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1.
为探明信号分子过氧化氢(H2O2)提高裸燕麦幼苗耐冷性的作用,以‘定莜6号’沙培幼苗为材料,在3叶期喷施10 μmol·L-1 H2O2 12 h后于8℃/5℃(昼/夜)条件下低温胁迫,以喷蒸馏水(H2O)为对照,分别在低温处理的0、1、2、3、4、5 d取幼苗叶片测定超氧阴离子(O2)、H2O2、丙二醛(MDA)、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)、抗坏血酸过氧化物酶(APX)、抗坏血酸(AsA)、谷胱甘肽(GSH)、可溶性糖(SS)、脯氨酸(Pro)、可溶性蛋白质(SP)和热稳定性蛋白质(HSP)13项与耐冷性有关的生理指标及低温处理5 d后植株株高和生物量增量,采用主成分和隶属函数分析综合评价H2O2对裸燕麦幼苗耐冷性的影响。结果表明,与对照相比,喷施H2O2显著提高了低温胁迫下裸燕麦幼苗株高和生物量增量,降低了裸燕麦幼苗叶片O2和MDA及低温胁迫2~5 d的H2O2含量,促进低温胁迫期间裸燕麦幼苗叶片SOD、CAT、POD和APX活性提高及AsA、GSH、SS、Pro、SP和HSP积累。主成分分析13项生理指标离差标准化数据,提取的前4个主成分累积方差贡献率达85.6%;隶属函数综合评价4个主成分得分值显示,喷施H2O2显著提高了低温胁迫0~5 d的综合评价值。表明喷施H2O2能够通过调控生理生化代谢提高裸燕麦幼苗的耐冷性。  相似文献   

2.
为探索低温胁迫下外源硫化氢(H2S)对甜樱桃花的柱头和子房线粒体功能的影响,本研究以甜樱桃品种‘早大果’花枝为试材,在-2 ℃低温下喷施0.05 mmol·L-1硫氢化钠(NaHS,H2S供体)和15 μmmol·L-1 次牛磺酸(HT、H2S清除剂),测定柱头和子房线粒体中活性氧、抗氧化酶和线粒体膜通透性转换孔(MPTP)开放程度、膜流动性、膜电位和细胞色素(Cyt c/a)比值变化。结果表明: 低温胁迫导致线粒体内过氧化氢(H2O2)和丙二醛(MDA)含量显著增加,线粒体MPTP明显增大,膜流动性降低,膜电位和线粒体Cyt c/a吸光度比值、膜H+-ATPase活性显著下降,线粒体结构受到损伤。低温胁迫下,外施0.05 mmol·L-1 NaHS可显著降低低温胁迫下柱头和子房线粒体H2O2和MDA含量,在较长时间内维持较高的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)活性,减小线粒体MPTP开放程度,增强线粒体膜流动性,提高线粒体膜电位、Cyt c/a值和膜H+-ATPase活性;NaHS清除剂HT则抵消NaHS对上述参数的影响。综上所述,外源H2S可以提高低温胁迫下甜樱桃柱头和子房线粒体抗氧化酶活性,减少H2O2和MDA积累,提高膜H+-ATPase活性,稳定线粒体膜结构和功能,进而缓解低温胁迫对花器官的伤害。  相似文献   

3.
报道了干旱胁迫下外源24-表油菜素内酯(EBR)对辣椒幼苗叶片H2O2和MDA含量,抗氧化酶活性,以及耐旱相关基因表达的影响。结果表明,0.1 μmol·L-1 EBR处理诱导了辣椒幼苗叶片H2O2含量的增加,并提高了SOD、APX、CAT、DHAR、MDAR和GR活性;干旱胁迫下,EBR处理显著诱导了辣椒叶片抗氧化酶活性的增加,并抑制了H2O2和MDA含量的上升;EBR处理也促进了cAPX和MDAR等抗氧化酶基因的表达,以及WRKY3、WRKY6和MYB等转录因子的表达。由此认为,适宜浓度的外源EBR可能是通过信号分子H2O2调控辣椒叶片中WRKY和MYB等转录因子的表达以调控相关耐旱基因表达,增强细胞的抗氧化酶活性,减轻干旱造成的膜质过氧化伤害,从而增强了辣椒幼苗的耐旱性。  相似文献   

4.
水分胁迫下山黧豆中ABA及ODAP的积累研究   总被引:4,自引:0,他引:4  
用PEG、PEG+ABA、ABA分别处理15d龄的山黧豆幼苗,取其叶片为实验材料,测定内源ABA、ODAP、MDA和H2O2含量以及几种抗氧化酶活性,结果表明,与对照相比处理材料叶片中ABA和ODAP含量显著增加;外源ABA的加入降低了PEG胁迫引起的MDA和H2O2含量的增加,延缓了PEG胁迫引起的CAT活性的衰减,提高了GR活性.用外源ABA长时间处理山黧豆,发现叶片中ABA含量显著增加,随后出现ODAP的积累;ABA处理初期(0~3d)对叶片中活性氧代谢影响不大,随着ABA处理时间的延长(7~15d),可引起叶片中SOD、POD、CAT、GR活性的降低,MDA、H2O2含量的增加,表明ABA确实可促进ODAP的积累.  相似文献   

5.
锰对锰超积累植物美洲商陆抗氧化系统的影响   总被引:5,自引:0,他引:5  
采用水培法,研究了美洲商陆在不同锰浓度下的生长、锰积累、H2O2含量、脂质过氧化以及抗氧化系统的响应.结果表明:植株锰含量随锰浓度增大而显著增加,依次为叶>茎>根.低浓度锰(5 mmol·L-1)显著促进植株生长,叶片中H2O2含量明显降低,丙二醛(MDA)含量与对照相当;高浓度锰(≥10 mmol·L-1)抑制植株生长,叶片中H2O2和MDA水平显著增加,表明叶片中发生了明显的氧化损伤.抗坏血酸过氧化物酶、脱氢抗坏血酸还原酶、谷胱甘肽还原酶的活性和还原型抗坏血酸水平随锰处理浓度上升;超氧化物歧化酶活性在低浓度锰时显著降低,高浓度锰时则显著上升;过氧化氢酶和过氧化物酶活性、还原型谷胱甘肽含量在锰浓度为5~10 mmol·L-1时显著上升,而在20 mmol·L-1时明显回落.说明氧化损伤及锰积累可能是高浓度锰下美洲商陆生长受抑的生理原因.锰处理下,抗氧化系统效率提高可以部分解释美洲商陆耐锰和超积累锰的特性,不同抗氧化剂活性或含量随介质锰浓度变化的模式不同,反映了其在美洲商陆耐受不同浓度范围锰时的作用不同.  相似文献   

6.
选择黄河上游污染程度较严重的兰州地区和相对无污染的刘家峡地区作为研究样点,比较分析了两地花背蟾蜍(Bufo raddei)肝脏和肾脏中抗氧化酶SOD、CAT和GPx活性及丙二醛(MDA)含量。与刘家峡地区相比,兰州地区花背蟾蜍肝脏的SOD活性升高,CAT和GPx活性极显著降低,肾脏GPx活性显著增高,肝脏和肾脏MDA含量明显高于刘家峡。结果表明,黄河上游环境污染使得花背蟾蜍体内氧化胁迫加重,导致其组织脂质过氧化程度升高。  相似文献   

7.
以蚕豆为材料,考察气体甲醛(HCHO)胁迫对保卫细胞H2O2积累和叶片气孔导度、开度的影响。结果表明:气体HCHO胁迫增加了叶片中H2O2的积累,荧光显微分析发现在较低浓度(0.20.4μmol·L-1)气体HCHO胁迫下,保卫细胞中增加的H2O2主要分布在细胞质中,高浓度(0.81.6μmol·L-1)气体HCHO胁迫不仅增加保卫细胞质中H2O2的积累,而且显著增加叶绿体中H2O2的含量及积累H2O2的叶绿体数量,这说明在高浓度气体HCHO胁迫下蚕豆保卫细胞中增加的H2O2主要来源于叶绿体和细胞质。保卫细胞中H2O2积累的增加显著降低蚕豆的气孔导度和开度,从而导致蚕豆HCHO吸收效率下降。气体HCHO胁迫下叶片中抗氧化酶活性的变化可能是H2O2积累增加的主要原因,气体HCHO胁迫显著增强叶片中CAT和SOD的活性,但只有低浓度HCHO胁迫诱导叶片POD活性,叶片APX对HCHO胁迫很敏感,低浓度的气体HCHO对叶片APX活性都有显著的抑制作用。  相似文献   

8.
目的:观察硫化氢(H2S)对1型糖尿病大鼠肾脏的保护作用及其机制。方法:32只雄性SD大鼠随机分为4组:正常对照(NC)组、糖尿病(DM)组、糖尿病治疗(NaHS+DM)组和NaHS对照(NaHS)组(n=8)。DM组和NaHS+DM组大鼠采用链脲佐菌素(STZ)55 mg/kg腹腔注射诱导1型糖尿病模型。造模成功后,NaHS+DM组和NaHS组采用腹腔注射NaHS溶液56 μmol/kg干预治疗。8周后,测定大鼠24 h尿蛋白含量、肾重指数、空腹血糖、尿素氮、肌酐等指标;HE染色观察肾脏组织形态学变化;测定肾脏组织脂质过氧化物丙二醛(MDA)含量、超氧化物歧化酶(SOD)和Caspase-3的活性;Western blot检测肾脏组织Bcl-2和Bax蛋白表达。结果:与NC组相比,NaHS组各项指标均无显著差异,DM组,24 h尿蛋白含量、肾重指数、空腹血糖、尿素氮和肌酐水平均明显升高;HE染色结果显示肾小球基底膜增厚、系膜基质增多;MDA含量、Caspase-3活性和Bax蛋白表达明显增高;SOD活性和Bcl-2蛋白表达显著降低。与DM组相比,NaHS+DM组肾功能损伤明显减轻,肾脏组织形态学变化明显改善,MDA含量、Caspase-3活性和Bax蛋白表达明显下降,SOD活性和Bcl-2蛋白表达显著增高。结论:H2S对1型糖尿病大鼠肾脏具有保护作用,其机制可能与抑制氧化应激和细胞凋亡有关。  相似文献   

9.
为了探讨甲基紫精(MV)对丹参(Salvia miltiorrhiza)体内抗氧化防护系统的影响及其生理机制。以MV为诱导剂, 以敌草隆(DCMU)为抑制剂, 考察了MV与DCMU处理后丹参悬浮培养细胞中H2O2、丙二醛、还原型谷胱甘肽的含量以及抗氧化防护酶(超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT))活性变化和同工酶的表达差异。结果表明, MV处理显著提高了丹参培养细胞内H2O2、丙二醛以及还原型谷胱甘肽含量; MV处理使CAT、POD活性增强, 谱带颜色更亮, 条带增加。DCMU处理显著抑制了MV诱导的H2O2、丙二醛、还原型谷胱甘肽含量的增加, 抗氧化酶活性的升高和同工酶的表达。以上结果说明, MV可诱导丹参培养细胞叶绿体产生H2O2, H2O2激活了丹参培养细胞抗氧化防护系统以维持细胞正常的生理活动。  相似文献   

10.
《植物生态学报》2014,38(5):507
为了探讨甲基紫精(MV)对丹参(Salvia miltiorrhiza)体内抗氧化防护系统的影响及其生理机制。以MV为诱导剂, 以敌草隆(DCMU)为抑制剂, 考察了MV与DCMU处理后丹参悬浮培养细胞中H2O2、丙二醛、还原型谷胱甘肽的含量以及抗氧化防护酶(超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT))活性变化和同工酶的表达差异。结果表明, MV处理显著提高了丹参培养细胞内H2O2、丙二醛以及还原型谷胱甘肽含量; MV处理使CAT、POD活性增强, 谱带颜色更亮, 条带增加。DCMU处理显著抑制了MV诱导的H2O2、丙二醛、还原型谷胱甘肽含量的增加, 抗氧化酶活性的升高和同工酶的表达。以上结果说明, MV可诱导丹参培养细胞叶绿体产生H2O2, H2O2激活了丹参培养细胞抗氧化防护系统以维持细胞正常的生理活动。  相似文献   

11.
Life-history theory assumes that animals can balance the allocation of limited energy or resources to the competing demands of growth, reproduction and somatic maintenance, while consequently maximizing their fitness. However, somatic damage caused by oxidative stress in reproductive female animals is species-specific or is tissue dependent. In the present study, several markers of oxidative stress (hydrogen peroxide, H2O2 and malonadialdehyde, MDA) and antioxidant (catalase, CAT and total antioxidant capacity, T-AOC) were examined in striped hamsters during different stages of reproduction with experimentally manipulated litter size. Energy intake, resting metabolic rate (RMR), and mRNA expression of uncoupling protein 1 (UCP1) in brown adipose tissue (BAT) and UCP3 in skeletal muscle were also examined. H2O2 and MDA levels did not change in BAT and liver, although they significantly decreased in skeletal muscle in the lactating hamsters compared to the non-reproductive group. However, H2O2 levels in the brain were significantly higher in lactating hamsters than non-reproductive controls. Experimentally increasing litter size did not cause oxidative stress in BAT, liver and skeletal muscle, but significantly elevated H2O2 levels in the brain. CAT activity of liver decreased, but CAT and T-AOC activity of BAT, skeletal muscle and the brain did not change in lactating hamsters compared to non-reproductive controls. Both antioxidants did not change with the experimentally increasing litter size. RMR significantly increased, but BAT UCP1 mRNA expression decreased with the experimentally increased litter size, suggesting that it was against simple positive links between metabolic rate, UCP1 expression and free radicals levels. It may suggest that the cost of reproduction has negligible effect on oxidative stress or even attenuates oxidative stress in some active tissues in an extensive range of animal species. But the increasing reproductive effort may cause oxidative stress in the brain, indicating that oxidative stress in response to reproduction is tissue dependent. These findings provide partial support for the life-history theory.  相似文献   

12.
以“陇油7号”油菜为实验材料,研究了外源ATP对油菜幼苗耐寒性的影响。结果表明:与单独低温胁迫相比,外源ATP预处理再进行低温胁迫后,油菜幼苗MDA含量、O2-.含量均显著降低,而叶绿素含量、抗氧化酶活性(SOD、POD、CAT、APX)和RBOHD、RBOHF、CPK4、CPK5基因表达均增加;与外源ATP+低温相比,EGTA+外源ATP+低温处理下,MDA含量显著增加,总叶绿素含量、T-AOC酶活性、RBOHD、RBOHF基因表达均显著下降,DMTU+外源ATP+低温处理下,MDA含量显著增加,总叶绿素含量、Ca2+-ATPase酶活性、CPK4、CPK5基因表达均下降,表明外源ATP通过Ca2+和H2O2依赖性机制影响油菜幼苗的耐寒性。  相似文献   

13.
The antioxidant activity of some compounds buffer the free radicals generated either endogenously or exogenously, thus decreasing the potential damage mediated by oxidation. Recent studies documented that raloxifene has antioxidant properties in vitro. However, there are limited animal studies available to show raloxifene's antioxidant properties. We aimed to investigate the effects of raloxifene on antioxidant enzymes such as SOD, CAT and GPX, TrxR and the levels of GSH and MDA in heart, liver and brain cortex of ovariectomized female rats. Female Sprague Dawley rats weighing 300-350 g (n=24) were divided into three groups: (I) Eight non-ovariectomized rats were used as naive controls without any treatment (non-ovariectomized group, n=8). Five weeks after ovariectomy, (II) Ovariectomized placebo group (n=8) was given physiological saline, and (III) Raloxifene group (n=8) was given raloxifene 1 mg/kg sc. daily for 12 days. Ovariectomy induced significant increases on SOD, GPX, CAT activity and MDA levels in brain, heart and liver tissues compared to non-ovariectomized rats ( p<0.05). Raloxifene treatment led to decreased levels of SOD activity in heart, GPX activity in brain and CAT activity in liver tissue when compared to ovariectomized group ( p<0.05) but there was no change in activity of TrxR in all groups. The levels of MDA in brain, heart and liver tissues increased in ovariectomized group when compared to non-ovariectomized rats ( p<0.05). Raloxifene had a significant attenuating effect on the levels of MDA in brain and heart tissues. Our results also indicate that the levels of GSH in brain, heart and liver tissue decreased when compared to non-ovariectomized rats. Raloxifene treatment was observed to significantly increase the levels of GSH in brain and heart tissues ( p<0.05). However, there were insignificant differences for the GSH levels in liver tissues of ovariectomized placebo or raloxifene groups. In conclusion, our results demonstrate that raloxifene may be more effective against oxidative stress in heart and brain than in liver tissue.  相似文献   

14.
The present study was aimed to investigate the effects of ethylene glycol (EG) on serum marker enzymes, antioxidant defense systems and lipid peroxidation concentration (malondialdehyde=MDA) in various tissues of rats exposed to ethylene glycol. EG (1.25% or 2.5%) in drinking water was administered orally to rats (Sprague-Dawley albino) ad libitum for 21 days continuously. EG treatments caused different effects on the serum marker enzymes, antioxidant defense system and MDA content in various tissues of the treatment groups as compared with the controls. EG also caused a significant increase in the serum marker enzyme activities with 2.5% dosage whereas, no changes were not observed with 1.25% dosage of EG treatment. Lipid peroxidation significantly increased in all the tissues except for in the heart and stomach of rats treated with both dosages of EG. Also, the antioxidative systems were also seriously affected by EG. For example, SOD significantly decreased in the liver treated with both dosages whereas, SOD activity in the erythrocytes, kidney, heart and stomach were significantly increased and not changed in the brain with two dosages of EG. Also, while CAT activity significantly decreased in the erythrocytes, liver and kidney, the activity in the stomach significantly increased, but did not change in the brain and heart with two doses of EG. GR activity significantly decreased in the erythrocytes treated with both dosages of EG whereas GR was not affected in other tissues by EG treatment. GST activity significantly elevated in the heart and brain but did not change in the other tissues of rats treated with both dosages of EG. Meanwhile, GSH depletion in the erythrocytes of rats treated with 2.5% dosage of EG was found to be significant whereas, the level of GSH in the brain was significantly increased treated with both the dosages of EG. The observations presented led us to conclude that the administration of subacute EG promotes lipid peroxidatin content, elevates tissue damage serum marker enzymes and changes in the antioxidative systems in rats. These data, along with the determined changes suggest that EG produced substantial systemic organ toxicity in the erythrocyte, liver, brain, heart kidney and stomach during the period of a 21-day subacute exposure.  相似文献   

15.
In the present study, triphlorethol-A, a phlorotannin, was isolated from Ecklonia cava and its antioxidant properties were investigated. Triphlorethol-A was found to scavenge intracellular reactive oxygen species (ROS) and 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical, and thus prevented lipid peroxidation. The radical scavenging activity of triphlorethol-A protected the Chinese hamster lung fibroblast (V79-4) cells exposed to hydrogen peroxide (H2O2) against cell death, via the activation of ERK protein. Furthermore, triphlorethol-A reduced the apoptotic cells formation induced by H2O2. Triphlorethol-A increased the activities of cellular antioxidant enzymes like, superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx). Hence, from the present study, it is suggestive that triphlorethol-A protects V79-4 cells against H2O2 damage by enhancing the cellular antioxidative activity.  相似文献   

16.
The objective of this study was to explore the relationship between partially reduced oxygen species and the aging process. Effect of age on antioxidant defenses and prooxidant generation was evaluated by comparing the activities of superoxide dismutase, catalase, glutathione peroxidase and glutathione reductase, and rates of mitochondrial O-2 and H2O2 generation in the liver, heart, and brain of 3-month and 18-month-old Sprague-Dawley rats. In addition, comparisons of antioxidant defenses and mitochondrial prooxidant generation were made between short-lived insects and the rat tissues. Results indicated that antioxidant enzymes exhibit a mixed pattern of age-related alterations. In each organ of the rat examines, activities of some enzymes were up with age and of others down with age. The overall magnitude of decline in antioxidant defenses observed here and elsewhere in the literature was deemed to be unlikely to be functionally significant. In contrast, the rate of mitochondrial O-2 and H2O2 generation increased in various tissues of the rat. Antioxidant defenses in insects were comparable to tissues in the rat but rates of O-2 and H2O2 generations were notably higher. Results are interpreted to suggest that rates of prooxidant generation may be more crucial than antioxidant levels as possible longevity determinants.  相似文献   

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