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clinorotation和微重力对用细胞松弛素D处理的草木樨根尖细胞的影响。

Effects of clinorotation and microgravity on sweet clover columella cells treated with cytochalasin D.

作者信息

Hilaire E, Paulsen A Q, Brown C S, Guikema J A

机构信息

Kansas State Univ., NSCORT in Gravitational Biology, Manhattan 66506-4901, USA.

出版信息

Physiol Plant. 1995 Oct;95(2):267-73.

Abstract

The cytoskeleton of columella cells is believed to be involved in maintaining the developmental polarity of cells observed as a reproducible positioning of cellular organelles. It is also implicated in the transduction of gravitropic signals. Roots of sweet clover (Melilotus alba L.) seedlings were treated with a microfilament disrupter, cytochalasin D, on a slowly rotating horizontal clinostat (2 rpm). Electron micrographs of treated columella cells revealed several ultrastructural effects including repositioning of the nucleus and the amyloplasts and the formation of endoplasmic reticulum (ER) whorls. However, experiments performed during fast clinorotation (55 rpm) showed an accumulation (but no whorling) of a disorganized ER network at the proximal and distal pole and a random distribution of the amyloplasts. Therefore, formation of whorls depends upon the speed of clinorotation, and the overall impact of cytochalasin D suggests the necessity of microfilaments in organelle positioning. Interestingly, a similar drug treatment performed in microgravity aboard the US Space Shuttle Endeavour (STS-54, January 1993) caused a displacement of ER membranes and amyloplasts away from the distal plasma membrane. In the present study, we discuss the role of microfilaments in maintaining columella cell polarity and the utility of clinostats to simulate microgravity.

摘要

人们认为,根冠细胞的细胞骨架参与维持细胞的发育极性,这种极性表现为细胞器可重复的定位。它还与重力信号的转导有关。在缓慢旋转的水平回转器(2转/分钟)上,用微丝破坏剂细胞松弛素D处理草木樨(Melilotus alba L.)幼苗的根。处理后的根冠细胞的电子显微镜照片显示出几种超微结构效应,包括细胞核和淀粉质体的重新定位以及内质网(ER)环的形成。然而,在快速回转(55转/分钟)过程中进行的实验表明,在近端和远端极处出现了无序内质网网络的积累(但没有形成环),并且淀粉质体随机分布。因此,环的形成取决于回转速度,细胞松弛素D的总体影响表明微丝在细胞器定位中是必需的。有趣的是,1993年1月在美国奋进号航天飞机(STS - 54)上进行的类似药物处理在微重力条件下导致内质网膜和淀粉质体远离远端质膜发生位移。在本研究中,我们讨论了微丝在维持根冠细胞极性中的作用以及回转器模拟微重力的效用。

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