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首页> 外文期刊>Cell biology international. >Unusual cytological patterns of microsporogenesis in brachiaria decumbens: abnormalities in spindle and defective cytokinesis causing precocious cellularization.
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Unusual cytological patterns of microsporogenesis in brachiaria decumbens: abnormalities in spindle and defective cytokinesis causing precocious cellularization.

机译:臂状臂孢菌中微孢子发生的异常细胞学模式:纺锤体异常和胞质分裂异常导致早熟细胞化。

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摘要

Cytogenetic studies carried out in the tetraploid accession BRA001068 of Brachiaria decumbens, also known as cv. Basilisk, revealed an unusual pattern of microsporogenesis. The spindle in metaphase I and anaphase I became heavily stained with propionic carmine. In telophase I, the interzonal microtubules continued to be intensely stained, and during the phragmoplast formation the fibers were pushed to the cell wall, persisting until prophase II, even after cytokinesis. Due to its tetraploid condition, the accession presented many cells with precocious chromosome migration to the poles in metaphase I and laggards in anaphase I that gave rise to micronuclei in telophase I. While in other polyploid accessions of Brachiaria micronuclei remained in this condition until the second cytokinesis, the micronuclei in this accession organized their own spindle in the second division. In several microsporocytes, the micronuclei with their minispindle were divided further into microcytes by additional cytokinesis. Some curious planes of cytokinesis were found in some cells, with partitioning of cytoplasm into cells of irregular shape. The result consisted of a high frequency of abnormal products of meiosis. Quadrivalents were observed in diakinesis at low frequency, which suggests a segmental allotetraploid and the inability of both genomes to co-ordinate their activities, leading to multiple spindle and precocious cellularization. In spite of abnormal meiotic products reducing pollen fertility, seed production was normal. Enough normal pollen was available to fertilize the central-cell nucleus of the embryo sac and produce normal endosperm in this pseudogamous aposporous apomictic accession.
机译:细胞遗传学的研究是在臂形臂锈菌(Brachiaria decumbens)的四倍体登录号BRA001068上进行的。蛇怪,揭示了微孢子发生的异常模式。中期I和后期I的纺锤体被丙胭脂红严重染色。在末期I,区域间微管继续被强烈染色,在成膜细胞形成过程中,纤维被推至细胞壁,一直持续到前期II,甚至在细胞分裂后也是如此。由于其四倍体条件,该种质呈现出许多具有早熟染色体迁移的细胞迁移至中期I的两极和后期I的落后者,从而在末期I产生了微核。而在其他多倍体中,腕带微核的种质一直保持这种状态直到第二种。胞质分裂时,该种的微核在第二部分组织了自己的纺锤体。在几个微孢子细胞中,具有微纺锤体的微核通过额外的胞质分裂作用进一步细分为微细胞。在某些细胞中发现了一些胞质分裂的奇异平面,细胞质分配为不规则形状的细胞。结果包括减数分裂异常产物的高频率。在diakinesis中以低频率观察到四价体,这表明存在分段异源四倍体,并且两个基因组均无法协调其活性,从而导致多纺锤和早熟细胞化。尽管减数分裂产物异常减少了花粉的繁殖力,但种子产量却正常。足够的正常花粉可用于使胚囊的中央细胞核受精,并在该假配子体的无孔无融合生殖体中产生正常的胚乳。

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