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1.
《Journal of plant nutrition》2013,36(7):1259-1270
Abstract

The effect of cadmium (Cd) toxicity on growth, lipid peroxidation, and antioxidant enzymes was studied using two rice cultivars, Bing 97252 with low and Xiushui 63 with high grain Cd accumulation. Plants were exposed to 0–5 μ M Cd in hydroponic culture. Cadmium stress inhibited plant height and chlorophyll content and altered melondialdehyde (MDA) content and the activities of superoxide dismutase (SOD), catalase (CAT), and peroxidase (POD). Roots and shoots responded differently to Cd in terms of antioxidant enzyme activity. Generally, the activities of SOD, POD, and CAT decreased with increase in Cd level, while the activity of MDA increased with increase in Cd level. With the increase in Cd concentration in nutrient solution, MDA content in shoots and roots of Xiushui 63 increased at a much higher rate than did that of Bing 97252 at both growth stages. At booting stage, a decrease of 46%–52% in SOD activity was noted in plant roots grown under 5 μ M Cd, while at tillering stage the decrease was 13%–19% compared with the control. A significant decrease in chlorophyll content and plant height was noted under higher Cd treatment (1.0 and 5.0 μ mol) at two stages. The higher MDA and lower chlorophyll content in the cultivar Xiushui 63 showed that it is more sensitive to Cd than the cultivar Bing 97252.  相似文献   

2.
To check the efficacy of potassium in alleviating oxidative stress under salt stress, salt-tolerant (Indent-1) and salt-sensitive (Red Ball) tomato (Lycopersicon esculentum Mill.) genotypes were exposed to three levels of sodium chloride (NaCl) (0, 75, 150 mM) and two levels of potassium (4.5 and 9 mM) in solution and foliar form. Thirty days of treatments revealed that increasing NaCl stress increased lipid peroxidation (malondialdehyde, MDA) and correspondingly the activity of antioxidant enzymes (superoxide dismutase, SOD; catalase, CAT; and glutathione reductase GR) in both genotypes. However, higher potassium (K) level in solution or foliar spray during the salt-induced stress decreased MDA and antioxidant activity and increased the growth in salt-tolerant genotype than in the salt-sensitive genotype. Decrease in MDA concentration, activity of antioxidant enzymes, and increase in the growth of tomato plants by the application of potassium under salt stress suggest that potassium is an effective ameliorating agent against salt-induced oxidative damage.  相似文献   

3.
外源一氧化氮对NaCl胁迫下番茄幼苗活性氧代谢的影响   总被引:3,自引:1,他引:2  
研究了在100 mmol/L NaCl胁迫下,外源NO供体硝普钠(SNP)处理对耐盐性不同的2个番茄品种(沪番‘1480’和沪番‘2496’)幼苗叶片活性氧(ROS)水平和保护酶活性的影响。结果表明,外源NO提高了盐胁迫下SOD、POD、CAT和APX活性,AsA和GSH含量以及脯氨酸和可溶性糖含量,降低了MDA含量和O2- 产生速率;与耐盐品种‘1480’相比,NO处理对盐敏感品种‘2496’效果更明显。表明外源NO通过促进盐胁迫下保护酶活性、抗氧化剂和渗透调节物质的提高,降低ROS水平,缓解NaCl胁迫对番茄幼苗生长的抑制作用,增强植株的耐盐能力。  相似文献   

4.
A pot experiment was carried out to study the effects of three arbuscular mycorrhizal fungi (AMF), including Glomus intraradices, Glomus constrictum and Glomus mosseae, on the growth, root colonization and Cd accumulation of marigold (Tagetes erecta L.) at Cd addition levels of 0, 5 and 50 mg kg-1 in soil. The physiological characteristics, such as chlorophyll content, soluble sugar content, soluble protein content and antioxidant enzyme activity, of Tagetes erecta L. were also investigated. The symbiotic relationship between the marigold plant and arbuscular mycorrhizal fungi was well established under Cd stress. The symbiotic relationship was reffected by the better physiobiochemical parameters of the marigold plants inoculated with the three AMF isolates where the colonization rates in the roots were between 34.3% and 88.8%. Compared with the non-inoculated marigold plants, the shoot and root biomass of the inoculated marigold plants increased by 15.2%- 47.5% and 47.8%-130.1%, respectively, and the Cd concentration and accumulation decreased. The chlorophyll and soluble sugar contents in the mycorrhizal marigold plants increased with Cd addition, indicating that AMF inoculation helped the marigold plants to grow by resisting Cd stress. The antioxidant enzymes reacted differently with the three AMF under Cd stress. For plants inoculated with G. constrictum and G. mosseae, the activities of superoxide dismutase (SOD) and catalase (CAT) increased with increasing Cd addition, but peroxidase (POD) activity decreased with increasing Cd addition. For plants inoculated with G. intraradices, three of the antioxidant enzyme activities were significantly decreased at high levels of Cd addition. Overall, the activities of the three antioxidant enzymes in the plants inoculated with AMF were higher than those of the plants without AMF inoculation under Cd stress. Our results support the view that antioxidant enzymes have a great influence on the biomass of plants, and AMF can improve the capability of reactive oxygen species (ROS) scavenging and reduce Cd concentration in plants to alleviate Tagetes erecta L. from Cd stress.  相似文献   

5.
郭锋  吴伟锋  冯瑜  许剑敏  马祥爱 《核农学报》2020,34(10):2335-2342
硒能够缓解镉胁迫对植物产生的毒害。为探明硒(Se)和镉(Cd)交互作用对植物的影响,本研究以西葫芦为材料,采用沙培的方式,研究了不同浓度Se(0.5、2.0和4.0 mg·L-1)与Cd(0.2、0.4和0.6 mg·kg-1)交互作用对西葫芦幼苗生长和抗氧化酶活性的影响。结果表明,单一Cd胁迫下,随着Cd浓度的增加,其对西葫芦幼苗的生长和抗氧化酶活性具有一定的促进作用。Se与Cd交互作用对西葫芦幼苗生长和抗氧化酶活性的影响与Se和Cd的浓度有关。不同浓度Se与低中浓度Cd(0.2和0.4 mg·kg-1)交互作用可使Cd胁迫下西葫芦幼苗苗高、鲜重和干重显著增加,与高浓度Cd(0.6 mg·kg-1)交互作用却抑制了西葫芦幼苗的生长。与单一Cd胁迫相比,不同浓度Se与0.2 mg·kg-1Cd交互作用可显著提高西葫芦幼苗SOD和POD活性,不同浓度Se与0.4和0.6 mg·kg-1Cd交互作用抑制了西葫芦幼苗SOD和POD活性,且Cd浓度越高,差异越明显。在高浓度(0.6 mg·kg-1)Cd胁迫下,Se浓度越高,2种元素的交互作用对西葫芦幼苗生长和抗氧化酶活性产生的抑制作用越大。Cd胁迫下,外源Se可以降低西葫芦幼苗Cd含量,同时提高Se含量。较低浓度的Se能够有效缓解Cd对西葫芦幼苗造成的毒害作用,综合来看,2.0 mg·L-1Se与Cd的交互作用对西葫芦幼苗的生长和抗氧化酶活性的促进作用最强。本研究表明施加外源Se缓解Cd胁迫对植物的毒害时,应同时考虑Cd的污染程度和施加Se的量,为Cd污染治理提供了一定的参考依据。  相似文献   

6.
We studied the effects of salinity stress on biomass production, photosynthesis, water relations, and activity of antioxidant enzymes in two cultivars of common bean (‘HRS 516’ and ‘RO21’). Seedlings were raised in nutrient solution supplemented with increasing concentrations of sodium chloride (NaCl) at 0, 50, and 100 mM. After 10 days of salinity treatment, the plants were sampled to determine the enzyme activity, protein content and dry biomass. Plant biomass and activities of most antioxidant enzymes were adversely affected by salinity stress. Leaf osmotic potential was found to be directly proportional to salt stress. The cultivar, ‘HRS 516’ accumulated less sodium (Na+) than ‘RO21’. Under salinity, superoxide dismutase (SOD) enzyme activity increased 3 folds in both bean cultivars (‘HRS 516’ and ‘RO21’) compared to other antioxidants (APX, CAT, and GR). While not neglecting other possible factors, photosynthesis and biomass remains reliable indicators of plant functioning in response to salinity stress.  相似文献   

7.
为探究外源褪黑素(MT)对镉胁迫下豌豆种子萌发和幼苗生长影响的生理机制,以豌豆品种中豌6号为试验材料,采用培养皿滤纸法,研究不同浓度外源褪黑素(0、50、100、200、400 μmol·L-1)对镉胁迫(0、10、100 μmol·L-1)下豌豆种子萌发、幼苗生长及生理指标的影响。结果表明,镉胁迫显著抑制了豌豆种子萌发及幼苗生长;施用外源褪黑素能够显著提高镉胁迫下豌豆种子的发芽势和发芽率,促进豌豆幼芽和幼根的生长,提高豌豆幼芽的超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性,并降低丙二醛(MDA)和镉含量。当Cd2+浓度为10 μmol·L-1时,施用100 μmol·L-1 MT较未添加MT豌豆的发芽势、发芽率、芽长、根长、芽鲜重和根鲜重分别增加90.47%、82.94%、127.27%、129.47%、131.71%和83.33%,SOD、POD和CAT活性分别提高24.17%、40.50%和76.91%,MDA含量下降57.64%,镉含量下降57.62%。结果表明,适宜浓度的外源褪黑素能够通过提高抗氧化酶活性,降低活性氧的积累,抑制豌豆幼苗对镉的吸收,从而缓解镉胁迫对豌豆幼苗的毒害作用,促进种子萌发及幼苗生长。本研究结果为进一步探索外源褪黑素缓解豌豆镉胁迫的机理提供了一定的理论依据。  相似文献   

8.
  【目的】  盐胁迫是影响全球作物生长的主要非生物胁迫之一,添加外源硅可有效提高植物对盐胁迫的抗性。本研究通过水培试验,分析硅对盐胁迫下水稻生长、光合系统、钠钾含量、抗氧化酶活性和钠钾平衡关键基因表达量的影响,以探究硅缓解水稻盐胁迫的机制。  【方法】  供试材料为日本晴水稻 (Oryza sativa L. cv. Nipponbare),设置NaCl 0 (CK)、50 (Na1) 和100 mmol/L (Na2) 3个盐胁迫浓度与Na2SiO3 0 (Si0)、0.5 (Si1) 和1.5 mmol/L (Si2) 3个硅浓度,共9个处理。处理5天后,测定水稻长度与生物量、光合与蒸腾速率、氧化伤害、钠钾含量。结果表明,在100 mmol/L NaCl与1.5 mmol/L硅处理下,硅盐互作效果最显著,据此进一步测定了该处理下水稻的抗氧化酶活性与钠钾转运关键基因表达量。  【结果】  盐胁迫显著降低了水稻地上部与地下部的长度与干重,同时显著降低了光合速率、蒸腾速率和叶绿素含量,并明显促进丙二醛的累积。盐胁迫下,外源硅显著增加了水稻地上部高度与干重,但对地下部长度与干重无显著影响;盐胁迫下添加硅显著提高了叶片光合速率和叶绿素含量,显著降低了丙二醛含量,但对蒸腾速率无显著影响。盐胁迫均引起地上部与地下部钠含量显著上升与钾含量显著下降,盐胁迫下添加外源硅可显著降低地上部钠含量,但是对钾含量没有显著影响,并且硅对根系钠钾含量均无显著影响。总体而言,100 mmol/L NaCl处理在水稻中造成的生长抑制、氧化伤害与钠钾失衡等胁迫伤害比50 mmol/L NaCl处理更为严重,而添加1.5 mmol/L的硅对盐胁迫的缓解效果优于添加0.5 mmol/L的硅。在100 mmol/L NaCl处理下,添加1.5 mmol/L的硅显著提高了SOD、CAT、APX的活性,但是对POD的活性无显著影响;同时,添加1.5 mmol/L硅显著提高了盐胁迫下水稻钾吸收基因 (OsHAK1、OsHAK7、OsHAK11与OsHAK12)、钠外排基因 (OsSOS1) 与钠区隔化基因 (OsNHX1、OsNHX3与OsNHX5) 的表达。  【结论】  营养液中添加1.5 mmol/L的硅比0.5 mmol/L的硅对盐胁迫下水稻的生长、光合系统和离子平衡调控效果更好,能更有效地缓解水稻盐胁迫。硅可通过调控SOD、CAT、APX等抗氧化酶活性与钾吸收、钠外排和钠区隔化等钠钾平衡关键基因的表达,从而缓解水稻盐胁迫。  相似文献   

9.
研究了外源Ca2 对盐胁迫下耐盐性不同的两个水稻品种(武育粳3号和IR36)几种抗氧化酶活性及膜脂过氧化的影响。结果表明:适量的Ca2 供应能有效提高水稻叶片超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)以及抗坏血酸过氧化物酶(APX)的活性,使之维持在较高的水平上,并降低了丙二醛(MDA)含量和细胞膜透性。此外,外源Ca2 还增加了抗坏血酸(AsA)的含量,增强了水稻幼苗的根系活力。这表明适量的外源Ca2 供应提高水稻耐盐性的原因之一,在于其增强了植株的活性氧清除能力以及对细胞膜的稳定作用。  相似文献   

10.
采用盆栽试验,通过研究不同浓度镉(0、5、25、50、100μg·g-1)胁迫下红果龙葵和少花龙葵幼苗根、茎和叶的生物量变化、镉吸收量、镉转移率、镉富集系数和叶片抗氧化酶(SOD、POD)活性、叶片可溶性蛋白和游离脯氨酸含量等指标的变化,比较2种基因型龙葵富集镉的差异。结果表明,2种基因型龙葵富集重金属镉存在明显差异。与对照相比,在Cd胁迫浓度≥25μg·g-1时,2种龙葵的生物量显著下降(P〈0.05),而少花龙葵的下降趋势较红果龙葵小;随着Cd胁迫浓度的增加,2种龙葵根、茎和叶的Cd吸收量显著上升(P〈0.05),且根部Cd含量高于茎和叶,而少花龙葵的根、茎和叶中的Cd含量均高于红果龙葵,2种龙葵的镉转移率和富集系数除5μg·g-1Cd胁迫外,均小于1,且少花龙葵对镉转移率和镉富集系数均大于红果龙葵。2种龙葵叶片可溶性蛋白、游离脯氨酸含量以及抗氧化酶(SOD、POD)活性均表现为先上升后下降,均表现为少花龙葵上升幅度大而下降幅度较小。综合各项指标表明,2种龙葵均不是Cd的超积累植物,少花龙葵的耐Cd胁迫能力较红果龙葵强。  相似文献   

11.
以圆叶决明2228(Chamaecrista rotundifolia)为材料,采用土培法,研究重金属镉对圆叶决明2228保护酶(SOD和POD)、生长(生物量、株高、SPAD值和含水量等)的影响,同时分析圆叶决明对镉的吸收效果。结果表明,重金属镉胁迫下圆叶决明2228保护酶活性均随着镉处理浓度的升高呈先升后降的趋势,其中20mg·kg^-1镉胁迫下SOD酶活性最强,50mg·kg^-1镉胁迫下POD酶活性最强;镉对圆叶决明的生长抑制表现为抑制植物的生长,降低株高和生物量,但与叶绿素相关的SPAD值无显著变化。通过镉含量分析可知,圆叶决明2228吸收的镉量均未超过镉临界指标含量,因此该植物不是镉超富集植物,但生物富集系数大于1,为镉耐性植物。由于圆叶决明生长过程中生物量大,在生长过程中可通过生物量带走部分重金属镉,圆叶决明2228具有修复轻度镉污染土壤的潜能。  相似文献   

12.
ABSTRACT

To better understand the mechanisms responsible for differences in uptake and distribution of cadmium (Cd), nutrient-solution experiments were conducted with different varieties of rice (Oryza sativa), ‘Khitish’ and ‘CNRH3’. The plants were grown in a complete nutrient solution with different levels of pCd (-log free Cd+2 activity) and pFe [-log free iron (Fe+2) activity]. The required concentrations of chelating agent and metals were determined using a computerized chemical equilibrium model such as Geochem-PC. Experimental treatments included a combination of four pCd activity levels (0, 7.9, 8.2, and 8.5) applied as Cd (NO3)2 4H2O, and two pFe activity levels (17.0 and 17.8) applied as FeCl3. The application of both Cd and Fe in solution culture significantly affected plant growth, yield, and Cd accumulation in plant tissue. In general, yield of rice was decreased by an increase in amount of solution Cd; however, yield response varied among the cultivars. At the 7.9 pCd level, yields of rice cultivars ‘Khitish’ and ‘CNRH3’ were reduced to 69% and 65%, respectively, compared with control plants. Root Cd concentrations ranged from 2.6 mg kg?1 (control plants) to 505.7 mg kg?1 and were directly related to solution Cd concentrations. In rice plants, Cd toxicity symptoms resembled Fe chlorosis. Differential tolerance of varieties to phytotoxicity was not readily visible, but a significant interaction of substrate Cd and variety was obtained from dry-matter yields. Significant interactions indicated that response of tissue Cd concentration, plant Cd uptake, and translocation of Cd to the aerial parts were dependent on variety as well as substrate Cd. Uptake of Cd by roots was significantly higher than by shoots. Higher Cd uptake by rice plants decreased the uptake of other beneficial metals.

The effect of Cd and Fe on the rate of phytometallophore release was also studied in the nutrient solution. Among the rice genotypes, ‘Khitish’ was the most sensitive to Cd toxicity. In both genotypes, with the onset of visual Cd-toxicity symptoms, the release of phytometallophore (PM) was enhanced. Among the rice varieties, ‘Khitish’ had the highest rate of PM release. Treatments with the metal ions studied produced a decrease in chlorophyll and enzyme activity. A decrease in concentrations of chlorophyll pigments in the third leaf was observed due to the highest activity level of Cd (pCd 7.9). Activities of enzymes such as peroxidase (POD) and superoxide dismutase (SOD) are altered by toxic amounts of Cd. Changes in enzyme activities occurred at the lowest activity of Cd (pCd 8.5) in solution. Peroxidase activity increased in the third leaf. Results showed that in contrast with growth parameters, the measurements of enzyme activities may be included as early biomarkers in a plant bioassay to assess the phytotoxicity of Cd-contaminated solution on rice plants. Evidence that Cd uptake and translocation are genetically controlled warrants the selection of varieties that assimilate the least Cd and that translocate the least metal to the plant part to be used for human and animal consumption.  相似文献   

13.
为探究葛根素(PUE)对小白菜镉(Cd)损伤的保护效果,采取外源添加不同葛根素处理,将小白菜植株随机分为7组,即对照组(CK)、PUE30组(葛根素30μmol·L-1)、Cd4组(镉4 mg·L-1)、Cd与PUE共处理组(4+15、4+30、4+45、4+60)。处理30 d后,观察小白菜植株生长状况、测定Cd富集量及抗胁迫生理活性物质,包括叶绿素、抗氧化酶(SOD、APX、CAT、POD)活性及过氧化氢(H2O2)、丙二醛(MDA)Vc、可溶性蛋白含量,并用实时荧光定量PCR(qRT-PCR)技术检测抗氧化酶基因(SOD、POD、APX及CAT)表达量。结果表明,与CK组相比,Cd4组小白菜根中Cd含量、H2O2和MDA含量显著升高,而地下部鲜重、地上部鲜重、抗氧化酶(SOD、POD和APX)活性和叶绿素含量整体显著降低(P<0.05)。与Cd4组相比,Cd+PUE共处理组小白菜氧化损伤程度减轻,H2O2  相似文献   

14.
铅胁迫对芦竹抗氧化酶活性的影响   总被引:3,自引:1,他引:2  
韩志萍  杨志红  吴湘  张华 《核农学报》2010,24(4):846-850
研究了在不同浓度Pb2+胁迫下,芦竹(Arund donax Linn.)体内超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)3种抗氧化酶活性随时间的变化情况。结果显示,芦竹遭受Pb2+胁迫初期,3种酶活性较对照值有明显增高;随着污染浓度加大和时间延长,3种酶活性又出现下降,降低程度与受污染浓度和时间有关。Pb2+胁迫初期,芦竹幼苗体内的抗氧化能力增强,表现出对抗氧化酶的激活效应,但随着植物生长,Pb2+在植物体内迁移,其叶片内抗氧化能力降低,表现出对抗氧化酶的抑制效应。抗氧化酶活性产生的效应强弱及维持期长短与Pb2+胁迫浓度有关,胁迫初期一般是Pb2+浓度高,抗氧化酶活性升高明显;胁迫后期Pb2+浓度低,活性维持期长。Pb2+胁迫对过氧化氢酶和过氧化物酶的影响没有超氧化物歧化酶的影响显著,但3种酶活性的变化趋势基本一致。  相似文献   

15.
【目的】研究NaCl胁迫下,耐盐和非耐盐品系大麦幼苗叶片抗氧化系统及抗坏血酸–谷胱甘肽循环的反应差异。【方法】以耐盐品系12pj-118和非耐盐品系12pj-045为材料进行了水培试验。营养液中设定了6个NaCl浓度:0、100、200、300、400、500 mmol/L。在大麦苗生长至3叶1心时,取样分析测定叶片中活性氧代谢、抗氧化酶活性以及抗坏血酸–谷胱甘肽循环变化。【结果】随着NaCl胁迫的增加,2个品系的O_2~-产生速率、H_2O_2含量和MDA含量均逐渐增加,耐盐品系12pj-118的增幅均小于非耐盐品系12pj-045;SOD、POD、CAT、APX、GR活性、As A含量、GSH含量和As A/DHA比值均呈先上升后下降的趋势。12pj-118的SOD、POD、CAT活性在各NaCl浓度胁迫下的增幅大于12pj-045,降幅小于12pj-045;12pj-118的APX、GR活性在同一盐浓度胁迫下的增幅均大于非耐盐品系12pj-045,降幅小于12pj-045;在各NaCl浓度下,12pj-118的As A含量和As A/DHA比值较对照增幅均大于12pj-045;GSH/GSSG比值呈波状变化,12pj-118在较高NaCl浓度下,仍能够维持较高的GSH含量和GSH/GSSG比值。显示12pj-118较12pj-045有较强的耐盐性。【结论】耐盐和非耐盐品系大麦叶片抗氧化及抗坏血酸–谷胱甘肽循环系统在NaCl胁迫下的反应不同。在一定范围内,随着盐胁迫增强,耐盐品系12pj-118叶片SOD、POD、CAT、APX和GR活性、As A和GSH含量增幅均大于非耐盐品系12pj-045,降幅小于12pj-045,表明叶片抗氧化及抗坏血酸–谷胱甘肽循环系统与大麦幼苗抗盐性密切相关。  相似文献   

16.
研究了不同Cd浓度(0、10、25、50、100、200mg.kg-1)对麻疯树的生理指标和Cd积累特征的影响。结果表明,在土壤中的Cd≤50mg.kg-1时,麻疯树的生长未受到明显影响(P〉0.05),当Cd≥100mg.kg-1时,其生长受到明显抑制(P〈0.05);同时,麻疯树叶中叶绿素含量随土壤中Cd浓度的增加而下降,而其体内Cd含量则呈增加趋势,且表现根〉茎〉叶的富集特征;麻疯树叶中的SOD、POD活性随Cd浓度的增加呈先升高后降低趋势,而CAT活性仅在Cd为200mg.kg-1时显著增加,麻疯树叶中的MDA、脯氨酸、可溶性糖和可溶性蛋白、酸溶性巯基和谷胱甘肽含量随Cd浓度的增大呈增加趋势,这可在一定程度上缓解金属Cd对麻疯树的毒害。因此,麻疯树在重金属镉污染土壤修复方面具有一定的应用潜能。  相似文献   

17.
喷施硅铈溶胶缓解镉铅对小白菜毒害的研究   总被引:1,自引:0,他引:1  
通过大田试验,在轻度镉-铅复合污染菜地向小白菜叶面喷施不同浓度的硅溶胶、铈溶胶及硅铈复合溶胶,研究其对产量、品质、抗氧化酶活性及Cd、Pb吸收的影响。结果表明,喷施硅铈溶胶均能促进小白菜生长,增加小白菜生物量和提高维生素C、可溶性糖的含量,降低亚硝酸盐的含量;显著增强抗氧化系统保护酶(SOD、POD)活性和降低小白菜地下部、地上部中镉、铅的含量及累积量。在不同浓度的施硅和施铈处理中,喷施0.50 g kg-1SiO2处理和0.20 g kg-1CeO2处理在增产、提升品质和缓解重金属对小白菜毒害上效果最佳,喷施硅铈复合溶胶虽效果显著,但与单独施硅、施铈相比无明显提高。  相似文献   

18.
采用急性染毒方法研究Cd2+胁迫对不同发育阶段中华稻蝗SOD、CAT、POD活性的影响。结果表明,在Cd2+的作用下,不同发育阶段中华稻蝗体内SOD、CAT、POD活性均发生变化。SOD、CAT、POD 3种酶对Cd2+有一定的耐受性:当Cd2+浓度在这3种酶的耐受范围内酶活性提高,反之酶活性降低。Cd2+对不同发育阶段虫体3种抗氧化酶的影响不同:3龄若虫SOD、POD活性最高;雌性成虫CAT活性最低,而3龄雄性若虫CAT活性最高。  相似文献   

19.
Genotypic differences in arsenic (As) and cadmium (Cd) uptake and their translocation within rice seedlings grown in solution culture were investigated. Arsenic uptake and its translocation differed significantly between eight cultivars. The largest shoot and root As concentrations were found in cultivar ‘TN1’ and ‘ZYQ8’, while cultivar ‘JX-17’ had the lowest As concentration. Arsenic concentration in shoot or root of ‘JX-17’ was about 50% of that in cultivar ‘ZYQ8’. Specific Arsenic uptake (SAU) was found significantly different between rice cultivars, which was about 2-fold higher of ‘ZYQ8’ than that of ‘JX-17’. The Cd accumulation also differed significantly between cultivars. Rice cultivar ‘JX-17’ had the highest ability in Cd uptake, but the lowest ability in Cd translocation from root to shoot. The transfer factor (TF) of Cd had an important effect on Cd accumulation by rice seedlings. Arsenic can competitively inhibit P uptake by rice seedlings, P concentrations in shoots, or roots treated with As were significantly lower than those without As addition. However, the concentrations of P and As were positively correlated within these genotypes. The Cd immobilization by cell wall was an important mechanism for Cd detoxification. The cell wall bound 21–44% of total Cd in shoots and 25–59% of total Cd in roots of these tested genotypes. The genotypic differences in As and Cd uptake and translocation within rice seedlings provide the possibility of selecting and breeding genotypes and /or cultivars with reduced levels of As and Cd in rice grains.  相似文献   

20.
为探讨芹菜在重金属镉、铅胁迫下的生理变化规律和抗氧化酶基因的表达特性,采用营养液培试验,研究镉(Cd)、铅(Pb)单一及复合胁迫对芹菜体内Cd/Pb富集、叶绿素、丙二醛(MDA)、谷胱甘肽(GSH)含量及抗氧化酶(SOD、POD)活性的影响,并用RT-q PCR技术检测了根尖细胞内抗氧化酶基因(Cat、Gpx、Mn-sod及Apx)的表达特性。结果表明,Cd~(2+)、Pb~(2+)单一及复合胁迫下芹菜茎叶中Cd~(2+)、Pb~(2+)含量均随胁迫浓度增大而逐渐增大,说明芹菜对Cd~(2+)、Pb~(2+)的吸收互为协同作用;6~8 mg·L-1Cd~(2+)和60~80 mg·L-1Pb~(2+)单一及复合处理对芹菜整个生长期内叶绿素、MDA、GSH含量及SOD、POD活性的影响均达到极显著水平(P0.01);低浓度下单一及复合胁迫对叶绿素合成有促进效应,高浓度、长时间胁迫时,叶绿素含量显著降低;单一及复合胁迫对MDA、GSH含量及SOD、POD活性的影响均为Cd~(2+)-Pb~(2+)交互Cd~(2+)Pb~(2+),但单一Cd~(2+)浓度≥4 mg·L-1时,叶绿素含量大于Cd~(2+)-Pb~(2+)交互及单一Pb胁迫;Cd~(2+)、Pb~(2+)对芹菜叶POD和SOD活性的影响相似,均表现为"低促高抑";MDA、GSH含量随重金属浓度的升高而逐渐增加;单一及复合处理下Cat、Gpx、Mn-sod及Apx表达模式基本一致,其表达量的降低幅度为Cd~(2+)-Pb~(2+)交互Cd~(2+)Pb~(2+)。综上,Cd~(2+)、Pb~(2+)胁迫对芹菜的生理和抗氧化系统均造成了一定的损伤,二者具有协同性,这为江西省鄱阳湖区芹菜的安全生产提供了理论依据。  相似文献   

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