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首页> 外文期刊>Plant Cell Reports >Enhanced induction of microspore embryogenesis after n-butanol treatment in wheat (Triticum aestivum L.) anther culture.
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Enhanced induction of microspore embryogenesis after n-butanol treatment in wheat (Triticum aestivum L.) anther culture.

机译:正丁醇处理后小麦(Triticum aestivum L.)花药培养物中小孢子胚胎发生的增强诱导。

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The aim of this study was the improvement of embryo production in wheat anther culture. Three butanol alcohols, n-butanol, sec-butanol and tert-butanol, were evaluated for their effect on microspore embryogenesis in two spring cultivars of wheat, Pavon and Caramba. Application of n-butanol, at 0.1 and 0.2% (v/v) in the induction media for 5 h, highly improved embryo production in both cultivars. Sec- and tert-butanol performed similarly to control plates. Regeneration ability was unaffected by any butyl-alcohol treatment. As a consequence of the higher embryo production after n-butanol treatment, the number of green regenerated plants increased up to five times in cultivar Pavon and up to three times in cultivar Caramba. The percentage of green plants was improved or unaffected by the treatment. Doubled haploid plant production was between 2 and 4 times higher after n-butanol treatment than in control plates. Therefore, n-butanol was successfully applied in the production of wheat doubled haploids. This primary alcohol is known as an activator of phospholipase D and has been previously reported to disrupt cortical microtubules and detach them from the plasma membrane in plants. Its effects on androgenetic induction could confirm the importance of microtubule regulation in plant cell fate, specifically in microspore development. A possible implication of phospholipase D is discussed.
机译:这项研究的目的是提高小麦花药培养中的胚产生。在两种春季小麦品种帕文和卡兰巴中,评估了三种丁醇,正丁醇,仲丁醇和叔丁醇对小孢子胚发生的影响。以0.1%和0.2%(v / v)的正丁醇在诱导培养基中施用5 h,可大大提高两个品种的胚产量。仲丁醇和叔丁醇的性能与对照板相似。再生能力不受任何丁醇处理的影响。正丁醇处理后胚高产的结果,Pavon品种的绿色再生植物数量增加了五倍,Caramba品种的绿色再生植物数量增加了三倍。处理使绿色植物的百分比提高或不受其影响。正丁醇处理后单倍体植物产量翻倍,比对照板高出2到4倍。因此,正丁醇已成功应用于小麦双单倍体的生产。这种伯醇被称为磷脂酶D的活化剂,据先前报道可破坏植物的皮层微管并使它们与质膜分离。它对雄激素诱导的影响可以证实微管调节在植物细胞命运中的重要性,特别是在小孢子发育中。讨论了磷脂酶D的可能含义。

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