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1.
研究了水培环境中不同浓度纳米二氧化钛(TiO2-NPs)(0,25,50,100,200 mg/L)缓解Cd对小麦幼苗造成的生理毒害的作用。结果显示:在水培环境下TiO2-NPs的施用,缓解了Cd对小麦带来的氧化胁迫,减轻了Cd对小麦的毒害作用,显著提高了小麦生物量、根长及株高,改善了小麦光合作用。中浓度(50,100 mg/L)TiO2-NPs的使用显著提高了小麦幼苗净光合速率。对于所有浓度TiO2-NPs的施用,小麦幼苗POD酶活均显著低于Cd处理组;SOD酶活在较低浓度(<200 mg/L)时显著低于Cd处理组。TiO2-NPs通过减轻Cd氧化胁迫作用,有效缓解了Cd对小麦幼苗的毒害,提高了小麦幼苗的光合作用。  相似文献   

2.
商陆耐重金属Cd关键酶抗氧化酶的研究   总被引:6,自引:0,他引:6  
研究商陆(Phytolacca americana L.)对Cd胁迫的抗氧化酶响应,对于揭示其耐Cd机制具有重要意义.商陆幼苗在200μmol/L或400 μmol/L CdCl2营养液中处理4 d,叶片活性氧自由基和MDA含量升高,膜透性增加,光合速率降低,表明Cd胁迫诱导产生氧化胁迫.随着Cd处理含量的提高和时间的...  相似文献   

3.
A simulated climate warming experiment was conducted to evaluate the combined effects of elevated temperature and CO_2 concentration on the bioaccumulation,translocation and subcellular distributions of Cd and Zn in wheat seedlings(Triticum aestivum L.cv.Xihan 1.) at Dingxi,Gansu Province,China.The objective was to find evidence that global climate change is affecting the bioaccumulation of Cd and Zn in T.aestivum L.cv.Xihan 1.The results showed that compared to control A,elevated temperature and CO_2 increased Cd bioaccumulation in the shoots by 1.4–2.5 times,and increased that in the roots by 1.2–1.5times,but decreased Zn levels in wheat shoots by 1.4–2.0 times,while decreased that in the roots by 1.6–1.9 times.Moreover,temperature and CO_2 concentration increase also led to increased Cd concentration,and decreased Zn concentration in subcellular compartments of wheat seedlings.The largest Cd concentration increase(174.4%) was observed in the cell wall and debris fractions of shoots after they were subjected to the highest CO_2 and temperature treatment(TC3).The largest Zn concentration decrease(53.1%) was observed in the soluble(F3) fractions of shoots after they were subjected to the medium CO_2 and temperature treatment(TC2).The temperature and CO_2 increase had no significant effect on the proportional distribution of Cd and Zn in the subcellular fractions.The root-to-shoot translocation of Cd increased with the increasing temperature and CO_2 concentration.However,the Zn distributions only fluctuated within a small range.  相似文献   

4.
Sedum alfredii Hance, a newly discovered hyperaccumulator, could serve as a good material for phytoremediation Cd polluted sites. Malondialdehyde (MDA), reactive oxygen species (ROS) and antioxidases (catalase (CAT); superoxide dismutase (SOD); peroxidase (POD)) in the leaf were determined when S. alfredii was treated for 15 d with various CdCl2 concentrations ranging from 0 to 800 μmol/L. The results showed that the production rate of 2′,7′-dichlorofluorescein (DCF), which is an indicator of ROS level, reached up to the maximum at 400 μmol/L CdCl2 and then declined with the increase of CdCl2 concentration, while MDA accumulation tended to increase. CAT activity was significantly inhibited at all tested CdCl2 concentrations and SOD activity was sharply suppressed at 800 μmol/L CdCl2. However, the enhancement of POD activity was observed when CdCl2 concentration was higher than 400 μmol/L. In addition, its activity increased when treated with 600 μmol/L CdCl2 for more than 5 d. When sodium benzoate, a free radical scavenger, was added, S. alfredii was a little more sensitive to Cd toxicity than that exposed to Cd alone, and the Cd accumulation tended to decline with the increase of sodium benzoate concentration. It came to the conclusions that POD played an important role during Cd hyperaccumulation, and the accumulation of ROS induced by Cd treatment might be involved in Cd hyperaccumulation.  相似文献   

5.
A hydroponic experiment was carried out to study intraspecific differences in the effects of different concentrations of cadmium (Cd)(0-10 mg/L) and arsenate (As(V)) (0-8 mg/L) on the growth parameters and accumulation of Cd and As in six wheat varieties Jing-9428, Duokang-1, Jingdong-11, Jing-411, Jingdong-8 and Zhongmai-8. The endpoints of wheat seedlings, including seed germination,biomass, root length and shoot height, decreased with increasing the Cd and As concentrations. Significant differences in seed germination, biomass, root length, shoot height and the accumulation of Cd and As were observed between the treatments and among the varieties (p < 0.05). The lethal dosage 50% were about 20, 80, 60, 60, 80 and 20 mg As/L for Jing-9428, Duokang-1, Jingdong-11,Jing-411, Jingdong-8 and Zhongmai-8, respectively, and the corresponding values for Cd were about 30, 80, 20, 40, 60 and 10 mg Cd/L, respectively. Among the six varieties, Duokang-1 was found to be the most resistant to Cd and As toxicity, and Zhongmai-8 was the most sensitive to Cd and As co-contamination. The resistance of the six varieties was found dependant on the seedling uptake of Cd and As. Duokang-1 was the most suitable for cultivation in Cd and As co-contaminated soils.  相似文献   

6.
研究水体不同硬度条件下铜(以Cu2+为主)和镉(以Cd2+为主)对金鲫鱼、麦穗鱼及大型溞的生物毒性效应。结果表明,当水体硬度(以CaCO3计,下同)为80 mg/L时,Cu2+对麦穗鱼和大型溞的半数致死浓度(LC50)分别为100和79 μg/L;当水体硬度为250 mg/L时,Cu2+对麦穗鱼和大型溞的LC50分别为160和159 μg/L;当水体硬度为50和250 mg/L时,Cd2+对金鲫鱼的LC50分别为3.69和16.3 mg/L。随着水硬度的增加,Cu2+和Cd2+的急性毒性均降低。计算得到Cu2+和Cd2+的生物毒性硬度斜率分别为0.513和0.923,表明硬度对Cd2+的毒性影响大于对Cu2+。Cd2+对金鲫鱼的亚急性毒性试验结果表明,随着水体硬度的升高,Cd2+对金鲫鱼的慢性毒性及进入鱼体内的Cd2+浓度均显著降低,说明高水体硬度能显著降低重金属的生物有效性。  相似文献   

7.
五氯酚对HeLa细胞毒性及DNA损伤的研究   总被引:2,自引:1,他引:1  
以人宫颈癌HeLa细胞为研究对象,运用MTT法检测PCP处理后HeLa细胞的增长抑制率;通过测定细胞培养液中乳酸脱氢酶(LDH)的漏出率和总超氧化物歧化酶(SOD)的活性,评价PCP的细胞毒性作用;彗星实验检测HeLa细胞经不同浓度PCP处理后的DNA损伤.结果表明,PCP对HeLa细胞的半数抑制浓度(IC50)为66.59μmol.L-1;HeLa细胞在12.5、25、50、100和200μmol.L-1 PCP染毒条件下,LDH的漏出率随着染毒时间的增加逐渐增大,具有明显的时间-效应关系,在12.25、17.5和25μmol.L-1 PCP染毒下,细胞培养液中SOD的活性随着染毒时间的增加逐渐下降,存在显著的时间-效应关系,低浓度PCP(25μmol.L-1)显著增加细胞培养液中LDH的漏出率以及PCP(12.25μmol.L-1)显著降低总SOD的活性;PCP(实验浓度为6.25、12.5、25和50μmol.L-1)不会导致HeLa细胞DNA损伤.因此SOD和LDH可作为评价低浓度PCP毒性效应的敏感性生物标志物.  相似文献   

8.
碱性土壤锌镉比对小麦籽粒镉积累的影响   总被引:1,自引:0,他引:1  
我国北方地区小麦镉(Cd)污染形势严峻.土壤锌(Zn)与Cd存在显著的交互作用,但两者关系尚不明确.本研究通过区域调查及大田实验,探究了北方碱性小麦土壤锌镉比(Zn/Cd)与小麦籽粒Cd含量的相关关系.结果表明,土壤Zn/Cd与小麦籽粒Cd含量显著负相关.施加硫酸锌(增Zn)及深翻耕措施(降Zn)均能显著提高土壤Zn/Cd,并降低小麦籽粒Cd含量.其中,增施100 mg·kg-1的Zn2+,可将土壤Zn/Cd增加61.2%,并使小麦籽粒Cd含量降低9.28%;将土壤0~30 cm及30~60 cm土层互换的深翻耕措施,可将土壤Zn/Cd增加45.8%,并使小麦籽粒Cd含量降低13.5%.综合区域调查及大田实验数据,发现当土壤Zn/Cd小于50时,小麦籽粒Cd含量全部超标且有98.4%的样品超标1倍以上;而当土壤Zn/Cd大于100时,小麦籽粒Cd含量超标风险显著降低至11.9%.该阈值的确定对于小麦Cd污染防治具有指导意义.  相似文献   

9.
采用水培实验法,研究了不同浓度和不同施加方式下外源精胺对苎麻镉污染毒害的缓解效应.结果表明,镉胁迫(10mg/L)使苎麻叶绿素、类胡萝卜素和可溶性蛋白质含量均不同程度地下降,膜脂过氧化程度提高,丙二醛含量增加;加入外源精胺后(以10-5mol/L效果最佳),叶绿素、类胡萝卜素和可溶性蛋白质含量均显著上升,膜脂过氧化产物丙二醛含量明显降低,说明苎麻对镉的抗性得到显著提高,其中叶面喷洒并同时向营养液中加入精胺能更有效地缓解叶片的生理伤害,而仅叶面喷洒外源精胺则更有利于缓解根中镉的毒害.进入苎麻体内的镉约73.2%积累在根部,2种方式加入精胺均使得镉在苎麻体内的累积量下降,同时镉向地上部分的转移率提高.  相似文献   

10.
玉米幼苗对镉、菲单一与复合污染的生理生化响应   总被引:4,自引:1,他引:3  
通过室内盆栽实验研究了玉米幼苗在镉、菲污染胁迫14 d后的生理生化响应,并探讨了镉、菲单一与复合污染对玉米幼苗的毒性效应及其致毒机制.结果表明,单一镉(0~50 mg/kg)污染时,镉处理对玉米幼苗地上部分和根系生物量以及可溶性蛋白都无显著影响;随镉处理浓度的增加,玉米幼苗叶片SOD酶活性表现为先增加后降低的趋势,而P...  相似文献   

11.
为了提升孔雀草(Tagetes patula L.)对镉(Cd)污染土壤的修复潜力,通过田间试验,研究铵态氮肥和腐殖酸对孔雀草生长以及土壤中Cd去除的影响.结果表明,氮肥(N)与氮肥和腐殖酸联用处理(NHA)可显著提高孔雀草的生物量;与对照(CK)相比,NHA和N处理下孔雀草地上部生物量分别提高了 2.49倍和1.52倍(肥东土壤),提高了 2.28倍和1.74倍(长丰土壤).在孔雀草生长期间,氮肥和腐殖酸能够降低土壤pH值,尤其是NHA处理;NHA处理较CK处理在肥东和长丰土壤上pH值分别降低了 0.76和0.84个单位;腐殖酸处理(HA)能显著提高肥东与长丰土壤中DOC的含量.NHA和HA处理能显著促进孔雀草根系生长发育,改善孔雀草的根系形态特征.在肥东和长丰土壤中,与CK相比较,NHA处理土壤有效态Cd含量分别增加了 64.1%和53.1%,孔雀草Cd的累积量分别增加了 7.17倍和4.15倍;NHA处理的土壤Cd去除率最高,在肥东和长丰土壤上分别达到17.06%和14.08%.本研究表明在强化孔雀草修复重金属Cd污染土壤方面,铵态氮肥和腐殖酸的联用具有潜在应用前景.  相似文献   

12.
水稻土中外源Cd老化的动力学特征与老化因子   总被引:6,自引:0,他引:6  
选择5种不同性质的水稻土,通过外源添加制备了6个不同浓度梯度的Cd污染土壤,研究了外源Cd在几种水稻土中的老化动力学特征与影响因子;同时利用盆栽实验,结合Log-logistic分布模型,研究了5个不同老化时间(14、30、60、90和180d)与土壤中Cd对二种不同Cd敏感性水稻生长毒性的影响.结果表明,不同浓度外源Cd进入土壤后,0.05mol/L EDTA-2Na浸提的有效态Cd含量随着老化时间的增加而逐渐下降;与14d处理相比,老化30d后土壤中有效态Cd降幅达21.5%(红壤)~38.0%(黑土);老化90d后,土壤中Cd进入慢反应阶段. 基于二级动力学方程的拟合参数显示,土壤中Cd的老化特征表现为有效态Cd含量在30~60d内快速降低,随后变化减缓,经过90d的老化后,土壤中有效态Cd含量逐渐趋于平衡.基于老化动力学方程参数(C∞及K2)与土壤性质间的相关性分析表明,土壤pH值是影响Cd有效态含量变化的主控因子,其次是土壤CEC和OC含量.在不同性质土壤中,随着老化时间的增加,土壤中外源Cd对水稻生长毒性的半抑制浓度(EC50)值显著升高;与14d老化处理相比,经过180d老化后土壤中Cd对水稻生长毒性的EC50增加72.1%~195.0%;在大于90d的长期老化过程中,土壤pH值对Cd老化过程的影响逐渐降低,而CEC的影响逐渐上升,尽管如此,土壤中Cd老化过程的主要影响因子仍然是土壤pH,而与测试的2种水稻品种无关.  相似文献   

13.
A root-bag experiment was conducted to study the effects of insoluble Zn, Cd and ethylenediaminetetraacetic acid (EDTA) on the plant growth, activities of antioxidant enzymes, proline, glutathione (GSH), water-soluble proteins and malondialdehyde (MDA) of Vetiveria zizanioides, and its uptake capacity of Zn and Cd.The results showed that plant growth of V.zizanioides was inhibited by Zn and Cd.The shoot dry weight (SDW) and root dry weight (RDW) decrease by 0.3%, 8.0%, 9.4% and 10.4%, 15.1%, 24.2% compared to the control without EDTA addition, respectively.After adding EDTA, shoot and root dry weight decreased over 10% and 15% compared to results in the absence of EDTA, respectively.The toxicity from insoluble Zn and Cd in soil on SDW and RDW of V.zizanioides was in order: Zn+Cd > Cd > Zn.The activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT), and contents of MDA and proline significantly increased, while the contents of GSH and water-soluble proteins markedly decreased with increasing Zn and Cd toxicity.With EDTA, shoot and root Zn concentrations increased in the Zn treatment by 7.3% and 37.4% compared to the plants grown in absence of EDTA.Shoot and root Cd concentrations in the combined Zn and Cd treatment with EDTA increased by 18.6% and 391.9% compared to the treatment without EDTA.However, Zn and Cd concentrations in shoot and roots decreased in the Cd treatment compared to the plants grown in absence of EDTA, with exception of root Cd concentration in the presence of EDTA).  相似文献   

14.
Single and joint toxic e ects of polycyclic musks including 1,3,4,6,7,8-hexahydro-4,6,6,7,8,8-hexamethylcyclopenta[g]-2- benzopyran (HHCB) and 7-acetyl-1,1,3,4,4,6-hexamethyl-1,2,3,4-tetrahydronapthalene (AHTN) and cadmium (Cd) on seed germination and seedling growth of wheat (Triticum aestivum) were investigated. The results showed that the toxicity sequence of HHCB toxic to wheat seed germination and seedling growth was similar to that of AHTN, that is, germination rate > shoot elongation > root elongation, while the toxicity of Cd was in the sequence of root elongation > shoot elongation > germination rate, according to the LC50 and EC50 values. It is suggested that polycyclic musks and Cd had di erent toxicological mechanisms. Root and shoot elongation of wheat might be good bioindicators for the contamination of polycyclic musks and Cd in soil. The mixture of polycyclic musks and Cd had synergistic e ects on T. aestivum according to the equi-toxic mixture approach when root elongation was selected as the toxicological endpoint. Thus, the joint toxicity of HHCB and Cd was significantly higher than the single toxicity of HHCB or Cd, which was also confirmed by the EC50 mix value of the mixture (EC50 mix = 0.530 TUmix). The EC50 mix value of the mixture of AHTN and Cd was 0.614 TUmix, which indicated that the mixture toxicity was strengthened when AHTN coexisted with Cd.  相似文献   

15.
Fungi and their symbionts can alleviate heavy metal stress by exuding soluble proteins and enzymes. This study examined the role of soluble protein and acid phosphatase (APase) exuded by Xerocomus chrysenteron, an ectomycorrhizal fungus, and the seedlings of its symbiont, Chinese pine (Pinus tabulaeformis), under conditions of excessive Cu and Cd. The growth type showed that this poorly studied ectomycorrhizal fungus was capable of tolerating high concentrations of Cu, and may be useful in phytoremediation. X. chrysenteron grew well at 80 mg/L Cu, and the EC50 for Cd was 17.82 mg/L. X. chrysenteron also showed enhanced exudation of soluble protein in both isolated and inoculated cultivations under the influence of Cu and Cd. Soluble protein exudation, however, di ered under Cu and Cd stress in isolates. In mediums containing Cu, soluble protein exudation increased with concentration, but in mediums containing Cd the content of soluble protein increased to a comparable level at all concentrations. This study demonstrated that soluble protein was related to heavy metal tolerance, although the di erent ions played di erent roles. While APase activity in exudates of fungi and seedlings decreased under Cu and Cd stress in comparison to the control, the APase activity in seedlings was maintained by inoculation. Thus, X. chrysenteron facilitated the ability of plant to maintain a normal nutrient uptake, and therefore to protect it from heavy metal toxicity.  相似文献   

16.
钾肥对镉的植物有效性的影响   总被引:23,自引:0,他引:23  
采用室外盆栽模拟试验,研究了在镉单一污染及镉、铅复合污染的土壤中,钾肥(K2SO4)的施用及其施用水平对镉的植物有效性的影响.结果表明,施用钾肥可显著(p<0.05)促进小麦干重的增长,缓解重金属镉及镉、铅复合污染对小麦的毒害作用.不同施用水平的钾肥均减少了小麦对镉的吸收,降低了镉的植物有效性.随着钾肥施用水平的增加,小麦植株不同部位(根、茎叶和籽实)镉的浓度先逐渐降低而后上升,小麦植株不同部位的富集系数也呈现先降低而后上升的趋势,并且钾肥在K2水平时对镉的缓解效果最佳.施用钾肥降低了根际、非根际土壤交换态镉的含量,钾肥主要影响了小麦根际、非根际土壤中交换态、碳酸盐态镉的含量,而对铁锰氧化物结合态、有机质硫化物态和残渣态镉的影响较小.镉、铅复合处理与镉单一处理相比较,铅可促进小麦对镉的吸收,提高镉的植物有效性.  相似文献   

17.
磺胺间甲氧嘧啶-镉复合污染对作物种子发芽的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
测定了黄潮土中常用兽药磺胺间甲氧嘧啶(SMM)与重金属镉(Cd)单一及复合污染对小麦和西红柿种子发芽(根伸长、芽伸长和发芽率)的影响,分析了土壤中药物浓度与作物生长抑制的剂量-效应关系及复合污染的毒性效应.结果表明,在单一污染物作用下,根伸长抑制率和芽伸长抑制率与药物浓度显著相关(P0.05);药物对根伸长及芽伸长的抑制高于对种子发芽的抑制;SMM对2种作物的毒性效应明显强于Cd,SMM对小麦和西红柿根伸长的IC50(抑制率为50%时污染物浓度)分别为33.7,49.3mg/kg,而Cd为507.3,599.8mg/kg.SMM和Cd复合污染时,在低Cd(200mg/kg)的胁迫下,联合作用主要体现为协同作用,但随着SMM浓度的增加,协同效应不显著(P>0.05);在高Cd(500mg/kg)作用下,二者的联合效应中Cd起主要作用.  相似文献   

18.
锌(Zn)和镉(Cd)的交互作用是近年来小麦Cd污染防治的重要研究方向.以华北地区典型小麦田为研究对象,通过田间试验,探究Zn肥对土壤-小麦系统Cd污染的控制效果和施用风险.结果表明,低用量Zn处理下,济源和开封两地小麦籽粒Cd含量均呈下降趋势,与对照相比下降幅度分别为33.4%和25.3%.高用量Zn处理下,两地小麦籽粒Cd含量不降反升,与低用量Zn处理下小麦籽粒Cd含量相比增幅为22.4%和34.2%.施Zn后两地土壤Zn总量和有效态含量均有显著升高,且造成了土壤Cd的部分活化.典型相关分析(CCA)显示,当土壤ω(Zn)小于200 mg ·kg-1时,土壤Zn是土壤-小麦系统Cd富集的主要影响因子,而当土壤ω(Zn)大于200 mg ·kg-1时,土壤Cd的活化是影响小麦籽粒Cd富集的主要原因.回归分析显示土壤Cd/Zn降至0.0089时(低用量Zn),Zn和Cd表现出拮抗效应,土壤Cd/Zn降至0.0078时(高用量Zn),Zn和Cd表现出协同效应.针对区域Cd污染特征,调整Zn肥用量可以提高污染防治效率并避免加剧Cd污染危害.  相似文献   

19.
两种不同镉富集能力油菜品种耐性机制   总被引:1,自引:0,他引:1  
利用水培试验研究了不同浓度镉(cadmium,Cd)胁迫条件下(0、2和5 mg·L~(-1))两种Cd富集能力油菜品种[秦油1号(QY-1)和三月黄(SYH)]生长状况与Cd富集特征的差异,并从Cd亚细胞区隔化和抗氧化酶活性等角度探索了两种油菜Cd富集能力的差异机制,并通过田间试验进行验证.结果表明,水培条件下,这两种油菜在Cd胁迫下生长均未受到明显的抑制.在低浓度Cd(2 mg·L~(-1))处理下,两种油菜地上部Cd含量无显著差异,在高浓度Cd(5 mg·L~(-1))胁迫下SYH的地上部和根部Cd含量均显著高于QY-1,分别提高32. 05%和99. 57%,同时其根部生物富集系数(BCF)也较QY-1显著提高.对两种油菜叶片中Cd亚细胞区隔化研究结果表明,随着Cd处理浓度的增加,QY-1和SYH叶片中Cd在热稳定蛋白和镉富集颗粒组分的分布分别提高了143. 69%、118. 91%和63. 34%、118. 91%,由此可见将Cd区隔在热稳定蛋白和镉富集颗粒体等重金属解毒组分是油菜在亚细胞水平上的重要解毒机制.同时,高浓度Cd胁迫下SYH叶中Cd在细胞碎屑组分的含量达QY-1的4. 41倍,可知Cd在细胞碎屑组分中的分布是导致两种油菜Cd富集能力差异的重要机制.结合对两种油菜抗氧化酶活性研究结果,发现抗氧化酶系统可能是QY-1应对高浓度Cd胁迫的重要解毒机制,而SYH则更多地通过将Cd区隔在金属低活性的亚细胞组分来减轻其毒性.田间试验结果验证表明,SYH地上部和地下部Cd含量均显著高于QY-1,分别是QY-1的2. 34和1. 43倍.综上所述,SYH具有更高的Cd提取量和富集能力,具有应用于中轻度Cd污染农田修复的潜力.  相似文献   

20.
模拟不同镉锌污染与有机肥(猪厩肥)施用水平,进行春小麦盆栽试验,采用Tessier法测试土壤中重金属形态.结果表明,复合污染时在同水平Cd(Zn)污染下,外源Zn(Cd)含量的增加使土壤中有效态Cd(Zn)的含量提高,小麦籽粒中Cd(Zn)含量增加(降低),而小麦籽粒产量均下降,差异极显著.施入猪厩肥降低了土壤中有效态Cd、铁锰氧化物结合态Cd的含量提高了土壤中有效态Zn、碳酸盐态Zn含量;降低了铁锰氧化物结合态Zn的含量.小麦籽粒中Zn含量并没有完全随土壤中有效态Zn增加而增加,在Zn/Cd为100~1000的处理中,施用猪厩肥反而降低了小麦籽粒中Zn含量;除Zn/Cd为100~10的处理中小麦籽粒中Cd含量有所下降外,其余处理中,施用猪厩肥小麦籽粒中Cd含量均有所增加.猪厩肥的施用能显著提高Cd、Zn污染土壤中小麦籽粒产量.  相似文献   

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