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Model-Based Evaluation of Maturity Type of Potato Using a Diverse Set of Standard Cultivars and a Segregating Diploid Population

机译:基于模型的马铃薯成熟度类型的评估,其中使用了一组标准品种和分离的二倍体种群

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The objective of this paper is to evaluate the performance of the conventional system of classifying maturity type in potato and to provide a concept of maturity type based on crop physiology. We present an approach in which physiological traits are used to quantify and assess maturity type unambiguously for a set of varieties covering a wide range of maturity classes and a diploid F1 population separating for maturity and well-adapted to Dutch growing conditions, both grown in six environments. We defined physiological maturity based on four traits: the duration of maximum green canopy, the area under the green canopy cover progress curve, and the rate and duration of tuber bulking. The results indicated that physiological maturity type criteria tended to define maturity classes less ambiguously than the conventional criterion. Moreover, the conventional criterion was subject to more random noise and lacked stability and/or repeatability compared with the physiological traits. The physiological maturity criteria also illustrated the physiological trade-offs that existed between the selected traits and underlined the subtle complexities in classifying maturity type. This study highlighted the capabilities of different maturity type criteria in discriminating between different maturity classes among the large set of genotypes. Our new approach involving key physiological traits could be beneficial in offering physiology-based criteria to re-define maturity type. An improved criterion based on important physiological traits would allow relating the maturity to crop phenology and physiology. These new criteria may be amenable to further genetic analysis and could help in designing strategies for potato ideotype breeding for genotypes with specific maturity types.
机译:本文的目的是评估传统的马铃薯成熟度分类系统的性能,并提供基于作物生理学的成熟度类型的概念。我们提供了一种方法,其中使用生理性状明确地量化和评估一组涵盖广泛的成熟度类别的品种以及成熟度合适的二倍体F1群体,并充分适应荷兰的生长条件,这两个品种均生长在六个品种中环境。我们根据四个特征定义生理成熟度:最大绿色冠层的持续时间,绿色冠层覆盖进度曲线下的面积以及块茎膨大的速率和持续时间。结果表明,与传统标准相比,生理成熟度类型标准倾向于更少地定义成熟度类别。此外,与生理特征相比,常规标准受到更多随机噪声的影响,并且缺乏稳定性和/或可重复性。生理成熟度标准还说明了所选性状之间存在的生理平衡,并强调了分类成熟度类型时的细微复杂性。这项研究强调了不同成熟度类型标准在大型基因型集合中区分不同成熟度类别的能力。我们涉及关键生理特征的新方法可能会有益于提供基于生理的标准来重新定义成熟类型。基于重要生理特性的改进标准可以使成熟度与作物物候和生理相关。这些新标准可能适合进行进一步的遗传分析,并有助于设计具有特定成熟类型的基因型的马铃薯表型育种策略。

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