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Developmental ideotype in the context of the dual-purpose use of triticale, barley and durum wheat

机译:小黑麦,大麦和硬质小麦双重用途的背景下的发育型

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摘要

Phenology strongly affects the performance of dual-purpose (forage plus grain) cereals by defining the rate of leaf and tiller appearance, the duration of the pre-grazing period and anthesis date. Here, the combined effect of genotypic and environmental variation conditions on anthesis date and the pre-grazing period in durum wheat, triticale and barley was analysed to define a developmental ideotype for their dual-purpose use. The extensive variation for the Haun stage reached at the time of apex emergence from the soil surface was associated with variation in the final leaf number, regardless of environment, species and cultivar. The timing of the terminal spikelet stage was the best predictor of apex emergence. The durum wheats tillered poorly, whereas the barleys and the triticales performed comparably in three of the four environments. In general, the higher the final leaf number, the higher the number of leaves and tillers produced by the time of apex emergence, the higher the number of leaves which emerges subsequently. The development of a high number of leaves both before and after apex emergence is advantageous, provided that anthesis is not overly delayed such that flowering and grain fill occur within a period where stressful conditions are likely to occur. Barley developed many leaves and had a low phyllochron, so was identified as the species with the development best suited for dual-purpose cropping. However, the near simultaneous emergence of the first two tiller apices exposes it to a risk of grazing damage.
机译:物候学通过定义叶片和分till出现的速率,放牧前的持续时间和花期,对两用谷物(牧草和谷物)的性能产生重大影响。在这里,分析了基因型和环境变化条件对硬粒小麦,黑小麦和大麦的花期和放牧前期的综合影响,从而为它们的双重用途定义了发展型。顶芽从土壤表面出现时达到的Haun阶段的广泛变化与最终叶片数的变化有关,而与环境,物种和品种无关。终末小穗阶段的时间是顶点出现的最佳预测指标。硬质小麦的分till效果很差,而大麦和黑小麦在四种环境中的三种中表现相当。一般而言,最终叶片数越高,由根尖出现时产生的叶片和分till的数量就越高,随后出现的叶片数也就越高。前提是花粉没有被过度延迟,使得开花和籽粒充填发生在可能发生胁迫条件的时期内,在顶点出现之前和之后,大量叶片的发育是有利的。大麦的叶片很多,叶序少,因此被认为是最适合两用作物发展的物种。但是,前两个分er尖峰几乎同时出现,使其面临放牧损害的风险。

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