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1.
对麻疯树(Jatropha curcas L.)幼苗在不同非生物胁迫下的净光合速率(Pn)和蒸腾速率(Tr)等生理指标的变化进行了研究。结果表明,在缺磷处理中,麻疯树叶片Pn保持在对照的90%左右,气孔导度(Gs)和胞间CO2浓度(Ci)在处理2 d后显著增加,Gs上升20%~40%,Ci升高4%~16%,Tr变化不大;处理17 d时,麻疯树的P含量下降55%~85%,而干重只下降3%。缺氮处理9 d时麻疯树叶片的Pn下降到最低,之后维持在对照的64%左右,Gs在处理2~7 d显著高出对照15%~57%,处理9~16 d恢复到对照水平,Ci从第2天开始上升,高出对照4%~24%,Tr变化不大;处理17 d时组织中N含量显著下降47%~78%,植株干重下降23%。盐胁迫处理5 d后,麻疯树叶片Pn降低到对照的54%,之后维持在对照的48%左右,Gs、Ci和Tr与Pn的变化一致,均呈下降趋势;处理17 d,叶柄和茎中P含量增加37%~54%,组织中K+/Na+下降87%~96%,植株干重下降18%。干旱胁迫处理6 d,叶片Pn快速下降至29%,Gs、Ci和Tr与Pn整体变化趋势一致;处理第7天,叶片细胞膜透性增加67%,停止浇水17 d后植株干重下降55%,同时叶片卷曲下垂,老叶脱落。麻疯树植株Pn在缺磷胁迫过程中最早达到相对稳定状态,其次为盐胁迫和缺氮胁迫。这说明麻疯树植株对缺磷环境具有良好的适应性,而对缺氮环境适应性相对较差;耐盐类型可能属于逃避盐害中的聚盐植物,适应干旱环境的机制属于御旱性类型。  相似文献   

2.
Effects of nitrogen (N) nutrition level on photosynthesis of wheat were studied using method of quick drying of detached leaves, under rapid water stress. The results showed that in the case, leaf water potential (Ψw), net photosynthetic rate (Pn) and stomatal conductance (Gs) of high N (HN) leaves decreased more quickly than that of low N (LN) leaves. Therefore, the difference of Pn between HN and LN leaves became less and less with increasing water stress. Under severe water stress, the Pn of HN leaves were lower than that of LN leaves. The intercellular concentration of CO2 (Ci) of HN leaves were lower than that of LN leaves, and the value of stomatal limitation of photosynthesis (Ls) of HN leaves were higher during rapid water stress. However, the mesophllous conductance of CO2 (Gm) and photosynthetic activity of mesophyll of HN leaves were still higher than that of LN leaves.  相似文献   

3.
施氮量对超高产冬小麦灌浆期旗叶光响应曲线的影响   总被引:8,自引:0,他引:8  
为冬小麦超高产栽培的氮肥管理提供技术支撑,在大田条件下研究了施氮量对超高产冬小麦灌浆期旗叶光响应曲线的影响.采用开放式气路测定了小麦旗叶的净光合速率、气孔导度、胞间二氧化碳浓度、蒸腾速率等相关指标,并运用"米式方程"对旗叶净光合速率进行了模拟,计算了光响应曲线的特征参数.结果表明,在0~300kg/hm2施氮范围内,随着光照强度的增加,各处理的旗叶净光合速率、气孔导度、蒸腾速率均随之增加,而胞间二氧化碳浓度却随之降低,但是在375kg/hm2施氮水平下旗叶的净光合速率、气孔导度、蒸腾速率的增加和胞间二氧化碳浓度的降低反而低于300kg/hm2施氮水平,表明合理的氮素水平对超高产小麦灌浆期旗叶的光响应曲线有明显的调节作用.在合理的施氮范围内,增施氮肥小麦旗叶在整个灌浆期内的最大净光合速率随之增加.在本试验条件下,超高产麦田的适宜施氮量为300kg/hm2.  相似文献   

4.
BACKGROUNDS AND AIMS: Identification of physiological traits associated with leaf photosynthetic rate (Pn) is important for improving potential productivity of rice (Oryza sativa). The objectives of this study were to develop a model which can explain genotypic variation and ontogenetic change of Pn in rice under optimal conditions as a function of leaf nitrogen content per unit area (N) and stomatal conductance (g(s)), and to quantify the effects of interaction between N and g(s) on the variation of Pn. METHODS: Pn, N and g(s) were measured at different developmental stages for the topmost fully expanded leaves in ten rice genotypes with diverse backgrounds grown in pots (2002) and in the field (2001 and 2002). A model of Pn that accounts for carboxylation and CO diffusion processes, and assumes that the ratio of internal conductance to g(s) is constant, was constructed, and its goodness of fit was examined. KEY RESULTS: Considerable genotypic differences in Pn were evident for rice throughout development in both the pot and field experiments. The genotypic variation of Pn was correlated with that of g(s) at a given stage, and the change of Pn with plant development was closely related to the change of N. The variation of g(s) among genotypes was independent of that of N. The model explained well the variation in Pn of the ten genotypes grown under different conditions at different developmental stages. Conclusions The response of Pn to increased N differs with g(s), and the increase in Pn of genotypes with low g(s) is smaller than that of genotypes with high g(s). Therefore, simultaneous improvements of these two traits are essential for an effective breeding of rice genotypes with increased Pn.  相似文献   

5.
Characteristics of photosynthetic light and CO2 use efficiency from seedling to heading stage, and C4 pathway enzyme activities in both flag leaves and lemma were compared between two newly developed super-rice hybrids (Oryza sativa L.), Liangyoupeijiu and Hua-an 3, and a traditional rice hybrid, Shanyou 63. At seedling and tillering stages, Liangyoupeijiu and Hua-an 3 had higher net photosynthetic rates (Pn) and light saturated assimilation rates (Asat) than did Shanyou 63, at both normal (360 micromol mol(-1)) and doubled (720 micromol mol(-1)) CO2 concentrations. At the heading stage, the flag leaves of all three rice hybrids had similar Pn and Asat. However, the two super-rice hybrids had higher apparent quantum yield (AQY) and carboxylation efficiency (CE) during all three typical developmental stages, and higher quantum yield of CO2 fixation (PhiCO2) at the tillering and heading stages. In addition, Liangyoupeijiu showed significantly higher activities of the C(4) pathway enzymes in both flag leaves and lemmas than did Shanyou 63. As a result, flag leaves of the two super-rice hybrids had higher Pn at morning, noontime and late afternoon during the daily cycle. Since most of the grain yield of rice comes from the photosynthesis of flag leaves, the similar Asat and much higher AQY, CE and PhiCO2 at heading stage of the two super-rice hybrids indicates that higher photosynthetic efficiency rather than higher photosynthetic capacity may be the primary factor contributing to their higher grain yields.  相似文献   

6.
为了揭示C3植物中C4 pepc高表达带来的生理差异与其高光合效率的关系。本文以高表达的转玉米C4 pepc光合基因水稻(PC)及原种Kitaake(WT)为材料,通过水培在孕穗期通过根吸入的方法,进行不同浓度的NO供体、NO合成抑制剂以及相关影响信号分子的试剂单独和联合过夜处理12 h,选取倒二叶研究NO对供试材料净光合速率(Pn),气孔导度(Gs)和胞间CO2浓度(Ci)的影响。结果表明:WT和PC在200 μmol·L-1 SNP(Sodium nitroprusside)和1 mmol·L-1 L-Arg(L-Arginine)处理下,Pn分别增加20.8%、10.7%,差异显著(p<0.05);随SNP和L-Arg浓度的增加,其表现不同程度的抑制,与PC相比,WT的Pn抑制更显著(p<0.05),而GsCi的变化则相反(p<0.05);进一步结合200 μmol·L-1 SNP和1 mmol·L-1 L-Arg与SA处理,结果与高浓度的NO供体处理类似;在联合6 mmol·L-1 Ca2+螯合剂EGTA处理下,与PC相比,WT的Pn抑制达到极显著水平(p<0.01),Ci的变化则相反(p<0.05)。相关分析结果表明:PC的Pn的高低与Gs的相关性小于WT,PC与WT决定系数分别为0.654 9、0.773 5;而与Ci的相关性则更大些,PC与WT决定系数分别为0.466 5、0.419 6,显示PC可能有不同的调节方式,尤其在低浓度的NO,PC可在Ca2+参与下调节气孔的开放,在气孔关闭的条件下,仍能维持一定的Pn。  相似文献   

7.
玉米光合性能的杂种优势   总被引:5,自引:0,他引:5  
以4个不同光合速率的玉米自交系及组配的2个杂交种为材料, 在吐丝期进行了光合速率(Pn)、蒸腾速率(Tr)、气孔导度(Gs)、水分利用效率(WUE)等光合性能指标日变化的测定,以探明玉米杂种优势光合性能的日变化规律.结果表明:光合性能中Pn、Tr和Gs 3项指标均呈明显的单峰曲线变化,峰值出现的时间分别为10:00—12:00、12:00和10:00—12:00,其中Gs、Pn早于Tr;WUE日变化规律与其它光合性能指标相反,呈现“V”趋势,低谷值出现在12:00点左右.Pn、Tr的日变化均与Gs密切相关,说明Gs在Pn、Tr日变化中起着重要的调节作用.对光合性能杂种优势率日变化进行分析表明,杂交种Pn、Tr、Gs具有午后优势现象,而WUE杂种优势率表现为上午高于下午,说明午后的环境条件更有利于杂交种抗性的发挥,为筛选高光效品种提供了一项可参考的指标.  相似文献   

8.
闫小莉  王德炉 《生态学报》2019,39(19):7208-7217
研究苦丁茶树叶片生长与光合特性对不同类型土壤栽培的响应特征,确定最适苦丁茶栽培的土壤类型,可为高产优质化的苦丁茶种植业及其规模化生产基地的建立提供科学依据。通过土壤栽培实验研究了不同类型的土壤对苦丁茶树叶片生长、叶片解剖结构、叶绿素含量和光合特性的影响。结果表明:石灰岩土壤栽培条件下,苦丁茶叶长和叶面积比其他6种土壤栽培下的显著提高了34%—57%和43%—68%,叶绿素总量显著增加9%—33%,叶片、上下表皮、海绵组织和栅栏组织的厚度均显著高于其他6种土壤栽培。不同类型土壤栽培下苦丁茶净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)和饱和蒸气压亏缺(Vpdl)的日变化趋势均呈单峰型,日均Pn和Tr值大小依次为:石灰岩石英砂岩玄武岩长石石英砂岩第四纪红色黏土变余砂岩煤系砂页岩,其中石灰岩土壤栽培下的日均Pn值相比其他6种土壤下的显著提高了13%—45%,且叶片最大净光合速率、表观量子效率、暗呼吸速率、光补偿点(LCP)和光饱和点(LSP)也最大,而煤系砂页岩栽培时最低,其LSP和LCP较石灰岩栽培的分别显著下降了40%和46%。综上,在7种类型的土壤中,石灰岩土壤栽培最有利于苦丁茶树叶片的生长发育、并促进叶绿素的合成和加强对光能的吸收利用,最终提高其叶片光合能力,其次为玄武岩土壤,而煤系砂页岩土壤是最不利于苦丁茶树叶片生长发育和光合作用。建议在苦丁茶种植业的发展和规模化生产基地建立时因选择由石灰岩性母岩发育的土壤进行栽培,从而提高苦丁茶的产量和品质。  相似文献   

9.
Net photosynthetic rates (Pns) in leaves were compared between rice plants grown in ambient air control and free-air CO2 enrichment (FACE, about 200 micromol mol(-1) above ambient) treatment rings. When measured at the same CO2 concentration, the Pn of FACE leaves decreased significantly, indicating that photosynthetic acclimation to high CO2 occurs. Although stomatal conductance (Gs) in FACE leaves was markedly decreased, intercellular CO2 concentrations (Ci) were almost the same in FACE and ambient leaves, indicating that the photosynthetic acclimation is not caused by the decreased Gs. Furthermore, carboxylation efficiency and maximal Pn, both light and CO2-saturated Pn, were decreased in FACE leaves, as shown by the Pn-Ci curves. In addition, the soluble protein, Rubisco (ribulose-1,5-bisphosphate caboxylase/oxygenase), and its activase contents as well as the sucrose-phosphate synthase activity decreased significantly, while some soluble sugar, inorganic phosphate, chlorophyll and light-harvesting complex II (LHC II) contents increased in FACE leaves. It appears that the photosynthetic acclimation in rice leaves is related to both ribulose-1,5-bisphosphate (RuBP) carboxylation limitation and RuBP regeneration limitation.  相似文献   

10.
以番茄为试验材料,研究番茄黄化曲叶病毒(TYLCV)侵染对植株叶片叶绿素含量、净光合速率、气孔导度、胞间CO2浓度和叶绿体超微结构的影响.结果表明:TYLCV侵染番茄后,叶片叶绿素a、b以及总叶绿素含量分别下降50.2%、24.19%和43.84%,叶片净光合速率和气孔导度分别下降43.28%、27.07%,胞间CO2浓度增加13.04%.与健康叶片相比,叶绿体变形,叶绿体基质片层大部分消解,基粒结构消失,叶绿体外膜和内膜剥离,质壁分离和细胞膜内陷,细胞器消解.研究表明,TYLCV侵染破坏了番茄叶片的叶绿体结构,严重影响番茄叶片的光合作用.  相似文献   

11.
以岩溶特有药用植物地枫皮为材料,研究土壤水分胁迫及复水条件下,其叶片光合参数、叶绿素荧光参数及光合色素含量的变化特性,进而探讨其对水分胁迫的生理生态适应性。结果表明:停止供水10 d,水分胁迫地枫皮叶片的P_n(净光合速率)、C_i(胞间CO_2浓度)、G_s(气孔导度)和L_s(气孔限制值)均下降,气孔限制是P_n降低的主要原因;停止供水15 d,水分胁迫地枫皮叶片的P_n日变化呈逐渐下降趋势,上午9:30以后全天的P_n值均接近零,非气孔限制成为P_n下降的主要因素;而对照地枫皮叶片的P_n日变化呈"双峰型",中午P_n下降的主要原因依然是气孔限制。水分胁迫下,地枫皮叶片叶绿素含量降低和Chl_(a/b)升高,减少了叶片对光能的捕获,减轻了光合机构遭受光氧化的破坏,而Car/Chl_(a+b)升高增强了光保护能力。水分胁迫下,地枫皮叶片的初始荧光(F_o)显著增大,最大荧光(F_m)、光系统Ⅱ(PSⅡ)潜在活性(F_v/F_o)和最大光化学效率(F_v/F_m)均显著降低,表明水分胁迫对地枫皮叶片的PSⅡ反应中心和电子传递造成了一定的破坏,从而使其PSⅡ的潜在活性和最大光化学效率降低。复水5 d后,地枫皮的上述生理生态参数均能恢复到对照水平,表明其复水后的生理修复能力很强。  相似文献   

12.
以生态沟渠铜钱草为材料,采用便携式CID-340光合仪对铜钱草成熟叶片净光合速率(Pn)以及胞间CO2浓度(Ci)、光合有效辐射(PAR)、气孔导度(Gs)、气温(Gs)、叶温(Tl))和蒸腾速率(Tr)等影响因子进行测定,以探讨其光合生理生态特性,旨在为修复沟渠湿地提供一定的理论依据。结果表明:(1)铜钱草叶片净光合速率(Pn)日变化曲线呈双峰型,主峰(19.32μmol.m-2.s-1)出现在15:00左右,次峰(16.21μmol.m-2.s-1)出现在11:00,中午出现光合"午休"现象。(2)用逐步多元回归方法得到净光合速率日变化与主要生理生态因子的回归方程为:Pn=-5.45613+0.006797PAR+0.050099Gs(复相关系数0.868)。逐步回归结果表明Pn受PAR和Gs的影响较大。偏相关分析和通径分析的结果表明PAR、Gs对铜钱草Pn日变化有重要影响,是影响铜钱草Pn的主要因子,影响大小的顺序为:Gs>PAR。  相似文献   

13.
不同施肥处理对海南风吹楠幼苗生长及生理特性影响   总被引:3,自引:0,他引:3  
以海南风吹楠(Horsfieldia hainanensis Merr.)为材料,采用正交实验方法,研究不同施肥处理对海南风吹楠幼苗生长及生理特性的影响。结果显示,不同施肥处理下海南风吹楠幼苗的生长指标有所差异,不施肥组的株高、地径、干重和根系等指标均低于施肥处理组;而各施肥处理组间幼苗叶片可溶性糖、可溶性蛋白、叶绿素含量等指标均存在极显著差异;净光合速率、气孔导度、蒸腾速率、胞间CO_2浓度等指标均大于不施肥组,光合性能得到一定的提升和改善。将各项生理指标进行隶属函数分析,综合评价后得出最佳氮磷钾处理组为T6组N_2P_2K_2(即:N 3.80 g/株,P 0.48 g/株,K 1.46 g/株)。  相似文献   

14.
高大气CO2浓度下氮素对小麦叶片光能利用的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
关于氮素对高大气CO2浓度下C3植物光合作用适应现象的调节机理已有较为深入的研究, 但对其光合作用适应现象的光合能量转化和分配机制缺乏系统分析。该文以大气CO2浓度和施氮量为处理手段, 通过测定小麦(Triticum aestivum)抽穗期叶片的光合作用-胞间CO2浓度响应曲线以及荧光动力学参数来测算光合电子传递速率和分配去向, 研究了长期高大气CO2浓度下小麦叶片光合电子传递和分配对施氮量的响应。结果表明, 与正常大气CO2浓度处理相比, 高大气CO2浓度下小麦叶片较多的激发能以热量的形式耗散, 增施氮素可使更多的激发能向光化学反应方向的分配, 降低光合能量的热耗散速率; 大气CO2浓度升高后小麦叶片光化学淬灭系数无明显变化, 高氮叶片的非光化学猝灭降低而低氮叶片明显升高, 施氮促进PSII反应中心的开放比例, 降低光能的热耗散; 高大气CO2浓度下高氮叶片通过PSII反应中心的光合电子传递速率(JF)较高, 而且参与光呼吸的非环式电子流速率(J0)显著降低, 较正常大气CO2浓度处理的高氮叶片下降了88.40%, 光合速率增加46.47%; 高大气CO2浓度下小麦叶片JF-J0升高而J0/JF显著下降, 光呼吸耗能被抑制, 更多的光合电子分配至光合还原过程。因此, 大气CO2浓度增高条件下, 小麦叶片激发能的热耗散速率增加, 但增施氮素后小麦叶片PSII反应中心开放比例提高, 光化学速率增加, 进入PSII反应中心的电子流速率明显升高, 光呼吸作用被抑制, 光合电子较多地进入光化学过程, 这可能是高氮条件下光合作用适应性下调被缓解的一个原因。  相似文献   

15.
本研究检测了与盐芥(Ghellungiella halophila)和拟南芥(Arabidopsis thaliana)光合作用相关的叶绿素、净光合速率(photosynthetic rate, Pn)、气孔导度(stomatal conductance, Gs)、胞间隙CO2浓度以及叶绿素荧光参数等指标, 观察到随着NaCl浓度逐渐增加, 盐芥的叶绿素a/b值(Chl a/Chl b)、类胡萝卜素/总叶绿素值(Car/Chl)显著高于拟南芥, 且二比值变化幅度较小并保持较高水平。盐胁迫下拟南芥净光合速率下降、气孔导度下降和胞间CO2浓度减小。气孔因素是引起拟南芥光合能力下降的主要因素。叶绿素荧光参数的变化表明, 50-200 mmol.L-1 NaCl降低拟南芥叶绿体对光能的吸收能力, 而且降低叶绿体的光化学活性, 使电子传递速率和光能转化效率大幅度下降,造成光能转化为化学能的过程受阻,进一步加剧了光合放氧和碳同化能力的降低。而50-200 mmol.L-1 NaCl 胁迫没有使盐芥的光合作用受到不良影响。  相似文献   

16.
生长在高CC2浓度(700±56μl  相似文献   

17.
Variation in nitrogen use efficiency among soft red winter wheat genotypes   总被引:5,自引:0,他引:5  
Summary Nitrogen use efficiency (NUE), defined as grain dry weight or grain nitrogen as a function of N supply, was evaluated in 25 soft red winter wheat genotypes for two years at one location. Significant genotypic variation was observed for NUE, nitrogen harvest index, and grain yield. Genotype x environment interaction for these traits was not significant. Several variables including N uptake efficiency (total plant N as a function of N supply), grain harvest index, and N concentration at maturity were evaluated for their role in determining differences in NUE. Nitrogen uptake efficiency accounted for 54% of the genotypic variation in NUE for yield and 72% of the genotypic variation in NUE for protein. A path coefficient analysis revealed that the direct effect of uptake efficiency on NUE was high relative to indirect effects.The investigation reported in this paper (No. 85-3-122) is in connection with a project of the Kentucky Agricultural Experiment Station and is published with approval of the Director  相似文献   

18.
开花期土壤短期干旱和复水对大豆光合作用和产量的影响   总被引:4,自引:0,他引:4  
王磊  张彤  丁圣彦 《植物学报》2009,44(2):185-190
以大豆(Glycine max)为材料, 研究开花期土壤水分变动对叶片光合生理以及产量形成的影响, 以期为大豆的节水栽培和水分高效利用提供理论依据。研究发现, 大豆叶片气孔导度(Gs)对土壤水分的匮缺更加敏感。干旱胁迫降低了叶片的净光合速率(Pn), 但复水后, 叶片水势和净光合速率等在实验过程中都可以得到迅速恢复, 并且蒸腾速率(Tr)、气孔导度和胞间CO2浓度(Ci)在复水后的第3 天与对照相比显著提高, 表现出一定的超补偿效应。研究发现, 在开花期即使短期的土壤干旱, 也会对大豆后期的生物量及其分配产生较大的影响, 开花期干旱和复水, 显著降低了大豆叶片和茎的生物量, 使根茎比提高16.7% (P<0.05), 收获指数增加26.3%(P<0.05)。  相似文献   

19.
Genotypic variation in major components of the efficiency of nitrogen utilization and photosynthetic activity of flag leaves among old (released 1881-1963) and modern (released 1969-2003) cultivars of winter wheat was studied in field conditions under varied N fertilization levels (110, 90 and 80 kg N ha-1). Significant genotypic differences were observed for all characters. Their heritabilities ranged from 0.37 to 0.93 and were the lowest for the leaf efficiency of gas exchange, photosynthetic rate, straw N content and the economic index of N utilization efficiency (NUE). Some modern cultivars exhibited an enhanced tolerance to N shortage and several attributes of efficient N utilization (e.g. later senescing and more photosynthetically active flag leaves, increased ability to redistribute N into grains). The genotypes may serve as donors of appropriate characteristics for breeding. The observed cultivar-by-fertilization interactions suggest, however, that evaluations under diverse fertilization regimes may be necessary when searching for improved wheat efficiency and adaptation to less favourable environments.  相似文献   

20.
重庆石灰岩地区木豆与十大功劳叶片气体交换的比较   总被引:2,自引:0,他引:2  
刘锦春  钟章成  何跃军 《生态学报》2006,26(9):2964-2970
对重庆石灰岩地区固氮植物木豆与非固氮植物十大功劳叶片气体交换进行了比较研究.结果表明木豆的日均净光合速率(Pn)、蒸腾速率(E)、气孔导度(Gs)和光能利用效率(LUE)均大于十大功劳,但两者的水分利用效率(WUE)没有差别.净光合速率在中午出现了较明显的光合"午休"现象.经分析木豆的光合午休主要由气孔因素引起,而十大功劳的光合午休现象以非气孔因素为主.同样,在季节变化中木豆的净光合速率(Pn)、蒸腾速率(E)、气孔导度(Gs)和光能利用效率(LUE)的季节均值也均大于十大功劳,但水分利用效率(WUE)却相反.木豆和十大功劳的叶绿素含量的季节变化与净光合速率季节变化趋势基本一致,木豆的叶绿素含量呈8月份高峰的单峰曲线,而十大功劳在8月份和10月份各有一高峰.木豆的叶绿素a/b的季节变化呈递减趋势,相反,十大功劳呈上升趋势.经分析,木豆和十大功劳的净光合速率的季节变化与叶绿素含量的季节变化相关联.木豆单位叶重的含氮量季节均值为37.6mg/g,明显高于十大功劳的14.8 mg/g,说明木豆的高固氮能力导致了木豆的高光合能力.但木豆的水分利用效率不如十大功劳,说明有高光合能力的固氮植物木豆在石灰岩地区的植被恢复中也存在其不适应的因素,但木豆是否真正适应干旱环境还需要进行全面的水分生理的研究.  相似文献   

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