首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 156 毫秒
1.
胆碱单加氧酶(choline monooxygenase, CMO)是合成甜菜碱的关键酶,甜菜碱在植物抵抗渗透胁迫中起着重要的作用。本研究室前期克隆了盐生植物辽宁碱蓬CMO(Suaeda liaotungensis CMO)基因及启动子。本研究对SlCMO基因在盐胁迫下的表达及盐诱导启动子进行分析。qRT-PCR分析SlCMO基因在辽宁碱蓬不同器官及盐胁迫下的表达,结果表明,SlCMO基因在根、茎、叶中均有表达,其中茎、叶中的表达量较高,SlCMO基因在根、茎、叶中的表达均受盐胁迫诱导。5′端缺失分析SlCMO启动子的盐诱导区段,结果表明,pC5(-267~+128 bp)是SlCMO启动子的盐诱导功能区段,推测pC5调控SlCMO 基因的盐诱导表达。本研究为SlCMO 基因表达调控研究奠定基础,也为植物抗盐基因工程提供可用的启动子。  相似文献   

2.
CMO与BADH双基因表达载体构建及在烟草中的表达   总被引:5,自引:0,他引:5  
本研究的目的是将甜菜碱合成关键酶CMO与BADH基因构建到同一表达载体中,利用转基因方法将该表达载体导入植物体内,完善植物体内的甜菜碱合成途径,提高植物的抗旱性和耐盐性。以pC1303质粒为基础,构建了均由35S启动子驱动的CMO基因和BADH基因的植物双基因表达载体pC35SC35SB1303。利用冻融法将其导入农杆菌LBA4404中,通过农杆菌介导法分别将CMO基因、BADH基因以及该双基因表达载体导入烟草中,PCR检测和Northern杂交分析表明,外源基因已整合到受体植物基因组中并正常表达。对转基因植株及对照植株甜菜碱含量的检测结果表明,转双基因植株的甜菜碱含量明显高于转BADH基因植株、转CMO基因植株及对照植株。  相似文献   

3.
山菠菜胆碱单氧化物酶基因(CMO)的克隆与分析   总被引:43,自引:0,他引:43  
甜菜碱是一类广泛存在于生物体内的渗透保护剂。高等植物中,甜菜碱的生物合成经由胆碱→甜菜碱醛→甜菜碱两步反应完成,其中第一步反应,也是甜菜碱生物合成的限速反应,由胆碱单氧化物酶(CMO)催化。本研究以耐盐植物山菠菜(Atriplex hortensis)为材料构建了盐胁迫下的cDNA文库,用菠菜CMO cDNA为探针从中筛选获得一个长1.77kb的cDNA克隆,测序结果表明该克隆包含一个完整的开放读码框,编码一个由438个氨基酸构成的多肽,与菠菜和甜菜CMO的氨基酸序列同源性分别为81%和72%。同菠菜和甜菜中的CMO序列相比,山菠菜CMO基因(AhCMO)也具有保守的RieskeType[2Fe2S]簇结合区和保守的多铁原子核结合域。对盐处理条件下山菠菜CMO基因转录水平的研究表明CMO基因在盐胁迫情况下表达量增加约3倍。将CMO与35S启动子连接后转化烟草(Nictiana tabacumvar.Xanthi),获得了具有一定耐盐性状的转基因植株,在1.2%NaCl的盐浓度下生长良好。  相似文献   

4.
盐分对碱蓬幼苗离子含量,甜菜碱水平和BADH活性的效应   总被引:9,自引:0,他引:9  
研究了盐生植物碱蓬(Suaeda salsa)生长在不同浓度的NaCl和KCl溶液中体内Na+ 、K+ 含量、甜菜碱水平和甜菜碱醛脱氢酶(BADH)活性的动态变化。NaCl处理96 小时后,碱蓬地上部K+ 含量低于对照,而Na+ 明显高于对照,并分别随外界盐度增加而升、降;KCl处理的植株,K+ 、Na+ 含量变化与NaCl处理的相反;甜菜碱水平和BADH 活性随外界NaCl浓度增加而升高,甜菜碱水平随处理时间延长而增大,KCl对甜菜碱水平和BADH 活性的效应类似NaCl。证明NaCl和KCl均能促进盐生植物碱蓬体内甜菜碱的积累,初步证明BADH 与甜菜碱的积累有关  相似文献   

5.
6.
以巴西香蕉(MusaAAA Giant Cavendish cv.Brazil)幼苗为试验材料,用不同浓度外源甜菜碱(BT)预处理香蕉幼苗后,置于人工气候箱中模拟低温(7℃)胁迫,分别测定香蕉叶片和根系内源甜菜碱的含量和甜菜碱合成关键酶甜菜碱醛脱氢酶(BADH)活性,以探讨外源甜菜碱对香蕉叶片和根系内源甜菜碱合成的影响.结果显示:7℃低温胁迫16 h后,10 mg/L外源甜菜碱即可极显著提高香蕉幼苗叶片BADH活性,叶片内源BT含量也同步极显著增加,低温胁迫24h后根系内源甜菜碱的含量虽显著高于常温对照,其BADH活性却无显著提升.同时,香蕉幼苗叶片内源BT含量的积累与叶片BADH活性的提高具有显著正相关关系,与根系内源BT含量的增加呈极显著正相关关系,与外源BT浓度无显著相关性.研究表明,外源甜菜碱可促进低温胁迫下香蕉内源甜菜碱的合成和积累,叶片和根系均具有合成内源BT的能力.  相似文献   

7.
利用半嵌套巢式PCR结合RACE技术从菊科植物甘菊[Chrysanthemum lavandulifolium(Fisch.ex Trautv.)Makino]中分离得到了一个长度为1 450 bp的片段.序列分析结果表明,其开放阅读框全长1 140bp,编码379个氨基酸残基;在GenBank 比对并进行系统进化分析可知,该片段为CMO同源基因,命名为ClCMO.利用不同胁迫处理进行分析发现,在非胁迫条件下ClCMO基因在甘萄茎、叶、花叶中均有表达信号,在根中没有表达;其可以响应干旱、高盐胁迫和脱落酸(ABA)的诱导,不响应冷热胁迫,并且其表达在水杨酸(SA)诱导下受抑制.这些结果表明,ClCMO基因是提高植物耐干旱、高盐能力的有效基因资源.  相似文献   

8.
为探讨盐地碱蓬(Suaeda salsa)开花与盐的关系,研究了1(对照)、200和400 mmol·L-1 NaCl处理对盐地碱蓬不同分枝和单株开花数目、叶片和茎及花器官中的Na+、K+含量及Na+/K+比的影响。结果表明:与对照相比,200 mmol·L-1 NaCl处理下盐地碱蓬分枝及单株开花数目增加最显著,单株开花数目增加了69.90%,花器官中的Na+含量、Na+/K+比分别增加了1.41倍和1.77倍,而一级叶片的Na+含量、Na+/K+比分别增加了3.96倍和4.96倍,茎中Na+含量、Na+/K+比分别增加了7.00倍和12.39倍。400 mmol·L-1 NaCl处理下,单株开花数目增加了19.00%,花器官中的Na+含量、Na+/K+比分别增加了2.09倍和3.21倍,而一级叶片的Na+含量、Na+/K+比分别增加了4.28倍和6.50倍,茎中Na+含量、Na+/K+比分别增加了7.65和15.40倍。这些结果表明,NaCl处理下真盐生植物盐地碱蓬可能通过把Na+区域化到茎叶而动员其中的K+到花器官中维持花器官中合适的Na+/K+比而促进开花。  相似文献   

9.
无钾条件下盐胁迫处理菠菜幼苗所诱导的甜菜碱积累量及甜菜碱醛脱氢酶(BADH)活性均比含钾条件下盐处理时低。无K 培养离体叶片可引起组织甜菜碱含量下降;用无K 培养或K 通道抑制剂TEA处理菠菜幼苗,BADH活性随处理时间延长出现下降。表明K 可能参与对甜菜碱合成积累及BADH酶活性的调节。  相似文献   

10.
克隆了盐生植物中亚滨藜 (Atriplexcentralasiat icaIljin)甜菜碱醛脱氢酶 (AcBADH)cDNA ,推测的氨基酸序列与其它物种的BADH有较高的同源性。Northern杂交结果表明 ,ABA 1 0 0 μmol L和NaCl40 0mmol L处理 48h后 ,BADH的表达增加 1 0倍左右。通过筛选中亚滨藜基因组文库 ,得到了AcBADH的基因组序列。它全长 7.7kb ,包含 1 5个外显子和 1 .2kb启动子区。除了TATA box和CAAT box以外 ,在AcBADH启动子区还发现了一些与胁迫有关的其它元件 ,如GC motif、EIRE、MRE、WUN motif、ABRE和HSE。  相似文献   

11.
Meng YL  Wang YM  Zhang B  Nii N 《Cell research》2001,11(3):187-193
INTRODUCTIONAmaranth is a C4 dicotyledonous mesophytecrop plant. A. tricofor is a major variety for veg-etable and ornamental crops, and is widely culti-vated in the wor1d. Osmoprotectant glycine betaine(GB) was detected in Amaranthaceae, A. HyPochon-driacus L[2] and A. Caudatus L[3, 4]. GB iswidespread and an effective osmoprotectant in manyplants[3]. We studied the photosynthetic adaptationmechanism of A. trico1or under salt stress due to ac-cumulation of GB[5].GB is synthesized …  相似文献   

12.
13.
In plants, betaine is synthesized upon abiotic stress via choline oxidation, in which choline monooxygenase (CMO) is a key enzyme. Although it had been thought that betaine synthesis is well regulated to protect abiotic stress, it is shown here that an exogenous supply of precursors such as choline, serine, and glycine in the betaine-accumulating plant Amaranthus tricolor further enhances the accumulation of betaine under salt stress, but not under normal conditions. Addition of isonicotinic acid hydrazide, an inhibitor of glycine decarboxylase, inhibited the salinity-induced accumulation of betaine. Salt-induced accumulation of A. tricolor CMO (AmCMO) and betaine was much slower in roots than in leaves, and a transient accumulation of proline was observed in the roots. Antisense expression of AmCMO mRNA suppressed the salt-induced accumulation of AmCMO and betaine, but increased the level of choline approximately 2- 3-fold. This indicates that betaine synthesis is highly regulated by AmCMO expression. The genomic DNA, including the upstream region (1.6 kbp), of AmCMO was isolated. Deletion analysis of the AmCMO promoter region revealed that the 410 bp fragment upstream of the translation start codon contains the sequence responsive to salt stress. These data reveal that the promoter sequence of CMO, in addition to precursor supply, is important for the accumulation of betaine in the betaine-accumulating plant A. tricolor.  相似文献   

14.
15.
Previously, we showed that transformation with the codA gene for choline oxidase allows plants to synthesize glycine betaine (GB) and enhances their ability to tolerate various kinds of stress during germination and vegetative growth. In this study, we examined the tolerance of transformed plants to salt stress at the reproductive stage, which is the stage at which plants are most sensitive to environmental stress. Salt-shock treatment of wild-type plants for 3 days resulted in the abortion of flower buds and decreased the number of seeds per silique. These deleterious effects were clearly visible 6 days after the termination of salt-shock treatment. Microscopic examination of floral structures revealed that salt stress inhibited the development of anthers, pistils, and petals. In particular, the production of pollen grains and ovules was dramatically inhibited. These effects of salt stress were significantly reduced by transformation with the codA gene, and our observations suggested that the enhanced tolerance of the transgenic plants was a result of the accumulation of GB in the reproductive organs. Indeed, levels of GB in flowers, siliques, and inflorescence apices were about five times higher than in leaves.  相似文献   

16.
17.
Suaeda japonica Makino belonging to the family Chenopodiaceae, is a halophyte and grows at the shore of Ariake sea in Japan. This plant presumably possesses high salt resistant nature, thus, we examined the mechanisms of seed germination under salt stress. The seeds maintained 80% germination rates on the medium containing 0.7 M NaCl. Germination rates varied depending on salt type; the germination rates under NaCl or KCI exhibited relatively lower values than ones under sodium gluconate or potassium gluconate. This different responses for salts seemed to be as a result of the presence of Cl ions. Although very high levels of betaine (compatible solute), were kept in the seedlings grown under no salt stress, the contents gradually increased as concentration of NaCl increased. Betaine is a factor present in plants that works to alleviate the effects of excessive soil salts. It is synthesized in leaves from betaine aldehyde, and this process is catabolized by betaine aldehyde dehydrogenase (BADH). When the seedlings were cultivated on the medium without NaCl, relatively high level of BADH activity was found. The activity increased 5-fold in the seedlings grown under 0.5 M NaCl stress. Increases in betaine content and BADH activity were found during seed germination. InS. japonica, the salt stress promoted BADH activity, subsequently endogenous betaine contents were increased, and increased betaine seemed to secure seed germination under salt stress.  相似文献   

18.
The responses of five transgenic tomato (Lycopersicon esculentum Mill) lines containing the betaine aldehyde dehydrogenase (BADH) gene to salt stress were evaluated. Proline, betaine (N, N, N-trimethylglycine, hereafter betalne), chlorophyll and ion contents, BADH activity, electrolyte leakage (EL), and some growth parameters of the plants under 1.0% and 1.5% NaCl treatments were examined. The transgenic tomatoes had enhanced BADH activity and betaine content, compared to the wild type under stress conditions. Salt stress reduced chlorophyll contents to s higher extent in the wild type than in the transgenic plants. The wild type exhibited significantly higher proline content than the transgenic plants at 0.9% and 1.3% NaCh Cell membrane of the wild type was severely damaged as determined by higher EL under salinity stress. K^+ and Ca^2+ contents of all tested lines decreased under salt stress, but the transgenic plants showed a significantly higher accumulation of K^+ and Ca^2+ than the wild type. In contrast, the wild type had significantly higher CI- and Na^2+ contents than the transgenic plants under salt stress. Although yield reduction among various lines varied, the wild type had the highest yield reduction. Fruit quality of the transgenic plants was better in comparison with the wild type as shown by a low ratio of blossom end rot fruits. The results show that the transgenic plants have improved salt tolerance over the wild type.  相似文献   

19.
BACKGROUND AND AIMS: Glycinebetaine (GB), a quaternary ammonium compound, is a very effective compatible solute. In higher plants, GB is synthesized from choline (Cho) via betaine aldehyde (BA). The first and second steps in the biosynthesis of GB are catalysed by choline monooxygenase (CMO) and by betaine aldehyde dehydrogenase (BADH), respectively. Rice (Oryza sativa), which has two genes for BADH, does not accumulate GB because it lacks a functional gene for CMO. Rice plants accumulate GB in the presence of exogenously applied BA, which leads to the development of a significant tolerance to salt, cold and heat stress. The goal in this study was to evaluate and to discuss the effects of endogenously accumulated GB in rice. METHODS: Transgenic rice plants that overexpressed a gene for CMO from spinach (Spinacia oleracea) were produced by Agrobacterium-mediated transformation. After Southern and western blotting analysis, GB in rice leaves was quantified by (1)H-NMR spectroscopy and the tolerance of GB-accumulating plants to abiotic stress was investigated. KEY RESULTS: Transgenic plants that had a single copy of the transgene and expressed spinach CMO accumulated GB at the level of 0.29-0.43 micromol g(-1) d. wt and had enhanced tolerance to salt stress and temperature stress in the seedling stage. CONCLUSIONS: In the CMO-expressing rice plants, the localization of spinach CMO and of endogenous BADHs might be different and/or the catalytic activity of spinach CMO in rice plants might be lower than it is in spinach. These possibilities might explain the low levels of GB in the transgenic rice plants. It was concluded that CMO-expressing rice plants were not effective for accumulation of GB and improvement of productivity.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号