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Mixed evolutionary traits of Tolypella (section Rothia, Charales) compared with Chara and Nitella shown by ultrastructure of vegetative internodal cells

机译:营养性节间细胞的超微结构表明,Tolypella(Rothia,Charales部分)与Chara和Nitella的混合进化特征

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The ultrastructure of vegetative internodal cells in a representative of the genus Tolypella (section Rothia) is described for the first time for Tolypella intricata. The most striking difference compared with the cells of Chara and Nitella is that the four-layered lateral cell wall shows the regular presence of unique refractive lenticular thickenings, which we designate as "tolysomes", considering their unique ultrastructure elucidated here for the first time. Tolysomes greatly amplify the plasma membrane surface; thereby defining particular spaces of the cytoplasm. There are similar structures in the cell walls of the non-charalean charophyte Coleochaete orbicularis and also in bryophytes, angiosperms and gymnosperms. As the function of tolysomes is hitherto elusive, a bona fide analysis of evolutionary significance is not yet possible. C-shaped amitotic nuclei are similar to those described for young internodal Chara cells. Resting amitotic nuclei exhibit normal nuclear envelope, dispersed granular chromatin and numerous nucleoli with variable size. Nevertheless, they show neither the single, central nucleolus characteristic of dividing Chara nuclei nor the bundles of tubular elements running parallel to the long axis of the nucleus, which are also normal in Chara and Nitella amitotic nuclei. The presence of C-shaped resting nuclei of Tolypella and Chara and their absence in Nitella and the presence of spindle-shaped nuclei in Nitella, but not in Tolypella, suggest that Tolypella (section Rothia) divergence took place earlier than did Nitella in accordance with, but also in contradiction to molecular data. Mature echinoid bodies and chloroplasts in Tolypella intricata are entirely similar to those previously described for Chara and Nitella. (C) 2014 Elsevier B.V. All rights reserved.
机译:Tolypella intricata首次描述了Tolypella属代表中的营养性节间细胞的超微结构(Rothia切片)。与Chara和Nitella的细胞相比,最显着的差异是四层的外侧细胞壁经常出现独特的折射双凸透镜状增厚,考虑到它们在这里首次阐明的独特超微结构,我们将其称为“胶体”。溶酶极大地放大了质膜的表面。从而定义了细胞质的特定空间。在非charalean的Charophyte轮虫Coleochaete orbicularis的细胞壁中,在苔藓植物,被子植物和裸子植物中也有相似的结构。由于溶酶体的功能迄今难以捉摸,因此尚不可能对进化意义进行真正的分析。 C形有丝分裂核类似于年轻的节间性Chara细胞所描述的。静止的有丝分裂核表现出正常的核被膜,分散的颗粒染色质和大小可变的许多核仁。然而,它们既没有显示出分开Chara核的单一中央核仁特征,也没有显示出平行于核长轴延伸的管状元素束,而Chara和Nitella无丝核中也是如此。 Tolypella和Chara的C形静止核的存在以及在Nitella中不存在,以及Nitella而不是Tolypella的纺锤状核的存在表明Tolypella(Rothia剖面)的发散比Nitella早于,但也与分子数据相矛盾。 Tolypella intricata中成熟的类棘突动物体和叶绿体与先前描述的Chara和Nitella完全相似。 (C)2014 Elsevier B.V.保留所有权利。

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