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1.
在含NaCl营养液中培养的小麦幼苗较之无NaCl营养液中的幼苗。其脯氨酸氧化酶活性降低,而游离脯氨酸含量则升高;培养液的渗透势越低,培养时间越长,则脯氨酸氧化酶的活性越低,且游离脯氨酸的含量越高。去除胁迫后酶活性恢复,脯氯酸含量下降。不同渗透剂对氧化酶活性抑制强弱顺序为MgCl_2>NaCl>甘露醇,引起脯氨酸累积效应的强度顺序为MgCl_2>NaCl>甘露醇。超微结构显示,高NaCl浓度下部分线粒体结构受损伤,膜和嵴部分消失。  相似文献   

2.
NaCl胁迫对栓皮栎幼苗生长及其生理响应   总被引:1,自引:0,他引:1  
为了研究栓皮栎幼苗期对盐胁迫的生理耐受特性,选择2年生栓皮栎实生幼苗为材料,在盆栽条件下,设置NaCl盐分梯度(0%、0.4%、0.6%、0.8%),系统测定分析栓皮栎幼苗在不同盐胁迫梯度和胁迫时间下的形态生长指标以及保护酶活性、脯氨酸含量、根系活力等各项生理指标。结果显示:(1)随着盐胁迫程度的加剧,栓皮栎幼苗各部分器官鲜重和干重以及株高、基径和一级侧根长均先升高后降低,而主根长度逐渐增加,叶片数逐渐减少,并在重度胁迫下达到显著水平。(2)随着盐胁迫时间的延长,栓皮栎幼苗的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)活性均呈先升高后降低的趋势,但变化时间和幅度不同;丙二醛(MDA)含量则日益增加,且胁迫度越大增加越显著。(3)栓皮栎幼苗叶片的渗透调节物质脯氨酸和可溶性蛋白含量在低盐胁迫下不断升高,高盐胁迫下先升高后降低;而可溶性糖的含量则随时间延长和胁迫加剧显著增加。(4)随NaCl浓度的提高,幼苗根系活力值先增后减,叶绿素a和叶绿素b含量均呈下降趋势。研究表明,在轻、中度NaCl胁迫下,栓皮栎幼苗通过提高保护酶活性、增加渗透调节物质等策略缓解盐胁迫伤害,表现出一定的耐盐潜力;而在高浓度盐分胁迫下幼苗受到伤害,自我调节能力降低,导致保护酶活性、可溶性蛋白含量和根系活力等下降。  相似文献   

3.
选用两个耐盐性强弱不同的大麦(Hordeumvulgare L.)品种,研究了NaCl胁迫下其幼苗根中ATP和焦磷酸(PPi)含量的变化以及PPi对液泡膜H -ATP酶活性的影响.结果表明:在含NaCl 200mmol/L的1/2 Hoagland溶液中处理2 d,耐盐品种(滩引2号)根中液泡膜H -ATP酶活性增加,然后逐渐下降,而H -PPi酶活性在NaCl处理9 d中'直下降.盐敏感品种(科品7号)在NaCl胁迫下根中H -ATP酶和H -PPi酶活性都下降(图1).与对照相比较,NaCl胁迫下耐盐品种根中ATP含量2 d时增加,4 d后下降;盐敏感品种根中ATP积累受NaCl胁迫的抑制(图2).NaCl胁迫下,两品种的PPi含量皆略有增加(图3).PPi对液泡膜H -ATP酶活性有竞争性抑制作用(图4).结果表明:ATP积累是NaCl胁迫下液泡膜H -ATP酶活性增加的原因之一,NaCl胁迫下大麦品种根中ATP含量下降和PPi对液泡膜H -ATP酶的抑制使该酶活性下降.  相似文献   

4.
以盆栽耐盐碱芦荟'不夜城'幼苗为材料,采用不同浓度Na2CO3溶液(不同渗透势)处理芦荟幼苗7 d后,测定其叶片叶绿体保护酶超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、抗坏血酸氧化酶(APX)、谷胱甘肽转移酶(GST)活性以及叶绿素、丙二醛(MDA)、渗透调节物质含量和电解质外渗率等的变化,以探讨芦荟抵抗盐碱胁迫伤害的机制.结果显示:当溶液渗透势较高时(大于-7.19×105 Pa),Na2CO3胁迫下的芦荟幼苗叶片叶绿体保护酶活性都呈显著上升趋势,而叶绿素含量、可溶性蛋白、MDA含量以及电解质外渗率却无明显变化;在溶液渗透势较低时(小于-7.19×105 Pa),Na2CO3胁迫下芦荟幼苗的渗透调节物质含量显著增高,叶绿体保护酶活性特别是叶绿素含量显著下降,而MDA含量和电解质外渗率却呈上升的趋势.研究表明:一定浓度的Na2CO3胁迫下,芦荟幼苗可以通过提高自身叶绿体保护酶的活性来降低活性氧的积累量,同时提高渗透调节能力来增强其抗逆性;但在过高浓度的盐碱胁迫下,过高的Na+浓度和pH也会对芦荟幼苗叶片造成一定的氧化伤害.  相似文献   

5.
采用营养液砂培方法,研究了不同浓度NaCl胁迫(0、50、100、150、200和250mmol·L-1)对“定莜6号”燕麦幼苗生长、活性氧代谢和渗透调节物质含量的影响.结果表明:NaCl胁迫显著抑制燕麦幼苗的生长,抑制程度随NaCl浓度提高而增强,燕麦可耐受的最高NaCl浓度约为150 mmol·L-1;随着NaCl浓度的增加,叶片O2-产生速率、H2O2和丙二醛含量明显增加,超氧化物歧化酶、过氧化物酶和抗坏血酸过氧化物酶活性先升后降,过氧化氢酶活性迅速下降后逐渐升高,NaCl胁迫明显降低了谷胱甘肽含量,而抗坏血酸含量变化不大;NaCl胁迫显著提高了叶片脯氨酸含量,Na+含量随着NaCl浓度增加不断提高,K+含量和K+/Na+逐渐下降,质膜H+-ATP酶活性、总可溶性蛋白、热稳定蛋白和热不稳定蛋白含量先升后降,游离氨基酸含量先降后升,可溶性糖含量呈降-升-降趋势变化;盐胁迫下活性氧代谢失调和Na+、K+平衡破坏及积累有机溶质进行渗透调节时更多能量的消耗可能是燕麦生长受抑的重要因素.  相似文献   

6.
UV-B辐射增强对NaCl胁迫下小麦幼苗生理生态的影响   总被引:4,自引:1,他引:3  
研究了0.4w·m-2的紫外线-B(UV-B)辐射对0.8%NaCl胁迫下冬小麦"小偃926"(TriticumaestivumL.xiaoyan-926)幼苗的生长、光合作用、水分状况、黄酮含量和膜脂过氧化等几方面的影响。结果表明,UV-B辐射和NaCl胁迫单独或复合处理下小麦幼苗的株高、生物量、含水量、净光合速率、蒸腾速率、气孔导度和光合色素含量均显著降低,膜脂过氧化产物丙二醛含量和叶片相对电导率则升高,但NaCl胁迫条件下增加UV-B辐射(复合处理)与单独NaCl胁迫相比,上述指标多数均无显著差异(除复合处理下类胡萝卜素含量显著降低外)。两胁迫因子单独或复合处理均明显提高了小麦幼苗黄酮含量及三种抗氧化酶(SOD、POD和CAT)活性,且复合处理的促进效应最大。脯氨酸含量在单独UV-B辐射下明显降低,在单独NaCl胁迫和复合处理下显著升高,且复合处理下增幅最大。结果说明UV-B辐射不会明显加剧NaCl胁迫下小麦幼苗的伤害,这可能与NaCl胁迫提高了小麦幼苗黄酮含量、脯氨酸含量和抗氧化酶活性有关。  相似文献   

7.
盐分和水分胁迫对芦荟幼苗渗透调节和渗调物质积累的影响   总被引:31,自引:0,他引:31  
用不同浓度NaCl和等渗聚乙二醇(PEG 6000)处理芦荟(Aloe vera L.)幼苗,10 d后测定叶片相对生长速率和厚度、叶片中主要有机溶质、无机离子含量及渗透调节能力.结果表明,-0.44、-0.88 MPa NaCl和PEG处理使芦荟叶片的相对生长速率和叶片厚度明显下降,且盐胁迫对幼苗生长的抑制和叶片含水量降低的效应明显高于等渗的水分胁迫,其叶片渗透调节能力随处理渗透势的降低而增加, -0.88 MPa PEG胁迫的芦荟幼苗的渗透调节能力高于等渗盐分胁迫.在主要渗透调节物质可溶性糖、有机酸、K 、Ca2 和Cl-中,-0.88 MPa PEG处理下含量比相同渗透势的NaCl处理下显著增加的是有机溶质,因此推断有机溶质含量高是PEG胁迫下渗透调节能力较强的主要因素.  相似文献   

8.
盐胁迫是影响作物生长的主要非生物胁迫类型,引起离子毒害和渗透胁迫,导致植物生长减弱、失绿、萎蔫甚至死亡。前期研究表明,适宜浓度的外源亚精胺能够缓解盐胁迫条件下植物叶片受损伤程度,提升生物膜抵抗盐离子伤害的能力,促进植物生长。该试验采用营养液培养法,以100mmol·L-1、200mmol·L-1、300 mmol· L-1NaCl溶液模拟不同盐胁迫程度,以中度耐盐品种晋薯16号、轻度耐盐品种冀张薯12号为试材,当马铃薯脱毒幼苗长至 4~5 片真叶时,连续叶面喷施0.9mmol·L-1外援亚精胺 7 d,2次/d。分析叶面喷施外源亚精胺(Spd)对不同盐胁迫程度条件下马铃薯幼苗生长、叶片抗氧化酶活性、渗透调节物质含量的影响。结果表明:(1)叶面喷施Spd缓解了盐胁迫对幼苗生长的抑制作用,提高了叶绿素含量和根系活力,提升超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)、抗坏血酸过氧化物酶(APX)、抗坏血酸(ASA)和谷胱甘肽(GSH)等抗氧化酶活性,以及脯氨酸、可溶性糖、氨基酸含量;(2)200 mmol· L-1NaCl胁迫条件下,Spd对“晋薯16号”缓解作用最显著。研究表明Spd通过提高马铃薯幼苗根系活力、叶绿素含量、抗氧化酶活性、渗透调节能力,提高马铃薯幼苗对盐胁迫的适应性,促进马铃薯幼苗生长。  相似文献   

9.
为研究盐分胁迫下紫花地丁生理反应,本文以紫花地丁幼苗为试验材料,对不同浓度NaCl处理中的幼苗叶片,进行光合色素、蛋白质、可溶性糖、游离脯氨酸的测定。结果表明,盐胁迫下紫花地丁叶片光合色素含量降低、蛋白质、可溶性糖、游离脯氨酸含量呈先升高后下降的趋势,当处理浓度高于NaCl2%时,各指标与对照之间差异显著。紫花地丁幼苗能够正常生长的抗盐阈值为NaCl2%,可耐低盐胁迫。渗透调节物质是紫花地丁的主要耐盐性指标。  相似文献   

10.
NaCl胁迫对超大甜椒种子萌发及幼苗生长的影响   总被引:6,自引:1,他引:5  
以超大甜椒种子和幼苗为材料,采用水培法研究低、中、高浓度(50、150、250 mmol·L-1)NaCl胁迫对其种子萌发和幼苗生长的影响.结果显示:(1)低浓度NaCl处理促进种子萌发,而中、高浓度NaCl处理抑制种子萌发;NaCl处理第18天时,高浓度NaCl处理植株全部死亡,其余各处理植株苗高、叶面积、地上部鲜重和干重均随处理浓度升高而下降,但低浓度NaCl能刺激超大甜椒的根系生长.(2)低、中浓度NaCl处理时,植株叶绿素含量未受到大的影响,类胡萝卜素含量却随胁迫时间延长微量升高;在盐胁迫7 d的周期内,低、中浓度NaCl处理植株MDA含量、SOD活性和可溶性糖含量均随浓度升高及时间延长显著增加,脯氨酸含量在低浓度下变化不明显而中浓度下显著升高;在高浓度NaCl处理3 d中,MDA含量急剧升高,SOD活性先升高后下降,脯氨酸和可溶性糖含量显著增加.研究发现,NaCl胁迫浓度越高对超大甜椒种子萌发和幼苗生长的抑制效应越明显;低中浓度NaCl处理幼苗能通过自身的抗氧化酶清除系统和渗透调节物质来抵抗胁迫引起伤害,类胡萝卜素可能也有一定的抗胁迫作用,而高浓度NaCl处理增加了膜脂过氧化程度,严重影响了活性氧和渗透调节物质的正常代谢.  相似文献   

11.
The magnitude of the effect of salt stress on proline content, pyrroline-5-carboxylate (P5C) reductase activity and water relations was found to be leaf position dependent in an advance generation (R4) of twoBrassica juncea L. somaclones (SR-2 and SR-3) selected in vitro for NaCl-tolerance and the parent cv. Prakash. Free proline content and P5C reductase activity increased with increase in salt stress in all the lines but at different rates; the maximum increase being in the SR-3 derived somaclonal line. At 100 mM NaCl, SR-3 showed a nearly 19 fold increase in proline content compared to a 4–5 fold increase in the other two genotypes. The proline level and P5C reductase activity of the first (youngest) leaf was higher than in the other leaves and decreased linearly with increase in age of the leaf in all the lines. The relationship between relative water content and osmotic potential of the leaves at different positions also varied. The results indicate that a significant effect of salt may appear non-significant if the position of the leaves is not taken into account while sampling.  相似文献   

12.
Pyrroline-5-carboxylate (P5C) reductase (EC 1.5.1.2), which catalyzes the reduction of P5C to proline, was partially purified from two Chlorella species; Chlorella autotrophica, a euryhaline marine alga that responds to increases in salinity by accumulating proline and ions, and Chlorella saccharophila, which does not accumulate proline for osmoregulation. From the elution profile of this enzyme from an anion exchange column in Tris-HCl buffer (pH 7.6), containing sorbitol and glycine betaine, it was shown that P5C reductase from C. autotrophica was a neutral protein whereas the enzyme from C. saccharophila was negatively charged. The kinetic mechanisms of the reductase was characteristic of a ping-pong mechanism with double competitive substrate inhibition. Both enzymes showed high specificity for NADH as cofactor. The affinities of the reductases for their substrates did not change when the cells were grown at different salinities. In both algae, the apparent Km values of the reductase for P5C and NADH were 0.17 and 0.10 millimolar, respectively. A fourfold increase in maximal velocity of the reductase was observed when C. autotrophica was transferred from 50 to 150% artificial sea water. Even though the reductase was inhibited by NaCl, KCl, and proline, it still showed appreciable activity in the presence of these compounds at molar concentrations. A possible role for the regulation of proline synthesis at the step catalyzed by P5C reductase is discussed in relation to the specificity of P5C reductase for NADH and its responses to salt treatments.  相似文献   

13.
The exogenous application of abscisic acid (ABA) to well-watered plants may be of interest in imitating the effects of salinity on shoot growth. In this paper we have determined the time course of ABA accumulation in control and salt-stressed Phaseolus vulgaris plants and its possible relation to the accumulation of solutes and other physiologic conditions. The effect on shoot parameters of the application of exogenous ABA to the root system has also been checked. The addition of exogenous ABA to control plants caused a retardation of growth. The amount of ABA applied to the growth medium caused tissue ABA concentrations to become close to those of salinized plants. The addition of exogenous ABA to plants under control conditions resulted in a profile of proline and total sugar accumulation very similar to that observed in salinized plants. It was also found that NaCl treatment decreased the stomatal conductance and transpiration rate of leaves as well as the osmotic and turgor potentials. The addition of exogenous ABA also mimicked these responses, resulting in qualitatively and quantitatively similar results. These results, particularly those showing that the early transient rise in ABA upon exposure to NaCl coincides with the period of proline and total sugar accumulation, and that treatment of plants with exogenous ABA mimics these effects, are discussed around the idea that ABA stimulates the cellular processes of osmotic adjustment in P. vulgaris.Abbreviations ABA abscisic acid - HPLC high performance liquid chromatography - DW dry weight - FW fresh weight.  相似文献   

14.
盐胁迫下外源ABA对玉米幼苗耐盐性的影响   总被引:24,自引:0,他引:24  
利用不同浓度外源ABA 可以提高生长在盐渍条件下玉米(Zea m ays L.)幼苗的耐盐能力,增加幼苗的干重。其原因是由于幼苗渗透势的降低和渗透调节能力的增大,地上部分拒盐能力的提高,摄取的大量Na+ 积累在根部。同时发现外源ABA 增大幼苗渗透势和渗透调节能力是幼苗有机渗透物质增加的结果。讨论了玉米地上部分拒盐的机理  相似文献   

15.
用扫描电镜、X—射线能谱仪和等离子耦合吸收光谱(ICP)分析发现,培养在含NaCl培养液中,小麦柜吸收大量Na~ 和Cl~-,K~ 和Ca~(2 )的吸收降低,质膜相对透性提高,K~ 、Na~ 和Cl~-的相对外渗百分率增加。培养在补充CaCl_2含NaCl培养液的,Na~ 和Cl~-含量明显减低,K~ 和Ca~(2 )提高,质膜相对透性下降,K~ 、Na~ 和Cl~-相对外渗百分率减少。由气相色谱分析可知,用含NaCl或补充CaCl_2培养液培养的幼苗,根的膜脂脂肪酸组分没有变化,但培养在补充CaCl_2的培养液中的根,亚麻酸含量和脂肪酸不饱和指数下降。  相似文献   

16.
The exogenous ABA in different concentrations was used to spray Zea mays L. (cv. Luyu 11) seedlings under different salinity. The growth status, osomotic potential and osmotic regulatory activity, the contents of Na+ and K+, soluble sugars and proline were determined at different time after treatment. The results were shown as follows: The exogenous ABA gave an increase in salt resistance and dry weight of corn seedlings under different salinity, this increase was as a result of inhanced osmotic adjustment activity and exclusion of sodium ions from the shoot through the action of exogenous ABA, resulting an accumulation of sodium in the roots. Moreover, the decrease of osmotic potential and the increase of osmotic regulatory activity were for reasons of enhancement of organic osmotors, instead inorganic, e.g. Na+ and K+ osmotors. The mechanism of sodium exclusion from the shoot was also discussed.  相似文献   

17.
Two allelic Arabidopsis mutants, leaf wilting 2-1 and leaf wilting 2-2 (lew2-1 and lew2-2 ), were isolated in a screen for plants with altered drought stress responses. The mutants were more tolerant to drought stress as well as to NaCl, mannitol and other osmotic stresses. lew2 mutant plants accumulated more abscisic acid (ABA), proline and soluble sugars than the wild type. The expression of a stress-inducible marker gene RD29A, a proline synthesis-related gene P5CS (pyrroline-5-carboxylate synthase) and an ABA synthesis-related gene SDR1 (alcohol dehydrogenase/reductase) was higher in lew2 than in the wild type. Map-based cloning revealed that the lew2 mutants are new alleles of the AtCesA8/IRX1 gene which encodes a subunit of a cellulose synthesis complex. Our results suggest that cellulose synthesis is important for drought and osmotic stress responses including drought induction of gene expression.  相似文献   

18.
The role of the δ-ornithine amino transferase (OAT) pathway in proline synthesis is still controversial and was assessed in leaves of cashew plants subjected to salinity. The activities of enzymes and the concentrations of metabolites involved in proline synthesis were examined in parallel with the capacity of exogenous ornithine and glutamate to induce proline accumulation. Proline accumulation was best correlated with OAT activity, which increased 4-fold and was paralleled by NADH oxidation coupled to the activities of OAT and Δ1-pyrroline-5-carboxylate reductase (P5CR), demonstrating the potential of proline synthesis via OAT/P5C. Overall, the activities of GS, GOGAT and aminating GDH remained practically unchanged under salinity. The activity of P5CR did not respond to NaCl whereas Δ1-pyrroline-5-carboxylate dehydrogenase was sharply repressed by salinity. We suggest that if the export of P5C from the mitochondria to the cytosol is possible, its subsequent conversion to proline by P5CR may be important. In a time-course experiment, proline accumulation was associated with disturbances in amino acid metabolism as indicated by large increases in the concentrations of ammonia, free amino acids, glutamine, arginine and ornithine. Conversely, glutamate concentrations increased moderately and only within the first 24 h. Exogenous feeding of ornithine as a precursor was very effective in inducing proline accumulation in intact plants and leaf discs, in which proline concentrations were several times higher than glutamate-fed or salt-treated plants. Our data suggest that proline accumulation might be a consequence of salt-induced increase in N recycling, resulting in increased levels of ornithine and other metabolites involved with proline synthesis and OAT activity. Under these metabolic circumstances the OAT pathway might contribute significantly to proline accumulation in salt-stressed cashew leaves.  相似文献   

19.
盐胁迫下不同基因型番茄可溶性物质含量的变化   总被引:47,自引:0,他引:47  
以两种野生番茄秘鲁番茄(Lycopersicon peruvianum LAlll)、潘那利番茄(Lycopersicon pennellii LA716)和两种栽培番茄"鲜丰98-7"、"交农1号"为材料,用NaCl 150 mmol/L进行盐胁迫,测定及分析了植株体内Na 、K 、Ca2 等无机离子和某些有机溶质游离脯氨酸、可溶性糖的含量.结果表明,盐胁迫条件下,野生番茄在新叶中积累了大量的Na 等无机离子,而栽培番茄新叶内脯氨酸和可溶性糖的含量却显著提高,且它具有将吸收的Na 区域化到老叶中的能力.说明野生番茄和栽培番茄在可溶性物质的合成和积累能力上有明显差异,它们是通过不同代谢途径和机理来适应盐环境的.  相似文献   

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