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1.
镉在有机酸存在时对红壤中微生物生物量的影响   总被引:13,自引:6,他引:7  
在预培红壤中加入定量的有机酸和不同浓度的Cd ,2 5℃培养 14d ,测定土壤微生物生物量C(Cmic)、N(Nmic) ,结果表明 ,存在有机酸时 ,土壤中Cmic和Nmic随着Cd浓度的增加而降低 ;Cmic/Nmic随着Cd浓度的增加而升高 .施加低分子量有机酸的土壤中 ,Cd浓度高于 2 5mg·kg-1土时 ,土壤中Cmic和Nmic均比未加有机酸时低 ,说明此时低分子量有机酸助长Cd的毒性 ,而Cd浓度低于 2 5mg·kg-1土时 ,土壤中Cmic和Nmic均比未加有机酸时高 ,说明此时低分子量有机酸可降低部分Cd的毒性 ;施加胡敏酸的土壤中 ,土壤中Cmic和Nmic均比未加有机酸时高 ,说明胡敏酸降低Cd的毒性并提供N源 .不含Cd时 ,加入有机酸导致土壤中Cmic和Nmic增加 ,其中胡敏酸最明显  相似文献   

2.
采用土培试验方法研究了低分子量有机酸(柠檬酸、草酸、苹果酸及其混合酸)对大豆磷积累和土壤无机磷形态转化的影响。结果表明:低分子量有机酸促进了大豆植株磷的吸收积累,大豆不同生育时期,不同有机酸对大豆磷的吸收积累均有促进作用,但作用效果有差异;外加低分子量有机酸使无机磷总量、难溶态磷(Ca10-P、Al-P和O-P)含量均显著降低,而可溶态磷的Ca8-P含量显著增加,柠檬酸和草酸使Ca2-P含量显著增加,表明低分子量有机酸促进了土壤难溶态磷向可溶态磷转化,作用大小顺序为柠檬酸>草酸>混合酸>苹果酸;同时,大豆根系分泌物也促进部分难溶态磷向可溶态磷转化,使无机磷总量、除Ca2-P外的其他无机磷组分均有所降低,按磷释放比例的大小来看,对大豆吸磷的贡献大小顺序为O-P>Fe-P>Ca10-P>Al-P>Ca8-P>Ca2-P.  相似文献   

3.
不同有机酸对铅胁迫小麦幼苗的缓解作用   总被引:3,自引:0,他引:3  
研究了在铅胁迫条件下,加入外源有机酸对小麦铅毒害的缓解效应。结果表明,低浓度的草酸和乙酸能增加铅胁迫小麦叶绿素含量,不同程度地提高SOD、CAT、POD活性,降低MDA含量,而高浓度草酸和乙酸及柠檬酸对此则无明显的缓解作用;乙酸处理减少根系活跃吸收面积,柠檬酸能明显提高根系活力。草酸对铅胁迫的缓解效果最明显。  相似文献   

4.
孙琴  王晓蓉  袁信芳  丁士明 《生态学报》2004,24(12):2804-2809
采用溶液培养方式 ,研究了有机酸存在下小麦体内 Cd的生物毒性和植物络合素 (PCs)合成的相关关系 ,试图寻求一种与小麦体内 Cd的生物毒性高度相关的评价指标。结果显示 ,Cd胁迫对小麦产生明显的毒害效应并诱导小麦根系内 PCs的大量合成。EDTA、DTPA、柠檬酸、苹果酸和草酸的适量供应可不同程度减轻或消除 Cd的生物毒性 ,其强弱顺序为 EDTA >DTPA 柠檬酸 >苹果酸≈草酸。与此同时 ,小麦根系内 PCs的诱导量也有明显下降 ,与 Cd的生物毒性保持一定的线性关系 ,且在EDTA、DTPA和柠檬酸供应下尤为显著。表明 PCs可以作为一项敏感的生化指标 (biochem ical indicator)用来评价和预测环境中 Cd的污染 ,并有望成为重金属生物有效性评价系统中一种新的补充方法  相似文献   

5.
赵宽  吴沿友 《西北植物学报》2014,34(5):1002-1007
该研究建立了植物根茎叶及根系分泌物中有机酸的离子色谱分析测定方法,并测定了4种不同植物幼苗根茎叶及根系分泌物中低分子量有机酸的组成,为揭示逆境胁迫下植物体内有机酸的作用提供依据。结果表明:离子色谱分析法对植物有机酸的加标回收率为91.10%~105.42%,检测限为0.12~0.36mg/L,方法线性关系良好(R2=0.965 3~0.998 8);4种植物根茎叶及根系分泌物中都可以检测出草酸、柠檬酸、苹果酸、丁二酸和酒石酸,其中草酸、柠檬酸和苹果酸为优势酸;有机酸的组成和含量具有物种以及器官的差异性;根系分泌物中的有机酸与根茎叶中有机酸的相关性也因种属差异而不同。这为研究逆境胁迫下植物器官及根系分泌物提供了可靠方法。  相似文献   

6.
有机酸对Pb、Cd的络合作用将其对土壤吸附Pb、Cd的影响和植株效应差异的研究表明,柠檬酸、草酸与Pb、Cd络合能力的大小与重金属本身的性质有关,络合作用影响土壤对Pb、Cd的吸附量,柠檬酸降低土壤对Pb、Cd的吸附,草酸则增加土壤对Pb、Cd的吸附.水培试验表明,柠檬酸可减轻Pb对小麦、水稻幼苗的毒害.柠檬酸对Cd的植株外观毒性效应影响不显著,但能促使植株茎叶、根中Cd含量下降.Pb和Cd复合处理条件下,Cd存在促使水稻植株对Pb吸收量增加,Pb存在抑制水稻植株对Cd的吸收.  相似文献   

7.
芘对黑麦草根系几种低分子量有机分泌物的影响   总被引:3,自引:0,他引:3  
谢晓梅  廖敏  杨静 《生态学报》2011,31(24):7564-7570
植物根系释放分泌物与有机污染物的植物修复机制密切相关,研究具有有机污染物修复潜力植物在污染胁迫条件下的根系分泌物特征有助于揭示其修复机制.以多环芳烃修复研究中常用的黑麦草为材料(Lolium perenneL.)为材料,在营养液栽培方式下研究了在芘胁迫处理下,黑麦草根系几种低分子量有机物分泌特征.结果表明,黑麦草对芘具有较强的耐受能力,芘胁迫处理下,生物量无显著变化.黑麦草根系分泌的低分子量有机酸主要为草酸.3、6 mg/L和9 mg/L芘胁迫处理下,低分子量有机酸的组成无明显变化,但含量随芘胁迫处理浓度上升而显著增加(P<0.05);总糖分泌量随着芘胁迫处理浓度升高而呈现先略微上升后下降的趋势,相对高峰值出现在芘胁迫处理浓度3 mg/L,但差异不显著;氨基酸分泌总量随着芘胁迫处理浓度的增加而显著增多,芘胁迫浓度在3、6 mg/L和9 mg/L时,根系氨基酸的分泌总量分别是空白的1.37、2.02倍和2.65倍,但根系分泌的氨基酸组成无明显变化,19种常见氨基酸分泌的数量变化情况却不相同,分泌量总体均随着芘胁迫处理浓度的提高而增加,其中苏氨酸、丝氨酸、脯氨酸、甘氨酸、丙氨酸、亮氨酸、组氨酸和鸟氨酸的分泌量显著增多,差异显著(P<0.05).  相似文献   

8.
研究了柠檬酸、草酸和乙酸对污泥中Cd、Pb、Cu和Zn等重金属的去除效果,并分析了污泥中重金属的形态变化和生物有效性.结果表明,随着反应时间和酸浓度的增加,污泥中重金属(Cu除外)的去除率也相应增加.污泥加入柠檬酸溶液反应7h即可去除污泥中52.0%的Pb和74.2%的Zn,24h后可去除76.0%的Pb和92.5%的Zn,草酸和乙酸对重金属的去除率较低.柠檬酸去除的Pb和Zn主要以稳定态存在,并导致污泥中不稳定态重金属的比例上升,其中可交换态重金属浓度有不同程度的增加.虽然有机酸对Cd和Cu的去除率较低,但反应后可交换态Cd和Cu的浓度仍有小幅增加.  相似文献   

9.
柠檬酸、草酸和乙酸对污泥中镉、铅、铜和锌的去除效果   总被引:4,自引:0,他引:4  
研究了柠檬酸、草酸和乙酸对污泥中Cd、Pb、Cu和Zn等重金属的去除效果,并分析了污泥中重金属的形态变化和生物有效性.结果表明,随着反应时间和酸浓度的增加,污泥中重金属(Cu除外)的去除率也相应增加.污泥加入柠檬酸溶液反应7 h即可去除污泥中52.0%的Pb和74.2%的Zn, 24 h后可去除76.0%的Pb和92.5%的Zn,草酸和乙酸对重金属的去除率较低.柠檬酸去除的Pb和Zn主要以稳定态存在,并导致污泥中不稳定态重金属的比例上升,其中可交换态重金属浓度有不同程度的增加.虽然有机酸对Cd和Cu的去除率较低,但反应后可交换态Cd和Cu的浓度仍有小幅增加.  相似文献   

10.
有机酸对Pd 、Cd的土壤化学行为和植株效应的影响   总被引:46,自引:3,他引:43  
有机酸对Pd,Cd的络合作用将其对土壤吸附Pd,Cd的影响和植株效应差异的研究表明,柠檬酸,草酸与Pd,Cd络合能力的大小与重金属本身的性质有关,络合作用影响土壤对Pd,Cd的吸附量,柠檬酸降低土壤对Pd,Cd的吸附,草酸则增加土壤对Pd,Cd的吸附,水培试验表明,柠檬酸可减轻Pb对小麦,水稻幼苗的毒害,柠檬酸对Cd的植株外观毒性效应影响不显著,但能促使植株茎叶,根中Cd含量下降,Pd和Cd复合处理条件下,Cd存在促使水稻植株对Pd吸收量增加,Pd存在抑制水稻植株对Cd的吸收。  相似文献   

11.
Yang  Xiao E  Baligar  Virupaex C  Foster  Joyce C  Martens  David C 《Plant and Soil》1997,196(2):271-276
Difference in Ni tolerance/accumulation in plant genotypes might be used to identify or develop plants for remediation of high Ni soils. Ryegrass was shown to be more sensitive to Ni toxicity and accumulated much more Ni in shoots than maize. The objectives of this study were to examine the relationship of organic acids to Ni accumulation and xylem transport of Ni in ryegrass (Lolium perenne L.) and maize (Zea mays L.). The results showed that accumulation of Ni in shoots was 5 to 7 fold higher in ryegrass than in maize grown at 20 to 80 µM Ni, whereas Ni concentration in ryegrass roots was only 1 to 2 fold higher at 0.1 to 40 µM Ni and 1.5-fold lower at 80 µM Ni than that of maize roots. Xylem transport rates of Ni increased with increasing Ni supply for both species, and were about 2 to 7 times higher in ryegrass than in maize. Shoot concentrations of citric, malic, oxalic and cis-aconitic acids increased at Ni levels above 20 µM, and were about 2 to 6 times higher in ryegrass than in maize. Whereas, maize roots accumulated greater amount of malic, oxalic, and cis-aconitic acids than ryegrass roots, especially at Ni levels of 40-80 µM. The rate of Ni exudation by roots in the two species was significantly correlated with root Ni concentrations. It could be concluded that high Ni accumulation in shoots was closely related to high xylem transport rates of Ni and that the accumulation of organic acids, citric and malic acid in particular. A high root exudate rate of Ni and the enhanced accumulation of organic acids, malic acid in particular, in roots might be among the important factors which are associated with the tolerance of crops to toxic Ni levels.  相似文献   

12.
Phytoextraction of metals is frequently limited by contaminant bioavailability and plant uptake rates. Chemical amendments can be added to increase the uptake and translocation of metals to aerial biomass. A range of amendments of various types was tested for increasing the copper uptake with the test species Indian mustard and ryegrass. These included citric acid (an organic acid); histidine (an amino acid); ethylenediaminetriacetic acid (EDTA), nitrilotriacetic acid (NTA), and ethelynediaminedisuccinic acid (EDDS) (aminopolycarboxylic acids); rhamnolipid (a biosurfactant); and Triton X-100 (a synthetic surfactant). EDTA was the most effective amendment for enhancing copper uptake and translocation into the shoots of Indian mustard and ryegrass, with respective shoot tissue copper levels of 1230 and 1360 μg-Cu/g-dry weight after 10 d compared to 90 and 220 μg-Cu/g-dry weight, respectively, in the unamended treatments. However, the EDTA application resulted in symptoms of toxicity in both Indian mustard and ryegrass, leading to drastic decreases in biomass yield. The application of high levels (300 mg/L) of the biodegradable chelator EDDS was found to be effective for improving translocation of copper in both species. The NTA addition provided benefits to root and shoot growth, with increased copper translocation to shoot tissue. Tests with biosurfactants and synthetic surfactants indicated detrimental effects on copper uptake, biomass yield, and the translocation of copper from roots to shoots in both plant species.  相似文献   

13.
Chromium (III) accumulation in high biomass agricultural crops, sunflower (Helianthus annum) and Indian mustard (Brassica juncea) was studied using four soils (pH 4.6 to 7.6) contaminated with different rates of CrCl3.6H2O in the presence of synthetic chelate and organic acids. Chromium is essential for normal glucose metabolism in humans and animals, but its contamination and recovery from soils is of environmental concern. Adding ethylenediaminetetraacetic acid (EDTA), citric acid, or oxalic acid to Cr(III)‐contaminated soils significantly increased Cr concentration in plant shoots and roots. Adding Cr(III) complexes of EDTA, citric acid, and oxalic acid to soils dramatically increased (>200‐fold) Cr concentration in shoots and roots. Plant growth was severely decreased but was dependent on soil type, chelate rate, form, and time of chelate application. Chelates and organic acids enhanced Cr(III) accumulation, but its toxic effects were not avoided. Chromium(III) complexes were as toxic to plants as Cr(VI). The phytoaccumulation and recovery of Cr(III) from soils were limited and depended on soil type.  相似文献   

14.
Enhanced cadmium accumulation in maize roots—the impact of organic acids   总被引:4,自引:0,他引:4  
Low molecular weight organic acids are important components of root exudates and therefore, knowledge regarding the mechanisms of cadmium (Cd) uptake and distribution within plants under the influence of organic acids, is necessary for a better understanding of Cd behavior in the plant–soil system. In this study, acetic and malic acids increased the uptake of Cd by maize (Zea mays L. cv. TY2) roots and enhanced Cd accumulation in shoots under hydroponic conditions. Concentration-dependent net Cd influx in the presence and absence of organic acids could be resolved into linear and saturable components. The saturable component followed Michaelis–Menten kinetics, which indicated that Cd uptake across the plasma membrane was transporter-mediated. While the K m values were similar, the V max values in the presence of acetic and malic acids were respectively 6.0 and 3.0 times that of the control. Zinc transporters were the most probable pathways for Cd accumulation. It was hypothesized that Cd(II)–organic acid complexes associated with the root zone, could decompose and liberate Cd2+ for subsequent absorption by maize roots; and that in the layer of the roots or within the root free space, depletion of Cd2+ was buffered by the presence of Cd(II)–organic acid complexes. Plant response to elevated Cd levels involved overproduction of organic acids in maize roots as a resistance mechanism to alleviate Cd toxicity.  相似文献   

15.
红壤中镉在有机酸作用下的解吸行为   总被引:1,自引:1,他引:0  
采用平衡批处理法,研究了3种有机酸及其两两混合液在序列pH值梯度下(pH 3.0~7.0)对华南山地红壤Cd解吸行为的影响.结果表明,草酸与苹果酸不利于Cd的解吸,反而促进了吸附,其中草酸只是在较高浓度(20 mmol·L-1)且土壤溶液pH>5.0时促进解吸.随着pH值升高,草s酸、苹果酸以及不含有机酸的对照溶液对红壤中Cd的解吸率都快速下降.柠檬酸在pH<5.0时不利于Cd解吸;在pH>5.0时显著促进Cd解吸,但两种浓度柠檬酸解吸特征有所不同,在低浓度(2 mmol·L-1)下对镉的解吸率呈降低-升高-降低变化,在高浓度(20 mmol·L-1)下呈降低-升高变化.在低pH条件下(pH 3.0、4.0),苹果酸最有利于Cd的解吸,但3种酸对Cd解吸率差别不大,在较高pH条件下(pH 5.0~7.0),柠檬酸最有利于解吸,且解吸率大大高于草酸与苹果酸.有机酸混合没有明显的交互作用,对Cd的解吸率介于相应单独有机酸之间.  相似文献   

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