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Plant Physiol. 1996 Feb;110(2):425-30. doi: 10.1104/pp.110.2.425.
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Simulated weightlessness and hyper-g results in opposite effects on the regeneration of the cortical microtubule array in protoplasts from Brassica napus hypocotyls.模拟失重和超重力对甘蓝型油菜下胚轴原生质体中皮层微管阵列的再生产生相反的影响。
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Cortical microtubule reorganization in protoplasts isolated from Brassica napus hypocotyl is affected by gravity.从油菜下胚轴分离的原生质体中,皮层微管重组受重力影响。
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Standardized isolation of protoplasts.
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Transductions for the Expression of Structural Pattern: Analysis in Sunflower.结构模式表达的转导:向日葵分析
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Mechanosensory microtubule reorientation in the epidermis of maize coleoptiles subjected to bending stress.遭受弯曲应力的玉米胚芽鞘表皮中机械感受微管的重新定向。
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The effect of laser microsurgery on cytoplasmic strands and cytoplasmic streaming in isolated plant protoplasts.激光显微手术对分离的植物原生质体中细胞质丝和细胞质流动的影响。
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Structure of cortical microtubule arrays in plant cells.植物细胞中皮质微管阵列的结构
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植物细胞生长对外部力量作出反应,且这种反应需要完整的微管。

Plant cell growth responds to external forces and the response requires intact microtubules.

作者信息

Wymer C L, Wymer S A, Cosgrove D J, Cyr R J

机构信息

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

出版信息

Plant Physiol. 1996 Feb;110(2):425-30. doi: 10.1104/pp.110.2.425.

DOI:10.1104/pp.110.2.425
PMID:11536739
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC157736/
Abstract

Microfibril deposition in most plant cells is influenced by cortical microtubules. Thus, cortical microtubules are templates that provide spatial information to the cell wall. How cortical microtubules acquire their spatial information and are positioned is unknown. There are indications that plant cells respond to mechanical stresses by using microtubules as sensing elements. Regenerating protoplasts from tobacco (Nicotiana tabacum) were used to determine whether cells can be induced to expand in a preferential direction in response to an externally applied unidirectional force. Additionally, an anti-microtubule herbicide was used to investigate the role of microtubules in the response to this force. Protoplasts were embedded in agarose, briefly centrifuged at 28 to 34g, and either cultured or immediately prepared for immunolocalization of their microtubules. The microtubules within many centrifuged protoplasts were found to be oriented parallel to the centrifugal force vector. Most protoplasts elongated with a preferential axis that was oriented 60 to 90 degrees to the applied force vector. Protoplasts treated transiently with the reversible microtubule-disrupting agent amiprophos-methyl (applied before and during centrifugation) elongated but without a preferential growth axis. These results indicate that brief biophysical forces may influence the alignment of cortical microtubules and that microtubules themselves act as biophysical responding elements.

摘要

大多数植物细胞中的微原纤维沉积受皮层微管影响。因此,皮层微管是为细胞壁提供空间信息的模板。皮层微管如何获取其空间信息并定位尚不清楚。有迹象表明,植物细胞通过将微管用作传感元件来响应机械应力。利用烟草(Nicotiana tabacum)再生原生质体来确定细胞是否能在外部施加的单向力作用下被诱导向优先方向扩展。此外,使用一种抗微管除草剂来研究微管在对该力的响应中的作用。将原生质体包埋在琼脂糖中,以28至34g的速度短暂离心,然后进行培养或立即准备对其微管进行免疫定位。发现许多离心后的原生质体内的微管与离心力矢量平行排列。大多数原生质体沿着与施加力矢量成60至90度的优先轴伸长。用可逆微管破坏剂氨丙膦酸甲酯短暂处理(在离心前和离心过程中施加)的原生质体伸长,但没有优先生长轴。这些结果表明,短暂的生物物理力可能影响皮层微管的排列,并且微管本身作为生物物理响应元件发挥作用。