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1.
细胞分裂素:代谢、信号转导、交叉反应与农艺性状改良   总被引:3,自引:0,他引:3  
在高等植物中,细胞分裂素通过对细胞分裂与分化的调节而广泛参与了对植物生长发育的调控。在过去的10余年,利用模式植物拟南芥的研究,在阐明细胞分裂素的代谢、转运与信号转导等方面取得了重要的进展。同时,关于细胞分裂素与其它信号途径之间存在的广泛交叉反应也受到了人们的注意。根据我们现有的知识,细胞分裂素信号转导是通过磷酸基团在一个双元组分系统之间的系列传递而完成的,该过程被称之为“磷酸接力传递”(phosphorelay)。细胞分裂素与其它信号途径的互作可能也主要是通过双元组分系统链接的。双元组分系统中目前已知的主要信号元件不仅表现出功能冗余性,同时在调控特定的植物生长发育过程时也具有特异性。本文在对细胞分裂素的代谢与转运过程简要评述的基础上,对其信号转导以及与其它信号途径间交叉反应的研究进展进行重点讨论,并展望细胞分裂素研究对重要农业性状改良的意义。  相似文献   

2.
一氧化氮(NO)作为一种重要的信号分子,不仅参与植物的种子休眠和萌发以及根的形态建成等生长发育过程,还参与调节植物细胞的气孔运动以及植物抗逆应答反应。该文结合最新研究成果,总结了植物NO信号调控机理的研究进展,主要包括NO合成途径、信号转导途径及其与其它信号分子之间的交叉反应和对植物抗逆的调控作用等。  相似文献   

3.
双组分系统由感受信号输入的组氨酸(His) 蛋白激酶和调节信号输出的反应调控因子组成,涉及许多原核生物、真菌、黏菌和植物的各种信号转导途径。在植物中,还存在更复杂的包括杂合的His激酶、磷酸传递中间体和反应调控因子的信号系统,称为多步骤双组分系统。最近的研究表明,双组分系统在对环境刺激和生长调节剂(如乙烯、细胞分裂素、光和渗透胁迫)的反应中起重要作用。  相似文献   

4.
双组分系统由感受信号输入的组氨酸(His)蛋白激酶和调节信号输出的反应调控因子组成,涉及许多原核生物、真菌、黏菌和植物的各种信号转导途径.在植物中,还存在更复杂的包括杂合的His激酶、磷酸传递中间体和反应调控因子的信号系统,称为多步骤双组分系统.最近的研究表明,双组分系统在对环境刺激和生长调节剂(如乙烯、细胞分裂素、光和渗透胁迫)的反应中起重要作用.  相似文献   

5.
光敏色素互作因子(PIFs)属于碱性螺旋-环-螺旋(bHLH)转录因子家族,能在细胞核内与活性形式的光敏色素(PHYS)相互作用并被降解。PIFs参与多种信号转导途径,调控植物的生长发育,如抑制种子萌发、促进幼苗的暗形态建成和植物开花等。作为胞内信号调控的重要组分,PIFs广泛参与植物外部环境因素(如高温、光),以及内部激素(如生长素、细胞分裂素和油菜素内酯等)介导的信号网络。当光信号和温度变化时,PIFs会通过影响生长素合成、运输和信号转导,参与生长素路径,调控植物生长发育。论文就PIFs参与生长素调控的植物生长发育研究进展进行综述,并对未来研究方向加以展望。  相似文献   

6.
乙烯信号转导的分子机制   总被引:12,自引:1,他引:11  
气态植物激素乙烯在植物生长发育和应对生物及非生物胁迫过程中起着重要作用。在过去的十几年中,对模式植物拟南芥的分子遗传研究已建立从信号感知到转录调控的乙烯信号转导线性模型。拟南芥共有5个乙烯受体ETR1、ERS1、ETR2、ERS2和EIN4,目前已知ETR1定位在内质网上,与类似于Raf的蛋白激酶CTR1协同负调控乙烯反应。EIN2和EIN3/EILs位于CTR1下游,正调控乙烯反应。两个F-box蛋白EBF1和EBF2通过泛素/26S蛋白体降解途径调控EIN3的稳定性。5'→3'的外切核酸酶EIN5通过启动EBF1和EBF2 mRNA的降解,拮抗EBF1和EBF2对EIN3的负反馈调控。目前对于乙烯信号转导途径关键组分的生化功能和乙烯下游反应途径的了解甚少,乙烯信号转导途径与其它途径之间还存在着广泛的交叉反应,这些问题的解决将大大增加我们对乙烯信号转导途径的了解。  相似文献   

7.
安丰英  郭红卫 《植物学报》2006,23(5):531-542
气态植物激素乙烯在植物生长发育和应对生物及非生物胁迫过程中起着重要作用。在过去的十几年中, 对模式植物拟南芥的分子遗传研究已建立从信号感知到转录调控的乙烯信号转导线性模型。拟南芥共有5个乙烯受体ETR1、ERS1、ETR2、ERS2和EIN4, 目前已知ETR1定位在内质网上, 与类似于Raf的蛋白激酶CTR1协同负调控乙烯反应。EIN2和EIN3/EILs位于CTR1下游, 正调控乙烯反应。两个F-box蛋白EBF1和EBF2通过泛素/26S蛋白体降解途径调控EIN3的稳定性。5’→3’的外切核酸酶EIN5通过启动EBF1和EBF2 mRNA的降解, 拮抗EBF1和EBF2对EIN3的负反馈调控。目前对于乙烯信号转导途径关键组分的生化功能和乙烯下游反应途径的了解甚少, 乙烯信号转导途径与其它途径之间还存在着广泛的交叉反应, 这些问题的解决将大大增加我们对乙烯信号转导途径的了解。  相似文献   

8.
在植物的生长发育过程中,细胞分裂素在调节细胞分裂和组织发育中起着非常重要的作用.研究表明细胞分裂素的信号转导是一种双组分信号转导途径,在这个系统中,由3种蛋白组成,分别是组氨酸激酶、磷酸转移蛋白和反应调控因子.利用已经克隆的玉米和水稻细胞分裂素反应调节因子基因,进行BLAST分析从玉米全基因组中获得候选ZmRR类型基因.然后设计全长基因引物,通过Trizol法提取玉米叶片总RNA,利用RT-PCR技术克隆出全长候选基因.序列分析表明所扩增序列含有完整的编码框,共编码156个氨基酸残基.序列比对分析其与ZmRR1-10基因具有较高的同源性,并命名为ZmRR11,系统进化树分析证实其属于A类细胞分裂素调控因子,并对所有ZmRR类型基因进行motif分析,共发现37个保守的motif.该基因的克隆和进化分析对阐明玉米双元信号传导体系具有重要的意义.  相似文献   

9.
吴俐  王若仲  徐文忠 《植物学报》2013,48(1):94-106
在酵母、真菌、动物和植物等真核生物中, 以myo-肌醇为基石通过不同位点的磷酸化形成各种myo-肌醇-多磷酸及其衍生物。过去10年的研究发现这些肌醇多磷酸参与了膜脂定向转运、蛋白结构稳定、离子通道调控、RNA转运以及DNA修复和染色质重塑等细胞生物学的基本进程。近些年在模式植物拟南芥(Arabidopsis thaliana)的研究中, 许多调控植物生长发育和环境胁迫应答的重要基因被发现, 并证实这些基因参与myo-肌醇-多磷酸的合成与代谢。该文概述了拟南芥中myo-肌醇-多磷酸合成与代谢的基因调控机理, 综述了不同肌醇多磷酸作为信号分子的功能, 提出肌醇多磷酸如同一类信息代码传递着植物细胞有序进程的基本指令。  相似文献   

10.
类受体激酶是一类具有激酶活性的单次跨膜受体,通过接收和传递胞外信号调控细胞的生理反应,参与植物生长发育过程。植物根在生长发育过程中受到大量的外部刺激和内源性发育信号的影响,植物必须通过整合这些信号并转化为细胞反应,才能适应不断变化的环境条件;植物类受体激酶作为细胞膜上的信息监测者,通过与外源和内源信号的通讯调控根的生长发育。该文对近年来国内外有关类受体激酶的结构、分类及其作用机制,特别是植物类受体激酶在根发育信号转导途径中的功能和作用等方面的研究进展进行综述,为进一步揭示植物类受体激酶在根生长发育中的功能及其作用机制提供参考。  相似文献   

11.
The signal of the plant hormone cytokinin is perceived by membrane-located sensor histidine kinases and transduced by other members of the plant two-component system. In Arabidopsis thaliana, 28 two-component system proteins (phosphotransmitters and response regulators) act downstream of three receptors, transmitting the signal from the membrane to the nucleus and modulating the cellular response. Although the principal signaling mechanism has been elucidated, redundancy in the system has made it difficult to understand which of the many components interact to control the downstream biological processes. Here, we present a large-scale interaction study comprising most members of the Arabidopsis cytokinin signaling pathway. Using the yeast two-hybrid system, we detected 42 new interactions, of which more than 90% were confirmed by in vitro coaffinity purification. There are distinct patterns of interaction between protein families, but only a few interactions between proteins of the same family. An interaction map of this signaling pathway shows the Arabidopsis histidine phosphotransfer proteins as hubs, which interact with members from all other protein families, mostly in a redundant fashion. Domain-mapping experiments revealed the interaction domains of the proteins of this pathway. Analyses of Arabidopsis histidine phosphotransfer protein 5 mutant proteins showed that the presence of the canonical phospho-accepting histidine residue is not required for the interactions. Interaction of A-type response regulators with Arabidopsis histidine phosphotransfer proteins but not with B-type response regulators suggests that their known activity in feedback regulation may be realized by interfering at the level of Arabidopsis histidine phosphotransfer protein-mediated signaling. This study contributes to our understanding of the protein interactions of the cytokinin-signaling system and provides a framework for further functional studies in planta.  相似文献   

12.
Cytokinin signaling   总被引:3,自引:0,他引:3  
Cytokinins influence many aspects of plant growth and development. The current model for cytokinin signaling is a multi-step phosphorelay similar to the prokaryotic two-component systems that are used in responses to environmental stimuli. Recently, progress has been made in improving our understanding of the molecular mechanism that underlies cytokinin signaling. Molecular and genetic analyses of loss-of-function mutants indicate that the two-component elements that are involved in cytokinin signaling have redundant and overlapping functions. These elements regulate both the shoot and root meristems, are required for the development of fertile flowers, and modulate the response to varying nutrient levels.  相似文献   

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The Arabidopsis genome encodes a number of proteins with similarity to two-component phosphorelay signaling elements, including hybrid receptor histidine kinases, two classes of response regulator proteins (type-A and type-B ARRs) and a family of six histidine-containing phosphotransfer proteins (AHPs), five of which contain a conserved His residue that is required for phosphorelay signaling. The current model for cytokinin signaling includes a multistep phosphorelay: three histidine kinases and at least five type-B ARRs have been shown to act as positive regulators of cytokinin signaling, while a number of type-A ARRs, and AHP6, act as negative regulators of the pathway. In our recent Plant Cell paper, we provided genetic evidence that at least four AHPs can act as positive regulators of cytokinin signaling, affecting responses to cytokinin in the root and the shoot. In this addendum, we discuss the role of AHPs in cytokinin signaling and speculate on their potential interactions with other signaling pathways in Arabidopsis.Key Words: Arabidopsis, cytokinin, two-component signaling, phosphorelay, AHP  相似文献   

16.
Cytokinin phytohormones regulate a variety of developmental processes in the root such as meristem size, vascular pattern, and root architecture [1-3]. Long-distance transport of cytokinin is supported by the discovery of cytokinins in xylem and phloem sap [4] and by grafting experiments between wild-type and cytokinin biosynthesis mutants [5]. Acropetal transport of cytokinin (toward the shoot apex) has also been implicated in the control of shoot branching [6]. However, neither the mode of transport nor a developmental role has been shown for basipetal transport of cytokinin (toward the root apex). In this paper, we combine the use of a new technology that blocks symplastic connections in the phloem with a novel approach to visualize radiolabeled hormones in planta to examine the basipetal transport of cytokinin. We show that this occurs through symplastic connections in the phloem. The reduction of cytokinin levels in the phloem leads to a destabilization of the root vascular pattern in a manner similar to mutants affected in auxin transport or cytokinin signaling [7]. Together, our results demonstrate a role for long-distance basipetal transport of cytokinin in controlling polar auxin transport and maintaining the vascular pattern in the root meristem.  相似文献   

17.
Molecular mechanisms of cytokinin action.   总被引:9,自引:0,他引:9  
Cytokinins have been implicated in many aspects of plant development, including a crucial role in regulating cell proliferation. Recent studies indicate that cytokinins may elevate cell division rates by induction of expression of CycD3, which encodes a D-type cyclin thought to play a role in the G1-->M transition of the cell cycle. Progress has also been made in our understanding of cytokinin perception as homologs of two-component phosphorelay systems have emerged as likely signaling elements.  相似文献   

18.
The phytohormones auxin and cytokinin interact to regulate many plant growth and developmental processes. Elements involved in the biosynthesis, inactivation, transport, perception, and signaling of these hormones have been elucidated, revealing the variety of mechanisms by which signal output from these pathways can be regulated. Recent studies shed light on how these hormones interact with each other to promote and maintain plant growth and development. In this review, we focus on the interaction of auxin and cytokinin in several developmental contexts, including its role in regulating apical meristems, the patterning of the root, the development of the gynoecium and female gametophyte, and organogenesis and phyllotaxy in the shoot.  相似文献   

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