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1.
气孔保卫细胞信号转导途径   总被引:8,自引:0,他引:8  
从刺激与感受、信号转换、反应三方面简要介绍气孔保卫细胞的信号转导途径。  相似文献   

2.
保卫细胞胞质中Ca^2+浓度变化与气孔开闭之间的关系   总被引:9,自引:1,他引:9  
外界环境因素刺激(环境胁迫、激素等)引起保卫细胞内外Ca^2 转移,进出胞质或进出液泡、内质网等细胞器,导致胞质中Ca^2 浓度发生变化,从而最终制约着气孔的开闭。文章对保卫细胞胞质中Ca^2 浓度变化与气孔开闭之间的关系及其机制作了介绍。  相似文献   

3.
Ca^2+参与NO对蚕豆气孔运动的调控   总被引:12,自引:0,他引:12  
观察了Ca^2 、Ca^2 的螯合剂和Ca^2 通道抑制剂对NO调控的蚕豆气孔运动的影响。结果表明,NO的供体1~100μmol/L SNP(sodium nitroprusside,硝普纳)可诱导气孔关闭;除去表皮条缓冲液中的Ca^2 后,NO不再影响气孔的运动;Ca^2 的螯合剂EGTA和BAPTA几乎可以完全抑制NO诱导的气孔关闭作用;胞内钙通道抑制剂钌红(rutheniumred)和L型Ca^2 通道阻断剂硝苯吡啶(nifedipine)能够减弱SNP诱导气孔运动的关闭趋势;加入Ca^2 通道抑制剂LaCl3,则外源NO失去其诱导气孔关闭的作用。说明在NO调控的气孔运动中,在NO信号途径的下游可能涉及来自胞内和胞外Ca^2 的参与,并且胞外Ca^2 更为重要。  相似文献   

4.
Ca2+参与水杨酸诱导蚕豆气孔运动时的信号转导   总被引:8,自引:0,他引:8  
在一定条件下,外源水杨酸(SA)可以诱导蚕豆(Vicia faba L.)气孔关闭,阻止气孔张开。以Fluo-3—AM作为Ca^2 的荧光探针,利用激光共聚焦扫描显微技术,对水杨酸调控气孔运动中保卫细胞胞质Ca^2 的变化趋势及Ca^2 的来源进行了研究。结果表明,水杨酸可引起胞质Ca^2 增加,这种变化发生在气孔开度改变之前。Ca^2 螯合剂BAPTA(1,2-bis(2-amino phenox-y)ethane-N,N,N′,N′-tetraacetic acid,1mmol/L)几乎可以完全抑制水杨酸诱导气孔开度减小的作用;胞外Ca^2 螯合剂EGTA(2mmol/L)、质膜Ca^2 通道抑制剂尼群地平(nifedipine,NIF,1μmol/L)和LaCl3(1mmol/L)可不同程度地减弱水杨酸诱导气孔关闭的效应。BAPTA(1mmol/L)预处理后,水杨酸不再引起胞质Ca^2 含量改变;尼群地平能够降低水杨酸引起的胞质Ca^2 增加的幅度。说明Ca^2 可能参与水杨酸诱导气孔运动的信号转导。水杨酸引起胞内升高的Ca^2 可能既来自胞外又来自胞内,胞内Ca^2 库可能是其主要来源。  相似文献   

5.
微丝骨架存在于多种植物的保卫细胞中,周质微丝骨架的排列和结构是动态的。越来越多的证据表明保卫细胞中的微丝骨架可作为信号调节物,对气孔的启闭运动起着重要的调控作用。本文综述了保卫细胞微丝骨架的标记方法、结构,以及其在气孔运动中的功能和作用机制的最新研究进展。  相似文献   

6.
植物生理学中"细胞信号转导"教学的探讨   总被引:1,自引:0,他引:1  
<植物生理学>(潘瑞炽2004)中"细胞信号转导"部分的教学是想让学生了解细胞信号转导的4个步骤,弄清楚信号、受体及细胞信号转导的概念,理解细胞第二信使Ca2 /CaM在信号转导中的作用,了解G蛋白参与的跨膜信号转换、三磷酸肌醇和二酯酰甘油(IP3/DAG)双信号系统及信号转导中的蛋白质可逆磷酸化.  相似文献   

7.
植物气孔运动过程中的信号转导机制   总被引:5,自引:0,他引:5  
气孔运动的信号转导机制一直是科研工作者研究的一个热点,文章就光、CO2、ABA、H2O2、NO、蛋白激酶、蛋白磷酸酶等对保卫细胞气孔运动的影响,介绍气孔运动机制的研究进展。  相似文献   

8.
微丝骨架存在于多种植物的保卫细胞中,周质微丝骨架的排列和结构是动态的。越来越多的证据表明保卫细胞中的微丝骨架可作为信号调节物,对气孔的启闭运动起着重要的调控作用。本文综述了保卫细胞微丝骨架的标记方法、结构,以及其在气孔运动中的功能和作用机制的最新研究进展。  相似文献   

9.
ABA诱导蚕豆气孔保卫细胞H2O2的产生   总被引:22,自引:0,他引:22  
以蚕豆叶片下麦皮为材料,将荧光探针HPTS导入蚕豆忆保卫细胞内,利用荧光光谱和激光共聚焦显微技术,检测了ABA诱导蚕豆气孔关闭过程中H2O2的产生。结果表明,ABA和100μmol/L的H2O2可以迅速猝灭HPTS的荧光,CAT几乎可完全阻止9μl0.2mmol/L的ABA引起荧光猝灭。因此,ABA可以诱导气孔保卫细胞产生H2O2,其产生的强度和速度与ABA的浓度直接有关,并且推测:这种H2O2产  相似文献   

10.
利用粘附式细胞仪(ACAS-570)结合相应的荧光探针分别测定了外源性神经酰胺诱导NIH3T3细胞凋亡时胞浆游离Ca^2+水平和UVB照射NIH 3T3细胞所致细胞内PH的变化以及神经酰胺的生民对这一变化的影响。结果表明,1.神经酰胺能够导致NIH 3T3细胞胞浆游离Ca^2+升高既来源于胞外叠为源于胞内钙池,但外钙内流是引起和维持胞内Ca^2+处于高水平所必要条件,NIH 3T3细胞也上存在着两  相似文献   

11.
Intracellular Monovalent Ions as Second Messengers   总被引:1,自引:0,他引:1  
It is generally accepted that electrochemical gradients of monovalent ions across the plasma membrane, created by the coupled function of pumps, carriers and channels, are involved in the maintenance of resting and action membrane potential, cell volume adjustment, intracellular Ca2+ handling and accumulation of glucose, amino acids, nucleotides and other precursors of macromolecular synthesis. In the present review, we summarize data showing that side-by-side with these classic functions, modulation of the intracellular concentration of monovalent ions in a physiologically reasonable range is sufficient to trigger numerous cellular responses, including changes in enzyme activity, gene expression, protein synthesis, cell proliferation and death. Importantly, the engagement of monovalent ions in regulation of the above-listed cellular responses occurs at steps upstream of Ca2+ i and other key intermediates of intracellular signaling, which allows them to be considered as second messengers. With the exception of HCO 3 -sensitive soluble adenylyl cyclase, the molecular origin of sensors involved in the function of monovalent ions as second messengers remains unknown.  相似文献   

12.
Abstract

Our knowledge about 5-HT (serotonin, 5-hydroxytryptamine) receptors has gained significantly over the recent few years. The discovery of selective ligands and the use of new techniques have led to a significant increase in the number of recognised receptors subtypes. The present status of awareness is largely related to the use of radioligand binding studies, autoradiography, second messenger analysis and more recently, molecular biological techniques. Three main families of 5-HT receptors, of which subtypes have been described, are now accepted. This heterogeneity is further substantiated by the cloning of the cDNA's of three different 5-HT receptors. This article reviews some of the recent developments which led to the characterisation of 5-HT receptor subtypes.  相似文献   

13.
The fact that single cells can exhibit circadian rhythmicity simultaneously in quite different processes, such as those of photosynthesis, bioluminescence, and cell division, suggests that membrane-bound compartmentalization is important for temporal organization. Since these rhythms, as well as others, are known to be affected by changes in the ionic environment and are probably membrane-bound systems, it is not surprising that transmembrane ion transport or flux has been proposed to be a key feature of the underlying circadian oscillator(s). Likewise, signal transduction along the entrainment pathway leading to the clock, among the elements, or “gears,” of the timing loop itself, and within the output pathway between the oscillator and its “hands” likely is mediated by ions and second messengers. In this overview, we examine the theoretical and experimental evidence supporting the possible roles of intracellular free calcium and cyclic AMP in these capacities, particularly in view of the fact that oscillations in the concentrations of both species have been proposed to form the basis of pacemaker activity and other biological rhythms.  相似文献   

14.
SYNOPSIS. The large (26 kDa) prothoracicotropic hormone of Manducasexta stimulates ecdysteroid secretion by the prothoracic glandsthrough the action of cyclic AMP (cAMP). Adenylate cyclase inthe prothoracic glands is sensitive to calcium/calmodulin, andenhancement of intracellular calcium levels may be the meansby which PTTH stimulates cAMP synthesis. The cyclic nucleotidein turn activates cAMP-dependent protein kinase and proteinphosphorylation, most notably of a 34 kDa membraneassociatedprotein. It does not appear that protein kinase C plays a rolein the acute action of PTTH, nor has the hormone been foundto stimulate formation of inositol trisphosphate undercurrentassay conditions. PTTH rapidly increases protein synthesis bythe prothoracic glands, and translation inhibitors block PTTH-stimulatedecdysteroid secretion. Connections between protein phosphorylation,protein synthesis, and ecdysone secretion remain to be clarified.  相似文献   

15.
The Role of Ions and Second Messengers in Circadian Clock Function   总被引:1,自引:0,他引:1  
The fact that single cells can exhibit circadian rhythmicity simultaneously in quite different processes, such as those of photosynthesis, bioluminescence, and cell division, suggests that membrane-bound compartmentalization is important for temporal organization. Since these rhythms, as well as others, are known to be affected by changes in the ionic environment and are probably membrane-bound systems, it is not surprising that transmembrane ion transport or flux has been proposed to be a key feature of the underlying circadian oscillator(s). Likewise, signal transduction along the entrainment pathway leading to the clock, among the elements, or “gears,” of the timing loop itself, and within the output pathway between the oscillator and its “hands” likely is mediated by ions and second messengers. In this overview, we examine the theoretical and experimental evidence supporting the possible roles of intracellular free calcium and cyclic AMP in these capacities, particularly in view of the fact that oscillations in the concentrations of both species have been proposed to form the basis of pacemaker activity and other biological rhythms.  相似文献   

16.
Addition of membrane-permeable cyclic GMP (cGMP) and cyclic AMP (cAMP) were shown to cause elevation of cytosolic Ca2+ concentration ([Ca2+]cyt) in tobacco (Nicotiana plumbaginofolia) protoplasts. Under the same conditions these cyclic nucleotides were shown to provoke a physiological swelling response in the protoplasts. Nonmembrane-permeable cAMP and cGMP were unable to trigger a detectable [Ca2+]cyt response. Cyclic-nucleotide-mediated elevations in [Ca2+]cyt involved both internal and external Ca2+ stores. Both cAMP- and cGMP-mediated [Ca2+]cyt elevations could be inhibited by the Ca2+-channel blocker verapamil. Addition of inhibitors of phosphodiesterases (isobutylmethylxanthine and zaprinast) and the adenylate cyclase agonist forskolin to the protoplasts (predicted to elevate in vivo cyclic-nucleotide concentrations) caused elevations in [Ca2+]cyt. Addition of the adenylate cyclase inhibitor 2′,5′-dideoxyadenosine before forskolin significantly inhibited the forskolin-induced [Ca2+]cyt elevation. Taken together, these data suggest that a potential communication point for cross-talk between signal transduction pathways using cyclic nucleotides in plants is at the level of Ca2+ signaling.  相似文献   

17.
Stomatal Guard Cells Are Totipotent   总被引:1,自引:0,他引:1       下载免费PDF全文
It has been successfully demonstrated, using epidermis explants of sugar beet (Beta vulgaris L.), that stomatal guard cells retain full totipotent capacity. Despite having one of the highest degrees of morphological adaptation and a unique physiological specialization, it is possible to induce a re-expression of full (embryogenic) genetic potential in these cells in situ by reversing their highly differentiated nature to produce regenerated plants via a callus stage. The importance of these findings both to stomatal research and to our understanding of cytodifferentiation in plants is discussed.  相似文献   

18.
The first International Symposium on c-Di-GMP Signaling in Bacteria (22 to 25 March 2015, Harnack-Haus, Berlin, Germany) brought together 131 molecular microbiologists from 17 countries to discuss recent progress in our knowledge of bacterial nucleotide second messenger signaling. While the focus was on signal input, synthesis, degradation, and the striking diversity of the modes of action of the current second messenger paradigm, i.e., cyclic di-GMP (c-di-GMP), “classics” like cAMP and (p)ppGpp were also presented, in novel facets, and more recent “newcomers,” such as c-di-AMP and c-AMP-GMP, made an impressive appearance. A number of clear trends emerged during the 30 talks, on the 71 posters, and in the lively discussions, including (i) c-di-GMP control of the activities of various ATPases and phosphorylation cascades, (ii) extensive cross talk between c-di-GMP and other nucleotide second messenger signaling pathways, and (iii) a stunning number of novel effectors for nucleotide second messengers that surprisingly include some long-known master regulators of developmental pathways. Overall, the conference made it amply clear that second messenger signaling is currently one of the most dynamic fields within molecular microbiology, with major impacts in research fields ranging from human health to microbial ecology.  相似文献   

19.
Early ABA Signaling Events in Guard Cells   总被引:1,自引:0,他引:1  
The plant hormone abscisic acid (ABA) regulates a wide variety of plant physiological and developmental processes, particularly responses to environmental stress, such as drought. In response to water deficiency, plants redistribute foliar ABA and/or upregulate ABA synthesis in roots, leading to roughly a 30-fold increase in ABA concentration in the apoplast of stomatal guard cells. The elevated ABA triggers a chain of events in guard cells, causing stomatal closure and thus preventing water loss. Although the molecular nature of ABA receptor(s) remains unknown, considerable progress in the identification and characterization of its downstream signaling elements has been made by using combined physiological, biochemical, biophysical, molecular, and genetic approaches. The measurable events associated with ABA-induced stomatal closure in guard cells include, sequentially, the production of reactive oxygen species (ROS), increases in cytosolic free Ca2+ levels ([Ca2+]i), activation of anion channels, membrane potential depolarization, cytosolic alkalinization, inhibition of K+ influx channels, and promotion of K+ efflux channels. This review provides an overview of the cellular and molecular mechanisms underlying these ABA-evoked signaling events, with particular emphasis on how ABA triggers an “electronic circuitry” involving these ionic components.  相似文献   

20.
单细胞组学技术在动物研究中已经得到广泛应用,但在植物学领域尤其是保卫细胞研究中还处于起步阶段。由保卫细胞构成的气孔承担着植物生命过程中水分散发及气体交换大门的作用。将单细胞组学技术应用到保卫细胞功能解析中将有助于了解保卫细胞参与的基本生理过程。该文综述了植物单细胞组学技术的发展、保卫细胞研究现状及单细胞组学技术在植物保卫细胞研究中的初步应用,为借助该技术解决植物生物学中保卫细胞发育、代谢及对环境胁迫响应等基本问题提供研究思路和方法。  相似文献   

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