Suppr超能文献

丽藻细胞质流动的重力依赖性极性。

Gravity-dependent polarity of cytoplasmic streaming in Nitellopsis.

作者信息

Wayne R, Staves M P, Leopold A C

机构信息

Section of Plant Biology, Cornell University, Ithaca, New York, USA.

出版信息

Protoplasma. 1990;155:43-57. doi: 10.1007/BF01322614.

Abstract

The internodal cells of the characean alga Nitellopsis obtusa were chosen to investigate the effect of gravity on cytoplasmic streaming. Horizontal cells exhibit streaming with equal velocities in both directions, whereas in vertically oriented cells, the downward-streaming cytoplasm flows ca. 10% faster than the upward-streaming cytoplasm. These results are independent of the orientation of the morphological top and bottom of the cell. We define the ratio of the velocity of the downward- to the upward-streaming cytoplasm as the polar ratio (PR). The normal polarity of a cell can be reversed (PR < 1) by treatment with neutral red (NR). The NR effect may be the result of membrane hyperpolarization, caused by the opening of K+ channels. The K+ channel blocker TEA Cl- inhibits the NR effect. External Ca2+ is required for normal graviresponsiveness. The [Ca2+] of the medium determines the polarity of cytoplasmic streaming. Less than 1 micromole Ca2+ resulted in a PR < 1 while greater than 1 micromole Ca2+ resulted in the normal gravity response. The voltage-dependent Ca(2+)-channel blocker, nifedipine, inhibited the gravity response in a reversible manner, while treatment with LaCl3 resulted in a PR < 1, indicating the presence of two types of Ca2+ channels. A new model for graviperception is presented in which the whole cell acts as the gravity sensor, and the plasma membrane acts as the gravireceptor. This is supported by ligation and UV irradiation experiments which indicate that the membranes at both ends of the cell are required for graviperception. The density of the external medium also affects the PR of Nitellopsis. Calculations are presented that indicate that the weight of the protoplasm may provide enough potential energy to open ion channels.

摘要

选用轮藻属钝节拟丽藻的节间细胞来研究重力对细胞质流动的影响。水平放置的细胞在两个方向上的细胞质流动速度相等,而垂直放置的细胞中,向下流动的细胞质比向上流动的细胞质流速快约10%。这些结果与细胞形态学上的顶部和底部的方向无关。我们将向下流动与向上流动的细胞质速度之比定义为极性比(PR)。用中性红(NR)处理可使细胞的正常极性反转(PR < 1)。NR效应可能是由K+通道开放引起的膜超极化的结果。K+通道阻滞剂氯化四乙铵(TEA Cl-)可抑制NR效应。正常的重力反应需要外部Ca2+。培养基中的[Ca2+]决定了细胞质流动的极性。小于1微摩尔的Ca2+会导致PR < 1,而大于1微摩尔的Ca2+会导致正常的重力反应。电压依赖性Ca(2+)通道阻滞剂硝苯地平以可逆方式抑制重力反应,而用LaCl3处理会导致PR < 1,表明存在两种类型的Ca2+通道。提出了一种新的重力感知模型,其中整个细胞充当重力传感器,质膜充当重力感受器。结扎和紫外线照射实验支持了这一点,这些实验表明细胞两端的膜对于重力感知是必需的。外部介质的密度也会影响钝节拟丽藻的PR。计算结果表明,原生质的重量可能提供足够的势能来打开离子通道。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验