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1.
不同土壤水分条件下珍珠油杏的光合光响应特征   总被引:1,自引:0,他引:1  
用CIRAS-2便携式光合仪测定了不同土壤水分条件下(土壤相对含水量为84.7%~22.8%)2年生珍珠油杏叶片净光合速率、蒸腾速率、水分利用效率、胞间CO2浓度等光合生理参数的光响应过程,探讨其光合生理特性对土壤水分和光照强度的响应规律。结果表明:(1)随着土壤水分含量的降低,珍珠油杏叶片净光合速率、蒸腾速率、暗呼吸速率、光饱和点均呈降低趋势,表观量子效率先升高后降低,光补偿点先降低后升高。(2)利于珍珠油杏进行高光合作用并维持高水分利用效率的土壤相对含水量为43.6%~84.7%,适宜的光照强度为800~2 000μmol.m-2.s-1,即珍珠油杏对土壤水分和光照强度适应范围较广。(3)在土壤相对含水量43.6%~73.5%范围内,气孔限制是导致珍珠油杏光合速率下降的主要原因,在低于43.6%范围内,非气孔限制是导致光合速率下降的主要原因。研究认为,珍珠油杏是一种抗旱性比较强的植物,适合在华北干旱瘠薄山地引种栽培。  相似文献   

2.
不同光照强度下三角叶滨藜光合作用对盐激胁迫的响应   总被引:1,自引:1,他引:1  
以溶液培养的三角叶滨藜植株为材料研究了不同光照条件下其叶片光合作用对盐(NaCl)激胁迫的即刻反应及变化规律.结果表明,三角叶滨藜光合作用对盐激胁迫的响应有8 min左右的滞后期.在光照强度为100umol·m-2·-1和100 mmol·L-1浓度NaCl共同作用下,三角叶滨藜叶片净光合速率略有上升;但随NaCl浓度和光照强度进一步增加,其净光合速率呈下降趋势,且光照越强,盐胁迫导致的净光合速率下降幅度越大.同时,弱光下或强光低浓度NaCl胁迫下,盐激胁迫导致的净光合速率下降主要是气孔限制引起的;而强光下,高浓度的NaCl胁迫导致的净光合速率下降在盐激胁迫处理的前30-40 min主要由气孔限制引起.40 min后则主要由非气孔限制引起.可见,不同光照强度和NaCl浓度胁迫下三角叶滨藜叶片光合作用响应规律不同,引起净光合速率下降机制各异.  相似文献   

3.
The photosynthetic performance of macroalgae isolated in Antarctica was studied in the laboratory. Species investigated were the brown algae Himantothallus grandifolius, Desmarestia anceps, Ascoseira mirabilis, the red algae Palmaria decipiens, Iridaea cordata, Gigartina skottsbergii, and the green algae Enteromorpha bulbosa, Acrosiphonia arcta, Ulothrix subflaccida and U. implexa. Unialgal cultures of the brown and red algae were maintained at 0°C, the green algae were cultivated at 10°C. IK values were between 18 and 53 μmol m?2 s?1 characteristic or low light adapted algae. Only the two Ulothrix species showed higher IK values between 70 and 74 μmol m?2 s?1. Photosynthesis compensated dark respiration at very low photon fluence rates between 1.6 and 10.6 μmol m?2 s?1. Values of α were high: between 0.4 and 1.1 μmol O2 g?1 FW h?1 (μmol m?2 s?1)?1 in the brown and red algae and between 2.1 and 4.9 μmol O2 g?1 FW h?1 (μmol m?2 s?1)?1 in the green algal species. At 0°C Pmax values of the brown and red algae ranged from 6.8 to 19.1 μmol O2 g?1 FW h?1 and were similarly high or higher than those of comparable Arctic-cold temperate species. Optimum temperatures for photosynthesis were 5 to 10°C in A. mirabilis, 10°C in H. grandifolius, 15°C in G. skottsbergii and 20°C or higher in D. anceps and I. cordata. P: R ratios strongly decreased in most brown and red algae with increasing temperatures due to different Q10 values for photosynthesis (1.4 to 2.5) and dark respiration (2.5 to 4.1). These features indicate considerable physiological adaptation to the prevailing low light conditions and temperatures of Antarctic waters. In this respect the lower depth distribution limits and the northern distribution boundaries of these species partly depend on the physiological properties described here.  相似文献   

4.
Maize seedlings were flooded for periods from 1 to 15 days, and the leaves of different ages were then taken to examine photosynthesis, dark respiration, transpiration, chlorophyll content, and some morphometric parameters. The responses of leaves to root submergence essentially depended on the leaf layer and the treatment duration. A short-term flooding (1–24 h) induced primary stress responses in the first leaf. Photosynthesis and respiration in this leaf oscillated around the control levels with amplitudes of ±15–25% and ±40–60%, respectively. After a longer flooding, the CO2 exchange in the second leaf was suppressed, while oxygen uptake was stimulated. In the third leaf, which was formed during submergence, the photosynthetic rate increased and the respiratory activity decreased. The transpiration rate did not change in these leaves for 15 days of flooding. The hypoxic treatment, at its early stages, retarded growth and disturbed the source–sink relations. At later stages the plants adapted to hypoxic environment: the seedling growth was restored, which elevated the demand for assimilates and stimulated photosynthesis. It is concluded that plants overcome negative impact of the root hypoxia at the systemic level.  相似文献   

5.
Yu  Hua  Ong  Bee-Lian 《Photosynthetica》2003,41(3):349-355
Radiation quality was an important environmental cue to stimulate seed germination in Acacia mangium. The photo-synthetic CO2 assimilation rate, dark respiration rate, total biomass, and relative growth rate of seedlings grown under monochromatic radiation were significantly lower than those of seedlings grown under full spectrum radiation. Blue and red radiation induced shade-avoidance and shade-tolerant responses of A. mangium seedlings, respectively.  相似文献   

6.
低温胁迫对广玉兰幼苗光合及叶绿素荧光特性的影响   总被引:19,自引:2,他引:19  
以广玉兰幼苗为材料,对其进行0,-4℃、-8℃,-12℃和-16℃ 5个梯度低温处理,研究了广玉兰幼苗的光合作用与叶绿素荧光特性变化.结果表明:随着温度降低,广玉兰幼苗叶片的净光合速率(Pn)、蒸腾速率(Tr)、气孔导度(G3)、叶肉细胞间隙CO2浓度(Ci)、叶绿素含量均逐步降低,最大光化学效率(Fv/Fm)、潜在光化学效率(Fv/F0)、最大量子产额(Yield)、光合电子传递速率(ETR)、光化学猝灭系数(qp)也均同时下降,而初始荧光(F0)、非光化学猝灭系数(qN)则逐步上升.可见,低温胁迫除导致光合作用的气孔抑制外,还直接损伤光合机构使PSⅡ反应中心失活,引起其光能原初捕捉能力和光能同化率减弱,增加了通过热辐射消耗的光能比例,最终导致广玉兰幼苗光合作用能力减弱.  相似文献   

7.
Huang  Bingru  Fu  Jinmin 《Plant and Soil》2000,227(1-2):17-26
The study was conducted to investigate carbon metabolic responses to surface soil drying for cool-season grasses. Kentucky bluegrass (Poa pratensis L.) and tall fescue (Festuca arundinaceae Schreb.) were grown in a greenhouse in split tubes consisting of two sections. Plants were subjected to three soil moisture regimes: (1) well-watered control; (2) drying of upper 20-cm soil (upper drying); and (3) drying of whole 40-cm soil profile (full drying). Upper drying for 30 d had no dramatic effects on leaf water potential (Ψleaf) and canopy photosynthetic rate (Pn) in either grass species compared to the well-watered control, but it reduced canopy respiration rate (Rcanopy) and root respiration rate in the top 20 cm of soil (Rtop). For both species in the lower 20 cm of wet soil, root respiration rates (Rbottom) were similar to the control levels, and carbon allocation to roots increased with the upper soil drying, particularly for tall fescue. The proportion of roots decreased in the 0-20 cm drying soil, but increased in the lower 20 cm wet soil for both grass species; the increase was greater for tall fescue. The Ψleaf, Pn, Rcanopy, Rtop, Rbottom, and carbon allocation to roots in both soil layers were all significantly higher for upper dried plants than for fully dried plants of both grass species. The reductions in Rcanopy and Rtop in surface drying soil and increases in root respiration and carbon allocation to roots in lower wet soil could help these grasses cope with surface-soil drought stress. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

8.
不同光强下红松幼树光合作用和营养物质含量的季节模式   总被引:4,自引:1,他引:4  
一、前言原始红松林下幼树生长缓慢,死亡率高,若干文献通过与桦木林光照和水热条件的对比观察,认为光是影响生长的主要原因。但同时也发现,在植物一切代谢活动最旺盛的生长季(6—9月),上述二种林下的光强(lx)  相似文献   

9.
温度的升高增加了银白杨叶片异戊二烯的释放水平;随着温度的升高,线粒体呼吸速率则有所下降。用线粒体呼吸途径的抑制剂处理叶片能够增加叶片异戊二烯的释放水平;然而,同样的处理对光系统II叶绿素荧光参数并没有显著性的影响,并降低了叶片的光合速率。基于以上结果,本文认为在温度上升时,异戊二烯的释放可能并不依赖于光合作用,而线粒体呼吸的上游底物流向异戊二烯的合成路径可能促进了温度上升时异戊二烯释放的增加。  相似文献   

10.
褪黑素对玉米幼苗根系发育和抗旱性的影响   总被引:2,自引:0,他引:2  
褪黑素是一种在生物体内广泛存在的吲哚胺类化合物,参与植物的多种生理和生化过程.近年来研究认为褪黑素可以不同程度地增强植物的抗逆性,但对其作用机理仍知之甚少.通过两种褪黑素的施用方法,详细研究了褪黑素对于玉米根系发育和抗旱性的影响.首先,采用水培根灌褪黑素的方法对玉米幼苗的根系和生长状况进行分析,结果表明施加褪黑素显著提...  相似文献   

11.
不同施肥水平对桢楠多胚苗生长及光合生理的影响   总被引:1,自引:0,他引:1  
采用营养袋培育的方法,以苗龄45d(根茎初步木质化)的桢楠幼苗为试验材料,选取单胚苗(D)、双胚大苗(SD)和双胚小苗(SX)3种类型桢楠幼苗栽植于袋中,根据年施复合肥量标准设置对照(CK,每袋0g)、中(M,每袋0.2g)和高(H,每袋0.3g)3个施肥水平,于7月初开始施肥,每20d施1次共分4次(每次25%)施入,分别于8月、10月中旬测定幼苗生长指标和光合生理指标,探讨施肥对桢楠多胚苗生长和光合生理的影响。结果显示:(1)中量施肥(M)对3类幼苗的苗高和地径生长量有明显的促进作用,而高量施肥(H)在整个试验过程中对幼苗生长的影响表现为先促进后抑制的趋势。(2)中量施肥(M)可以促进3类幼苗叶片的叶绿素合成,延长叶片功能周期,增大净光合速率和气孔导度,进而提高幼苗在强光照、高CO_2环境下的光合作用能力。(3)中量施肥可以使幼苗的光补偿点(LCP)、CO_2补偿点(CCP)下降,光饱和点(LSP)、CO_2饱和点(CSP)上升,增强幼苗适应环境的能力,积累更多的有机物;高量施肥对幼苗的光合指标也表现为先促进后抑制的作用。研究表明,适量(每袋0.2g)施肥能促进各类桢楠幼苗光合色素合成、光合作用效率以及对环境的适应能力,从而促进幼苗的生长;适量施肥也使双胚大苗较快缩小与单胚苗生长指标间的差距,同时也对双胚小苗生长表现出一定的促进作用,这对于促进珍贵树种桢楠的种质资源保护、提高苗木出圃率和降低育苗成本有重要意义。  相似文献   

12.
土壤紧实胁迫对黄瓜根系活力和叶片光合作用的影响   总被引:17,自引:0,他引:17  
研究了黄瓜(Cucumis sativus L)根系活力和叶片光合作用对土壤紧实胁迫的响应.结果表明:当土壤紧实度增大时,黄瓜根系重量减小,活力下降.同时,叶片的相对电导率(REC)及丙二醛(MDA)含量升高;可溶性蛋白质含量降低;超氧化物歧化酶(SOD)、过氧化物酶(POD)及过氧化氢酶(CAT)活性增强;净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(E)及比叶重(SLW)减小,胞间CO2浓度(Ci)增大.  相似文献   

13.
While investigations into shoot responses to elevated atmospheric CO2 are extensive, few studies have focused on how an elevated atmospheric CO2 environment might impact root functions such as water uptake and transport. Knowledge of functional root responses may be particularly important in ecosystems where water is limiting if predictions about global climate change are true. In this study we investigated the effect of elevated CO2 on the root hydraulic conductivity (Lp) of a C3 perennial, Larrea tridentata, and a C3 annual, Helianthus annuus. The plants were grown in a glasshouse under ambient (360 μmol mol–1) and elevated (700 μmol mol–1) CO2. The Lp through intact root systems was measured using a hydrostatic pressure-induced flow system. Leaf gas exchange was also determined for both species and leaf water potential (ψleaf) was determined in L. tridentata. The Lp of L. tridentata roots was unchanged by an elevated CO2 growth environment. Stomatal conductance (gs) and transpiration (E) decreased and photosynthetic rate (Anet) and Ψleaf increased in L. tridentata. There were no changes in biomass, leaf area, stem diameter or root : shoot (R : S) ratio for L. tridentata. In H. annuus, elevated CO2 induced a nearly two-fold decrease in root Lp. There was no effect of growth under elevated CO2 on Anet, gs, E, above- and below-ground dry mass, R : S ratio, leaf area, root length or stem diameter in this species. The results demonstrate that rising atmospheric CO2 can impact water uptake and transport in roots in a species-specific manner. Possible mechanisms for the observed decrease in root Lp in H. annuus under elevated CO2 are currently under investigation and may relate to either axial or radial components of root Lp.  相似文献   

14.
王珂  刁健  杨瑞  胡彦波  孙广玉 《植物研究》2015,35(6):843-847
以哈尔滨市绿化植物紫丁香(Syringa oblata Lindl.)为研究对象,借助便携式光合测定系统和电子显微镜,研究了叶面喷施硝酸盐(50 mmol·L-1 NaNO3溶液)对叶片气孔动态(气孔分布、气孔开度)和光合生理过程(光合—呼吸的光诱导、光化学效率、叶绿素含量以及细胞间隙二氧化碳浓度、气孔导度)的影响。结果表明:叶片上、下表皮均有气孔、腺毛分布,喷施处理第5 d时,叶片的气孔开度和导度、光合速率、叶绿素含量等未受到显著影响,但14 d时,气孔关闭、导度下降,光合—呼吸的光诱导过程受到显著影响。  相似文献   

15.
为了解桢楠(Phoebe zhennan)不同种源细根形态和生物量分配的差异,采用全根调查的方法,对桢楠自然分布区13个种源2.5年生幼苗的细根形态和生物量进行了研究。结果表明,桢楠种源间各级细根的平均直径、总根长和表面积差异显著,在种源内细根的平均直径随根序的增加而增加,但根序间总根长和表面积差异规律不明显。根序生物量分配随根序增加而增加,1~4级根生物量分配分别为6.33%、14.47%、25.03%和54.17%。通过综合评价,以HT、LF、ES和WC种源的根系最优,具有较高的生长潜力。  相似文献   

16.
邢红爽  乌佳美  陈健  史作民 《生态学报》2023,43(12):5186-5199
随着全球气候变化的加剧,陆地生态系统中植物光合作用限制影响程度的增加已成为降低全球植被净初级生产力的主要因素。系统了解植物光合作用限制因素是科学评估植被生产力的重要前提,也是缓解植物光合作用限制,增加植物光合碳同化能力的先决条件。对植物光合作用限制因素进行了系统解析,分析了光合作用三种限制因素生化限制(Biochemical limitation,lb)、气孔限制(Stomatal limitation,ls)、叶肉限制(Mesophyll limitation,lm)的环境响应,重点讨论了叶肉限制及其影响机理,述评了光合作用限制定量分析方法及改善措施,最后以提高植被生产力为驱使目标,对未来植物光合作用限制因素研究提出以下内容:(1)基因工程技术与系统生物学数据相结合提高植被生产力;(2)气孔响应速度对植物光合作用的影响机制;(3)水通道蛋白(Aquaporin, AQPs)和碳酸酐酶(Carbonic anhydrase, CAs)感知环境信号变化的驱动基因。以期为未来气候变化背景下,深入认识和降低植物光合作用限制,提...  相似文献   

17.
淹水胁迫对不结球白菜根系生长与呼吸酶活性的影响   总被引:2,自引:0,他引:2  
采用双套盆法,以不结球白菜‘新矮青’和‘新夏青2号’品种为材料,研究了不同时间(1、3、5、恢复7d后)和不同程度淹水处理(根淹、半淹)后不结球白菜根系生长及呼吸代谢的变化规律。结果显示:(1)与对照相比,淹水胁迫下,不结球白菜幼苗根系鲜重、根系长度、根系活力显著下降,且半淹处理的下降幅度大于根淹处理。(2)淹水胁迫下,乳酸脱氢酶(LDH)、乙醇脱氢酶(ADH)活性较对照显著升高,而苹果脱氢酶(MDH)、琥珀酸脱氢酶(SDH)活性显著降低,且半淹处理的降幅大于根淹,淹水5d后与淹水1d后有显著性差异。(3)淹水胁迫下,‘新矮青’乳酸发酵途径弱于‘新夏青2号’,乙醇发酵则相反,导致后者根系中乳酸积累多于前者,细胞质酸化较严重,降低了对淹水胁迫的耐性。研究表明,不结球白菜幼苗期受到淹水胁迫时,其有氧呼吸明显受阻,无氧呼吸代谢被促进,而且随着淹水时间的延长及淹水深度的加深,根系呼吸代谢受到的抑制程度越严重,最终导致根系生长受到抑制。  相似文献   

18.
Lateral root development in cultured seedlings of Pisum sativum (cv. Alaska) was modified by the application of auxin transport inhibitors or antagonists. When applied either to replace the root tip or beneath the cotyledonary node, two auxin transport inhibitors, 2,3,5-triiodobenzoic acid (TIBA) and 3,3a-dihydro-2-(p-methoxyphenyl)-8H-pyrazolo[5,1-α]isoindol-8-one (DPX-1840), increased cell division activity opposite the protoxylem poles. This resulted in the formation of masses of cells, which we are calling root primordial masses (RPMs), 2 to 3 days after treatment. RPMs differed from lateral root primordia in that they lacked apical organization. Some roots however developed both RPMs and lateral roots indicating that both structures were similar in terms of the timing and location of cell division in the pericycle and endodermis leading to their initiation. Removal of the auxin transport inhibitors allowed many of the RPMs to organize later into lateral root primordia and to emerge in clusters. When the auxin, indoleacetic acid (IAA) was added to the growth medium along with DPX-1840, 3 ranks of RPMs now in the form of fasciated lateral roots emerged from the primary root. The auxin antagonist, p-chlorophenoxy-isobutyric acid (PCIB), also induced RPM formation. In contrast to DPX-1840 treatment, the addition of IAA during PCIB treatment caused normal lateral root development.  相似文献   

19.
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   

20.
为揭示氯盐胁迫下氮素对西瓜根系的调节机制和提供西瓜氯毒害调控理论依据,以西瓜为供试作物,采用土培试验,研究不同施氮量(0,0.1,0.15,0.2,0.25 g/kg)对氯盐胁迫下西瓜根系的影响,并应用主成分分析法对各施氮量下根系生长情况进行综合评价。结果表明,(1)与不施氮相比,施氮0.15 g/kg处理可使西瓜根系生物量、干物质累积量、脯氨酸含量、可溶性糖含量、根系活力分别显著提高58.83%、20.83%、98.33%、70.37%和29.44%,丙二醛含量显著降低40.30%,同时使总根长、总根表面积、根尖数、分枝数分别显著增加103.42%、46.41%、64.44%、87.80%,总根体积和总根系直径分别减少23.05%和40.15%。(2)在本试验氯盐胁迫条件下,施氮0.14~0.17 g/kg时西瓜具有较理想的根系构型和较高的根系活力。(3)根系分枝数、根系活力、总根体积、根尖数可作为氯盐胁迫下氮素对西瓜根系生长影响的综合评价指标,各施氮水平对氯盐胁迫的缓解效果表现为0.15 g/kg>0.20 g/kg>0.10 g/kg>0.25 g/kg。可见,在氯盐胁迫下,适量施氮有助于西瓜建立良好的根系构型,提高根系渗透物质含量,降低细胞渗透势,减少根系丙二醛含量,维持较强的根系活力,增加根系生物量和干物质,缓解高浓度氯盐对西瓜生长的抑制作用。  相似文献   

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