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微管调节拟南芥根毛的顶端生长和方向。

Microtubules regulate tip growth and orientation in root hairs of Arabidopsis thaliana.

作者信息

Bibikova T N, Blancaflor E B, Gilroy S

机构信息

Department of Biology, Pennsylvania State University, University Park 16802, USA.

出版信息

Plant J. 1999 Mar;17(6):657-65. doi: 10.1046/j.1365-313x.1999.00415.x.

Abstract

The polarized growth of cells as diverse as fungal hyphae, pollen tubes, algal rhizoids and root hairs is characterized by a highly localized regulation of cell expansion confined to the growing tip. In apically growing plant cells, a tip-focused [Ca2+]c gradient and the cytoskeleton have been associated with growth. Although actin has been established to be essential for the maintenance of elongation, the role of microtubules remains unclear. To address whether the microtubule cytoskeleton is involved in root hair growth and orientation, we applied microtubule antagonists to root hairs of Arabidopsis. In this report, we show that depolymerizing or stabilizing the microtubule cytoskeleton of these apically growing root hairs led to a loss of directionality of growth and the formation of multiple, independent growth points in a single root hair. Each growing point contained a tip-focused gradient of [Ca2+]c. Experimental generation of a new [Ca2+]c gradient in root hairs pre-treated with microtubule antagonists, using the caged-calcium ionophore Br-A23187, was capable of inducing the formation of a new growth point at the site of elevated calcium influx. These data indicate a role for microtubules in regulating the directionality and stability of apical growth in root hairs. In addition, these results suggest that the action of the microtubules may be mediated through interactions with the cellular machinery that maintains the [Ca2+]c gradient at the tip.

摘要

诸如真菌菌丝、花粉管、藻类假根和根毛等多种细胞的极性生长,其特征在于细胞扩张受到高度局部化的调控,且局限于生长顶端。在顶端生长的植物细胞中,一个聚焦于顶端的胞质钙离子浓度([Ca2+]c)梯度和细胞骨架与生长相关。尽管已经确定肌动蛋白对于维持伸长至关重要,但微管的作用仍不清楚。为了探究微管细胞骨架是否参与根毛生长和定向,我们将微管拮抗剂应用于拟南芥的根毛。在本报告中,我们表明,使这些顶端生长的根毛的微管细胞骨架解聚或稳定,会导致生长方向性丧失,并在单个根毛中形成多个独立的生长点。每个生长点都包含一个聚焦于顶端的[Ca2+]c梯度。使用笼锁钙离子载体Br-A23187,在预先用微管拮抗剂处理的根毛中实验性地产生新的[Ca2+]c梯度,能够在钙离子流入增加的部位诱导形成新的生长点。这些数据表明微管在调节根毛顶端生长的方向性和稳定性中发挥作用。此外,这些结果表明,微管的作用可能是通过与在顶端维持[Ca2+]c梯度的细胞机制相互作用来介导的。

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