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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Formation pattern in five types of pollen tetrad in Pseuduvaria trimera (Annonaceae)
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Formation pattern in five types of pollen tetrad in Pseuduvaria trimera (Annonaceae)

机译:五种类型的花粉Tetrad中的形成模式(Annonaceae)

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In basal angiosperms, there are several types of permanent tetrad but their formation pattern remains elusive. Pseuduvaria trimera has five types of tetrads and is the species with the most abundant tetrad types in Annonaceae. In order to interpret the formation pattern of different tetrad types, pollen development was investigated from the microspore mother cell stage to the bicellular pollen stage and the ultrastructure of pollen wall in the five tetrad types using light microscopy, transmission electron microscopy, and confocal laser scanning microscopy. Both successive and intermediate cytokinesis were observed within the same anther. The nucleus location of the microspores together with cytokinesis determine the number and the spatial arrangement of callose plates, and further have an effect on the tetrad types. The anthers with or without septation and the arrangement of microsporocytes might be also related to the tetrad type. The individual pollen grains within the tetrads are connected with each other by crosswall cohesion and cytoplasmic channels at localized points in the proximal walls. The various types of tetrads, cytokinesis, and cohesion in P. trimera reflect the high diversity in pollen development, which enhances the dramatic variety in pollen morphology in this family. Our observations of the development of tetrads provided some new insights for interpreting the factors influencing the types of tetrads, and reported the existence of a cytoplasmic channel in Annonaceae for the first time.
机译:在基础上,有几种类型的永久性四面体,但它们的形成模式仍然难以捉摸。 Pseuduvaria Trimera有五种类型的四胞胎,是annonaceae中最丰富的四种类型的物种。为了解释不同的四种类型的形成模式,使用光学显微镜,透射电子显微镜,透射电子显微镜和共聚焦激光扫描,从微孔母细胞阶段和花粉壁上的花粉壁的超微结构研究了花粉发育。显微镜。在相同的花药中观察到连续和中间细胞囊体。微微孢子的核心与细胞因子一起确定胼改板的数量和空间排列,并进一步对四种类型作用。有或没有荚膜的花药和微孢子囊细胞的布置也可能与Tetrad型有关。在近端壁中的局部点,四胞胎内的各个花粉颗粒通过交叉堵塞和细胞质通道彼此连接。 P. Trimera中各种类型的四胞胎,细胞因子和内聚力反映了花粉发育的高多样性,这增强了该家庭在花粉形态的戏剧性品种。我们对Tetrads发展的观察提供了一些新的见解,用于解释影响四面体类型的因素,并首次报道了Annonaceae中的细胞质通道的存在。

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