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1.
谷胱甘肽转移酶和半胱氨酸合成酶在清除活性氧(reactive oxygen species,ROS)中起重要作用。采用0.36mol·L^-1 NaHCO3对西伯利亚蓼(Polygonum sibiricum)进行胁迫处理,荧光定量PCR分析表明这2个基因的表达受盐胁迫强烈诱导。为了分析2个基因是否具有抗盐能力以及其相互协同能力,从cDNA文库中获得谷胱甘肽转移酶(GST)和半胱氨酸合成酶(Cs)2个基因,分别将GST、CS和GST+CS转入酿酒酵母(Saccharomyces cerevisiae)中,并分别命名转基因酵母为ty-gst、tycs和ty-gc。在1mol·L^-1 Na2C03和5mol·L^-1 NaCl胁迫处理下,转基因酵母(ty-gst、ty-cs和ty-gc)的耐盐能力均明显高于野生型酵母(㈣,而三者之间并无显著差别。在0.4mol·L^-1 NaCl胁迫处理下,转基因酵母(ty-gst、ty-cs和ty-gc)的抗氧化酶类相关基因SOD1、SOD2、GPX1和GPX3的表达量均低于野生型酵母(对照)(wy),而CTA7表达量均高于野生型酵母(对照)(wy)。转基因酵母ty-cs在0.4mol·L^-1 NaCl胁迫处理前后其超氧化物歧化酶(superoxide dismutase,SOD)、过氧化氢酶(catalase,CAT)和谷胱甘肽过氧化物酶(glutathione peroxJdase,GPX)的活性均表现为最高。  相似文献   

2.
利用模式生物拟南芥作为实验材料,通过测定谷胱甘肽-抗坏血酸代谢相关酶(GST、GPX、APX、GR、DHAR、MDHAR)的活性和GSH、ASA、MDA含量以及生物量等来研究过量表达具有过氧化物酶活性的盐地碱蓬谷胱甘肽转移酶基因(GST基因)对盐胁迫下转基因拟南芥氧化损伤的影响。结果显示,转基因拟南芥比野生型具有较高的GST、GPX以及MDHAR酶活性;前者还具有较多的还原型谷胱甘肽和抗坏血酸,并且谷胱甘肽库氧化水平较野生型高。盐胁迫不但部分抑制了野生型拟南芥的生长,同时也导致了大量脂质过氧化物的积累;而盐胁迫对转基因拟南芥的生长抑制不明显,也没有较多的脂质过氧化物的积累。结果表明,过量表达盐地碱蓬谷胱甘肽转移酶基因提高.广转基因拟南芥依赖于还原型谷胱甘肽的过氧化物清除途径,同时有可能改变了GSH和ASA的代谢途径,这两方面的作用导致了转基因拟南芥氧化损伤的降低,使转基因拟南芥在盐胁迫下保持较好的生长态势。  相似文献   

3.
以转腺苷甲硫氨酸合成酶基因(SsSAMS2)烟草纯合子ST8-9为实验材料,研究盐胁迫下过量表达SsSAMS2对转基因烟草生长影响的结果表明,200mmol·L-1NaCl处理后的转基因烟草的光合速率和生物量都比野生型烟草高,积累的自由多聚胺比较多,同时精氨酸脱羧酶的转录本也更丰富。显示转基因烟草的耐盐性比野生型烟草高,多聚胺在烟株缓解盐胁中可能是起了重要作用。  相似文献   

4.
PIP是重要的水孔蛋白之一,与植物的抗逆性有关。本文用叶盘法将羊草LcPIP遗传转化露地菊火焰,通过常规PCR和GUS染色方法鉴定转基因株系,Real-time PCR检测盐胁迫下转基因和野生植株中CmPIP1和CmPIP2的相对表达量,并测定SOD、POD活性和MDA含量。结果显示,在转LcPIP基因的露地菊植株叶片中,CmPIP1和CmPIP2基因表达量均上升,是野生型植株的2倍;根部的CmPIP1与CmPIP2基因的表达量均上升,CmPIP1上升程度高于CmPIP2。在200 mmol·L~(-1) NaCl的胁迫下,野生型植株中CmPIP1基因表达量明显下降,而转基因植株中CmPIP1基因表达量在12~48 h出现明显的上升;在盐胁迫12 h后,转基因植株中CmPIP2基因表达量上升程度明显高于野生型植株。盐胁迫12 h后,转基因植株的SOD活性提高更为明显。在盐胁迫前期(0~24 h)转基因植株MDA含量增加幅度低于野生型植株;在盐胁迫后期(48~72 h)转基因露地菊POD活性出现明显上升,而野生型露地菊呈下降趋势。  相似文献   

5.
盐地碱蓬谷胱甘肽转移酶基因(glutathione s-transferase gene,GST)克隆到植物表达载体pROKⅡ35s启动子的下游,通过农杆菌介导,利用花絮浸泡法转化拟南芥.转化子在含有卡那霉素的培养基上经过筛选以后,将初步验证为阳性的转基因植株通过PCR-Southem进一步证实.经过选育,筛选并分离到卡那霉素的抗性并且遗传稳定的T3代纯合子转基因拟南芥品系.通过Northern杂交证实外源基因在转基因拟南芥中表达.在盐胁迫条件下,通过测量转基因植株(GT)和野生型植株(wY)的生物量和谷胱甘肽(氧化型:GSSG;还原型:GsH)发现:转基因植株的生物量较野生型有一定程度的提高;GssG含量在转基因品系中比野生型的含量明显高.因此,过量表达GsT能够提高转基因植株在盐胁迫条件下的生长,而且这很可能是由于还原型谷胱甘肽被氧化的结果.  相似文献   

6.
镉胁迫对旱柳细胞膜透性和抗氧化酶活性的影响   总被引:10,自引:2,他引:8  
以‘Fuyang 3’旱柳为材料,通过水培方法研究了中、高剂量(5、25μmol.L-1)镉胁迫下旱柳器官的镉(Cd2 )积累、叶和根细胞膜渗透及抗氧化酶活性的变化。结果表明:Cd2 主要积累在旱柳的根部(最高达1 297.71μg.g-1),其次是枝条(最高为163.13μg.g-1)。中、高剂量Cd2 胁迫下,旱柳叶相对电导率、根K 渗透以及根和叶丙二醛(MDA)含量均未发生显著变化。中、高剂量Cd2 胁迫使旱柳根系的超氧歧化酶(SOD)、抗坏血酸过氧化物酶(APX)和谷胱甘肽转移酶(GST)活性,以及叶片的SOD、愈创木酚过氧化酶(POD)、谷胱甘肽过氧化物酶(GPX)和GST活性均比对照显著增强;且高剂量胁迫旱柳根系的SOD和GST活性,及其叶片的POD、GPX和GST活性均显著高于相应中剂量胁迫。研究发现,旱柳在不同浓度镉胁迫条件下,其根是Cd2 主要积累器官,其叶和根细胞质膜能保持相对稳定性,其根和叶各抗氧化酶活性发生不同程度改变,从而使旱柳对Cd2 胁迫表现出一定的忍耐性。  相似文献   

7.
胡杨(Populus euphratica Oliv.)具有极强抗盐碱能力。本实验室前期胡杨微阵列芯片数据结果显示:盐胁迫下,胡杨谷胱甘肽过氧化物酶基因(PeGPX)的转录上调,暗示该基因可能对胡杨耐盐性具有一定的作用。为分析 GPX 对植物耐盐性的贡献,本研究以胡杨为材料,利用 RT-PCR 方法克隆了胡杨谷胱甘肽过氧化物酶PeGPX基因,并在烟草中过量表达该基因,以分析谷胱甘肽过氧化物酶活性与植物耐盐性的关系。研究结果显示,实验中克隆的 cDNA (PeGPX)编码谷胱甘肽过氧化物酶,其 ORF 为 693 bp,其蛋白由 231 个氨基酸编码。过量表达 PeGPX 基因的烟草与野生型烟草的耐盐性实验结果显示,野生型烟草植株在加 NaCl(200 mmol/L)的 MS 培养基中生长 15 d 后,无明显的长高,且不长根;而转基因烟草在同样的加盐培养基上,生长基本没有受到抑制,植株生长状态良好,并且能够长根。光合数据显示,在盐胁迫下过量表达 PeGPX 基因烟草的净光合速率受到影响明显小于野生型烟草的净光合速率。酶活数据显示,转基因株系 GPX 酶活与野生型的相比在盐胁迫下活性有非常显著的提高。我们的研究结果说明:过表达 PeGPX 基因使得烟草的耐盐性得到显著提高,这对深入研究PeGPX基因在胡杨耐盐机制中的作用具有重要的意义。高,这对深入研究PeGPX基因在胡杨耐盐机制中的作用具有重要的意义。  相似文献   

8.
植物半胱氨酸蛋白酶抑制剂在植物防御生物与非生物胁迫过程中发挥着重要的作用。拟南芥中的半胱氨酸蛋白酶抑制剂AtCYSa基因的表达能够受到多种胁迫的诱导,且在拟南芥中过量表达AtCYSa基因可以增强转基因拟南芥抵御盐、干旱和氧化等非生物胁迫的能力。为了进一步探究AtCYSa基因的功能以及在烟草中的应用,构建了植物表达载体pCAMBIA 1302-AtCYSa。通过PCR以及RT-PCR验证共获得4株阳性转基因烟草,选择其中3株转基因烟草进行盐胁迫处理和抗虫活性实验。在盐胁迫处理中,100mmol/L NaCl和200mmol/L NaCl处理组的丙二醛含量显著低于野生型对照组。伊文思蓝染色和细胞相对活性结果表明,转基因烟草的细胞活性比野生型烟草明显偏高。这说明在盐胁迫处理下,AtCYSa基因的表达能够起到保护转基因烟草的作用。抗虫活性研究发现,实验组的幼虫总重均呈明显的下降趋势,且幼虫死亡率显著高于对照组。这些结果表明,AtCYSa基因在烟草中的过量表达能够增强转基因烟草的耐盐以及抗虫的能力。  相似文献   

9.
采用T2代转LeERF2基因旱稻(旱297)为材料,研究分蘖期盐胁迫下植株光合性能和生理反应.结果表明,50 mM NaCl胁迫条件下,转基因植株(T)和野生型对照(WT)的各项光合参数差异不明显,但在100 mM NaCl胁迫条件下,转基因植株仍能维持较高的光合速率和气孔导度.随着NaCl胁迫浓度增加,野生型旱稻和转基因旱稻植株叶片SOD活性增加幅度加大,但都表现为转基因植株增幅更明显,而MDA含量则表现为野生型植株增幅更明显,表明LeERF2基因增强了旱稻盐胁迫下抗氧化能力,提高了耐盐性,能维持较高光合速率.  相似文献   

10.
盐地碱蓬谷胱甘肽转移酶基因(OST)在拟南芥中过量表达后,在干旱胁迫下,转基因拟南芥植株的干重比野生型植株高,其总谷胱甘肽含量和谷胱甘肽库的氧化水平都比野生型植株的高,而丙二醛含量则比野生型的低。这些显示转基因拟南芥的抗干旱胁迫能力有所增强。  相似文献   

11.
NaCl胁迫对超大甜椒种子萌发及幼苗生长的影响   总被引:6,自引:1,他引:5  
以超大甜椒种子和幼苗为材料,采用水培法研究低、中、高浓度(50、150、250 mmol·L-1)NaCl胁迫对其种子萌发和幼苗生长的影响.结果显示:(1)低浓度NaCl处理促进种子萌发,而中、高浓度NaCl处理抑制种子萌发;NaCl处理第18天时,高浓度NaCl处理植株全部死亡,其余各处理植株苗高、叶面积、地上部鲜重和干重均随处理浓度升高而下降,但低浓度NaCl能刺激超大甜椒的根系生长.(2)低、中浓度NaCl处理时,植株叶绿素含量未受到大的影响,类胡萝卜素含量却随胁迫时间延长微量升高;在盐胁迫7 d的周期内,低、中浓度NaCl处理植株MDA含量、SOD活性和可溶性糖含量均随浓度升高及时间延长显著增加,脯氨酸含量在低浓度下变化不明显而中浓度下显著升高;在高浓度NaCl处理3 d中,MDA含量急剧升高,SOD活性先升高后下降,脯氨酸和可溶性糖含量显著增加.研究发现,NaCl胁迫浓度越高对超大甜椒种子萌发和幼苗生长的抑制效应越明显;低中浓度NaCl处理幼苗能通过自身的抗氧化酶清除系统和渗透调节物质来抵抗胁迫引起伤害,类胡萝卜素可能也有一定的抗胁迫作用,而高浓度NaCl处理增加了膜脂过氧化程度,严重影响了活性氧和渗透调节物质的正常代谢.  相似文献   

12.
Auxin autotrophic and heterotrophic tobacco callus lines were grown on MS medium with or without 100 mmol/L NaCl and growth and some of the stress-related activities, such as GPX, SOD, CAT, GST, GSH-PX, as well as the concentration of ethylene and H2O2, were measured and compared with each other. The auxin autotrophic calli grew slower, however, on the NaCl-containing medium the growth rate was higher than that of the heterotrophic cultures after two weeks of culturing. The stress-related ethylene production was lower in the autotrophic cultures and, contrary to the heterotrophic tissues, its level did not change significantly upon NaCl treatment. The guaiacol peroxidase (GPX) activities were higher in the autotrophic tissues in all cell fractions regardless of the presence of NaCl. Treated with NaCl, the GPX activities elevated in the soluble and covalently-bound fractions in the heterotrophic calli, but were not further increased in the autotrophic line. SOD and CAT activities were higher in the heterotrophic tissues, and were increased further by 100 mmol/L NaCl treatment. The GST and GSH-PX activities were higher in the autotrophic line, which might explain their enhanced stress tolerance. In the autotrophic tissues, the elevated antioxidant activities led to reduced levels of H2O2 and malondialdehyde; under mild NaCl stress, these levels decreased further. The lower growth rate and the effective protection against NaCl stress-induced oxidative damage of the autotrophic line can be explained by the cell wall-bound peroxidase and GSH-PX activities in the auxin autotrophic tissues. Their maintained growth rate indicates that the autotropic cultures were more resistant to exogenous H2O2.  相似文献   

13.
Superoxide dismutase (SOD), glutathione peroxidase (GPX), glutathione S-transferase (GST) and glutathione reductase (GR) play crucial roles in balancing the production and decomposition of reactive oxygen species (ROS) in living organisms. These enzymes act cooperatively and synergistically to scavenge ROS, as not one of them can singlehandedly clear all forms of ROS. In order to imitate the synergy of the enzymes, we designed and generated a recombinant protein, which comprises of a Schistosoma japonicum GST (SjGST) and a bifunctional 35-mer peptide with SOD and GPX activities. The engineered protein demonstrated SOD, GPX and GST activities simultaneously. This trifunctional enzyme with SOD, GPX and GST activities is expected to be the best ROS scavenger.  相似文献   

14.
Superoxide dismutase (SOD), glutathione peroxidase (GPX), glutathione S-transferase (GST) and glutathione reductase (GR) play crucial roles in balancing the production and decomposition of reactive oxygen species (ROS) in living organisms. These enzymes act cooperatively and synergistically to scavenge ROS, as not one of them can singlehandedly clear all forms of ROS. In order to imitate the synergy of the enzymes, we designed and generated a recombinant protein, which comprises of a Schistosoma japonicum GST (SjGST) and a bifunctional 35-mer peptide with SOD and GPX activities. The engineered protein demonstrated SOD, GPX and GST activities simultaneously. This trifunctional enzyme with SOD, GPX and GST activities is expected to be the best ROS scavenger.  相似文献   

15.
为研究阿月浑子(Pistacia vera)的耐盐性,对新疆两个主栽品种‘长果’和`Kerman'的1年生实生苗进行了控制条件下的NaCl胁迫实验,实验浓度为50、150、250和500 mmol·L-1,NaCl胁迫5、10和20 d后取叶片测定其细胞膜透性、丙二醛(MDA)含量以及超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性的变化。实验结果显示,在NaCl胁迫下,‘长果’和`Kerman'的膜透性和MDA含量均随NaCl浓度的升高而增加,表明NaCl胁迫致使阿月浑子膜脂过氧化程度加强,细胞膜稳定性受到破坏,其中‘长果’品种的膜透性和MDA含量增加幅度较大,受到的盐害较大。而SOD、CAT和POD活性则随NaCl浓度的升高先增加后下降,抗氧化酶活性(SOD、POD和CAT)之间协调变化有利于清除活性氧,维持活性氧代谢平衡,保护膜结构。实验结果也显示,随着NaCl胁迫时间的延长,两个品种的细胞膜结构和功能受损害程度有所缓解。这些指标中,‘长果’和`Kerman'品种的膜透性和MDA含量与SOD活性呈显著相关,表明植物细胞的质膜透性与脂质过氧化产物(MDA)含量有关,也与组织中自由基含量和保护酶活性密切相关。综合各项生理指标,`Kerman'品种相对‘长果’品种显示了较强的抗氧化能力,具有较强的耐盐能力。  相似文献   

16.
A metallothionein-like gene, ThMT3, encoding a type 3 metallothionein, was isolated from a Tamarix hispida leaf cDNA library. Expression analysis revealed that mRNA of ThMT3 was upregulated by high salinity as well as by heavy metal ions, and that ThMT3 was predominantly expressed in the leaf. Transgenic yeast (Saccharomyces cerevisiae) expressing ThMT3 showed increased tolerance to Cd2+, Zn2+, Cu2+, and NaCl stress. Transgenic yeast also accumulated more Cd2+, Zn2+, and NaCl, but not Cu2+. Analysis of the expression of four genes (GLR1, GTT2, GSH1, and YCF1) that aid in transporting heavy metal (Cd2+) from the cytoplasm to the vacuole demonstrated that none of these genes were induced under Cd2+, Zn2+, Cu2+, and NaCl stress in ThMT3-transgenic yeast. H2O2 levels in transgenic yeast under such stress conditions were less than half those in control yeast under the same conditions. Three antioxidant genes (SOD1, CAT1, and GPX1) were specifically expressed under Cd2+, Zn2+, Cu2+, and NaCl stress in the transgenic yeast. Cd2+, Zn2+, and Cu2+ increased the expression levels of SOD1, CAT1, and GPX1, respectively, whereas NaCl induced the expression of SOD1 and GPX1.  相似文献   

17.
镉对长江华溪蟹肝胰腺抗氧化酶活力的影响   总被引:9,自引:0,他引:9  
闫博  王兰  李涌泉  刘娜  王茜 《动物学报》2007,53(6):1121-1128
重金属对环境的污染已成为全球面临的首要问题之一,其中镉(Cd2 )是一种广泛存在的毒性污染物,能通过消化道和呼吸道进入生物体,对机体造成损伤(Zyadah and Abdel-Baky,2000)。研究表明,Cd2 可以通过Ca2 通道穿过细胞膜进入机体(Roesijadi and Robinson,1994),诱导产生大量自由基和活性氧(ROS),从而形成氧胁迫(Toppi andGabbrielli,1994;Hegedus et al.,2001)。ROS可以与体内脂质、蛋白质和核酸反应,导致脂质过氧化、细胞膜损伤并且影响多种酶的活力,对生物体造成威胁。由于在水生生态系统中生物富集污染物的作用明显,故相对于陆地生…  相似文献   

18.
γ-氨基丁酸浸种对番茄种子及幼苗耐盐性调节的生理机制   总被引:1,自引:0,他引:1  
以番茄‘金棚一号’为材料,研究了外源γ-氨基丁酸(GABA)浸种处理对NaCl胁迫下种子萌发及幼苗生长和生理代谢的影响。结果显示:(1)NaCl胁迫显著抑制了番茄种子的萌发和胚根生长,同时导致番茄幼苗体内活性氧(O2.-、H2O2)大量积累,膜脂过氧化程度加重,幼苗叶片光合系统Ⅱ活性显著降低,幼苗的生长受到严重抑制。(2)外源GABA浸种能够显著提高盐胁迫下番茄种子的萌发和胚根的生长,并以10.00mmol.L-1 GABA浸种处理效果最好。(3)外源GABA浸种处理显著提高了NaCl胁迫下番茄幼苗根系和叶片抗氧化酶(SOD、POD和CAT)活性,降低了活性氧(O2.-、H2O2)的产生和膜脂过氧化程度,通过维持较高的光合系统Ⅱ活性,促进了幼苗的生长及生物量积累,但GABA的缓解效应存在较大的浓度差异,其中以10.00mmol.L-1 GABA处理效果较好。研究表明,10.00mmol.L-1 GABA浸种处理能够通过促进番茄种子萌发和幼苗生长来缓解盐胁迫的伤害。  相似文献   

19.
Changes in the antioxidative enzyme activities (SOD, CuZnSOD, GSH-Px, GST), as well as TBARS content in 5-week-old tomato (Lycopersicon esculentum Mill. cv “Perkoz”) roots were examined 1, 3 h (short-term stress) and 1–14 days (long-term stress) after a single application of 50 mM (mild stress) and 150 mM NaCl (severe stress). The severe stress caused an increase in GST, GSH-Px and SODs activities from the beginning of the experiment while mild stress induced enhancement of GST activity from the second day of experiment. The maximum increase in SODs after both NaCl solutions were applied and in GST activity after the higher NaCl dose on the second day of the experiment was observed. Moreover, after 1 h of NaCl treatment with both tested NaCl solutions, the highest induction of GSH-Px activity appeared. TBARS content was elevated from the first hour of salt stress and decreased only 14 days after 50 mM NaCl application which was accompanied by high induction of GSH-Px activity. In conclusion, enhanced activities of tested enzymes indicate their involvement in early and late defence systems under salinity stress. Moreover, the dynamics of the changes in the antioxidant enzymes suggests that the second day following NaCl application is a crucial moment of the experiment with regard to salt-mediated oxidative stress.  相似文献   

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