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1.
为提高药蒲公英的耐盐性, 用20~30 d大小的药蒲公英叶片诱导愈伤, 获得的愈伤以NaCl作为选择因子, 用直接筛选的方法, 每3周进行一次继代培养, 经3个月继代筛选获得了耐1.5% NaCl的药蒲公英愈伤组织, 将耐1.5% NaCl的药蒲公英愈伤组织接种在分化培养基上分化出芽, 之后将再生芽转接到生根培养基中进行生根培养, 经4个月得到了12株耐1.5% NaCl的药蒲公英再生植株。与野生型相比, 耐盐植株叶片宽大、叶柄粗短、叶表面覆盖白色细毛, 根粗壮较短, 花茎中部具2 cm左右的苞叶。RAPD(Random amplified polymorphic DNA , 随机扩增的多态性DNA)和SDS-PAGE检测表明, 耐盐植株与对照植株在DNA及蛋白水平上均存在明显差异。1.5% NaCl处理后, 与普通再生植株相比, 耐盐株系的抗氧化酶活性明显提高, 脯氨酸含量上升幅度更为显著, 而丙二醛(MDA)含量降低, 其主要药用成分黄酮的含量显著增加。这些结果说明耐盐植株的抗氧化防御能力明显增强。以上结果表明耐1.5% NaCl的药蒲公英再生植株为耐1.5% NaCl药蒲公英变异体, 这些耐盐变异体有望成为抗盐耐海水蔬菜家族的新成员。同时, 这些耐盐变异体植株比普通植株具有更高的医用商业价值。耐1.5% NaCl的药蒲公英再生变异体遗传稳定性的研究正在进行中。  相似文献   

2.
‘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   

3.
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   

4.
烟草耐盐愈伤组织变异体对盐渍的适应性   总被引:1,自引:0,他引:1  
用组织培养及逐步增加,NaCl浓度的方法,筛选出烟草耐盐愈伤组织变异体。能耐盐(2% NaCl)的愈伤组织在2% NaCl中继代29次,再移入无盐培养基中培养11和20代后不能保持提高的耐盐性,分别退化到只耐1.5%与1.0% NaCl的水平。耐2% NaCl愈伤组织产生的再生植株自交后代,其萌发种子、幼苗及成长植株均未能表现出耐盐性,说明用选择胁迫方法所筛选出的耐盐细胞系,其耐盐性的提高属于生理适应性。  相似文献   

5.
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   

6.
本文以玉米获白×Mo17单交种的幼胚为材料。以10g/1NaCl为起始浓度,利用逐步提高NaCl浓度的方法,筛选出耐20g/1NaCl的细胞变异体,并获得再生植株。同时对影响耐盐变异系筛选、分化的 因素进行了研究。讨论了愈伤组织变异体及其再生植株的稳定性。  相似文献   

7.
美国Colorado州立大学Nabors等人从烟叶栽培种的悬浮培养细胞,筛选出耐0.88%NaCl的细胞系,分化出再生植株,经有性繁殖两代仍显示对NaCl具有抗性。Purdue大学的Hasegawa等及以色列Hebrew大学的Watad等亦分别获得栽培种烟叶耐1.0—1.16%NaCl的细胞系,Lerner去年报道悬浮培养的烟草细胞耐盐能力高达500mmol/L,但均未获得再生植株。上海植生所经六年试验,亦采用逐步增加NaCl浓度方法,获得烟叶“革新一号”耐2.0%NaCl的愈伤组织变异体,并且获得再生植株。变异体  相似文献   

8.
目的:以草麻黄的子叶为材料,建立草麻黄植株再生体系.方法:采用组织培养的方法进行了愈伤组织诱导、愈伤组织分化和不定芽生根研究.结果:MS+2,4-D 2.0mg/1+6-BA 1.0mg/l为诱导子叶形成具有分化能力愈伤组织的理想培养基;MS+2,4-D 1.5mg/l+6-BA 1.5mg/l是愈伤组织的最佳继代培养基;MS+IAA 0.2mg/l+TDZ 2.0mg/l是愈伤组织不定芽分化的最佳培养基,分化率为75%;试管苗生根培养基为MS+2,4-D 1.0mg/l.结论:建立了草麻黄子叶再生系统,为开发和保护麻黄野生资源提供一定的材料来源和技术方法.  相似文献   

9.
冬凌草离体培养体系的建立及主要次生代谢产物的测定   总被引:2,自引:0,他引:2  
以冬凌草叶片为外植体,研究不同浓度激素组合对冬凌草愈伤组织诱导及植株再生的影响,并对不同外植体(茎、叶)诱导愈伤、芽的分化能力及再生植株内主要次生代谢产物的含量进行了比较研究。结果表明:在MS 2.0 mg/L 6-BA 1.0 mg/L NAA培养基上诱导愈伤组织效果较好;在MS 2.0 mg/L 6-BA的培养基上诱导芽的效果较好;叶片和茎段在愈伤诱导培养基上均能产生大量的愈伤组织,但其再分化能力以茎段最好;再生苗生根培养基以0.3 mg/L IBA最好;以叶为外植体诱导的再生植株中冬凌草甲素、迷迭香酸的含量均高于以茎为外植体诱导的再生植株。  相似文献   

10.
药蒲公英再生体系的建立和优化   总被引:2,自引:0,他引:2  
陈华  李平  刘晶  李银心   《生物工程学报》2005,21(2):244-249
通过愈伤组织诱导和直接不定芽再生途径 ,建立了药蒲公英的快速高效再生系统。叶片外植体在含0.2mg LIAA和1mg LTDZ的MS培养基中培养 2周后便产生大量的丛生芽 ,在含有 0.5mg/L 2 ,4D和2mg/L 6BA的MS培养基中培养 30d后 ,形成明显的愈伤组织 ,愈伤组织块在含10mg/L 6BA的MS培养基中成功再生。对 9株再生植株进行RAPD检测表明 ,部分植株在DNA水平上发生了变异。与对照相比 ,再生植株的主要抗氧化成分无明显变化 ,保证了有效成分的稳定。  相似文献   

11.
番茄耐盐体细胞变异体的离体筛选   总被引:24,自引:3,他引:21  
以上海主要栽培番茄品种“鲜丰”的下胚轴作为外植体诱导愈伤组织,用NaCl进行直接高盐胁迫和逐渐加大盐浓度胁迫筛选。研究结果表明,逐渐NaCl浓度胁迫筛选获得的耐盐性大多属生理适应性,直接高盐胁迫筛选才有可能获得真正的耐盐突变体。直接高盐胁迫筛选再生出的12株耐盐植株,在150mmol/L NaCl的盐胁迫下,幼苗的成活率可达66%,而未经胁迫筛选过的原始株成活率则为零。其中,2株耐盐突变株能正常开花、结果。其在盐胁迫培养基中芽体的生根率、鲜重及干重均显著高于原始株。  相似文献   

12.
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   

13.
In vitro salt tolerant rice plants established by step up treatment with 0.5, 1.0, 1.5 and 2.0 % NaCl at 3-week intervals were examined to determine whether they could grow in potted paddy soil containing 0, 0.55 or 0.75 % NaCl till harvesting. All the control plants were necrotic by the 4th week in the culture. At the 10th week of culture, 100 % of the salt-tolerant plants subjected to 0 or 0.55 % NaCl survived, and 78 % of the plants at 0.75 % NaCl. The Na+ and Cl contents in the leaves of salt-tolerant plants grown at 0.55 and 0.75 % NaCl were about 4 times of those without NaCl. The ion contents in non-tolerant plants and seedling plants were 10 to 12 times of those in 0 % NaCl treatment. One of the hypotheses to explain the present data is that the in vitro step up salt selection induces the capability to maintain no lethal concentration of NaCl in the leaves.  相似文献   

14.
转甜菜碱醛脱氢酶基因豆瓣菜的耐盐性   总被引:11,自引:0,他引:11  
  相似文献   

15.
Stable callus cultures tolerant to NaCl (68 mM) were developed from salt-sensitive sugarcane cultivar CP65-357 by in vitro selection process. The accumulation of both inorganic (Na+, Cl and K+) and organic (proline and soluble sugars) solutes was determined in selected and non-selected calli after a NaCl shock in order to evaluate their implication in in vitro salt tolerance of the selected lines. Both salt-tolerant and non-selected calli showed similar relative fresh weight growth in the absence of NaCl. No growth reduction was observed in salt-tolerant calli while a significant reduction about 32% was observed in nonselected ones when both were cultivated on 68 mM NaCl. Accumulation of Na+ was similar in both salt-tolerant and non-selected calli in the presence of NaCl. Accumulation of Cl was lower in NaCl-tolerant than in non-selected calli while proline and soluble sugars were more accumulated in salt-tolerant than in non-selected calli when both were exposed to salt. K+ level decreased more severely in non-selected calli than in NaCl-tolerant ones after NaCl shock. The results indicated that K+ and Cl may play a key role in in vitro salt-tolerance in sugarcance cell lines obtained by in vitro selection and that organic solutes could contribute mainly to counteract the negative water potential of the outside medium.  相似文献   

16.
以日本引进的耐盐品种‘帝王新土佐’南瓜为砧木,以‘津研4号’黄瓜品种为接穗,研究了NaCl胁迫对黄瓜嫁接植株和自根植株的膜脂过氧化、渗透调节物质含量及光合特性的影响。结果表明:在NaCl胁迫下,黄瓜嫁接植株叶片超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)和抗坏血酸过氧化物酶(APX)活性均显著高于自根植株,O·2-产生速率及丙二醛(MDA)含量显著低于自根植株,嫁接植株膜脂过氧化轻于自根植株;嫁接植株叶片游离脯氨酸、可溶性糖、可溶性蛋白质等渗透物质含量均显著高于自根植株;嫁接植株的净光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、叶绿素含量均显著高于自根植株;虽然NaCl胁迫抑制光合作用,但嫁接植株仍表现出优势。以上结果证明,嫁接植株耐盐性优于自根植株。  相似文献   

17.
The effects of salicylic acid (SA) and salinity on the activity of apoplastic antioxidant enzymes were studied in the leaves of two wheat (Triticum aestivam L.) cultivars: salt-tolerant (Gerek-79) and salt-sensitive (Bezostaya). The leaves of 10-d-old seedlings grown at nutrient solution with 0 (control), 250 or 500 mM NaCl were sprayed with 0.01 or 0.1 mM SA. Then, the activities of catalase (CAT), peroxidase (POX) and superoxide dismutase (SOD) were determined in the fresh leaves obtained from 15-d-old seedlings. The NaCl applications increased CAT and SOD activities in both cultivars, compared to those of untreated control plants. In addition, the NaCl increased POX activity in the salt-tolerant while decreased in the salt-sensitive cultivar. In control plants of the both cultivars, 0.1 mM SA increased CAT activity, while 0.01 mM SA slightly decreased it. SA treatments also stimulated SOD and POX activity in the salt-tolerant cultivar but significantly decreased POX activity and had no effect on SOD activity in the saltsensitive cultivar. Under salinity, the SA treatments significantly inhibited CAT activity, whereas increased POX activity. The increases in POX activity caused by SA were more pronounced in the salt-tolerant than in the salt-sensitive cultivar. SOD activity was increased by 0.01 mM SA in the salt-tolerant while increased by 0.1 mM SA treatment in the salt-sensitive cultivar.  相似文献   

18.
pib基因启动子及其诱导启动性初探   总被引:6,自引:0,他引:6  
李婵娟  杨世湖  武亮  万建民 《遗传》2006,28(6):689-694
将pib基因上游5.7 kb区段取代pCAMBIA1301中gus基因上游的35S启动子构建了pib拟启动区-GUS+ 35S-hpt 基因表达载体pNAR604。经农杆菌介导转化水稻成熟胚愈伤,获得了转基因抗潮霉素愈伤和36株转基因水稻植株。 转基因抗性愈伤和转基因植株根的组织化学GUS活性检测表明,光照培养下的抗性愈伤和转基因植株根不能使X-gluc显色,而暗处理24 h后的抗性愈伤和定植后转基因植株的根能使X-gluc显色。转基因植株GUS荧光定量分析结果表明,GUS表达具有器官特异性,黑暗处理前根的GUS活性最高、茎次之,分别是是叶片的7倍和3倍,叶片中仅有痕量本底。24 h黑暗处理后根、茎、叶中GUS活性都有增加,且叶片中的增加比例最大,其活性仅次于根。5 mmol/L水杨酸和0.3 mol/L NaCl叶面喷施转基因植株24 h后叶片中GUS活性分别为处理前的2.7和3.6倍。初步确定pib拟启动区是一个诱导型启动子。黑暗、水杨酸和NaCl能诱导该启动子启动活性。  相似文献   

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