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1.
柚树(Citrus grandis)叶片光合作用对补增UV-B辐射的响应   总被引:4,自引:0,他引:4  
生长在人工光照 4 0 0μmol m- 2 s- 1 下的柚树幼树光合速率的最大值为 1 0 .2± 0 .5μmol m- 2 s- 1 ;而补增UV-B辐射 ( 3.8-4 .2μW cm- 2 ,2 4 5~ 2 97nm,4 5d)的叶片则为 6.4± 0 .8μmol m- 2 s- 1 ,较对照植株降低37.2 %。对照植物的表观量子产率 (固定 mol CO2 mol- 1量子 )为 0 .0 75± 0 .0 1 2 ,而经 UV-B辐射处理植株则为0 .0 4 1± 0 .0 0 8,明显较对照植株低。UV-B辐射处理使植株叶片的光呼吸和不包括光呼吸的 CO2 补偿点增高。对照植株叶片的最大值的 CO2 羧化速率 (μmol m- 2 s- 1 )为 57.1± 1 .5μmol m- 2 s- 1 ,较 UV-B辐射处理的高30 .9% ,而 UV-B辐射处理的植株的光合电子传递速率较对照低 30 %。同时 UV-B辐射植株叶片有较低的光能转化效率 ,其较对照低 39.1 % ,叶片亦含有较低的叶绿素含量。结果表明 ,UV-B辐射明显抑制叶片光合羧化速率和光合电子传递速率 ,UV-B辐射可能抑制包括 Rubisco羧化作用在内的多个光合生理过程 ,降低叶片光合速率。柚树叶片对 UV-B辐射敏感 ,选育抗 UV-B辐射的柚树品种势在必行。  相似文献   

2.
对中国四种蒿属植物(毛莲蒿、蒙古蒿、牡蒿和灰苞蒿)的光合响应曲线进行了研究。结果表明:牡蒿具有高光饱点(411.0μmol·m-2·s-1)和最大光合速率(18.627μmol·m-2·s-1),以及较低的光补偿点(17.867μmol·m-2·s-1),对高光的适应能力最强;灰苞蒿的暗呼吸速率(0.353μmol·m-2·s-1)和表观量子效率(0.038)最低,说明该种对弱光的适应能力较差,且在弱光条件下只能维持较低的生长速率;灰苞蒿水分利用效率随光强的变化趋势与其他三种蒿属植物一致,但总体上维持在一个较高的水平,可能与其对干旱生境的适应有关。光合响应曲线各个拟合指标在种间呈现出了较大的变异,其中光补偿点(L cpμmol·m-2·s-1)和暗呼吸速率(R dayμmol·m-2·s-1)差异达到了显著水平。说明植物功能性状与植物对环境长期适应密切相关,并且这种适应性是稳定可遗传的。  相似文献   

3.
不同土地利用对土壤有机碳储量及土壤呼吸的影响   总被引:2,自引:0,他引:2  
赵竑绯  赵阳  徐小牛 《生态学杂志》2012,31(7):1738-1744
为了探讨土地利用方式对土壤碳储及土壤呼吸的影响,对安徽沿淮洼地杞柳纯林、杞柳-杨树混交林及杨树纯林3种不同土地利用方式下土壤有机碳储量及土壤呼吸特点进行了比较。结果表明:杞柳纯林、杞柳-杨树混交林、杨树纯林0~30cm土壤有机碳含量分别为6.80、8.50和7.71g·kg-1,土壤有机碳密度分别为2.88、3.26和2.95kg·m-2,土壤有机碳含量和土壤碳密度随土层深度的增加而降低。不同土地利用类型土壤呼吸年平均值分别为1.68μmol·m-2·s-1(杞柳纯林)、2.33μmol·m-2·s-1(杞柳-杨树混交林)、1.61μmol·m-2·s-1(杨树纯林),土壤呼吸日均值最高出现在夏季(6.64μmol·m-2·s-1),最低为冬季(0.13μmol·m-2·s-1)。相关分析表明,土壤呼吸速率与地表气温之间呈显著的指数关系,杞柳纯林、杞柳-杨树混交林、杨树纯林的相关系数R2分别为0.71、0.62、0.54。杞柳-杨树混交林较杞柳纯林有利于土壤有机碳的固定,杞柳纯林土壤有机碳储量偏低,与其粗放经营有关。在今后的栽植管理中,应采取合理的耕作施肥措施,在提高土壤肥力的同时增强土壤的碳固定。  相似文献   

4.
濒危植物毛瓣金花茶与其同属广布种茶光合特性的比较   总被引:3,自引:0,他引:3  
毛瓣金花茶为山茶科山茶属植物,该研究分别对野生种群和栽培种群的毛瓣金花茶及其同属广布种茶的光合特性进行了测定及差异比较。结果表明:在野生和栽培环境下,毛瓣金花茶的光补偿点(LCP)(分别为1.17和3.87μmol·m-2·s-1)和光饱和点(LSP)(分别为395.8和423.6μmol·m-2·s-1)均较低,最大净光合速率(Pmax)(分别为4.25和3.91μmol·m-2·s-1)较小,是典型的阴生植物;而茶的LCP(分别为6.57和9.09μmol·m-2·s-1)较低,LSP(分别为765.0和809.6μmol·m-2·s-1)较高,Pmax(分别为9.37和9.75μmol·m-2·s-1)较大,为耐荫植物。野生和栽培的毛瓣金花茶的Pmax、表观量子效率(AQY)、最大羧化速率(Vcmax)、最大电子传递速率(Jmax)和潜在最大净光合速率(Pmax)均显著低于茶(P0.05),这表明毛瓣金花茶的光合能力和CO2利用能力都比茶要弱。栽培的毛瓣金花茶叶片的Chla、Chlb、Chl(a+b)含量与茶相比无显著差异(P0.05),表明毛瓣金花茶较低的光合能力与其叶绿素含量无关。野生和栽培的毛瓣金花茶的叶面积与茶相比无显著差异(P0.05),而比叶重则显著高于茶(P0.05),与茶相比,毛瓣金花茶对光强的适应范围狭窄,光合能力和CO2利用能力低下,这可能是其分布狭窄的重要生理原因。  相似文献   

5.
为了解析施氮和短时光辐射变化下毛竹幼苗的光合限速因子,该文对毛竹幼苗进行施氮处理,并在不同光照辐射条件下(高光:1200μmol·m-2·s-1,低光:200μmol·m-2·s-1)测定其光响应曲线和CO2响应曲线,并利用改进的FvCB模型研究了毛竹幼苗的光合特性.结果表明:(1)经过施氮处理的毛竹幼苗生物量显著高于...  相似文献   

6.
半干旱区典型沙生植物油蒿(Artemisia ordosica)的光合特性   总被引:1,自引:0,他引:1  
为了研究西北半干旱生态系统中典型沙生植物油蒿(Artemisia ordosica)的光合特征,于2012年5—10月,使用Li-6400(Li-Cor Inc.,USA)便携式光合测定系统,测定了油蒿气体交换特征的日变化、季节变化以及净光合速率(Pn)对光合有效辐射和胞间CO2浓度的响应。结果表明:Pn、蒸腾速率(E)和水分利用效率(WUE)的日变化在12:00前后均表现出非对称性,上午测量值普遍高于下午;Pn日均值6月最高(8.97±1.73μmol CO2·m-2·s-1),10月最低(2.58±1.32μmol CO2·m-2·s-1);油蒿表观量子效率(α)在0.022~0.048 mol·mol-1变化,羧化效率(φ)在0.125~0.268 mol·m-2·s-1变化;在9月13日饱和光强下的Pn(Pnmax)达到生长季最大值,为24.89μmol CO2·m-2·s-1;在7月31日饱和胞间CO2浓度下的Pn(Anmax),达到生长季最大值,为77.23μmol CO2·m-2·s-1;Pnmax主要受到相对湿度影响,Anmax主要受饱和水汽压亏缺和30 cm深度土壤体积含水率影响;水分相关环境因子是油蒿光合作用的主要限制因子,其光合特征反映出对半干旱气候的适应性。本研究结果可为生态系统过程建模和区域尺度研究提供重要的生理生态参数。  相似文献   

7.
在夏季田间条件下,研究了4种新疆平欧杂交榛的光合特性。结果表明:4个品种的光饱和点(LSP)、光补偿点(LCP)、CO2饱和点(CSP)、CO2补偿点(CCP)分别位于1195.27~1620.63μmol·m-2·s-1、34.03~87.80μmol·m-2·s-1、1188.50~1617.05μmol·mol-1和64.88~99.15μmol·mol-1;新榛1号和新榛4号表现出低光合低蒸腾的特点,新榛2号具有较低的LCP和较高的LSP,表现出对光能利用范围较大、光合潜力高的特点,新榛3号的LCP和LSP均较大,同时具有低的CCP和高的CSP及表观羧化效率(CE),其最大净光合速率(Pmax)(31.55μmol·m-2·s-1)明显高于其他品种(24.63~25.45μmol·m-2·s-1);此外,与常温(25℃)相比,新榛1号的净光合速率(Pn)受40℃高温的影响较其他品种显著,新榛3号的气孔导度(Gs)比其他品种受影响的程度轻。  相似文献   

8.
不同种源花楸树幼苗越夏能力的比较   总被引:3,自引:0,他引:3  
以来自6个种源花楸树1年生幼苗为材料,通过观测苗木田间生长表现、叶片相对电导率、光合特性等生理指标并利用隶属函数综合评价不同种源花楸树对夏季高温环境的适应性,为早期筛选出适应低海拔地区的优良种源奠定理论基础。结果表明:不同种源对高温的适应性表现不同。山东崂山种源的苗高年增长量最大,为34.99 cm,而河北雾灵山种源的地径年增长量最大(6.90 mm);河北驼粱山种源的净光合速率和蒸腾速率最高,分别为12.1μmol CO2·m-2·s-1和6.28μmol H2O·m-2·s-1,而山西庞泉沟种源净光合速率和蒸腾速率最低,分别为8.03μmol CO2·m-2·s-1和4.39μmol H2O·m-2·s-1。山西庞泉沟种源叶片受伤害程度最大,叶伤害指数为46.53%;受伤害最小的是山东泰山种源,叶伤害指数为17.75%。综合评价表明,越夏能力最强的是山东泰山和山东崂山种源,河北种源次之,山西种源最差。  相似文献   

9.
入侵植物小飞蓬及其伴生植物的光合特性   总被引:2,自引:0,他引:2  
为探讨小飞蓬的入侵机制和制定有效的治理措施,对入侵植物小飞蓬及其主要伴生植物山苦荬和鸭跖草的光合特性进行研究.结果表明:小飞蓬的光饱和点和光补偿点分别为1634.00和23.84 μmol·m-2·s-1,介于2种伴生植物之间;光饱和点下的最大净光合速率为28.12μmol· m-2·s-1,显著高于2种伴生植物;表观量子效率为0.06,与山苦荬差异不显著,但显著高于鸭跖草.小飞蓬的CO2饱和点和CO2补偿点分别为834.00和23.69μmol·mol-1;CO2饱和点下的最大净光合速率为31.97 μmol·m-2·s-1,介于2种伴生植物之间;羧化效率为0.078,显著高于伴生植物.有效光合辐射和CO2浓度的变化对小飞蓬及其伴生植物的气孔导度、蒸腾速率影响不显著,但显著影响其水分利用率.小飞蓬具有较高的光合速率和物质积累能力,较高的生产力是其成功入侵的重要因素之一.  相似文献   

10.
蒺藜苜蓿叶片光合作用对盐胁迫的响应   总被引:2,自引:0,他引:2  
为阐明蒺藜苜蓿(Medicago truncatula)叶片光合效率对盐胁迫的响应规律,明确其土壤盐分阈值,该研究以盆栽蒺藜苜蓿幼苗为研究对象,采用加盐的方式人工模拟盐胁迫环境,设置不同浓度NaCl处理(0、50、100、150、200、250、300、400mmol·L-1),利用Li-6400便携式光合测定仪分析了蒺藜苜蓿幼苗光合效率参数对土壤盐分浓度的响应特征。结果表明:(1)蒺藜苜蓿叶片净光合速率(Pn)和光合作用特征参数等具有明显的土壤盐分临界效应。在NaCl浓度为100~200mmol·L-1时,蒺藜苜蓿可维持较高光合生产力,此盐分范围内适宜的光合有效辐射(PAR)为600~1 300μmol·m-2·s-1,出现Pn最大值(20.7μmol·m-2·s-1)的NaCl浓度为150mmol·L-1,对应PAR为1 200μmol·m-2·s-1左右。(2)在NaCl浓度150mmol·L-1时,随着NaCl浓度的增加,表观量子效率(AQY)、光补偿点(LCP)、暗呼吸速率(Rd)和最大光合速率(Pnmax)逐渐增大;在NaCl浓度为150mmol·L-1时,AQY、Rd和Pnmax分别达到最大值0.030、0.605 7μmol·m-2·s-1、19.4μmol·m-2·s-1,而LCP达到最小值19.8μmol·m-2·s-1。(3)NaCl浓度为150mmol·L-1可作为导致蒺藜苜蓿净光合速率下降的气孔限制和非气孔限制因素的转折点,并且随着NaCl浓度升高,其光合速率由气孔限制转为非气孔限制的PAR降低。以上结果表明,蒺藜苜蓿对盐胁迫具有较强的适应性,在较高盐分浓度下可获得较高的光合生产力。  相似文献   

11.
The surface and the cross section of awns of wheat and barley were examined by scanning electron microscopy,ultrastructure of cells were observed under a transmisson electron microscope and the photosynthetic rates were measured with an oxygen, electrode and infra-red CO2 analyser. The main results were as follows :The cross section of wheat awn appeared to be acutely trianglular whereas that of barley awn was obtusely triangular. There were rows of stomota on either side of epidermis in both wheat and barley awns. Under the stomatic band there were green tissues. The green cells in the awn were differentiated from the parenchyma cells . The mature green cells possessed papillae which were rich in chloroplasts and mitochondria. The tamella system in chloroplasts was well developed and contained many starch grains. There were three vascular bundles in each awn. The sheath cells near the green tissues contained chloroplasts. The photosynthate in the green cells might pass through the sheath cells and companion cells to sieve elements. The highest photosynthetic rate of the awn was seen at the flowering stage ,reaching about 20 μmol CO2·m-2·s-1. The light compensation point was 70—80 μE·m-2· s-1. The light saturation point was about 1500 μE·m-2·s-1. The CO2 compensation point was 50—60 ppm and the CO2 saturation point was about 900ppm . The photosynthetic rate and stomatal conductance were easily effected by CO2 concentration, light intensity and the duration of illumination . There was a positive correlation between the photosynthetic rate and the chloro-phyll content in the awns. The CO2-releasing rate in photorespiration of awn was about 4–5 μmol CO2·m-2·s-1.  相似文献   

12.
Photosynthetic rate and quatum efficiency of grapevine (Vitis vinifera L. cv. Sauvignon blanc) leaves were measured under the field with ample soil water supply, and in phytotron with ample supply of water and mineral nutrients, constant air humidity and CO2 concentration, and optimum air temperature, respectively. Under field conditions CO2 assimilation quantum efficiency of leaves reached its maximum in the morning, which was followed by continuous decrease and midday depression. The leaves intercepting more light energy in the morning showed a higher quantum efficiency. Those leaves subjected continuously to strong irradiance exhibited a more obvious and longer midday depression. Reduction of leaf light interception around midday could reduce midday depression. Shaded leaves had a higher quantum efficiency than leaves under direct sunlight. The diurnal changes in photosynthetic rate and quantum efficiency of leaves were shown to be closely related to the variations in mesophyll resistance to CO2. In phytotron experiments the photosynthetic quantum efficiency of leaves was reduced after a certain period of illumination not only at 1200 μmol · m-2 · s-1 PFD, higher than the saturating light of vine leaves (≈1000 μmol · m-2 · s-1), which was caused by "photoinhibition”, but also at 800 and 200μmol · m-2 · s-1, which was similar to "photoinhibition”. But photosynthetic quantum efficiency of leaves exposed continuously to a very weak PFD (100 μmol · m -2 · s-1) remained contant. The diurnal changes in mesophyll resistance to CO2 of vine leaves could be partly related to photoinhibition. It is considered that, under field conditions without soil water limitation, midday depression of vine leaf photosynthesis could be a result of an increase of the mesophyll resistance induced by multiple effects of strong light, high temperature and low humidity. A higher light interception by canopy plane in the morning may be advantageous to exploit higher photosynthetic potentiality of leaves, but a lower light interception in the middle of day may reduce midday depression. The north-south orientation plane can provide optimum light regime and improve photosynthetic environment in vineyards.  相似文献   

13.
HERPPICH  W.B. 《Photosynthetica》1998,34(1):1-12
Well-watered plants of Plectranthus marrubioides Benth., a crassulacean acid metabolism (CAM) species naturally inhabiting sun exposed succulent places, were grown at photosynthetically active photon flux densities (PPFD) of either 150 (LL) or 300 (HL) μmol m-2 s-1 in a controlled environment. Photosynthesis of LL plants was saturated by irradiance of ca. 500 μmol m-2 s-1 while in HL plants saturation was not reached up to 1200 μmol m-2 s-1 and photosynthetic capacity was nearly 50 % higher than in the LL plants. However, maximum photon yield was 55 % lower and compensation irradiance was 25 % higher in LL plants. The former also had larger, more succulent leaves, i.e., they were morphologically more sun adapted. On the other hand, nocturnal accumulation of malic and citric acid, nighttime CO2 gain, and the low relative carbon recycling were independent of the prevailing PPFD. Furthermore, photosynthetic performance was flexibly and reversibly adjusted in HL plants after transfer to 600 or 150 μmol m-2 s-1 while nocturnal CO2 uptake was not influenced. Photosynthesis showed a high acclimation potential to high PPFD and patterns of gas exchange became more C3-like the higher the irradiance was, without a direct effect on CAM in P. marrubioides.  相似文献   

14.
Simultaneous measurements of leaf gas exchange and chlorophyll fluorescence for Koelreuteria paniculata Laxm. at 380 ± 5.6 and 600 ± 8.5 ??mol mol?1 were conducted, and the photosynthetic electron flow via photosystem II (PSII) to photosynthesis, photorespiration, and other electron-consuming processes were calculated. The results showed that the photosynthetic electron flow associated with carboxylation (J c), oxygenation (J o), and other electron-consuming processes (J r) were 72.7, 45.7, and 29.4 ??mol(e?) m?2 s?1 at 380 ??mol mol?1, respectively; and 86.1, 35.3, and 48.2 ??mol(e?) m?2 s?1 at 600 ??mol mol?1, respectively. Our results revealed that other aspects associated with electronconsuming processes, except for photosynthesis and respiration, were neither negligible nor constant under photorespiratory conditions. Using maximum net photosynthetic rate (P max), day respiration (R), photorespiration rate (R l), and maximum electron flow via PSII (J max), the use efficiency of electrons via PSII at saturation irradiance to fix CO2 was calculated. The calculated results showed that the use efficiency of electrons via PSII to fix CO2 at 600 ??mol mol?1 was almost as effective as that at 380 ??mol mol?1, even though more electrons passed through PSII at 600 ??mol mol?1 than at 380 ??mol mol?1.  相似文献   

15.
The photosynthetic characteristics of Cyanotis arachnoidea Clarke was studied through shading experimentation in pot culture. The effect of different shade level on the photosynthetic rate, the characteristics of photosynthetic organs and the bio-production of C. arachnoidea were compared. The main results are as follows: 1. C. arachnoidea was a C3 type solaphilic and shade tolerant herb. Its light saturation point was about 650 μmol · m-2 · s-1 and the light compensation point was about 17 μmol · m-2 · s-1. Its CO2 compensation point was about 130× 10-6. 2. The maximum net photosynthetic rate of C. arachnoidea was about 12.45 μmol · m-2 · s-1. The diurnal variation regularity of its photosynthetic rates exhibited a double peak curve in which the main peak appeared during 11: 00~12: 00, and the second around 15: 00. 3. 20%~50% shading favored the growth of C. arachnoidea. In comparison with those with control treatment, the content of chlorophyll b with 20%~50% of shading treatment increased by 47 %~83%, and the photosynthetic production increased by 12 %~18 % as a result of increase in the net photosynthetic rate (relative photosynthetic rate).  相似文献   

16.
 胡杨(Populus euphratica Oliv.)叶形多变化,大致归纳为杨树叶(卵圆形叶)和柳树叶(披针形叶)两大类。在内蒙古额济纳旗胡杨林自然保护区,选择成年树同时具有卵圆形叶和披针形叶的标准株,将枝条拉至同一高度,通过活体测定,比较了其光合特征、水分利用效率及对CO2加富的响应。结果表明:在目前大气CO2浓度下,当光强为1 000 μmol·m-2·s-1时,卵圆形叶(成年树主要叶片)(A)和披针形叶(成年树下部萌条叶片)(B)的净光合速率(Pn)分别为16.40 μmol CO2·m-2·s-1和9.38 μmol CO2·m-2·s-1;水分利用效率(WUE)分别为1.52 mmol CO2·mol-1 H2O和1.18 mmol CO2·mol-1 H2O;A的光饱和点和补偿点分别为1 600 μmol·m-2·s-1和79 μmol·m-2·s-1,B的相对应值则为1 500 μmol·m m-2·s-1和168 μmol·m-2·s-1。当CO2浓度加富到450 μmol·mol-1时,A的光饱和点升高了150 μmol·m-2·s-1,光补偿点降低了36 μmol·m-2·s-1;而B的光饱和点降低了272 μmol·m-2·s-1,光补偿点则升高了32 μmol·m-2·s-1。这表明,柳树叶的光合效率较低,以维持生长为主;随着树体长大,柳树叶难以维系其生长,出现杨树叶,杨树叶更能耐大气干旱,光合效率高,通过积累光合产物,使胡杨在极端逆境下得以生存并能达到较高的生长量,这就是胡杨从幼苗到成年树叶形变化的原因。随着CO2加富,两种叶片表现出截然相反的响应,柳树叶的光合时间缩短,光能利用率减小;而杨树叶的光合时间延长,光能利用率提高。如果地下水位下降,近地层空气变干燥,或随着大气CO2浓度升高,气候变暖,柳树叶可能会逐渐减少以至消失。  相似文献   

17.
不同光照强度和温度对金钗石斛生长的影响   总被引:12,自引:0,他引:12       下载免费PDF全文
为了系统地研究不同光照强度下温度对金钗石斛(Dendrobium nobile)生长的影响,在金钗石斛分蘖期,于80μmol·m-2·s-1、160μmol·m-2·s-1、320μmol·m-2·s-1、640μmol·m-2·s-1的不同光强下,各设置5个温度(15℃、20℃、25℃、30℃、35℃)梯度对石斛进行处理。结果表明:石斛的生长与代谢随温度由低到高,表现出弱—强—弱的变化规律;80μmol·m-2·S-1光强下,石斛生长以25~30℃较为适宜;160μmol·m-2·s-1光强下则以20~25℃为适宜温度范围;320μmol·m-2·s-1与640μmol·m-2·s-1的中、强光照下,25℃处理石斛的生长优势尤为明显;不同光强下,石斛鲜重的增长大多以25℃处理更快,繁殖力则以20℃与25℃处理较高,各光强下的MDA含量随温度升高而先降后升,且均以25℃最低;可溶性蛋白质、可溶性总糖及叶绿素含量则表现出随温度由低到高而先增后减的趋势,其含量最高点均出现在25℃左右;净光合速率和叶绿素含量随光强和温度的变化趋势基本一致;各种光强下的暗呼吸速率均随温度升高而增大。因此,在不同的光照条件下,石斛生长的适宜温度均在25℃左右。光温处理引起石斛生理生化过程明显的相应变化表现出:高温和弱光照条件有利于石斛的株高增长,但不利于产量和质量提高;石斛的生长与MDA含量呈显著负相关(r80=-0.9082、r160=-0.9816、r320=-0.8075、r640=-0.8586),与可溶性糖含量呈一定正相关(r80=0.7673、r160=0.8892、r320=0.8179、r640=0.9278),并且石斛的生长与可溶性蛋白质含量、叶绿素含量、光合速率之间的变化趋势基本一致。  相似文献   

18.
以10个楸树无性系为试验材料,利用Li-6400光合测定仪对其光合特性进行了比较研究。结果表明:楸树净光合速率(Pn)日变化为典型的双峰曲线,气孔限制是光合"午休"的主要调节因素。楸树所有无性系光合作用对光照强度(PAR)单一生态因子水平的响应均可以用二次方程描述。楸树的光补偿点(LCP,11.37~57.4μmol.m-2.s-1)和CO2补偿点(CCP,57.73~77.06μmol.mol-1)在10个无性系间存在显著差异。10个楸树无性系的净光合速率、气孔导度、蒸腾速率和瞬时水分利用效率在无性系间存在极显著差异。在光饱和点(LSP)条件下,10个无性系净光合速率处于18.8~24.4μmol.m-2.s-1之间。环境因子与光合指标存在显著的相关关系,PAR和空气湿度(RH)对楸树无性系瞬时Pn影响最大。  相似文献   

19.
用CIRAS-2便携式光合测定系统测定了9月至10月10个秋菊[Dendranthema morifolium (Ramat.) Tvzel.]品种叶片的光合特征参数;在此基础上,对叶片光响应参数和CO2响应参数以及部分光合特征参数的日变化进行了比较分析;此外,还对净光合速率(Pn)与部分生理生态因子的相关性进行了分析.结果表明:10个秋菊品种的光补偿点(LCP)为92.83~167.37 μmol·m-2·s-1,光饱和点(LSP)为962.51~1 077.53 μmol·m-2·s-1,说明它们均为喜光植物;10个秋菊品种的CO2饱和点为1 060.46 ~1 485.48μmol·mol-1,CO2补偿点为77.62 ~ 133.16μmo1·mol-1,远大于一般的C3植物;各品种Pn的日变化呈典型的双峰型曲线,首峰(11~19μmol·m-2·s-1)出现在10:00左右,次峰出现在16:00左右,有明显的“午休”现象.相关分析结果表明:10个品种的Pn与气孔导度呈极显著正相关,与蒸腾速率呈显著或极显著正相关(品种‘关东新侠’、‘云龙凤舞’和‘日本黄’除外),与胞间CO2浓度呈显著或极显著负相关,与光合有效辐射强度和大气温度呈不显著正相关,与大气相对湿度和大气CO2浓度呈不显著负相关.早花品种‘太平的小鼓’和‘铜雀春深’具有较高的LSP以及较低的LCP和表观量子效率(AQY),对光照强度的适应范围较大,可栽培在光照较强的环境中;品种‘早粉盘’和‘檀香狮子’具有较高的LCP、AQY和LSP,对强光的利用能力较强;晚花品种‘关东新侠’、‘绿牡丹’和‘星光灿烂’具有较高的LCP和AQY以及较低的LSP,具有一定的耐阴能力,可种植在光照较弱的环境中.  相似文献   

20.
以大米草的互花米草为材料,研究了不同盐浓度对其细胞膜透性、丙二醛(MDA)含量和光响应曲线的特征参数的变化情况。结果表明:盐浓度低于300mmol·L-1时,互花米草细胞膜透性和MDA含量较对照组无显著差异;其较高的最大光合速率(>30μmol·m-2·s-1),表观量子效率(>0.05mol·mol-1Photons)以及较低的暗呼吸速率(<1.5μmolCO2·m-2·s-1)和光补偿点(<20μmol·m-2·s-1)为其有机物质积累、竞争、建立种群并扩散提供条件。盐浓度高于500mmol·L-1时,互花米草膜透性和MDA含量显著上升,最大光合速率(Amax)及表观量子效率(Q)显著下降,暗呼吸速率(Rday)和光补偿点(LCP)上升。表明细胞膜和光合作用有关酶受到迫害,抑制了其正常生长。盐胁迫下互花米草光合速率降低,但蒸腾速率的显著下降提高了单叶水分利用效率,从而部分缓解了渗透势变化对细胞的迫害,为其生存和生长提供条件。  相似文献   

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