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1.
The effects of different concentrations of copper sulfate on rootand shoot growth of maize(Zea mays L.) and the uptake and accumulation of Cu2+ by its roots and shoots were investigated in the present study. The concentrations of opper sulfate (CuSO4.5H2O) used were in the range of 10-5-10-3mol/L. Root growth decreased progressively with increasing concentration of Cu2+ in solution. The seedlings exposed to 10-3 mol/L Cu exhibited substantial growth reduction, yielding only 68% of the root length of the control. The shoot growth of the seedlings grown at 10-5-10-4 mol/L Cu2+ were more or less than the same as the control seedlings. The leaves treated with 10-3 mol/L Cu2+ were obviously inhibited in shoot growth. The fresh and dry weights both in roots and shots decreased progressively with increasing Cu2+ concentration.This fits well with the above mentioned effects of copper sulfate on root growth. Zea mays has considerable ability to remove Cu from solutions and accumulate it. The Cu content in roots of Z. Mays increased with increasing solution concentration of Cu2+. The amount of Cu in roots of plants treated with 10-3, 10-4 and 10-5 mol/L Cu2+ were 10, 8 and 1.5 fold, respectively, greater than that of roots of control plant. However, the plants transported and concentrated only a small amount of Cu in their shoots.  相似文献   

2.
水稻幼苗对纳米氧化铜的吸收及根系形态生理特征响应   总被引:1,自引:0,他引:1  
以纳米氧化铜nano-CuO(10, 100mg/L)为研究对象,以微米氧化铜micron-CuO(10, 100mg/L)及铜离子Cu2+(1.4, 2.3mg/L)为对照,通过水培实验,探讨水稻对nano-CuO的吸收积累及其根系形态和生理特征响应.结果表明,各浓度(10, 100mg/L)nano-CuO处理条件下,水稻根部及地上部铜含量(根351~1444mg/kg dw;地上部9~45mg/kg dw)总体高于micron-CuO处理(根248~817mg/kg dw;地上部1.57~1.60mg/kg dw)及Cu2+处理(根147~220mg/kg dw;地上部14~26mg/kg dw),且在水稻幼苗根及茎透射电镜图片中均观察到nano-CuO的存在,指示水稻可通过纳米颗粒的形式吸收、转运nano-CuO. Nano-CuO在水稻根细胞中主要存在于核内体中,指示内吞作用是其进入根细胞的主要方式. Nano-CuO对水稻幼苗根系有较强的毒性作用,对各根系形态指标的抑制率为28%~74%,其中总根长、根体积和比表面积为最敏感;nano-CuO的吸收累积及纳米效应是其水稻根系毒性的主要原因.低浓度nano-CuO (10mg/L)胁迫时,水稻幼苗根系活力显著提高,总吸收面积和活跃吸收面积无显著差异;高浓度nano-CuO (100mg/L)胁迫时,水稻幼苗根系活力和总吸收面积显著降低.  相似文献   

3.
土壤镉暴露对玉米和大豆的生态毒性评估   总被引:13,自引:0,他引:13  
以中国东北黑土为培养基,通过室内急性毒性实验,采用Trimmed Spearman-Karber方法计算EC50值(半抑制浓度),并分析作物的生物累积系数(BAF),定量化评估了土壤中镉对玉米和大豆的生态毒性及生物有效性.测量终点为种子发芽率、根长和幼茎长.结果表明,土壤镉暴露给农作物带来一定的负生长效应.种子发芽率不是评估土壤镉生态毒性的敏感因子,根生长是敏感的毒性测量终点.镉在植株体内的累积及迁移与作物种类和土壤镉浓度有关.玉米植株体内累积了较大量的镉,而大豆植株体内镉由根向幼茎的迁移较为显著.  相似文献   

4.
采用OTC-1型开顶式培养箱,模拟研究了CO2体积分数升高对2种小麦的生长以及根际、非根际中Cu和Cd形态分布的影响.结果表明,CO2体积分数的升高显著提高了小麦地上部和地下部生物量,降低了小麦根际和非根际的pH值.临麦2号和宁麦8号小麦地上部干重分别增加了36.9%和25.2%,地下部干重则分别增加了55.1%和59.7%.此外,CO2体积分数升高对不同重金属形态分布的影响随小麦品种和重金属种类的不同而异.在高CO2体积分数条件下,可交换态(F1)Cu和Cd含量显著提高,其中临麦2号根际土壤可交换态Cu和Cd含量分别较对照增加10.6%和29.6%,宁麦8号根际土壤可交换态Cu和Cd分别较对照增加11.0%和20.3%;碳酸盐结合态(F2)Cu和Cd均有所降低,其中宁麦8号和临麦2号根际Cu降低均达极显著(分别降低73.6%和50.0%);铁锰氧化物结合态(F3),有机结合态(F4)和残渣态(F5)Cu和Cd在CO2体积分数升高情况下变化较小.同时CO2体积分数升高还显著增加了2种小麦地上部和地下部铜累积量,增加了临麦2号地上部和地下部镉累积量和宁麦8号地上部镉累积量,但对宁麦8号地下部镉累积量无显著影响.  相似文献   

5.
IntroductionContaminationofsoilswithheavymetalsbecomesanincreasingprobleminmanycountriesallovertheworld .Thisismuchconcernedbecauseoftheireasytransferringfromsoilstoplants ,eventoanimalsandhumanbeings .Inmostcases,plantsgrowninheavymetal pollutedsoilssho…  相似文献   

6.
在人工气候室内用Poagland营养液栽培玉米,测定了玉米根、叶、茎、粒及伤流液中BaP的本底值。表明玉米根系可以吸收BaP并向上运输,但地上部的累积在一定程度上取决于根系环境中BaP的量。 在玉米的不同生育期向培养液添加BaP的试验表明,灌浆期的添加会增加籽粒中BaP的累积,因此,避免土壤的严重污染对控制进入食物链的BaP量是有意义的。  相似文献   

7.
To understand the roles of mycorrhiza in metal speciation in the rhizosphere and the impact on increasing host plant tolerance against excessive heavy metals in soil, maize ( Zea mays L. ) inoculated with arbuscular mycorrhizal fungus ( Glomus mosseae) was cultivated in heavy metal contaminated soil. Speciations of copper, zinc and lead in the soil were analyzed with the technique of sequential extraction. The results showed that, in comparison to the bolked soil, the exchangeable copper increased from 26% to 43% in non-infected and AM-infected rhizoshpere respectively; while other speciation (organic, carbonate and Fe-Mn oxide copper) remained constant and the organic bound zinc and lead also increased but the exchangeable zinc and lead were undetectable. The organic bound copper, zinc end lead were higher by 15%, 40% and 20%, respectively, in the rhizosphere of arbuscular mycorrhiza infected maize in comparison to the non-infected maize. The results might indicate that mycorrhiza could protect its host plants from the phytotoxicity of excessive copper, zinc and lead by changing the speciation from bio-available to the non-bio-available form. The fact that copper and zinc accumulation in the roots and shoots of mycorrhia infected plants were significantly lower than those in the non-infected plants might also suggest that mycorrhiza efficiently restricted excessive copper and zinc absorptions into the host plants. Compared to the non-infected seedlings, the lead content of infected seedlings was 60% higher in shoots. This might illustrate that mycorrhiza have a different mechanism for protecting its host from excessive lead phytotoxicity by chelating lead in the shoots.  相似文献   

8.
为探究锌(Zn)对水稻镉(Cd)累积的影响及其根表铁膜所发挥的作用,选取Cd高累积型水稻品种中9优547(简称"Z547")和Cd低累积型水稻品种金优402(简称"J402"),采用温室水培试验,研究0、2、5、10、15和20 μmol/L等6个Zn浓度下水稻幼苗对Cd的累积效应,以及不同浓度Zn处理对根表铁膜生成量的影响.结果表明:①随着c(Zn)的增加,Z547和J402水稻幼苗生物量均呈先增后减的趋势,分别在c(Zn)为2和10 μmol/L时达到最大值.②Z547和J402水稻幼苗中w(Cd)均呈先降后增的趋势,分别在c(Zn)为5和2 μmol/L时达到最小值;当水稻幼苗中w(Cd)达到最小值时,Z547根和地上部中w(Cd)分别为31.65和11.47 mg/kg,J402根和地上部中w(Cd)分别为22.58和14.36 mg/kg.③不同浓度Zn处理下水稻幼苗各部位中w(Cd)均与根表铁膜中w(Mn)、w(Fe)、w(Fe+Mn)呈显著正相关,高铁膜处理水稻幼苗中w(Cd)显著高于低铁膜处理,表明根表铁膜生成量的增加会促进Cd在水稻幼苗中的累积.研究显示,当c(Zn)较低时,c(Zn)的增加会抑制水稻幼苗对Cd的累积;当c(Zn)较高时,c(Zn)的增加会促进水稻幼苗对Cd的累积,而Zn可通过控制根表铁膜的生成来影响水稻幼苗对Cd的累积.   相似文献   

9.
镉对作物种子萌发、幼苗生长及氧化酶同工酶的影响   总被引:13,自引:0,他引:13  
本文研究了镉对四种作物的某些影响.玉米和西葫幼苗生长受镉抑制明显,根内POD同工酶谱带比对照减少.旱萝卜幼苗生长虽也受抑,但根内POD没有变化.沙窝青萝卜和西葫幼苗根内COD同工酶谱带也比对照减少,这似乎也与镉害有关.  相似文献   

10.
土霉素对小麦种子发芽与幼苗生长发育的生态毒性   总被引:4,自引:1,他引:3  
安婧  周启星  刘维涛 《环境科学》2009,30(10):3022-3027
研究了土霉素对小麦种子发芽以及早期幼苗生长发育的生态毒性效应.结果表明,土霉素对小麦种子芽长及根长的抑制效应显著(p<0.01),而且它们之间具有良好的剂量-效应关系.根据线性回归方程得出土霉素对小麦种子芽长和根长的半抑制浓度为65.5 mg/L和34.7 mg/L.然而,土霉素对小麦种子的发芽率并没有显著的影响.研究还表明,0.15~2.4 mg/L土霉素暴露21 d后,小麦叶片中的叶绿素含量降低了35.6%~47.3%,叶片及根部的可溶性蛋白含量也均呈显著下降趋势.暴露7 d后,0.15~2.4 mg/L土霉素对小麦叶片和根部SOD与POD活性的抑制效应不显著,但随着暴露时间的延长,土霉素对小麦的SOD与POD酶活性抑制率显著下降;2.4 mg/L土霉素暴露21 d后,小麦根部的SOD活性下降72.3%,说明土霉素对小麦幼苗体内的抗氧化系统具有破坏作用.该实验结果显示,低浓度土霉素长期暴露对小麦幼苗的生长发育具有不良的生态毒性效应.  相似文献   

11.
钒镉复合污染对水稻吸收积累镉、钒和磷的影响   总被引:15,自引:0,他引:15  
采用溶液培养法研究钒与镉复合污染对水稻生长及其吸收积累镉的影响,以便弄清在钒与镉复合污染条件下水稻的生长情况.试验结果表明,钒镉复合污染可影响水稻的生长发育.在培养液镉浓度(1 0mg·L-1)不变的情况下,随着溶液中钒浓度的增加,水稻根长、根系和茎叶的干重不断减少.当溶液中钒浓度达到1 6mg·L-1和3 2mg·L-1时,水稻茎叶和根系干重减少分别达到显著水平(p<0 05).钒镉复合污染也影响水稻植株对磷、钒和镉的吸收与积累.当培养液中镉浓度不变时,随着溶液中钒浓度的增加,水稻根系和茎叶中的磷浓度不断降低,而钒含量却不断提高,根系比茎叶积累更多的钒.此外,钒可抑制水稻植株对镉的吸收与积累.  相似文献   

12.
A hydroponic experiment was conducted to investigate the effects of arsenic (As) stress on growth, nutrition and As uptake, and speciation in shoots and roots of winter wheat (Triticum aestivum L.). Winter wheat has high tolerance to As. Most As is accumulated in the roots, and an As concentration of 4,421 mg/kg was observed at a solution concentration of 20 mg/L As. Arsenic concentrations in roots were approximately 40-100 times greater than those in shoots. Arsenic in winter wheat roots and shoots occurred as both As^3+ and As^5+ species, although As^3+ was the main species in winter wheat tissues. Arsenic significantly decreased the biomass of winter wheat shoots and roots and affected absorption and transport of micro- and macro-elements in winter wheat tissue. Arsenic treatment significantly increased the concentrations of total Magnesium (Mg) and calcium (Ca) in shoots and enhanced the transport of Mg and Ca from roots to shoots but decreased potassium (K), nitrogen (N), and phosphorus (P) concentrations in both shoots and roots, particularly the concentration of P. Concentrations of iron, copper, and zinc in winter wheat shoots were negatively related to As rates, with correlation coefficients (R^2) of 0.93, 0.94, and 0.97, respectively.  相似文献   

13.
丛枝菌根真菌对海州香薷生长及其Cu吸收的影响   总被引:11,自引:2,他引:9  
王发园  林先贵  尹睿 《环境科学》2005,26(5):174-174-180
在温室盆栽条件下研究了接种丛枝菌根(arbuscular mycorrhiza,AM)真菌对灭菌土壤中海州香薷生长及其Cu吸收的影响.试验设0,50,100,200,400mg·kg-1等5个外施Cu水平,Glomus caledonium90036(36)、Acaulospora mellea ZZ(ZZ)2种菌剂处理和1个不接AM真菌的对照处理(CK).苗后60d收获植株.结果表明,尽管菌根侵染率随Cu水平的升高而降低,但都高达50%以上,说明AM真菌易于侵染海州香薷.36和ZZ处理在各Cu水平下都显著提高了海州香薷地上和根系干重.在200mg.kg-1及以下各Cu水平时,2种菌剂处理提高海州香薷地上部分Cu浓度,在400mg·kg-1Cu水平时,地上部分Cu浓度在36、ZZ和CK之间没有显著差异.在施Cu水平为0mg·kg-1时,海州香薷根系Cu浓度在36、ZZ和CK之间差异不显著,在50mg·kg-1及以上各Cu水平时,36和ZZ降低海州香薷根系Cu浓度.36和ZZ处理在各Cu水平提高地上部分Cu吸收量,在100mg·kg-1Cu水平时提高根系Cu吸收量.总之,接种AM真菌可以促进海州香薷向地上部转运Cu,提高其地上部分Cu吸收量.  相似文献   

14.
A field experiment was conducted to compare the growth and metal accumulation of Vetiveria zizanioides, Paspalum notatum, Cynodon dactylon and Imperata cylindraca var. major on the tailings, amended with 10 cm domestic refuse complex NPK fertilizer(Treatment A), 10 cm domestic refuse(Treatment B) and complex NPK fertilizer(Treatment C) respectively, and without any amendment used as control (Treatment D). The results indicated that V. zizanioides was a typical heavy metal excluder, because the concentrations in shoots of the plants were the lowest among the four plants tested. The most of metal accumulated in V. zizanioides distributed in its root, and transportation of metal in this plant from root to shoot was restricted. Therefore, V. zizanioides was more suitable for phytostabilization of toxic mined lands than P. notatum and C. dactylon, which accumulated a relatively high level of metals in their shoots and roots. It was also found that I. cylindraca var. major accumulated lower amounts of Pb, Zn and Cu than C. dactylon and P. notatum, and could also be considered for phytostaliUsaton of tailings. Although the metal(Pb, Zn and Cu) concentrations in shoots and roots of V. zizanioides were the lowest, the total amounts of heavy metals accumulated in shoots of V. zizanioides were the highest among the four tested plants due to the highest dry weight yield of it. The results indicated that V. zizanioides was the best choice among the four species used for phytoremediation (for both phytostabilization and phytoextraction) of metal contaminated soils.  相似文献   

15.
EDTA对2种芥菜型油菜幼苗富集Pb的效应   总被引:15,自引:1,他引:14  
采用水培试验,研究了乙二胺四乙酸(EDTA)对Pb胁迫下2种芥菜型油菜(BrassicajunceaCzern.etCoss.)幼苗生长及富集Pb的效应.结果表明,单独用0.5和1.0mmol/LPb或EDTA处理可显著抑制植株的生长.与单独处理相比,Pb和EDTA复合处理可以降低各自的生物毒性.当Pb和EDTA等浓度复合处理时,植株生物量与对照植株无明显差异,说明游离态Pb或EDTA对幼苗具有毒害作用,而螯合态Pb-EDTA基本不具有生物毒性.EDTA处理促进Pb从根系向地上部运输,促进Pb在地上部积累.当c(EDTA)/c(Pb)为1/2时,地上部铅积累总量达到最高.随c(EDTA)的增加,根系铅积累总量反而下降.2个芥菜型油菜品种对EDTA的处理效应表现极为相似,生物量大的品种具有较高的Pb积累总量.   相似文献   

16.
镧-铅复合污染下AM真菌对玉米生长和镧、铅吸收的影响   总被引:2,自引:1,他引:1  
常青  郭伟  潘亮  王起凡  周昕南  杨亮  李娥 《环境科学》2017,38(9):3915-3926
采用温室盆栽试验的方法,模拟不同程度的镧-铅复合污染土壤(50、200、800 mg·kg~(-1)),研究接种丛枝菌根(arbuscular mycorrhizal,AM)、真菌Claroideoglomus etunicatum(CE)和Rhizophagus intraradices(RI)对玉米(Zea mays L.)菌根侵染率、生物量、矿质营养元素吸收、C∶N∶P生态化学计量比、稀土镧(La)和重金属铅(Pb)吸收、转运的影响,旨在为稀土-重金属复合污染土壤的治理和修复提供科学依据.结果表明,AM真菌CE和RI均与玉米建立了共生关系,平均菌根侵染率为26.7%~95.8%;随着La-Pb复合污染含量的增加,玉米植株菌根侵染率、地上部和根部生物量以及N、P、K、Ca、Mg这5种矿质营养元素含量显著降低,而玉米植株C∶P和N∶P以及地上部和根部La、Pb含量显著增加.接种2种AM真菌使玉米植株生物量显著提高了17.8%~158.9%,地上部和根部P含量显著提高了24.5%~153.8%,降低了C∶P和N∶P,符合生长速率假设.在3种程度La-Pb复合污染含量土壤上,AM真菌使玉米植株根部Pb含量显著增加了51.3%~67.7%,地上部Pb含量显著降低了16.0%~67.7%,Pb从玉米根部向地上部的转运率降低了31.5%~54.7%;同时,接种AM真菌显著增加了轻度LaPb复合污染土壤上玉米植株的La含量,在中度La-Pb复合污染土壤上却显著减少了玉米地上部的La含量,增加了玉米根部的La含量,抑制了La从根部向地上部的转运,重度La-Pb复合污染土壤上均没有显著影响.试验结果初步证明,AM真菌具有促进稀土-重金属复合污染土壤植物修复的潜力,对于稀土-重金属复合污染土壤生态系统的植被恢复具有潜在应用价值.  相似文献   

17.
The effects of arbuscular mycorrhizal (AM) fungus (Glomus mosseae) and phosphorus (P) addition (100 mg/kg soil) on arsenic (As) uptake by maize plants (Zea mays L.) from an As-contaminated soil were examined in a glasshouse experiment.Non-mycorrhizal and zero-P addition controls were included.Plant biomass and concentrations and uptake of As,P,and other nutrients,AM colonization,root lengths,and hyphal length densities were determined.The results indicated that addition of P significantly inhibited root colonization and development of extraradical mycelium.Root length and dry weight both increased markedly with mycorrhizal colonization under the zero-P treatments,but shoot and root biomass of AM plants was depressed by P application.AM fungal inoculation decreased shoot As concentrations when no P was added,and shoot and root As concentrations of AM plants increased 2.6 and 1.4 times with P addition,respectively.Shoot and root uptake of P,Mn,Cu,and Zn increased,but shoot Fe uptake decreased by 44.6%,with inoculation, when P was added.P addition reduced shoot P,Fe,Mn,Cu,and Zn uptake of AM plants,but increased root Fe and Mn uptake of the nonmycorrhizal ones.AM colonization therefore appeared to enhance plant tolerance to As in low P soil,and have some potential for the phytostabilization of As-contaminated soil,however,P application may introduce additional environmental risk by increasing soil As mobility.  相似文献   

18.
为探究黄芪幼苗对铜离子(Cu2+)胁迫的耐性机理以及凹凸棒黏土对Cu2+污染的缓解作用,研究了不同浓度CuSO4(2~20mmol/L)胁迫对黄芪幼苗的生理学毒性与凹凸棒黏土的缓解作用.结果表明,2mmol/L CuSO4胁迫使得根系Cu2+含量、H2O2(过氧化氢)含量、MDA(丙二醛)含量分别较对照显著上升1.82倍、1.04倍、2.14倍.CuSO4胁迫浓度达8mmol/L时,根系SOD(超氧化物歧化酶)活性、根尖膜损伤程度和叶片Cu2+含量分别较对照显著上升1.13倍、1.12倍和2.62倍;同时,叶片PS Ⅱ(光系统II)实际光化学效率[Y(II)]、光化学淬灭系数(qP)、PSⅡ电子传递速率(ETR)和叶绿素含量较对照分别显著降低22.88%、24.44%、21.49%和28.31%,而NPQ和qN(非光化学荧光猝灭系数)则较对照分别显著上升2.35倍和1.58倍.根系POD(过氧化物酶)和CAT(过氧化氢酶)活性、可溶性糖和可溶性蛋白含量在8mmol/L CuSO4处理下达到最高值后呈下降趋势.CuSO4浓度为15~20mmol/L时,根系APX活性和叶片光适应下PS II潜在最大光化学效率(Fv'/Fm'),以及幼苗全株鲜重、全株干重、地下部鲜重、地下部干重较对照显著下降.在非CuSO4胁迫条件下,基质中凹凸棒黏土的存在使得幼苗根系MDA含量较对照显著降低15.93%,但未对其它所测生理学指标产生显著影响;在20mmol/L CuSO4胁迫条件下,基质中凹凸棒黏土的存在使得幼苗根系和叶片中Cu2+含量分别显著下降30.78%和23.12%;同时显著缓解了20mmol/L CuSO4胁迫对根系活性氧水平、抗氧化酶活性、膜脂质过氧化程度、根尖膜损伤程度、可溶性蛋白和可溶性糖含量,叶片PS II光化学活性和叶绿素含量的不良影响,以及对幼苗生长的抑制作用.研究结果表明,培养基质中凹凸棒黏土的存在能够显著降低幼苗组织中Cu2+的生物有效性,继而缓解CuSO4胁迫对黄芪幼苗的生理学毒性作用.  相似文献   

19.
为探明伯克氏菌Y4(Burkholderia sp.Y4)对镉(Cd)胁迫下水稻幼苗的生长和Cd吸收积累的影响及其作用机制,以水稻低Cd积累品种湘早籼24(X24)和高Cd积累品种T优705(T705)为材料,通过水稻种子萌发和幼苗试验,利用非损伤微测技术和原子吸收等检测方法,研究外源施加伯克氏菌Y4对Cd胁迫下水稻生...  相似文献   

20.
The toxicity of chlortetracycline (CTC) on maize (Zea mays L.) growth and reactive oxygen species (ROS) generation was studied. The root and shoot lengths and fresh weights of maize seedlings were inhibited by CTC treatment (p < 0.05). Root length was more sensitive than other parameters with the EC10 value of 0.064 mg/L. The spin trapping technique followed by electron paramagnetic resonance (EPR) analysis was used to quantify the ROS production. The ROS generated in maize roots after exposure to CTC was identified as hydroxyl radical (.OH). The EPR signal intensity correlated positively with the logarithm of CTC concentrations exposed (p < 0.05). The dynamic changes of malondialdehyde (MDA) contents and the antioxidative enzyme activities in maize roots were also determined. As compared to the control group, CTC was found to significantly increase MDA content. Treatment of maize roots with the.OH scavenger sodium benzoate (SB) reduced the MDA content and enhanced the antioxidative enzyme activities. The results demonstrated the harmfulness of CTC at high dose to maize in the early developmental stage, and clarified that the inducement of.OH is one of the mechanisms of CTC toxicity.  相似文献   

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