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Regeneration of Fertile Barley Plants from Mechanically Isolated Protoplasts of the Fertilized Egg Cell.

机译:从受精卵细胞的机械分离原生质体再生可育的大麦植物。

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摘要

A simple procedure is described for the mechanical isolation of protoplasts of unfertilized and fertilized barley egg cells from dissected ovules. Viable protoplasts were isolated from ~75% of the dissected ovules. Unfertilized protoplasts did not divide, whereas almost all fertilized protoplasts developed into microcalli. These degenerated when grown in medium only. When cocultivated with barley microspores undergoing microspore embryogenesis, the protoplasts of the fertilized egg cells developed into embryo-like structures that gave rise to fully fertile plants. On average, 75% of cocultivated protoplasts of fertilized egg cells developed into embryo-like structures. Fully fertile plants were regenerated from ~50% of the embryo-like structures. The isolation-regeneration techniques may be largely genotype independent, because similar frequencies were obtained in two different barley varieties with very different performance in anther and microspore culture. Protoplasts of unfertilized and fertilized eggs of wheat were isolated by the same procedure, and a fully fertile wheat plant was regenerated by cocultivation with barley microspores.
机译:从分离的胚珠中机械分离未受精和受精的大麦卵细胞原生质体的简单方法。从约75%的解剖胚珠中分离出了活的原生质体。未受精的原生质体没有分裂,而几乎所有受精的原生质体都发育成微愈伤组织。这些仅在培养基中生长时退化。当与进行小孢子胚胎发生的大麦小孢子共培养时,受精卵细胞的原生质体发展为胚状结构,从而产生了完全可育的植物。平均而言,受精卵细胞共培养的原生质体中有75%发育成胚样结构。从约50%的胚状结构中再生出完全可育的植物。分离-再生技术可能很大程度上不依赖基因型,因为在两个不同的大麦品种中,在花药和小孢子培养中具有相似的表现,获得了相似的频率。通过相同的方法分离小麦的未受精卵和受精卵的原生质体,并通过与大麦小孢子共培养再生完全可育的小麦植物。

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