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[低温对冬小麦和春小麦品种根分生组织细胞微管的影响]

[The effect of low temperature on the microtubules in root meristem cells of spring and winter cultivars of wheat Triticum aestivum L].

作者信息

Lazareva E M, Chentsov Iu S, Smirnova E A

出版信息

Tsitologiia. 2008;50(7):597-612.

Abstract

We have studied the response of the interphase and mitotis microtubule arrays in root meristem cells of spring and winter cultivars of wheat Triticum aestivum L. (Moskovskaya 35 and Moskovskaya 39) during cold stress (1 h at 0 degrees C) and acclimation to cold (3-48 h at 0 degrees C). Our data show that interphase microtubules are more resistant to cold than mitotic arrays in both cultivars. During cold stress the density of endoplasmic microtubules increases in interphase cells of winter plants, yet no changes are detected in cells of spring plants. In mitotic cells of both wheat cultivars the density of microtubules within the kinetochore fibers decreases, yet this effect is more evident in the cells of spring plants. During acclimation to cold of both cultivars, we have observed the disorganization of the interphase cortical arrays and the enhanced growth of endoplasmic microtubule arrays, composed of microtubule converging centers. However, the reaction of mitotic microtubule arrays differs in the cells of winter and spring plants. In winter plants, during prophase diffuse tubulin "halo" accumulates first at perinuclear area, followed by the appearance of the microtubule converging centers. In spring plants, we have observed the formation of the prophase spindle, yet later the prophase spindle is not detected. Metaphase cells of both cultivars show similar aberrations of the mitotic spindle, accumulation of abnormal metaphases and the excessive formation of microtubule converging centers. In telophase cells of both cultivars, acclimation induces similar reaction, resulting in the disorganization of the phragmoplast and the formation of multiple microtubule converging centers. The latter are detected in the perinuclear areas of the daughter cells in winter plants and in the cortical cytoplasm of cells in spring plants. Our data point to the common pathways of microtubule response to cold treatment (0 degrees C). The excessive formation of the microtubule converging centers indicates the activation of microtubule assembly during prolonged cold treatment.

摘要

我们研究了冬小麦(Triticum aestivum L.)春、冬品种(莫斯科 35 号和莫斯科 39 号)根分生组织细胞在冷胁迫(0℃处理 1 小时)和冷驯化(0℃处理 3 - 48 小时)过程中,间期和有丝分裂期微管阵列的反应。我们的数据表明,在这两个品种中,间期微管比有丝分裂期微管阵列更耐冷。在冷胁迫期间,冬小麦间期细胞内质微管的密度增加,而春小麦细胞中未检测到变化。在两个小麦品种的有丝分裂细胞中,动粒纤维内的微管密度降低,但这种效应在春小麦细胞中更明显。在两个品种冷驯化期间,我们观察到间期皮层微管阵列紊乱,由微管汇聚中心组成的内质微管阵列生长增强。然而,有丝分裂微管阵列在冬小麦和春小麦细胞中的反应不同。在冬小麦中,前期弥散的微管蛋白“晕”首先在核周区域积累,随后出现微管汇聚中心。在春小麦中,我们观察到前期纺锤体的形成,但后期未检测到前期纺锤体。两个品种的中期细胞都显示出有丝分裂纺锤体的类似畸变、异常中期的积累以及微管汇聚中心的过度形成。在两个品种的末期细胞中,冷驯化诱导了类似的反应,导致成膜体紊乱并形成多个微管汇聚中心。后者在冬小麦子细胞的核周区域以及春小麦细胞的皮层细胞质中被检测到。我们的数据表明微管对冷处理(0℃)有共同的反应途径。微管汇聚中心的过度形成表明在长时间冷处理期间微管组装被激活。

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