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1.
蚕豆根装载的^3H-ABA可以5.6cm/min以上的速率向冠部运输,短时间内根运来的ABA主要分布在有大量气孔密布的下表皮,但长时间内则主要分布在大叶肉组织中,抑制蒸腾可降低ABA向叶片中的运输积累。  相似文献   

2.
应用胶体金免疫电镜定位技术研究水分胁迫下叶片ABA的再分配。表明:水分胁迫初期蚕豆叶肉细胞中ABA的量与对照相比无明显变化,但水分胁迫可导致表皮细胞质外体ABA含量明显增加;保卫细胞在水分胁迫前即含有大量ABA;ABA主要分布在叶绿体和细胞核,细胞的腹壁及相邻外壁和内壁也有大量ABA存在,但背壁ABA的量很少;气孔完全开放时背壁ABA含量更少,当水分胁迫导致气孔关闭时,保卫细胞背壁ABA含量大增,说明气孔运动与保卫细胞中ABA的区隔化与再分配密切相关。  相似文献   

3.
用胶体金免疫电镜技术对蚕豆 ( Vicia faba L.)根中 ABA的定位结果表明 ,在原分生组织金颗粒主要分布在细胞核。在基本分生组织或伸长区前部皮层细胞的质膜附近有较多的金颗粒标记 ,维管柱特别是维管组织的质外体中发现有大量金颗粒标记。伸长区中部及根毛区细胞也有较多的金颗粒标记。水分胁迫可导致初生分生组织或伸长区前部细胞金颗粒标记密度大增 ,伸长区中部及根毛区细胞的金颗粒密度也明显增加。对根中 ABA在超微结构水平上的分布及其与运输的关系进行了讨论 ,为 ABA有可能作为由根向地上部分传递的逆境信息提供了进一步的证据。  相似文献   

4.
蚕豆叶片中水分胁迫诱导ABA积累的触发机制   总被引:5,自引:2,他引:3  
水分胁迫诱导ABA积累过程是植物逆境信息传递的核心问题,水分胁迫诱导ABA积累的触发实质上是水分胁迫原初信号的识别、转导过程.以蚕豆叶片为材料,对甘露醇胁迫诱导ABA积累的触发机制进行了研究.结果表明,890mmol/kg渗透浓度的甘露醇处理可导致离体叶片组织中ABA浓度增加5倍以上,而原生质体中ABA浓度增加幅度不足40%;与离体叶片组织一样,水分胁迫可导致游离细胞中ABA大幅度增加,游离细胞中ABA积累幅度比原生质体高10倍以上,表明水分胁迫下ABA积累的触发过程和细胞质膜与细胞壁的相互作用密切相关.Ca2+螯合剂EGTA及Ca2+通道激活剂A23187对水分胁迫诱导的ABA积累没有影响;细胞骨架的抑制剂秋水仙碱和细胞松弛素B对水分胁迫诱导的ABA积累也没有任何影响.有趣的是,一种不能穿越细胞质膜的蛋白质巯基试剂PCMBS( p-chloromercuriphenyl- sulfonic acid)可有效地抑制水分胁迫诱导的ABA积累,说明细胞质膜的某种蛋白参与了水分胁迫诱导ABA积累的触发过程,并且该蛋白细胞质膜外侧的功能区域可能具有巯基存在.  相似文献   

5.
水分胁迫下外源ABA对玉米幼苗根叶渗透调节的影响(简报)   总被引:8,自引:0,他引:8  
外施ABA提高叶片的水势约0.02 ̄0.09MPa,对根系的作用小于叶片。外源ABA提高叶片的渗透调节能力0.002 ̄0.045MPa,轻度胁迫下的提高大于严重水分胁迫及正常供水。对根系渗透调节能力的提高几乎没有作用。外施ABA脯氨酸含量增加1倍以上,叶片中增加大于根系。轻度胁迫大于严重胁迫及正常供水。外施ABA的叶片中可溶性糖也有一定提高。  相似文献   

6.
植物在不同的逆境条件下可以生成一类受脱落酸(ABA)诱导的蛋白质[脱落酸响应蛋白(ABAresPonsiveProtein,RABpr。tein)](Bray1993)。RAB蛋白分布在不同的物种之中,许多[如Lea(Lateembryogen-。isabundant)蛋白(Dure1993)]形成于植物胚胎成熟失水过程中,但也有一些是植物受到不同逆境处理后在营养器官内所形成的「如脱水蛋白(Dehrdrin)](Dure1993)。已发现的70余个RAB蛋白中,有30余个属于脱水蛋白。(Close等1993)RAB蛋白在植物体内的功能目前尚不了解(Bray1993)。由蛋白质的氨基酸组成分析表明,这些…  相似文献   

7.
水分胁迫下湖北海棠根系脂氧合酶活性与ABA积累的关系   总被引:4,自引:0,他引:4  
采用无细胞体系(cell-free systsm)及非离体根,研究了湖北海棠(Malus hupehensis(Pampan.)Rehd.)实生幼苗根中脂氧合酶(LOX)活性和脱落酸(ABA)生物合成及胁迫诱导ABA积累的关系。结果表明,水分胁迫(30%PEG处理或0.6mol/L甘露醇处理)及盐胁迫(0.2mol/LNaCl)诱导ABA积累的同时,LOX活性也上升,两者呈一致关系。LOX专一抑制  相似文献   

8.
在测定蚕豆(Vicia faba L.)保卫细胞原生质体质膜ABA结合蛋白的解离常数(Kd)和最大结合容量的基础上,进一步研究了几种因子(pH、光)对Kd和最大结合容量的影响。结果显示:pH并不改变结合蛋白的Kd值,而仅影响每个原生质体结合的分子数;光、暗处理的结果表明,光可使结合蛋白的Kd值增大,每个原生质体结合的ABA分子数减少,而暗处理可使结合蛋白的Kd值减小及每个原生质体结合的分子数增多,说明黑暗可提高气孔保卫细胞对ABA的敏感性,而光可以降低气孔保卫细胞对ABA的敏感性。因此,光、暗可以通过调节ABA结合蛋白的Kd值来调节气孔对ABA的敏感性。  相似文献   

9.
蚕豆保卫细胞原生质体质膜ABA结合蛋白的理化特性   总被引:5,自引:0,他引:5  
以蚕豆(Vicia faba L.)保卫细胞原生质体为材料,证明在其质膜外侧存在着对ABA高亲和力的结合蛋白。这种蛋白与ABA作用的最适pH为6.5;在25℃时.其特异结合比高于0℃时的特异结合比;在温育30min时即达到其最大结合。它与ABA作用的解离常数为2.0×10~(-8)mol/L,每个原生质体上大约有3.2×10~6个结合位点。该结合蛋白内部具有维持其功能所必须的二硫键,而且其功能的发挥要求介质中有一定浓度的Ca~(2 )的存在。  相似文献   

10.
植物根系感知外界水分胁迫刺激,诱导ABA生物合成。ABA既可诱导气孔关闭或抑制气孔开放,以降低植物的蒸腾失水,又可影响植物根系发育,以抵御水分胁迫。本文就植物激素ABA及其下游信号H2O2、NO以及Ca2+等在植物生长调节方面的研究进展进行概述,以构建水分胁迫下植物生长自我调控的可能模式。  相似文献   

11.
ABA Transport and Plant Water Stress Responses   总被引:1,自引:0,他引:1  
  相似文献   

12.
Nitrate assimilation was examined in two cultivars (Banner Winterand Herz Freya) of Vicia faba L. supplied with a range of nitrateconcentrations. The distribution between root and shoot wasassessed. The cultivars showed responses to increased applied nitrateconcentration. Total plant dry weight and carbon content remainedconstant while shoot: root dry weight ratio, total plant nitrogen,total plant leaf area and specific leaf area (SLA) all increased.The proportion of total plant nitrate and nitrate reductase(NR) activity found in the shoot of both cultivars increasedwith applied nitrate concentrations as did NO3: Kjeldahl-Nratios of xylem sap. The cultivars differed in that a greaterproportion of total plant NR activity occurred in the shootof cv. Herz Freya at all applied nitrate concentrations, andits xylem sap NO3: Kjeldahl-N ratio and SLA were consistentlygreater. It is concluded that the distribution of nitrate assimilationbetween root and shoot of V. faba varies both with cultivarand with external nitrate concentration. Vicia faba L., field bean, nitrate assimilation, nitrate reductase, xylem sap analysis  相似文献   

13.
ABA localization in roots of Vicia faba L. was studied using immunogold microscopy. In cells of promeristem gold particles were mainly localized in the nuclei. In cells of ground meristem and cortex of the front part of elongation zone, some gold particles were found in cytoplasm near. the plasmalemma. Substantial amounts of gold particles were observed in cells of vascular cylinder especially in apoplast of vascular tissue. Cells of middle elongation zone and root hair zone were also labelled by many gold particles. In cells of the primary meristem and the front part of elongation zone, water stress could lead to acute increase of the gold particle density, and also in the cells of the elongation and root hair zone. The distribution of ABA in subcellular level and its relationship with transportation were discussed in the text. and the results provided evidence for ABA as a root-to-shoot transporting stress signal.  相似文献   

14.
由于植物在生长和发育过程中不可避免地要遭受各种环境胁迫的影响,植物只有通过对环境胁迫的快速感知和主动反应才得以生存和发展.植物这种对环境胁迫的快速感知和主动反应体现在环境胁迫下植物可以通过一系列基因的表达调控来实现各种抗逆的生理生化反应.虽然得以鉴定的水分胁迫应答基因越来越多,但其中只有极少的基因在抗逆中的基本功能已得到初步认识.从细胞对水分胁迫原初信号的感知到基因表达调控包括了一系列复杂的细胞逆境信息传递过程.脱落酸(abscisic acid, ABA)作为重要的细胞逆境信号物质介导了一系列基因表达,因此从细胞对水分胁迫原初信号的感知到编码ABA生物合成关键酶基因的表达是一条最为关键的细胞逆境信息传递途径.逆境应答基因功能的鉴定以及对整个细胞信号传递过程中详尽的分子机制的了解无疑是今后最有趣的也是最为重要的研究课题.  相似文献   

15.
从水分胁迫的识别到ABA积累的细胞信号转导   总被引:14,自引:1,他引:14  
由于植物在生长和发育过程中不可避免地要遭受各种环境胁迫的影响 ,植物只有通过对环境胁迫的快速感知和主动反应才得以生存和发展。植物这种对环境胁迫的快速感知和主动反应体现在环境胁迫下植物可以通过一系列基因的表达调控来实现各种抗逆的生理生化反应。虽然得以鉴定的水分胁迫应答基因越来越多 ,但其中只有极少的基因在抗逆中的基本功能已得到初步认识。从细胞对水分胁迫原初信号的感知到基因表达调控包括了一系列复杂的细胞逆境信息传递过程。脱落酸 (abscisicacid ,ABA)作为重要的细胞逆境信号物质介导了一系列基因表达 ,因此从细胞对水分胁迫原初信号的感知到编码ABA生物合成关键酶基因的表达是一条最为关键的细胞逆境信息传递途径。逆境应答基因功能的鉴定以及对整个细胞信号传递过程中详尽的分子机制的了解无疑是今后最有趣的也是最为重要的研究课题。  相似文献   

16.
NO可能作为H2O2的下游信号介导ABA诱导的蚕豆气孔关闭   总被引:24,自引:1,他引:23  
ABA、H2O2和硝普钠(SNP)均能诱导蚕豆气孔关闭.NO的清除剂c-PTIO可以减轻由ABA或H2O2所诱导的蚕豆气孔关闭的程度,而过氧化氢酶(CAT)则不能减轻NO诱导的气孔关闭程度.激光共聚焦显微检测结果显示,10μmo1/L的ABA处理后,胞内H2O2的产生速率明显高于NO的产生速率;CAT几乎可完全抑制ABA所诱导的DAF的荧光增加;外源H2O2能显著诱导胞内DAF的荧光增加;c-PTIO对ABA诱导的DCF荧光略有促进作用,但外源SNP不能诱导胞内DCF荧光增加.这些结果表明,在ABA诱导气孔关闭过程中,H2O2可能在NO的上游起作用并受NO的负反馈调节.  相似文献   

17.
水孔蛋白的抑制剂HgCl2可明显抑制壳梭孢菌素(FC)和微丝骨架的解聚剂细胞松弛素D(CD)对蚕豆保卫细胞原生质体膨胀的诱导作用,而对微丝骨架的稳定剂鬼笔环肽(phalloidin)的抑制作用影响不明显。这表明水孔蛋白可能介导了FC和微丝骨架对气孔运动的调节。  相似文献   

18.
MACLEOD  R. D. 《Annals of botany》1976,40(3):551-562
Lateral root primordia in i are first initiated 2–3 daysfollowing the onset of germination, after which they take 5.17–6.35days to complete their development and emerge as lateral roots.Variation in the amount of time elapsing between primordiuminitiation and emergence as a lateral is probably a reflectionof the cell number attained by any one primordium at the timeof emergence. The number of primordia produced per cm of primaryroot growth (5.35–6.65) was not affected by variationin the rate of root elongation, although the number of primordiaproduced each day increased with increase in the rate of rootgrowth. In colchicine-treated roots, the amount of time between primordiuminitiation in the C-tumour and the subsequent emergence of alateral (5.43–6.43 days) was similar to the value obtainedin control roots. Primordia which were present at the time ofcolchicine treatment responded to treatment in a number of differentways, depending on the stage of development reached. Primordiain the first 2.66 days of their development die following treatment;those between 2.66 and 3.69 days old have their developmentinhibited but stay alive; primordia which have been developingfor 3.69–4.91 days following initiation grow out as straightlaterals, while those between 4.91 and 5.77 days old form C-tumoursand emerge as inhibited laterals.  相似文献   

19.
Water stress-induced ABA accumulation is a cellular signaling process from water stress perception to activation of genes encoding key enzymes of ABA biosynthesis, of which the water stress-signal perception by cells or triggering mechanism of the ABA accumulation is the center in the whole process of ABA related-stress signaling in plants. The cell biological mechanism for triggering of ABA accumulation under water stress was studied in leaves of Vicia faba. Mannitol at 890 mmol · kg-1 osmotic concentration induced an increase of more than 5 times in ABA concentration in detached leaf tissues, but the same concentration of mannitol only induced an increase of less than 40 % in ABA concentration in protoplasts. Like in detached leaf tissues, ABA concentration in isolated cells increased more than 10 times under the treatment of mannitol at 890 mmol · kg-1 concentration, suggesting that the interaction between plasmalemma and cell wall was essential to triggering of the water stress-induced ABA accumula  相似文献   

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