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1.
重金属对盐生草光合生理生长特性的影响   总被引:5,自引:1,他引:4  
以盐生草幼苗为试验材料,分别设置0(CK)、50、100、200、400μg?g-1的Ni2+、Cu2+处理,研究重金属Ni2+和Cu2+对盐生草光合生理特性的影响.结果表明:盐生草叶片光合色素含量、净光合速率(Pn)、气孔导度Gs、蒸腾速率Tr、PSⅡ最大光化学效率Fv/Fm、非光化学猝灭系数qN及生长指标(株高、地上部干重和鲜重)在50μg?g-1的Ni2+处理时均达到最大值,后随Ni2+浓度继续增加,其叶片叶绿素a、叶绿素b、Pn、Gs、Tr、Fv/Fm、PSⅡ电子传递量子产率ΦPSⅡ、光化学猝灭系数qP、qN及各项生长指标逐步下降并低于对照水平,而细胞间隙CO2浓度(Ci)较对照呈增加趋势.在50μg?g-1的Cu2+处理时,盐生草叶片光合色素含量、Pn、Gs、Tr、Ci、Fv/Fm、ΦPSⅡ、qP、qN及各项生长指标均达峰值;在100μg?g-1Cu2+处理时,光合色素含量、Pn、Gs、Tr、Fv/Fm、ΦPSⅡ、qN及各项生长指标较对照仍有增加,而后随Cu2+浓度继续增加,其叶绿素a、叶绿素b、各光合参数、叶绿素荧光参数及生长指标均逐步降低并低于对照.可见,盐生草Pn在Ni2+胁迫下的下降主要是由非气孔限制所致,而Cu2+胁迫下的下降主要是由气孔限制所致;低浓度Ni2+和Cu2+对盐生草生长具有一定促进作用,过高浓度Ni2+和Cu2+则会通过抑制盐生草叶片叶绿素合成,影响其光合作用,从而抑制植株生长.  相似文献   

2.
麻疯树幼苗对干旱胁迫的响应   总被引:18,自引:0,他引:18  
以不同浓度(5%~25%)的聚乙二醇(PEG-6000)模拟干旱胁迫处理麻疯树三叶期幼苗,研究了不同程度干旱胁迫下麻疯树叶片光合特性及其对干旱的耐受能力.结果表明:在较低浓度PEG(≤15%)处理下,随PEG浓度的增加,麻疯树叶片净光合速率(Pn)、气孔导度(Gs)、胞间CO2浓度(Ci)、PSⅡ实际光化学量子产量(ΦPSⅡ)、光化学猝灭(qP)和表观光合电子传递速率(ETR)下降,PSⅡ原初光能转化效率(Fv/Fm)轻微下降,水分利用效率(WUE)则逐渐升高,非光化学猝灭(NPQ)明显上升,初始荧光(Fo)无显著变化(P>0.05);在高浓度PEG(>15%)处理下,Ci随PEG浓度的增加而显著上升,Pn、Gs和WUE持续下降,Fv/Fm、ΦPSⅡ、qP和ETR下降幅度明显增大,Fo显著上升,而NPQ下降.低浓度PEG处理导致麻疯树叶片Pn下降主要是由气孔因素造成的;在高浓度PEG处理下,Pn的下降则是由非气孔和气孔因素的共同限制作用造成的.当PEG浓度<20%时,虽然出现Pn下降,但光合机构未受损伤.经15 d高浓度PEG处理的植株叶片,在胁迫解除后光合活性能够迅速恢复,且植株可以存活.说明麻疯树对干旱胁迫有较强的耐受能力.  相似文献   

3.
采用人工气候室控制环境条件,研究了高温(30℃和40℃)对印楝(Azadirachta indica A.Juss.)、木豆[Cajanus cajan(Linn.)Huth]、赤桉(Eucalyptus camaldulensis Dehn.)、蓝桉(E.globulus Labillardiere)、柠檬桉(E.citriodoraHook.)、大叶相思(Acacia auriculiformis A.Cunn.)和麻风树(Jatropha curcas Linn.)7个干热河谷植被恢复树种幼苗叶片光合参数的影响,以及低湿条件对麻风树幼苗叶片光合参数的影响,并对高温及低湿条件下各树种叶片光合参数与叶片含水量的关系进行了探讨。结果表明:在高温条件下,供试树种叶片的净光合速率(Pn)和Fv/Fm值均随叶片含水量的提高逐渐增加,但在40℃条件下各树种的Pn以及刚nn值均明显降低,表明叶片含水量高有利于各树种叶片Pn和n/Fm的提高,而40℃高温则对其Pn和Fv/Frn有明显抑制作用。在非干旱条件下,高温对各树种幼苗的Pn、气孔导度(Gs)、胞间c0:浓度(ci)和蒸腾速率(Tr)均有不同程度影响。在40℃条件下,供试树种中印楝和赤桉幼苗的Pn降幅最小;大叶相思、蓝桉和木豆幼苗的Gs明显增加;各树种幼苗的ci均明显提高;除印楝外,其他6个树种幼苗的Tr明显加剧且叶片水分利用效率降低。在叶片含水量较高的状况下,供试7个树种中印楝和赤桉幼苗的FV/Fm值受高温的影响较小。在空气相对湿度20%的条件下,麻风树幼苗的Pn、Cs、ci及Tr均明显降低,且均随叶片含水量的提高而增加,表明叶片含水量下降是麻风树幼苗光合作用减弱的重要影响因素。研究结果表明:干热河谷地区的高温引起的植物光合限制以非气孔因素为主导;在供试的7个树种中,印楝和赤桉对干热河谷高温干旱生境的适应或忍耐能力较强。  相似文献   

4.
Chlorophyll fluorescence emission, pigment composition and photosynthetic rate of shade-grown cotton (Gossypium hirsutum L.) plants were measured immediately after suddenly exposing to full sunlight and at regular intervals there after within 15 d. Photoinhibition occurred in shade-grown cotton leaves immediately after exposed to full sunlight. The chlorophyll fluorescence parameter Fv / Fm and ΦPSⅡ , which reflect the efficiency of PSⅡ, obviously decreased in shade-grown leaves, much lower than that of the full sunlight-grown leaves. On the contrary, Fo value was sharply increased. Neither of these parameters could completely recover till next morning. The photoinhibition was chronic and continued for about 4 d, while the Fv / Fm and the net photosynthetic rate ( Pn ) continued to decline, then began to increase gradually 6 d later and turned stable after 10-12 d, appearing as an acclimation phenomenon. However, the final value of Fv / Fm and Pn did not reach the level as in those leaves grown in the full sunlight ever before. The final Pn was higher by 60% than that before exposure, but lower for more than 40% than that of the full sunlight-grown leaves. The most notable response of chloroplast pigment composition was a pronounced increase in the pool size of carotenoids in xanthophyll cycle over a period of 3 d. The results indicated that when shade-grown cotton seedlings were suddenly transferred to the full sunlight, the decline of Fv / Fm and Pn might associate with the damage of the PSⅡ reaction center. During the light acclimation, photoprotective mechanisms such as the xanthophyll cycle-dependent energy dissipation were increased, so that photodamage in leaves transferred from low to high light might be reduced.  相似文献   

5.
The chlorophyll fluorescence parameters of Kobresia humilis Serg. and Polygonum viviparum L. grown at two different altitudes (3200 m, 3980 m) were measured and the ultrastructure of chloroplasts were observed for studying the photosynthetic adaptability of plants to the influences of stress conditions in alpine environment. Rfd -values, the vitality index, in leaves of K. humilis and P.viviparum grown at 3980 m were higher than those at 3200 m. The higher ratio of Fv/Fo and Fv/Fm in leaves of K. humilis and P.viviparum indicated that the rate of photosynthetic conversion of light energy increased at higher altitude. Ratios of Fv/Fo and Fv/Fm and Rfd -values in K.humilis were higher than that in P.viviparum grown at the same altitude. There were more irregular chloroplasts in leaves of both species grown at higher altitude. Many irregular chloroplasts such as swollen thylakoid, deformed chloroplast envelope, were observed in P.viviparum grown at 3980 m, but few in K. humilis . These results were discussed in relation to the photosynthetic adaptability of alpine plants and the different adaptive competence between K.humilis and P.viviparum.  相似文献   

6.
Chen W  Yang X  He Z  Feng Y  Hu F 《Physiologia plantarum》2008,132(1):89-101
The relationship of zinc (Zn) efficiency in rice to differential tolerance of photosynthetic capacity and chloroplast function to low Zn stress was studied using Zn-efficient (IR8192) and Zn-inefficient (Erjiufeng) rice genotypes ( Oryza sativa L.). Zinc deficiency caused extensive declines in leaf chlorophyll (Chl) content, ratios of chl a:b, Pn, Fv/Fm and Fv/Fo, indicating that the intrinsic quantum efficiency of the photosystem II (PSII) units was damaged. A greater decline was observed in the inefficient genotype (Erjiufeng) than the efficient genotype (IR8192). The 77 K chl fluorescence emission spectrum revealed that Zn deficiency blocked energy spillover from PSII to PSI and more excitation energy was distributed to PSII in IR8192 than Erjiufeng. The spectrum of Zn-deficient Erjiufeng was completely disordered, implying that the photosynthetic centers were seriously damaged. Electron microscopy showed that Zn deficiency caused a severe damage to the fine structure of chloroplasts, but IR8192 had a better preserved chloroplast ultrastructure as compared with Erjiufeng. These differences may result from the higher levels of the antioxidant enzyme activities and lower oxidant stress level in IR8192. These results indicate that Zn deficiency decreases leaf photosynthetic capacity primarily by reducing the number of PSII units per unit leaf area, and also reducing the photochemical capacity of the remaining PSII units. Therefore, the maintenance of more efficient photochemical capacity under low Zn stress is a key factor for the high Zn efficiency in rice, which may result from less antioxidant damage caused by low Zn to the chloroplast ultrastructure.  相似文献   

7.
Thermostability of the photosynthetic apparatus of abscisic acid (ABA)-treated seedlings of barley (Hordeum vulgare) was studied by light-scattering and by fluorescence measurements of isolated chloroplasts. ABA treatment markedly decreased heat damage of the chloroplast ultrastructure; an exogenous ABA concentration of 10−5 molar was most effective. Heat-induced increase of the 77 kilodalton fluorescence ratio F740/F685 was also smaller at this ABA concentration. The heat-induced increase of the initial chlorophyll fluorescence level (Fo) was virtually eliminated in ABA-treated (10−5 molar) chloroplasts up to 45°C and slightly increased at 50°C, relative to control chloroplasts where Fo increased even at 35°C and reached its maximal value at 45°C. In control chloroplasts, Fo increased with a 5-minute pretreatment temperature, an effect observed as low as 35°C. Fo was maximal at 45°C. In contrast, chloroplasts treated with 10−5 molar ABA did not exhibit a heat-induced increase in Fo until 50°C.  相似文献   

8.
日光温室光温因子对黄瓜叶绿体超微结构及其功能的影响   总被引:16,自引:4,他引:12  
在日光温室内,研究了光温因子对黄瓜叶绿体超微结构及其功能的影响.结果表明,因季节之间光、温条件不同,日光温室黄瓜叶片显微结构和叶绿体超微结构有一定差异,1月份光照弱叶肉细胞较大,而5月份光照强叶绿体数较多.在该试验条件下,未发现叶片光合速率与叶绿体超微结构之间有直接或密切的相关性.在各生长季节其光合速率均为第4叶>初展叶>基部叶,与叶龄及各叶位的受光量有关.如果将不同叶位叶放在相同的光照下,则差异明显减少.黄瓜叶片的叶肉细胞、叶绿体和淀粉粒的大小以及叶绿体数、基粒数、基粒厚度、基粒片层数都随叶位的下降而呈增加趋势。不同品种、同品种不同生长时期的叶片显微结构和叶绿体超微结构及其功能也有一定的差异.限制日光温室冬季黄瓜光合作用的主要因素是光照弱、有效光照时数少,而在晴天温度的限制作用相对较小。阴天因光照弱而导致的室内低温则是限制黄瓜生长的关键因素.  相似文献   

9.
弱光胁迫对玉米产量及光合特性的影响   总被引:21,自引:0,他引:21  
通过在玉米授粉前0~14d、授粉后1~14d、授粉后15~28d3个时期分别进行遮光处理,研究了弱光胁迫对两个玉米品种费玉3号和泰玉2号产量及光合特性的影响.结果表明:各时期弱光胁迫均使玉米产量降低,其中授粉前0~14d弱光处理的产量降幅最大,费玉3号对弱光胁迫的反应较泰玉2号敏感.弱光胁迫后籽粒灌浆高峰出现时间延迟、灌浆速率慢、积累量小;弱光胁迫开始的时间越早,籽粒达到最大灌浆速率的时间(Tmax)越晚.弱光胁迫期内,玉米Chl(a b)、Chla/b、光合速率(Pn)、光系统Ⅱ最大光化学效率(Fv/Fm)和光系统Ⅱ实际光化学效率(ФPSⅡ)显著下降,Chlb相对含量提高,胞间二氧化碳浓度(Ci)和非光化学淬灭系数(NPQ)则显著上升;胁迫结束后,玉米Chl(a b)、Chla/b、Pn、Fv/Fm、ФPSⅡ、Ci和NPQ逐渐恢复接近自然光照条件(CK)水平,而Chlb相对含量下降.表明非气孔因素是弱光胁迫下玉米光合速率降低的原因之一.  相似文献   

10.
干旱胁迫对不同葡萄砧木光合特性和荧光参数的影响   总被引:37,自引:3,他引:34  
綦伟  谭浩  翟衡 《应用生态学报》2006,17(5):835-838
干旱胁迫导致葡萄砧木实生苗叶片光合能力下降.在正常供水和轻度干旱下,砧木的Pn 以3309C最高,其次是1103P,420A较低,各砧木的Gs和Tr差异不显著;中度干旱下,则以1103P的Pn最高,3309C最低;而严重干旱胁迫下,1103P的Pn比3309C高出124%,水分利用效率是3309C的1.95倍.干旱胁迫下,3种砧木的共同趋势是可变荧光 (Fo) 升高,最大荧光 (Fm)、实际光能转化效率 (ФPSⅡ)和可变荧光与最大荧光比 (Fv/Fm) 降低,但品种变幅不同.中度干旱使3309C的F o升高17.1%,Fv/Fm降低了8.5%,而1103P的Fo升高6.8%,Fv/Fm降低了5.8%;严重干旱则使3309C的Fo升高36.2%,Fv/Fm降低了20.1%,而1103P的Fo升高9.9%,Fv/Fm降低了10.2%.干旱胁迫对不同葡萄砧木光合和荧光参数的影响与其抗旱性密切相关,其中Fv/Fm和Pn的相关系数最大(r=0.9883).  相似文献   

11.
Fu CF  Gibbs M 《Plant physiology》1987,83(4):849-855
Spinach chloroplasts were used to study the relationship between photosynthetic CO2 fixation and temperature from 30 to −15°C. In saturating light and high concentrations of CO2, the temperature coefficients (Q10) above 20°C were less than 2 in the intact chloroplast. Below 15°C, the Q10 values were greater than 2 and gradually increased with decreasing (down to 0°C) temperature to approximately 4.4. Photosynthesis responded similarly to temperature in a reconstituted chloroplast preparation fortified with ribose 5-phosphate. In the intact chloroplast, temperature did not alter the Q10 value in low light and high CO2. Elevating the temperature to 25°C after photosynthesizing at −15°C (46 minutes) or 0°C (17 minutes) restored the temperature-depressed photosynthetic rate without a lag in the intact chloroplast to the rate of a chloroplast continually at 25°C. At 0°C, the intact chloroplast photosynthetic rate responded slightly to the inorganic phosphate concentration (0.1-1.0 millimolar) and to pH (7.0-8.6). Relative to 25°C, the levels of ribulose 1,5-bisphosphate and glycerate 3-phosphate were increased 1300 and 200%, respectively, whereas glycolate decreased 57% during intact chloroplast photosynthesis at 0°C. Chilling temperature impeded the transport of photosynthetic intermediates from the stromal compartment to the external medium. Ethylene glycol was shown to be an appropriate additive to prevent freezing of the reaction mixture down to −15°C for photosynthetic CO2 assimilation.  相似文献   

12.
Desiccation tolerance and longevity of plant propagules in the dry state have significant implications for biotechnological applications. In this study fern spores were used as a unicellular model to characterize some of the mechanisms of ageing during dry storage of plant propagules (at relative humidity ca. 15%). More specifically, we compared the potential relationships among indicators of photo-oxidative stress and spore viability during dry storage between green (chlorophyllous) spores of Todea barbara and non-green spores of Christella dentata. Green spores stored under the light aged faster than those stored in the dark, and faster than light- and dark-stored non-green spores of C. dentata. This rapid ageing in light-stored green spores was associated with significantly lower antioxidant activity (relative to time zero and dark-stored spores) during storage, and a burst of hydrogen peroxide during the latter stages of storage, which was not a feature of dark-stored spores. We attribute these signs of enhanced oxidative-stress mediated ageing in light-stored spores to photo-oxidative processes, similar to those described in other homoiochlorophyllous organisms. Additionally, high antioxidant activity and low levels of reactive oxygen species in green spores compared with non-green spores suggests differing mechanisms of coping with life in the dry state.  相似文献   

13.
探讨海南省极小种群物种海南假韶子(Paranephelium hainanensis)的光合生理特性,以期为该物种的保护和利用提供科学依据。应用Li-COR便携式光合仪和FC1000-H便携式植物荧光成像系统测定海南假韶子的光合特性、叶绿素荧光参数的动态变化。结果表明:海南假韶子成年树和林下幼苗在7月和11月时净光合速率(Pn)和蒸腾速率(Tr)的日变化均呈明显"双峰"曲线,成年树的最大Pn达9.24μmol·m^-2·s^-1,最大Tr为3.34μmol·m^-2·s^-1,其光合能力显著强于幼苗;海南假韶子成年树初始荧光值(F0)在7月和11月最大值分别为323.04和135.87,Fm在7月和11月最大值分别为502.78和307.76,但幼苗的F0和Fm均低于成年树;成年树Fv/Fm在7月呈单谷型,在11月时呈先降后升再降的日变化趋势;相关性分析结果表明,在7月,成年树的Pn与Tr、Fv/Fm呈极显著正相关,幼苗Pn与F0呈极显著正相关;在11月,成年树的Pn与Tr、Fm呈极显著正相关,与Fv/Fm呈显著负相关;幼苗的Pn与Fm呈显著正相关。以上结果表明,海南假韶子为阳性树种,在7月和11月表现出不同的光合特性和叶绿素荧光参数来适应环境,水分可能是引起海南假韶子光合速率和叶绿素荧光参数动态变化的关键因子。  相似文献   

14.
To understand how light quality influences plant photosynthesis, we investigated chloroplastic ultrastructure, chlorophyll fluorescence and photosynthetic parameters, Rubisco and chlorophyll content and photosynthesis-related genes expression in cucumber seedlings exposed to different light qualities: white, red, blue, yellow and green lights with the same photosynthetic photon flux density of 100 μmol m?2 s?1. The results revealed that plant growth, CO2 assimilation rate and chlorophyll content were significantly reduced in the seedlings grown under red, blue, yellow and green lights as compared with those grown under white light, but each monochromatic light played its special role in regulating plant morphogenesis and photosynthesis. Seedling leaves were thickened and slightly curled; Rubisco biosynthesis, expression of the rca, rbcS and rbcL, the maximal photochemical efficiency of PSII (Fv/Fm) and quantum yield of PSII electron transport (ФPSII) were all increased in seedlings grown under blue light as compared with those grown under white light. Furthermore, the photosynthetic rate of seedlings grown under blue light was significantly increased, and leaf number and chlorophyll content of seedlings grown under red light were increased as compared with those exposed to other monochromatic lights. On the contrary, the seedlings grown under yellow and green lights were dwarf with the new leaves etiolated. Moreover, photosynthesis, Rubisco biosynthesis and relative gene expression were greatly decreased in seedlings grown under yellow and green light, but chloroplast structural features were less influenced. Interestingly, the Fv/Fm, ФPSII value and chlorophyll content of the seedlings grown under green light were much higher than those grown under yellow light.  相似文献   

15.
采用开顶式人工熏气装置,对1年生樟树幼苗进行了为期2个月不同体积分数NO2(0.1、0.5和4.0 μl·L-1)熏气试验,研究其对幼苗生长及光合作用的影响.结果表明:0.5和0.1 μl·L-1 NO2处理促进了樟树幼苗生长,而4.0 μl·L-1 NO2处理则抑制其生长.各处理樟树幼苗叶片净光合速率(Pn)日变化呈不对称的双峰型曲线,存在光合“午休”现象;在光合日进程中,0.5 μl·L-1 NO2处理使叶片Pn提高,最大值达8.542 μmol CO2·m-2s-1,4.0 μl·L-1NO2处理的大多数时段使Pn降低,而0.1 μl·L-1 NO2处理对Pn的影响则依时段而不同;0.5和4.0 μl·L-1 NO2处理提高了叶片气孔导度(Gs)和胞间CO2浓度(Ci)的最大值和最小值,0.1 μl·L-1 NO2处理提高了Ci的最大值和最小值,降低了Gs的最大值和最小值.熏气处理中、后期,0.5μl·L-1 NO2处理叶片的日均净光合速率显著高于其他处理.在熏气处理前期,0.5和4.0 μl·L-1 NO2处理使叶片最大PSⅡ的光能转换效率(Fv/Fm)显著下降;在熏气处理后期,4.0 μl·L-1 NO2处理的叶片Fv/Fm仍显著低于对照.  相似文献   

16.
两个玉米品系叶片光合速率差异的生理机制初探   总被引:1,自引:0,他引:1  
田间生长的两个玉米品系"双105"和"40×44"叶片净光合速率(Pn)存在显著差异。在不同的生长阶段,"40×44"Pn值均比"双105"高10%~32%,而且PSII光化学效率(Fv/Fm和△F/Fm')也较高,表现为植株较高,叶片较大,但叶绿素含量较低。尽管"双105"品系具有较低的光合速率和较低的气孔导度(Gs),但其胞间CO2浓度(Ci)却略高于"40×44"。因此,这两个玉米品系叶片光合速率的差异并非气孔因素,而可能源于光合机构的光反应系统。  相似文献   

17.
土壤水分对湿地松幼苗光合特征的影响   总被引:5,自引:0,他引:5  
通过设置常规供水(CK)、轻度干旱(T1)、水饱和(T2)、水淹(T3)4个处理组,研究湿地松当年实生幼苗在不同土壤水分条件下的光合生理响应及叶绿素荧光特性。结果表明:不同水分处理对湿地松幼苗的叶片气体交换参数、水分利用效率(WUE)、光合色素、叶绿素荧光参数等指标有不同的影响;其中,T3的光合色素含量最低;T2、T3组的湿地松幼苗表现出较低的净光合速率(Pn)、电子传递速率(ETR)和PSⅡ光化学的量子效应(ΦPSⅡ),但与其他耐水淹植物相比,T3条件下的湿地松幼苗仍具有较高的Pn,说明湿地松幼苗具有较强的耐水淹能力;在T1条件下,湿地松幼苗具有较高的WUE和较低的蒸腾速率(Tr)、气孔导度(Gs)以对抗干旱的逆境,其Pn、PSⅡ最大光化学效率(Fv/Fm)、ETR和ΦPSII均有所下降,但仍能维持在相对正常的水平。研究证明,湿地松幼苗具有一定的耐淹耐旱特性,可运用于三峡库区消落带的植被重建。  相似文献   

18.
本文研究了外源6-BA对低温胁迫下茄子幼苗光合作用、叶绿素荧光参数和能量分配的影响。结果表明,外源6.BA显著增加了低温胁迫下茄子叶绿素含量、净光合速率(Pn)、蒸腾速率(t)、气孔导度(Gs)和胞间CO2浓度(c1);同时外源6-BA明显提高了低温胁迫下茄子幼苗叶片的PSⅡ最大光化学效率(Fv/Fm)、PSⅡ潜在活性(R/Fo)、PSII天线转化效率(FvFm)、实际光化学效率(φpsⅡ)、光化学猝灭系数(g,)和光化学反应能量(P),降低了非光化学猝灭系数(NPQ)、天线热耗散能量(D),对非光化学反应耗散能量(E)无明显影响。表明外源6-BA处理通过促进低温胁迫下茄子幼苗光合作用,提高光合电子传递效率,从而保护光合系统,降低低温胁迫对植物的损伤。  相似文献   

19.
模拟酸雨胁迫下硅对髯毛箬竹光合特性的影响   总被引:1,自引:0,他引:1  
以髯毛箬竹为试验材料,研究了模拟酸雨胁迫(pH 3.0)下硅对髯毛箬竹叶片叶绿素相对含量、光合作用日变化以及叶绿素荧光特性等的影响.结果表明:20和100 mg·L-1 Na2SiO3预处理可以不同程度地抑制酸雨胁迫下髯毛箬竹叶片叶绿素含量的显著下降,且以100 mg·L-1浓度处理效果最佳,叶绿素含量可提高22.7%,而高浓度(500 mg·L-1)预处理则无缓解作用-酸雨胁迫下,髯毛箬竹光合“午休”现象加重,日平均净光合速率(Pn)、气孔导度(Gs)和气孔限制值(Ls)明显降低,而胞间CO2浓度(Ci)增大,经过20~100 mg·L-1硅预处理后,Pn、Gs、Ls不同程度增加,而Ci有所降低,且以100 mg·L-1硅预处理效果最佳,日平均Pn增加39.2%.酸雨胁迫下,箬竹PSⅡ最大荧光(Fm)、最大光化学效率(Fv/Fm)、潜在活性(Fv/Fo)、有效光化学效率(Fv′/Fm′)、最大荧光产额(Fm′)、光化学淬灭系数(qP)、非光化学淬灭系数(qN)、PSII实际光化学效率(ΦPSⅡ)降低,暗适应和光适应下的最小荧光产额Fo、Fo′ 则升高;而100 mg·L-1硅预处理明显抑制了胁迫下各荧光参数的变化,Fv/Fm、Fv/Fo、Fv′/Fm′和ΦPSⅡ分别增加35.2%、146.2%、55.0%和24.3%.说明外源适宜浓度硅预处理能有效地缓解酸雨胁迫导致的髯毛箬竹光合活性下降和光合系统损伤,从而提高胁迫下植物的光合能力.  相似文献   

20.
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   

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