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紫花曼陀罗花药培养中的花粉超微结构。III. 不完全小孢子分裂

Pollen ultrastructure in anther cultures of Datura innoxia. III. Incomplete microspore division.

作者信息

Dunwell J M, Sunderland N

出版信息

J Cell Sci. 1976 Dec;22(3):493-501. doi: 10.1242/jcs.22.3.493.

DOI:10.1242/jcs.22.3.493
PMID:1018043
Abstract

During the microspore division in Datura innoxia, the mitotic spindle is oriented in planes both perpendicular (PE) and oblique (OB) to the spore wall against which the nucleus is situated. However, irrespective of polarity, the usual type of hemispherical wall is laid down at cytokinesis and isolates the generative cell from the rest of the pollen grain (type A). In PE spores the vegetative nucleus initially occupies a central position in the pollen grain, whereas in OB spores the vegetative nucleus lies at the periphery of the grain close to the generative cell. In anther cultures initiated just before the microspore division is due to take place, no marked change can be observed in either orientation or symmetry of the mitotic spindle when the spores divide. In some, however, cytokinesis is disrupted and deposition of the hemispherical wall arrested. In the absence of a complete wall, differentiation of the generative cell cannot take place and binucleate pollen grains are formed having 2 vegetative-type nuclei (type B). The 2 nuclei in the B pollens are always situated against the pollen-grain wall, suggesting that the disruption phenomenon is related to the OB spores. The incomplete wall always makes contact with the intine on the intine-side of the spindle. Wall material may be represented merely as short stubs projecting out from the intine into the cytoplasm, in which event the 2 nuclei lie close to each other and are separated by only a narrow zone of cytoplasm. In other grains the wall is partially developed between the nuclei and terminates at varying distances from the tonoplast; in these, the nuclei are separated by a wider zone of cytoplasm. The significance of these binucleate grains in pollen embryogenesis is discussed.

摘要

在紫花曼陀罗的小孢子分裂过程中,有丝分裂纺锤体的方向与细胞核所在的孢子壁平面既垂直(PE)又倾斜(OB)。然而,无论极性如何,在胞质分裂时都会形成常见类型的半球形壁,将生殖细胞与花粉粒的其余部分隔离开来(A型)。在PE孢子中,营养核最初占据花粉粒的中心位置,而在OB孢子中,营养核位于靠近生殖细胞的花粉粒周边。在小孢子分裂即将发生之前开始的花药培养中,当孢子分裂时,有丝分裂纺锤体的方向或对称性均未观察到明显变化。然而,在一些情况下,胞质分裂受到干扰,半球形壁的沉积停止。在没有完整壁的情况下,生殖细胞无法分化,形成具有两个营养型细胞核的双核花粉粒(B型)。B型花粉中的两个细胞核总是靠着花粉粒壁,这表明这种干扰现象与OB孢子有关。不完整的壁总是在纺锤体的内膜侧与内膜接触。壁物质可能仅表现为从内膜伸入细胞质的短残端,在这种情况下,两个细胞核彼此靠近,仅被狭窄的细胞质区域隔开。在其他花粉粒中,壁在细胞核之间部分发育,并在距液泡膜不同距离处终止;在这些花粉粒中,细胞核被较宽的细胞质区域隔开。本文讨论了这些双核花粉粒在花粉胚胎发生中的意义。

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