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1.
肌醇磷脂依赖的磷脂酶C(PLC)是经典肌醇磷脂信号系统的重要组分,它分解二磷酸磷脂酰肌醇分子(PIP2)产生双信使IP3和DAG分子。动物细胞中DAG激活蛋白激酶C(PKC)参与调节多种细胞功能。植物基因组中缺乏PKC的同源序列,DAG被二酰甘油激酶(DGK)进一步磷酸化形成磷脂酸(PA),形成新的植物特有的第二信使分子。酶蛋白PLC和DGK及其作用的底物和产物形成植物特色的信号途径,该信号途径在植物对非生物和生物胁迫的反应中发挥重要作用。该文从蛋白信号分子的表达特征和脂质信号分子的含量变化等两个方面综述了植物特色的肌醇信号途径PLC-DGK/PA在应答渗透胁迫反应中的作用。除了PLC-DG活性外,PA也可由磷脂酶D(PLD)产生。该文还对两种途径产生的PA进行了讨论。  相似文献   

2.
G蛋白对花粉管生长的调控作用   总被引:7,自引:2,他引:5  
赵彩平  张绍铃 《西北植物学报》2004,24(11):2177-2182
花粉萌发和花粉管生长是花粉与雌蕊相互作用过程中受到高度调控的发育过程,它涉及花粉与雌蕊的识别作用、细胞间及细胞内信息传递等生理反应。近年的研究表明G蛋白作为一类重要的信号分子在调控花粉管生长中起重要作用。着重介绍G蛋白对花粉管生长的调控作用以及此过程中G蛋白与其它信号组分的协同作用。  相似文献   

3.
花粉蛋白质组学研究进展   总被引:1,自引:0,他引:1  
戴绍军 《植物学报》2007,24(3):319-329
花粉是高度退化的生物体(雄配子体), 在植物有性生殖过程中具有重要作用。解析花粉发育、花粉-柱头识别、萌发和花粉管生长等细胞学过程的分子机制是当前研究的热点问题之一。近年来, 应用高通量的蛋白质组学技术平台, 对水稻、拟南芥和裸子植物花粉的蛋白质组学研究揭示了花粉中表达蛋白质的功能类群特征。花粉中参与细胞壁代谢、蛋白质代谢、细胞骨架动态和信号转导的蛋白质被高度代表, 并且近1/4蛋白质有多个同工型。本文综述了花粉蛋白质组学的研究进展。  相似文献   

4.
戴绍军 《植物学通报》2007,24(3):319-329
花粉是高度退化的生物体(雄配子体),在植物有性生殖过程中具有重要作用。解析花粉发育、花粉-柱头识别、萌发和花粉管生长等细胞学过程的分子机制是当前研究的热点问题之一。近年来,应用高通量的蛋白质组学技术平台,对水稻、拟南芥和裸子植物花粉的蛋白质组学研究揭示了花粉中表达蛋白质的功能类群特征。花粉中参与细胞壁代谢、蛋白质代谢、细胞骨架动态和信号转导的蛋白质被高度代表,并且近1/4蛋白质有多个同工型。本文综述了花粉蛋白质组学的研究进展。  相似文献   

5.
SAM Mtases是从多种植物中分离到的一类S-腺苷-L-甲硫氨酸依赖性氧位甲基转移酶基因,该基因对植物体内木质素、类苯基丙烷、类黄酮类、生物碱和脂肪族化合物等许多次生代谢产物合成有直接的影响,并且在植物抗病、抗紫外线、杀虫、抗菌、植物激素生长和信号调节、植物共生、花粉管伸长和花粉生长等生理过程中起重要作用.该文总结了国内外已经克隆到的SAM Mtases同源基因的分离、分类及其功能,为进一步研究SAM Mtases基因在植物生理代谢调控中的地位及在植物抗性及药用成分育种上的应用提供参考.  相似文献   

6.
细胞外 Ca2 及其跨膜内流在花粉萌发和花粉管生长中具重要作用 〔1〕,磷脂酰肌醇 ( PI)系统产生的IP3(肌醇 - 1 ,4,5-三磷酸 )能诱导细胞内 Ca2 库释放 Ca2 〔2 ,3〕,IP3及其受体调节花粉萌发和花粉管生长〔4~ 7〕,但它们之间的作用及关系还不清楚。笔者通过抑制剂对细胞内 Ca2 的调节 ,以期进一步探讨细胞内 Ca2 库的 Ca2 释放在花粉萌发和花粉管生长中的作用及其和细胞外 Ca2 及其内流的关系。1  材料与方法将‘国光’、‘富士’苹果 ( Maluspumila Mill.)花粉播种在基本培养基 ( 1 0 %蔗糖 1 0 0 μg/g硼酸 ) 〔8…  相似文献   

7.
魏丽勤  王台 《植物学报》2007,24(3):311-318
在受精过程中花粉通过其极性生长的花粉管将精细胞运送到胚囊启动双受精, 除了在有性生殖过程中的重要作用外,花粉及其极性生长的花粉管也是研究植物生长发育的重要模式材料。随着模式植物拟南芥和水稻基因组测序的完成, 在基因组水平上揭示花粉发育以及花粉管极性生长的分子基础已成为可能。经过最近几年的研究已初步明确了花粉转录组特征。本文主要讨论了拟南芥花粉转录组学的研究进展, 以期帮助读者对花粉发育的研究有全面了解。  相似文献   

8.
花粉发育的转录组研究进展   总被引:2,自引:1,他引:2  
魏丽勤  王台 《植物学通报》2007,24(3):311-318
在受精过程中花粉通过其极性生长的花粉管将精细胞运送到胚囊启动双受精,除了在有性生殖过程中的重要作用外,花粉及其极性生长的花粉管也是研究植物生长发育的重要模式材料。随着模式植物拟南芥和水稻基因组测序的完成,在基因组水平上揭示花粉发育以及花粉管极性生长的分子基础已成为可能。经过最近几年的研究已初步明确了花粉转录组特征。本文主要讨论了拟南芥花粉转录组学的研究进展,以期帮助读者对花粉发育的研究有全面了解。  相似文献   

9.
微丝骨架的构成及其对花粉管极性生长的调控作用   总被引:3,自引:3,他引:0  
微丝骨架是细胞骨架的重要组成部分,它由肌动蛋白和肌动蛋白结合蛋白组成,广泛存在于真核细胞中。近年来,大量研究表明植物花粉及花粉管中存在丰富的微丝骨架。目前,在微丝骨架作为信号转导途径的靶标参与对花粉管极性生长的调控、微丝骨架在花粉和花粉管中的分布及其在花粉管生长过程中与其他信号分子之间的相互作用等方面取得了一系列突破性进展。  相似文献   

10.
磷脂酰肌醇转移蛋白(phosphatidylinositol/phosphatidylcholine transfer proteins,PITP)普遍存在于真核生物细胞中,PITP能够结合并交换一分子的磷脂酰肌醇(phosphatidylinositol,PI)或磷脂酰胆碱(phosphatidylcholine,PC),并促进这两类脂分子在细胞内膜组分间的转移。PITP对细胞内膜组分间脂类的运输和代谢、分泌囊泡的形成和运输、磷脂酶C(phospholipase,PLC)调节的信号传导以及神经退化等生理生化过程具有重要的影响。综述了近年来PITP的研究进展,并对目前研究中存在的一些问题进行探讨。  相似文献   

11.
Pollen tube targeting and axon guidance: parallels in tip growth mechanisms   总被引:12,自引:0,他引:12  
The growth of pollen tubes to plant egg cells and the guidance of axons to neural synapses are classic examples of targeted cell growth. Despite the evolutionary time that separates animals and plants, axon and pollen tube guidance share remarkable mechanistic similarities. In both instances, extracellular cues are transduced by intracellular signal-transduction pathways that culminate in directed tip growth. Do the mechanistic similarities extend to the molecular level? Here, we address this question by a comprehensive review of the molecules and pathways involved in pollen tube targeting and axon guidance. The emerging scenario is that similar intracellular molecules are recruited to control tip growth, while different extracellular molecules mediate guidance through the distinct plant and animal extracellular matrices.  相似文献   

12.
Pollen tube growth is a dynamic system expressing a number of oscillating circuits. Our recent work identified a new circuit, oscillatory efflux of Cl anion from the pollen tube apex. Cl efflux is the first ion signal found to be coupled in phase with growth oscillations. Functional analyses indicate an active role for Cl flux in pollen tube growth. In this report the dynamical properties of Cl efflux are examined. Phase space analysis demonstrates that the system trajectory converges on a limit cycle. Fourier analysis reveals that two harmonic frequencies characterize normal growth. Cl efflux is inhibited by the channel blocker DIDS, is stimulated by hypoosmotic treatment, and is antagonized by the signal encoded in inositol 3,4,5,6-tetrakisphosphate. These perturbations induce transitions of the limit cycle to new metastable states or cause system collapse to a static attractor centered near the origin. These perturbations also transform the spectral profile, inducing subharmonic frequencies, transitions to period doubling and tripling, superharmonic resonance, and chaos. These results indicate that Cl signals in pollen tubes display features that are characteristic of active oscillators that carry frequency-encoded information. A reaction network of the Cl oscillator coupled to two nonlinear feedback circuits that may drive pollen tube growth oscillations is considered.  相似文献   

13.
Sexual reproduction is achieved by precise interactions between male and female reproductive organs. In plant fertilization, sperm cells are carried to ovules by pollen tubes. Signals from the pistil are involved in elongation and control of the direction of the pollen tube. Genetic, reverse genetic, and cell biological analyses using model plants have identified various factors related to the regulation of pollen tube growth and guidance. In this review, I summarize the mechanisms and molecules controlling pollen tube growth to the ovule, micropylar guidance, reception of the guidance signal in the pollen tube, rupture of the pollen tube to release sperm cells, and cessation of the tube guidance signal. I also briefly introduce various techniques used to analyze pollen tube guidance in vitro.  相似文献   

14.
Phosphatidyl inositol 4,5-bisphosphate (PI 4,5-P2) accumulates in a Rac/Rop-dependent manner in the pollen tube tip plasma membrane, where it may control actin organization and membrane traffic. PI 4,5-P2 is hydrolyzed by phospholipase C (PLC) activity to the signaling molecules inositol 1,4,5-trisphosphate and diacyl glycerol (DAG). To investigate PLC activity during tip growth, we cloned Nt PLC3, specifically expressed in tobacco (Nicotiana tabacum) pollen tubes. Recombinant Nt PLC3 displayed Ca2+-dependent PI 4,5-P2-hydrolyzing activity sensitive to U-73122 and to mutations in the active site. Nt PLC3 overexpression, but not that of inactive mutants, inhibited pollen tube growth. Yellow fluorescent protein (YFP) fused to Nt PLC3, or to its EF and C2 domains, accumulated laterally at the pollen tube tip plasma membrane in a pattern complementary to the distribution of PI 4,5-P2. The DAG marker Cys1:YFP displayed a similar intracellular localization as PI 4,5-P2. Blocking endocytic membrane recycling affected the intracellular distribution of DAG but not of PI 4,5-P2. U-73122 at low micromolar concentrations inhibited and partially depolarized pollen tube growth, caused PI 4,5-P2 spreading at the apex, and abolished DAG membrane accumulation. We show that Nt PLC3 is targeted by its EF and C2 domains to the plasma membrane laterally at the pollen tube tip and that it maintains, together with endocytic membrane recycling, an apical domain enriched in PI 4,5-P2 and DAG required for polar cell growth.  相似文献   

15.
16.
The fertilization process of plants is governed by different kinds of cell-cell interactions. In higher plants, these interactions are required both for recognition of the pollen grain by the female reproductive system and to direct the growth of the pollen tube inside the ovary. Despite many years of study, the signaling mechanisms that guide the pollen tube toward its target, the ovule, are largely unknown. Two distinct types of principles, mechanical and chemotropic, have been suggested to account for the directed growth of the pollen tube. The first of these two types of models implies that the guidance of the pollen tube depends on the architecture and chemical properties of the female reproductive tissues, whereas the latter suggests that the ovule provides a signal for the target-directed growth of the pollen tube. To examine such a role for the ovules, we analyzed the growth path of pollen tubes in mutants defective in ovule development in Arabidopsis. The results presented here provide unique in vivo evidence for an ovule-derived, long-range activity controlling pollen tube guidance. A morphological comparison of the ovule mutants used in this study indicates that within the ovule, the haploid embryo sac plays an important role in this long-range signaling process.  相似文献   

17.
The regulation of pollen development and pollen tube growth is a complicated biological process that is crucial for sexual reproduction in flowering plants. Annexins are widely distributed from protists to higher eukaryotes and play multiple roles in numerous cellular events by acting as a putative “linker” between Ca2+ signaling, the actin cytoskeleton and the membrane, which are required for pollen development and pollen tube growth. Our recent report suggested that downregulation of the function of Arabidopsis annexin 5 (Ann5) in transgenic Ann5-RNAi lines caused severely sterile pollen grains. However, little is known about the underlying mechanisms of the function of Ann5 in pollen. This study demonstrated that Ann5 associates with phospholipid membrane and this association is stimulated by Ca2+ in vitro. Brefeldin A (BFA) interferes with endomembrane trafficking and inhibits pollen germination and pollen tube growth. Both pollen germination and pollen tube growth of Ann5-overexpressing plants showed increased resistance to BFA treatment, and this effect was regulated by calcium. Overexpression of Ann5 promoted Ca2+-dependent cytoplasmic streaming in pollen tubes in vivo in response to BFA. Lactrunculin (LatB) significantly prohibited pollen germination and tube growth by binding with high affinity to monomeric actin and preferentially targeting dynamic actin filament arrays and preventing actin polymerization. Overexpression of Ann5 did not affect pollen germination or pollen tube growth in response to LatB compared with wild-type, although Ann5 interacts with actin filaments in a manner similar to some animal annexins. In addition, the sterile pollen phenotype could be only partially rescued by Ann5 mutants at Ca2+-binding sites when compared to the complete recovery by wild-type Ann5. These data demonstrated that Ann5 is involved in pollen development, germination and pollen tube growth through the promotion of endomembrane trafficking modulated by calcium. Our results provide reliable molecular mechanisms that underlie the function of Ann5 in pollen.  相似文献   

18.
This review focuses on the energy metabolism during pollen maturation and tube growth and updates current knowledge. Pollen tube growth is essential for male reproductive success and extremely fast. Therefore, pollen development and tube growth are high energy-demanding processes. During the last years, various publications (including research papers and reviews) emphasize the importance of mitochondrial respiration and fermentation during male gametogenesis and pollen tube elongation. These pathways obviously contribute to satisfy the high energy demand, and there are many studies which suggest that respiration and fermentation are the only pathways to generate the needed energy. Here, we review data which show for the first time that in addition plastidial glycolysis and the balancing of the ATP/NAD(P)H ratio (by malate valves and NAD+ biosynthesis) contribute to satisfy the energy demand during pollen development. Although the importance of energy generation by plastids was discounted during the last years (possibly due to the controversial opinion about their existence in pollen grains and pollen tubes), the available data underline their prime role during pollen maturation and tube growth.  相似文献   

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