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1.
以香椿幼苗为材料,采用水培法研究不同浓度褪黑素(0、50、100、200和400μmol/L)对盐(150 mmol/L NaCl)胁迫下香椿幼苗生长指标、矿质元素离子(Na~+、K~+、Ca~(2+)和Mg~(2+))含量、净光合速率(P_n)、蒸腾速率(T_r)、气孔导度(G_s)和胞间CO_2浓度(C_i)等光合作用指标的影响,以探究外源物质褪黑素对盐胁迫下香椿幼苗生长和生理的调控作用。结果表明:(1)在盐胁迫条件下,香椿幼苗的生长受到显著抑制,叶绿素含量和P_n显著降低,叶片和根系中Na~+含量比对照(CK)显著增加,而K~+、Mg~(2+)和Ca~(2+)含量以及离子含量的比值(K~+/Na~+、Mg~(2+)/Na~+和Ca~(2+)/Na~+)则明显下降,且丙二醛含量显著增加。(2)施加适宜浓度褪黑素能显著促进盐胁迫下香椿植株生长,降低其叶片和根系中Na~+含量,提高其K~+、Ca~(2+)、Mg~(2+)含量和离子含量比值以及叶片P_n、T_r、水分利用效率(WUE)和G_s和C_i,但却降低了气孔限制值(L_s)。(3)适宜浓度褪黑素使盐胁迫下香椿植株叶片的丙二醛积累明显下降,叶绿素含量显著上升。研究发现,外施适宜浓度的褪黑素能降低盐胁迫下香椿幼苗叶片和根系内Na~+浓度,增加K~+、Mg~(2+)和Ca~(2+)浓度,调控植物体内细胞的离子平衡状态,增强对营养元素的吸收,提高光合作用效率,从而提高香椿幼苗对盐胁迫的抗性,并以100μmol/L褪黑素处理的效果最佳。  相似文献   

2.
武玉妹  周强  於丙军 《生态学报》2011,31(22):6669-6676
大豆异黄酮( Soybean isoflavones)是在大豆生长过程中形成并在成熟种子和叶片中积累较多的一类具有生物活性的次生代谢物,通常可作为人们日常生活中的一类营养保健品.研究了外源大豆苷或染料木苷溶液(0.01 mg/L)浸种处理对盐胁迫栽培大豆(N23674品种)和滩涂野大豆(BB52种群)及其经逐代耐盐性筛选的杂交后代(4076株系,F5)幼苗叶片伤害率、光合作用、Na+含量和Na+/K+值、活性氧清除酶活性及内源大豆异黄酮含量等生理指标的影响.结果表明:盐胁迫下,两种外源大豆异黄酮浸种处理均可显著抑制叶片相对电解质渗透率和硫代巴比妥酸反应物(TBARS)含量的上升及净光合速率(Pn)的下降,降低Na+含量和Na+/K+值,增强超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性,提高内源大豆异黄酮含量,从而表现对盐害的缓解效应,其中对耐盐性较弱的栽培大豆N23674品种效应更明显.这为大豆异黄酮在大豆耐盐育种、化学调控和盐碱地种植利用等提供了理论依据.  相似文献   

3.
野大豆(Glycine soja Sieb. et Zucc.)是栽培大豆(G.max(L.)Merr.)的祖先,在遗传育种研究中具有重要意义。本研究以野大豆为实验材料,通过检测快速叶绿素荧光和820 nm光反射来研究盐胁迫对光系统化学活性的影响。结果显示,盐胁迫下,野大豆幼苗叶片叶绿素a含量显著降低,快速叶绿素荧光诱导动力学曲线(OJIP)发生显著变化,JIP-test参数中性能指标PIABS和PItotal、比能量通量参数RC/ABS、TRo/RC、ETo/RC和REo/RC均降低。单位反应中心耗散的能量DIO/RC增加。同时,盐胁迫显著降低量子产量和效率参数ψEo、φEo、δRo和φRo。820 nm光反射MR/MRO曲线也发生变化,其变化时间间隔与OJIP一致。同时,盐胁迫也导致野大豆幼苗叶片丙二醛(MDA)含量显著增加,渗透调节物质和抗氧化酶活性发生显著变化。  相似文献   

4.
本研究检测了与盐芥(Ghellungiella halophila)和拟南芥(Arabidopsis thaliana)光合作用相关的叶绿素、净光合速率(photosynthetic rate,Pn)、气孔导度(stomatal conductance,Gs)、胞间隙CO2浓度以及叶绿素荧光参数等指标,观察到随着NaCl浓度逐渐增加,盐芥的叶绿素a/b值(Chl a/Chl b)、类胡萝卜素/总叶绿素值(Car/Chl)显著高于拟南芥,且二比值变化幅度较小并保持较高水平。盐胁迫下拟南芥净光合速率下降、气孔导度下降和胞间CO2浓度减小。气孔因素是引起拟南芥光合能力下降的主要因素。叶绿素荧光参数的变化表明,50-200 mmol·L-1NaCl降低拟南芥叶绿体对光能的吸收能力,而且降低叶绿体的光化学活性,使电子传递速率和光能转化效率大幅度下降,造成光能转化为化学能的过程受阻,进一步加剧了光合放氧和碳同化能力的降低。而50-200 mmol·L-1NaCl胁迫没有使盐芥的光合作用受到不良影响。  相似文献   

5.
6.
IAA对盐胁迫下大豆幼苗膜伤害及抗盐力的影响   总被引:21,自引:1,他引:21       下载免费PDF全文
采用溶液培养法研究了IAA(吲哚乙酸)对盐胁迫下豆幼苗膜伤害及抗盐力的影响。结果表明:一定浓度的IAA处理可促进盐胁迫下大豆幼苗的生长,使其干物质产量增加,叶面积增大,提高叶片光合速率,增强了保护酶系统活性,降低膜脂过氧化产物MDA含量及膜相对透性(相对导一),增强了幼苗对盐渍环境的抵抗能力,缓解了盐害。  相似文献   

7.
盐胁迫对一年生盐生野大豆幼苗活性氧代谢的影响   总被引:37,自引:9,他引:37       下载免费PDF全文
以国际上通用的栽培大豆品种Lee68(耐盐性较强)和非盐生野大豆N23232种群(耐盐性较弱)为参照材料,研究了在低盐(150mmol·L-1NaCl)和高盐(300mmol·L-1NaCl)胁迫下,盐生野大豆BB52种群幼苗体内的O-·2水平和MDA含量,活性氧清除酶系统中超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)、抗坏血酸过氧化物酶(APX)等酶活性,以及抗坏血酸(AsA)、类胡萝卜素(Car)、谷胱甘肽(GSH)等活性氧清除物质含量的变化。结果表明,在150和300mmol·L-1NaCl胁迫2d时,盐生野大豆BB52种群幼苗根和叶中的O-·2产生速率下降,SOD活性上升,其中叶片表现明显,且叶中APX活性也有增加。在不同浓度NaCl胁迫下,根中MDA含量均未见明显上升,叶片中略有增加。叶中AsA、Car和GSH含量均上升,且升幅相对较大。  相似文献   

8.
为分析等渗盐分和水分胁迫对番茄叶片光合功能的影响,选用耐盐性不同的4种基因型番茄(小果型的辽园红玛瑙、野生醋栗番茄、大果型的金田粉冠、超402)进行等渗的140 mmol·L-1NaCl和15%PEG6000模拟盐分和水分胁迫.结果表明: 在光合特性方面,处理12 d后,两种胁迫导致4种不同基因型番茄的叶绿素含量(叶绿素a、叶绿素b、叶绿素总量)、光合速率、气孔导度、胞间CO2浓度、蒸腾效率降低,气孔限制值升高.两种胁迫导致的光合下降由气孔性因素所致.等渗的盐分胁迫对番茄的光合系统损伤大于水分胁迫,这是因为盐分胁迫除了渗透胁迫还会导致离子伤害.4种不同基因型番茄中,耐盐型的辽园红玛瑙具有高光合特性,金田粉冠光合效率最差.在叶绿体超微结构方面,两种胁迫会造成番茄叶片的气孔密度增加,气孔张开率降低,叶绿体长度增加,宽度变小,长宽比增大,叶绿体内基粒数减少,嗜锇颗粒数增多.盐分胁迫下两种番茄叶绿体结构的影响大于水分胁迫,耐盐种醋栗番茄气孔变化小于盐敏感品种金田粉冠.  相似文献   

9.
NaCl胁迫对盐芥和拟南芥光合作用的影响   总被引:15,自引:2,他引:15  
  相似文献   

10.
NaCl胁迫下野生和栽培大豆幼苗体内离子的再转运   总被引:18,自引:0,他引:18  
采用NaCl根际处理和叶面饲喂^22Na方法,研究了野生大豆(Glycine soja)——耐盐的BB52、盐敏感的N23232和栽培大豆(Glycine max)——较耐盐的Lee68幼苗在盐胁迫及解除过程中对Na^ 、Cl^-的吸收和再转运。结果表明,在NaCl根际处理12h过程中,BB52和Lee68幼苗根对Na^ 、Cl^-吸收和向茎、叶的运输逐渐增加,10h时趋于稳定,Na^ 、Cl^-含量高低顺序是根>茎>叶。但N23232的Na^ 、Cl^-含量则是茎>根>叶。在用NaCl对根处理10h后再解除NaCl处理的0~36h内,BB52吸收的Na^ 、Cl^-较多地留于根部或转运至根茎过渡区,叶中较少。N23232吸收的Na^ 较多地转运至茎部,而Cl^-含量在幼苗各部分无差异。叶片饲喂^22Na 10h后,BB52吸收^22Na较N23232多,并较多地向根部运输。从离子再转运角度讨论了BB52的耐盐性。  相似文献   

11.
12.
The effects of two anion/Cl? channel inhibitors, Zn2+ and niflumic acid (NA), on seedling photosynthetic and fluorescent parameters of two Glycine soja populations (salt-tolerant BB52; salt-sensitive N23227) and Glycine max cultivar (salt-tolerant Lee68) were studied and compared under salt stress. Treatments with Zn2+ and NA only (10, 20 μmol L?1) were also imposed for comparisons. Results showed that, there were non-toxic and non-nutritional effects of Zn2+ and NA treatments alone on seed germination and seedling growth of soybeans. Under 150 mmol L?1 NaCl for 6 d, leaf chlorophyll and carotenoid contents, net photosynthetic rate (Pn), stomatal conductance (Gs), intercellular CO2 concentration (Ci), transpiration rate (Tr), and the maximum photochemical efficiency of photosystem II (PS II) (Fv/Fm) except the stomatal limitation (Ls) significantly decreased in three kinds of soybean seedlings when compared with their control plants. The NaCl stress plus additional 20 μmol L?1 Zn showed an obvious enhancement of leaf chlorophyll and carotenoid contents, Pn, Gs, Ci and Tr, especially for the G. max cultivar Lee68, but the supplementation of 20 μmol L?1 NA showed the reverse effects.  相似文献   

13.
Additive effects of Na+ and Cl- ions on barley growth under salinity stress   总被引:3,自引:0,他引:3  
Soil salinity affects large areas of the world's cultivated land, causing significant reductions in crop yield. Despite the fact that most plants accumulate both sodium (Na(+)) and chloride (Cl(-)) ions in high concentrations in their shoot tissues when grown in saline soils, most research on salt tolerance in annual plants has focused on the toxic effects of Na(+) accumulation. It has previously been suggested that Cl(-) toxicity may also be an important cause of growth reduction in barley plants. Here, the extent to which specific ion toxicities of Na(+) and Cl(-) reduce the growth of barley grown in saline soils is shown under varying salinity treatments using four barley genotypes differing in their salt tolerance in solution and soil-based systems. High Na(+), Cl(-), and NaCl separately reduced the growth of barley, however, the reductions in growth and photosynthesis were greatest under NaCl stress and were mainly additive of the effects of Na(+) and Cl(-) stress. The results demonstrated that Na(+) and Cl(-) exclusion among barley genotypes are independent mechanisms and different genotypes expressed different combinations of the two mechanisms. High concentrations of Na(+) reduced K(+) and Ca(2+) uptake and reduced photosynthesis mainly by reducing stomatal conductance. By comparison, high Cl(-) concentration reduced photosynthetic capacity due to non-stomatal effects: there was chlorophyll degradation, and a reduction in the actual quantum yield of PSII electron transport which was associated with both photochemical quenching and the efficiency of excitation energy capture. The results also showed that there are fundamental differences in salinity responses between soil and solution culture, and that the importance of the different mechanisms of salt damage varies according to the system under which the plants were grown.  相似文献   

14.
Na+ fluxes in Chara under salt stress   总被引:2,自引:0,他引:2  
The influx and efflux of Na+ across the plasma membrane of Characorallina and Chara longifolia were examined under mild saltstress conditions. Na+ influx was found to be rapid in bothspecies with the freely exchangeable cytoplasmic Na+ cominginto isotopic equilibrium with external 22Na+ within 1 h ofexposure to isotope. Cytoplasmlc Na+ concentration and Na+ influxwere greater in C. corallina than in C. longifolla under thesame conditions. Na+ influx across the tonoplast was much lowerthan the flux across the plasma membrane. Na+ efflux was stimulatedat pH 5 relative to pH 7 by 218% in C. coralllna and 320% inC. longifolia. In both species externally applied Li+ inhibitedNa+ efflux at pH 5 but not at pH 7. Na+ etflux was not significantlyinhibited by amiloride. Key words: Na+ influx, Na+ efflux, Na+/H+ antiport, Chara  相似文献   

15.
High Na+ and Cl- concentrations in soil cause hyperionic and hyperosmotic stress effects, the consequence of which can be plant demise. Ion-specific stress effects of Na+ and Cl- on seedlings of cultivated (Glycine max (L.) Merr) and wild soybean (Glycine soja Sieb. Et Zucc.) were evaluated and compared in isoosmotic solutions of Cl-, Na+ and NaCl. Results showed that under NaCl stress, Cl- was more toxic than Na+ to seedlings of G. max. Injury of six G. max cultivars, including 'Jackson' (salt sensitive) and 'Lee 68' (salt tolerant), was positively correlated with the content of Cl- in the leaves, and negatively with that in the roots. In subsequent research, seedlings of two G. max cultivars (salt-tolerant Nannong 1138-2, and salt-sensitive Zhongzihuangdou-yi) and two G. soja populations (BB52 and N23232) were subjected to isoosmotic solutions of 150mM Na+, Cl- and NaCl, respectively. G. max cv. Nannong 1138-2 and Zhongzihuangdou-yi were damaged much more heavily in the solution of Cl- than in that of Na+. Their Leaves were found to be more sensitive to Cl- than to Na+, and salt tolerance of these two G. max cultivars was mainly due to successful withholding of Cl- in the roots and stems to decrease its content in the leaves. The reverse response to isoosmotic stress of 150 mM Na+ and Cl- was shown in G. soja populations of BB52 and N23232; their leaves were not as susceptible to toxicity of Cl- as that of Na+. Salt tolerance of BB52 and N23232 was mainly due to successful withholding of Na+ in the roots and stems to decrease its content in the leaves. These results indicate that G. soja have advantages over G. max in those traits associated with the mechanism of Cl-tolerance, such as its withholding in roots and vacuoles of leaves. It is possible to use G. soja to improve the salt tolerance of G. max.  相似文献   

16.
NaCl胁迫对黄瓜幼苗体内K+、Na+和Cl-分布的影响   总被引:1,自引:0,他引:1  
采用营养液水培,以2个耐盐性不同的黄瓜品种为材料,研究了不同浓度NaCl处理下幼苗植株体内K 、Na 和Cl-在器官间的区域化分布及其吸收和运输特性的变化。结果表明:NaCl胁迫下,黄瓜植株体内K 含量下降,Na 和Cl-含量升高,变化幅度随NaCl浓度的升高而增大;不同器官间,茎中Na 和Cl-含量最高,上位叶中Na 和Cl-含量最低、K 含量下降幅度最小。与耐盐性较弱的“津春2号”相比,耐盐性较强的“长春密刺”根向茎运输的SK,Na值较高,根系对Na 的截留作用较强,茎向上位叶运输的SK,Na和SCl,Na值均较高,叶片中K 含量下降幅度较小,K/Na和Cl/Na比值均较高,功能叶中盐分离子尤其是Na 积累较少,植株生物量较高。说明根系对Na 的截留能力较强且向上位叶运输Na 的选择性较低,是“长春密刺”耐盐性较强的主要原因之一。  相似文献   

17.
18.
The aim of the study was to examine the effect of silicon on spring wheat subjected to salt stress. The experiment was conducted in hydroponic conditions on 10-day old wheat seedlings. Salt stress was induced by sodium chloride at the concentration of 70 and 100 mM added to nutrient medium. Silicon (H4SiO4) at the doses of 1.0 and 1.5 mM significantly increased the shoots and roots weight of wheat seedlings and the content of photosynthetic pigments (chlorophyll a and b, as well as carotenoids) in leaves. It reduced a detrimental effect of salt stress and restricted peroxidation of membrane lipids. We also observed a greater accumulation of nitrates and the decrease in malondialdehyde concentration in plant tissues as a result of silicon addition. Under osmotic stress, silicon did not change the content of sugars in wheat shoots and roots. Silicon did not clearly affect proline content. In general, the obtained results point out that silicon can be used for the alleviation of adverse effect of salinity on plants status.  相似文献   

19.
Antioxidant defense mechanism under salt stress in wheat seedlings   总被引:6,自引:0,他引:6  
The present study was carried out to study the effect of salt stress on cell membrane damage, ion content and antioxidant enzymes in wheat (Triticum aestivum) seedlings of two cultivars salt-tolerant KRL-19 and salt-sensitive WH-542. Seedlings (4-d-old) were irrigated with 0, 50 and 100 mM NaCl. Observations were recorded on the 3rd and 6th day after salt treatment and 2nd day after salt removal. The relative water content declined with induction of salt stress, more in WH-542 than in cv. KRL-19. K+/Na+ ratio in KRL-19 was higher than in WH-542. WH-542 suffered greater damage to cellular membranes due to lipid peroxidation as indicated by higher accumulation of H2O2, MDA and greater leakage of electrolytes than KRL-19. The activities of catalase, peroxidase and ascorbate peroxidase and glutathione reductase increased with increase in salt stress in both the cultivars, however, superoxide dismutase activity declined. Upon desalanization, partial recovery in the activities of these enzymes was observed in KRL-19 and very slow recovery in WH-542.  相似文献   

20.
生物炭调控盐胁迫下水稻幼苗耐盐性能   总被引:1,自引:0,他引:1  
土壤盐渍化降低土壤生产力.探索生物炭对盐胁迫下水稻幼苗耐盐性能的影响,对调控盐渍区水稻生产潜力具有重要意义.本研究通过生物炭介入盐胁迫稻田土壤的盆栽试验,调查了生物炭对盐胁迫下土壤环境和水稻幼苗耐盐性能的影响.盐胁迫设置4个水平,分别为0 g NaCl·kg-1土(S0),1 g NaCl·kg-1土(S1),2 g ...  相似文献   

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