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1.
The molecular response of wheat (Triticum aestivum L.,cv.Yangmai 10) seedlings to heavy metal (Cd,Hg) and 1,2,4-trichlorobenzene (TCB) stresses were examined by two-dimensional gel electrophoresis,image analysis,and peptide mass fingerprinting.The results showed inhibitions of root and shoot growth by Cd,Hg and TCB.These stresses led to water deficit and lipid phosphorylation in the seedling which also promoted protein phophorylation in the leaves.Hg stress inhibited protein synthesis while Cd and TCB stresses induced or up-regulated more proteins in the leaves.Most of these induced proteins played important roles in the biochemical reactions involved in tolerance of wheat to Cd and TCB stresses.The primary functions of Cd- and TCB-induced proteins included methionine metabolism,Rubisco modification,protein phosphorylation regulation,protein configuration protection,H+ transmembrane transportation and also the synthesis of ethylene defense substances and cell wall compounds.  相似文献   

2.
硅对锰胁迫下水稻吸收矿质元素的影响   总被引:1,自引:0,他引:1  
揭示Mn胁迫下硅对水稻中营养元素的影响特点,可为减轻水稻锰毒害提供理论依据.因此,本文通过水培试验,利用两个对Mn耐性不同的水稻品种,研究施Si(1.5 mmol·L-1)对Mn(2 mmol·L-1)胁迫下水稻营养元素的影响.同时,采用同步辐射X射线荧光(SRXRF)分析了营养元素的分布特点,以及各元素分布之间的相互关系.结果显示,高锰胁迫下,耐性品种叶片和根系的Mn含量都显著高于敏感品种.高锰胁迫抑制了敏感品种K元素从根部向叶片的转移,而降低了耐性品种的根部吸收K元素的能力.高锰胁迫下,施硅处理增加了敏感品种叶片中K、Fe和Zn的相对含量;可显著增加耐性品种叶片中K和Zn的相对含量,显著降低其Ca和Fe的相对含量.高锰胁迫下施硅可以促进敏感品种K元素的转运,促进耐性品种Zn元素转运.Si对耐性品种各元素含量保持相对平衡具有重要作用.水稻体内的锰大部分是硫酸锰,高锰胁迫下施硅不改变水稻植株体内的锰形态.  相似文献   

3.
To understand certain mechanisms causing variations between rice cultivars with regard to cadmium uptake and tolerance, pot soil experiments were conducted with two rice cultivars of di erent genotypes under di erent soil Cd levels. The relationships between plant Cd uptake and iron/manganese (Fe/Mn) plaque formation on roots were investigated. The results showed that rice cultivars di ered markedly in Cd uptake and tolerance. Under soil Cd treatments, Cd concentrations and accumulations in the cultivar Shanyou 63 (the genotype indica) were significantly higher than those in the cultivar Wuyunjing 7 (the genotype japonica) (P < 0.01, or P < 0.05), and Shanyou 63 was more sensitive to Cd toxicity than Wuyunjing 7. The di erences between the rice cultivars were the largest at relatively low soil Cd level (i.e., 10 mg/kg). Fe concentrations in dithionite-citrate-bicarbonate root extracts of Shanyou 63 were generally lower than that of Wuyunjing 7, and the di erence was the most significant under the treatment of 10 mg Cd/kg soil. The results indicated that the formation of iron plaque on rice roots could act as a barrier to soil Cd toxicity, and may be a “bu er” or a “reservoir” which could reduce Cd uptake into rice roots. And the plaque may contribute, to some extent, to the genotypic di erences of rice cultivars in Cd uptake and tolerance.  相似文献   

4.
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   

5.
两个品种水稻对砷的吸收富集与转化特征及其健康风险   总被引:7,自引:1,他引:7  
以2个水稻品种威优402号和Ⅱ优416号为实验材料,采用温室栽培方法研究对比两个品种水稻在人工添加砷处理(0、10、20和40mg·kg-1)和模拟自然砷污染(贵州高砷土和北京褐土的混合土,质量比为1∶1)胁迫条件下的生长发育状况,分析砷在水稻不同部位的累积、形态转化及其健康风险.砷处理显著地抑制了两个品种水稻的生长,水稻地上与地下部生物量、株高和穗数随砷处理水平的提高均出现明显的下降,但Ⅱ优416号的下降幅度明显低于威优402号.两个品种水稻籽粒中砷含量随砷处理水平提高也显著升高,人工添加砷各处理条件下,两个品种水稻稻谷中砷含量没有显著性差异;而在模拟自然砷污染土中,Ⅱ优416号稻谷中砷含量平均值为0.062mg·kg-1,明显低于威优402号稻谷平均值的0.278mg·kg-1.两个品种水稻各部位砷的转运系数在低砷处理时(10mg·kg-1)出现显著的升高,而在其他处理条件下保持不变.无论何种水稻品种,水稻各部位砷形态的组成和比例无显著性差异,水稻根、茎、叶中主要为无机砷,稻谷中无机和有机砷各占60%和40%.依据WHO相关建议标准,种植水稻品种Ⅱ优416号的健康风险要明显低于种植威优402号.  相似文献   

6.
钒对水稻种子萌发及幼苗生长的影响   总被引:1,自引:0,他引:1  
通过室内培养的方法,研究了不同浓度钒处理对金优63、T优259两个不同品种水稻种子萌发、幼苗生长及部分生理生化指标的影响。结果表明:低浓度的钒处理能在一定程度上促进两种水稻种子的萌发及幼苗的生长,但随着钒污染浓度的增高,逐渐受到抑制,且根长受影响的程度大于芽长。从生长和生理生化各指标变化情况来看,不同浓度钒处理下,两种水稻幼苗根系脱氢酶活性与叶绿素含量均呈先升后降的变化趋势。T优259对钒污染的抗性大于金优63。  相似文献   

7.
So far, very little is known about mercury stress-induced intercellular metabolic changes in rice roots at the proteome level. To investigate the response of rice roots to mercury stress, changes in protein expression in rice roots were analyzed using a comparative proteomics approach. Six-leaf stage rice seedlings were treated with 50 μmol/L HgCl2 for 3 hr; 29 protein spots showed a significant changes in abundance under stress when compared with the Hg2+-tolerant rice mutant and wild type (Zhonghua 11). Furthermore, all these protein spots were identified by mass spectrometry to match 27 diverse protein species. The identified proteins were involved in several processes, including stress response, redox homeostasis, signal transduction, regulation and metabolism; some were found to be cellular structure proteins and a few were unknown. Among the up-regulated proteins, OsTCTP (translationally controlled tumor protein) was chosen to perform hetereologous expression in yeast which was presumed to participate in the Hg2+ tolerance of rice, providing evidence for its role in alleviating Hg2+ damage. Among the many tests, we found that OsTCTP-overexpressed yeast strains were more resistant to Hg2+ than wild-type yeast. Thus, we propose that OsTCTP contributes to Hg2+ resistance. Here we present, for the first time, the functional characterization of OsTCTP in connection with Hg2+ stress in plants.  相似文献   

8.
Cd-Pb复合污染土壤钝化修复效率与生物标记物识别   总被引:3,自引:0,他引:3       下载免费PDF全文
为验证重金属钝化修复效率与植物生理生化特征的关系,采用盆栽试验研究了在Cd-Pb复合污染土壤中添加海泡石后,水稻幼苗叶片和根系中SOD(超氧化物歧化酶)活性、POD(过氧化物酶)活性、w(SP)(SP为可溶性蛋白)、CMDA(丙二醛含量)、叶片光合色素含量以及稻草和糙米中w(Cd)、w(Pb)的变化情况. 结果表明:添加海泡石后,水稻幼苗叶片和根系SOD活性、根系POD活性均随海泡石添加量的增加呈先增后降趋势,叶片POD活性随海泡石添加量的增加而增大,其中,当海泡石添加量为1.0%时,其最大增幅达33.6%;与之相反,叶片CMDA、叶片和根系w(SP)均随海泡石添加量的增加而降低,分别比对照处理降低8.0%~30.0%、6.3%~22.3%和17.7%~25.5%. 不同添加量海泡石处理下,稻草和糙米中w(Pb)分别降低20.5%~43.6%和18.7%~43.5%,w(Cd)分别降低8.3%~23.9%和21.2%~55.2%. 幼苗w(Chl)(Chl为叶绿素)、w(SP)与糙米w(Cd)之间,以及叶片CMDA与糙米w(Cd)、w(Pb)间均呈显著正相关(P<0.05),而叶片POD活性与糙米w(Cd)之间呈极显著负相关(P<0.01),水稻幼苗叶片w(Chl)、w(SP)、CMDA和POD活性可以作为评估海泡石钝化修复Cd-Pb复合污染钝化修复效率的分子生物标记物.   相似文献   

9.
The bioavailability of bound residue(BR) derived from ^14C-labeled chlorsulfuron in soil and effect of the main components of the BR on growth of rape( brassica napus) and rice( Oryza sativa L. ) were investigated. The results showed that the BR with the concentration of 0.28 and 0.56 nmol/g air-dried soil, which was calculated by special radioactivity of ^14C-labeled chlorsulfuron parent compound, resulted in significant depression effect on growth of rape seedling. It was assured that the main components(2-amino-4-methoxyl-6-methyl-1,3,5-triazine, 2-amino-4-hydroxyl-6-methyl-1,3,5-triazine, and 2-chloro-benzenesul-fonamide) of the BR did not inhibit the growth of rape and rice. LC-MS analysis demonstrated that the parent compound previously bound to the soil matrix could be again released and transformed into methanol-extractable residue during the course of rape growth. It was concluded that the molecular leading to the phytotoxicity to rape and rice in the BR is still the parent compound.  相似文献   

10.
In order to understand its response towards nickel stress,watercress(Nasturtium officinale R.Br.) was exposed to nickel(1-25 mg/L) for 1,3,5 and 7 days.The accumulation and translocation of nickel were determined and the influence of nickel on biomass,protein content and enzymatic antioxidants was examined for both roots and leaves.It was determined that N.officinale could accumulate appreciable amounts of Ni in both roots and leaves.Nickel accumulated particularly in the roots of plants.Biomass increased at low nickel concentrations but certain measurable change was not found at high concentrations.Under stress conditions the antioxidant enzymes were up-regulated compared to control.An increase in protein content and enzyme activities was observed at moderate exposure conditions followed by a decline at both roots and leaves.The maximum enzyme activities were observed at different exposure conditions.Our results showed that N.officinale had the capacity to overcome nickel-induced stress especially at moderate nickel exposure.Therefore,N.officinale may be used as a phytoremediator in moderately polluted aquatic ecosystems.  相似文献   

11.
IntroductionOrganismslivingunderpollutionstressvariedresponses,fromchangesingrossmorphologytochangesinbiochemistry .Plantsinparticularhaveevolveddiversewaysofrespondingtoadversechangesintheirenvironment.Plantsovercomesevereenvironmentalstressbydevelopi…  相似文献   

12.
水葫芦各部位富集能力的研究   总被引:5,自引:0,他引:5  
通过对水葫芦根、茎、叶三部位脂肪、蛋白质、糖、钙、镁及重金属元素 (Fe、Cu、Pb、Zn、Cd、Cr)含量的测定 ,发现水葫芦茎、叶、根中脂肪、蛋白质、糖的含量无明显差异。整株植株营养价值与大白菜接近。金属元素在根部富集较多 ,而且其中大部分是吸附在根的表面。  相似文献   

13.
杂交水稻对Cd的吸收与籽粒积累:土壤和品种的交互影响   总被引:22,自引:2,他引:20  
龚伟群  李恋卿  潘根兴 《环境科学》2006,27(8):1647-1653
土壤-作物-食物是人类摄取Cd的主要途径,而水稻是籽粒Cd积累最强的粮食作物.选择2种杂交水稻(普通杂交稻“汕优63”和超级稻“Ⅱ优明86”)与乌栅土和红沙泥田2种水稻土为材料,采用添加Cd(2.5 mg/kg)和不添加Cd处理进行盆栽试验,研究了水稻在成熟期对土壤中Cd的吸收及籽粒积累特点.结果表明,杂交水稻对Cd的吸收及籽粒积累依土壤、品种及两者的交互作用而变化.杂交稻对土壤中原有Cd的吸收与积累,基因型影响高于土壤类型的影响,但对外源Cd的吸收与籽粒积累,土壤类型的影响强于品种基因型,而土壤与品种间的正交互作用(Cd吸收强的超级稻种植于土壤Cd化学有效性高的红沙泥田)可使水稻籽粒Cd积累成倍提高.说明在未污染条件下,杂交稻对Cd的吸收与籽粒积累主要受品种的吸收能力控制,而在污染条件下,土壤化学性质对Cd有效性的影响成为土壤-水稻系统Cd迁移的主要控制因素.本实验显示,在酸性土壤或污染条件下,超级稻对Cd的吸收与籽粒积累十分强烈,就地消费人群的籽粒Cd暴露风险水平达到数倍于临界摄入剂量水平.加Cd处理下,汕优63中Cd滞留于根部,而Ⅱ优明86有较强的将Cd向上运输的能力,Ⅱ优明86籽粒Cd积累的不利效应远远超过其产量的增加效应.因此,在高产水稻育种中必须考虑水稻对Cd吸收的基因型差异与籽粒Cd的暴露风险,推广高产杂交水稻根据其Cd的吸收特性考虑土壤-品种的合理布局.  相似文献   

14.
In order to understand its response towards nickel stress, watercress (Nasturtium o cinale R. Br.) was exposed to nickel (1–25 mg/L) for 1, 3, 5 and 7 days. The accumulation and translocation of nickel were determined and the influence of nickel on biomass, protein content and enzymatic antioxidants was examined for both roots and leaves. It was determined that N. o cinale could accumulate appreciable amounts of Ni in both roots and leaves. Nickel accumulated particularly in the roots of plants. Biomass increased at low nickel concentrations but certain measurable change was not found at high concentrations. Under stress conditions the antioxidant enzymes were up-regulated compared to control. An increase in protein content and enzyme activities was observed at moderate exposure conditions followed by a decline at both roots and leaves. The maximum enzyme activities were observed at di erent exposure conditions. Our results showed that N. o cinale had the capacity to overcome nickel-induced stress especially at moderate nickel exposure. Therefore, N. o cinale may be used as a phytoremediator in moderately polluted aquatic ecosystems.  相似文献   

15.
镉敏感水稻突变体在镉胁迫下活性氧代谢的变化   总被引:9,自引:2,他引:9  
林冬  朱诚  孙宗修 《环境科学》2006,27(3):561-566
从粳稻中花11为受体构建的经农杆菌介导的T-DNA插入水稻突变体库中获得了1个对镉敏感的突变体,野生型和突变体经Cd2+胁迫表型上有显著差异.结果表明:镉敏感水稻突变体地上部对Cd2+吸收与转运速率要快于野生型,膜脂过氧化程度更高;随Cd2+胁迫浓度的增加,O2·-和H2O2在叶片中的积累增加,诱导抗氧化代谢;敏感突变体叶片SOD的抗氧化胁迫能力是有限的,与野生型相比突变体叶片CAT受到更显著的抑制,可能是其对Cd2+胁迫更加敏感的生理原因.而叶片G-POD活性整体差异不显著.  相似文献   

16.
选取了酸性矿山废水污灌区重金属污染水稻土,通过盆栽试验研究了不同水分管理条件(60%最大田间持水量,80%最大田间持水量,最大田间持水量,前期淹水+抽穗扬花期烤田,全生育期淹水)下水稻根际土壤及其不同器官(稻根、茎叶和籽粒)中硫、Fe和Cd的含量变化.结果表明,随着土壤水分含量的增加,在分蘖期根际土壤中Cd的含量略有升高,在成熟期对水稻根际土壤中Fe和Cd含量的影响不大;水稻不同器官对铁的吸收逐渐增加,对Cd的吸收则逐渐减少,两者呈明显的负相关关系;但抽穗扬花期烤田对水稻各器官对Fe的吸收影响不大,却明显增加了各器官中Cd的含量.除旱作处理外,不同水分管理方式下,土壤中全硫和有效硫含量随着土壤水分含量增加逐渐减少,抽穗扬花期烤田能明显增加根际土壤中总硫和有效硫含量,水稻对Cd的吸收与根际硫含量增加存在协同关系.上述结果证实,水稻对Cd的吸收不仅与Fe吸收有关,土壤中硫的充分供给能显著增加Cd在水稻中的积累.  相似文献   

17.
为了评估施硅处理对Cd在水稻(Oryza sativa. L)体内迁移的影响,通过外源添加Cd(CdCl2)制成w(Cd)为50、100 mg/kg的污染土壤,采用盆栽试验研究不同施硅量〔w(Si)分别为0、28、56 mg/kg〕对Cd污染土壤中水稻(以华航丝苗和黄华占为例)植株中Cd积累与分配的影响. 结果表明:施硅处理可明显影响水稻根部w(Cd),表现为增加华航丝苗根部w(Cd)、降低黄花占根部w(Cd),但两个品种根部Cd累积量均呈增加趋势. 施硅处理后华航丝苗和黄华占的叶、谷壳、糊粉层及精米中w(Cd)、Cd累积量均呈降低趋势,并且在施硅量为56 mg/kg时显著降低;施硅处理显著降低了华航丝苗和黄华占茎中w(Cd)以及华航丝苗茎中Cd累积量,同时增加了黄花占茎中Cd累积量. 施硅可显著降低精米中w(Cd),在w(Cd)为50和100 mg/kg的Cd污染水平下,华航丝苗和黄华占精米中w(Cd)较未施硅处理下的最大降幅分别达到32.49%、53.77%和24.73%、20.67%. 施硅对水稻植株各器官的Cd富集系数、转移系数和分配系数都有一定影响,施硅处理下水稻植株地上部各器官的Cd富集系数和转移系数均呈降低趋势,根部Cd分配比例显著增加. 研究显示,施硅对高浓度Cd污染土壤中水稻植株Cd积累与分配有一定调节作用,并因土壤中w(Cd)、施硅量、水稻品种及稻株器官的不同而存在差异.   相似文献   

18.
19.
The effects of NaCI stress on the H^+-ATPase, H^+-PPase activity and lipid composition of plasma membrane(PM) and tonoplast(TP) vesicles isolated from roots and leaves of two soybean cultivars( Glycine max L. ) differing in salt tolerance(Wenfeng^7,salt-tolerant; Union, salt-sensitive) were investigated. When Wenfeng^7 was treated with 0.3% (W/V) NaCI for 3 d, the H^+ -ATP aseactivities in PM and TP from roots and leaves exhibited a reduction and an enhancement, respectively. The H^+ -PPase activity in TP from roots also increased. Similar effects were not observed in roots of Union. In addition, the increases of phospholipid content and ratios of phospholipid to galactolipid in PM and TP from roots and leaves of Wenfeng^7 may also change membrane permeability and hence affect salt tolerance.  相似文献   

20.
氧化铜纳米颗粒对水稻幼苗根系代谢毒性的研究   总被引:2,自引:1,他引:2  
王淑玲  张玉喜  刘汉柱  辛华 《环境科学》2014,35(5):1968-1973
为阐明氧化铜纳米颗粒(CuO NPs)暴露对植物生长的影响,分别用CuO NPs悬浮液、氧化铜大颗粒(CuO BPs)悬浮液和硫酸铜(CuSO4·5H2O)溶液进行处理,以蒸馏水(d H2O)作为对照,水培水稻幼苗,研究了CuO NPs对水稻幼苗根系相关生理生化行为的影响.结果表明,不同处理对水稻幼苗根系的影响有很大差异,经CuO NPs悬浮液处理后,水稻幼根受损较严重,根系活力明显降低,根内丙二醛(MDA)含量和过氧化氢(H2O2)含量显著升高,超氧化物歧化酶(SOD)和过氧化物酶(POD)活性明显增强.不同处理对水稻幼苗根的影响依次为:CuO NPs>CuSO4·5H2O>CuO BPs>d H2O.说明氧化铜纳米颗粒对水稻根的毒害作用不仅是由于释放离子引起的,纳米颗粒本身也起着重要作用,氧化损伤可能是CuO NPs的主要致毒机制之一.  相似文献   

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