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1.
以水曲柳基因组DNA为模板,用Site Finding-PCR法扩增得到节律基因LHY(late elongated hypocotyl)启动子序列,长度为1 360 bp。PLACE启动子预测工具分析表明,序列中含有转录必备的TATA box、CAAT box以及一些非生物胁迫和激素响应元件等。构建植物GFP瞬时表达载体p PXGFP-P-LHY,农杆菌介导转化烟草叶片和白桦悬浮细胞,GFP检测结果表明,LHY启动子能够启动GFP基因在烟草和白桦细胞中表达,且对非生物胁迫(低温、高温、盐)产生响应;构建植物GUS报告基因整合表达载体p PCXGUS-P-LHY,农杆菌介导法瞬时转化烟草,GUS染色结果表明,LHY启动子的活性具有不同程度的时空特性。  相似文献   

2.
应用RNAi技术培育抗2种病毒病的转基因烟草   总被引:2,自引:0,他引:2  
分别提取烟草普通花叶病(TMV)和烟草黄瓜花叶病(CMV)的病毒RNA。经反转录和外壳蛋白阅读框PCR扩增,获得TMV和CMV外壳蛋白基因cDNA, 分别进行两种病毒已知株系cDNA序列比对获得各自的保守序列,设计干涉序列,将干涉片段扩增产物连接到pMD18-T的相邻酶切位点,制备融合序列,并将其正向和反向序列插入pUCCRNAi载体,再转化到pCAMBIA2300-35S-OCS表达载体中。利用农杆菌LBA4404侵染烟草K326,获得3份含有TMV和CMV外壳蛋白基因干涉序列的转化材料,经分子鉴定证实干涉序列已导入烟草,并采用荧光定量PCR技术对其mRNA表达差异进行分析。抗病性调查表明转化烟株对TMV和CMV抗性都显著增强。  相似文献   

3.
FTL(F-box Triple LRR protein)是F-box蛋白家族的成员,具有F-box保守结构域,在植物抵御逆境胁迫过程中起重要作用。本研究参考低温胁迫下紫花苜蓿转录组数据设计引物,通过RT-PCR克隆获得紫花苜蓿MsFTL基因,该基因的全长1422 bp,编码473个氨基酸。该蛋白含有1个F-box结构域及3个LRR重复。系统进化分析表明,MsFTL与蒺藜苜蓿XP_003626345.1 F-box/FBD/LRR-repeat protein亲缘关系最近。两者蛋白序列比对发现共有11个差异位点。在低温、盐、干旱以及外源ABA处理下,MsFTL基因受到诱导,表达量上调。构建植物过表达载体pCBM-MsFTL,通过农杆菌介导法转化烟草。对经过抗性筛选、PCR和Real-time PCR验证的转基因植株进行低温抗性鉴定。在-4℃低温胁迫下,野生型烟草叶片出现了明显的萎蔫失水现象,而转基因烟草萎蔫程度相对较轻。生理检测结果表明,4℃处理24 h之后,转基因烟草的可溶性蛋白含量、可溶性糖含量、SOD活性,CAT活性高于野生型,MDA含量低于野生型。本研究表明,MsFTL基因在提高植物对低温胁迫的抗性方面具有重要的作用。  相似文献   

4.
通过在农杆菌介导下,利用西伯利亚蓼非特异性脂质转移蛋白基因(植物表达载体:pROKII-PsnsLTP)对烟草进行遗传转化,经卡那霉素抗性分化筛选及PCR鉴定,获得6个转基因烟草株系。接种烟草炭疽病病菌和猝倒病病菌后观察转基因植株和野生型的表型差异,在NaCl、CdCl2、7.5% PEG6000的胁迫下进行表型观察和生理指标的测定。结果显示:与野生型烟草相比,T1代转基因植株已具有较强的耐烟草炭疽病和猝倒病的能力;其超氧化物歧化酶(SOD)和过氧化物酶(POD)活性显著增强,丙二醛(MAD)含量显著降低,且幼苗具有较好的生长性状。由此证明,西伯利亚蓼非特异性脂质转移蛋白PsnsLTP增加了转基因烟草抵御生物胁迫和非生物胁迫的能力,这些工作为深入研究PsnsLTP基因的抗逆机制提供了参考。  相似文献   

5.
昆虫特异性神经毒素基因tox34的合成及转基因烟草的获得   总被引:1,自引:0,他引:1  
对来自虱状蒲螨(Pyemotestritici)的昆虫特异性神经毒素基因tox34编码成熟蛋白部分的762bp片段,依据植物的偏爱密码子进行了序列改造。将改造后的基因插入细菌表达载体pBV221,经热诱导处理后细菌总蛋白在SDS-PAGE上特异条带的表观分子量为32~33kD。将tox34基因插入植物高效表达载体后以根癌土壤杆菌(Agrobacteriumtumefaciens(SmithetTownsend)Conn)介导的方法导入烟草(NicotianatabacumL.cv.SR1),并获得了转基因烟草植株。经PCRSouthem杂交结果证实,完整的毒素基因已整合入烟草基因组。转基因幼苗根部的组织化学检测GUS显示阳性。再生植株叶片的棉铃虫(HeliothisarmigevaHubner)饲喂实验显示对低龄幼虫有很好的毒杀作用。  相似文献   

6.
麻疯树逆境蛋白(curcin 2)基因在烟草中的表达   总被引:1,自引:0,他引:1  
麻疯树(Jatropha curcas)幼苗在干旱、高低温胁迫和真菌浸染下,其叶片中诱导产生了一种新的毒蛋白curcin 2。这意味着curcin 2在其它植物中的异源表达可能会增强植物对外界胁迫的抵抗。curcin 2 cDNA的两个片断:cur2p片断(编码前成熟蛋白)和cur2m片断(编码成熟蛋白),通过农杆菌的介导分别转化烟草并获得转基因植株。但是,只有在插入了cur2p片断的烟草中检测到了curcin 2蛋白的表达。同时,curcin 2在烟草中的表达增强了植株对烟草花叶病毒(TMV)的抗性。  相似文献   

7.
通过根癌农杆菌(Agrobactrium tumefaciens)介导转化法,将含有激发子基因peaT1的植物表达载体pCAM-BIA2300-G4AS-peaT1转化三生烟,获得了转基因烟草植株。用PCR检测确认了阳性转化株,用Southern杂交、RT-PCR和Western杂交进一步证实了peaT1基因的整合、转录和表达。对T1代转基因阳性株进行TMV接种试验,结果显示,与非转基因对照相比,表达peaT1的烟草叶片枯斑数量减少,表明蛋白激发子基因peaT1的表达提高了转基因烟草对TMV的抗性。  相似文献   

8.
Li N  DU XZ  Pan XM  Wang JS  Song CF 《遗传》2011,33(5):520-526
TA3-13是克隆于小麦冷胁迫蛋白基因的截短片段。原核表达的TA3-13蛋白能够诱导烟草产生显著的抗烟草花叶病毒(TMV)的作用。文章将TA3-13基因片段克隆到植物表达载体pBI121上,构建成转基因重组体pB-3-13,通过冻融法转化农杆菌EHA105,构建成转基因侵染菌株。采用叶盘法将pB-3-13转化三生烟草,经卡那霉素抗性筛选,获得48株T0代再生植株。通过PCR检测,鉴定出33株转基因单株,收获了20株种子作为T1代株系。PCR-Southern杂交结果显示,PCR阳性条带与TA3-13探针有特异性杂交,说明外源基因被转化到烟草的基因组中。选取两个T1代株系的烟草植株用于各项测定。GUS组织化学活性鉴定和RT-PCR检测结果显示,外源基因可以成功地表达。接种TMV病毒后,转基因烟草抗TMV的能力较转空载体烟草提高3~5倍。转基因烟草具有抗TMV侵入和抗病毒病害发展的作用,同时转基因烟草可以抗细菌软腐病菌的扩展。  相似文献   

9.
用差异显示技术研究NaHCO3胁迫下星星草(Puccinellia tenuiflora)基因的表达。经Reverse Northern检测, 获得了7个差异表达的基因片段。其中, 6个为胁迫后诱导表达, 1个为胁迫后抑制表达。序列同源性分析表明, 胁迫诱导表达的6个基因片段中, 1个与钙依赖性蛋白激酶(CDPKs)基因同源性较高,其余5个可能为新序列, 胁迫后抑制表达的基因片段与假定的adaptor蛋白基因同源性较高。本研究为进一步研究星星草的抗盐机理奠定了基础。  相似文献   

10.
差异显示技术研究NaHCO_3胁迫下星星草基因表达   总被引:3,自引:0,他引:3  
用差异显示技术研究NaHCO3胁迫下星星草(Puccinelliatenuiflora)基因的表达。经ReverseNorth-ern检测,获得了7个差异表达的基因片段。其中,6个为胁迫后诱导表达,1个为胁迫后抑制表达。序列同源性分析表明,胁迫诱导表达的6个基因片段中,1个与钙依赖性蛋白激酶(CDPKs)基因同源性较高,其余5个可能为新序列,胁迫后抑制表达的基因片段与假定的adaptor蛋白基因同源性较高。本研究为进一步研究星星草的抗盐机理奠定了基础。  相似文献   

11.
Two New Group 3 LEA Genes of Wheat and Their Functional Analysis in Yeast   总被引:4,自引:0,他引:4  
The group 3 late embryogenesis abundant (LEA) proteins are thought to protect cells from stresses associated with dehydration during periods of water deficit. To investigate the functions of different members of the group 3 LEA genes, we isolated and characterized two new group 3 LEA genes, namely TaLEA2 and TaLEA3, from wheat (Triticum aestivum L.) and introduced TaLEA2 and TaLEA3 into Saccharmyces cerevisiae to examine the effect of these genes on yeast cell tolerance to osmotic, salt, and cold stresses. The TaLEA2 gene encoded a protein of 211 amino acids and possessed five repeats of 11-mer amino acid motifs. The TaLEA3 gene encoded a polypeptide of 211 amino acids with nine repeated units. Overexpression of TaLEA2 and TaLEA3 improved stress tolerance in transgenic yeast cells when cultured in medium containing sorbitol, salt and-20℃ freezing treatments respectively. However, the yeast transformants with TaLEA2 seemed to be more tolerant to hyperosmotic and freezing stress than transformants with TaLEA3. This implies that a close relationship exists between function and the number of repeats of the 11- mer amino acid motif in the group 3 LEA protein.  相似文献   

12.
抗旱性不同的小麦幼苗对水分和NaCl胁迫的反应   总被引:20,自引:8,他引:12  
分别测定抗旱小麦的8139(Triticum aestivum L.cv.8139)和干旱敏感品种甘麦8号(T.aestivum L.cv.Ganmai No.8)在20%PEG6000和1.2%NaCl胁迫下的生长、光合作用、蒸腾作用及抗氧化保护系统的变化。结果表明,抗旱小麦8139对PEG6000有较强的抗性,但对NaCl胁迫的抗性较差。NaCl胁迫下,两种小麦根的生长均受到严重抑制,而在PE  相似文献   

13.
Salinity and drought tolerance of mannitol-accumulating transgenic tobacco   总被引:8,自引:1,他引:7  
Tobacco plants (Nicotiana tabacum L.) were transformed with a mannitol-1-phosphate dehydrogenase gene resulting in mannitol accumulation. Experiments were conducted to determine whether mannitol provides salt and/or drought stress protection through osmotic adjustment. Non-stressed transgenic plants were 20–25% smaller than non-stressed, non-transformed (wild-type) plants in both salinity and drought experiments. However, salt stress reduced dry weight in wild-type plants by 44%, but did not reduce the dry weight of transgenic plants. Transgenic plants adjusted osmotically by 0.57 MPa, whereas wild-type plants did not adjust osmotically in response to salt stress. Calculations of solute contribution to osmotic adjustment showed that mannitol contributed only 0-003-0-004 MPa to the 0.2 MPa difference in full turgor osmotic potential (πo) between salt-stressed transgenic and wild-type plants. Assuming a cytoplasmic location for mannitol and that the cytoplasm constituted 5% of the total water volume, mannitol accounted for only 30–40% of the change in πo of the cytoplasm. Inositol, a naturally occurring polyol in tobacco, accumulated in response to salt stress in both transgenic and wild-type plants, and was 3-fold more abundant than mannitol in transgenic plants. Drought stress reduced the leaf relative water content, leaf expansion, and dry weight of transgenic and wild-type plants. However, πo was not significantly reduced by drought stress in transgenic or wild-type plants, despite an increase in non-structural carbohydrates and mannitol in droughted plants. We conclude that (1) mannitol was a relatively minor osmolyte in transgenic tobacco, but may have indirectly enhanced osmotic adjustment and salt tolerance; (2) inositol cannot substitute for mannitol in this role; (3) slower growth of the transgenic plants, and not the presence of mannitol per se, may have been the cause of greater salt tolerance, and (4) mannitol accumulation was enhanced by drought stress but did not affect πo or drought tolerance.  相似文献   

14.
This study investigated the mechanisms of salt resistance of four maize (Zea mays L.) hybrids [cultivar (cv.) Pioneer 3906 and newly developed hybrids SR03, SR12 and SR13] during the first phase of salt stress. Plants were grown in aerated nutrient solutions at 1 mM Na+ (control) and 100 mM Na+ (salt stress). Stress was imposed in 25 mM steps and plants were harvested after 2 days at 100 mM Na+. At 100 mM Na+ the area of the fourth leaf, which developed under salt stress, did not change significantly in SR03 and SR12 whereas significant reductions were observed in cv. Pioneer 3906 and SR13. Concentrations of assimilates (i.e. glucose, fructose and sucrose) in the shoot sap were significantly greater under salt stress in SR03 and SR12. However, the greater assimilate supply was not responsible for their salt resistance as there were no significant reductions in assimilate concentrations even in the other two genotypes. Shoot turgor and growth were maintained in SR03 and SR12 at 100 mM Na+ through significant increases in osmolality of the shoot sap. Concentrations of free ABA and ABA-glucose esters (ABA-GE) in the growing region of the fourth leaf increased significantly under salt stress in all genotypes. Leaf area at 100 mM Na(+), expressed as a percentage of that at 1 mM, showed significant positive relationships with free ABA (R(2) = 0.62) and the sum of free ABA and ABA-GE (R(2) = 0.65). Results of this study indicate clearly that a combination of partial osmotic adjustment, a possible reduction of the sensitivity of leaf growth under salt stress to increased ABA concentrations and a growth-promoting function regulated by ABA is responsible for salt resistance in the first phase of salt stress. Genotypic variation in these mechanisms can be utilized to breed salt-resistant genotypes in maize.  相似文献   

15.
将克隆于羽衣甘蓝的胁迫应答基因BoRS1连入中间载体p35S-2300::gus::noster相应位点,成功地构建了含BoRS1基因的植物双元表达载体p35S-2300::BoRS1::noster,并通过农杆菌介导法对烟草进行了遗传转化。PCR检测结果表明目的基因BoRS1已成功地导入并整合到烟草基因组中。RT-PCR分析显示,在不同的转基因烟草植株中BoRS1表达量存在差异。转BoRS1烟草的耐干性和甘露醇胁迫研究表明,BoRS1基因的表达对提高植物抗干旱胁迫能力有一定的作用。  相似文献   

16.

The embryos of maize (Zea mays L.) inbred lines GS02, GS07, GS08, GS11 and GS15 were used as receptor materials to optimize the receptor system from the aspects of genotype, medium components and stress (PEG6000, mannitol, salt and low phosphorus). The results showed that GS07 had the highest induction rate (95.2%). Orthogonal test analysis showed that the best combination of medium components in induction was A2B3C1D3(2), namely, the concentration of 2, 4-dichlorophenoxy acetic acid (2,4-D) was 4 mg·mL-1, the concentration of L-Proline (L-Pro) was 0.8 mg·mL-1, and the concentration of silver nitrate (AgNO3) was 10 mg·mL-1 (or 5 mg·mL). Interestingly, we found that the optimal medium supplemented with 30 g·L-1 PEG6000 or 80 g·L-1 mannitol was suitable for antioxidant enzyme activity and malondialdehyde (MDA) content in GS07 callus. Exogenous 10 mmol·L-1 Ca2+ in the medium components with 100 mmol·L-1 sodium chloride (NaCl) could improve the activity of antioxidant enzymes in GS07 callus. Callus of GS07 could divide normally and grow well in medium components with 27 mg·L-1 KH2PO4. This study enhanced the adaptability of maize callus to stress and optimized the culture conditions.

  相似文献   

17.
In the previous experiment, we isolated and characterized glyceraldehyde-3-phosphate dehydrogenase (GPD) gene of the oyster mushroom, Pleurotus sajor-caju. Expression levels of the GPD gene in the mycelia of P sajor-caju was significantly increased by exposing the mycelia to abiotic stresses, such as salt, cold, heat, and drought. We also showed that GPD confers abiotic stress resistance when introduced into yeast cells. The survival rate of the transgenic yeast cell that harbored the GPD gene was significantly higher when the yeast cells were subjected to salt, cold, heat, and drought stresses, compared with the yeast that was transformed with the pYES2 vector alone. In order to investigate the functional role of the P. sajor-caju GPD gene in higher plant cells, the complete P. sajor-caju GPD cDNA was fused into the CaMV35S promoter and then introduced into potato plants. Putative potato transformants were screened by using PCR. Twenty-one transformants were further analyzed with RT-PCR to confirm the expression of P. sajor-caju GPD. A RT-PCR Southern blot analysis revealed that 12 transgenics induced the P. sajor-caju GPD gene expression. A bioassay of these transformants revealed that the P. sajor-caju GPD gene was enough to confer salt stress resistance in the potato plant cell system. Results showed that P. sajor-caju GPD, which was continuously expressed in transgenic potato plants under normal growing conditions, resulted in improved tolerance against salt loading.  相似文献   

18.
Abstract Cultivars of barley (Hordeum vulgare L.) were tested for germination sensitivity to progressively higher concentrations of salt, mannitol, and betaine. The three solutes were equally inhibitory at equal osmotic potential, but there was a consistent difference in osmotic sensitivity between two cultivars, CM-67 and Briggs (Briggs was the most sensitive). There was no difference between the two cultivars in salt or water uptake from salt solutions during imbibition. Brief presoaking in water did not improve salt resistance, indicating that a hydration-dependent decrease in membrane permeability is not involved in salt tolerance. The calcium content of Briggs was higher than CM-67. These results suggest that salt inhibits barley germination primarily by osmotic effects, and that salt influx during imbibition does not play a role in this inhibition. A hypothesis regarding salt effects on germination is discussed.  相似文献   

19.
为了解水稻Na+/H+逆向转运蛋白(OsNHX1)在植物应答非生物胁迫中的分子调控机制,采用RT-PCR方法克隆OsNHX1基因上游2 000bp的启动子序列,并通过基因枪轰击瞬时转化洋葱表皮细胞,检测不同非生物胁迫下启动子的活性和表达模式;同时,分别克隆全长和C末端缺失的OsNHX1基因,通过花序浸染法转化拟南芥,研究OsNHX1基因及其C末端的功能。结果显示:OsNHX1启动子受逆境胁迫诱导,在盐、干旱、脱落酸胁迫处理下GUS表达活性明显升高;过表达OsNHX1的转基因拟南芥中,种子萌发率、根长、丙二醛含量和相对含水量的测定结果均显示其胁迫耐受性得到改善,但过表达OsNHX1C末端缺失基因对转基因植株的胁迫耐受性无明显影响。研究表明,Na+/H+逆向转运蛋白有助于提高植物耐盐性,且其C末端区域对该转运蛋白活性的发挥具有关键作用。  相似文献   

20.
The effects of NaCl and mannitol iso-osmotic stresses on calli issued from sugarcane cultivars (cvs.) R570, CP59-73 and NCo310 were investigated in relation to callus growth, water content, ion and proline concentrations. Callus growth and water content decreased under both stresses with the highest reduction under mannitol-induced osmotic stress. The ion concentration was drastically affected after exposure to NaCl and mannitol. Salt stress induced an increase in Na+ and Cl accumulation and a decrease in K+ and Ca2+ concentrations. Under mannitol-induced osmotic stress, K+ and Ca2+ concentrations decreased significantly while Na+ and Cl concentrations remained unchanged. Free proline accumulation occurred under both stresses and was more marked in stress-sensitive cv. than in stress-resistant one. Our results indicated that the physiological mechanisms operating at the plant cell level in response to salt- and osmotic-induced stress in sugarcane cvs. are different. Among the cvs., we concluded that the stress resistance is closely related to the maintain of an adequate water status and a high level of K+ and Ca2+ under both stresses and a low level of Na+ concentration in the presence of NaCl. Thus, sugarcane (Saccharum sp.) can be regarded as a Na+ excluder. We also provided evidence that proline accumulation is a stress-sensitive trait rather than a stress resistance marker.  相似文献   

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