案例研究天竺葵

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摘要

Robust phenotypic data allow adequate statistical analysis and are crucial for any breeding purpose. Such data is obtained from experiments laid out to best control local variation. Additionally, experiments frequently involve two phases, each contributing environmental sources of variation. For example, in a former experiment we conducted to evaluate production related traits in Pelargonium zonale, there were two consecutive phases, each performed in a different greenhouse. Phase one involved the propagation of the breeding strains to obtain the stem cutting count, and phase two involved the assessment of root formation. The evaluation of the former study raised questions regarding options for improving the experimental layout: (i) Is there a disadvantage to using exactly the same design in both phases? (ii) Instead of generating a separate layout for each phase, can the design be optimized across both phases, such that the mean variance of a pair-wise treatment difference (MVD) can be decreased? To answer these questions, alternative approaches were explored to generate two-phase designs either in phase-wise order (Option 1) or across phases (Option 2). In Option 1 we considered the scenarios (i) using in both phases the same experimental design and (ii) randomizing each phase separately. In Option 2, we considered the scenarios (iii) generating a single design with eight replicates and splitting these among the two phases, (iv) separating the block structure across phases by dummy coding, and (v) design generation with optimal alignment of block units in the two phases. In both options, we considered the same or different block structures in each phase. The designs were evaluated by the MVD obtained by the intra-block analysis and the joint inter-block–intra-block analysis. The smallest MVD was most frequently obtained for designs generated across phases rather than for each phase separately, in particular when both phases of the design were separated with a single pseudo-level. The joint optimization ensured that treatment concurrences were equally balanced across pairs, one of the prerequisites for an efficient design. The proposed alternative approaches can be implemented with any model-based design packages with facilities to formulate linear models for treatment and block structures.
机译:可靠的表型数据可以进行充分的统计分析,对于任何育种目的都是至关重要的。这些数据是从为更好地控制局部变化而进行的实验中获得的。此外,实验通常涉及两个阶段,每个阶段都是造成环境变化的原因。例如,在以前的一项实验中,我们进行了评估天竺葵中与生产相关的性状,有两个连续的阶段,每个阶段都在不同的温室中进行。第一阶段涉及繁殖菌株的繁殖以获得茎切取计数,第二阶段涉及对根形成的评估。对先前研究的评估提出了有关改善实验布局的选择的问题:(i)在两个阶段中使用完全相同的设计是否有不利之处? (ii)可以为每个阶段优化设计,而不是为每个阶段生成单独的布局,从而可以减少成对处理差异(MVD)的平均方差吗?为了回答这些问题,探索了替代方法以按阶段顺序(选项1)或跨阶段(选项2)生成两阶段设计。在方案1中,我们考虑了方案(i)在两个阶段中使用相同的实验设计,以及(ii)分别将每个阶段随机化。在方案2中,我们考虑了以下场景:(iii)生成具有八个重复的单个设计,并将其划分为两个阶段;(iv)通过虚拟编码在各个阶段将块结构分离;以及(v)生成具有最佳块对齐方式的设计两个阶段的广告单元。在这两个选项中,我们都考虑了每个阶段中相同或不同的块结构。通过块内分析和联合块间-块内分析获得的MVD评估设计。对于跨阶段生成的设计(而不是分别针对每个阶段),最经常获得最小的MVD,尤其是当设计的两个阶段都被一个伪级别分开时。联合优化确保了处理并发在各对之间均等地平衡,这是有效设计的先决条件之一。可以使用任何基于模型的设计包来实现所提出的替代方法,这些设计包具有制定用于处理和块结构的线性模型的设施。

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