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1.
温度及盐胁迫对地梢瓜种子萌发及抗氧化酶活性的影响   总被引:2,自引:0,他引:2  
以地梢瓜种子为试料,研究不同温度(5~45℃)及不同浓度NaCl胁迫(0~300mmol·L~(-1))对种子萌发及其抗氧化酶活性的影响。结果表明:(1)随着温度升高,种子各萌发指标呈先升高后降低的趋势,过高或过低均显著抑制种子正常萌发,萌发最适温度为25℃,在5℃和35℃条件下种子恢复萌发率均达95%以上。(2)随着NaCl浓度升高,种子萌发率、萌发势、活力指数呈显著下降趋势,而其相对盐害率呈增加趋势,且在300mmol·L~(-1)NaCl时萌发受到完全抑制;种子根系活力仅在高浓度NaCl(150mmol·L~(-1))下受到显著抑制;种子在解除盐胁迫后可一定程度恢复萌发,但最终依然受到盐胁迫的显著抑制,且盐浓度越高抑制越严重,其耐盐适宜浓度为65.25mmol·L~(-1)。(3)种子萌发率与盐胁迫下POD、APX活性呈显著正相关关系,而与相应O_2~生成速率、MDA含量呈显著负相关关系;种子活力指数与盐胁迫下CAT活性呈显著负相关关系。研究发现,地梢瓜种子萌发受到NaCl胁迫的显著抑制,保护酶POD与APX在盐胁迫种子萌发过程中发挥着主要抗氧化作用;地梢瓜适于在中度盐渍土中萌发生长。  相似文献   

2.
以1/4 Hoagland溶液为基础培养液,研究了0.5%、1.0%、1.5%、2.0%和2.5%NaCl处理对海滨锦葵[Kostelezkya rirginica(L.)Presl.]种子萌发和幼苗生长的影响,发现随着培养液中NaCl浓度的增加,海滨锦葵种子萌发率逐渐降低;当NaCl浓度达2.5%时种子不萌发,但NaCl胁迫解除后,种子的萌发率水平与对照相当。幼苗在含0.5%~1.0%NaCl的培养液中生长状况良好,叶绿素含量和根系活力明显增高;但当NaCl浓度达1.5%-2.0%时,叶绿素含量和根系活力逐渐下降;与对照相比,NaCl胁迫下幼苗的MDA水平降低。结果表明,NaCl胁迫对海滨锦葵种子萌发和幼苗牛长有一定的影响,但海滨锦葵可通过种子休眠、增加根系活力、降低体内MDA水平来缓解一定的盐害效应.以适应盐胁迫的生长环境.  相似文献   

3.
为探讨外源5-氨基乙酰丙酸(ALA)对NaCl胁迫下番茄种子发芽率及芽苗生长的影响,以‘中杂九号’番茄种子为试材,不同浓度ALA(0、0.1、0.5、1.0、5.0、10.0mg/L)浸种24h后,在0、25、50、100mmol/L NaCl胁迫下,28℃,黑暗培养7d,研究ALA对番茄种子发芽参数(发芽率、发芽势、发芽指数、活力指数、芽苗总鲜重)及胚芽和胚根中的抗氧化酶(超氧化物歧化酶SOD、过氧化物酶POD、过氧化氢酶CAT)活性和丙二醛(MDA)含量的影响.结果表明:非盐胁迫下,ALA浸种使番茄种子的发芽势、发芽指数、活力指数、芽苗总鲜重增加,胚根中SOD、POD活性降低,MDA含量减少;25 mmol/L NaCl胁迫能够提高发芽率、活力指数、芽苗总鲜重,而50-100mmol/L NaCl胁迫极显著的降低发芽率、发芽势、发芽指数、活力指数;0.1-0.5mg/L ALA浸种能够提高NaCl胁迫下番茄种子的发芽率、发芽指数、活力指数、芽苗总鲜重和抗氧化酶活性,降低MDA含量,而高浓度ALA(10.0mg/L)浸种导致发芽率、发芽指数、活力指数降低.总之,ALA浸种能够促进番茄种子萌发和芽苗生长,浸种浓度不宜超过5.0mg/L,NaCl胁迫下以0.1 mg/L ALA浸种处理效果最佳.  相似文献   

4.
等渗的盐分和水分胁迫对杠柳种子萌发的影响   总被引:6,自引:3,他引:3  
马闯  张文辉  刘新成 《植物研究》2008,28(4):465-470
通过等渗的NaCl和PEG溶液模拟盐分和水分胁迫,设置渗透梯度,在控制条件下对杠柳种子的萌发过程中总萌发率、幼苗鲜重、胚根生长、种子活力、发芽值等指标系统研究,对种子萌发率与渗透势之间关系进行回归分析,主要结果包括:(1)杠柳种子萌发过程中总萌发率、幼苗鲜重、活力指数和发芽值四项指标均随NaCl和PEG溶液的渗透势降低逐渐下降,综合研究活力指数和发芽值表明渗透势≥-0.5 MPa和≤-1.4 MPa时,PEG对种子萌发抑制作用大于NaCl,其他情况相反;(2)杠柳种子逐日萌发率和胚根日变化研究表明,与NaCl相比,PEG推迟杠柳种子萌发,并且对胚根增长抑制作用较大;(3)建立盐分和水分胁迫条件下种子萌发率与渗透势回归方程,发现杠柳种子在PEG胁迫下的萌发临界值和极限值为-1.0和-1.4 MPa,在NaCl胁迫下是-0.9和-1.3 MPa,解除胁迫条件,不同处理的杠柳种子复水萌发率均达到100%。说明杠柳具有良好的耐盐抗旱的特性。  相似文献   

5.
入侵植物牛膝菊种子萌发对PEG模拟干旱胁迫的响应   总被引:5,自引:0,他引:5  
采用浓度分别为5%、10%、15%、20%和25%的PEG-6000溶液模拟干旱条件,测定不同干旱胁迫条件下牛膝菊的种子萌发时间、萌发率、日相对萌发率、发芽势、发芽指数、活力指数及幼苗的初生根与胚芽的长度等指标,研究了干旱胁迫对牛膝菊种子萌发及幼苗生长的影响,探讨了经PEG浸种预处理后种子的萌发恢复能力。结果表明:随着水分胁迫的加重,牛膝菊种子萌发和幼苗生长受到抑制程度增加,牛膝菊种子的日相对萌发率、发芽率、发芽势和发芽指数、活力指数及幼苗的初生根长和胚芽长均呈下降趋势;与对照组相比,牛膝菊种子首次萌发时间延迟越长,当PEG浓度为20%、25%时牛膝菊种子未见萌发;本研究建立了水分胁迫PEG浓度与种子萌发率的线性回归方程,得出牛膝菊种子萌发的PEG浓度临界值为12.9%;经PEG浓度为20%、25%处理的种子在适宜条件下可以恢复萌发,浸种时间相同条件下,20%PEG浓度对牛膝菊种子伤害较小,其恢复性较强,25%PEG浓度对牛膝菊种子伤害较大,其恢复性较弱。  相似文献   

6.
温度、光照和盐分对外来植物黄顶菊种子萌发的影响   总被引:10,自引:0,他引:10  
对黄顶菊(Flaveria bidentis)种子的表面形态进行了扫描电镜观察,并从温度、光照、NaCl胁迫及浸种等方面对黄顶菊种子萌发特性进行了探讨.结果表明:黄顶菊种子喜高温,35℃下种子萌发迅速,且发芽率、发芽指数及活力指数最高;光照对种子发芽率影响不大,但随光照时间延长,种子发芽高峰推迟且峰值下降,发芽指数和活力指数逐渐下降;随NaCI浓度升高,种子发芽高峰推迟日.峰值变小,发芽率也呈下降趋势,但低NaCl浓度(0.01 mol/L和0.05 moi/L)胁迫下种子发芽率仍保持在90%以上,且促进了种子发芽指数及活力指数提高及胚根的伸长,结合天津地区黄顶菊生境中土壤的含盐量的分析表明,黄顶菊具有相当强的耐盐性;浸种对种子发芽率和发芽指数影响也很大.因此,黄顶菊成为潜在入侵种与其种子极高的萌发率及耐受高温和盐碱等特性密切相关.  相似文献   

7.
温度和水分及盐分胁迫对银沙槐种子萌发的影响   总被引:1,自引:0,他引:1  
利用控制实验研究了温度、湿度、干旱和盐分胁迫等生态因子对银沙槐种子萌发的影响,以探索银沙槐种子对各种生态因子的适应性。结果显示:(1)银沙槐种子在20℃、25℃恒温和15℃/25℃、20℃/30℃、10℃/20℃变温环境中的发芽率较高且无显著差异,其在20℃恒温、15℃/25℃、20℃/30℃变温条件下的发芽指数较高,但差异不显著。(2)土壤含水量在1%~5%之间,各水分处理间种子发芽率差异显著(P<0.05),而在5%~25%间种子发芽率变化不显著。(3)盐胁迫和水分胁迫对银沙槐种子的萌发均有明显的抑制作用,可显著降低种子萌发率(P<0.05);种子发芽指数和活力指数均随渗透势和NaCl浓度增大而显著减小(P<0.05);恢复萌发率随渗透势和NaCl浓度的增加而显著增加(P<0.05)。研究发现,银沙槐种子萌发最适温度为20℃恒温和15℃/25℃变温,最适土壤含水量为10%~25%;种子萌发对盐分和干旱胁迫表现出不同程度的耐受性,萌发过程中主导抑制因素为渗透胁迫,离子毒害作用甚微;银沙槐种子休眠机制和萌发特征表现出它对生境的良好适应性。  相似文献   

8.
胡杨种子萌发对温光条件和盐旱胁迫的响应特征   总被引:1,自引:0,他引:1  
以胡杨(Populus euphratica)种子为材料,分别设置光照(连续光照、12h光照/12h黑暗、连续黑暗)温度(10/15℃、15/20℃、20/25℃、25/30℃、30/35℃和35/40℃)试验、PEG6000渗透胁迫(0、-0.1、-0.2、-0.4、-0.6、-0.8、-1.0、-1.2、-1.4和-1.6MPa)试验和NaCl胁迫(0、0.05、0.10、0.20、0.30、0.40、0.60和0.80mol/L)试验,考察室内种子萌发对温度、光照和盐旱胁迫的敏感性,揭示胡杨种子萌发阶段对生境资源的适应策略。结果显示:(1)胡杨种子在温度(10℃/15℃~35℃/40℃)与连续光照、连续黑暗和12h光照/12h黑暗组合处理条件下均能萌发,且最终种子萌发率均能达到77%以上;3种光照条件下,种子萌发的最适温度范围均为25℃/30℃~30℃/35℃,在该温度范围种子萌发表现出快速、集中的特点,且3种光照条件对种子萌发的影响无显著差异。(2)胡杨种子可以在-1.4~0 MPa渗透势溶液中萌发,而在-1.0~0 MPa间最终萌发率均达到90%以上,且相互之间无显著差异;但当渗透势低于-0.4 MPa时胡杨种子萌发进程和萌发速率受到显著影响,当溶液渗透势低于-1.2 MPa时种子萌发受到显著抑制。(3)胡杨种子可以在0~0.80mol/L NaCl溶液中萌发,而最终萌发率、萌发速率均随着NaCl溶液浓度的增高逐渐降低,但在0~0.20mol/L范围内无显著差异;当NaCl溶液浓度大于0.20mol/L时,种子最终萌发率、种子萌发进程和萌发速率均受到显著抑制,萌发高峰期逐渐向后推移。研究结果表明,胡杨种子萌发时温度比较宽泛,对光照无严格要求,适宜温度下萌发快速集中,且萌发时对盐旱胁迫具有一定程度的忍耐性。这些特性有助于胡杨种子充分利用有限的水分条件而快速完成萌发,是胡杨种子萌发对干旱荒漠地区干旱少雨环境的一种生态适应策略。  相似文献   

9.
盐胁迫对二色补血草种子萌发的影响   总被引:8,自引:0,他引:8  
以二色补血草(Limonium bicolor)种子为试验材料,用不同浓度的NaCl、Na2SO4及二者质量比为1:1的混合盐在其种子萌发过程中进行胁迫,调查盐胁迫对种子萌发的影响,并测定萌发过程中种子蛋白质含量、淀粉酶活力及还原糖和总糖含量的变化.结果表明:盐胁迫使二色补血草种子的发芽势、发芽指数和发芽率明显降低,而且随着盐浓度的增鲻加,抑制作用增强;3种盐对种子萌发的抑制作用强度依次为NaCl>混合盐>Na2SO4;二色补血草种子耐盐适宜范围为Na2SO4 1.2%、混合盐0.8%、NaCl 0.5%,耐盐半致死浓度为Na2SO4 2.1%、混合盐1.4%、NaCl 1.1%,耐盐极限浓度为Na2SO4 3.5%、混合盐2.4%、NaCl 2.0%.盐处理后不萌发的种子转入蒸馏水后重新萌发的试验结果表明,盐分胁迫主要是通过渗透效应,抑制种子中蛋白质和总糖的分解,进而延缓或抑制了种子的萌发.  相似文献   

10.
盐旱胁迫对3种新疆造林树木种子萌发的影响   总被引:3,自引:0,他引:3  
以3种新疆常见造林树木白榆、大叶白蜡、梭梭种子为材料,通过测定不同土壤含盐量(0.1%~0.5%)和含水量(9%~23%)复合胁迫作用下种子的发芽率、发芽指数,以探讨3种种子萌发对盐分和干旱胁迫的响应特征.结果显示:(1)梭梭种子对盐和干旱胁迫的适应范围最广,大叶白蜡次之,然后是白榆.(2)在土壤含盐量不超过0.2%情况下,土壤含水量达到17%以后,3种树木种子发芽率都在50%以上;而当土壤含盐量为0.3%时,3树种种子仅在23%含水量下有较高发芽率;0.4%土壤含盐量条件下,只在含水量为23%时,梭梭、大叶白蜡萌发率能达到50%以上;0.5%土壤含盐量时,仅梭梭种子萌发率达到50%.(3)白榆、大叶白蜡、梭梭的耐旱临界值分别为15.1%、10.7%、9.6%,耐盐临界值分别为0.34%、0.41%、1.03%.研究表明,盐旱胁迫存在明显互作效应,盐旱复合胁迫对种子萌发的危害性明显强于单一的盐胁迫或旱胁迫.  相似文献   

11.
The seed germination and seedling growth of pakchoi (Brassica campestris ssp. chinensis var. communis Tsen et Lee cv. Hanxiao) were not significantly inhibited until the concentration of NaCl was increased to 150 mmol/L. Treatment of pakchoi seeds with exogenous 5-aminolevulinic acid (ALA), at concentrations ranging from 0.01 to 10.00 mg/L, promoted seed germination when seeds were stressed by salinity, whereas levulinic acid (LA), an inhibitor of ALA dehydrase, significantly inhibited seed germination and seedling growth, suggesting that metabolism of ALA into porphyrin compounds was necessary for seed germination and seedling growth. Determination of respiratory rate during seed germination showed that ALA increased seed respiration under both normal conditions and salt stress. Furthermore, salt stress decreased levels of endogenous ALA, as well as heme, in etiolated seedlings. More salt-tolerant cultivars of pakchoi contained higher relative levels of endogenous ALA and heme under conditions of salt stress. These results indicate that salt stress may inhibit the biosynthesis of endogenous ALA and then heme, which is necessary for seed germination, and treatment of seeds with exogenous ALA prior to germination may be associated with the biosynthesis of heme.  相似文献   

12.
The seed germination and seedling growth of pakchoi (Brassica campestris ssp. chinensis var.communis Tsen et Lee cv. Hanxiao) were not significantly inhibited until the concentration of NaCl was increased to150 mmol/L. Treatment of pakchoi seeds with exogenous 5-aminolevulinic acid (ALA), at concentrations ranging from 0.01 to 10.00 mg/L, promoted seed germination when seeds were stressed by salinity, whereas levulinic acid (LA), an inhibitor of ALA dehydrase, significantly inhibited seed germination and seedling growth, suggesting that metabolism of ALA into porphyrin compounds was necessary for seed germination and seedling growth. Determination of respiratory rate during seed germination showed that ALA increased seed respiration under both normal conditions and salt stress. Furthermore, salt stress decreased levels of endogenous ALA, as well as heme, in etiolated seedlings. More salt-tolerant cultivars of pakchoi contained higher relative levels of endogenous ALA and heme under conditions of salt stress.These results indicate that salt stress may inhibit the biosynthesis of endogenous ALA and then heme,which is necessary for seed germination, and treatment of seeds with exogenous ALA prior to germination may be associated with the biosynthesis of heme.  相似文献   

13.
Thellungiella halophila is a salt tolerant relative of Arabidopsis thaliana with high genetic and morphological similarity. In the present study, effects of salinity on germination and seedling growth of T. halophila and A. thaliana were compared. The present results showed that the salinity inhibited seed germination in both species. Unexpectedly, percentages of seed germination in A. thaliana were higher than T. halophila in a range of 0?C200?mM NaCl. Seeds of both species could not germinate when the concentration of NaCl was over 200?mM. However, when compared with A. thaliana, seeds of T. halophila did not suffer ion toxicity, as evidenced by the higher final germination rate after ungerminated seeds pretreated with NaCl were transferred to distilled water. Seedlings of T. halophila were more salt tolerant than those of A. thaliana, e.g., seedlings of T. halophila had better plant growth (root length, fresh and dry mass), higher chlorophyll content, less MDA content and higher proline content and K+/Na+ ratio under salinity. These results indicate that T. halophila is more salt tolerant than A. thaliana during both seed germination and seedling stages and explain why A. thaliana is excluded from saline locations and T. halophila can survive in saline soils.  相似文献   

14.
Polymorphic seeds of Atriplex triangularis were germinated at various temperatures (5–15 C, 5–25 C, 10–20 C, 20–30 C) and salinity regimes (0 to 1.5% NaCl) in order to determine their germinability and early seedling growth under these conditions. Larger seeds generally had a higher germination percentage in saline medium. The rate and percentage of germination decreased with increased salinity stress. A thermoperiod of 25 C day and 5 C night, 12 hr/12 hr, temperature enhanced germination of seeds. Early seedling growth is promoted in larger seeds at lower salinity, and at high-day and low-night temperatures. Polymorphic seeds have different physiological requirements which provide alternative situations for seed germination in natural habitats.  相似文献   

15.
为探讨温度对干旱、盐胁迫下黄芪属种子萌发和幼苗生长特性的影响,以黄芪属蒙古黄芪和扁茎黄芪2种种子为研究对象,纯净水处理为对照组,NaCl、PEG处理为实验组,设置4个渗透势水平(0、-0.1、-0.3、-0.5 MPa),置于5种不同的温度(10、15、20、25、30 ℃)下,每日观察并记录两种种子萌发和幼苗生长情况。结果表明:旱盐胁迫下蒙古黄芪和扁茎黄芪种子萌发最适宜的温度分别为25和20 ℃左右;蒙古黄芪耐高温不耐低温,而扁茎黄芪恰恰相反;但25和20 ℃均适宜两种幼苗生长,包括胚根、胚轴和子叶的生长。蒙古黄芪各处理组(除未发芽的种子)的平均发芽时间都比扁茎黄芪长;NaCl胁迫程度的增加使得两种种子的最终发芽率降低,但蒙古黄芪的耐盐性高于扁茎黄芪;随着PEG胁迫程度的增加,二者的发芽均受到抑制,甚至会出现完全不萌发,但扁茎黄芪的耐旱性高于蒙古黄芪;在相同的渗透势时,尤其是-0.5 MPa,PEG比NaCl对两种种子的影响大;交互胁迫作用下,随着渗透势的增加两种幼苗的鲜重、干重以及胚根、胚轴、子叶的长和宽变化较大;利用Design Expert软件预测发现:温度25 ℃、NaCl渗透势为-0.1 MPa,温度24 ℃、PEG渗透势为-0.04 MPa的处理是蒙古黄芪种子萌发和幼苗生长达到最优化的组合;而扁茎黄芪最优化的组合则为23 ℃下NaCl渗透势为-0.07 MPa的处理,20 ℃下PEG渗透势为-0.13 MPa的处理。  相似文献   

16.
Low soil temperatures and low water potentials reduce and delay the seed germination of canola (Brassica rapa L., B. napus L.) in western Canada. Germination is also very sensitive to the salinity effects of nitrogen fertiliser placed with the seed, especially when the seed bed is relatively dry. The effects of pre-hydration and re-drying treatment on canola (Brassica rapa L. cv. Tobin) seed germination and seedling emergence at 10°C subjected to either a water or salt stress were determined. Low water potentials, induced by polyethylene glycol (PEG 8000), low soil moisture, or high concentrations of salts, reduced both germination and seedling emergence, and increased the time to 50% germination and emergence of seeds at 10°C. At equal osmotic potentials, Na2SO4 was less inhibitory on low temperature germination than either NaCl or PEG, suggesting that the sulphate ion partially alleviated the inhibitory effects of low water potential. Solutions of NaCI produced more abnormal seedlings compared to Na2SO4, suggesting that NaCl was more toxic than Na2SO4 during seedling development. Pre-hydration and re-drying partially overcame the inhibitory effects of both low water potential and salts on seed germination and seedling emergence at 10°C. The seed treatment increased the germination rate in Petri dishes and seedling emergence from a sandy loam soil. Water potentials or soil water contents required to inhibit 50% germination or emergence at 10°C were lower for treated seeds compared to control seeds. Salt concentrations inhibiting 50% emergence were higher for treated seeds than control seeds. Neither treated nor control seeds produced seedlings which emerged if the soil water content was lower than 9% or when the soil was continuously irrigated with salt solutions of 100 mmol kg-1 of NaCl or 50 mmol kg-1 of Na2SO4. These results suggest that the pre-hydration and re-drying treatment did not lower the base water potentials at which seedling emergence could occur. Abnormal seedlings were observed in both treated and control seeds, particularly if the soil was watered with NaCl solutions; however, the seed treatment reduced the number of abnormal seedlings.  相似文献   

17.
该研究以掌叶大黄、唐古特大黄和药用大黄种子为材料,采用双层滤纸培养法,设置系列浓度NaCl (0、100、150、200、250 mmol/L) 胁迫试验,以及系列浓度水杨酸(SA)溶液(0、50、100、150、200、250 mg/L)拌种和浸种后盐胁迫实验,测定3种大黄种子萌发及幼苗生长指标,揭示外源水杨酸对盐胁迫下大黄种子萌发及幼苗生长的影响。结果显示:(1)随NaCl浓度增大3种大黄种子的发芽率均呈直线下降趋势,且子叶、胚轴、根和苗等生长均受到强烈抑制。(2)在拌种条件下, 200 mmol/L NaCl胁迫下掌叶大黄苗长在200 mg/L SA处理下受到显著促进; 200 mmol/L NaCl浓度盐胁迫下唐古特大黄种子发芽率在250 mg/L SA处理下受到显著抑制;100 mmol/L NaCl胁迫下药用大黄种子发芽势在200 mg/L SA处理下受到显著抑制,其发芽率在150 mg/L SA处理下得到显著抑制,其苗长在250 mg/L SA处理下受到显著抑制。(3)在浸种条件下, 200 mmol/L NaCl胁迫下掌叶大黄种子发芽率在50 mg/L SA处理下显著提高,其幼苗根长和苗长的生长在250 mg/L SA处理受到显著促进;200 mmol/L NaCl胁迫下唐古特大黄种子的发芽势在200 mg/L SA处理下得到显著促进,其幼苗根和苗的生长在50 mg/L SA处理下得到显著促进;100 mmol/L NaCl 胁迫下药用大黄根和苗的生长在100 mg/L SA处理下均得到显著促进。研究表明,3种大黄种子和幼苗对盐胁迫的响应趋势一致,但对不同浓度SA拌种和浸种的响应有较大差异。  相似文献   

18.
Chickpea seeds of Pusa 1053 (Mediterranean) and Pusa 256 (native) were magnetoprimed with 100 mT static magnetic field for 1 h to evaluate the effect of magnetopriming on germination of seeds under saline conditions. Enhanced rate of germination and seedling growth parameters (root and shoot length, and vigour indices) under different salinity levels indicated that magnetopriming was more effective in alleviating salinity stress at early seedling stage in Pusa 1053 as compared to Pusa 256. Dynamics of seed water absorption in magnetoprimed seeds showed increased water uptake in Pusa 1053 under non-saline as compared to saline conditions. This could have resulted in faster hydration of enzymes in primed seeds leading to higher rate of germination. Total amylase, protease and dehydrogenase activities were higher in primed seeds as compared to unprimed seeds under both non-saline and saline conditions. Production of superoxide radicals was enhanced in germinating seeds of both the genotypes under salinity irrespective of priming. Increased levels of hydrogen peroxide in germinating magnetoprimed seeds, under both the growing conditions, suggested its role in promotion of germination. Our results showed that magnetopriming of dry seeds of chickpea can be effectively used as a pre-sowing treatment for mitigating adverse effects of salinity at seed germination and early seedling growth.  相似文献   

19.
Seed germination recovery aptitude is an adaptive trait of overriding significance for the successful establishment and dispersal of extremophile plants in their native ecosystems. Cakile maritima is an annual halophyte frequent on Mediterranean coasts, which produces transiently dormant seeds under high salinity, that germinate fast when soil salinity is lowered by rainfall. Here, we report ecophysiological and proteomic data about (1) the effect of high salt (200 mM NaCl) on the early developmental stages (germination and seedling) and (2) the seed germination recovery capacity of this species. Upon salt exposure, seed germination was severely inhibited and delayed and seedling length was restricted. Interestingly, non‐germinated seeds remained viable, showing high germination percentage and faster germination than the control seeds after their transfer onto distilled water. The plant phenotypic plasticity during germination was better highlighted by the proteomic data. Salt exposure triggered (1) a marked slower degradation of seed storage reserves and (2) a significant lower abundance of proteins involved in several biological processes (primary metabolism, energy, stress‐response, folding and stability). Yet, these proteins showed strong increased abundance early after stress release, thereby sustaining the faster seed storage proteins mobilization under recovery conditions compared to the control. Overall, as part of the plant survival strategy, C. maritima seems to avoid germination and establishment under high salinity. However, this harsh condition may have a priming‐like effect, boosting seed germination and vigor under post‐stress conditions, sustained by active metabolic machinery.  相似文献   

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