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1.
姜瑞芳  刘艳红 《生态科学》2017,36(5):114-120
为了解珙桐幼苗对光强的适应性, 以3 年生珙桐幼苗为实验材料, 设置了全光照, 62%全光照及43%全光照3种光环境, 观测了110 d 后珙桐幼苗光合特性及生物量分配的变化情况。结果表明: (1)珙桐幼苗净光合速率(Pn)日变化在全光照条件下呈双峰型, 有明显“光合午休”现象, 而遮阴条件下呈单峰型; (2)遮阴处理下最大光合速率(Pmax)、表观量子效率(AQY)、水分利用效率(WUE)及光能利用效率(LUE)均高于全光照, 光补偿点(LCP)和暗呼吸速率(Rd)均低于全光照; (3)遮阴显著降低珙桐幼苗根冠比, 增加了比叶面积(SLA)和总生物量。上述结果说明: 遮阴处理后, 珙桐幼苗在光合特性和生长特性上表现出对弱光一定程度的驯化适应, 对比三种遮阴条件可以得知, 适度的遮阴更有利于幼苗的正常生长, 甚至在较低光照(43%全光照)环境下有更高的光能利用率。  相似文献   

2.
珙桐苗木叶片光合特性对土壤干旱胁迫的响应   总被引:4,自引:0,他引:4  
通过控制土壤含水量,研究了土壤干旱胁迫对2年生珙桐(Davidia involucrata Baill.)幼苗叶面积、叶绿素含量、光合作用及叶绿素荧光参数的影响,以探讨珙桐光合作用对土壤干旱胁迫的响应机理.结果表明,干旱胁迫后,珙桐叶片失水脱落,各干旱胁迫处理叶面积比对照显著降低23%~98%,但单位面积的叶绿素含量却无显著变化;干旱处理的珙桐幼苗净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)、水分利用效率(WUE)显著低于对照(P<0.05);干旱胁迫对珙桐幼苗叶片的初始荧光产量(F0)及最大荧光产量(Fm)没有产生显著影响,却显著降低了PSⅡ最大光化学量子产量(Fv/Fm)、PSⅡ实际光化学量子产量(Yield)、电子传递速率(ETR)及光化学淬灭系数(qP),使非光化学淬灭系数(qN)显著升高(P<0.05).研究发现,土壤水分亏缺对珙桐叶片的光合系统造成了不可逆的伤害,严重抑制了其正常的光合作用和生长发育;珙桐幼苗对土壤干旱胁迫极为敏感.  相似文献   

3.
采用盆栽试验的方法,研究土壤中不同浓度的镉(0、2、20、80 mg·kg-1)胁迫条件对金丝垂柳幼苗的生长、净光合速率(Pn)、光合色素含量及叶绿素荧光参数(Fv/Fm、φPsⅡ和qP)的影响.结果表明:(1)2 mg·kg-1处理组植物的生长、净光合速率及叶绿素荧光参数随着处理时间的增加呈先下降后上升的趋势,说明2...  相似文献   

4.
采用施加氮肥和人工控水的方法,以一年生刺槐幼苗为材料进行盆栽实验,探讨提高土壤氮素含量对不同土壤水分条件下刺槐幼苗叶片中活性氧产生和清除的影响。结果表明:(1)相同氮素水平下,降低土壤水分含量引起刺槐生物量和叶片光合色素含量降低,而过氧化氢(H2O2)含量升高;抗氧化酶系统中的超氧化物歧化酶(SOD)和过氧化物酶(POD)活性和过氧化氢酶(CAT)活性不同程度降低;抗氧化剂中抗坏血酸(ASA)含量和还原型谷胱甘肽(GSH)含量均有所提高;MDA含量逐渐升高,而同期细胞膜相对电导率显著升高。(2)相同水分条件下,提高土壤氮素水平显著提高了刺槐幼苗叶片光合色素含量,同时也一定程度提高了总生物量,显著降低了H2O2含量;SOD、POD和CAT活性不同程度升高;ASA含量和GSH含量则表现出不同程度下降;相对电导率显著降低同时MDA含量一定程度降低。因此,增加土壤氮素有效性可显著提高刺槐幼苗叶片光合色素含量,显著抑制活性氧的产生,一定程度提高总生物量和抗氧化酶活性,降低膜脂过氧化程度,从而有利于缓解干旱引起的伤害。  相似文献   

5.
安慧  上官周平 《生态学报》2009,29(11):6017-6024
采用植物生长箱溶液培养方式,对白三叶幼苗进行了不同光强(2个水平)和氮浓度(5个水平)处理,探讨其生长、生物量和光合生理特征对生境变化的响应.结果表明:两种光强下白三叶幼苗茎和叶生物量随氮素浓度呈先升高后降低,而根系生物量和根冠比则随氮素浓度增高而降低.光照强度降低使白三叶幼苗根、茎、叶和整株生物量分别降低67.8%、29.9%、42.5%和45.2%;低光处理使幼苗的根冠比显著下降,而比叶面积(SLA)明显提高.幼苗根系体积随氮素浓度增高而降低,高生长光强根系体积显著高于低生长光强下的白三叶.幼苗根系表面积、根系长度和根系直径随氮素浓度增加呈先增加后降低趋势,两种不同生长光强下幼苗根系长度和根系直径差异显著,而根系表面积差异不明显.白三叶叶片光合速率(Pn)随氮素浓度增加呈先增加后降低趋势,高生长光强白三叶Pn显著高于低生长光强下的白三叶.两种生长光强间叶片气孔导度(Gs),胞间CO2浓度(Ci)和蒸腾速率(Tr)无显著差异,但氮素浓度对叶片Gs、Ci和Tr均有显著影响.光、氮及其交互作用对白三叶幼苗生长发育产生了显著影响,光照不足和氮缺乏都将导致白三叶幼苗生长减弱,但幼苗对这些不利环境具有较强的调节和适应能力.  相似文献   

6.
在室内测定了分别栽培于全光照和20%光照条件下的垂枝桦Betulapendula,欧洲水青冈Fagussylvatica和欧洲白栎Quercusrobur幼苗叶片的光合作用-光响应曲线、叶片气孔导度、胞间二氧化碳浓度、水分利用效率,叶绿素含量和氮素含量,并分析叶片叶绿素含量和净光合速率的回归关系.20%光照条件引起净光合速率的光饱和点下降,叶片气孔导度和水分利用效率以及单位叶面积叶绿素含量降低,叶片的光合物质积累减少,但氮素含量上升.回归分析结果表明,叶片叶绿素含量与净光合速率成正相关.3种植物的幼苗对荫蔽条件有一定的适应性,其中B.pendula和Q.robur的耐荫能力比Fsylvatica强.  相似文献   

7.
薛波  李贤伟  张健  范川  刘朔 《生态学杂志》2008,27(11):1883-1894
采用二次回归通用旋转组合设计,对国家一级保护珍惜植物珙桐(Davidia involucrate)幼苗进行盆栽控水试验,研究了水分胁迫下氯化钙(CaCl2)、水杨酸(SA)和保水剂对珙桐幼苗抗旱性的影响.结果表明:CaCl2、SA和保水剂对珙桐幼苗抗旱性的影响均呈正向作用,且它们之间具有协同效应;CaCl2和SA提高了珙桐幼苗在水分胁迫前期对土壤水分的利用,使幼苗维持了较高的抗旱性;随着土壤干旱的持续,保水剂对水分胁迫有缓效作用,使土壤维持了较高的水分含量,有利于保持幼苗的抗旱性,减小水分胁迫的危害.综合各抗旱生理特性指标得出最佳的农艺措施为:CaCl2 839.400~1256.520 mg·L-1、SA44.015~69.306 mg·L-1、保水剂618~700 ml·pot-1.  相似文献   

8.
孙园园  孙永健  陈林  徐徽  马均 《应用生态学报》2012,23(10):2737-2744
以耐阴性中等的杂交稻川香9838为材料,研究不同播期和抽穗期弱光胁迫对杂交稻抽穗期光合特征、渗透调节物质、保护性酶活性和产量的影响.结果表明:不同播期和抽穗期弱光胁迫对水稻抽穗期干物质积累、剑叶光合速率、抗氧化酶活性和产量均有显著影响.随播期的推迟,全生育期明显缩短,稻谷产量呈不同程度的下降趋势.与对照相比,抽穗期轻度弱光胁迫(遮光20%)能缓解水稻生育过程中面临的高温及强光照危害,进而能缓解剑叶光合速率和抽穗期干物质累积的降低,调节抗氧化酶活性,适度提高结实率;而抽穗期中度(遮光40%)、重度(遮光60%)弱光胁迫均不利于水稻生长.剑叶光合速率、丙二醛含量和超氧化物歧化酶活性对播期和抽穗期弱光胁迫较为敏感.水稻始穗1 ~5d剑叶光合速率与稻谷产量和抽穗后干物质积累量显著相关.  相似文献   

9.
土壤水分和光照对西葫芦生长和生理特性的影响   总被引:2,自引:0,他引:2  
Du SN  Bai GS  Liang YL 《应用生态学报》2011,22(4):1101-1106
以西葫芦"晶莹一号"为试材,采用盆栽和人工遮光的方法研究土壤水分和光照强度对西葫芦生长发育和生理特性的影响.结果表明:遮光30%条件下各处理的植株生长较好,其中遮光30%和土壤相对含水量为70%~80%的处理植株生长最好,产量最高.遮光70%条件下,各处理的植株生长受到严重抑制,只开花,不结果,没有经济产量形成.不同处理西葫芦的耗水趋势一致,日耗水量和总耗水量都随遮光程度的增加和土壤含水量的降低而减少.遮光30%和土壤相对含水量为70%~80%的处理水分利用效率和水分产出率最高,分别为2.36和1.57 kg.mm-1·hm-2.西葫芦叶片的净光合速率、蒸腾速率、气孔导度及叶片叶绿素含量随着遮光程度的增加而减小,胞间CO2浓度随着遮光程度的增加而增加.叶片保护酶活性和脯氨酸含量随着遮光程度的增加而降低,丙二醛含量为遮光70%>自然光照>遮光30%.3种光照条件下,随着土壤含水量的增加,西葫芦叶片的光合特性、保护酶活性及脯氨酸和丙二醛含量的变化不同.  相似文献   

10.
通过室内盆栽实验研究了大气颗粒污染物硫酸铵对香樟幼苗生长及光合特性的影响。结果表明,香樟幼苗叶片涂抹硫酸铵处理对植物生长无显著影响;低浓度硫酸铵(2 g·L^-1)提高了叶片叶绿素含量,而高浓度(4 g·L^-1)却降低了叶片叶绿素含量;与对照相比,低浓度处理的香樟叶片净光合速率、气孔导度、胞间二氧化碳浓度与蒸腾速率无显著差异;高浓度处理的香樟叶片净光合速率与蒸腾速率高于对照,而气孔导度与胞间二氧化碳浓度与对照无显著差异。机理分析表明,硫酸铵颗粒物主要通过影响叶片气孔导度来影响植物光合特性。  相似文献   

11.
The morphological and physiological adaptation of Lactuca sativaL. (‘Vegas’) to different irradiance levels andrates of nitrogen supply was analysed in such a way that effectsof irradiance were clearly distinguished from the effects ofnitrogen. Lettuce was grown in a glasshouse in aerated nutrientsolutions containing all necessary nutrients except nitrogen.Nitrogen was supplied in excess and at limiting rates in relationto plant growth to provide steady state nutrition. Shading theplants created the low irradiance level. The effects of nitrogensupply and irradiance on growth showed a marked interaction.Dry matter production decreased strongly with decreasing nitrogensupply at high irradiance, but decreased only slightly at lowirradiance. Nitrogen had no effect on radiation use efficiencyexcept for the lowest nitrogen treatment at high irradiance.The effect of nitrogen on growth was mainly mediated by itseffect on leaf area development and hence on light interception.Decreases in leaf area were due to decreases in specific leafarea and dry matter partitioning towards the leaves, while thedecrease in specific leaf area was the result of an increasein leaf dry matter percentage at low nitrogen supply. Dry matterand nitrogen partitioning, and nitrate concentration were closelyrelated to plant nitrogen concentration. Irradiance did notaffect these relationships. Irradiance influenced partitioningonly indirectly by affecting plant nitrogen concentration. Thedemand for organic nitrogen per unit leaf area was lower atlower irradiance. Organic nitrogen per unit leaf area appearedto be adjusted to the irradiance level, independently of thenitrogen supply, suggesting priority of nitrogen usage in photosynthesis.Copyright 2000 Annals of Botany Company Lactuca sativa L., lettuce, growth, irradiance, leaf area, nitrogen, radiation use efficiency, partitioning  相似文献   

12.
增强UV-B辐射和氮素互作对植物生长代谢影响的研究进展   总被引:4,自引:0,他引:4  
不同氮源条件下,UV-B辐射增强能改变植株对氮的吸收利用以及植株叶片的碳氢比和碳氮比,增加氨基酸的生物合成.缺氮条件下, UV-B辐射增强使植物叶片中SOD、POD活性增强,MDA含量增加;氮素过量时,UV-B辐射增强会降低植物对UV-B辐射的耐性.UV-B辐射增强和氮缺乏相互作用会降低叶片的光合速率、叶绿素含量、可溶性糖及淀粉含量,从而抑制植物的生长,降低生物量.该文对近年来国内外有关UV-B辐射增强与氮素相互作用对植物抗氧化系统、氮代谢、光合作用、生物量和形态结构的影响进行综述.  相似文献   

13.
Abstract A previously described growth model of the vegetative grass crop is extended to include a simple representation of the root system, uptake of nitrogen from a soil nitrogen pool, and response to fertilizer application. The model simulates the processes of light interception, photosynthesis, partitioning of new growth, leaf area expansion, growth and maintenance respiration, ageing of plant tissues, senescence, recycling of substrates from senescing tissues, nitrogen uptake by the plant, leaching, mineralization, and fertilizer application. A principal component of the model, nitrogen uptake, is assumed to depend positively on plant carbon substrate concentration and soil nitrogen concentration, and to be inhibited by plant nitrogen substrate concentration. The dynamic responses to different levels of soil nitrogen, of shoot and root growth, nitrogen uptake and root activity, carbon and nitrogen plant substrate concentrations, and the fraction of substrate carbon used by the shoots, are examined; realistic behaviour is observed. The model predicts nitrogen fertilizer responses of yield and plant nitrogen content, which are compared directly with experimental data; good agreement is obtained.  相似文献   

14.
植物光合作用模型参数的温度依存性研究进展   总被引:1,自引:0,他引:1  
综述了植物光合作用与温度响应模型研究的进展,围绕光合作用生化模型的4个主要参数:胞间CO2浓度、RuBP最大碳同化速率(Vc max)的活化能、RuBP最大再生速率(Jmax)的活化能和Jmax/Vc max,讨论了影响光合作用 温度响应曲线的内在机理.随着生长温度的升高,所有物种的Vc max活化能均呈增加趋势,而其他参数的变化因物种不同而存在明显差异,说明Vc max的活化能可能是决定光合作用温度依存性的首要参数.最后分析了研究中存在的问题并提出研究展望,认为应整合叶片与群落水平的光合作用模型,从叶面积、太阳辐射、冠层结构、冠层小气候和光合能力等方面研究植物群落对全球变化的响应机理.这对于人们理解和准确估算植物生长、群落碳收支和生态系统初级生产力具有重要意义.  相似文献   

15.
The relation between interspecific variation in relative growth rate and carbon and nitrogen economy was investigated. Twentyfour wild species were grown in a growth chamber with a nonlimiting nutrient supply and growth, whole plant photosynthesis, shoot respiration, and root respiration were determined. No correlation was found between the relative growth rate of these species and their rate of photosynthesis expressed on a leaf area basis. There was a positive correlation, however, with the rate of photosynthesis expressed per unit leaf dry weight. Also the rates of shoot and root respiration per unit dry weight correlated positively with relative growth rate. Due to a higher ratio between leaf area and plant weight (leaf area ratio) fast growing species were able to fix relatively more carbon per unit plant weight and used proportionally less of the total amount of assimilates in respiration. Fast growing species had a higher total organic nitrogen concentration per unit plant weight, allocated more nitrogen to the leaves and had a higher photosynthetic nitrogen-use efficiency, i.e. a higher rate of photosynthesis per unit organic nitrogen in the leaves. Consequently, their nitrogen productivity, the growth rate per unit organic nitrogen in the plant and per day, was higher compared with that of slow growing species.  相似文献   

16.
Spartina alterniflora Lois. plants were grown under controlled sediment-pH-redox conditions. Uptake of added 15NH4-nitrogen and subsequent photosynthetic activity under different redox conditions in the plant root rhizosphere were measured. Data for total plant nitrogen and 15N concentration indicated that nitrogen allocation was not altered by anaerobic conditions of the sediment. However, average net photosynthesis was reduced by up to 35% for plants under anaerobiosis. The results indicate that anaerobiosis in the root rhizosphere, rather than limiting nitrogen uptake, influences photosynthesis and growth of S. alterniflora under anaerobic conditions.  相似文献   

17.
A differential equation model of vegetative growth of the soyabean plant (Glycine max (L.) Merrill cv. ‘Ransom’)was developed to account for plant growth in a phytotron systemunder variation of root temperature and nitrogen concentrationin nutrient solution. The model was tested by comparing modeloutputs with data from four different experiments. Model predictionsagreed fairly well with measured plant performance over a widerange of root temperatures and over a range of nitrogen concentrationsin nutrient solution between 0.5 and 10.0 mmol in the phytotron environment. Sensitivity analyses revealedthat the model was most sensitive to changes in parameters relatingto carbohydrate concentration in the plant and nitrogen uptakerate. Key words: Glycine max (L.) Merrill, dry matter, nitrogen uptake, partitioning, photosynthesis, respiration, sensitivity analysis  相似文献   

18.
Z.-Z. Xu  G.-S. Zhou 《Plant and Soil》2005,269(1-2):131-139
Water deficit and high temperature are important environmental factors restricting plant growth and photosynthesis. The two stresses often occur simultaneously, but their interactions on photosynthesis and nitrogen level have been less studied. In the present experiment, we measured photosynthetic parameters, stomatal density, and nitrogen levels, as well as soluble sugar content of leaves of a perennial grass, Leymus chinensis, experiencing two day/night temperature regimes of 30/20 °C and 30/25 °C, and five different soil moisture contents (the soil relative-water content ranged from 80% to 25%). Leaf relative water content, leaf biomass, whole plant biomass, the ratio between the leaf biomass and total plant biomass, and the photosynthetic rate, as well as water-use efficiency decreased at high night temperature, especially under severe water stress conditions. Stomatal index was also increased by soil water stress except very severe water stress, and high nocturnal temperature decreased the leaf stomatal index under soil water stress. Nocturnal warming decreased nitrogen concentration in the leaves and increased it in the roots, particularly when plants were subjected to severe water stress. There were significant positive correlations between the photosynthetic rate and both soluble sugar concentration and nitrogen concentration at low nocturnal temperature. It is suggested that nocturnal warming significantly exacerbates the adverse effects of soil water stress, and their synergistic interactions might reduce the plant productivity and constrain its distribution in the region dominated by L. chinensis, based on predictions of global climate change.  相似文献   

19.

AGPase, ADP glucose pyrophosphorylase
GS, glutamine synthetase
GOGAT, glutamate : oxoglutarate amino transferase
NADP-ICDH, NADP-dependent isocitrate dehydrogenase
NR, nitrate reductase
OPPP, oxidative pentose phosphate pathway
3PGA, glycerate-3-phosphate
PEPCase, phosphoenolpyruvate carboxylase
Rubisco, ribulose-1,5-bisphosphate carboxylase/oxygenase
SPS, sucrose phosphate-synthase

This review first summarizes the numerous studies that have described the interaction between the nitrogen supply and the response of photosynthesis, metabolism and growth to elevated [CO2]. The initial stimulation of photosynthesis in elevated [CO2] is often followed by a decline of photosynthesis, that is typically accompanied by a decrease of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco), an accumulation of carbohydrate especially starch, and a decrease of the nitrogen concentration in the plant. These changes are particularly marked when the nitrogen supply is low, whereas when the nitrogen supply is adequate there is no acclimation of photosynthesis, no major decrease in the internal concentration of nitrogen or the levels of nitrogen metabolites, and growth is stimulated markedly. Second, emerging evidence is discussed that signals derived from nitrate and nitrogen metabolites such as glutamine act to regulate the expression of genes involved in nitrate and ammonium uptake and assimilation, organic acid synthesis and starch accumulation, to modulate the sugar-mediated repression of the expression of genes involved in photosynthesis, and to modulate whole plant events including shoot–root allocation, root architecture and flowering. Third, increased rates of growth in elevated [CO2] will require higher rates of inorganic nitrogen uptake and assimilation. Recent evidence is discussed that an increased supply of sugars can increase the rates of nitrate and ammonium uptake and assimilation, the synthesis of organic acid acceptors, and the synthesis of amino acids. Fourth, interpretation of experiments in elevated [CO2] requires that the nitrogen status of the plants is monitored. The suitability of different criteria to assess the plant nitrogen status is critically discussed. Finally the review returns to experiments with elevated [CO2] and discusses the following topics: is, and if so how, are nitrate and ammonium uptake and metabolism stimulated in elevated [CO2], and does the result depend on the nitrogen supply? Is acclimation of photosynthesis the result of sugar-mediated repression of gene expression, end-product feedback of photosynthesis, nitrogen-induced senescence, or ontogenetic drift? Is the accumulation of starch a passive response to increased carbohydrate formation, or is it triggered by changes in the nutrient status? How do changes in sugar production and inorganic nitrogen assimilation interact in different conditions and at different stages of the life history to determine the response of whole plant growth and allocation to elevated [CO2]?  相似文献   

20.
CO2浓度和辐射强度变化对沙柳光合作用速率影响的模拟研究   总被引:10,自引:0,他引:10  
郭建平  高素华 《生态学报》2004,24(2):181-185
沙柳是毛乌素沙地防护林的主要灌木树种 ,模拟研究沙柳对 CO2 浓度和辐射强度的响应有利于准确有效地制定全球变化下的沙漠化防治和水土流失的战略对策。结果表明 ,沙柳的光合作用速率对 CO2 浓度的响应表现为线性关系 ,对辐射的响应表现为对数函数关系。沙柳光合作用速率有随辐射强度增加和 /或 CO2 浓度的升高而增大的变化规律。CO2 浓度越高 ,沙柳的光合作用速率对辐射的反应越明显。同样 ,辐射越强 ,沙柳的光合作用速率对 CO2 浓度的反应越敏感。在高辐射条件下增加大气中 CO2 的“施肥效应”比低辐射条件下要显著。土壤干旱对沙柳的光合和暗呼吸都有抑制作用 ,使沙柳的生理过程受到影响 ,从而使沙柳对 CO2 浓度和辐射的反应规律不如土壤水分适宜时显著。  相似文献   

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