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1.
NO缓解玉米幼苗盐胁迫伤害的生理机制   总被引:1,自引:0,他引:1  
以玉米幼苗为材料,通过NO的供体硝普纳(SNP)的合成抑制剂L-NAME和NaN3、清除剂cPTIO组合处理,分析外源NO和IAA对盐胁迫下玉米幼苗生长,以及NO对盐胁迫下玉米幼苗叶片和根尖IAA含量、IOD和POD活性的影响,以探讨NO与IAA在提高植物抗盐性中的关系.结果表明,盐胁迫下,SNP和IAA均能显著促进玉米幼苗株高、主根长和侧根数的增加;SNP能显著提高玉米幼苗叶片和根尖IAA含量,降低IOD和POD活性;L-NAME和NaN3及cPTIO均能有效减弱SNP诱导的IAA含量的增加.由此可见,在盐胁迫条件下,NO信号可能位于IAA信号的上游,它通过促进玉米幼苗內源IAA的积累缓解盐胁迫对其生长的抑制.  相似文献   

2.
一氧化氮参与调节盐胁迫诱导的玉米幼苗脱落酸积累   总被引:12,自引:1,他引:11  
以三叶一心期的玉米幼苗为实验材料,研究了盐胁迫下玉米幼苗根尖和叶片中一氧化氮(NO)和脱落酸(ABA)积累之间的关系。结果表明,盐胁迫下玉米幼苗NO和ABA的含量均增加,用NO供体硝普钠(Sodium nitroprusside,SNP)处理时,ABA含量亦增加,且累积的时间较盐胁迫下早。用NO合成的抑制剂L-NAME (Nω-nitro-L-arginine methyl ester hydrochloride)和NaN,处理时,可减弱盐胁迫诱导的ABA含量的增加,用NO清除剂cPTIO处理时,这种盐胁迫诱导的ABA增加减少。推测盐胁迫下产生的NO参与调节ABA的积累及逆境下植物的防御反应。  相似文献   

3.
NO参与玉米幼苗对盐胁迫的应答   总被引:1,自引:0,他引:1  
以玉米幼苗为材料,研究盐胁迫下其內源NO含量、NR和NOS活性的变化;NOS专一性抑制剂L-NAME和NR非专一性抑制剂NaN3对玉米幼苗內源NO含量的影响;利用激光共聚焦显微技术观测盐胁迫下玉米幼苗根部NO含量的变化及其分布特点。结果表明,盐胁迫下玉米幼苗根尖和叶片中NO含量有猝发现象,NOS活性也随之显著提高,NR活性则显著降低;L-NAME或NaN3均可降低盐胁迫所引起的玉米幼苗NO水平的增加,L-NAME对NO含量的影响比NaN3更显著。推测,NO参与玉米幼苗对盐胁迫的应答,NOS途径是盐胁迫下玉米幼苗內源NO合成的主要途径。  相似文献   

4.
外源NO对NaCl胁迫下辣椒幼苗氧化损伤的保护效应   总被引:5,自引:0,他引:5  
以辣椒品种陇椒2号为试验材料,研究了外源NO供体硝普钠(SNP)对辣椒幼苗氧化损伤的影响.结果显示,在100 mmol/L NaCl胁迫下,辣椒叶片的MDA含量、质膜相对透性和脯氨酸含量均增加,保护酶SOD、CAT活性降低,而POD活性只在胁迫18 d时降低.0.1 mmol/L SNP处理可减缓NaCl胁迫下辣椒幼苗叶片MDA含量的上升,降低叶片质膜相对透性,并诱导SOD、POD和CAT活性增加,提高脯氨酸含量,表明外源NO可以通过提高盐胁迫下辣椒幼苗叶片组织的抗氧化能力来缓解氧化损伤.而SNP相似物NaNO2和K3Fe(CN)6处理对盐胁迫引起的氧化损伤并没有起到明显的缓解作用,进一步证实了NO对辣椒幼苗耐盐性具有专一性的调节作用.  相似文献   

5.
采用营养液水培的方法,研究了外源一氧化氮(nitric oxide,NO)对50 mmol?L-1NaCl胁迫下黄瓜(Cucu-mis sativusL.)幼苗根系和叶片内硝酸还原酶(nitrate reductase,NR)活性、硝态氮(NO3--N)、铵态氮(NH4 -N)及可溶性蛋白含量的影响.结果表明:100μmol?L-1外源NO供体硝普钠(sodium nitroprusside,SNP)能明显提高NaCl胁迫下黄瓜幼苗叶片和根系内NR的活性,缓解由于盐胁迫造成的NO3--N含量的下降,减少NH4 -N在植株体内的过量积累,提高渗透调节物质可溶性蛋白的含量,从而减轻由于盐胁迫对黄瓜幼苗植株造成的伤害.  相似文献   

6.
采用营养液水培,研究外源谷胱甘肽(GSH)对NaCl和NaCl+Hb(牛血红蛋白,一种一氧化氮清除剂)处理下番茄(Lycopersicon esculentum)幼苗叶片中一氧化氮合酶(NOS)活性及其一氧化氮(NO)水平、膜脂过氧化程度、活性氧(ROS)积累和ROS清除能力的影响。结果表明:施用Hb使盐胁迫下番茄幼苗叶片的氧化损伤程度加剧,NO含量下调,但对GSH含量无显著影响。外源GSH的施用显著提高了盐胁迫下番茄幼苗叶中内源GSH与NO水平,单脱氢抗坏血酸还原酶(MDHAR)和硝酸还原酶(NR)活性,超氧化物歧化酶(SOD)活性(除72 h),过氧化氢酶(CAT)活性(除48 h),处理48和72 h的谷胱甘肽还原酶(GR)、抗坏血酸过氧化物酶(APX)和脱氢抗坏血酸还原酶(DHAR)活性;降低电解质渗透率、硫代巴比妥酸(TBARS)含量以及处理48和72 h的过氧化氢(H_2O_2)和超氧阴离子(O_2ˉ·)含量。外源喷施GSH亦显著提高NaCl+Hb处理下番茄叶中抗坏血酸(AsA)、GSH和NO水平,CAT和APX活性,处理24和48 h的NR活性以及处理48和72 h的NOS活性;降低电解质渗透率及H_2O_2和TBARS含量。表明外源GSH通过介导内源GSH和NO水平上调,提高抗氧化酶活性和ROS的清除能力来缓解NaCl和NaCl+Hb处理导致的氧化损伤。因此,NO参与了外源GSH对盐胁迫下番茄幼苗抗氧化损伤的调控。  相似文献   

7.
以三年生抗寒性较弱的‘早钟6号’枇杷(Eriobotrya japonica Lindl. cv. Zaozhong No.6)容器苗为材料,采用一氧化氮合成酶抑制剂L-NAME、硝酸还原酶非专一性抑制剂NaN3和一氧化氮清除剂cPTIO处理低温胁迫下的枇杷幼果,研究其处理对枇杷幼果内源一氧化氮(Nitric oxide,NO)和茉莉酸(Jasmonate acid,JA)含量的影响,探讨枇杷幼果内源NO与JA对低温胁迫的响应及其信号转导的关系。结果表明:低温胁迫可诱导枇杷幼果内源NO和JA含量增加,采用NO清除剂和合成酶抑制剂处理均抑制了低温胁迫下的枇杷幼果中过氧化氢酶(CAT,EC 1.11.1.6)、过氧化物酶(POD,EC 1.11.1.7)和超氧化物歧化酶(SOD,EC 1.15.1.1)的活性,使过氧化氢(Hydrogen peroxide,H2O2)和丙二醛(Malondialdehyde,MDA)含量增加,细胞膜脂的过氧化加剧,加重了低温胁迫对幼果的伤害,导致了幼果脂氧合酶(LOX,EC 1.13.11.12)和丙二烯氧化物合成酶(AOS,EC 4.2.l.92)活性下降,内源JA生物合成受阻。细胞内源NO变化与JA含量密切相关,它们在枇杷对低温胁迫的响应中可能存在信号交叉。  相似文献   

8.
郑春芳  姜东  戴廷波  荆奇  曹卫星 《生态学报》2010,30(5):1174-1183
预先用0.1mmol/L的SNP(硝普钠,NO供体)浸种,研究NO预处理对120mmol/L NaCl胁迫下两小麦品种(扬麦12和淮麦17)幼苗叶片抗氧化系统、碳氮代谢及蛋白酶活性的影响。结果表明,NO预处理能有效地抑制NaCl胁迫下小麦幼苗叶片超氧阴离子释放(O.2-)和过氧化氢(H2O2)积累,提高超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性,降低丙二醛(MDA)含量,提高叶绿素、类胡萝卜素和可溶性总糖含量。另外,NO预处理显著提高叶片可溶性蛋白质含量,以及内肽酶和羧肽酶活性。分析表明,NO有利于维持盐胁迫下小麦碳氮代谢正常运转,从而促进植株生长,提高小麦幼苗株高、鲜重和干重。试验条件下,NO对淮麦17的促进作用大于扬麦12。  相似文献   

9.
等渗盐胁迫对番茄抗氧化酶和ATP酶及焦磷酸酶活性的影响   总被引:19,自引:0,他引:19  
用Ca(NO3)2 80 mmol/L和NaCl 120 mmol/L等渗溶液处理番茄幼苗后,细胞质和叶绿体中超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、抗坏血酸过氧化物酶(APX)的活性升高,并且NaCl胁迫的作用明显高于Ca(NO3)2胁迫.Ca(NO3)2处理提高了线粒体中SOD、CAT、APX的活性,而NaCl处理降低了它们的活性.根系质膜H -ATPase、液泡膜H -ATPase、焦磷酸酶(H -PPase)的活性和叶片丙二醛(MDA)及脯氨酸含量在两种盐胁迫后明显增加.NaCl处理对植株生长的抑制程度明显高于Ca(NO3)2处理.  相似文献   

10.
采用可见分光光度计法研究了盐胁迫条件下,登海9号及掖丹22两个玉米品种的幼苗中SOD、POD、CAT活性及MDA含量变化。根据这些生理指标在不同玉米品种、不同盐浓度处理下的变化规律,探求盐胁迫下玉米幼苗的抗盐生理机制。研究结果表明,随着NaCl处理浓度的提高,玉米幼苗中SOD、POD及CAT活性均有增加;当盐胁迫浓度达到60mol/L时,两玉米品种的SOD活性均达到最高,然后随NaCl处理浓度的增加,SOD活性逐渐降低;当盐胁迫浓度达到40mol/L时,两玉米品种的POD活性均达到最高,然后随NaCl处理浓度的增加,POD活性逐渐降低;当盐胁迫浓度达到40mol/L时,掖丹22的CAT活性达到最高,当盐胁迫浓度达到60mol/L时,登海9号的CAT活性达到最高,然后随NaCl处理浓度的增加,CAT活性逐渐降低。随着NaCl处理浓度的提高,玉米幼苗叶片中的MDA含量均有增加,当浓度大于40mol/L时,增加幅度加大。  相似文献   

11.
Salinity stress causes ionic stress (mainly from high Na+ and Cl- levels) and osmotic stress (as a result of inhibition of water uptake by roots and amplified water loss from plant tissue), resulting in cell death and inhibition of growth and ultimately adversely reducing crop productivity. In this report, changes in root nitric oxide content, shoot and root biomass, root H2O2 content, root lipid peroxidation, root cell death, root caspase-like enzymatic activity, root antioxidant enzymatic activity and root ascorbate and glutathione contents/redox states were investigated in maize (Zea mays L. cv Silverking) after long-term (21 d) salt stress (150 mM NaCl) with or without exogenously applied nitric oxide generated from the nitric oxide donor 2,2′-(Hydroxynitrosohydrazano)bis-ethane. In addition to reduced shoot and root biomass, salt stress increased the nitric oxide and H2O2 contents in the maize roots and resulted in elevated lipid peroxidation, caspase-like activity and cell death in the roots. Altered antioxidant enzymatic activities, along with changes in ascorbate and glutathione contents/redox status were observed in the roots in response to salt stress. The detrimental effects of salt stress in the roots were reversed by exogenously applied nitric oxide. These results demonstrate that exogenously applied nitric oxide confers salt stress tolerance in maize by reducing salt stress-induced oxidative stress and caspase-like activity through a process that limits accumulation of reactive oxygen species via enhanced antioxidant enzymatic activity.  相似文献   

12.
外源NO对缺镁胁迫下玉米幼苗生长和离子平衡的影响   总被引:2,自引:0,他引:2  
研究了在缺镁胁迫下,外源NO对缺镁玉米幼苗生长、根系活力和离子含量的影响。结果表明,缺镁胁迫使玉米幼苗株高、根长和干鲜重下降,根系活力降低,N元素在地上部和根部分配失调,新叶和老叶中Mg2+、Cu2+、Fe3+、Mn2+等离子含量下降,Ca2+、K+、Zn2+等离子含量上升。根中Mg2+离子含量下降,Ca2+、K+、Zn2+、Cu2+、Fe3+、Mn2+等离子含量上升。用100μmol·L-1一氧化氮供体硝普钠(SNP)处理后,玉米幼苗株高、根长、干重和鲜重均提高,根系活力增强,改善了N代谢,新叶中Ca2+、K+和Zn2+等离子含量下降,Mg2+、Cu2+、Fe3+和Mn2+等离子含量提高,老叶中Mg2+、Ca2+、K+和Zn2+等离子含量下降,Cu2+、Fe3+和Mn2+等离子含量提高,根中Mg2+、Ca2+、K+、Cu2+、Zn2+、Fe3+和Mn2+离子含量均下降。实验结果表明,NO保护玉米幼苗免受缺镁胁迫的影响。  相似文献   

13.
采用15%的聚乙二醇-6000(PEG-6000)对扬麦158三叶一心期的幼苗根部进行轻度渗透胁迫处理,并通过添加不同浓度的一氧化氮(nitric oxide,NO)供体硝普钠(sodium nitropussidi,SNP)和相应的对照(BO-3/NO-2),研究外源NO处理对渗透胁迫下小麦幼苗叶片膜脂过氧化作用的影响.结果发现,0.1 nnol/L的SNP能降低渗透胁迫造成的小麦幼苗叶片脂氧合酶(lipoxygenase,LOX)活性的提高,降低超氧阴离子(O-2)的产生速率和质膜相对透性的增加以及丙二醛(MDA)和H2O2的累积;0.1 mmol/L的SNP还能够诱导超氧化物歧化酶(superoxide dismutase,SOD)活性,加速脯氨酸(Pro)的累积,而0.5mmo1/L的SNP和0.1mmo1/L的NO3/NO2(对照)处理的效果则不明显.上述结果表明低浓度NO对渗透胁迫造成的膜脂过氧化有明显的缓解效应.  相似文献   

14.
Nitric oxide (NO) is a bioactive molecule involved in many biological events, and has been reported as pro-oxidant as well as anti-oxidant in plants. In the present study, the sources of NO production under water stress, the role of NO in water stress-induced hydrogen peroxide (H2O2) accumulation and subcellular activities of anti-oxidant enzymes in leaves of maize (Zea mays L.) plants were investigated. Water stress induced defense increases in the generation of NO in maize mesphyll cells and the activity of nitric oxide synthase (NOS) in the cytosolic and microsomal fractions of maize leaves. Water stress-induced defense increases in the production of NO were blocked by pretreatments with inhibitors of NOS and nitrate reductase (NR), suggesting that NO is produced from NOS and NR in leaves of maize plants exposed to water stress. Water stress also induced increases in the activities of the chloroplastic and cytosolic anti-oxidant enzymes superoxide dismutase (SOD), ascorbate peroxidase (APX), and glutathione reductase (GR), and the increases in the activities of anti-oxidant enzymes were reduced by pretreatments with inhibitors of NOS and NR. Exogenous NO increases the activities of water stress-induced subcellular anti-oxidant enzymes, which decreases accumulation of H2O2. Our results suggest that NOS and NR are involved in water stress-induced NO production and NOS is the major source of NO. The potential ability of NO to scavenge H2O2 is, at least in part, due to the induction of a subcellular anti-oxidant defense.  相似文献   

15.
The effect of water deficit on nitric oxide (NO) generation was investigated in cucumber (Cucumis sativus cv. Dar) seedling roots using bio-imaging with an NO-selective fluorophor, diaminofluorescein-2-diacetate (DAF-2DA). Roots subjected to mild (5 and 10 h) water deficit showed slightly enhanced NO synthesis in cells of root tips and in the surrounding elongation zone. However, severe (17 h) stress resulted in an intensive NO production localized mainly in and above the elongation zone. Water stress-induced NO generation was blocked by a specific NO scavenger, 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (cPTIO) as well as nitrate reductase (NR) and partially by nitric oxide synthase (NOS-like) inhibitors.A pharmacological approach was used in order to verify the capacity of NO to induce adaptive responses of cucumber roots to water deficit. A positive correlation was found between NO donor (SNP 100 μM and GSNO 100 μM) pretreatment and plant hydration status, measured as relative water content (RWC) during progressive dehydration. At an early stage (5 h) of stress duration NO caused a periodical increase in lipoxygenase (LOX) activity, correlated with time-dependent enhancement of lipid peroxidation. Beginning from 10 h up to severe stress (17 h) exogenous NO was able to diminish LOX activity and alleviate water deficit-induced membrane permeability and lipid peroxidation, measured as TBARS content and visualised by histochemical staining in situ. Observed changes via NO were accompanied by a significant reduction of proline level, suggesting that the accumulation of this osmolyte might not be essential in water stress tolerance. Obtained results clearly indicate that NO augmentation is likely to help the plant at the initial stage of tissue dehydration to trigger efficient mechanisms, mitigating severe water deficit effects in roots of cucumber seedlings.  相似文献   

16.
外源一氧化氮对镉胁迫下绿豆幼苗根尖抗氧化酶的影响   总被引:3,自引:0,他引:3  
采用水培法研究外源一氧化氮对镉(Cd)胁迫下绿豆幼苗根尖抗氧化酶活性的影响。结果表明:0.01mmol/L和0.1mmol/L一氧化氮供体硝普钠(sodium nitroprusside,SNP)显著促进上胚轴生长,1mmol/LSNP则抑制绿豆幼苗生长。Cd单独处理抑制根尖抗坏血酸过氧化物酶(ascorbate peroxidase,APX)和超氧化物歧化酶(superoxide dismutase,SOD)活性而刺激脂氧合酶(lipoxygenase,LOX)、谷胱甘肽转硫酶(glutathione S-transferase,GST)、谷胱甘肽还原酶(glutathione reductase,GR)和过氧化物酶(guaiacol peroxidase,POD)活性上升。0.1mmol/LSNP预处理能够明显缓解Cd对根生长的抑制,降低根尖中MDA含量,提高根尖APX和SOD活性,降低LOX和POD活性,但不影响GST和GR活性。  相似文献   

17.
以津春2号黄瓜为材料,采用营养液水培的方法,研究了外源一氧化氮(NO)对黄瓜幼苗生长和根系谷胱甘肽抗氧化酶系统的影响.结果表明,(1)正常生长条件下添加NO能促进黄瓜幼苗生长,而添加亚甲基蓝(MB-1)显著抑制黄瓜幼苗的生长;(2)添加NO显著缓解了NaCl胁迫对黄瓜幼苗生长的抑制,提高根系还原型谷胱甘肽(GSH)含量、抗坏血酸过氧化物酶(APX)和谷胱甘肽还原酶(GR)活性,而氧化型谷胱甘肽(GSSG)含量略有下降,同时缓解了NaCl胁迫下抗坏血酸(ASA)含量的下降幅度;(3)NaCl胁迫下添加NO的同时添加MB-1可部分解除NO的作用,与NaCl胁迫下单独添加NO处理比较,GR活性、GSH和ASA含量均降低,GSSG含量提高,APX先升高后下降.研究发现,外源NO可能通过鸟苷酸环化酶(cGC)介导来调节NaCl胁迫下黄瓜幼苗根系GR活性和GSH、GSSG、ASA含量,提高抗氧化酶活性和非酶抗氧化物质含量,增强植株对活性氧的清除能力,减少膜脂过氧化,缓解NaCl胁迫对黄瓜幼苗造成的伤害.  相似文献   

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