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1.
通过农杆菌介导法,将含有油菜素内酯合成基因DET2的植物表达栽体pCAMBIA2301-DET2转入烟草,获得转基因烟草植株.用T1代转基因阳性株进行耐NaCl试验,结果显示,NaCl胁迫下转基因烟草、非转基因对照烟草的出苗率、幼苗鲜重、株高及根长均随NaCl浓度增加而下降.但在相同NaCl浓度下,转基因植株鲜重、株高及根长均明显高于非转基因对照烟草,并且转基因植株的丙二醛( MDA)含量低于非转基因植株,诱导蛋白基因P5CS表达高峰出现时间晚于非转基因植株.说明DET2的表达提高了烟草的耐NaCl能力.  相似文献   

2.
本研究旨在创制OsBTF3过表达转基因水稻株系,为验证OsBTF3基因在水稻抗性和生长发育中的功能、评价其在水稻农艺性状遗传改良中的应用价值提供试验材料。通过基因过表达载体构建、水稻愈伤组织诱导、农杆菌介导愈伤组织转化、植株再生、潮霉素抗性(HygR)筛选及PCR验证、基因过表达RT-Q-PCR检测等方法,成功地获得了97个T0代和20个T1代过表达转基因株系,并分别得到分子验证。与野生型对照株相比,5个T1代过表达株系中的OsBTF3基因表达水平显著提高,平均高达3.58倍。因此,由组成型表达的35S启动子驱动的OsBTF3基因在转基因水稻株系中成功地得到了增量表达,并对水稻生长发育、抗病性和抗逆性具有调控作用。  相似文献   

3.
吴杨  贺俐  黄勇  张木清 《植物研究》2017,37(3):370-376
利用已构建的植物表达载体prd29a-dreb-hyg,通过酶切连接到含有磷酸甘露糖异构酶基因(pmi)的表达质粒pZMLR14上,构建植物表达载体pDREB-PMI。利用基因枪轰击转化甘蔗愈伤,经过甘露糖筛选,共获51株抗性苗,转化再生频率为4.25%。对转基因植株进行分子检测,结果表明有8株为阳性转基因无性系。氯酚红试验表明标记磷酸甘露糖异构酶基因在转基因株系中均有表达。对转基因T1代甘蔗植株进行分子检测,结果表明EaDREB2B基因在转基因甘蔗无性系T1代中稳定遗传。该结果为进一步研究EaDREB2B基因在甘蔗抗旱方面的作用奠定了基础。  相似文献   

4.
各种环境因素,如干旱、高盐、激素和低/高温等非生物胁迫对植物的生长发育造成很大影响。DREB转录因子在植物抵抗非生物胁迫中起到关键作用。本研究通过根癌农杆菌介导的叶盘转化法将菊花DmD REBa基因导入烟草中并进行了耐低温能力分析。研究利用PCR的方法鉴定出了43株转基因阳性植株。随机选取其中9株转基因植株,有7株在RNA转录水平能够表达。Southern杂交检测表明,DmD REBa基因以1~3个拷贝形式随机插入到烟草基因组中。胁迫处理结果表明,DmD REBa基因明显增强了转基因烟草抵抗低温能力。通过叶片上下表皮气孔密度检测,发现转基因烟草的蒸腾失水量远远低于对照野生型。进一步对低温胁迫下转基因烟草的丙二醛含量进行测定分析,发现转基因烟草丙二醛含量比野生型烟草低22.29%。综上结果表明,DmD REBa基因能够提高转基因烟草对低温的耐受能力,为菊花DREB转录因子的深入研究提供理论依据,并为进一步解析菊花DREB基因功能奠定基础。  相似文献   

5.
吴楠  王丕武  李丹  代力强  郑成忠  卢实  才源  张卓  曲静  夏海丰 《遗传》2014,36(7):707-712
为了验证查尔酮还原酶基因CHR1在大豆苷元合成中的作用, 文章克隆了CHR1基因并构建了RNA干扰表达载体pCPB-CHR1-RNAi, 将载体转化受体大豆品种“吉农28”中, 以期抑制CHR1基因的转录。通过农杆菌介导的遗传转化和PCR检测得到4株T0 代阳性植株, 13株T1代阳性植株。Southern blotting结果表明, 功能元件以单拷贝的形式整合到大豆的基因组中。利用实时荧光定量PCR法(Quantitative real-time PCR, qRT-PCR)测定CHR1基因在mRNA水平上的表达量, 结果表明, 转基因大豆植株中CHR1的表达量与未转化的受体大豆相比降低了60%~99%; 高效液相色谱法(High performance liquid chromatography, HPLC)检测到合成大豆苷元过程中的前体物质异甘草素的含量降低了38.7%。该RNA干扰机制在转录水平上抑制了CHR1基因的表达。  相似文献   

6.
为创制棉花耐旱种质资源,解决棉花耐旱资源贫乏以及提高水资源利用率,研究依据CRISPR/Cas9编辑原理,对课题组前期利用RT-PCR技术筛选耐旱相关基因GhNAC3(Gh_D02G0790)的第一外显子区域设计2个20 bp的编辑靶点,并在陆地棉基因组数据库中比对分析靶点序列,排除非特异性编辑,将2个靶点核苷酸片段分别与gRNA-AtU6载体连接,通过2次PCR扩增,得到含特异性连接接头的AtU6-GhNAC3表达盒,再将表达盒连接到CRISPR/Cas9(pRGEB32-7)载体上,获得CRISPR-GhNAC3重组表达载体,利用农杆菌介导法转化陆地棉受体YZ-1,再生培养得到T0代转基因幼苗,通过PCR检测Cas9蛋白基因获得阳性株系。对T0代植株的靶点区域序列进行PCR扩增和测序分析,鉴定GhNAC3编辑类型。结果发现,CRISPR9-GhNAC3表达载体成功转化YZ-1,并获得40株转基因再生植株,经Cas9蛋白基因鉴定得到30株阳性株系,从阳性植株选择10株进行编辑类型测序分析,发现7株在靶点区域发生编辑,编辑类型主要为碱基片段缺...  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.
bHLH转录因子家族成员在植物生长发育、生理代谢及非生物胁迫响应过程中起重要作用。本研究选取拟南芥抗逆相关bHLH转录因子家族中AtUNE12基因为研究对象,对其进行耐盐功能初探。首先构建AtUNE12基因的植物过表达载体(pROKⅡ-AtUNE12),通过农杆菌介导的浸花法转化拟南芥,利用qRT-PCR技术检测获得T3AtUNE12过表达转基因植株。在盐胁迫下,分析过表达AtUNE12与野生型拟南芥长势、根长及鲜重;比较过表达AtUNE12与野生型植株的电解质渗透率、失水率、MDA含量、POD与SOD活性及H2O2含量,鉴定AtUNE12基因是否具有耐盐能力。结果表明:过表达AtUNE12基因降低了拟南芥植株的失水率、电解质渗透率及MDA含量,保护细胞膜结构的完整性;增强了POD与SOD活性,降低了拟南芥植株内的H2O2含量,进而增强拟南芥植株的ROS清除能力,从而提高拟南芥的耐盐能力。  相似文献   

9.
以野生型和过表达ZmSKIP基因烟草为试材, 研究了低温胁迫下过表达ZmSKIP对烟草抗氧化能力的影响。测定了不同低温处理时间下过表达ZmSKIP转基因烟草T3代植株和野生型植株抗氧化酶如超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)活性和丙二醛(MDA)含量以及相对电导率, 结果表明, 低温下, 相对于野生型植株, 转基因烟草具有较高的抗氧化酶活性和较低的相对电导率和MDA含量, 说明过表达ZmSKIP提高了转基因植株的耐低温胁迫能力。  相似文献   

10.
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   

11.
12.
组蛋白去乙酰化酶在植物非生物胁迫应答反应中具有重要的调控作用。利用RT-PCR的方法从毛果杨中克隆了组蛋白去乙酰化酶基因HDA902。利用农杆菌介导法将其遗传转化到烟草中,并对转基因植株进行低温耐受性分析。研究结果表明,HDA902在烟草中的表达显著提高了转基因株系对低温的耐受性。叶片NBT和DAB染色结果表明,在低温处理后转基因烟草比野生型烟草产生较少的活性氧。丙二醛和脯氨酸含量测定结果表明,在低温条件下,转基因烟草叶片的脯氨酸含量显著高于野生型烟草,而丙二醛含量显著低于野生型烟草。这些研究结果表明,HDA902参与低温胁迫应答反应,其过量表达提高了植株耐低温的能力。  相似文献   

13.
In plants, transient changes in calcium concentrations of cytosol have been observed during stress conditions like high salt, drought, extreme temperature and mechanical disturbances. Calcium-dependent protein kinases (CDPKs) play important roles in relaying these calcium signatures into downstream effects. In this study, a stress-responsive CDPK gene, ZoCDPK1 was isolated from a stress cDNA generated from ginger using rapid amplification of cDNA ends (RLM-RACE) – PCR technique and characterized its role in stress tolerance. An important aspect seen during the analysis of the deduced protein is a rare coupling between the presence of a nuclear localization sequence in the junction domain and consensus sequence in the EF-hand loops of calmodulin-like domain. ZoCDPK1 is abundantly expressed in rhizome and is rapidly induced by high-salt stress, drought, and jasmonic acid treatment but not by low temperature stress or abscissic acid treatment. The sub-cellular localization of ZoCDPK1-GFP fusion protein was studied in transgenic tobacco epidermal cells using confocal laser scanning microscopy. Over-expression of ginger CDPK1 gene in tobacco conferred tolerance to salinity and drought stress as reflected by the high percentage of seed germination, higher relative water content, expression of stress responsive genes, higher leaf chlorophyll content, increased photosynthetic efficiency and other photosynthetic parameters. In addition, transgenic tobacco subjected to salinity/drought stress exhibited 50% more growth during stress conditions as compared to wild type plant during normal conditions. T3 transgenic plants are able to grow to maturity, flowers early and set viable seeds under continuous salinity or drought stress without yield penalty. The ZoCDPK1 up-regulated the expression levels of stress-related genes RD21A and ERD1 in tobacco plants. These results suggest that ZoCDPK1 functions in the positive regulation of the signaling pathways that are involved in the response to salinity and drought stress in ginger and it is likely operating in a DRE/CRT independent manner.  相似文献   

14.
钙依赖性蛋白激酶(CDPKs)是一类重要的钙信号感受蛋白和响应蛋白,在植物干旱、低温、盐碱等非生物胁迫应答中起着重要的调控作用。为探讨陆地棉GhCDPK1基因在干旱胁迫下所起的作用,该研究利用实时荧光定量PCR技术分析了PEG模拟干旱胁迫下该基因的表达量,发现GhCDPK1基因受干旱胁迫诱导。通过构建植物表达载体pCAMBIA2300-GhCDPK1,采用农杆菌介导的叶盘法转化模式植物烟草,发现干旱胁迫下转基因植株保水能力明显高于野生型植株,叶绿素、脯氨酸、可溶性蛋白含量及POD、SOD活性也高于野生型植株,而丙二醛含量低于野生型植株。研究结果表明,GhCDPK1基因作为正向调控因子响应干旱胁迫诱导,过表达GhCDPK1基因可以使植株积累更多的渗透调节物质、增强抗氧化系统酶的活性和维持细胞膜的稳定性来提高植物抵御外界干旱胁迫的能力。  相似文献   

15.
Ubiquitin (Ub) is regarded as a stress protein involved in many stress responses. In this paper, sense and antisense transgenic tobacco plants, as well as the wild type and vector control, were used to study the role of Ub in salt tolerance of plants. In sense Ta-Ub2 transgenic tobacco plants, there was higher expression of Ub protein conjugates than in the wild type and vector control, but the reverse trend was observed in antisense Nt-Ub1 transgenic plants. The germination rate of tobacco seed, growth status and photosynthesis of the tobacco plants suggested that over-expressing Ub promoted the growth of transgenic tobacco plants and enhanced their salt tolerance, but the opposite effect was seen in plants with repressed Ub expression. Changes in antioxidant capacity may be one of the mechanisms underlying Ub-regulated salt tolerance. Furthermore, improved tolerance to a combination of stresses was also observed in the sense transgenic tobacco plants. These findings imply that Ub is involved in the tolerance of plants to abiotic stress.  相似文献   

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17.
We examined the function of the rice (Oryza sativa L.) antiporter-regulating protein OsARP by overexpressing it in tobacco (Nicotiana tabacum L.). In public databases, this protein was annotated as a putative Os02g0465900 protein of rice. The OsARP gene was introduced into tobacco under the control of the cauliflower mosaic virus 35S promoter. The transformants were selected for their ability to grow on medium containing kanamycin. Incorporation of the transgene in the genome of tobacco was confirmed by PCR, and its expression was confirmed by Western blot analysis. Transgenic plants had better growth and vigor than non-transgenic plants under salt stress in vitro. Overexpression of OsARP in transgenic tobacco plants resulted in salt tolerance, and the plants had a higher rate of photosynthesis and effective PSII photon yield when compared with the wild type. The OsARP protein was localized in the tonoplast of rice plants. Transgenic plants accumulated more Na+ in their leaf tissue than did wild-type plants. It is conceivable that the toxic effect of Na+ in the cytosol might be reduced by sequestration into vacuoles. The rate of water loss was higher in the wild type than in transgenic plants under salt stress. Increased vacuolar solute accumulation and water retention could confer salt tolerance in transgenic plants. Tonoplast vesicles isolated from OsARP transgenic plants showed Na+/H+ exchange rates 3-fold higher than those of wild-type plants. These results suggest that OsARP on the tonoplasts plays an important role in compartmentation of Na+ into vacuoles. We suggest that OsARP is a new type of protein participating in Na+ uptake in vacuoles.  相似文献   

18.
19.
In order to investigate the function of chloroplast ascorbate peroxidase under temperature stress, the thylakoid-bound ascorbate peroxidase gene from tomato leaf (TtAPX) was introduced into tobacco. Transformants were selected for their ability to grow on medium containing kanamycin. RNA gel blot analysis confirmed that TtAPX in tomato was induced by chilling or heat stress. Over-expression of TtAPX in tobacco improved seed germination under temperature stress. Two transgenic tobacco lines showed higher ascorbate peroxidase activity, accumulated less hydrogen peroxide and malondialdehyde than wild type plants under stress condition. The photochemical efficiency of photosystem 2 in the transgenic lines was distinctly higher than that of wild type plants under chilling and heat stresses. Results indicated that the over-expression of TtAPX enhanced tolerance to temperature stress in transgenic tobacco plants.  相似文献   

20.
该研究以转彩色马铃薯StAN1基因烟草为材料、野生型烟草(WT)为对照,测定分析转StAN1基因烟草在种子萌发期、幼苗期和苗期对干旱(甘露醇)处理的耐受情况,并对苗期旱热共同胁迫的耐受情况进行测定分析,以探讨彩色马铃薯StAN1基因的功能,为耐旱彩色马铃薯育种提供新路径。结果显示:(1)转StAN1基因烟草鉴定显示,阳性率为82.6%,且转基因烟草的叶片明显变紫,花青素含量极显著高于野生型烟草。(2)在培养基甘露醇浓度为150 mmol/L时,点播在培养基上的转基因烟草种子第5天时的萌发率达到了7%,是野生型烟草萌发率的2.3倍。(3)在甘露醇浓度为0和100 mmol/L的培养基上竖直培养时,转基因烟草的根长分别是野生型烟草的1.46和1.30倍,根长比野生型烟草显著增长。(4)在干旱胁迫下,转基因烟草幼苗叶片中的脯氨酸含量以及超氧化物歧化酶活性均显著高于野生型烟草,丙二醛含量均显著低于野生型烟草。(5)转基因烟草LEA基因和ERF基因在干旱和旱热处理中的相对表达量均高于野生型烟草。研究表明,StAN1基因在提高植物花青素含量的同时也提高了植物的耐旱性。  相似文献   

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