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黄花曼陀罗花药培养中的花粉超微结构。I. 推定营养细胞的分裂

Pollen ultrastructure in anther cultures of Datura innoxia. I. Division of the presumptive vegetative cell.

作者信息

Dunwell J M, Sunderland N

出版信息

J Cell Sci. 1976 Dec;22(3):469-80. doi: 10.1242/jcs.22.3.469.

Abstract

Ultrastructural features of embryogenic pollen in Datura innoxia are described, just prior to, during, and after completion of the first division of the presumptive vegetative cell. In anther cultures initiated towards the end of the microspore phase and incubated at 28 degrees C in darkness, the spores divide within 24 h and show features consistent with those of dividing spores in vivo. Cytokinesis is also normal in most of the spores and the gametophytic cell-plate curves round the presumptive generative nucleus in the usual highly ordered way. Further differentiation of the 2 gametophytic cells does not take place and the pollen either switches to embryogenesis or degenerates. After 48-72 h, the remaining viable pollen shows the vegetative cell in division. The cell, which has a large vacuole and thin layer of parietal cytoplasm carried over from the microspore, divides consistently in a plane parallel to the microspore division. The dividing wall follows a less-ordered course than the gametophytic wall and usually traverses the vacuole, small portions of which are incorporated into the daughter cell adjacent to the generative cell. The only structural changes in the vegetative cell associated with the change in programme appear to be an increase in electron density of both plastids and mitochondria and deposition of an electron-dense material (possibly lipid) on the tonoplast. The generative cell is attached to the intine when the vegetative cell divides. Ribosomal density increases in the generative cell and exceeds that in the vegetative cell. A thin electron-dense layer also appears in the generative-cell wall. It is concluded that embryogenesis commences as soon as the 2 gametophytic cells are laid down. Gene activity associated with postmitotic synthesis of RNA and protein in the vegetative cell is switched off. The data are discussed in relation to the first division of the embryogenic vegetative cells in Nicotiana tabacum.

摘要

描述了黄花曼陀罗胚性花粉在假定营养细胞第一次分裂之前、期间和之后的超微结构特征。在小孢子阶段接近尾声时起始并于28℃黑暗条件下培养的花药培养物中,孢子在24小时内分裂,并呈现出与体内分裂孢子一致的特征。大多数孢子的胞质分裂也是正常的,配子体细胞板以通常高度有序的方式围绕假定的生殖核弯曲。两个配子体细胞不再进一步分化,花粉要么转向胚胎发生,要么退化。48 - 72小时后,剩余的存活花粉显示营养细胞在分裂。该细胞有一个大液泡和从微孢子遗留下来的一层薄的周缘细胞质,在与微孢子分裂平行的平面上持续分裂。分裂壁的走向比配子体壁的走向无序,通常穿过液泡,液泡的一小部分被并入与生殖细胞相邻的子细胞中。与程序变化相关的营养细胞中唯一的结构变化似乎是质体和线粒体的电子密度增加,以及在液泡膜上沉积一种电子致密物质(可能是脂质)。当营养细胞分裂时,生殖细胞附着在内壁上。生殖细胞中的核糖体密度增加并超过营养细胞中的核糖体密度。生殖细胞壁中也出现一层薄的电子致密层。得出的结论是,一旦两个配子体细胞形成,胚胎发生就开始。与营养细胞有丝分裂后RNA和蛋白质合成相关的基因活性被关闭。结合烟草胚性营养细胞的第一次分裂对这些数据进行了讨论。

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