首页> 外文期刊>Acta Physiologiae Plantarum >Effect of genome, induction medium and temperature pretreatment on green plant production in durum (Triticum turgidum var. durum) x bread wheat (Triticum aestivum L. em Thell) crosses
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Effect of genome, induction medium and temperature pretreatment on green plant production in durum (Triticum turgidum var. durum) x bread wheat (Triticum aestivum L. em Thell) crosses

机译:基因组,诱导培养基和温度预处理对硬粒小麦(Triticum turgidum var。durum)x面包小麦(Triticum aestivum L. em Thell)杂交的绿色植物产量的影响

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The recalcitrancy of durum wheat (Triticum turgidum var. durum) to anther culture, was attempted to be overcome by transferring the responsible genes form bread wheat B-genome to the respective on durum wheat, determining an appropriate induction medium and clarifying the necessity of cold pretreatment. For this, three durum wheat cultivars were crossed to two bread wheat (Triticum aestivum L. em Thell) cultivars. The resulting F1 plants and their original cultivars were grown in the field and anthers at the appropriate microspore stage were cultured on potato-2 and W14 media with and without low temperature pretreatment. No green plants were produced from the parental durum wheat cultivars. In contrast, green plants were produced from the F1 plants. The best results in three of the four F1 hybrids were recorded when potato-2 was used as induction medium. A more variable response of the examined genotypes was noticed with respect to temperature pretreatment. Regarding green plant production, a negative effect of cold pretreatment was observed in two of the F1 hybrids when they were cultured on potato-2. Chromosome counts on root tips from the resulting green plants revealed that they all carried D-genome chromosomes. The last observation could suggest that D-genome chromosomes are necessary for anther culture response in wheat. Yet, the production of one green plant with 15 chromosomes may indicate that the development of extracted durum genotypes from bread wheat genotypes with good response to in vitro anther culture might be possible. Further work however, is needed for this to be verified.
机译:尝试通过将面包小麦B基因组的负责基因转移到硬质小麦上的相应基因来克服硬质小麦(Triticum turgidum var。durum)对花药培养的顽强性。预处理。为此,将三个硬质小麦品种与两个面包小麦(Triticum aestivum L. em Thell)品种杂交。在田间种植得到的F1 植物及其原始品种,并在经过低温预处理和不经过低​​温预处理的马铃薯2和W14 培养基上培养适当小孢子期的花药。亲本硬质小麦品种没有产生绿色植物。相反,绿色植物是由F1 植物产生的。当马铃薯2用作诱导培养基时,在四个F1 杂种中的三个中记录了最佳结果。在温度预处理方面,观察到的基因型反应更加可变。关于绿色植物的生产,当两个F1 杂种在马铃薯2上培养时,观察到冷预处理的负面影响。所得绿色植物根尖上的染色体计数表明它们都带有D基因组染色体。最后的观察结果表明,D基因组染色体对于小麦的花药培养反应是必需的。然而,一株具有15条染色体的绿色植物的产生可能表明从面包小麦基因型中提取出对硬粒小麦花药培养有良好响应的硬粒小麦基因型的开发是可能的。但是,需要对此进行进一步的工作。

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