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1.
等渗NaCl和KCl胁迫对高粱幼苗生长和气体交换的影响   总被引:2,自引:1,他引:1  
本文比较研究了等渗NaCl和KCl胁迫下,高粱幼苗生长及叶片离子含量、质膜相对透性和有关气体交换参数的变化。结果表明,在低浓度NaCl和KCl胁迫7天时,高粱生长、含水量和质膜相对透性与对照相比没有明显变化,而净光合速率、蒸腾速率和气孔导度已明显下降,叶肉细胞间隙CO2浓度明显增加。NaCl胁迫下叶片Na+含量成倍增加,而K+和Ca2+含量无明显变化。KCl胁迫时叶片K+含量明显增加,Ca2+含量明显下降,而Na+含量没有明显变化。随着NaCl或KCl浓度的增加,幼苗生长和叶片含水量明显下降,质膜透性和细胞间隙CO2浓度明显增加,净光合速率、蒸腾速率和气孔导度进一步下降。NaCl胁迫下叶片Na+含量进一步增加,K+和Ca2+进一步下降,而KCl胁迫下叶片K+含量进一步增加,Na+和Ca2+含量进一步下降。KCl对高粱生长抑制、质膜透性、Ca2+含量下降及光合气体交换参数的影响均明显大于等渗的NaCl。  相似文献   

2.
采用营养液培养方法,以耐盐性较弱的‘津春2号’黄瓜品种为试材,研究了等渗Ca(NO3)2和NaCl胁迫对黄瓜幼苗生长、根系电解质渗透率、根系活力、Na+和K+含量及渗透调节物质含量的影响。结果显示:(1)在84mmol.L-1 NaCl和56mmol.L-1 Ca(NO3)2等渗胁迫下,黄瓜幼苗鲜重和干重均显著下降,且NaCl处理下降的幅度大于等渗Ca(NO3)2处理。(2)NaCl主要通过对黄瓜根系的伤害来抑制植株生长,表现为根系活力下降、根系质膜透性增大、Na+大量积累、K+含量显著下降、Na+/K+明显上升,最终导致根冠比下降;而Ca(NO3)2处理对根系质膜透性、K+含量、Na+/K+的影响均小于NaCl胁迫,且根系活力和根冠比上升,但Ca(NO3)2胁迫后叶片含水量和渗透调节能力均小于NaCl胁迫。(3)NaCl胁迫条件下,黄瓜幼苗内渗透调节物质以可溶性糖为主,而Ca(NO3)2胁迫以可溶性蛋白为主。研究表明,NaCl胁迫对黄瓜幼苗的伤害大于等渗Ca(NO3)2,NaCl主要通过破坏根系质膜结构影响植株生长,而Ca(NO3)2主要通过引起地上部生理干旱来影响植株生长。  相似文献   

3.
NaCl胁迫对西瓜幼苗生长和光合气体交换参数的影响   总被引:2,自引:0,他引:2  
以早春红玉品种为材料,采用营养液水培法,研究了不同浓度NaCl胁迫对西瓜幼苗生长、叶片光合气体交换参数、质膜透性和脯氨酸含量的影响.结果表明:25 mmol·L-1NaCl处理9 d后对西瓜幼苗生长有促进作用,>75 mmol·L-1NaCl处理则显著抑制幼苗生长;NaCl处理显著提高了叶片光合色素含量,并在100 mmol·L-1NaCl处理下达到最大;叶片净光合速率、气孔导度和蒸腾速率均随NaCl浓度提高而显著降低;胞间CO2浓度随NaCl浓度提高呈先降低后升高的趋势,在75 mmol·L-1NaCl处理下降到最小;气孔限制值随NaCl浓度提高而增加,在75 mmol·L-1NaCl处理下达到最大值后趋于稳定;水分利用率随NaCl浓度提高呈先增加后降低的趋势,在75 mmol·L-1NaCl处理下达到最大;叶片质膜透性和脯氨酸含量均随NaCl浓度提高而显著增加.结果说明:NaCl胁迫显著抑制了西瓜叶片光合作用,且低浓度处理下光合速率降低的主要原因是气孔因素限制,高浓度胁迫下则转变为非气孔因素限制.  相似文献   

4.
以披针叶黄华(Thermopsis lanceolata)试管苗为材料,通过组培方法研究其在0、0.2%、0.4%、0.6%、0.8%和1.0%NaCl和Na2SO4胁迫30d后的生长、有机渗透调节物质和无机渗透调节物质(Na+、K+和Ca2+)含量的变化,以探讨其耐盐性机制。结果显示:(1)随NaCl和Na2SO4胁迫浓度的增加,披针叶黄华试管苗叶片脯氨酸和可溶性糖含量均显著持续增加,且NaCl胁迫下脯氨酸上升的幅度均大于相同浓度Na2SO4胁迫下的增幅,而可溶性糖上升的幅度却小于相同浓度Na2SO4胁迫下的幅度;可溶性蛋白含量随NaCl浓度的增大呈先升高后降低的趋势,但随Na2SO4浓度的增加呈持续上升的趋势。(2)随NaCl和Na2SO4浓度的增加,披针叶黄华试管苗Na+含量呈增加趋势且各处理均显著高于对照,Ca2+含量和叶片K+含量却呈逐渐减少趋势且各处理均显著低于对照,而根系K+含量呈先降后升的趋势;Na2SO4胁迫下披针叶黄华试管苗叶片Na+含量上升幅度以及K+和Ca2+含量下降幅度均明显低于相同浓度NaCl胁迫组;而Na+/K+和Na+/Ca2+比值随NaCl和Na2SO4浓度增加而升高;NaCl胁迫下,叶片Na+/K+和Na+/Ca2+高于相同浓度Na2SO4胁迫下的比值,而根系Na+/K+和Na+/Ca2+却低于相同浓度Na2SO4胁迫下的比值。研究表明,盐胁迫下,披针叶黄华试管苗通过抑制叶片中Na+积累并增加可溶性糖和可溶性蛋白含量,在根系中维持较高K+和Ca2+含量以及较低水平Na+/K+和Na+/Ca2+比,以降低披针叶黄华细胞渗透势来适应盐渍环境;披针叶黄华对NaCl胁迫的调节能力弱于Na2SO4。  相似文献   

5.
不同形态氮素配比对盐胁迫下菊芋幼苗生理的影响   总被引:4,自引:0,他引:4  
采用砂培方法研究了不同铵硝配比(NH4+/NO3-分别为4/1、1/1、1/4)的氮素营养和盐分胁迫耦合作用下菊芋幼苗的光合作用和离子吸收运输.结果表明:低浓度的盐胁迫对植物生长的抑制作用不大,而高浓度的盐胁迫却能明显抑制菊芋幼苗生物量的积累,在同一盐浓度下,提高硝态氮比例能够缓解盐胁迫对菊芋幼苗生长的抑制,促进菊芋幼苗鲜重和干重的增加;随着盐浓度的增加,菊芋幼苗地上部和地下部的Na+含量显著增加,而K+、Ca2+含量较对照显著降低,提高硝态氮比例有利于菊芋幼苗对K+和Ca2+的吸收和向上运输,从而维持地上部较高的K+/Na+和Ca2+/Na+;在3种铵硝比的氮素营养处理下,随着盐浓度的增加,菊芋幼苗叶片叶绿素含量、净光合速率、蒸腾速率、气孔导度和水分利用效率较对照均呈显著下降的趋势,细胞间隙CO2浓度则显著增加,提高硝态氮比例可显著提高盐胁迫下菊芋幼苗的叶绿素含量、净光合速率、蒸腾速率、气孔导度和水分利用效率,同时也能显著降低胞间CO2浓度,其中以铵硝比为1/4的氮素营养供应对盐胁迫的缓解作用相对较好,在100 mmol·L-1NaCl处理下其叶片叶绿素含量、净光合速率、蒸腾速率、气孔导度和水分利用效率分别是铵硝比为4/1的氮素营养处理值的1.63、1.57、1.39、1.37、1.2倍,而胞间CO2浓度则减少了17%.因此相对于铵态氮来说,硝态氮比例的增加有利于维持盐胁迫下菊芋幼苗体内矿质营养元素含量平衡,促进盐胁迫下菊芋光合功能的改善,增强菊芋对盐胁迫的抗性.  相似文献   

6.
在实验室水培条件下,研究了NaCl胁迫下玉米幼苗不同器官中Na+、K+,Ca2+,Mg 2+和Cl-含量的变化.结果表明:玉米各个部分Na+和Cl-含量、Na+/K+和Na+/Ca2+比值均随着培养液中NaCl浓度的增加而迅速提高,Na+,K+和Cl-含量的变化幅度为根系>成熟叶叶鞘>生长叶>成熟叶叶片,玉米幼苗根系最易受外界离子浓度的影响,叶片受外界环境影响较小;各器官中Ca2+、Mg2+对盐胁迫的响应不一致,NaCl胁迫使根系中Ca2+、Mg2+含量下降,成熟叶叶鞘中Mg2+含量变化规律性不明显,而NaCl胁迫下,成熟叶叶片中Ca2+、Mg2+含量增加;玉米幼苗具有拒Na+机制,具有一定的耐盐性,它的耐盐性是通过根和成熟叶叶鞘来实现的,Na+主要贮存在根系和成熟叶叶鞘中,而向成熟叶叶片和生长叶中运输较少;成熟叶叶鞘同时还具有拒Cl-能力.  相似文献   

7.
NaCl胁迫对白刺试管苗渗透调节物质及离子含量的影响   总被引:5,自引:2,他引:3  
以西伯利亚白刺试管苗为材料,通过组织培养法研究了其在0、25、50、100和200 mmol·L-1 NaCl 胁迫40 d后的生长指标、有机渗透调节物质含量和Na+、K+、Ca2+、Mg2+离子含量的变化,以探讨其耐盐性.结果表明:(1)白刺试管苗地上部干重和根干重在50 mmol·L-1 NaCl胁迫下显著高于对照,而在100和200 mmol·L-1 NaCl胁迫下均显著低于对照.(2)随NaCl胁迫浓度增加,白刺试管苗叶片可溶性糖、脯氨酸含量和细胞质膜透性均呈持续上升趋势,叶片叶绿素含量和丙二醛含量分别呈先升后降、先降后升的趋势,并在50 mmol·L-1 NaCl处理时分别达到最高值和最低值.(3)随着NaCl处理浓度增加,白刺试管苗Na+含量和根系K+含量呈增加趋势且各处理均显著高于对照,幼苗Ca2+含量和地上部K+含量却呈减少趋势,而Mg2+含量较稳定;同时其Na+/K+ 、Na+/Ca2+和Na+/Mg2+随NaCl处理浓度增加而升高.研究发现,在低盐浓度(≤50 mmol·L-1NaCl)胁迫下,白刺试管苗能积累Na+离子和有机渗透调节物质,在根系中维持较高水平的K+和Ca2+含量以及较低水平的Na+/K+和Na+/Ca2+比,以降低白刺细胞渗透势来适应盐渍环境,从而保持其较高的生长水平.  相似文献   

8.
采用营养液砂培方法,研究了不同浓度NaCl胁迫(0、50、100、150、200和250mmol·L-1)对“定莜6号”燕麦幼苗生长、活性氧代谢和渗透调节物质含量的影响.结果表明:NaCl胁迫显著抑制燕麦幼苗的生长,抑制程度随NaCl浓度提高而增强,燕麦可耐受的最高NaCl浓度约为150 mmol·L-1;随着NaCl浓度的增加,叶片O2-产生速率、H2O2和丙二醛含量明显增加,超氧化物歧化酶、过氧化物酶和抗坏血酸过氧化物酶活性先升后降,过氧化氢酶活性迅速下降后逐渐升高,NaCl胁迫明显降低了谷胱甘肽含量,而抗坏血酸含量变化不大;NaCl胁迫显著提高了叶片脯氨酸含量,Na+含量随着NaCl浓度增加不断提高,K+含量和K+/Na+逐渐下降,质膜H+-ATP酶活性、总可溶性蛋白、热稳定蛋白和热不稳定蛋白含量先升后降,游离氨基酸含量先降后升,可溶性糖含量呈降-升-降趋势变化;盐胁迫下活性氧代谢失调和Na+、K+平衡破坏及积累有机溶质进行渗透调节时更多能量的消耗可能是燕麦生长受抑的重要因素.  相似文献   

9.
低硫氮比酸雨对亚热带典型树种气体交换和质膜的影响   总被引:4,自引:1,他引:3  
通过对我国亚热带典型树种香樟(Cinnamomum camphora)、木荷(Schima superba)和枫香(Liquidambar formosana)1年生幼苗为期4个月的模拟酸雨处理,以当地水库水为对照,研究硫氮比(摩尔比)为1.58的酸雨胁迫(中度酸雨pH3.5、重度酸雨pH2.5)下植物气体交换参数、光合色素含量、质膜透性和丙二醛含量等生理指标的变化规律。结果表明:中度酸雨对植物的气体交换和质膜没有造成明显影响。重度酸雨导致叶片净光合速率、气孔导度、蒸腾速率和水分利用效率下降;植物叶片的质膜透性和丙二醛含量显著上升;重度酸雨的氮肥效应虽提高了叶片叶绿素含量,但单位叶绿素的净光合速率仍下降明显。与以往高硫氮比(摩尔比>6)酸雨胁迫研究相比,低硫氮比可能会减缓中度酸雨(pH3.5)对植物气体交换和质膜的负面影响;但是当pH值降至2.5时,酸雨仍然会造成植物气孔部分关闭,膜系统损伤,叶绿素光合活性下降,并最终抑制植物光合作用。  相似文献   

10.
NaCl胁迫对盐芥质膜和液泡膜ATPase活性的影响   总被引:5,自引:1,他引:4  
以盐生植物盐芥和中生植物拟南芥幼苗为材料,研究了盐胁迫对它们叶片和根质膜、液泡膜H+-ATPase、Ca2+-ATPases和K+-ATPase活性以及H+-ATPase、Na+/H+ 逆向转运蛋白表达的影响.结果显示:在NaCl胁迫下,盐芥叶片和根质膜的H+-ATPase活性分别比对照显著升高41%~212%和35%~53%,液泡膜的H+-ATPase分别显著升高281%~373%和4%~38%,而拟南芥却比相应对照都显著降低;相同盐浓度胁迫下,盐芥叶片的H+-ATPase活性比根部高4~8倍,盐芥根也远高于拟南芥.在NaCl胁迫下,盐芥叶片和根的液泡膜H+-ATPase蛋白质β亚基含量变化与其酶活性变化趋势一致,质膜Na+/H+ 逆向转运蛋白的表达量与Na+含量变化趋势一致.盐胁迫下盐芥根中Ca2+-ATPases和K+-ATPase活性的增加与根中Ca2+和K+含量呈显著正相关.研究发现,在盐胁迫条件下,盐芥能有效增强H+-ATPase蛋白和Na+/H+逆向转运蛋白表达,显著提高其根系与叶片质膜和液泡膜的H+-ATPase、Ca2+-ATPase和K+-ATPase活性,维持细胞质中较高的Ca2+和K+水平,从而缓解盐胁迫的伤害,增强耐盐性.  相似文献   

11.
The changes of ion contents, betaine levels and betaine-aldehyde dehydrogenase (BADH) activity in seedling of halophyte seepweed (Suaeda salsa) were studied under different salinity (NaC1 and KC1). Results showed that the K+ contents in seepweed seedlings grown in NaC1 for 96 h decreased as the external salinity was increased comparing with the controls while the Na+ levels increased substantially. The levels of Na+ in seepweed treated with KC1 fell, but K+ levels rose. The betaine levels and the BADH activity rose with the increase of external NaC1 concentrations and the betaine levels increased as the time of the treatment was lengthened. The effects of KC1 on the betaine levels and BADH activity were similar to these of NaC1. These results illustrated that NaC1 and KC1 can cause a large amounts of betaine accumulation in seepweed, and preliminary data suggest that BADH activity has played a role in betaine accumulation.  相似文献   

12.
将当年生构树幼苗置于含有不同浓度(04、1、2、3、4 g·kg-1)NaCl的土壤中,研究其生物量积累、叶片细胞质膜透性和K+、Ca2+、Na+、Cl-等离子的吸收、分布及运输,并观察盐害症状.结果表明:构树幼苗的叶片质膜透性随着NaCl浓度的增加和胁迫时间的延长而升高,根冠比随NaCl浓度的升高而增加,大于3 g·kg-1的土壤盐胁迫对构树叶片的质膜透性及植株的生物量积累影响显著.构树幼苗各器官中Na+和Cl-含量随土壤NaCl浓度升高而显著增加,K+和Ca2+则随之降低,叶片各离子含量均明显高于根和茎.说明盐胁迫影响根系对K+和Ca2+的吸收,并抑制了它们向地上部分的选择性运输,使叶和茎的K+和Ca2+含量下降.构树通过吸收积累Na+和Cl-抵御土壤盐分带来的渗透胁迫,但过量的Na+和Cl-积累会造成单盐毒害.作为抗盐性较高的非盐生植物,构树地上部分的拒盐作用不显著.  相似文献   

13.
将当年生构树幼苗置于含有不同浓度(04、1、2、3、4 g·kg-1)NaCl的土壤中,研究其生物量积累、叶片细胞质膜透性和K+、Ca2+、Na+、Cl-等离子的吸收、分布及运输,并观察盐害症状.结果表明:构树幼苗的叶片质膜透性随着NaCl浓度的增加和胁迫时间的延长而升高,根冠比随NaCl浓度的升高而增加,大于3 g·kg-1的土壤盐胁迫对构树叶片的质膜透性及植株的生物量积累影响显著.构树幼苗各器官中Na+和Cl-含量随土壤NaCl浓度升高而显著增加,K+和Ca2+则随之降低,叶片各离子含量均明显高于根和茎.说明盐胁迫影响根系对K+和Ca2+的吸收,并抑制了它们向地上部分的选择性运输,使叶和茎的K+和Ca2+含量下降.构树通过吸收积累Na+和Cl-抵御土壤盐分带来的渗透胁迫,但过量的Na+和Cl-积累会造成单盐毒害.作为抗盐性较高的非盐生植物,构树地上部分的拒盐作用不显著.  相似文献   

14.
Salt-dilution halophyte Suaeda salsa, salt-secretory halophytes Atriplex centrMasiatica and Limonium bicolor were treated with different concentrations of KC1 and isosmotic NaC1. It was found that the organic dry weight and net photosynthetic rate of these plants were inhibited by 100--500 and 100--400 mmol/L KC1 respectively, indicating the existance of a relationship between the growth inhibition by K+ and the decrease of photosynthesis in halophytes. After treatment with 100--400 mmol/L KCI, the content of K+ increased while that of Na+ decreased, but there were no change in osmotic potential and ability of osmotic adjustment. It proved that growth inhibition by K+ was related to Na+ deficiency in osmotic adjustment and the toxic effect of high K+ on cells. Further there was no direct relation between the decrease of growth and photosynthesys and the content of sugars in leaves. Moreover, the inhibition of ATPase activity by high K+ concentration was probably related to growth inhibition.  相似文献   

15.
The aim of the present study was to investigate the mechanisms involved in the contraction evoked by iso-osmotic high K+ solutions in the estrogen-primed rat uterus. In Ca2+-containing solution, iso-osmotic addition of KCl (30, 60 or 90 mM K+) induced a rapid, phasic contraction followed by a prolonged sustained plateau (tonic component) of smaller amplitude. The KCl (60 mM)-induced contraction was unaffected by tetrodotoxin (3 microM), omega-conotoxin MVIIC (1 microM), GF 109203X (1 microM) or calphostin C (3 microM) but was markedly reduced by tissue treatment with neomycin (1 mM), mepacrine (10 microM) or U-73122 (10 microM). Nifedipine (0.01-0.1 microM) was significantly more effective as an inhibitor of the tonic component than of the phasic component. After 60 min incubation in Ca2+-free solution containing 3 mM EGTA, iso-osmotic KCl did not cause any increase in tension but potentiated contractions evoked by oxytocin (1 microM), sodium orthovanadate (160 micrM) or okadaic acid (20 microM) in these experimental conditions. In freshly dispersed myometrial cells maintained in Ca2+-containing solution and loaded with indo 1, iso-osmotic KCl (60 mM) caused a biphasic increase in the intracellular Ca2+ concentration ([Ca2+]i). In cells superfused for 60 min in Ca2+-free solution containing EGTA (1 mM), KCl did not increase [Ca2+]i. In Ca2+-containing solution, KCl (60 mM) produced a 76.0 +/- 16.2% increase in total [3H]inositol phosphates above basal levels and increased the intracellular levels of free arachidonic acid. These results suggest that, in the estrogen-primed rat uterus, iso-osmotic high K+ solutions, in addition to their well known effect on Ca2+ influx, activate other cellular processes leading to an increase in the Ca2+ sensitivity of the contractile machinery by a mechanism independent of extracellular Ca2+.  相似文献   

16.
采用沙培法,对盐胁迫下坪山柚和福橘幼苗体内矿质元素的变化进行了研究。结果表明,随着NaCl浓度的增加,坪山柚和福橘幼苗根部及地上部Na^+、Cl-含量增加,且相同浓度下,福橘比坪山柚高。40mmol/L NaCI胁迫下,坪山柚和福橘幼苗地上部的K^+、Fe含量,根部的Ca^2+、Mg^2+、Zn含量显著下降,而根部Fe含量及地上部Zn含量显著增加。随NaCl浓度增大,坪山柚根部K^+含量,地上部Ca^2+、Mg^2+含量变化不明显,而福橘根部、地上部上述离子含量在NaCl浓度≥160mmol/L时均显著下降。因此,根部K^+含量,地上部Ca^2+、Mg^2+含量存在品种问差异,或许可作为耐盐性鉴定指标。NaCl胁迫降低坪山柚和福橘幼苗根部及地上部P、Mn含量,而Cu含量在较高浓度NaCl胁迫下显著增加。NaCl胁迫明显降低坪山柚和福橘幼苗地上部K^+/Na^+、Ca^2+/Na^+和Mg^2+/Na^+值,其中K^+/Na^+值的变化可考虑作为柑橘耐盐性鉴定的指标。  相似文献   

17.
Wheat seedlings (Tritium aestivum "No. 1 Yuyuan") with 3 leaves were transplanted to 1/2 strangth Hoagland nutrient solution containing 100 mmol/L NaCl and supplemented with different concentrations of CaCI2, which were mode isosmotic by adding polyethylene glycol (PEG) and aerated by pump. Results showed that the Na+ content of shoots and roots, relative leaf expansion rate, plasma membrane permeability, the levels of membrane lipid superoxidation and the molar percentage of monogalacrosyl diglyceride(MGDG), digalactosyl diglyceride(DGDG) phosphatidyl choline(PC) and phosphatidyl ethanolamine(PE) in membrane lipids of roots increased, the plant dry weight, K+ content, SOD activity and the molar percentage of phosphatidic acid(PA), phospatidyl inositol (PI), phosphatidyl glycerol(PG) and polyphosphoglyceric acid(PPG) decreased in roots. There was no change in sulfolipid(SL). However, the above mentioned salt injury effects were all alleviated by the different Na+/Ca2+ ratios. The maximum alleviation of salt injury effect was at Na+/Ca2+ ratio of I0. As three kinds of free radical scavengers were used to pretreat wheat seedlings prior to NaC1 treatment the malondialdehyde(MDA) content decreased unanimously, but increased with SOD inhibitor sodium diethyldithiocarbamate (DDTC) pretreatment to wheat seedlings. Obviously, the salt injury effects induced by NaC1 was relatied to the extent of superoxidation of membrane [ipids and also to the composkion of membrane of Ca2+ on lipids including their fatty acids as well. On the other hand, the alleviating effect of Ca2+ on NaC1 induced injury in wheat seedlings was also in relation to them.  相似文献   

18.
以药用蒲公英(Taraxacum officinale)为试材,研究不同浓度盐胁迫对其生长特性、有效成分积累和离子吸收分配的影响。结果表明,低盐胁迫(0.1% NaCl)对药用蒲公英生长和菊苣酸含量无显著影响,叶中Na+含量与对照无显著差异,K+含量及K+/Na+显著升高;高盐胁迫(≥0.2% NaCl)下其生长受到显著抑制,菊苣酸含量显著降低,类囊体膜结构随着盐胁迫加剧趋于紊乱,光合能力减弱,叶片Na+含量显著上升,而K+、Ca2+和Mg2+含量下降,K+/Na+、Ca2+/Na+和Mg2+/Na+显著降低。离子运输选择性系数(SCa,Na、SMg,Na、SK,Na)随着盐胁迫加剧呈先升后降趋势。相关性分析表明,盐胁迫下蒲公英叶片Na+含量与叶片生理指标呈极显著负相关。因此,叶片Na+富集是药用蒲公英遭受盐害导致生长受抑制的主要原因之一。  相似文献   

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