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茄科烟草属植物减数分裂后雄性细胞胞质分裂过程中微管分布、胼胝质沉积和花粉孔数量的相关性变异。

Correlated variation in microtubule distribution, callose deposition during male post-meiotic cytokinesis, and pollen aperture number across Nicotiana species (Solanaceae).

机构信息

Laboratoire Ecologie, Evolution et Systématique, Unité Propre de Recherche de l'Enseignement Supérieur Associée au CNRS 8079, Bâtiment 362, Université Paris-XI, 91405 Orsay Cedex, France;

出版信息

Am J Bot. 2002 Mar;89(3):393-400. doi: 10.3732/ajb.89.3.393.

Abstract

In most flowering plants, a single cytokinesis follows the two meiotic divisions during pollen-grain ontogeny. Aperture pattern (i.e., aperture number and distribution on pollen surface) ontogeny could be linked to the processes ensuring the apportionment of the cytoplasm to the four microspores.This apportionment is achieved by radial arrays of microtubules organized around the nuclei. The cleavage planes are defined in the overlapping regions of opposing arrays extending from different nuclei. We followed the establishment of these arrays in two different lines of plants belonging to the genus Nicotiana that produce pollen grains with different aperture numbers. Different distributions of the microtubules have been observed, which can be interpreted as resulting from variation in the interactions between nuclei; these distributions appear to be correlated with aperture number.As a consequence, we propose that simultaneous cytokinesis allows the formation of multiple pollen morphologies. This mechanism is consistent with aperture number distribution within angiosperms and provides clues to help our understanding of the evolution of aperture number.

摘要

在大多数有花植物中,花粉粒发生中单细胞有丝分裂紧随两次减数分裂之后。花粉表面的孔模式(即孔的数量和分布)的发生可能与确保细胞质分配到四个小孢子有关。这种分配是通过围绕核组织的微管径向排列来实现的。分裂面是在从不同核延伸的相对排列的重叠区域中定义的。我们在属于烟草属的两个不同植物系中跟踪了这些排列的建立,这些植物产生的花粉粒具有不同的孔数。观察到微管的不同分布,可以解释为核之间相互作用的变化所致;这些分布似乎与孔数有关。因此,我们提出同时进行细胞分裂可以形成多种花粉形态。这种机制与被子植物中的孔数分布一致,并为帮助我们理解孔数的进化提供了线索。

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