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1.
松茶间作茶树叶片的解剖构造和气孔活动   总被引:1,自引:0,他引:1  
本文利用光镜技术和MK-3型自动气孔计对松茶间作和单作茶园茶树叶片的解剖构造和气孔传导力进行了比较研究。研究表明,间作茶园茶树叶片的上表皮、栅拦组织和全叶均比单作茶树薄,分别为单作茶树的82.7%,78.2%和67.2%,叶质柔嫩。叶片气孔传导力比单作茶园低。嫩叶传导力>老叶;1芽5叶新梢按叶序3叶>2、4叶>1、5叶;按树冠垂直分布,冠上叶(0—5cm)>冠中叶(10—15cm)>冠下叶(30cm左右)。说明气孔传导力不仅受生态条件影响,与自身的叶龄、叶位等生理机能也有密切关系。  相似文献   

2.
冬小麦群体叶片气孔导度差异性分析   总被引:3,自引:0,他引:3  
对冬小麦 (Triticum aestivum L.)两个品种 3个生育期测定和分析了群体叶片的气孔导度。结果表明 ,近轴面气孔导度比远轴面的大 ,二者之比呈近似正态分布 ,最大概率出现约为 1 .5,该比值在冠层垂直方向变化不显著 ,但随季节而变 ,抽穗期最大。叶片气孔导度从冠层顶部向下迅速递减 ,递减系数约为 0 .57,且各层日变化大致平行。冠层上部气孔活跃 ,导度日变化明显 ,下部日变化不大。同一叶片的气孔导度由近轴面的叶基 ,经由其叶中、叶尖 ,翻过尖点 ,再从远轴面的叶尖经叶中向叶基递减。对近轴面叶中、叶尖气孔导度与该面平均气孔导度相关系数较大 ,而对远轴面叶中、叶基气孔导度与该面气孔导度相关系数较大 ,据此建议测定近轴面气孔导度时 ,应以叶中、叶尖部位为最佳点 ,而测定远轴面气孔导度时 ,应以叶中、叶基部位为最佳点  相似文献   

3.
为了探究不同水分处理下草本植物对喀斯特土层厚度变化的叶片形态建成和光合生理响应,以黑麦草(Lolium perenne L.)和苇状羊茅(Festuca arundinacea Schreb.)为研究对象,通过盆栽水分受控试验,研究了3种水分处理[正常供水(W_(ck)),减水1组(D1)和减水2组(D2)]下3种土层厚度[浅土组(S_S)、对照组(S_(CK))和深土组(S_D)]对两种草本叶片解剖结构和光合特性的影响。结果表明:(1)正常供水下(W_(ck)),黑麦草和苇状羊茅在浅土组(S_S)的气孔密度和气孔限制值(Ls)均显著高于对照组(S_(CK)),净光合速率(Pn)、胞间CO_2浓度(Ci)和蒸腾速率(Tr)降低;在深土组(S_D),两种植物的气孔密度都有所下降,黑麦草的叶脉密度、Pn和Tr均低于对照组,而苇状羊茅的叶脉密度和Pn表现出增加;(2)D1水分条件下,黑麦草在浅土组的气孔密度较对照组增加,叶脉密度、Pn和Tr均降低,而苇状羊茅的气孔密度有所降低,叶脉密度、Pn和Tr未受到显著影响;在深土组中,黑麦草的气孔密度不变,叶脉密度增加,而Pn和Tr均降低;苇状羊茅的气孔密度降低,但叶脉密度、Pn和Tr均升高;(3)D2水分条件下,两种植物在浅土组的叶脉密度较对照组均增加,气孔密度、Pn和Tr均受到抑制;在深土组,黑麦草的远轴面气孔密度较对照组下降,两种植物的其他指标未受到明显影响。可见,在不同水分条件下,植物的叶片解剖结构和光合特性对不同土层厚度的响应不一,且不同物种间也有差异。总体上随着水分减少,土层厚度降低对植物的光合抑制作用增强,而厚度增加对深根植物的光合促进作用和对浅根植物的光合抑制作用先增强后减弱。植物气孔和叶脉性状特征随水分条件的变化在一定程度上与叶面积和叶片宽度的变化有关。  相似文献   

4.
曼地亚红豆杉蒸腾速率日变化及因子分析   总被引:8,自引:2,他引:6  
应用LI-1600 稳态气孔计对曼地亚红豆杉(Taxus media cv.Hicksii)叶片的蒸腾速率、气孔阻力和几个生态因子的日变化同步进行了测定。并采用多元回归分析和灰色关联度分析的方法探讨了曼地亚红豆杉叶片蒸腾速率与影响因子的关系, 结果表明:影响曼地亚红豆杉蒸腾速率的主要因子是叶温、气温;其次是光量子通量密度、空气相对湿度、气孔阻力。灰色关联度分析与多元回归分析结论基本一致。对曼地亚红豆杉叶片蒸腾速率与气孔阻力的相关关系分析表明:蒸腾速率和气孔阻力间属非线性关系, 其方程为:Tr=12.789-13.419 lg Rs(R2=0.971 7)  相似文献   

5.
黄土高原森林草原区6种植物光合特性研究   总被引:16,自引:1,他引:15       下载免费PDF全文
 对黄土高原森林草原区6种不同植物的生理生态学特性进行了一个生长季的野外观测。测定了2002年生长季早、中、晚期植物叶片的光合、蒸腾速率及相应的微气象因子和土壤水分的含量。在此基础上,采用机理性生理生态学模型对黄土高原森林草原区6种植物净光合速率和气孔导度与环境因子的关系进行了分析,净光合速率模型和气孔导度模型分别能够解释57%~79% 和40%~59% 生长季中净光合速率和气孔导度的日变化。在此基础上根据拟合得到的参数计算了典型7月份天气的净光合速率的日变化。模拟的结果表明:沙棘(Hippophae rhamnoides L. subsp. sinensis Rousi)的生物化学光合能力最强,茵陈蒿(Artemisia capillaris)的光呼吸速率最低,这两种植物的净光合速率高于其它植物种。刺槐(Robinia pseudoacacia)、铁杆蒿 (Artemisia gmelinii)、茵陈蒿和沙棘在午后出现的净光合速率下降主要是由气孔导度减小引起的,而苹果 (Malus pumila) 和柠条 (Caragana korshinskii)午后净光合速率的降低与叶肉细胞酶的活性降低有关。这些结论为未来的实验室测定提供了野外观测佐证。  相似文献   

6.
利用开放式气室(OTC)持续观测了2个生长季(2005-2006年).在每年9月30日停止供气后,采样1次.观测高浓度CO2和O3处理的银杏(Ginkgo biloba)成年叶片气孔数量的变化规律.结果表明:在700 μmol·mol-1CO2处理条件下,叶片气孔的长度、宽度、周长和面积均明显高于对照(P<0.05);在80 μmol·mol-1O3处理条件下,气孔的长度、宽度、周长和面积却显著低于对照(P<0.01);成年叶片气孔在高浓度CO2影响下,气孔密度略有升高(P>0.05),而气孔指数显著减少(P<0.05);大气O3浓度升高对气孔密度影响不大(P>0.05),气孔指数显著减少(P<0.05);银杏成年叶片气孔的长度、宽度与气孔比密度存在一定的负相关关系,可用一元二次曲线方程较好地描述.  相似文献   

7.
李冬林  王火  江浩  祝亚云  金雅琴  崔梦凡 《生态学报》2019,39(24):9089-9100
设置了全光照(L0)、透光率60%(L1)、透光率25%(L2)、透光率10%(L3)4种光环境,研究了不同遮光处理对香果树幼苗光合作用及叶片解剖结构的影响。结果表明:(1)遮光对香果树幼苗净光合速率(P_n)、蒸腾速率(T_r)、气孔导度(G_s)、气孔限制值(L_s)、胞间CO_2浓度(C_i)、蒸汽压亏缺(V_(pdl))均产生了显著影响。全光和L1处理下Pn和Tr日变化呈明显的双峰曲线,中午出现了明显的"午休",其余处理的变化相对缓和,双峰和"午休"现象不明显;G_s的日变化规律与Pn基本一致;C_i的日变化整体呈先期缓慢降低后期抬升的趋势,与对照相比遮光显著提高了叶片胞间CO_2浓度;Ls和V_(pdl)呈现出先升后降的弧形变化,并且遮光下L_s和V_(pdl)日均值显著低于全光照。一天中P_n和T_r的日均值大小排序为L1L0L2L3。(2)不同光环境下香果树幼苗的光合响应特征明显不同。全光下,香果树幼苗能够维持较高的净光合作用速率而未呈现明显的光抑制,表现出一定的光忍耐和喜光性。L1处理下的最大净光合速率(P_(max))、暗呼吸速率(R_d)和表观量子效率(AQY)显著增加,说明香果树对光强具有一定的可塑性,轻度遮光有利于光合效率提高;强度遮光(L2、L3)导致光补偿点(LCP)和光饱和点(LSP)显著降低,有利于充分利用弱光,但P_(max)、R_d明显下降,光合效率受到抑制。(3)遮光显著影响了香果树叶片的气孔分布。遮光条件下香果树叶片的气孔密度显著减小,气孔器长度、宽度与单个气孔器面积也呈现类似的变化。(4)遮光条件下香果树叶片厚度减小,上表皮增厚,下表/ST增加;维管束内单列导管数目和导管直径均有明显增大,促进了叶片水分传导运输。(5)在育苗生产中,为了适应香果树幼苗生长发育的需求,建议有效辐射强度保持在自然光强的60%以上。  相似文献   

8.
高冠龙  冯起  刘贤德  李伟 《生态学报》2020,40(10):3486-3494
植物叶片气孔是控制水分和CO_2出入的通道,是植物水分蒸腾和气体交换的门户。植物叶片气孔导度地准确模拟,对于植物蒸腾作用地有效模拟以及植物与大气间能量和质量平衡的研究至关重要。基于黑河下游阿拉善群落水热平衡综合观测场实际观测数据,采用LI-COR 6400光合作用测定系统,对荒漠河岸柽柳叶片气孔导度进行观测,分析晴朗天气条件下气孔导度日变化特征,同时,结合微气象及植物生理相关数据,运用学术界3种最常用的(半)经验模型对柽柳叶片气孔导度进行模拟,结果表明:(1)柽柳叶片气孔导度日变化大致呈先升高后降低的趋势。上午随着太阳辐射逐渐增强,气温逐渐升高,气孔导度值逐渐升高,蒸腾速率也逐渐增大,在10:00—12:00时间段内达到最大值。绝大部分观测日内12:00前后气孔导度呈现出一定的波动,原因在于温度过高致使叶片气孔关闭。随后,太阳辐射减弱,气温逐渐降低,空气中相对湿度增加,柽柳叶片内外水汽压差减小,气孔导度减小导致蒸腾速率下降。(2)通过3种最常用的(半)经验模型(Jarvis、Ball-Woodrow-Berry(BWB)和Ball-Berry-Leuning(BBL))模拟气孔导度的结果可以看出,Jarvis模型的修正效率系数(0.775、0.891)、修正一致系数(0.887、0.945)和决定系数(0.590、0.645)在3个模型中均是最高或次最高的,说明其模拟精度最高。(3)BWB模型与BBL模型的模拟精度相近,说明水汽压差、大气湿度与气孔导度的密切程度相近,没有明显的区别。  相似文献   

9.
刘英  雷少刚  程林森  程伟  卞正富 《生态学报》2018,38(9):3069-3077
采煤塌陷引起的土壤环境因子的变化对矿区植物生长的影响越来越受到人们的关注,气孔导度、蒸腾与光合作用作为环境变化响应的敏感因子,研究植物气孔导度、蒸腾与光合作用的变化是揭示荒漠矿区自然环境变化及其规律的重要手段之一。研究采煤塌陷条件下植物光合生理的变化是探究煤炭开采对植物叶片水分蒸腾散失和CO_2同化速率影响的关键环节,是探讨采煤塌陷影响下植物能量与水分交换动态的基础,而采煤矿区植物叶片气孔导度、蒸腾与光合作用速率对采煤塌陷影响下土壤含水量变化的响应如何尚不清楚。选取神东煤田大柳塔矿区52302工作面为实验场地,以生态修复物种柠条为研究对象,对采煤塌陷区和对照区柠条叶片气孔导度、蒸腾和光合作用速率以及土壤体积含水量进行监测,分析了采煤塌陷条件下土壤含水量的变化以及其对柠条叶片气孔导度、蒸腾与光合作用速率的影响。结果显示:(1)煤炭井工开采在地表形成大量裂缝,破坏了土体结构,潜水位埋深降低,土壤含水量均低于沉陷初期,相对于对照区,硬梁和风沙塌陷区土壤含水量分别降低了18.61%、21.12%;(2)柠条叶片气孔导度、蒸腾和光合作用速率均与土壤含水量呈正相关关系;煤炭开采沉陷增加了地表水分散失,加剧了土壤水分胁迫程度,为了减少蒸腾导致的水分散失,柠条叶片气孔阻力增加,从而气孔导度降低,阻碍了光合作用CO_2的供应,从而导致柠条叶片光合作用速率的降低,蒸腾速率也显著降低。  相似文献   

10.
北京山区落叶阔叶林优势种叶片特点及其生理生态特性   总被引:17,自引:4,他引:13  
荆条、山杏、辽东栎、北京丁香、大叶白蜡、核桃楸等6种植物在不同光照条件下的气孔导度,不同生境下叶片形态参数和叶片解剖特征进行了研究。扫描电子显微镜图片显示这片植物的气孔全着生在远轴面,气孔密度大小是:辽东栎〉山杏〉北京丁香〉核桃楸〉大叶白蜡,方差分析结果显示这5种植物叶片上气孔密度存在极显著差异,且叶片外表微观上差异比较明显。生境不仅影响叶片的气孔密度,而且也导气孔导度的差异,全光照条件下,山杏、  相似文献   

11.
以土培盆栽和大田栽培小麦(Triticumaestivum)为研究材料,探讨了青海高原小麦在正常生长的自然条件下,出现的土壤水分含量(SWC)的变化所引起的植物叶片相对含水量(RWC)和叶水势(wl)的变化以及自然强光(PFD;Q)导致的高温(Ta)所产生较低的空气相对温度(RH)对小麦叶片净光合速率(Pn)日变化的中午降低现象的影响。结果表明,在大田小麦正常生长的自然条件下,当SWC等于或低干30%时,小麦叶片的RWC和wl下降,气孔导度(Gs)变小,气孔阻力增大,CO_2的供给受到了限制,从而也引起了小麦叶肉细胞进行光合作用的能力下降,Pn日变化就出现了明显的中午降低现象。当SWC在80%左右时,小麦叶片的RWC和wl升高,Gs增大,气孔阻力变小,CO_2供应充分,小麦叶肉细胞进行光合作用的能力增强,Pn日变化就没有出现中午降低现象(图1),而青海高原偶然出现的自然强光(PFD)导致较高的Ta所产生较低的RH%和较低的SWC一样也是晴天中午,小麦叶片Pn日变化产生中午降低现象的直接原因。所以说,晴天中午,青海高原大田SWC的高低和RH%的大小是引起小麦叶片Pn日变化出现中午降低现象轻重与否的主要生态因素  相似文献   

12.
The purpose of this study is to examine diurnal variation in several thermal and metabolic parameters of the golden hamster, Mesocricetus auratus. Metabolic rate, core temperature, and evaporative water loss were measured during night and day at several ambient temperatures. Wet minimal thermal conductance, dry minimal thermal conductance, basal metabolic rate, minimal net heat production and the lower critical temperature difference were estimated from these measurements. Wet and dry minimal thermal conductance, evaporative water loss, core temperature, basal metabolic rate, and lower critical temperature difference were greater during the active phase than during the resting phase. The diurnal variation in wet minimal thermal conductance was much smaller than that predicted from published allometric equations. The diurnal variation in wet minimal thermal conductance was 9% of the 24-h mean. The diurnal variation in dry minimal thermal conductance was 26% of the 24-h mean. The higher active-phase core temperature and basal metabolic rate may function to enhance peak metabolic performance during the active phase. The lower resting phase metabolism and core temperature may reduce energetic costs. The greater active-phase lower critical temperature difference may be a result of the greater active-phase basal metabolic rate. Diurnal variation in minimal thermal conductance may be caused by changes in peripheral circulation.Abbreviations BMR basal metabolic rate - T difference between core and ambient temperatures - T 1c lower critical temperature difference - EWL evaporative water loss - MTC minimal thermal conductance - MR metabolic rate - Q ev evaporative heat loss - RQ respiratory quotient - T a ambient temperature - T c core temperature - T 1c lower critical temperature  相似文献   

13.
麦田冠层气孔导度的分层研究   总被引:2,自引:0,他引:2  
小麦灌浆期和乳熟期冠层各层叶片上、下表面的气孔导度之间呈正相关关系;冠层不同层的叶片气孔导度从早到傍晚有平行变化的趋势,数值上存在较大的差异,一般从冠层上到下递减。经分析,这主要与冠层叶片接受的光强自上而下递减有关,且这时所对应的叶片水势自冠层上到下递增的幅度大。测算结果表明,冠层气孔导度白天亦呈明显的日变化,灌浆期的值大于乳熟期的值。  相似文献   

14.
与变化光环境关联的刺槐光合气体交换和复叶运动   总被引:1,自引:0,他引:1  
在夏季的晴天阳生叶和阴生叶方位角和方向角的日变化均很小 ,但是叶片的中脉角存在显著的日变化差异 ,这种叶片垂直方向上的显著运动与躲避中午的强光胁迫有关。而在阴天 ,阳生叶和阴生叶方位角、方向角和中脉角的日变化均很小。这说明变化的光环境是引起刺槐复叶运动的主要原因 ,而节律性运动不是刺槐复叶运动的诱导因素。机械固定叶片的控制实验显示 :机械固定叶片的光合速率、气孔导度和蒸腾速率均显著低于对照叶片 ,而机械固定叶片温度明显高于对照叶片 ,这可能是由于机械固定叶片和对照叶片两者在光辐射接受量上的差异造成的。光诱导下的刺槐复叶运动是植株维持最佳生理状态的形态调节表现。  相似文献   

15.
Emission from plants is a major source of atmospheric methanol. Growing tissues contribute most to plant-generated methanol in the atmosphere, but there is still controversy over biological and physico-chemical controls of methanol emission. Methanol as a water-soluble compound is thought to be strongly controlled by gas-phase diffusion (stomatal conductance), but growth rate can follow a different diurnal rhythm from that of stomatal conductance, and the extent to which the emission control is shared between diffusion and growth is unclear. Growth and methanol emissions from Gossypium hirsutum, Populus deltoides, and Fagus sylvatica were measured simultaneously. Methanol emission from growing leaves was several-fold higher than that from adult leaves. A pronounced diurnal rhythm of methanol emission was observed; however, this diurnal rhythm was not predominantly determined by the diurnal rhythm of leaf growth. Large methanol emission peaks in the morning when the stomata opened were observed in all species and were explained by release of methanol that had accumulated in the intercellular air space and leaf liquid pool at night in leaves with closed stomata. Cumulative daily methanol emissions were strongly correlated with the total daily leaf growth, but the diurnal rhythm of methanol emission was modified by growth rate and stomatal conductance in a complex manner. While in G. hirsutum and in F. sylvatica maxima in methanol emission and growth coincided, maximum growth rates of P. deltoides were observed at night, while maximum methanol emissions occurred in the morning. This interspecific variation was explained by differences in the share of emission control by growth processes, by stomatal conductance, and methanol solubilization in tissue water.  相似文献   

16.
不同栽培基质下碧玉兰光合指标日变化研究   总被引:1,自引:0,他引:1  
探讨5种不同栽培基质对碧玉兰光合指标日变化的影响。结果表明:5种基质栽培的碧玉兰,其净光合速率、蒸腾速率、胞间CO2浓度及气孔导度的日变化趋势基本呈“双峰”曲线。在基质Ⅳ(1/4树皮+1/4泥炭+1/4水苔+1/4陶粒)中栽培的碧玉兰净光合速率、胞间CO2浓度及气孔导度变化值相对较大,其次是基质Ⅲ(1/2树皮+1/4泥炭+1/4水苔),两者与对照差异显著(p<0.05)。综合来看,基质Ⅳ最适宜碧玉兰的生长。  相似文献   

17.
The effects of water stress (drought) on the pattern of photosynthesisin Sedum telephium have been determined. Well-watered plantsexhibit a weak-CAM pattern, with substantial CO2 fixation inthe day, a low level of CO2 fixation at night, high daytimestomatal conductance with a lower conductance at night, andno diurnal fluctuation in acid content. Imposition of water-stress causes a switch from weak-CAM toa full-CAM mode of photosynthesis, as indicated by cessationof daytime CO2 fixation, a marked increase in night-time CO2fixation, very low daytime stomatal conductance, increased night-timeconductance and significant diurnal fluctuations in acid content. Sedum telephium, CAM, CO2 fixation, drought, malate, photosynthesis, water stress  相似文献   

18.
The aim of this study was to evaluate how the summer and winter conditions affect the photosynthesis and water relations of well-watered orange trees, considering the diurnal changes in leaf gas exchange, chlorophyll (Chl) fluorescence, and leaf water potential (Ψ) of potted-plants growing in a subtropical climate. The diurnal pattern of photosynthesis in young citrus trees was not significantly affected by the environmental changes when compared the summer and winter seasons. However, citrus plants showed higher photosynthetic performance in summer, when plants fixed 2.9 times more CO2 during the diurnal period than in the winter season. Curiously, the winter conditions were more favorable to photosynthesis of citrus plants, when considering the air temperature (< 29 °C), leaf-to-air vapor pressure difference (< 2.4 kPa) and photon flux density (maximum values near light saturation) during the diurnal period. Therefore, low night temperature was the main environmental element changing the photosynthetic performance and water relations of well-watered plants during winter. Lower whole-plant hydraulic conductance, lower shoot hydration and lower stomatal conductance were noticed during winter when compared to the summer season. In winter, higher ratio between the apparent electron transport rate and leaf CO2 assimilation was verified in afternoon, indicating reduction in electron use efficiency by photosynthesis. The high radiation loading in the summer season did not impair the citrus photochemistry, being photoprotective mechanisms active. Such mechanisms were related to increases in the heat dissipation of excessive light energy at the PSII level and to other metabolic processes consuming electrons, which impede the citrus photoinhibition under high light conditions.  相似文献   

19.
桃树冠层蒸腾动态的数学模拟   总被引:1,自引:0,他引:1  
将气孔导度公式、Penman—Monteith公式和土壤水分限制模型相结合,可以模拟出不同环境因子对植物蒸腾进程的影响。通过对盆栽桃树(Prunus persica var.nectadna Maxim.)数值模拟发现:影响桃树蒸腾速率的主要气象因子是太阳辐射、大气温度和湿度。植物通过气孔导度的改变来响应气象因子的变化,蒸腾的日变化主要是由气象因子的日变化引起的。土壤的水分状况也对气孔导度有显著的影响,进而影响植物的蒸腾大小。通过数值模拟还发现植物的蒸腾量并不总是随叶面积的增大而增大,对于桃树而言叶面积指数为4左右时日蒸腾量达到最大值。通过对气孔导度和蒸腾速率的模拟值和实测值进行检验发现,两者基本吻合,说明利用数学模拟的方法可以求出不同环境条件和不同叶面积桃树冠层的蒸腾速率。  相似文献   

20.
This study quantified stomatal conductance in a CO2-fertilized warm-temperate forest. The study considered five items: (1) the characteristics of the diurnal and seasonal variation, (2) simultaneous measurements of canopy-scale fluxes of heat and CO2 and the normalized difference vegetation index (NDVI), (3) the stomatal conductance of sunlit and shaded leaves, (4) a stomatal conductance model, and (5) the effects of leaf age on stomatal conductance. Sampled plants included evergreen and deciduous species. Stomatal conductance, SPAD, and leaf nitrogen content were measured between March and December 2001. Sunlit leaves had the largest diurnal and seasonal variation in conductance in terms of both magnitude and variability. In contrast, shaded leaves had only low conductance and slight variation. Stomatal conductance increased sharply in new shooting leaves of Quercus serrata until reaching a maximum 2 months after full leaf expansion. The seasonal changes in the canopy-scale heat and CO2 fluxes were similar to the change in the canopy-scale NDVI of the upper-canopy plants. These seasonal changes were correlated with the leaf-level H2O/CO2 exchanges of upper-canopy plants, although these did not represent the stomatal conductance in fall completely. Seasonal variations in the leaf nitrogen content and SPAD were similar, except leaf foliation, until day 130 of the year, when the behaviors were completely the opposite. A Jarvis-type model was used to estimate the stomatal conductance. We modified it to include SPAD as a measure of leaf age. The seasonal variation in stomatal conductance was not as sensitive to SPAD, although estimates for evergreen species showed improvements.  相似文献   

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