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1.
将红豆草种子搭载于940703返地卫星,经田间繁殖得后代种子,先将种子在1.5%NaCl上筛选、并在该盐浓度下诱导愈伤组织和筛选,在无盐培养基上恢复生长后再在1.2%NaCl上筛选得到耐盐变异系.变异系具有正常的分化能力并表现出对PEG胁迫的交叉抗性.变异系在无胁迫条件下脯氨酸含量较低但在有盐胁迫时具有高效积累脯氨酸的能力.后者可能对红豆草耐盐系更为重要.变异系中脯氨酸的这种合成机理可能是由于一些基因在调控中对水的敏感性改变引起.梯度聚丙烯酰胺凝胶电泳表明耐盐系的SOD和酯酶分别出现175kD和75kD的新形式.说明空间诱变和组织培养相结合可以筛选耐盐变异系.  相似文献   

2.
抗羟脯氨酸水稻变异系的筛选及其特性的研究   总被引:1,自引:0,他引:1  
利用Hyp反复筛选经EMS处理的水稻愈伤组织,得到4个抗性细胞系。它们的游离脯氨酸含量高于对照2—25倍。Hyp(2 mmol/L)和NaCl(1%)胁迫对M_1、M_2变异系γ-谷氨酰磷酸合成活力及游离脯氨酸积累的影响呈一定的正相关性。变异系在0.8%,15NaCl 培养基中分化出植株。与对照相比,各变异系在愈伤组织、植株水平上均表现较强的耐盐性,且与游离脯氨酸的积累量呈正相关。  相似文献   

3.
烟草(品种革新一号)叶片为外植体,直接置入含0.5%NaCl的修改MS培养基中,诱发产生耐盐的愈伤组织。然后采取逐步提高NaCl浓度的措施,分别获得耐0.5%、1.0%、1.5%及2.0%NaCl细胞系。耐盐细胞系在无盐条件下,生长9—11代后仍保持其耐盐性。从各个耐盐细胞系均分别获得再生苗。耐2.0%NaCl的04—9细胞系共得到15株再生植株,叶片狭长、多锯齿、并具有较多的花茎,多数花粉粒畸形,经过人工授粉获得少量种子。04-9变异型再生植株水培于含有1.0—2.0%NaCl的Hogland溶液中生长85天,仍然存活。原始型愈伤组织的细胞呈不规则椭圆形,耐盐细胞系的细胞均近似圆形;耐盐浓度愈高则细胞愈小。耐盐细胞系愈伤组织的叶绿素含量随耐盐浓度增高而增加;渗透势则随耐盐水平提高而降低。耐2.0%NaCl细胞系04—9愈伤组织内脯氨酸含量高40.7倍,其再生植株叶片内的脯氨酸含量亦较原始型增加两倍。耐2.0%NaCl细胞系再生植株的幼年与成年叶片的过氧化物同工酶的酶谱与原始型均有显著差别。以上试验结果均说明耐2.0%NaCl细胞系04—9及其再生植株是一个耐盐变异体。  相似文献   

4.
‘巴斗’杏再生体系的建立与耐盐突变体的筛选   总被引:1,自引:0,他引:1  
以‘巴斗’杏试管苗茎段为外植体,研究其再生体系的建立以及在含不同浓度NaCl培养基上诱导耐盐愈伤组织,筛选耐盐突变体。结果显示:茎段在MS+6-BA1.5mg·L^-1+IBA0.5mg·L^-1培养基上诱导愈伤组织效果最好,芽的分化率可达88%;将出芽愈伤组织块接种到附加IBA0.5mg·L^-1+KT2.0mg·L^-1的MS分化培养基上效果最佳,芽的分化系数最高为12.7;较理想的生根培养基为MS+NAA0.1mg·L^-1。+IBA0.2mg·L^-1,生根率在46.3%以上;在含0.8%NaCl的愈伤组织诱导培养基中,连续继代筛选2代,转入不含NaCl的分化培养基中,分化出了完整植株。经继代培养筛选,测定发现获得的耐盐植株比正常培养植株的游离脯氨酸含量高。  相似文献   

5.
拟南芥Mo敏感变异株的筛选和表型分析   总被引:1,自引:0,他引:1  
本文以EMS诱变处理野生型拟南芥Col-0获得的M2代种子为试验材料,通过在不含钼(-Mo)和含170 nmol·L-1钼(+Mo)的培养基上进行反复筛选培养,根据拟南芥根系在2种培养基上的生长差异筛选出31株Mo敏感变异株。并对变异株2-4的表型特征及鲜重和Mo含量进行了分析。结果显示,在-Mo培养基中变异株2-4的生长明显受到抑制,且叶鲜重、根鲜重和Mo含量均低于野生型。而在+Mo培养基中变异株2-4叶鲜重、根鲜重与野生型的差异不明显,且都高于在-Mo培养基中的。随着钼含量的增加,变异株2-4矮小、叶片失绿和叶缘卷曲的症状不断恢复。当钼含量达到170 nmol·L-1时,变异株2-4的生长情况与野生型相比没有明显差异。这说明筛选出的2-4植株是一种Mo敏感型变异株。  相似文献   

6.
大穗结缕草幼苗耐盐生理机制及耐盐能力研究   总被引:4,自引:1,他引:3  
以大穗结缕草为实验材料,采用不同质量分数的NaCl处理后,观察盐胁迫对其生长及生理生化指标的影响.结果表明:随着盐胁迫浓度增大,大穗结缕草幼苗株高、鲜重、干重都逐渐下降,而根容量和根冠比却逐渐上升;随盐胁迫浓度的增大,大穗结缕草幼苗叶片细胞质膜透性和MDA含量逐渐增加,脯氨酸含量持续升高;其多数生长和生理指标在≥2.0% NaCl盐胁迫浓度下与对照差异显著,且此时的脯氨酸含量是对照的10倍以上.研究发现,大穗结缕草幼苗地上部分对盐胁迫更敏感、受害更严重;通过体内脯氨酸积累来减轻渗透胁迫是其可能的耐盐生理机制;2.0%盐胁迫可能是大穗结缕草的最高耐盐浓度.  相似文献   

7.
枸杞耐盐变异体的筛选及植株再生   总被引:10,自引:0,他引:10  
枸杞(Lycium barbarum L.)无菌苗下胚轴于MS+2,4-D 0.25mg/L+LH 50 0mg/L的诱导培养基上产生胚性愈伤组织。经0.34%的EMS(半致死剂量)处理并恢复增殖2周后, 将存活组织转接到含有1.5%NaCl的诱导培养基上培养4周,再将少数存活的组织转移到含1.0%NaCl的同样培养基上继续培养,经不断选择,选出了耐1.0%NaCl的愈伤组织变异体。经耐盐性、耐盐稳定性、脯氨酸含量、叶绿素含量分析,以及对山梨醇、聚乙二醇的反应证明,该愈伤组织是耐盐变异体。变异体在含有1.0%NaCl的分化培养基(MS+6-BA0.5mg/L)上可分化出再生植株。  相似文献   

8.
杨淑萍  危常州  梁永超 《生态学报》2010,30(9):2322-2331
采用水培试验,分析了不同浓度的NaCl(0、50、100、150、200、250 mmol.L-1)处理对两个海岛棉品种新海28号(XH28,耐盐基因型)和新海21号(XH21,盐敏感基因型)植株生长、生物量分配、蛋白质含量、脯氨酸(Pro)含量以及过氧化物酶(POD)、过氧化氢酶(CAT)、抗坏血酸过氧化物酶(APX)、谷胱甘肽还原酶(GR)等生理生态指标的影响。研究发现:(1)盐胁迫对海岛棉幼苗鲜重的影响大于干重,对茎叶的影响大于根系;(2)盐处理引起海岛棉幼苗根叶脯氨酸含量的增加;(3)低浓度NaCl处理(≤50 mmol.L-1)显著增加耐盐品种XH28的根长、株高及单株鲜干重;(4)盐胁迫引起海岛棉幼苗根系中可溶性蛋白质含量下降,相反叶片中可溶性蛋白质含量上升;(5)盐胁迫下耐盐品种XH28幼苗中的POD、CAT、APX酶活性明显高于盐敏感品种XH21,但GR活性显著低于XH21。研究表明,低浓度NaCl处理刺激了棉株生长,增加了生物量;盐胁迫下叶内蛋白质、脯氨酸含量明显增加,POD、CAT、APX酶活力升高是海岛棉耐盐品种XH28的基本特征。  相似文献   

9.
对玉米耐盐系和盐敏感系在不同浓度盐胁迫下生理变化研究的结果表明,与盐敏感系相比,玉米耐盐系叶绿素含量高,脯氨酸、MDA含量及组织外渗液的相对电导率低,且变化幅度小。随盐浓度的增加,玉米耐盐系和盐敏感系的SOD、POD活性均先增加后降低,但玉米耐盐系峰值出现较晚。耐盐系的CAT活性明显大于盐敏感系;地上部分Na/K值小于盐敏感系,且增加的幅度小,而地下部分正相反。  相似文献   

10.
水稻高脯氨酸愈伤组织变异体的选择及其耐盐性   总被引:2,自引:1,他引:1  
以水稻(OryzasativaL.)品种双丰1号幼胚愈伤组织为材料,经50COγ-射线诱变处理后,用羟基脯氨酸(Hyp)作为选择压力,通过多次在含Hyp(3.0mmol/L)的选择培养基和无Hyp培养基上交替培养,分离出耐Hyp的愈伤组织变异体。该变异体以高脯氨酸含量为特征,其脯氨酸含量比原型高2.6倍;在NaCl处理时,随着NaCl浓度的提高,变异体愈伤组织脯氨酸含量的增加大大高于原型。这种高脯氨酸变异体的耐盐性较原型强,用相对鲜重估计其耐性比对照提高39%。变异体在盐胁迫下可溶性糖含量比原型多,吸收较多的Na+,并维持较高的K+含量;但K+/Na+比与原型无差异。变异体含水量略有下降。这些性状的变化显示了变异体在盐胁迫下渗透调节的加强。  相似文献   

11.
Lu S  Peng X  Guo Z  Zhang G  Wang Z  Wang C  Pang C  Fan Z  Wang J 《Plant cell reports》2007,26(8):1413-1420
A protocol was established for in vitro selection of salinity tolerant somaclonal variations from suspension cultured calli of triploid bermudagrass cv. TifEagle. To induce somaclonal variations the calli were subcultured for 18 months and were then subject to three-round selections for salt-tolerant calli by placing on solid medium containing 0.3 M NaCl for 10 days followed by a recovery for 2 weeks. The surviving calli were regenerated on regeneration medium containing 0.1 M NaCl. Three somaclonal variant lines (2, 71, and 77) were obtained and analyzed. The selected somaclonal lines showed higher relative growth and less injury than TifEagle under salt stress, indicating that they increased salt tolerance. In addition, they had higher relative water content and lower electrolyte leakage than TifEagle after withholding irrigation, indicating that they also increased drought tolerance. The three somaclonal variant lines had higher proline content than TifEagle under normal growth condition. The line 71 had a higher K+/Na+ ratio, whereas the lines 2 and 77 had higher CAT activity under control and salt stress conditions, indicating that different mechanisms for salt tolerance might exist in these three lines.  相似文献   

12.
Soil salinity affects plant growth and development by way of osmotic stress. Compatible osmolytes are potent osmoprotectants that playa role in counteracting the effect of saline stress. Proline biosynthesis and catabolism were investigated in both the control and salt stressed calli. Proline content showed a steady increase in the calli of all NaCI treated media. Calli on CaCl2 containing media did not show any increase in proline level compared to control calli. When the salinized media were supplemented with CaCl2 the proline level drastically increased compared to the corresponding calli grown on salt alone. Similarly, the activity of proline biosynthetic enzyme, pyrroline-5-carboxylate synthetase (P5CS) under salt stress was higher in NaCl + CaCl2 supplemented medium than the calli on the salinized medium alone. This suggested that the alleviation effect of calcium under saline condition was through modulation of the enzyme complexes that accelerate the rate of proline biosynthesis under salt stress. Similarly, the activity of proline degrading enzyme, proline oxidase was found to be lower in calli of all salt stressed media than control.  相似文献   

13.
Calli of salt tolerant (Bhoora rata) and salt susceptible (GR11) rice varieties were cultured on Linsmaeir and Skoog’s medium containing LD50 concentration of NaCl (200 mM) and hydroxyproline (10 mM). Growth, proline content and activity of proline and IAA oxidases of the cultured tissues were determined at the end of 0, 2, 4, and 6 weeks of incubation. Hydroxyproline resistant calli of both rice varieties when cultured on Linsmaeir and Skoog’s medium containing hydroxyproline and NaCl showed increased dry weight and proline content as compared to NaCl stressed calli. The levels of proline and IAA oxidases were also low in the hydroxyproline resistant calli.  相似文献   

14.
Summary The response of plant cells to salt stress was studied on embryo derived calli of rice (Oryza sativa L.) in order to identify cellular phenotypes associated with the stress. The feasability of selecting salt tolerant callus and its subsequent regeneration to plants was also studied. Callus was grown on agar-solidified media containing 0%, 1% and 2% (w/v) NaCl for 24 days. Parameters such as fresh weight, dry weight, soluble protein and proline content were measured. The callus growth decreased markedly with increasing NaCl concentration in the medium. The proline content was enhanced several fold in salt stressed calli. A prolonged exposure of callus to the salt environment led to discolouration and arrested growth in the majority of the calli and only a small number of callus cells maintained healthy and stable growth. These variants were subcultured every three weeks for a period of four months onto medium containing 1% NaCl to identify tolerant lines. At the end of the third cell passage, the tolerant calli were transferred to regeneration medium to regenerate plants. The regeneration frequency in the salt-selected lines was enhanced when compared to unselected lines.  相似文献   

15.
To study growth in the presence of NaCl, in vitro plantlets regenerated from callus of manilagrass (Zoysia matrella [L.] Merr.) were cultured on regeneration medium supplemented with or without 0.3 M NaCl. The results indicated that growth was significantly inhibited by NaCl, with the leaves becoming relatively shorter and thicker. The differences of in vitro plantlets grown under NaCl stress provided specific criteria for the selection of salt tolerant variants. The 6-year maintained calli were treated with different doses (0, 5, 10, 20, 40, 80, 100, 150, 200, 250, and 300 Gy) of 60Co γ rays. Regeneration rate and regeneration capacity of the calli were highest after treatment with 20 Gy 60Co γ rays, 27.08 and 91.67% respectively. When the irradiation dose was increased to 100 Gy, 10.42% of the calli developed shoots, but at 150 Gy, both regeneration capacity and regeneration rate declined significantly, and no shoot was observed after 6 weeks of regeneration. Therefore, 100–150 Gy is the most appropriate irradiation span for inducing somaclonal variation. The irradiated calli were selected in vitro for NaCl tolerance. Five NaCl tolerant variant lines, Ze1, Fv1, Te1, Tw1, Fr1, were selected on subculture medium supplemented with 0.35 M NaCl, then transferred to regeneration medium containing 0.25 M NaCl, and grown in a greenhouse. The dark green colour index (DGCI) was used to identify the amount of injury caused by NaCl treatment. This was significantly higher in four of the lines, Ze1, Fv1, Te1, Fr1 (30.88, 31.17, 30.45 and 37.70%, respectively) compared to the control line (CK), which was regenerated from calli subcultured monthly (27.39%), indicating that watering with NaCl caused less injury in these four lines. These lines had lower proline contents than CK under salt stress. The superoxide dismutase (SOD) activity was higher in Ze1 under control condition and its peroxidase (POD) activity increased significantly under salt stress. With Fr1 catalase (CAT) activity was higher under salt stress. The higher activity of these antioxidant enzymes may contribute to the enhanced salt tolerance of the four plant lines.  相似文献   

16.
Proline (Pro) accumulation protects plant cell under abiotic stress. Hydroxyproline (Hyp) as selection agent is a toxic analog of proline and promotes Pro overaccumulation. In this study, Chardonnay calli were firstly irradiated with different dosages of 60Co and then cultured on a Hyp-added medium. Finally, some stable hydroxyproline-resistant (HR) calli were obtained. When calli were cultured on 4 mM Hyp medium for 7 days, intracellular Pro content of the HR calli was five times higher than that detected in the normal calli. The regeneration of HR calli into plantlets was much slower than that of normal ones. When cultured on woody plant medium (WPM) containing 10 mM NaCl for 14 days, HR plantlets still grew well with lower Pro than withered normal plantlets. qRT-PCR results of Pro biosynthesis-related genes in HR plantlets showed that three genes VvP5CS, VvOAT, and VvP5CDH were conducive for Pro accumulation. These results confirmed that HR plantlets acquired salt tolerance ability. We prospect that this procedure to obtain salt-tolerant plants may be valuable to breed programs and improve grapevine genotypes with increased tolerance to salt and other abiotic stresses.  相似文献   

17.
为获得耐1.5% NaCl的药蒲公英(Taraxacum officinale Weber)愈伤组织, 以药蒲公英叶片外植体为材料诱导愈伤组织。以NaCl为选择因子, 从愈伤组织直接筛选。在选择培养基上, 大部分愈伤组织褐化死亡, 个别褐化死亡的愈伤组织周围有少量新的细胞团长出, 将其转接到新鲜的选择培养基上, 每3周继代一次, 经3个月继代筛选获得了耐1.5% NaCl的药蒲公英细胞团。以普通愈伤组织为对照, 发现随着NaCl浓度升高, 耐盐愈伤组织的相对生长率下降但显著高于对照; 且随着盐胁迫处理时间延长持续升高, 而普通愈伤组织对照几乎停止生长, 说明耐盐愈伤组织具有相对稳定的耐盐性。在蛋白水平上, 耐盐愈伤组织与对照愈伤组织差异明显, SDS-PAGE分析显示: 耐盐愈伤组织比对照多出一条34 kD大小的蛋白带, 且30 kD、18 kD左右的蛋白带明显上调。相同处理条件下耐盐愈伤组织脯氨酸的增加幅度高于对照。盐胁迫条件下, 耐盐愈伤组织的超氧化物歧化酶(Super oxidase dimutase, SOD)、过氧化物酶(Peroxidase, POD)和过氧化氢酶(Catalase, CAT)活性明显高于对照,且随着处理时间的延长和盐浓度的增加呈现升高的趋势, 而对照则呈现先升高后下降的趋势。结果说明耐盐愈伤组织一方面通过小分子有机溶质如脯氨酸的方式调节其渗透平衡, 另一方面还可通过提高抗氧化能力降低盐分造成的次级伤害。积累蛋白也可能是耐盐愈伤组织调节渗透平衡的一种方式。通过生理生化分析确定我们获得的耐盐愈伤组织为耐盐变异体。  相似文献   

18.
Somatic embryogenesis was obtained from callus of wild arum (Arum palaestinum). Callus was induced from sterilized corm bud sprouts cultured on basal medium containing 4.4???M 6-benzyladenine and 5.4???M 1-naphthaleneacetic acid. Callus was maintained under dark conditions using basal medium with 4.4 or 8.8???M 6-benzyladenine and 5.4 or 10.8???M 1-naphthaleneacetic acid. The highest callus weight and most desirable callus phenotype were achieved using basal medium containing 8.8???M 6-benzyladenine and 5.4???M 1-naphthaleneacetic acid. Friable calli were cultured in the dark on basal medium containing 4.5???M 2, 4-dichlorophenoxyacetic acid, 0.46???M 6-furfurylaminopurine, 5.4???M 1-naphthaleneacetic acid, and 1.7?mM proline to induce embryogenesis before transfer to regeneration medium. Embryos that developed on regeneration medium were transferred to medium minus plant growth regulators for germination. Ninety percent of the germinating embryos developed into rooted plantlets. Rooted plants were grown in the greenhouse and acclimatized successfully with a 95?% survival rate. This is the first report of successful somatic embryogenesis and plant regeneration in A. palaestinum.  相似文献   

19.
The embryonic calli produced from immature embryos of inbred “Huangzhao-4” of maize, that had been maintained for half a year, were transferred to media supplemented with different NaC1 concentrations (5, 10, 15, 20, 25, 30g/L) for callus selection. NaCl tolerant calli were established through three generations of selections. The growth and frequency of survival calli were affected significantly by NaCl concentration. The proliferetion of NaCl-tolerant calli was relatively good on medium containing of 10g/L NaC1. From these calli, plant lets could be produced on differentiation medium. On medium supplemented with 10g/L of NaC1 the plantlets could normally grow to transplantation. In NaCl-tolerant calli cultured on medium containing 10g/L of NaC1, the contents of free amino acids, free proline, Na+, K+ were 18.0%,87.3%,661.9%,25.5% respectively higher than those in un-selected calli grown on subculture medium, but Ca2+ content decreased significantly. On medium containing 10g/L of NaC1, cells and their organelles in NaCl-tolerant calli had normal morphology and structure, and vigorous metabolism, but in un-selected calli, the majority of cells turned to wards dying. Although tolerant plants regenerated and their filial ones had grown in non-salted soil, their progenies retained the property tolerance, but showed segregation of the degrees of tolerance. In 10g/L NaC1 solution, the seeds of progenies from one plant regenerated could germinate normally, and grow into healthy seedlings. Therefore, the NaCl-tolerant calli and plantlets that we have obtained NaCl-tolerant variants.  相似文献   

20.
钙在无花果细胞盐诱导脯氨酸积累中的作用   总被引:3,自引:0,他引:3  
接种于含NaCl 培养基的无花果愈伤组织细胞生长极显著受抑,Na+ 含量增加,K/Na 比值下降,游离脯氨酸积累。培养基中添加一定量CaCl2 不仅在一定程度上缓解盐分对生长的抑制作用,增加K+/Na + 比,而且明显促进游离脯氨酸积累。如果在添加钙的同时再添加细胞钙调素活性抑制剂盐酸氯丙嗪(CPZ) 或盐酸三氟拉嗪(TFP) ,均使钙促进的脯氨酸积累受到明显抑制,表明盐胁迫诱导的脯氨酸积累可能涉及细胞CaCaM系统。  相似文献   

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