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1.
采用正交试验设计L9(34)对黑麦草(Lolium perenne L.)进行温室盆栽试验,观测Cd、Zn、Pb复合污染条件下,硅(Si)对黑麦草生物量、叶绿素含量以及保护酶系统的影响.结果表明,Cd使黑麦草根系发育受阻导致生物量下降,中等水平的Zn和Pb有利于黑麦草生物量的积累;Cd、Zn、Pb复合污染造成黑麦草叶绿体结构的破坏,使叶绿素含量减少;低水平的Cd、Zn、Pb复合污染对黑麦草CAT和POD活性起到激发作用,但随着添加水平提高,两种酶活性受到抑制.Si可以促进黑麦草根系生物量的增加,有利于根系对水分和养分的吸收,保证地上部分的养分供给,使叶片生物量增加;硅化细胞的形成有利于黑麦草叶片对光能的吸收利用,Si也使叶绿素含量增加;Si对CAT和POD有显著激活作用,从而减轻重金属复合污染对黑麦草产生的伤害.  相似文献   

2.
土壤镉、锌污染对蚯蚓纤维素酶活性的影响   总被引:2,自引:0,他引:2  
为了探究土壤镉、锌污染对土壤动物蚯蚓的生理毒害情况,为土壤生态环境质量评价提供数据支持,以赤子爱胜蚓(Eisennia foetida)为研究对象,采用自然土壤法进行急性毒性试验,研究了土壤外源添加镉(Cd)和锌(Zn)单一污染与复合污染对蚯蚓纤维素酶活性的毒性效应.试验结果表明,蚯蚓体内纤维素酶活性在培养过程中呈先增大后减小的变化趋势.单一污染试验,酶活性的最大值出现在第7至第9天,最小值出现在第14天;复合污染试验,同一处理不同培养时间的酶活性最小值也大多出现在第14天.土壤Cd和Zn单一及复合污染都会对蚯蚓体内纤维素酶活性产生抑制作用.单一污染在培养的前5天抑制效果明显,且随着污染物添加剂量的增加抑制效果增强.复合污染,镉和锌在土壤中的联合效应除个别测定结果表现为加和作用或协同作用外,多数处理都表现为拮抗作用,且主要是受体拮抗.相比较而言,镉对蚯蚓体内纤维素酶活性的抑制作用强于锌.  相似文献   

3.
红蛋植物对重金属镉、锌的吸收动态研究   总被引:1,自引:0,他引:1  
采用水培的方法研究了红蛋植物(Echinodorus osiris)对镉、锌的吸收动态。结果表明:无论是低镉(5 mg·L-1)还是高镉(15 mg·L-1)处理,长时间(27 d)培养时,红蛋地上部和地下部镉质量分数均持续增加,至收获时,低镉和高镉处理红蛋地上部镉质量分数分别为364.95和502.97 mg·kg-1;地下部镉质量分数分别达到1 762.81和2 742.95 mg·kg-1。短时间内,红蛋对镉的吸收速率随时间增加而降低,1.0 h内表现为快速吸收模式,而在1.0 h后表现为缓慢吸收模式。在低镉条件下,红蛋对镉的短时间吸收动态符合二次多项式数学模型,高镉条件下,红蛋对镉的吸收动态符合三次多项式数学模型。长时间(27 d)培养时,红蛋地上部锌和地下部质量分数的动态变化趋势基本一致,即先增加后减少再缓慢增加的趋势。低锌(100 mg·L-1)和高锌(400 mg·L-1)处理,红蛋地上部锌质量分数分别为2 211.38和3 190.47 mg·kg-1;地下部锌质量分数分别为3 067.89和3 303.85 mg·kg-1。短时间内,无论是低锌处理还是高锌处理,红蛋对锌的吸收动态均符合二次多项式数学模型,但是两者有所不同,低锌处理,红蛋吸收锌的速率短时间内略有降低,而高锌处理,红蛋对锌的吸收速率短时间内则持续增加。  相似文献   

4.
小麦籽粒中镉对锌的拮抗作用与有机肥的调控   总被引:7,自引:0,他引:7  
研究不同的镉、锌复合污染水平对小麦籽粒锌吸收的影响及有机肥的调控作用。试验结果表明,随着土壤中外源Zn浓度的提高,小麦籽粒Zn含量显著增加;Cd和Zn复合污染的土壤上,小麦籽粒对Zn的吸收累积除受到土壤中外源Zn水平的影响外,还受到外源Cd的影响,高浓度Cd(100 mgkg-1)减少了Zn在小麦籽粒中的累积,说明Cd对小麦吸收Zn有拮抗效应;施用有机肥显著降低了1000 mgkg-1Zn污染土壤上小麦籽粒Zn含量及1000 mgkg-1Zn与100 mgkg-1Cd复合污染土壤上小麦籽粒Zn含量,而显著增加了500 mgkg-1Zn与Cd复合污染土壤上小麦籽粒Zn含量。因此,有机肥对Cd和Zn复合污染土壤上小麦籽粒Zn含量的影响与外源Cd、Zn的浓度组合有关。  相似文献   

5.
单一施用钾或锌肥会改变污染土壤中镉的有效性,但钾与锌共存对镉在土壤-植物系统中迁移和转化影响效果尚待明确.采用盆栽试验,研究了赤红壤上2种镉污染水平下,施用不同比例钾、锌对小油菜(Brassica campetris Lvar.Conmuni)生物量、镉吸收量及土壤溶液中镉质量浓度的影响.结果表明,钾、锌以不同比例与镉共存时并不会对赤红壤上小油菜的生长产生明显影响;增加共存体系中锌的用量,土壤溶液中镉的质量浓度明显升高,而小油菜植株镉含量明显降低.低、高镉污染赤红壤上,钾、锌共存摩尔比例为4:1时,土壤溶液中镉的质量浓度较对照分别增加189%和159%(两季平均值);小油菜体内镉含量较对照平均分别降低26.0%和34.9%.在低镉污染赤红壤上,钾、锌施用量与小油菜体内镉含量呈显著负相关;高镉污染赤红壤上,锌施用量与土壤溶液中镉的质量浓度呈显著正相关.中轻度镉污染土壤上,小油菜钾、锌肥最佳施用比例为4:1.钾、锌以不同比例施入土壤时,锌施用量多少是控制土壤镉有效性高低的主要因素.  相似文献   

6.
镉对籽粒苋耐性生理及营养元素吸收积累的影响   总被引:3,自引:0,他引:3  
李虹颖  苏彦华 《生态环境》2012,21(2):308-313
初步阐明了镉对籽粒苋耐性生理及营养元素吸收积累的影响,为进一步揭示籽粒苋的镉耐性与镉富集机理奠定了基础。通过对生物量的监测,对叶绿素、蛋白质、游离氨基酸、大量元素及微量元素等的含量的测定,阐明镉胁迫对籽粒苋生长生理、抗胁迫耐性、营养元素吸收分配的影响。研究结果显示,镉胁迫对籽粒苋的生长抑制作用不明显,植株生物量随着镉浓度的提高而轻微降低。随着镉处理浓度的提高,叶绿素含量下降幅度显著;蛋白质和游离氨基酸含量变化幅度不明显;钾含量无大幅变化;镉、磷、钙、镁、锌、铁、锰、铜含量变化幅度较显著。镉、钾、磷、锰的迁移系数随着镉处理浓度的提高无显著变化;钙的迁移系数呈上升趋势;镁、锌、铁、铜的迁移系数均呈下降趋势。这些结果表明:镉胁迫降低籽粒苋叶绿素含量,抑制植株光合作用,继而抑制了植株的生长,但其程度不明显;镉胁迫条件启动活性氧防御机制;引起植株体内部分养分代谢紊乱。结论:低浓度镉处理条件下,籽粒苋受镉离子影响,抗氧化能力下降。在高浓度镉处理条件下,籽粒苋调节了营养元素的吸收和分配,启动了一系列活性氧防御机制,提高了抗胁迫能力。  相似文献   

7.
采用盆栽方法研究了在镉、铅、锌污染土壤上,石灰和泥炭对小白菜生长状况及对污染元素(Cd,Pb,Zn)和养分元素(N,P,K,Cu,Mn,Fe)吸收的影响。结果表明,石灰消除了重金属的毒害症状.显著促进小白菜的生长、显著抑制小白菜对镉、铅、锌的吸收。石灰对氮、钾、铜、锰的吸收也有显著抑制作用。泥炭对小白菜生长的改善效果及对铜、铅、锌吸收的抑制效果较石灰差。提高酸性土壤pH值是减少作物对重金属吸收的有效方法。  相似文献   

8.
采用营养液培养方式,以茴香(Foeniculum vulgare Mill.)为试验材料,研究了2 mg·L-1镉质量浓度下,钼硼锌协同处理对茴香植株生长、生理指标、地上部和根系镉含量及精油组分的影响。结果表明:镉胁迫下,与对照相比,钼硼锌协同处理均未显著促进茴香植株株高生长;T5处理有利于茴香植株生物量累积和叶绿素a、叶绿素b、叶绿素a+b、类胡萝卜素的合成,T1处理的可溶性糖含量最高,可溶性蛋白质含量最低,脯氨酸含量较低,丙二醛(MDA)含量最高,且叶绿素a、叶绿素b、叶绿素a+b、类胡萝卜素的合成显著受到抑制。镉胁迫下,钼硼锌协同处理后,茴香植株地上部和根系镉含量均高于对照。茴香精油中反式-茴香脑含量以T6处理最高。总之,镉胁迫下,钼硼锌协同处理并不能缓解镉对茴香植株的毒害作用;在轻微镉污染的土壤上种植茴香以食用地上部为目的,则不宜进行钼硼锌配施,否则会增加食入镉的危险性;利用茴香进行镉污染土壤修复为目的,则建议进行钼硼锌配施,可增加茴香植株对镉的吸收累积,提高修复效率。从提高修复效率和茴香精油质量方面综合考虑,T6处理效果最好。研究结果可为镉污染农田土壤上植物种植过程中钼硼锌的合理配施提供理论参考。  相似文献   

9.
杜彩艳  祖艳群  李元 《生态环境》2007,16(6):1710-1713
重金属的不同形态对于作物吸收重金属及受害具有十分密切的关系,通过施用石灰改变重金属的形态、毒性以及对作物的影响具有重要的意义。以大白菜(Brassica pekinensis)为研究对象,通过盆栽试验,探讨了在铅、镉和锌污染土壤上,施用石灰对土壤中不同形态镉、铅和锌含量及在大白菜中累积的影响。结果表明,施用石灰后,土壤中碳酸盐结合态Pb、Cd和Zn含量明显减少,铁、锰氧化物结合态和有机物结合态Pb、Cd和Zn含量明显增加;对大白菜吸收Pb、Cd和Zn均起到较好的抑制作用,石灰用量为5g·kg-1土时,对大白菜吸收Pb、Cd和Zn的抑制效果最好。  相似文献   

10.
菲和镉复合污染对土壤微生物的生态毒理效应   总被引:16,自引:1,他引:15  
以土壤酶活性和微生物数量作为生态毒理指标,通过模拟试验,比较分析多环芳烃菲和重金属镉单一与复合污染对土壤微生物的生态毒理效应.结果表明,菲和镉复合污染对土壤蔗糖酶、脲酶和脱氢酶均具有协同抑制作用;而对磷酸酶和微生物的数量具有拮抗抑制作用.菲和镉复合污染及菲单一污染对土壤微生物的活性抑制率从大到小依次为:放线菌>真菌>细菌;镉单一污染则为:真菌>细菌>放线菌.  相似文献   

11.
Cd在土壤-作物-膳食食物链中的迁移是人类对环境Cd暴露及其健康风险的主要途径,而水稻是子粒Cd积累最强的大宗作物之一.采用全生育期淹水盆栽试验研究了2种常规水稻(高Cd吸收品种“苏香粳1号”和低Cd吸收品种“99-22”)在添加Cd(2mg·kg-1)和不添加Cd处理下对2种土壤(红沙泥田,乌栅土)中Cd、Zn的吸收及其生育期变化.结果表明:1)常规水稻对Cd、Zn的吸收积累受土壤、品种和外源Cd的影响.Cd处理、土壤、品种间的正交互作用(高Cd吸收品种植于高Cd处理且Cd有效性高的红壤中)使常规稻植株Cd/Zn比成数十倍提高,从而使子粒Cd/Zn比产生强烈升高;2)水稻对Cd、Zn的吸收强度因不同生育期而异,Cd吸收的主要时期是分蘖期和成熟期,而Zn吸收的主要时期则是分蘖期、抽穗期和灌浆期.在整个生育期中,水稻Cd吸收伴随着对Zn的排斥现象,这在高Cd吸收下尤为强烈;3)水稻各器官对Cd、Zn的吸收分配无论是同品种的生育期间抑或同生育期时的不同品种间均有显著差异.Cd积累量为根系>穗粒>茎叶,而Zn却表现为茎叶>根系、穗粒.观察到水稻吸收的Cd在生育后期向穗粒的强烈运移.相对于低Cd吸收品种来说,Cd向穗粒转运较强,而Zn的转运较弱是高Cd吸收品种子粒Cd积累强而Cd/Zn比高的植株因素.  相似文献   

12.
不同比例钙锌共存对土壤镉有效性的影响及其机制   总被引:2,自引:1,他引:1  
采用盆栽试验,研究了赤红壤上两种镉污染水平下,施用不同比例钙锌对小油菜(Brassica Campetris,Lvar Conmuni)生物量、镉吸收量及土壤溶液中镉、钙、锌质量浓度的影响.结果表明,钙、锌以不同比例共存时并不会对赤红壤上小油菜的生长产生明显的影响;随着锌用量增加,土壤溶液中锌的质量浓度明显增加,土壤溶液中镉的质量浓度明显升高.小油菜体内镉含量明显降低;高镉污染赤红壤上,钙锌共存中钙用量增加,土壤溶液中钙的质量浓度明显增加.低、高镉污染赤红壤上,钙、锌共存摩尔比例为4:1时,小油菜体内镉含量较对照平均分别降低34.2%和27.3%(两季平均值);而土壤溶液中镉的质量浓度较对照分别增加307%和120%.在低镉污染赤红壤上,锌施用量与小油菜体内镉含量呈显著负相关;高镉污染赤红壤上,锌施用量与土壤溶液中镉的质量浓度呈显著正相关.钙、锌以不同比例施入土壤时,锌施用量多少是控制土壤镉有效性高低的主要因素.  相似文献   

13.
In a multifactorial pot experiment, maize (Zea mays L.) with or without inoculation with the arbuscular mycorrhizal (AM) fungus Glomus mosseae BEG167 was grown in a sterilized soil spiked with three levels of zinc (0, 300 and 900 mg Zn kg−1 soil) and three levels of cadmium (0, 25 and 100 mg Cd kg−1 soil). At harvest after 8 weeks of growth, the proportion of root length of inoculated plants colonized decreased with increasing Zn or Cd additon, and was 56% in the absence of both metals and was reduced significantly to 27% in the presence of the higher levels of both metals. Mycorrhizal plants had higher biomass than non-mycorrhizal controls except at the highest soil level of Cd. Cadmium had more pronounced effects on plant biomass than did Zn at the levels studied and the two metals showed a significant interaction. The data suggest that mycorrhizal inoculation increased plant growth with enchancement of P nutrition, perhaps increasing plant tolerance to Zn and Cd by a dilution effect. AM inoculation also led to higher soil solution pH after harvest, possibly reducing the availability of the metals for plant uptake, and lowered the concentrations of soluble Zn and Cd in the soil solution, perhaps by adsorption onto the extrametrical mycelium.  相似文献   

14.
本文以不同Cd、Zn浓度胁迫下的长梗白菜为研究对象,采用盆栽实验,分析了Cd和Zn胁迫下长梗白菜形态参数(重量、长度、表面积、叶的分形维数)、生理性能的影响以及从土壤中提取Cd和Zn的能力.结果 表明,Cd、Zn胁迫对长梗白菜的生长具有"低促高抑"效应,且共同胁迫对生长的影响大于单一胁迫.在0.6 mg·kg-1 Cd...  相似文献   

15.
Effects of cadmium on nutrient uptake and translocation by Indian Mustard   总被引:3,自引:0,他引:3  
Plants that hyperaccumulate metals are ideal subjects for studying the mechanisms of metal and mineral nutrient uptake in the plant kingdom. Indian Mustard (Brassica juncea) has been shown to accumulate moderate levels of Cd, Pb, Cr, Ni, Zn, and Cu. In this experiment, 10 levels of Cd concentration treatments were imposed by adding 10-190 mg Cd kg(-1) to the soils as cadmium nitrate [Cd(NO3)2]. The effect of Cd on phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), and the micronutrients iron (Fe), manganese (Mn), copper (Cu), and zinc (Zn) in B. juncea was studied. Plant growth was affected negatively by Cd, root biomass decreased significantly at 170 mg Cd kg(-1) dry weight soils treatment. Cadmium accumulation both in shoots and roots increased with increasing soil Cd treatments. The highest concentration of Cd was up to 300 mg kg(-1) d.w. in the roots and 160 mg kg(-1) d.w. in the shoots. The nutrients mainly affected by Cd were P, K, Ca, Fe, and Zn in the roots, and P, K, Ca, and Cu in the shoots. K and P concentrations in roots increased significantly when Cd was added at 170 mg kg(-1), and this was almost the same level at which root growth was inhibited. Zn concentrations in roots decreased significantly when added Cd concentration was increased from 50 to 110 mg kg(-1), then remained constant with Cd treatments from 110 to 190 mg kg(-1). However, Zn concentrations in the shoots seemed less affected by Cd. It is possible that Zn uptake was affected by the Cd but not the translocation of Zn within the plant. Ca and Mg accumulation in roots and shoots showed similar trends. This result indicates that Ca and Mg uptake is a non-specific process.  相似文献   

16.
Effects of Cadmium on Nutrient Uptake and Translocation by Indian Mustard   总被引:1,自引:0,他引:1  
Plants that hyperaccumulate metals are ideal subjects for studying the mechanisms of metal and mineral nutrient uptake in the plant kingdom. Indian Mustard (Brassica juncea) has been shown to accumulate moderate levels of Cd, Pb, Cr, Ni, Zn, and Cu. In this experiment, 10 levels of Cd concentration treatments were imposed by adding 10–190 mg Cd kg–1 to the soils as cadmium nitrate [Cd(NO3)2]. The effect of Cd on phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), and the micronutrients iron (Fe), manganese (Mn), copper (Cu), and zinc (Zn) in B. juncea was studied. Plant growth was affected negatively by Cd, root biomass decreased significantly at 170 mg Cd kg–1 dry weight soils treatment. Cadmium accumulation both in shoots and roots increased with increasing soil Cd treatments. The highest concentration of Cd was up to 300 mg kg–1 d.w. in the roots and 160 mg kg–1 d.w. in the shoots. The nutrients mainly affected by Cd were P, K, Ca, Fe, and Zn in the roots, and P, K, Ca, and Cu in the shoots. K and P concentrations in roots increased significantly when Cd was added at 170 mg kg–1, and this was almost the same level at which root growth was inhibited. Zn concentrations in roots decreased significantly when added Cd concentration was increased from 50 to 110 mg kg–1, then remained constant with Cd treatments from 110 to 190 mg kg–1. However, Zn concentrations in the shoots seemed less affected by Cd. It is possible that Zn uptake was affected by the Cd but not the translocation of Zn within the plant. Ca and Mg accumulation in roots and shoots showed similar trends. This result indicates that Ca and Mg uptake is a non-specific process.  相似文献   

17.
Pot experiments were conducted on cole (Brassica) grown in soils jointly treated with traces of two heavy metals cadmium (Cd) and zinc (Zn). As the concentration of heavy metals in the soil increased, the uptake of these metals by the plants rose. However, the ratio of heavy metal concentration in soil to uptake by plants increased at a slower rate. Bioavailability of heavy metals considered between the roots and soil using non-linear regressions was shown to be statistically significant. Similarly, the bioavailability of these two heavy metals between leaves and roots using a linear regression was also statistically significant. The bioconcentration factors (BCFs) for Cd and Zn were 0.282 and 4.289, respectively. Significant variation of BCF with the heavy metal bioavailability in soil was noted from non-linear models. The transfer factors (TFs) were 4.49 for Cd and 1.39 for Zn. The Zn concentration in leaves under all treatments did not exceed threshold set standards, but Cd levels exceeded these standards when the concentration of Cd in the soil was more than 1.92 mg kg?1 dry weight (dw). Data indicate that cole (Brassica) is not a suitable crop for oasis soils because of plant contamination with heavy metals, especially Cd.  相似文献   

18.
研究了十六烷基三甲基溴化铵(CTAB)、鼠李糖脂(rhamnolipids)和皂角苷(saponins)等不同离子类型的表面活性剂对矿渣中重金属Pb和Zn的解吸效果,并采用盆栽实验研究了上述3种表面活性剂对Pb和Zn超富集植物小花南芥(Arabis alpina L.var.parviflora Franch)的生物量、吸收和富集重金属的影响。结果表明:3种表面活性剂对Pb的解吸效率是鼠李糖脂〉皂角苷〉CTAB,对Zn的解吸效率随处理质量浓度增加而增加,解吸率介于2.84%~10.84%之间;3种表面活性剂都能促进小花南芥叶长、根长、冠幅、地上部生物量及地下部生物量增加,与对照相比增加了1.06~1.92倍,除了表面活性剂CTAB处理质量浓度为7.5g.L^-1时,小花南芥叶长、冠幅、根长及地下部和地上部生物量都下降,分别为对照的0.61~0.88倍。添加三种表面活性剂都能显著促进小花南芥地下部和地上部累积Pb和Zn,并且位移系数和富集系数都大于1。这说明3种表面活性剂对小花南芥修复重金属铅和锌污染的土壤有促进作用。  相似文献   

19.
This paper studied the relationship between heavy metal concentrations of herbaceous plants and soils at four Pb-Zn mining sites in Yunnan, China. 50 herbaceous plant samples of 9 plant species from 4 families and 50 soil samples were collected and then ana1yzed for the tota1 concentrations of Pb, Cd, and Zn. The results showed that the average concentrations of Pb, Cd, and Zn in soil samples were 3772.83, 168.81, and 5385.65 mg/kg, respectively. The average concentrations of Pb, Cd, and Zn were 395.68, 28.14, and 1664.20 mg/kg in the shoots, and 924.12, 57.25, and 1778.75 mg/kg in the roots, respectively. Heterospecific plants at the same site and conspecific plants at various sites had different average levels of Pb, Cd, and Zn, both in the shoots and the roots. Enrichment coefficients of Pb, Cd, and Zn were greater than 1 in 2, 3, and 9 herbaceous plant samples, respectively. Translocation factors of Pb, Cd, and Zn were greater than 1 in 10, 17, and 25 herbaceous plant samples, respectively. In all 50 samples, the concentrations of Pb, Cd, and Zn between the shoots and the roots, the shoots, and the soils, and the roots and the soils had significant positive relationships.  相似文献   

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