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1.
NaCl胁迫对菠菜叶片中水分和光合气体交换的影响(简报)   总被引:8,自引:0,他引:8  
NaCl胁迫下,菠菜幼苗叶片的净光合速率(Pn)、气孔导度(Gs)和蒸腾速率(Tr)下降。短期处理的叶片中CO2浓度(Ci)降低,气孔限制值(Is)升高,水分利用效率(WUE)增大,而长期处理的叶片中Ci升高,Is下降,WUE降低。NaCl短期处理下,菠菜光合降低以气孔限制为主,而在长期处理下光合的非气孔限制因素增大。  相似文献   

2.
水分胁迫对牛心朴子光合生理特性影响的研究   总被引:32,自引:7,他引:25  
采用PVC管种植模拟土壤干旱的方法,研究了牛心朴子(Cynanchum komarovii)在水分胁迫下光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、叶绿素荧光的变化规律及不同生育期适应性表现。结果表明:土壤水分胁迫对牛心朴子叶片光合生理的影响与其胁迫时间及其胁迫程度都有关系,胁迫前中期Pn下降的原因主要是气孔限制,而到后期则以非气孔因素限制为主。中度土壤水分胁迫在短期内对牛心朴子叶片光合作用具有促进作用,而且有利于WUE的提高。而重度胁迫对牛心朴子Pn的影响较显著,而且非气孔因素的出现早于中度胁迫的处理。牛心朴子的光合生理对土壤水分胁迫具有一定的适应时期和适应范围。  相似文献   

3.
盐胁迫对枸杞光合作用的气孔与非气孔限制   总被引:35,自引:2,他引:33  
NaCl胁迫后,枸杞叶片的Pn,gs,Tr随盐浓度的增加呈现下降趋势。在0.08%-0.6%的NaCl胁迫范围内,枸杞叶片的Ci降低,Ls升高,gs下降主要受气孔限制,这可能由于盐刺激根系产生的某些物理或化学信号运输到地上部所致;而在盐分浓度大于0.6%的胁迫条件下,枸杞叶片的Ci则升高,Ls降低,gs下降的原因是由于Na^ ,Cl^-的大量积累对光合酶活性产生直接的毒害作用,从而使非气孔限制因素成为主要限制因子。  相似文献   

4.
为了解不同干旱胁迫处理下,杨树叶片光合特性和气孔形态的变化规律,本研究以4个杨树无性系为材料,对其干旱胁迫下光合指标与气孔形态指标进行测定分析,方差分析结果表明:除气孔器长在处理间差异不显著外,其他性状在无性系间、处理间和无性系与处理交互作用间均达极显著差异水平。随着土壤相对含水量的逐渐降低,无性系净光合速率、蒸腾速率和气孔导度都呈现出不同程度的下降;而胞间二氧化碳浓度呈现为先降后升趋势,表明当土壤相对含水量大于40%时,光合作用的主要限制因子是气孔因素,当土壤相对含水量低于40%时,光合作用的主要限制因子转换为非气孔因素。气孔形态研究结果表明,各指标均随土壤相对含水量的持续降低呈现出持续下降趋势。利用隶属函数法对不同干旱胁迫下4个杨树无性系的抗旱性进行综合评价,结果表明:白城小青黑杨的抗旱性优于其他三个无性系。  相似文献   

5.
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   

6.
水分胁迫对短枝型果树光合作用的非气孔限制   总被引:10,自引:0,他引:10  
水分胁迫使叶片相对含水量降低,气孔阻力增大.水分胁迫光合速率的下降除受气孔因素影响之外,随着胁迫时间的延长和胁迫程度的加剧,水分胁迫导致O-·2累积,H2O2含量增加,从而引发膜脂过氧化,造成膜渗漏,质膜相对膜透性增大,膜脂过氧化产物MDA含量升高,由膜系统破坏而诱发的非气孔因素成为光合速率下降的主要原因.  相似文献   

7.
为探讨番茄叶片气孔特征、气体交换参数和生物量对盐胁迫的响应机理,以赛棚和阿拉姆番茄为试材,通过向水培营养液中添加NaCl(0.1 mol·L-1),在人工气候箱条件下进行为期90 d的NaCl盐胁迫处理.结果表明: NaCl胁迫导致赛棚番茄叶片的气孔密度、气孔宽度、气孔面积和气孔面积指数显著降低,降幅分别为32%、45%、25%、49%,但没有改变阿拉姆番茄叶片的气孔特征参数.同时,NaCl胁迫还导致赛棚和阿拉姆叶片气孔规则分布的空间尺度分别减少30%和43%,且赛棚品种的单个气孔最小邻域距离在盐胁迫下增加20%.另外,赛棚和阿拉姆叶片的净光合速率(Pn)、气孔导度(gs)和蒸腾速率(Tr)在盐胁迫下均显著下降,通过气孔限制值分析发现,盐胁迫导致赛棚番茄叶片光合速率下降主要是由气孔限制因素引起的,而阿拉姆叶片则以非气孔限制因素为主导作用.盐胁迫还导致赛棚和阿拉姆番茄生物量显著降低,且地下生物量的下降幅度大于地上生物量.综合分析表明,阿拉姆的抗盐能力高于赛棚.  相似文献   

8.
烤烟旺长期气孔和非气孔限制对水分胁迫的反应   总被引:14,自引:0,他引:14  
烤烟NC89、LJ851、LJ911在旺长期生长迅速,耗水量大。烟株生长的最适宜土壤相对含水量应保持在75%~85%,此土壤水分条件下的中午光合速率的下降是气孔限制所致。当土壤相对含水量低于75%,光合非气孔限制因素开始出现。当土壤相对含水量低于65%时,非气孔限制逐渐成为光合下降主导因子,并可能导致光合器官受到损伤。  相似文献   

9.
外源氯胁迫对甘薯幼苗光合特性的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
采用温室水培方法,以甘薯品种‘徐薯22’,‘苏薯11’和‘宁紫1号’为材料,外源氯(0、42.2、84.4、168.8、211mmol.L-1)胁迫处理7d、14d和21d,测定其生理生化及气体交换参数,探讨Cl-对甘薯幼苗生长以及光合特性的影响。结果表明:(1)‘徐薯22’叶面积与主蔓生长速率受外源氯胁迫而降低但仍维持在一定水平,而‘苏薯11’和‘宁紫1号’则在低浓度Cl-(≤84.4mmol.L-1)处理下高于对照。(2)3个甘薯品种叶片净光合速率(Pn)及光合色素含量在42.2mmol.L-1 Cl-处理下均高于对照;导致‘徐薯22’光合能力降低的主要因素为非气孔限制,而‘苏薯11’和‘宁紫1号’兼有气孔限制和非气孔限制因素,在短期或低浓度Cl-处理条件下以气孔限制因素为主。(3)处理21d时,甘薯幼苗根系氯离子含量低于14d且氯离子向地上部运输比率(SCl)上升;‘徐薯22’积累Cl-含量低于‘苏薯11’和‘宁紫1号’。研究发现:外源氯低浓度短期处理利于甘薯幼苗生长及光合作用的进行;在胁迫初期甘薯可有效抑制Cl-向地上部转运,但在处理第3周该抗逆性明显减弱;甘薯对氯胁迫的耐受性存在基因型差异,本实验中以‘徐薯22’耐性较强。  相似文献   

10.
红松与西伯利亚红松均为寒温带著名的成林树种,具有较强的耐寒性,与红松相比,西伯利亚红松具有更强的耐寒性。为探究低温胁迫下两树种的生理响应机制及抗寒生理机理,本研究以5年生的红松与西伯利亚红松幼苗为材料,对其进行低温处理,3个胁迫温度(0℃、-20℃和-40℃)和3个胁迫时间(6、24和48 h),20℃为对照,研究低温胁迫下红松与西伯利亚红松的光合特性和气孔特性。T检验和方差分析结果表明,各光合指标和气孔密度在红松与西伯利亚红松中的差异显著(P<0.05),低温及低温胁迫时间对红松与西伯利亚红松各光合指标具有极显著影响(P<0.01),低温对红松与西伯利亚红松的气孔开度与气孔面积具有极显著影响(P<0.01)。胁迫前(20℃)和0℃低温胁迫下,红松中的净光合速率、气孔导度和蒸腾速率均显著高于西伯利亚红松,但在-20℃条件下胁迫6 h,西伯利亚红松各光合测定指标显著高于红松。随着温度的降低与胁迫时间的延长,两树种的各光合指标均呈下降趋势。红松中的气孔密度显著高于西伯利亚红松,胁迫前(20℃),红松与西伯利亚红松的气孔均为椭圆形,随着温度的降低,两树种的气孔开度和气孔面积显著减小。  相似文献   

11.
NaCl胁迫抑制玉米幼苗光合作用的可能机理   总被引:3,自引:0,他引:3  
用NaCl 100mmol/L处理玉米幼苗,216 h内不同时间分别测叶片光合速率及其它生理指标,结果表明随处理时间的延长,光合速率下降,气孔导度减小,细胞间隙CO2浓度先降低后升高(图1);叶片MDA(图5a)、Cl-、Pi(图4)及可溶性糖(图2b)含量增加;质膜透性增大(图2a);Chla/Chl b(图3b)及Fv/Fm(图5b)减小;MDH、PEPC酶活性降低(图6).细胞间隙CO2浓度的变化,说明光合速率下降的原因短时间内以渗透胁迫产生的气孔限制因素为主,长时间时以非气孔因素为主.Cl-多对细胞产生离子毒害,Pi的增多可竞争性地抑制RuBP羧化酶的活性.MDA的增加表明活性氧增多,活性氧通过使酶失活和膜伤害抑制细胞生长,使细胞内糖利用减少,可溶性糖含量增加,进而反馈性地抑制光合作用.活性氧还可以漂白叶绿素、增强光抑制及使与光合作用有关的酶失活,而抑制光合作用.因此,NaCl胁迫下光合作用降低的原因是多因素共同作用的结果,短时间内以气孔限制因素为主,长时间时以非气孔因素为主,在非气孔因素中活性氧的增加是主导因素.  相似文献   

12.
光合作用对光和二氧化碳响应的观测方法探讨   总被引:34,自引:0,他引:34  
用便携式光合仪LI-6400观测自然条件下生长的盆栽蚕豆叶片光合作用对光和二氧化碳的响应发现:(1)用未经过光合诱导的叶片观测光合作用对光的响应会得到即使在全太阳光强下光合作用仍然不饱和的假象;(2)利用某些经验方程计算的饱和光强远低于实际观测值;(3)在观测光合作用对CO2的响应过程中,每一次CO2浓度变化都应当伴随一次光合仪的匹配步骤,否则所得结果偏差很大;(4)在不饱和光下观测光合作用对CO2的响应,会导致对叶片光合能力的低估。  相似文献   

13.
柑橘属光合作用的环境调节   总被引:17,自引:6,他引:11  
光合机构的运转受环境影响很大,与柑橘的生长发育、产量和品质密切相关.结合我们的工作,综合论述了柑橘光合作用环境调节的研究进展.强光和紫外光导致光合作用下降与PSⅡ反应中心失活有关,光呼吸和叶黄素循环对光合机构有保护作用.温度胁迫下,光合作用下降主要是RuBPCase活性下降和PSⅡ反应中心失活引起,品种间存在差异.轻度水分胁迫引起的光合作用下降是气孔限制的结果,而严重水分胁迫导致光合作用的非气孔限制.提高CO2浓度,能够促进柑橘的光合作用,进而促进柑橘的生长和提高其品质.阐述了N、P、S、Fe等矿质元素调节光合作用的机理及盐胁迫对光合作用的影响,指出了今后柑橘光合作用的研究方向.  相似文献   

14.
Moorthy  P.  Kathiresan  K. 《Photosynthetica》1998,34(3):465-471
Changes in photosynthesis and biochemical constituents were studied in R. apiculata seedlings grown under solar and solar enhanced UV-B radiation, equivalent to 10, 20, 30, and 40 % stratospheric ozone depletion. The seedlings grown under 10 % UV-B radiation showed an increase of 45 % net photosynthetic rate (PN) and 47 % stomatal conductance, while seedlings grown under 40 % UV-B radiation exhibited a decrease of 59 % PN with simultaneous elevation of 73 % intercellular CO2 concentration. Effects of UV-B on contents of lipids, saccharides, amino acids, and proteins were significant only at high doses of UV-B radiation. The concentration of anthocyanin was reduced with increasing doses of UV-B. The reverse was true with phenols and flavonoids.  相似文献   

15.
Changes in photosynthesis and biochemical constituents were studied in R. apiculata seedlings grown under solar and solar enhanced UV-B radiation, equivalent to 10, 20, 30, and 40 % stratospheric ozone depletion. The seedlings grown under 10 % UV-B radiation showed an increase of 45 % net photosynthetic rate (PN) and 47 % stomatal conductance, while seedlings grown under 40 % UV-B radiation exhibited a decrease of 59 % PN with simultaneous elevation of 73 % intercellular CO2 concentration. Effects of UV-B on contents of lipids, saccharides, amino acids, and proteins were significant only at high doses of UV-B radiation. The concentration of anthocyanin was reduced with increasing doses of UV-B. The reverse was true with phenols and flavonoids.  相似文献   

16.
灌水对小麦旗叶光合功能衰退的影响   总被引:17,自引:2,他引:15  
利用田间小区试验研究了不同灌水对冬小麦旗叶光合功能衰退的影响。研究表明:小麦旗叶光合衰退初期引起光合下降的原因主要是气孔限制,后期则为非气孔限制。灌水可提高旗叶光合速率,并使由气孔限制非气孔转变的时间推后,同时,还可增加叶绿素含量,增强根活力,使小麦旗叶光合功能持续期延长,过量灌水改善旗叶光合速衰的效果主要表现在后期,对产量提高的意义并不大。  相似文献   

17.
小麦和大豆叶片的气孔不均匀关闭现象   总被引:9,自引:0,他引:9  
用14CO2放射自显影的方法研究了田间小麦和大豆叶片在水分胁迫下的气孔关闭状况。正常浇水的小麦和大豆叶片呈现出对14CO2的均匀吸收。在小麦与大豆"片水势分别降至-1.75和-1.32MPa的土壤干旱条件下,两种作物叶片都发生气孔不均匀关闭。离休叶片在空气中快速脱水易引起气孔不均匀关闭。正常供水小麦叶片在晴天中午明显的光合午休时,无CO2的不均匀吸收。某些晴天中午,在大豆光合午休低谷时段观察到较明显的气孔不均匀关闭,用气体交换资料计算出的细胞间隙CO2浓度并不随气孔年度的降低而下降,反而略有回升。  相似文献   

18.
The effects of drought on the photosynthetic characteristics of three Mediterranean plants (olive, Olea europea L.; rosemary, Rosmarinus officinalis L.; lavender, Lavandula stoechas L.) exposed to elevated UV-B irradiation in a glasshouse were investigated over a period of weeks. Drought conditions were imposed on 2-year-old plants by withholding water. During the onset of water stress, analyses of the response of net carbon assimilation of leaves to their intercellular CO2 concentration were used to examine the potential limitations imposed by stomata, carboxylation velocity and capacity for regeneration of ribulose 1,5-bisphosphate on photosynthesis. Measurements of chlorophyll fluorescence were used to determine changes in the efficiency of light utilization for electron transport, the occurrence of photoinhibition of photosystem II photochemistry and the possibility of stomatal patchiness across leaves. The first stages of water stress produced decreases in the light-saturated rate of CO2 assimilation which were accompanied by decreases in the maximum carboxylation velocity and the capacity for regeneration of ribulose 1,5-bisphosphate in the absence of any significant photodamage to photosystem II. Leaves of rosemary and lavender were more sensitive than those of olive during the first stages of the drought treatment and also exhibited increases in stomatal limitation. With increasing water stress, significant decreases in the maximum quantum efficiency of photosystem II photochemistry occurred in lavender and rosemary, and stomatal limitation was increased in olive. No indication of any heterogeneity of photosynthesis was found in any leaves. Drought treatment significantly decreased leaf area in all species, an important factor in drought-induced decreases in photosynthetic productivity. Exposure of plants to elevated UV-B radiation (0.47 W m(-2)) prior to and during the drought treatment had no significant effects on the growth or photosynthetic activities of the plants. Consequently, it is predicted that increasing UV-B due to future stratospheric ozone depletion is unlikely to have any significant impact on the photosynthetic productivity of olive, lavender and rosemary in the field.  相似文献   

19.
The objectives of this study were to determine the effects of UV-B radiation and atmospheric carbon dioxide concentrations ([CO(2)]) on leaf senescence of cotton by measuring leaf photosynthesis and chlorophyll content and to identify changes in leaf hyperspectral reflectance occurring due to senescence and UV-B radiation. Plants were grown in controlled-environment growth chambers at two [CO(2)] (360 and 720 micro mol mol(-1)) and three levels of UV-B radiation (0, 7.7 and 15.1 kJ m(-2) day(-1)). Photosynthesis, chlorophyll, carotenoids and phenolic compounds along with leaf hyperspectral reflectance were measured on three leaves aged 12, 21 and 30 days in each of the treatments. No interaction was detected between [CO(2)] and UV-B for any of the measured parameters. Significant interactions were observed between UV-B and leaf age for photosynthesis and stomatal conductance. Elevated [CO(2)] enhanced leaf photosynthesis by 32%. On exposure to 0, 7.7 and 15.1 kJ of UV-B, the photosynthetic rates of 30-day-old leaves compared with 12-day-old leaves were reduced by 52, 76 and 86%, respectively. Chlorophyll pigments were not affected by leaf age at UV-B radiation of 0 and 7.7 kJ, but UV-B of 15.1 kJ reduced the chlorophylls by 20, 60 and 80% in 12, 21 and 30-day-old leaves, respectively. The hyperspectral reflectance between 726 and 1142 nm showed interaction for UV-B radiation and leaf age. In cotton, leaf photosynthesis can be used as an indicator of leaf senescence, as it is more sensitive than photosynthetic pigments on exposure to UV-B radiation. This study revealed that, cotton leaves senesced early on exposure to UV-B radiation as indicated by leaf photosynthesis, and leaf hyperspectral reflectance can be used to detect changes caused by UV-B and leaf ageing.  相似文献   

20.
Drought and salinity are two widespread environmental conditions leading to low water availability for plants. Low water availability is considered the main environmental factor limiting photosynthesis and, consequently, plant growth and yield worldwide. There has been a long-standing controversy as to whether drought and salt stresses mainly limit photosynthesis through diffusive resistances or by metabolic impairment. Reviewing in vitro and in vivo measurements, it is concluded that salt and drought stress predominantly affect diffusion of CO(2) in the leaves through a decrease of stomatal and mesophyll conductances, but not the biochemical capacity to assimilate CO(2), at mild to rather severe stress levels. The general failure of metabolism observed at more severe stress suggests the occurrence of secondary oxidative stresses, particularly under high-light conditions. Estimates of photosynthetic limitations based on the photosynthetic response to intercellular CO(2) may lead to artefactual conclusions, even if patchy stomatal closure and the relative increase of cuticular conductance are taken into account, as decreasing mesophyll conductance can cause the CO(2) concentration in chloroplasts of stressed leaves to be considerably lower than the intercellular CO(2) concentration. Measurements based on the photosynthetic response to chloroplast CO(2) often confirm that the photosynthetic capacity is preserved but photosynthesis is limited by diffusive resistances in drought and salt-stressed leaves.  相似文献   

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