首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Pattern of callose deposition during the course of meiotic diplospory in Chondrilla juncea (Asteraceae, Cichorioideae)
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Pattern of callose deposition during the course of meiotic diplospory in Chondrilla juncea (Asteraceae, Cichorioideae)

机译:在Chondrilla Juncea的减数分子证物(奥斯特科伊,Cichorioideae)的减数分子类化学过程中的调节沉积模式

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摘要

Total absence of callose in the ovules of diplosporous species has been previously suggested. This paper is the first description of callose events in the ovules of Chondrilla juncea, which exhibits meiotic diplospory of the Taraxacum type. We found the presence of callose in the megasporocyte wall and stated that the pattern of callose deposition is dynamically changing during megasporogenesis. At the premeiotic stage, no callose was observed in the ovules. Callose appeared at the micropylar pole of the cell entering prophase of the first meioticdivision restitution but did not surround the megasporocyte. After the formation of a restitution nucleus, a conspicuous callose micropylar cap and dispersed deposits of callose were detected in the megasporocyte wall. During the formation of a diplodyad, the micropylar callose cap decreased and the walls of a newly formed megaspores showed scattered distribution of callose. Within the older diplodyad, callose was mainly accumulated in the wall between megaspores, as well as in the wall of the micropylar cell; however, a dotted fluorescence of callose was also visible in the wall of the chalazal megaspore. Gradual degradation of callose in the wall of the chalazal cell and intense callose accumulation in the wall of the micropylar cell were related to the selection of the functional megaspore. Thus, our findings may suggest that callose fulfills a similar role both during megasporogenesis in sexual angiosperms and in the course of meiotic diplospory in apomicts and seems to form a regulatory interface between reproductive and somatic cells.
机译:以前曾有人认为,双孢子植物的胚珠中完全没有胼胝质。本文首次描述了具有蒲公英型减数分裂二倍体的芥菜软骨藻胚珠中的胼胝质事件。我们在大孢子母细胞壁中发现了胼胝质的存在,并指出胼胝质沉积的模式在大孢子发生过程中是动态变化的。在减数分裂前阶段,胚珠中没有观察到胼胝质。胼胝质出现在进入第一次减数分裂恢复前期的细胞珠孔极,但没有包围大孢子母细胞。在恢复核形成后,在大孢子母细胞壁上发现一个明显的胼胝质珠孔帽和分散的胼胝质沉积。在双倍体形成过程中,珠孔胼胝质帽减少,新形成的大孢子壁呈散在分布的胼胝质。在较老的双孢中,胼胝质主要积累在大孢子之间的壁中,以及珠孔细胞壁中;然而,在合点大孢子的壁上也可以看到胼胝质的点状荧光。合点细胞壁胼胝质的逐渐降解和珠孔细胞壁胼胝质的强烈积累与功能性大孢子的选择有关。因此,我们的研究结果可能表明,胼胝质在有性被子植物大孢子发生和无融合生殖细胞减数分裂二倍体过程中起着相似的作用,似乎在生殖细胞和体细胞之间形成了一个调节界面。

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