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1.
GB对低温胁迫黄瓜叶绿体及SOD、POD同工酶的影响   总被引:6,自引:0,他引:6  
采用电镜观察和聚丙烯酰胺垂直板电泳法,研究了GB对低温胁迫下黄瓜幼苗叶绿体超微结构和SOD、POD同工酶的影响。结果表明,低温胁迫下,GB可使黄瓜幼苗叶绿体膜结构保持完好,而对照的叶绿体基粒破坏严重;与对照相比,GB处理对SOD、POD同工酶谱带数目均无影响,但POD同工酶的P2(Rf0.24)、P3(Rf0.30)、P4(Rf0.36)酶带的活性增加,SOD同工酶的S1(Rf0.14)、S5(Rf0.58)酶带活性较高,保持了黄瓜幼苗体内相对较高的抗氧化酶活性。GB可保护膜的完整性和稳定性,从而提高黄瓜幼苗的抗冷性。  相似文献   

2.
氧化钙对水稻幼苗的生理作用研究   总被引:24,自引:0,他引:24  
刘峰  张军 《植物学通报》2001,18(4):490-495
利用几种含钙化合物处理土壤后播种水稻,发现氧化钙具有显著的生理活性,土壤中含量在1.0%时明显增加旱育身水稻幼苗高度,增加根数和加快叶片发育速度,进一步研究发现0.5-1.5%CaO能够降低稻苗细胞电解质渗透率和脂质过氧化过程,增加叶绿素含量和体内可溶性蛋白含量,并能提高POD活性,增强稻苗抗低温能力。  相似文献   

3.
外源ABA对低温胁迫水稻过氧化物酶同工酶的影响   总被引:10,自引:0,他引:10  
采用聚丙烯酰胺垂直板电泳法,就外源ABA对低温胁迫下水稻幼苗过氧化物酶(POD)同工酶的影响进行了研究。结果表明,低温胁迫下,水稻幼苗长势明显下降,与其相应的过氧化物酶同工酶也发生了变化,外施ABA(10^-5mol/L)提高了水稻幼苗的抗寒能力,其相应的过氧化物酶同工酶却表现为部分酶活性增强,说明:(1)过氧化物同工酶的变化将引起植物对低温的抗性反应;(2)外源ABA引起自由基清除酶(如POD)活力的升高,是植物抗寒性增强的原因之一。  相似文献   

4.
利用几种含钙化合物处理土壤后播种水稻,发现氧化钙具有显著的生理活性,土壤中含量在1.0%时明显增加旱育秧水稻幼苗高度、增加根数和加快叶片发育速度。进一步研究发现0.5~1.5% CaO能够降低稻苗细胞电解质渗透率和脂质过氧化程度,增加叶绿素含量和体内可溶性蛋白含量,并能提高POD活性,增强稻苗抗低温能力。  相似文献   

5.
冷锻炼和ABA诱导水稻幼苗提高抗冷性期间膜保护系统的变化   总被引:16,自引:1,他引:15  
冷锻炼和ABA处理提高了水稻幼苗叶绿体SOD和GR活性及叶片抗氧化剂AsA和GSH的含量,降低了膜电解质泄漏,增强了幼苗的抗冷性.等电聚焦电泳分析表明,冷锻炼和ABA处理苗叶绿体SOD三条同工酶带和GR1、2、3和6同工酶带都有不同程度的增强.低温胁迫后,处理和未处理首的SOD、GR活性和ASA、GSH含量均有所下降.但处理苗的水平仍维持在未处理苗之上.亚胺环已酮可抑制因冷锻炼和ABA诱导增加的SOD和GR活性,并使叶片电解质泄漏增大.本试验结果表明冷锻炼或ABA诱导水稻幼苗抗冷性提高时,对防御活性氧的保护系统有类似的影响。  相似文献   

6.
杂交水稻金优63幼苗期SOD和POD特性研究   总被引:3,自引:0,他引:3  
对杂交水稻金优63幼苗不同时期的根、茎、叶进行SOD同工酶电泳分析,并测定SOD、POD活性。结果表明,自播种后第7天到第13天,幼苗的SOD同工酶在根、茎、叶中有明显的器官特异性,且SOD活性叶 >茎 >根。相同器官不同时期的SOD同工酶电泳谱带条数及SOD活性都有变化,且SOD活性强弱与SOD同工酶电泳谱带中有无Mn-SOD同工酶带有一定的关系。幼苗的POD活性在根、茎、叶中也有明显的器官特异性,茎中POD活性明显高于根和叶,且POD活性变化与SOD活性变化有一定的关系。  相似文献   

7.
磷酰胺除草剂APM对大麦、黑麦POD和蛋白质组分的影响   总被引:5,自引:2,他引:3  
不同浓度(1-4μmol/L APM)处理萌发的大麦、黑麦2种种子,在3μmol/L APM下,大麦中诱导出POD3(根系)和POD2,POD3(幼苗)同工酶谱带,黑麦则在左面μmol/L时诱导出POD2、POD4(根系)和POD4,POD5(幼苗)同工酶。蛋白质的变化则呈现出诱导出新的蛋白质或某些蛋白质谱带消失、活性减弱的特性,在3-4μmol/LAPM浓度下诱导出某些新的蛋白质谱带(31kD,大麦功苗;10kD,大麦根系;66kD,8kD黑麦根系)和某些谱带的消失或着色谱浅(88kD,大麦根系;66kD,大麦、黑麦幼苗),这一结果与POD同工酶变化结果基本吻合,可以认为3-4μmol/LAPM为上述作物的临界浓度。  相似文献   

8.
铅胁迫对黄瓜幼苗抗氧化酶活性及同工酶的影响   总被引:35,自引:2,他引:33  
采用水培法和聚丙烯酰胺凝胶电泳法,研究铅胁迫对黄瓜幼苗过氧化物酶(POD)、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)活性及同工酶的影响.结果表明,铅胁迫下黄瓜幼苗地上部POD活性除第5天外均随铅浓度的增加而逐渐降低,POD同工酶谱带和表达量减少.在0~500 mg·L-1铅浓度范围内,SOD活性随铅浓度的增加而增加,第7天达到最大值后急剧下降,低于同期对照值,900 mg·L-1铅处理SOD活性随时间的延长逐步降低,SOD酶谱带和表达量与铅浓度呈负相关.CAT酶谱带无明显变化,而表达量存在差异.  相似文献   

9.
ABA预处理对PEG胁迫下两种草坪草POD同工酶的影响   总被引:2,自引:0,他引:2  
以假俭草和狗牙根幼苗为材料,分别用PEG(聚乙二醇)处理和ABA预处理24h后再用PEG处理模拟干旱胁迫,研究在0~4d内POD同工酶电泳酶谱的结构及特征。结果表明,随着20%PEG处理时间延长,假俭草POD同工酶Rf 0.12和Rf 0.45区域的主要谱带颜色加深,POD活性提高。ABA预处理24h的假俭草POD同工酶谱带颜色却不同,其POD活性降低;而ABA预处理对狗牙根POD活性影响不明显。PEG处理后假俭草图谱中Rf值为0.56的酶谱随着胁迫时间延长而逐渐消失,但在处理第4d出现了新的Rf 0.324谱带,而ABA预处理24h就出现该谱带并一直存在;在Rf 0.22区域也存在几条类似的谱带。  相似文献   

10.
过去所得的实验表明,植物中ATPase活性变化与耐冷性有关。春小麦和番茄对低温是非常敏感的,当将这两种植物的幼苗在低温下培养时,质膜ATPase活性下降甚至消失。相反,在冬小麦中,当幼苗在低温下处理时,质膜ATPase活性增加.为了研究ATPase同工酶变化与植物耐冷性之间的关系,以小麦等四种植物为材料,在0-1℃低温下处理2天、2周和4周,然后检测幼苗根系内的ATPase同工酶,结果发现,在0-1℃培养时,幼苗根系内ATPase同工酶谱带减少,ATPase同工酶谱带变化与植物幼苗耐冷性呈一定相关性。ATPase同工酶谱带变化可能是受冷害所致。  相似文献   

11.
采用13C-CO2进行连续标记,研究水稻分蘖期和孕穗期光合碳在植株-土壤系统中的分配及其对大气CO2浓度升高(800 μL·L-1)和施氮(100 mg·kg-1)的响应.结果表明: CO2浓度升高显著提高分蘖期根系生物量和孕穗期地上部生物量,并使生物量根冠比在分蘖期增加,而在孕穗期减小.CO2浓度升高条件下,施氮使水稻地上部分生物量增加,却显著降低了孕穗期水稻根系生物量.CO2浓度升高使光合13C在孕穗期向土壤的输入显著增加,然而施肥并没有促进由CO2浓度升高驱动的光合13C在土壤中的积累,而且还降低了土壤中的光合13C的分配比例.综上,CO2浓度升高显著提高了稻田土壤光合碳输入,促进稻田有机碳周转;施氮促进了水稻地上部的生长,却降低了光合碳向地下的分配比例.  相似文献   

12.
采用13C-CO2进行连续标记,研究水稻分蘖期和孕穗期光合碳在植株-土壤系统中的分配及其对大气CO2浓度升高(800 μL·L-1)和施氮(100 mg·kg-1)的响应.结果表明: CO2浓度升高显著提高分蘖期根系生物量和孕穗期地上部生物量,并使生物量根冠比在分蘖期增加,而在孕穗期减小.CO2浓度升高条件下,施氮使水稻地上部分生物量增加,却显著降低了孕穗期水稻根系生物量.CO2浓度升高使光合13C在孕穗期向土壤的输入显著增加,然而施肥并没有促进由CO2浓度升高驱动的光合13C在土壤中的积累,而且还降低了土壤中的光合13C的分配比例.综上,CO2浓度升高显著提高了稻田土壤光合碳输入,促进稻田有机碳周转;施氮促进了水稻地上部的生长,却降低了光合碳向地下的分配比例.  相似文献   

13.
In naturally infested soil containingPythium ultimum, P. acanthicum andPhytophthora megasperma, onlyP. ultimum was associated with root rot and damped-off seedlings. Damping-off was promoted by low soil temperatures and by flooding. Seedling stands were markedly reduced when seed was pre-incubated in soil at 12°C but not at 25°C or 35°C. Dusting carrot seed with metalaxyl significantly increased seedling stands in the field at rates from 1.5–6 g kg−1 seed and in both flooded and unflooded, naturally infested soil at 3.15 g kg−1. In greenhouse experiments using artifically infested soil,P. ultimum andP. paroecandrum caused damping-off of carrot seedlings andRhizoctonia solani reduced root and shoot weights.R. solani caused damping-off in nutrient-enriched soil.P. acanthicum andP. megasperma were not pathogenic to seedlings, although both fungi colonized roots. Soil populations of allPythium spp., particularlyP. ultimum, increased during growth of seedlings and population growth ofP. megasperma was promoted by periodic flooding. Infestation of soil withP. acanthicum did not reduce damping-off of carrot seedlings byP. ultimum orP. paroecandrum, but significantly increased root and shoot weights and decreased root colonization byR. solani P. acanthicum has potential as a biocontrol agent againstR. solani.  相似文献   

14.
应用植物生长调节剂能显著提高作物的耐旱性,从而提高干旱条件下作物的产量(余叔文等 1978,王保民等 1980,Fletcher等 1984,1985)。多效唑(multieffects triazole;MET)是我国80年代生产的一种植物生长延缓剂,其化学名为(2RS,3RS)-1-(4-氯苯基)-4,4-二甲基-2-(1H-1,2,4-三唑-1-基)戊醇-3,它能显著延缓稻苗生长、促进分蘖、防止稻苗移栽后败苗(王熹等 1988a,b),提高  相似文献   

15.
鸭稻共作方式对水稻生长的影响   总被引:10,自引:0,他引:10  
对鸭稻共作生产方式下水稻几个生育期的株高、叶面积指数、生物量、根系活力、根系形态特征指标等进行了对比研究。结果表明,鸭稻共作生态模式中由于鸭子的活动,对水稻生长发育具有一定影响。与常规水稻栽培方式相比,鸭稻共作方式下水稻株高、叶面积指数、生物量有减小的趋势,而且在有效分蘖期和幼穗分化期存在着显著或极显著差异。鸭子活动对水稻根系生长状况(根/冠比、根系活力)也具有一定作用,与常规水稻栽培方式相比,鸭稻共作方式下水稻根冠比和根系活力有增加趋势,根冠比在幼穗分化期达到显著差异,根系活力在有效分蘖期存在显著差异;鸭稻共作方式下水稻根系总长变化无明显规律,根系表面积与常规栽培方式下相比无显著差异。  相似文献   

16.
Effect of nitrogen (N) deficiency on antioxidant status and Cd toxicity in rice seedlings was investigated. N deficiency resulted in a reduction of shoot growth but not root growth. The contents of N-containing compounds such as nitrate, chlorophyll, and protein decreased in leaves of rice seedlings grown under N deficiency. Accumulation of abscisic acid and H2O2 in leaves was induced by N deficiency. The content of ascorbate and the activities of ascorbate peroxidase, glutathione reductase, and catalase in N-deficient leaves were lower than their respective control leaves. However, glutathione content was not affected and superoxide dismutase activity was increased by N deficiency. Cd toxicity in N-deficient seedlings was more pronounced than that in N-sufficient ones. Pretreatment with ascorbate or L-galactono-1,4-lactone, a biosynthetic precursor of ascorbate resulted in a reduction of Cd toxicity enhanced by N deficiency. N deficiency also resulted in an enhancement of Cd uptake in rice seedlings. The possible mechanism of Cd toxicity enhanced by N deficiency is discussed.  相似文献   

17.
外源NO对缺镁胁迫下玉米幼苗生长和离子平衡的影响   总被引:2,自引:0,他引:2  
研究了在缺镁胁迫下,外源NO对缺镁玉米幼苗生长、根系活力和离子含量的影响。结果表明,缺镁胁迫使玉米幼苗株高、根长和干鲜重下降,根系活力降低,N元素在地上部和根部分配失调,新叶和老叶中Mg2+、Cu2+、Fe3+、Mn2+等离子含量下降,Ca2+、K+、Zn2+等离子含量上升。根中Mg2+离子含量下降,Ca2+、K+、Zn2+、Cu2+、Fe3+、Mn2+等离子含量上升。用100μmol·L-1一氧化氮供体硝普钠(SNP)处理后,玉米幼苗株高、根长、干重和鲜重均提高,根系活力增强,改善了N代谢,新叶中Ca2+、K+和Zn2+等离子含量下降,Mg2+、Cu2+、Fe3+和Mn2+等离子含量提高,老叶中Mg2+、Ca2+、K+和Zn2+等离子含量下降,Cu2+、Fe3+和Mn2+等离子含量提高,根中Mg2+、Ca2+、K+、Cu2+、Zn2+、Fe3+和Mn2+离子含量均下降。实验结果表明,NO保护玉米幼苗免受缺镁胁迫的影响。  相似文献   

18.
The changes of Ca2+ -ATPase activities of plasmolemma, and tonoplast membrane in roots and leaf chloroplasts in rice ( Oryza sativa L. ) seedlings were investigated for exploring the mechanism of cross adaptation to different stresses in the plants during the enhancement of chilling resistance induced by cold and salt pretreatment. The results indicated that the chilling resistance of rice seedlings was enhanced markedly by cold and salt pretreatment, but this enhancement was inhibited by Ca2+-chelate ethyleneglycol-bis-(β-aminoethyl ether) N, N-tetraacetic acid (EGTA) and the calmodulin inhibitor chlorpromazine (CPZ), it showed the calcium messenger system was involved in the course of chilling resistance formation. The Ca2+ -ATPase activity of root plasmolemma and tonoplast membrane as well as the Fe(CN)63- reduction in root plasmolemma in nonpretreated seedlings were declined markedly during the chilling stress. The Ca2+ -ATPase activities of plasmolemma, tonoplast membrane and chloroplasts as well as the Fe(CN)63- reduction of plasmolemma were enhanced by cold pretreatment. The activities of Ca2+ -ATPase and Fe(CN)63- reduction of plasmolemma, as compared with nonpretreated seedlings has increased by 86.80% and 93.93% respectively. The effect of salt pretreatmerit on the Ca2+ -ATPase activities of plasmolemma and chloroplast as well as Fe(CN)63- reduction of plasmolemma were similar to the effect of cold pretreatment. Although the Ca2+ -ATPase activity of tonoplast membrane was declined by salt pretreatment, the activity was none the less markedly higher than that of the nonpretreated seedlings. It showed that there was stronger ability of maintaining calcium homeostasis in the seedlings following two pretreatment. The results displayed that the enhancement of chilling resistance in rice seedlings with cold and salt pretreatment might be related to the effective activation of Ca2+ -ATPase in two pretreatment seedlings, because the activated Ca2+ -ATPase could bring back rapidly the raised cytoplasmic Ca2+ concentration from chilling stress to the state of calcium homeostasis, leading to the maintenance of normal functioning of the calcium messenger system and physiological metabolism. It seems that the adapated mechanism to chilling stress in two seedlings with cold and salt pretreatment was similar.  相似文献   

19.
Previous studies suggest that the positive response of transplanted rice (Oryza sativa L.) to nursery fertiliser application was due to increased seedling vigour or possibly to increased nutrient content. This paper presents results of two glasshouse experiments designed to test the hypothesis that seedling vigour was responsible for the response of transplanted seedlings to nursery treatments. The aim of the present study was to explore the concept of seedling vigour of transplanted rice and to determine what plant attributes conferred vigour on the seedlings. Seedling vigour treatments were established by subjecting seedlings to short-term submergence (0, 1 and 2 days/week) in one experiment and to leaf clipping or root pruning and water stress in another to determine their effect on plant growth after transplanting. Submerging seedlings increased plant height but depressed shoot and root dry matter and root:shoot ratio of the seedling at 28 days after sowing. After transplanting these seedlings, prior submergence depressed shoot dry matter at 40 days. Nursery nutrient application increased plant height, increased root and shoot dry matter, but generally decreased root:shoot ratio. Pruning up to 60% of the roots at transplanting decreased shoot and root dry matter, P concentration in leaves at panicle initiation (PI) and straw dry matter and grain yield at maturity. By contrast, pruning 30% of leaves depressed shoot and root dry matter by 30% at PI, and root dry matter and straw and grain yield by 20% at maturity. The combined effects of leaf clipping and root pruning on shoot, root and straw dry matter were largely additive. It is concluded that the response of rice yield to nursery treatments is largely due to increased seedling vigour and can be effected by a range of nutritional as well as non-nutritional treatments of seedlings that increase seedling dry matter, nutrient content, and nutrient concentration. Impairment of leaf growth and to a lesser extent root growth in the nursery depressed seedling vigour after transplanting. However, rather than increasing stress tolerance, seedling vigour was more beneficial when post transplant growth was not limited by nutrient or water stresses.  相似文献   

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