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Novel sporophyte-like plants are regenerated from protoplasts fused between sporophytic and gametophytic protoplasts of Bryopsis plumosa

机译:从Bryopsis plumosa的孢子体和配子体原生质体融合的原生质体中再生出新的孢子体状植物

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Protoplasts of the marine coenocytic macrophyte Bryopsis plumosa (Hudson) C. Agardh. [Caulerpales] can easily be obtained by cutting gametophytes or sporophytes with sharp scissors. When a protoplast isolated from a gametophyte was fused with a protoplast isolated from a sporophyte of this alga, it germinated and developed into either one of two completely different forms. One plant form, named Type G, appeared quite similar to a gametophyte, and the other, named Type S, looked similar to a sporophyte. While the Type G plant contained many small nuclei of gametophyte origin together with a single giant nucleus of sporophyte origin, the Type S plant contained many large nuclei of uniform size. These large nuclei in the Type S plant had metamorphosed from the gametophytic nuclei, and were not formed through division of the giant nucleus of sporophyte origin. Fragments of the Type S plant, each having such a large nucleus, developed into creeping filaments that look very similar to sporophytes. While cell walls of gametophytes and Type G plants were stained by Congo-red, those of the thalli of regenerated Type S plants and sporophytes were not stained by the dye. This indicated that the large nuclei of the Type S plant did not express genes for xylan synthesis, which are characteristic of gametophytes. Two-dimensional gel electrophoretic analysis revealed that most of the proteins synthesized in the Type S plant were identical to those of sporophytes. These results strongly suggest that in the Type S plant, the gametophytic nuclei are transformed into sporophyte-like nuclei by an unknown factor(s) produced by the giant nucleus of sporophyte origin and that the transformed nuclei express the set of genes characteristic of sporophytes. Despite morphological similarity, however, the regenerated Type S plant could not produce zoospores, because its large nuclei did not divide normally. The transformed large nuclei of gametophyte origin still seemed to be in the haploid state.
机译:海洋嗜酸性大型植物Bryopsis plumosa(Hudson)C. Agardh的原生质体。通过用锋利的剪刀切开配子体或孢子体,很容易获得[Caulerpales]。当将从配子体分离的原生质体与从该藻的孢子体分离的原生质体融合时,其发芽并发展为两种完全不同形式中的一种。一种名为G型的植物形式看起来与配子体非常相似,另一种名为S型的植物形式看起来类似于孢子体。 G型植物包含配子体来源的许多小核以及孢子体来源的单个巨型核,而S型植物则包含许多大小均一的大核。 S型植物中的这些大核是从配子体核变态的,不是通过孢子体起源的巨大核分裂而形成的。每个具有如此大核的S型植物的碎片,发展成看起来与孢子体非常相似的爬行丝。配子体和G型植物的细胞壁被刚果染色,而再生S型植物和孢子体的藻类的细胞壁未被染料染色。这表明S型植物的大核不表达木聚糖合成的基因,这是配子体的特征。二维凝胶电泳分析表明,在S型植物中合成的大多数蛋白质与孢子体的蛋白质相同。这些结果有力地表明,在S型植物中,配子体细胞核被孢子体起源的巨大核产生的未知因素转化为孢子体状的核,并且转化的细胞核表达了孢子体特有的基因组。尽管形态相似,但是再生的S型植物不能产生游动孢子,因为它的大核不能正常分裂。配子体来源的转化大核似乎仍处于单倍体状态。

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