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1.
不同叶位大豆叶片细胞壁弹性调节与抗旱性关系   总被引:3,自引:0,他引:3  
干旱条件下,不同叶位的大豆叶片的弹性调节表现出明显差异:初生叶和顶端幼叶(顶叶)不存在弹性调节,而第一、第三、第五复叶均存在弹性调节,弹性调节能力的大小依次为第五复叶>第三复叶>第一复叶;各叶位叶片的水势值(ψw)干旱时均下降,但降低值无明显差异;各叶片的相对含水量(RWC)干旱时的变化为:初生叶和顶叶的下降值较大,三种复叶的下降值较小,其顺序为:第一复叶>第三复叶>第五复叶。细胞壁弹性调节的存在增强了植物的抗旱性,弹性调节能力的大小与抗旱能力的大小成正比。  相似文献   

2.
王帆  何奇瑾  周广胜 《生态学报》2019,39(1):254-264
植物干物质的累积依赖于群体光合速率,而群体光合速率又与单叶的光合能力密切有关。叶片光合作用与其含水量密切相关,目前关于不同叶位叶片含水量对持续干旱的响应及其与光合作用的关系还未见报道。以华北夏玉米郑单958为材料,设置6个不同灌水处理,模拟不同灌溉量下持续干旱对夏玉米不同叶位叶片生理特性的影响,分析夏玉米顶部开始的第一、三、五叶位叶片的水分变化及其与净光合速率的关系。结果表明:夏玉米不同叶位的叶片最大含水量不同,且随干旱进程的推进叶片含水量的变化速率也不同,第一叶的叶片含水量下降速率高于第三、第五叶,第一叶的最大含水量高于第三、五叶,且可进行光合产物积累的叶片含水量下限随叶位的增加而增大。同时,第一叶的叶片含水量与土壤水分呈显著相关,且与净光合速率的相关性也非常强。第一叶可进行光合产物积累的叶片水分下限(净光合速率为零时的叶片含水量)最小,表明其耐旱性最强,对干旱具有指导意义。研究结果可为提高冠层光合作用模拟的准确性及夏玉米干旱发生发展的监测预警提供参考。  相似文献   

3.
植物干物质的累积依赖于群体光合速率,而群体光合速率又与单叶的光合能力密切有关。叶片光合作用与其含水量密切相关,目前关于不同叶位叶片含水量对持续干旱的响应及其与光合作用的关系还未见报道。以华北夏玉米郑单958为材料,设置6个不同灌水处理,模拟不同灌溉量下持续干旱对夏玉米不同叶位叶片生理特性的影响,分析夏玉米顶部开始的第一、三、五叶位叶片的水分变化及其与净光合速率的关系。结果表明:夏玉米不同叶位的叶片最大含水量不同,且随干旱进程的推进叶片含水量的变化速率也不同,第一叶的叶片含水量下降速率高于第三、第五叶,第一叶的最大含水量高于第三、五叶,且可进行光合产物积累的叶片含水量下限随叶位的增加而增大。同时,第一叶的叶片含水量与土壤水分呈显著相关,且与净光合速率的相关性也非常强。第一叶可进行光合产物积累的叶片水分下限(净光合速率为零时的叶片含水量)最小,表明其耐旱性最强,对干旱具有指导意义。研究结果可为提高冠层光合作用模拟的准确性及夏玉米干旱发生发展的监测预警提供参考。  相似文献   

4.
以金叶复叶槭(Acer negundo ‘Aurea’)的金黄叶、复绿叶为试验材料,以复叶槭的绿叶为对照(CK),测定并比较3种叶片类型的叶色参数、色素含量和解剖结构,探究金叶复叶槭叶片的呈色机理,为金叶植物叶色机理的研究及栽培提供理论依据。结果表明:金黄叶叶色参数L*、a*、b*值极显著高于复绿叶和CK(P<0.01),复绿过程中叶色参数均呈下降趋势。金黄叶叶绿素a、叶绿素b、总叶绿素、类胡萝卜素含量极显著低于复绿叶和CK,ω(类胡萝卜素)/ω(总叶绿素)为0.64,极显著高于复绿叶和CK(P<0.01),复绿过程中色素含量均呈上升趋势。3种类型叶片横切面各组织厚度、比值及排列存在差异,金黄叶叶片厚度124.51μm,显著低于CK(P<0.05),栅栏组织厚度31.26μm、栅/海为0.45,均极显著低于复绿叶和CK(P<0.01),栅栏组织和海绵组织排列混乱,而另外2种类型叶栅、海组织排列较为规则有序。金黄叶叶绿体长、宽分别为3.42μm、1.27μm,均极显著小于复绿叶和CK(P<0....  相似文献   

5.
测定了蚕豆(Vicia faba)植株的第三、四、五、六、七叶位各叶片中双磷酸核酮糖羧化酶-加氧酶(EC.4.1.1.39)和苹果酸脱氢酶(EC.1.1.1.37)的活性以及蛋白质与叶绿素含量。发现酶活性随叶位升高而增强,随叶龄延长而减弱。RuBPCase/RuBPOase比值随叶位升高而下降。蛋白质和叶绿素含量随叶位升高而增加。相关分析表明这两种酶的三种酶活性和蛋白质与叶绿素含量的变化与叶位升高均有显著正相关。回归分析表明,苹果酸脱氢酶活性随叶位升高而增强的速度最快。  相似文献   

6.
选取入侵植物三裂叶蟛蜞菊(Wedelia trilobata)及其本地近缘种蟛蜞菊(W. chinensis)为实验材料,比较干旱和复水后二者叶片的叶绿素荧光特性和抗氧化酶活性等生理指标的变化规律,探讨入侵种三裂叶蟛蜞菊对干旱的响应和生态适应性.结果发现,在自然干旱处理过程中,入侵种三裂叶蟛蜞菊与本地种蟛蜞菊相比土壤含水量下降较快,对它们叶片气孔形态的比较发现,干旱胁迫11d后三裂叶蟛蜞菊叶片气孔开度明显大于蟛蜞菊,这可能是导致其失水较快的原因之一.干旱胁迫11d后三裂叶蟛蜞菊的PSⅡ最大光能转化效率(Fv/Fm)降低了43.8%,而蟛蜞菊只降低了3.7%;同时,与蟛蜞菊相比,三裂叶蟛蜞菊的PSⅡ实际光化学量子产量(Yield)、表观光合电子传递速率(ETR)和光化学猝灭系数(qP)也表现出较大幅度的降低,说明三裂叶蟛蜞菊对干旱胁迫较敏感;但复水后,三裂叶蟛蜞菊能够较快地恢复到正常水平,且与本地种不存在显著差异.这主要是由于入侵种在遭受干旱胁迫时提高了对其过量激发能的热耗散能力以及超氧化物歧化酶(SOD)和抗坏血酸还原酶(APX)的活性,保护光合机构少受不可逆的损伤,使其在干旱胁迫解除后光合功能得以迅速恢复.研究结果初步表明三裂叶蟛蜞菊容易受到水分条件的限制,它向干旱地区扩散的可能性较小.  相似文献   

7.
研究了不同土壤水氮条件下小麦 (Triticumaestivum) 抽穗后叶片碳氮状况及其比例与叶片叶色 (SPAD值 ) 的关系。结果表明, 小麦中后期叶片氮含量和可溶性糖含量与顶部 3张叶片叶色 (SPAD值 ) 均呈显著的指数正相关, 其相关程度大小为L1>L2 >L3, 但与不同叶位叶色间的差值或比值相关并不显著 ;而叶片碳氮比与各叶位叶色相关不显著, 但与顶 1叶和顶 3叶的叶色差值呈极显著直线相关, 据此建立了基于叶色特征的叶片氮含量、可溶性糖含量和碳氮比监测模型, 检验结果显示, 顶 1叶叶色和顶 1叶与顶 3叶叶色的差值可用来有效地评估小麦叶片的碳、氮含量及碳氮比状况。  相似文献   

8.
谷子是C_4植物,但叶片中核酮糖1,5-二磷酸羧化酶(RuBPCase,E.C.4.1.1.39)和磷酸烯醇式丙酮酸羧化酶(PEP Case,E.C.4.1.1.31)的活性变化,CO_2补偿点的变化与叶位和叶龄有关。其初生叶和衰老叶并不表现典型的C_4特征,与成熟叶比较,RuBP Case活性和CO_2补偿点都相对较高,而且,也存在着结构上的差别。本实验结果表明所测植物在生长过程中存在着光合特性的变化。  相似文献   

9.
为挖掘辣木(Moranga oleifera)优良种质资源,对30个优良单株家系的叶片表型性状进行研究。结果表明,除叶形外,辣木不同家系间的叶柄和叶片颜色、复叶数、复叶柄长度和直径、复叶间距、叶长、叶宽均存在不同程度的差异。复叶数与复叶柄长度和直径、复叶间距、叶长、叶宽呈极显著正相关;主成分分析表明,叶长、叶宽、复叶柄长度和直径、复叶间距、叶柄和叶片颜色是区分辣木不同家系最主要的叶片性状指标。聚类分析结果表明,30个辣木家系可分为3大类,叶片表型性状存在显著差异的家系的遗传距离较远。因此,叶柄和叶片颜色、复叶数、复叶柄长度和直径、复叶间距、叶长、叶宽将为直观区分辣木家系提供参考。  相似文献   

10.
棒叶落地生根对干旱与复水的生理响应   总被引:2,自引:0,他引:2  
为探讨棒叶落地生根(Kalanchoe tubiflora)耐旱的机制,在干旱与复水条件下,对其叶片的一些生理生化指标进行了测定。结果表明,随干旱时间延长,棒叶落地生根叶片中O2-·生成速率增大,H2O2含量升高,导致脂质过氧化产物MDA含量增高;同时SOD活性升高,CAT活性降低;可溶性糖与脯氨酸含量增加,但复水后这些指标均恢复到干旱前的水平。这说明棒叶落地生根能够耐受干旱环境是通过积累渗透调节物质,提高活性氧的清除能力,从而减少氧化胁迫造成的伤害。  相似文献   

11.
The investigations were designed to test osmotic adjustment,cell wall bulk elastic modulus and stomatal behaviour duringand after water stress and rewatering in the primary and firsttrifoliolate leaf of Phaseolus vulgaris. Leaf water relationsquantities fully recovered after rewatering within a few hours;diffusion resistance to vapour flow, however, required 6 h.Leaf growth recovery was considerably delayed. Osmotic adjustmentwas absent during water stress in both the primary and the firsttrifoliolate leaf. The bulk elastic modulus (v), however, waslower for the primary leaf (higher elasticity) than for thetrifoliolate leaves. These two types of leaves differed in theirdrought resistance in that the primary leaf exhibited wiltingat the end of the stress period (7 d) while the trifoliolateleaf remained relatively turgid. The bulk elastic modulus ofthe cell wall changed almost proportionally with the turgorpressure (p). The structure coefficient (), an indicator forthe intensity of change of the bulk elastic modulus with turgorwas higher for the primary than for the first trifoliolate leaf.The leaf diffusion resistance (r), below the turgor loss point,changed proportionally with the solute potential with very similarregression lines for the relation of (r) versus RWC 1. The datasuggest that greater drought resistance of the first trifoliolateleaf is related to a decreased bulk elastic modulus, but notto osmotic adjustment nor to differences in stomatal resistanceduring water stress. Key words: Phaseolus vulguris, Water stress, Recovery, Cell wall elasticity  相似文献   

12.
辣椒开花结果期对干旱胁迫的形态与生理响应   总被引:4,自引:0,他引:4  
谢小玉  马仲炼  白鹏  刘晓健 《生态学报》2014,34(13):3797-3805
在遮雨网室选用抗旱性较强的农城椒二号和抗旱性较弱的陕蔬2001,研究辣椒在轻度、中度和重度干旱胁迫下不同时间的生长、产量、渗透调节物质、保护酶活性的变化规律及其生理调节机制。结果表明:随干旱胁迫时间的延长,辣椒的株高、分枝数、叶面积、单位面积产量、叶绿素含量和叶片相对含水量的抗旱系数呈下降趋势,下降速率与干旱胁迫程度呈正相关,与品种的抗旱性呈负相关;脯氨酸、丙二醛含量和细胞膜透性相对值随干旱胁迫时间的延长呈上升趋势;POD、SOD、CAT活性和可溶性蛋白相对值随着干旱胁迫时间的延长先升高后下降,抗旱性强的材料增加幅度低于抗旱性弱的材料;可溶性糖含量的相对值在轻度和中度干旱胁迫下呈上升趋势,在重度干旱胁迫下呈上升—下降趋势,且抗旱性强的材料上升速度大于抗旱性弱的材料。相关分析表明,干旱胁迫下,产量与株高、分枝数、叶片叶绿素含量、叶面积、叶片相对含水量抗旱系数呈显著正相关;与细胞膜透性、CAT活性和可溶性蛋白含量抗旱系数呈显著负相关。主成分分析表明,用作辣椒抗旱性鉴定的主要指标是单株产量、株高、叶面积、分枝数、可溶性蛋白、可溶性糖、MDA、叶绿素含量和细胞膜透性及叶片相对含水量,叶片POD、SOD、CAT活性、脯氨酸含量可做为辣椒抗旱性鉴定的次要鉴选指标。  相似文献   

13.
Turgor Regulation via Cell Wall Adjustment in White Spruce   总被引:6,自引:0,他引:6       下载免费PDF全文
Turgor regulation at reduced water contents was closely associated with changes in the elastic quality of the cell walls of individual needles and shoots of naturally drought-resistant seedlings of white spruce (Picea glauca [Moench] Voss.) and of seedlings of intermediate resistance that had been pretreated with paclobutrazol, a stress-protecting, synthetic plant-growth regulator. Paclobutrazol-treated seedlings showed marked increases in drought resistance, and pressure-volume analysis combined with Chardakov measurements confirmed observations that water stress was ameliorated during prolonged drought. Turgor was maintained in the paclobutrazol-treated and in the naturally resistant drought-stressed seedlings despite water contents near or below the turgor-loss volumes of well-watered controls. The maintenance of turgor in these seedlings was in large part a function of the dynamic process of cell wall adjustment, as reflected by marked reductions in both the saturated and turgor-loss volumes and by large increases in the elastic coefficients of the tissues. Shear and Young's moduli, calculated from pressure-volume curves and the radii and wall thicknesses of mesophyll cells, also confirmed observed changes in the elastic qualities of the cell walls. Elastic coefficients of well-watered, paclobutrazol-treated seedlings were consistently larger than those in well-watered controls and several times larger than the values in untreated plants, which succumbed rapidly to drought. In contrast, untreated seedlings that withstood prolonged drought without wilting displayed elastic coefficients similar to those in seedlings that had been treated with paclobutrazol but that had not been exposed to drought.  相似文献   

14.
Red-osier dogwood ( Cornus stolonifera Michx, Syn. Cornus sericea ), a species relatively well adapted to moderately saline conditions compared with other boreal species, was used to test the effects of NaCl on plant water relations, cell wall elasticity, and cell wall composition of seedlings. Three month-old seedlings were treated hydroponically with 0, 25, and 50 m m NaCl for 21 days. The osmotic potential at full turgor, osmotic potential at turgor loss, pressure potential at full turgor, and relative water content at turgor loss of red-osier dogwood shoot tissue were not significantly affected by the NaCl treatments. Cell wall elasticity of the shoot tissues did not change following NaCl treatments, suggesting that elastic adjustment did not play a role in the adaptation mechanism. Hemicellulose content of the cell wall increased in salt treated seedlings. The primary sugar found in the cell wall hemicellulose fraction was xylose. In the pectin fraction arabinose and galacturonic acid were the main sugars. Sodium chloride stress did not alter the sugar composition of the hemicellulose fraction; however, NaCl did increase the amount of rhamnose in the pectin fraction. The results of this study suggest that at moderate salinity red-osier dogwood does not make any osmotic or elastic adjustments in the shoot tissue, but some changes in the cell wall composition do occur. These changes could contribute to the decrease in growth recorded in red-osier dogwood during NaCl stress.  相似文献   

15.
Levitt J 《Plant physiology》1986,82(1):147-153
Cabbage leaves excised from a fully turgid plant wilt within 20 minutes to 2 hours (depending on plant age) with a loss of about 10% relative water content (RWC). If droughted for 2 to 4 days in a high relative humidity leaf chamber, they may acclimate, recovering their turgor without the absorption of water, in fact at a loss of 15 to 25% RWC. This turgor recovery in the absence of water uptake occurs only if (a) the rate of water loss is slow enough (about 1-5% RWC per day after the first 24 hours drought loss of about 15% RWC), (b) if the leaves are no longer growing actively. Osmotic adjustment accompanies the turgor adjustment, but cannot be the cause in the absence of water uptake. The recovery of turgor by wilted cabbage leaves in the absence of water uptake cannot be explained by (a) transfer of reserve water from apoplast to symplast either from the cell walls or from the vessel lumens by cavitation or (b) metabolic loss of dry matter and gain of water. It can be explained by a contraction of the cell walls around the partially dehydrated protoplasts, until they regain their elastic extensibility. These proposed cell wall changes during drought acclimation are therefore the opposite of those occurring during growth. This hypothesis therefore explains the long recognized inverse relation between growth and acclimation. Two predictions of this hypothesis were tested and substantiated.  相似文献   

16.
Coffea canephora plants (clone INCAPER-99) were submitted to low N (LN) or high N (HN) applications and two watering regimes (daily irrigation and irrigation every 5 days for a month). Although water potential was not altered significantly by N, HN plants showed higher relative water content than did LN plants under water deficit. Only HN plants exhibited some ability for osmotic adjustment. Plants from both N treatments increased their cell wall rigidity under drought, with a more pronounced augmentation in HN plants. In well-watered plants, carbon assimilation rate increased with increasing N while stomatal conductance did not respond to N supply. Under drought conditions, carbon assimilation decreased by 68-80% compared to well-watered plants, whereas stomatal conductance and transpiration rate declined by 35% irrespective of the N applications. Stable carbon isotope analysis, combined with leaf gas exchange measurements, indicated that regardless of the watering treatments, N increased the long-term water use efficiency through changes in carbon assimilation with little or no effect on stomatal behaviour.  相似文献   

17.
Nickel and Zn hyperaccumulation by Alyssum murale and Thlaspi caerulescens bear substantial energetic costs and should confer benefits to the plant. This research determined whether metal hyperaccumulation can increase osmotic adjustment and resistance to water stress (drought). Alyssum murale and Thlaspi caerulescens treated with low or high concentrations of Ni or Zn were exposed to moderate (?0·4 MPa) and severe (?1·0 MPa) water stresses using aqueous polyethylene glycol. In the absence of metals both water deficits inhibited shoot growth. Nickel and Zn hyperaccumulation did not ameliorate growth inhibition by either level of water stress. The water stress did not induce major changes in shoot metal concentrations of these constitutive hyperaccumulators. Moreover, metal hyperaccumulation had minimal effects on the osmolality of leaf‐sap extracts, relative water content of the shoots, or rate of evapotranspiration. It is concluded that Ni or Zn hyperaccumulation does not augment whole‐plant capacity for drought resistance in A. murale and T. caerulescens.  相似文献   

18.
干旱胁迫与复水对块根紫金牛生理特性的影响   总被引:1,自引:0,他引:1  
以岩溶特有药用植物块根紫金牛为试材,研究土壤水分胁迫及复水条件下其叶片光合参数、相对含水量、质膜透性、渗透调节物质含量的变化特性。结果表明:水分胁迫下,块根紫金牛的叶片净光合速率、气孔导度和蒸腾速率均几乎接近零点,但胞间CO2浓度上升,即非气孔因素限制是光合速率下降的主要原因。水分胁迫不影响块根紫金牛单位面积的总叶绿素和类胡萝卜素含量,但干旱处理的Chl a/b和Car/Chl分别显著低于和高于对照。水分胁迫下,块根紫金牛的叶片相对含水量、相对电导率和丙二醛含量显著增大,即膜系统受到一定的伤害;块根紫金牛叶片脯氨酸含量显著降低,可溶性蛋白含量无显著变化,可溶性糖含量显著增大,但增大幅度不大,说明其在干旱胁迫下的渗透调节能力较弱。复水处理后,块根紫金牛全部指标均能恢复到对照水平,说明其对干旱胁迫较为敏感,主要采取避旱策略。  相似文献   

19.
在盆栽条件下,研究了开花期和灌浆期干旱胁迫(土壤含水量为田间最大持水量的45%~50%)对持绿性高粱(B35)和非持绿性高粱(三尺三)叶片水分、渗透调节物质以及叶绿体超微结构的影响.结果表明: 干旱胁迫下,两高粱品系叶片自由水含量下降,束缚水含量增加,相对含水量降低,水分饱和亏缺增加,相对电导率增大,但三尺三各指标的变化幅度均大于B35.对于渗透调节物质,干旱胁迫下,三尺三可溶性糖含量的增幅大于B35,脯氨酸含量的增幅小于B35,可溶性蛋白含量的降幅大于B35.干旱胁迫下,B35与三尺三的叶绿体超微结构均受到一定程度的破坏,但B35叶绿体结构保持相对完好,受损程度明显小于三尺三.在干旱胁迫下,持绿性高粱通过较强的渗透调节表现出更好的干旱适应能力.
  相似文献   

20.
Jackson  G.E.  Irvine  J.  Grace  J. 《Plant Ecology》1999,140(1):3-14
The acoustic emission rate (as a result of xylem cavitation), stem water content, stomatal conductance, and leaf water potential of heather (Calluna vulgaris L. Hull) were compared over a period of 18 months at two contrasting sites in Britain. The sites were Thursely Common in south-east England, and Flanders Moss in central Scotland (average rainfall of 600 mm per year and 1500 mm per year, respectively). In the first year of study (1992) the natural difference between the sites was amplified by a severe drought affecting south-east England. The relative water content of the xylem (RWC) did not differ between the sites, and did not fluctuate seasonally, despite the drought at Thursely. Acoustic emissions were detected at both sites, but the incidence was low. The same range of foliage water potential and stomatal conductance was found at both sites. The leaf area to sapwood area ratio at the dry site was half that at the wet site, and it is suggested that this adjustment of the transpiring area relative to the water conducting area facilitates the close physiological state of the plants at the two sites. The possible occurrence of aerial refilling and freezing induced xylem cavitation is also discussed.  相似文献   

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