首页> 外文期刊>The Plant Cell >Helical Growth of the Arabidopsis Mutant tortifolia2 Does Not Depend on Cell Division Patterns but Involves Handed Twisting of Isolated Cells.
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Helical Growth of the Arabidopsis Mutant tortifolia2 Does Not Depend on Cell Division Patterns but Involves Handed Twisting of Isolated Cells.

机译:拟南芥突变体tortifolia2的螺旋生长不依赖于细胞分裂模式,但涉及到分离细胞的手工扭曲。

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摘要

Several factors regulate plant organ growth polarity. tortifolia2 (tor2), a right-handed helical growth mutant, has a conservative replacement of Arg-2 with Lys in the l-tubulin 4 protein. Based on a published high-resolution (2.89 c) tubulin structure, we predict that Arg-2 of l-tubulin forms hydrogen bonds with the GTPase domain of o-tubulin, and structural modeling suggests that these contacts are interrupted in tor2. Consistent with this, we found that microtubule dynamicity is reduced in the tor2 background. We investigated the developmental origin of the helical growth phenotype using tor2. One hypothesis predicts that cell division patterns cause helical organ growth in Arabidopsis thaliana mutants. However, cell division patterns of tor2 root tips appear normal. Experimental uncoupling of cell division and expansion suggests that helical organ growth is based on cell elongation defects only. Another hypothesis is that twisting is due to inequalities in expansion of epidermal and cortical tissues. However, freely growing leaf trichomes of tor2 mutants show right-handed twisting and cortical microtubules form left-handed helices as early as the unbranched stage of trichome development. Trichome twisting is inverted in double mutants with tor3, a left-handed mutant. Single tor2 suspension cells also exhibit handed twisting. Thus, twisting of tor2 mutant organs appears to be a higher-order expression of the helical expansion of individual cells.
机译:几个因素调节植物器官的生长极性。右旋螺旋生长突变体tortifolia2(tor2)在l-tubulin 4蛋白中具有保守的Arg-2替换为Lys。基于已发布的高分辨率(2.89 c)微管蛋白结构,我们预测l-微管蛋白的Arg-2与o-微管蛋白的GTPase域形成氢键,并且结构建模表明这些接触在tor2中被打断。与此相一致,我们发现在tor2背景中微管动态性降低了。我们调查了使用tor2的螺旋生长表型的发展起源。一种假设预测细胞分裂模式会导致拟南芥突变体中螺旋器官的生长。但是,tor2根尖的细胞分裂模式似乎正常。细胞分裂和扩增的实验解偶联表明,螺旋器官的生长仅基于细胞伸长缺陷。另一个假设是扭曲是由于表皮和皮层组织扩张不均引起的。但是,tor2突变体的自由生长的叶毛状体显示出右旋扭曲,而皮质三微管早在毛状体发育的未支配阶段就形成了左旋螺旋。在双突变体tor3(左手突变体)中,Trichome扭转被反转。单个的tor2悬浮细胞也显示出扭曲的手感。因此,tor2突变器官的扭曲似乎是单个细胞螺旋扩展的高级表达。

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