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1.
研究了外源多胺对离体黄瓜(CucumissativusL.)子叶内在多胺含量和花芽构建的影响。在MS培养基中添加5×10-2mmol·L-1亚精胺(Spd)、精胺(Spm)能明显提高子叶内Spd含量和SpdPut值,子叶成花率也明显高于对照组,而添加5×10-2mmol·L-1Put、5mmol·L-1环己胺硫酸盐(CHAS)培养的结果则相反。表明子叶内Spd含量和SpdPut与成花率呈正相关关系。在添加5mmol·L-1D精氨酸(DArg)处理后,子叶内SpdPut高于Spd处理,但子叶成花率低于对照组,表明Put、Spd含量也影响离体子叶花芽的构建。在实验中添加CHAS处理后子叶内Spm含量高出对照组10倍,子叶成花率却为0,其它各处理与对照组的内源Spm变化基本一致,成花率却差别明显,表明子叶内Spm含量与黄瓜子叶花芽构建之间无明显相关性。  相似文献   

2.
土壤自然干旱条件下叶面喷施精胺(Spm)、D-精氨酸(D-Arg)、甲基乙二醛-双(脒基腙)(MGBG)不改变小麦幼苗内源多胺含量变化趋势,只是不同程度地影响内源多腹水平。SPm处理提高内源腐胺(Put)和亚精胶(Spd)水平;D-Arg处理的内源Put和Spd水平也略有提高;MGBG提高内源Put水平,且MGBG作用前期降低Spd水平,后期则导致Spd水平增高。  相似文献   

3.
在龙眼花芽生理分化期喷施6-BA 200 mg/L+B9 2000 mg/L,跟踪测定其内源多胺含量变化。研究结果表明,龙眼花芽生理分化期内源腐胺(Put)、亚精胺(Spd)和精胺(Spm)含量均出现积累,喷施6-BA+B9能明显提高内源多胺含量,特别是Put和Spd的含量。内源多胺与花芽分化有一定的内在联系,生长调节剂对花芽分化的调控有可能通过多胺来实现或协同作用。  相似文献   

4.
研究了环切对6年生富士、金冠苹果短枝内源多胶,包括腐胶、亚精胺和精胺的含量及其与成花的关系,发现内源多胺含量与成花作用显著相关。在花诱导阶段,Put和Spd的含量呈下降趋势,主枝环切处理在促进成花的同时减缓了多胺下降的速度,Spm的含量出现峰值;在形态分化阶段初期,Put和Spd的含量继续下降,至形态分化末期,含量迅速上升。而Spm含量呈下降趋势。表明Put有助于分生组织的活化,而Spd和Spm与花诱导的启动及促进有关。  相似文献   

5.
研究了外源多胺对离体黄瓜( Cucumis sativus L. ) 子叶内在多胺含量和花芽构建的影响。在MS 培养
基中添加5@ 10- 2 mmol#L- 1 亚精胺( Spd) 、精胺( Spm) 能明显提高子叶内Spd 含量和SpdPPut 值, 子叶成
花率也明显高于对照组, 而添加5 @ 10- 2 mmol#L- 1 Put、5 mmol#L- 1 环己胺硫酸盐( CHAS) 培养的结果则相
反。表明子叶内Spd 含量和SpdPPut 与成花率呈正相关关系。在添加5 mmol#L- 1 D- 精氨酸( D-Arg) 处理后,
子叶内SpdPPut 高于Spd 处理, 但子叶成花率低于对照组, 表明Put、Spd 含量也影响离体子叶花芽的构建。
在实验中添加CHAS 处理后子叶内Spm 含量高出对照组10 倍, 子叶成花率却为0, 其它各处理与对照组的内
源Spm 变化基本一致, 成花率却差别明显, 表明子叶内Spm 含量与黄瓜子叶花芽构建之间无明显相关性。  相似文献   

6.
外源亚精胺对盐胁迫下毕氏海蓬子体内多胺含量的影响   总被引:1,自引:0,他引:1  
用含不同浓度(0、100、200、300、400和500 mmol·L 1)NaCl的Hoagland营养液及叶面喷施0.1 mmol·L-1外源亚精胺(Spd)处理毕氏海蓬子幼苗,研究外源Spd对NaCl胁迫下海蓬子体内游离态、结合态和束缚态3种形态多胺含量的影响,分析内源多胺含量的变化与植物耐盐性的关系.结果表明:(1)随盐胁迫浓度的升高,海蓬子幼苗叶片中3种形态腐胺(Put)含量均先降后升;同期的游离态Spd含量持续上升,结合态和束缚态Spd含量均先升后降;同期的游离和结合态精胺(Spm)含量均先升后降,而其束缚态Spm含量呈上升趋势;游离态和束缚态多胺(PAs)总量变化随盐浓度升高均呈上升趋势,而结合态PAs总量先升后降.(2)3种形态(Spd+ Spm) /Put比值均先升后降,而3种形态Put/PAs比值则均呈先降后升的相反趋势.(3)外源Spd处理提高了海蓬子幼苗叶片中结合态和束缚态PAs总量,也提高了游离态和束缚态(Spd+Spm)/Put比值.研究发现,外源Spd参与了NaCl胁迫下海蓬子内源PAs代谢的调节,可能通过促进盐胁迫植株中Put向Spd和Spm的转化,以及游离态多胺向结合态和束缚态多胺的转化来增强海蓬子耐盐性.  相似文献   

7.
受高浓度NaCl胁迫的滨藜叶中内源腐胺(Put)、叶绿素、丙二醛(MDA)的含量,腐胺/多胺(Put/PA)值以及相对电导率明显增加,内源亚精胺(Spd)、精胺(Spm)、蛋白质的含量和含水量显著下降。,外施亚精胺可以逆转NaCl的胁迫效应,外施二环己基胺(DCHA)的作用与外施亚精胺的相反。  相似文献   

8.
以切花菊(Dendranthema morifolium)品种‘神马’为试材,外源喷施0.1mmol·L-1的亚精胺(Spd)与多胺合成抑制剂D-精氨酸(D.Arg),转入昼10h/夜14h的短日条件下进行开花诱导,测定不同花芽分化时期顶芽内源多胺[腐胺(Put)、亚精胺(Spd)、精胺(spm)]和几种激素[生长素(IAA)、玉米素核苷(ZR)、异戊烯基腺苷(iPA)、赤霉素(GA)]含量的动态变化,分析多胺对激素和花芽分化的作用关系。结果表明,外源多胺和多胺合成抑制剂能够显著影响顶芽内源多胺(Put、Spd、Spm)和激素(IAA、ZR、iPA、GA)的含量,顶芽内高水平多胺有利于菊花花芽分化的启动和保持;外源多胺及多胺合成抑制剂可能通过影响内源多胺含量从而影响内源激素或者直接影响内源激素和内源多胺,进而调控花芽分化:内源Put与IAA关系密切,高水平的内源Put不利于IAA的积累;ZR和iPA含量与内源多胺总量的变化趋势一致;外源多胺及多胺合成抑制剂对GA的影响主要在花序分化期和小花分化期,且高水平的内源Spd和Put不利于GA的积累。  相似文献   

9.
氯化钠胁迫对嫁接黄瓜叶片多胺含量的影响   总被引:3,自引:0,他引:3  
以日本耐盐品种‘帝王新土佐’南瓜为砧木,以’新泰密刺’黄瓜为接穗,在100 mmol·L-1 NaCl胁迫下,对黄瓜嫁接和自根植株不同时期叶片中不同形态多胺含量的变化进行了研究.结果表明:NaCl胁迫下黄瓜嫁接植株游离态腐胺(Put)含量在胁迫2 d时与自根植株无显著差异,其余时间均显著高于自根植株;游离态亚精胺(Spd)和游离态精胺(Spm)含量在整个胁迫期间均显著高于自根植株;游离态多胺总量(PAs)在胁迫第4天出现峰值;嫁接植株游离态Put/PAs值在胁迫4 d时与自根植株无显著差异,其余胁迫时间均显著低于自根植株,而(Spd+Spm)/Put值在整个胁迫期间均显著高于自根植株;嫁接植株结合态和束缚态Put、Spd和Spm含量在整个胁迫期间均显著高于自根植株,结合态和束缚态PAs在胁迫第6天出现峰值;结合态多胺的Put/PAs值和(Spd+Spm)/Put值变化趋势与游离态多胺一致;嫁接植株束缚态Put/PAs值在胁迫6 d时与自根植株无显著差异,其余时间均显著低于自根植株,而(Spd+Spm)/Put值在整个胁迫期间均显著高于自根植株.表明黄瓜嫁接植株表现出较强的耐盐特征.  相似文献   

10.
渗透胁迫下,玉米幼苗叶片中内源ABA含量增加,乙烯在较短时间内出现峰值,叶中腐胺(Put)、亚精胺(Spd)和精胺(Spm)先降后升。喷施CaCl2水溶液后叶中ABA增加的起始时间延迟,乙烯释放量减少,Put、Spd、Spm含量均增高。  相似文献   

11.
采用营养液栽培,研究了外源腐胺(Put)对根际低氧胁迫下黄瓜幼苗体内多胺含量和抗氧化系统的影响.结果显示,低氧胁迫显著刺激了黄瓜幼苗体内活性氧(ROS)和内源多胺含量的增加,提高了抗氧化酶活性;外源Put进一步提高了低氧胁迫下黄瓜幼苗体内多胺的含量和抗氧化酶活性,降低了ROS含量,从而缓解了低氧胁迫的伤害作用;Put合成抑制剂D-精氨酸(D-Arg)不仅显著抑制黄瓜幼苗体内多胺的合成,而且抑制抗氧化酶活性,同时ROS大量积累,进一步抑制黄瓜幼苗的生长;而外源Put可缓解D-Arg的抑制作用;Put转化抑制剂甲基乙二醛-双(脒基腙)(MGBG)和Put降解抑制剂氨基胍(AG)的混合施用造成游离态Put的过量积累,以及亚精胺(Spd)、精胺(Spm)含量和抗氧化酶活性的显著降低,造成ROS大量积累,进一步加重了低氧胁迫对植株的伤害.结果表明,低氧胁迫下外源Put可提高黄瓜幼苗体内游离态Put含量,促进游离态Put向Spd和Spm转化,Spd、Spm含量的增加以及(free-Spd free-Spm)/free-Put比值的升高有利于提高植株抗氧化酶活性,增强清除ROS的能力,降低膜脂过氧化的伤害,从而增强植株的低氧胁迫耐性.  相似文献   

12.
The effect of up-regulation of putrescine (Put) production by genetic manipulation on the turnover of spermidine (Spd) and spermine (Spm) was investigated in transgenic cells of poplar (Populus nigra × maximowiczii) and seedlings of Arabidopsis thaliana. Several-fold increase in Put production was achieved by expressing a mouse ornithine decarboxylase cDNA either under the control of a constitutive (in poplar) or an inducible (in Arabidopsis) promoter. The transgenic poplar cells produced and accumulated 8–10 times higher amounts of Put than the non-transgenic cells, whereas the Arabidopsis seedlings accumulated up to 40-fold higher amounts of Put; however, in neither case the cellular Spd or Spm increased consistently. The rate of Spd and Spm catabolism and the half-life of cellular Spd and Spm were measured by pulse-chase experiments using [14C]Spd or [14C]Spm. Spermidine half-life was calculated to be about 22–32 h in poplar and 52–56 h in Arabidopsis. The half-life of cellular Spm was calculated to be approximately 24 h in Arabidopsis and 36–48 h in poplar. Both species were able to convert Spd to Spm and Put, and Spm to Spd and Put. The rates of Spd and Spm catabolism in both species were several-fold slower than those of Put, and the overproduction of Put had only a small effect on the overall rates of turnover of Spd or Spm. There was little effect on the rates of Spd to Spm conversion as well as the conversion of Spm into lower polyamines. While Spm was mainly converted back to Spd and not terminally degraded, Spd was removed from the cells largely through terminal catabolism in both species.  相似文献   

13.
研究Spm和IAA对无菌黄瓜苗雌花诱导的协同作用,及不同外植体、培养基中琼脂含量和KH2PO4含量对雌花诱导的影响,由此建立了有效的雌花诱导体系。黄瓜去根苗接种在MS培养基上,单独添加Spm、IAA时的雌花诱导率、雌花数偏低或为0,同时添加12mg.L-1Spm与0.01mg.L-1IAA时达21%、29枚,对照组未见雌花,说明Spm和IAA对雌花诱导的协同作用显著。实验证明,在全苗、去根苗、去根去顶苗、顶芽四种外植体中,及在0.5%~0.9%琼脂含量和1.0~2.0mmol.L-1KH2PO4含量的培养条件下,采用0.7%琼脂含量和1.75mmol.L-1KH2PO4含量培养黄瓜去根去顶苗的雌花诱导效果最好,其诱导率和雌花数分别达46%、54枚。  相似文献   

14.
The effects of exogenous spermidine (Spd) application to hypoxic nutrient solution on the contents of endogenous polyamines (PAs) and respiratory metabolism in the roots of cucumber (Cucumis sativus L.) seedlings were investigated. Cucumber seedlings were grown hydroponically in control and hypoxic nutrient solutions with and without addition of Spd at a concentration of 0.05 mM. The activities of key enzymes involved in the tricarboxylic acid cycle (TCAC), such as succinate dehydrogenase (SDH) and isocitrate dehydrogenase (IDH), were significantly inhibited under root-zone hypoxia with dissolved oxygen (DO) at 1 mg/l. In contrast, the activities of enzymes involved in the process of fermentation, such as pyruvate decarboxylase (PDC), alcohol dehydrogenase (ADH), lactate dehydrogenase (LDH), and alanine aminotransferase (AlaAT), were significantly increased. Thus, aerobic respiration was inhibited and fermentation was enhanced in the roots of cucumber seedlings as a result of decreasing ATP content to inhibit the dry weight of seedlings under hypoxic stress. Moreover, the contents of free, soluble conjugated, and insoluble bound putrescine (Put), Spd, and spermine (Spm) in the roots of cucumber seedlings were significantly increased under hypoxia stress. Interestingly, application of Spd to hypoxic roots markedly suppressed the accumulation of free Put and, in contrast, promoted an increase in free Spd and Spm, as well as soluble conjugated and insoluble bound Put, Spd, and Spm contents. From these data, we deduced that exogenous Spd promotes the conversion of free Put into free Spd and Spm, and soluble conjugated and insoluble bound PAs under hypoxia stress. Furthermore, the activities of LDH, PDC, and ADH were suppressed and, in contrast, the activities of SDH and IDH were enhanced by application of exogenous Spd to hypoxic roots. As a result, aerobic respiration was enhanced but fermentation metabolism was inhibited in the roots of cucumber seedlings, leading to an increase in ATP content to alleviate the inhibited dry weight of seedlings due to hypoxia stress. These results suggest that application of Spd to hypoxic nutrient solution promoted conversion of free Put into free Spd and Spm as well as soluble conjugated and insoluble bound PAs, further enhanced IDH and SDH activities, and inhibited ethanol fermentation and lactate fermentation, resulting in increased ATP content and eventually enhanced tolerance of cucumber plants to root-zone hypoxia.  相似文献   

15.
Exogenous polyamines enhance copper tolerance of Nymphoides peltatum   总被引:2,自引:0,他引:2  
Wang X  Shi G  Xu Q  Hu J 《Journal of plant physiology》2007,164(8):1062-1070
The protective effects of polyamines (PAs) against copper (Cu) toxicity were investigated in the leaves of Nymphoides peltatum. Cu treatment increased the putrescine (Put) level and lowered spermidine (Spd) and spermine (Spm) levels, thereby reducing the (Spd+Spm)/Put ratio in leaves. Exogenous application of Spd or Spm markedly reversed these Cu-induced effects for all three PAs and partially restored the (Spd+Spm)/Put ratio in leaves. It also significantly enhanced the level of proline, retarded the loss of soluble protein, decreased the rate of O2*- generation and H2O2 content, and prevented Cu-induced lipid peroxidation. Furthermore, exogenous Spd and Spm reduced the accumulation of Cu and effectively maintained the balance of nutrient elements in plant leaves under Cu stress. These results suggest that exogenous application of Spd or Spm can enhance the tolerance of N. peltatum to Cu by increasing the levels of endogenous Spd and Spm as well as the (Spd+Spm)/Put ratio.  相似文献   

16.
采后荔枝果实冷害过程中多胺含量的变化   总被引:4,自引:0,他引:4  
以桂味荔枝果实为材料,研究冷害及外源亚精胺(Spd)处理对果实膜透性和内源多胺含量变化的影响。结果表明,在0℃下贮藏时果实发生冷害过程中,荔枝果皮中腐胺(Put)、Spd、精胺(Spm)含量在14d后明显增加,膜透性快速增大,21d时果皮出现明显的冷害褐变,Put进一步积累,而Spm含量下降,Spd保持较高水平。非冷害温度(3℃)下贮藏时,果皮多胺含量变化相对较小。0℃下果肉的多胺含量和变化幅度低于3℃果实,并延迟7d衰老。外源Spd处理明显提高果实内源多胺含量的同时,延缓了果皮相对膜透性增加,减轻了冷害。这表明果皮中Put的积累可能是荔枝果实冷害的结果,冷藏初期Spm含量的上升可能是果实对冷害的防卫反应。  相似文献   

17.
一氧化氮缓解盐胁迫对玉米生长的抑制作用   总被引:52,自引:2,他引:50  
研究了一氧化氮(nitric oxide,NO)对NaCl 100mmol/L胁迫下玉米幼苗生长的影响.结果表明:0.1~200μmol/L的NO供体硝普钠(sodium nitroprusside,SNP),特别是100μmol/L SNP处理可以显著提高盐胁迫下玉米幼苗的干物质积累速率.100μmol/L的SNP处理还显著提高了叶绿素含量、植株体内K /Na 比和(Spd Spm)/Put的比值,降低膜透性.推测NO对盐胁迫下玉米生长抑制的缓解作用是由于NO促进根系对K 的选择性吸收及其向地上部的运输,而降低对Na 的吸收及其向地上部的运输,并促进Put向Spd和Spm的转化.  相似文献   

18.
Polyamines are known to influence a variety of growth and developmental processes in higher plants. Tissue browning seriously reduces in vitro plant regeneration in pine species by decreasing the levels of antioxidant enzymes and polyamines in tissue cultures. In the present investigation, the effect of exogenously added polyamines on recovering browning tissues into normal callus cultures and on improving plant regeneration was examined in Virginia pine ( Pinus virginiana Mill.). Among the polyamines administered, 1.5 m M putrescine (Put), 1.5 m M spermidine (Spd), or 1.5 m M spermine (Spm) alone resulted in a 19.55%, 18.92%, and 1.45%, respectively, recovering of browning tissues into normal callus cultures in 5 weeks. A combination of Put with Spd or Spm did not result in an increase of recovering rate, compared to the Put or Spd alone. Exogenously added 1.5 m M Put, 1.5 m M Spd, 1.5 m M Put + 1.5 m M Spd, or 1.5 m M Put + 1.5 m M Spm recovers browning tissues into normal callus cultures by increasing the activity of antioxidant enzymes ascorbate peroxidase (APOX), glutathione reductase (GR) and superoxide dismutase (SOD) and by decreasing lipid peroxidation. Exogenously added 1.5 m M Put, 1.5 m M Spd, 1.5 m M Put + 1.5 m M Spd, or 1.5 m M Put + 1.5 m M Spm significantly improve the growth rate of callus cultures, shoot formation, and rooting adventitious shoots. These results demonstrated that exogenously added polyamines recover browning tissues into normal callus cultures by decreasing oxidative damage and improving plant regeneration by acting as plant growth substances.  相似文献   

19.
200 mmol/L的NaCl胁迫8 d大麦幼苗叶片和根系中的三种形态多胺都有不同程度地下降,其中游离态多胺含量的下降幅度最大;高氯酸不溶性结合态多胺含量变化较小.根系中PAO的活性先上升后下降,而叶片中PAO的活性先下降后上升.游离态多胺中,亚精胺和精胺(Spd Spm)的含量变化与相应部位PAO的活性变化趋势相反,表明PAO在盐胁迫下可能调节了游离态多胺的含量从而影响高氯酸可溶结合态与高氯酸不溶结合态多胺的含量.  相似文献   

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