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1.
美国海滨桤木和薄叶桤木水分生理特性的比较   总被引:1,自引:0,他引:1       下载免费PDF全文
采取盆栽、人工控水的方式, 研究并比较了美国本土海滨桤木(Alnus maritima)和薄叶桤木(A. incana)的气孔导度(Gs)、叶片水势(ψleaf)以及渗透调节能力对土壤水分条件的响应, 以探讨引起两种桤木生态分布差异巨大的生理生态原因。结果表明: 1)正常水分条件下, 海滨桤木的Gs低于薄叶桤木, 其与大气温度、相对湿度和水蒸气亏缺等气象因子的相关性低于薄叶桤木; 干旱胁迫下, 海滨桤木的Gs对其自身ψleaf下降信号的敏感度低于薄叶桤木; 复水后, 其Gs恢复更为缓慢。2)正常水分条件下, 海滨桤木的ψleaf高于薄叶桤木, 且引起气孔关闭的ψleaf临界值较高; 干旱胁迫下, 海滨桤木的ψleaf下降幅度高于薄叶桤木。3)正常水分条件下, 海滨桤木和薄叶桤木的渗透调节能力无显著差异; 干旱胁迫下, 尽管两种桤木均表现出饱和状态渗透势(ψssat)下降、膨压与水势关系的最大变化率降低、初始失膨点渗透势(ψstlp)增加、细胞渗透调节能力范围(ψssat-ψstlp, Dψs)减小的趋势, 但与薄叶桤木相比, 海滨桤木的ψstlp较高, Dψs较小。从以上生理生态指标可以看出, 较高的叶片水势、较低的气孔调节能力、干旱下较低的渗透调节能力是造成海滨桤木分布范围狭小的重要原因。  相似文献   

2.
引种台湾桤木的水分生理特性   总被引:5,自引:0,他引:5  
台湾桤木(Alnusformosana)原产台湾,是台湾地区重要的先锋造林树种和林地培肥树种。水分是限制植物地理分布和决定植物引种能否成功的重要因子之一。采用Li-6400光合测定系统对引种两年生台湾桤木苗木的水分生理特性进行了研究,结果表明:(1)在整个生长期,叶片蒸腾速率日变化均表现为宽大的单峰型曲线,以13∶00~15∶00时左右蒸腾速率最高,不同部位叶片在不同生长期的峰值有所不同,属非蒸腾午休型植物。气孔导度日变化有单峰型和双峰型2种变化曲线;(2)蒸腾速率季节变化表现为单峰曲线,以7月为最高,整个生长期叶片日均蒸腾速率为3.25mmol·m-2·s-1,表现出高光合、强蒸腾的生理特点;(3)水分利用效率日变化与光合速率日变化相似,有单峰曲线和双峰曲线2种类型,与气孔导度的日变化有显著相关性。在整个生长期,以6月、7月叶片水分利用效率为最低,8月为最高;(4)在影响水分利用效率季节变化的生理生态因子中,以温度、光合有效辐射、气孔导度和相对湿度4个因子的直接作用为最大。  相似文献   

3.
不同光环境对桤木幼苗生长和光合特性的影响   总被引:4,自引:0,他引:4  
通过设置3个光照强度(100%、56.2%和12.5%),模拟森林幼苗生长的旷地(采伐迹地)、林窗和林下光环境,研究不同光照强度对外来种台湾桤木和乡土种四川桤木幼苗的生长、光合特性以及生物量积累与分配的影响.结果表明:低光环境限制了两种桤木幼苗形态指标的增长,适当遮荫的林窗环境比旷地更有利于幼苗的生长.台湾桤木幼苗具有较高的比叶面积和相对生长速率,较大的单叶面积、叶长、叶宽、株高和基径,较少的叶片数和较低的叶面积比、叶柄长.低光环境下,台湾桤木幼苗的最大净光合速率、光饱和点和表观光量子效率较高,光补偿点和暗呼吸速率较低.随着光照强度的降低,台湾桤木幼苗具有更高的根生物量比和更低的叶生物量比;四川桤木幼苗则相反,加剧了动物取食和机械损伤的风险.  相似文献   

4.
松嫩平原两种趋异类型羊草对干旱胁迫的生理响应   总被引:22,自引:4,他引:18  
采用盆栽实验,对灰绿和黄绿两种趋异类型羊草(Leymus chinensis(Trin.)Tzvel.)幼苗期用聚乙二醇(PEG)胁迫进行干旱生理指标测定,结果表明,在干旱胁迫下,灰绿型羊草和黄绿型羊草的电解质外渗率、脯氨酸、植株含水率、植株鲜重、SO4^2-、NO3^-之间均有显著或极显著差异,灰绿型羊草叶片电解质外渗率和叶绿素含量的b值均大于黄绿型羊草,而植株含水率的b值则小于黄绿型羊草,灰绿型羊草脯氨酸含量均大于黄绿型羊草,因子分析表明,脯氨酸是两种趋异类型羊草干旱胁迫生理反应的主要因子,两种趋异类型羊草在生理响应中均体现出耐旱能力,但灰绿型羊草的耐旱能力比黄绿型更强,两种趋异类型羊草在耐旱生理上有明显分化。  相似文献   

5.
通过设置3个光照强度(100%、56.2% 和12.5%),模拟森林幼苗生长的旷地(采伐迹地)、林窗和林下光环境,研究不同光照强度对外来种台湾桤木和乡土种四川桤木幼苗的生长、光合特性以及生物量积累与分配的影响.结果表明: 低光环境限制了两种桤木幼苗形态指标的增长,适当遮荫的林窗环境比旷地更有利于幼苗的生长.台湾桤木幼苗具有较高的比叶面积和相对生长速率,较大的单叶面积、叶长、叶宽、株高和基径,较少的叶片数和较低的叶面积比、叶柄长.低光环境下,台湾桤木幼苗的最大净光合速率、光饱和点和表观光量子效率较高,光补偿点和暗呼吸速率较低.随着光照强度的降低,台湾桤木幼苗具有更高的根生物量比和更低的叶生物量比;四川桤木幼苗则相反,加剧了动物取食和机械损伤的风险.  相似文献   

6.
外源芦丁预处理对水分胁迫下玉米幼苗的生理效应   总被引:4,自引:1,他引:3  
以玉米(Zeamays L.)品种'郏单958'为材料.采用营养液水培法,研究了外源芦丁(Rutin)对聚乙二醇(PEG)胁迫下幼苗叶片质膜相对透性、脯氨酸、可溶性糖含量及保护酶活性的影响.结果显示:(1)在15%PEG-6000胁迫下,玉米叶片的MDA含量、质膜相对透性、脯氨酸和可溶性蛋白质含量均显著增加,保护酶SOD、CAT、POD活性显著升高.(2)一定浓度芦丁(>0.40 g/L)预处理可显著抑制水分胁迫下玉米幼苗叶片MDA含量的上升,降低叶片质膜相对透性,并诱导SOD、POD和CAT活性提高.降低脯氨酸和可溶性蛋白质含量.说明外源芦丁能够提高玉米幼苗的抗氧化作用,缓解水分胁迫引起的膜脂过氧化,保护细胞膜免受或减少损伤·达到提高植物抗旱性的目的.  相似文献   

7.
陈银萍  陶玲  杨莉  王惠  思显佩 《广西植物》2010,30(5):672-677
以0.4mol/L的甘露醇(M)模拟水分胁迫状况,研究了外源一氧化氮(NO)供体硝普钠(SNP)对水分胁迫下玉米种子萌发、幼苗生长和生理特性的影响。结果表明:(1)水分胁迫下,玉米种子萌发和幼苗生长受到抑制,叶片丙二醛(MDA)含量、质膜相对透性、脯氨酸含量均显著增加;(2)SNP能显著提高水分胁迫下玉米种子的发芽率、发芽势、发芽指数和活力指数,增加玉米幼苗的根长、茎长、根重和整株干重,抑制水分胁迫下玉米幼苗叶片MDA含量的上升,降低叶片质膜相对透性,降低脯氨酸含量。其中以100μmol/L和200μmol/LSNP对水分胁迫的缓解效果最佳。  相似文献   

8.
以采自河北、乌审旗、榆阳、神木、固阳5个地区的一年生长柄扁桃(Amygdalus pedunculata Pall.)实生苗为试材,研究其叶片在水分胁迫下的解剖结构与生理生化特性,来确定其抗旱性强弱。结果表明:(1)水分胁迫后各地区长柄扁桃的叶片解剖结构存在显著性差异,并由隶属函数法对解剖结构综合分析得出这5个地区长柄扁桃的抗旱性顺序为:榆阳〉神木〉固阳〉乌审旗〉河北。(2)随着干旱时间的延长,各地区长柄扁桃的叶片相对含水量、质膜透性、丙二醛含量均呈上升趋势,且抗旱性弱的值越大,变化幅度也较大;SOD和POD活性、游离脯氨酸和可溶性蛋白含量均随胁迫的加强呈先升高后降低或直接降低的趋势,且抗旱性越强活性值或含量越高。(3)在干旱胁迫下Chl a和Chl b都呈先升高后降低的趋势,但Chl b对水分胁迫的反应较Chl a敏感;Car则呈下降趋势,其中榆阳和神木地区的长柄扁桃在胁迫40 d后光合色素含量均为最高。研究发现:长柄扁桃通过调整自身的叶片结构和各项生理生化特性来减缓水分胁迫带来的伤害,并由各项指标综合分析得出5个地区长柄扁桃的抗旱性顺序为:榆阳〉神木〉固阳〉乌审旗〉河北,为进一步的品种选育奠定了基础,并为长柄扁桃的产业化开发提供了理论依据。  相似文献   

9.
台湾桤木引种的光合生理特性研究   总被引:36,自引:2,他引:34  
以台湾桤木 Alnusformosana 引种2年生苗木为研究对象,探讨了台湾桤木的光合生理生态特性.结果表明: 1 叶片净光合速率 Pn 具有明显的日变化.中部叶Pn日变化在生长中期表现为双峰曲线型,高峰分别出现在9:00和15:00左右,峰值分别为15.03μmol·m-2·s-1和12.97μmol·m-2·s-1;在生长初期和末期为单峰曲线型.不同部位叶片Pn大小为:中部叶>顶部叶>基部叶. 2 不同部位叶片Pn表现出不同的季节变化特征.中部叶和顶部叶一年有两个高峰,高峰均出现在6月和8月;基部叶只有一个高峰,出现在6月.光合作用具有较广的温度适应范围.自然条件下叶片最大净光合速率为17.67μmol·m-2·s-1;人工条件下为20.2μmol·m-2·s-1,在新的环境条件下表现出较强的光合适应能力. 3 叶片LCP为33.32~67.47μmol·m-2·s-1,LSP为1332~1656μmol·m-2·s-1,具有较低的光补偿点和较高的光饱和点,表现出较强的弱光利用能力和强光利用潜力. 4 台湾桤木CO2补偿点为54.17~74.98μmol·mol-1,CO2饱和点在800μmol·mol-1左右;羧化效率为0.0270~0.0468.表现出较大光合作用潜力和较广的生存适应能力. 5 通径系数分析表明,Cond、Ci、Vpdl和RH是影响叶片光合速率变化最主要的直接作用因子.  相似文献   

10.
土壤干旱对2个种源野生酸枣幼苗生长和生理特性的影响   总被引:13,自引:4,他引:9  
以采自陕西杨陵和安塞的2个1年生酸枣幼苗为材料,采用盆栽称重控水法研究了中度和重度土壤干旱胁迫对它们生长和生理特性的影响.结果表明,不同程度的水分胁迫均使2种源酸枣新生侧枝长度受到极显著抑制,其苗高和基径也受到一定程度抑制,同时分别使叶片相对含水量和水分饱和亏有一定程度的降低和升高;2种源酸枣叶片的叶绿素a含量在各水分胁迫均极显著降低,它们的总叶绿素含量也在重度干旱下显著降低;随土壤干旱胁迫时间的延续,2种源酸枣叶片保护酶SOD、CAT、APX活性上下波动,其脯氨酸和可溶性糖含量逐渐升高,而超氧阴离子含量在较低水平下波动,丙二醛含量逐渐降低.杨陵酸枣在土壤水分较好的条件下表现良好,而安塞酸枣则具有更强的适应旱生能力.研究发现,在不同程度的土壤干旱胁迫下,2个种源酸枣的生长均受到一定程度的抑制,但它们均能调节自身的保护酶系统活性和渗透调节物质含量来减轻干旱伤害,维持植物体的正常生理代谢功能,表现出较强的抗旱耐旱能力.  相似文献   

11.
模拟干旱胁迫对枣树幼苗的抗氧化系统和渗透调节的影响   总被引:30,自引:6,他引:24  
用不同浓度的PEG-6000对抗旱性不同的1年生枣树(Zizyphus jujuba)幼苗进行渗透胁迫处理后,研究了不同抗旱性品种枣树幼苗的抗氧化酶活性和渗透调节物质含量的变化.结果显示,干旱胁迫下3种枣苗叶片的相对含水量(RWC)均降低,丙二醛(MDA)含量和细胞质膜相对透性均增加.在30%PEG胁迫下除骏枣1号的SOD活性降低外,3个品种枣苗在干旱胁迫下SOD和POD活性都增加;狗头枣2号的过氧化氢酶(CAT)活性在胁迫下明显增加,而木枣1号和骏枣1号的CAT活性均随着胁迫程度的增加而逐渐下降;木枣1号和骏枣1号的APX活性随着胁迫程度的增加先增加后降低,而狗头枣2号明显增加.干旱胁迫下,除骏枣1号的脯氨酸(Pro)含量和木枣1号的可溶性糖含量在30%的胁迫水平下降低(P>0.05)外,3种干旱胁迫水平下3个品种枣苗的Pro和可溶性糖含量均增加.总之,干旱胁迫下,枣苗叶片相对含水量、抗氧化酶(SOD、POD、CAT和APX)活性、渗透调节物质Pro和可溶性糖含量均为:狗头枣2号>木枣1号>骏枣1号,而MDA含量和膜透性均为骏枣1号>木枣1号>狗头枣2号,表明3个品种的抗旱性为:狗头枣2号>木枣1号>骏枣1号,研究结果与其品种的实际抗旱性一致.  相似文献   

12.
One nuclear and three chloroplast DNA regions (ITS, rbcL, matK and trnH-psbA) were used to identify the species of Alnus (Betulaceae). The results showed that 23 out of all 26 Alnus species in the world, represented by 131 samples, had their own specific molecular character states, especially for three morphologically confused species (Alnus formosana, Alnus japonica and Alnus maritima). The discriminating power of the four markers at the species level was 10% (rbcL), 31.25% (matK), 63.6% (trnH-psbA) and 76.9% (ITS). For ITS, the mean value of genetic distance between species was more than 10 times the intraspecific distance (0.009%), and 13 species had unique character states that differentiated them from other species of Alnus. The trnH-psbA region had higher mean values of genetic distance between and within species (2.1% and 0.68% respectively) than any other region tested. Using the trnH-psbA region, 13 species are distinguished from 22 species, and seven species have a single diagnostic site. The combination of two regions, ITS and trnH-psbA, is the best choice for DNA identification of Alnus species, as an improvement and supplement for morphologically based taxonomy. This study illustrates the potential for certain DNA regions to be used as novel internet biological information carrier through combining DNA sequences with existing morphological character and suggests a relatively reliable and open taxonomic system based on the linked DNA and morphological data.  相似文献   

13.
Drought stress usually causes a serious yield reduction in wheat production. Silicon (Si) has been reported to be able to alleviate drought stress damage; however, the mechanism is still poorly understood. In this article, the effects of Si (as sodium silicate) on some parameters related to oxidative damage, proline, soluble sugar, and inorganic ions in the leaves of wheat under 20% (w/v) polyethylene glycol (PEG-6000) simulative drought stress are investigated. PEG stress depressed the growth of shoot and root and decreased leaf water potential and chlorophyll concentration. Addition of 1.0 mM Si could partially improve the growth of shoot (but not root) and increase the leaf chlorophyll concentrations of stressed plants. Inclusion of Si in culture solution also maintained leaf water potential of stressed plants at the same level as that of the control plants. PEG stress induced significant accumulation of leaf hydrogen peroxide (H2O2) and malondialdehyde (MDA) as well as an increase in electrolyte leakage, which were all decreased by added silicon. These results suggest that stress-induced membrane lipid peroxidation could be partly alleviated by added silicon. Moreover, the results were also supported by the observation that PEG stress-induced decrease in glutathione concentration in the leaves was reversed by added silicon. The proline concentration in the leaves was markedly increased under PEG stress, whereas added silicon partially reversed this. PEG stress decreased the leaf soluble sugar concentration. There were significant negative regressions between proline concentration and both shoot dry weight and leaf chlorophyll concentrations, whereas there were positive regressions between the proline concentration and both H2O2 and MDA concentrations in the leaves, supporting the view that proline accumulation is a symptom of stress damage rather than stress tolerance. Addition of Si obviously increased Si accumulation in the shoot. Analyses of Na, Mg, K, and Ca showed no accumulation of these ions in the shoot (on the basis of per tissue dry weight) under water stress, and added Si even decreased their concentrations. These results suggest that under short-term PEG-induced water stress conditions (1 week), antioxidant defense, rather than osmotic adjustment, contributed to the improved wheat growth by Si.  相似文献   

14.
不同种源乌桕幼苗对干旱胁迫的生理响应   总被引:3,自引:0,他引:3  
以不同种源1年生乌桕幼苗为材料,采用盆栽控水试验研究了持续干旱条件下其外部形态及主要生理指标的变化,探讨各种源乌桕的抗旱性特性与差异。结果显示:(1)随着干旱持续时间的延长,各种源乌桕幼苗生长均受到不同程度抑制,外形表现出明显的缺水特征;其叶片相对含水量逐渐减小,复水后明显回升。(2)在极度干旱条件下(停水后第12天),幼苗叶片净光合作用速率仍维持一定的强度,而且细胞膜透性的变化不显著;在干旱胁迫条件下,幼苗叶片的过氧化物酶和超氧化物歧化酶活性增强,可溶性糖和可溶性蛋白质质量分数增加,丙二醛含量上升,脯氨酸积累,复水后呈现相反的变化趋势。(3)极度干旱条件下,不同种源乌桕幼苗间除丙二醛和相对电导率外,其它生理指标的变化差异显著或极显著,即不同种源具备比较稳定的抗旱性差异。(4)采用隶属函数法对不同种源幼苗的抗旱性分析发现,安徽黄山、河南商城两种源综合评价指数最大,为抗旱性较强的种源。研究表明,各种源乌桕幼苗能够通过调控自身保护酶活性和渗透调节物质含量来有效缓解干旱胁迫的伤害,从而表现出较强的抗旱性和适应性,但种源间存在稳定的差异,并以安徽黄山和河南商城种源抗旱性较强,可应用推广于季节性干旱区造林。  相似文献   

15.
The aim of this work was to examine the relationship between proline accumulation and membrane injury in barley leaves suffering from the effects of water deficit. Water deficit stress was induced by water withholding or by immersing the roots in polyethylene glycol (PEG 6000) solution of osmotic potential −1.5 MPa. The effect of water stress on proline accumulation and on membrane injury was evaluated in leaf blades of several barley genotypes. Substantial differences in proline accumulation and membrane injury indices among most of the genotypes investigated were observed. It was found that in drought stressed plants a higher ability to accumulate proline positively correlates with lower membrane injury. Whereas, in osmotically stressed plants the highest proline accumulation in the leaves was noticed in genotype with the largest membrane injury. The possible role of proline in membrane protection under conditions of slow-acting drought or shock-acting osmotic stress is discussed.  相似文献   

16.
分别以PEG-6000、NaCl模拟干旱胁迫及盐胁迫,采用水培方法研究了抗旱耐盐冬小麦沧-6001在干旱胁迫、盐胁迫条件下叶片可溶性糖、脯氨酸和可溶性蛋白质含量的动态变化以及Na+、K+在地上部和根系的分布。结果表明可溶性糖和可溶性蛋白变化趋势相似,其含量随干旱胁迫或盐胁迫时间延长而增加,但在胁迫处理后期下降,并且随胁迫强度增加,二者出现下降时间提前;脯氨酸在干旱胁迫条件下快速积累达到峰值后下降但在胁迫处理后期再次增加,在盐胁迫条件下,随胁迫强度的增加和胁迫时间的延长而增加;Na+在干旱胁迫下随胁迫程度增加而下降,盐胁迫条件下随胁迫程度的增加而增加,K+在干旱胁迫或盐胁迫下均随胁迫程度的增加而下降,且在根系中下降的速度大于地上部。  相似文献   

17.
Split-root cultured grey alder, Alnus incana (L.) Moench., was grown in sand in cuvettes with a continuous supply of nutrient solution. During the drought treatment for up to 9 days the supply of solution was withheld from one of the split-root halves. After 2–3 days of treatment, soil water became depleted and the unwatered root halves were at a constant drought stress, water potential (Ψnodules) = -1.1 to -1.6 MPa. Nitrogenase activity in the dry half decreased to about 70% of the initial value during the first 2–3 days and then stayed at this level. The water supply to the shoot from the wet root half was high and only a temporary slight decrease in photosynthesis and stomatal conductance was found in drought-stressed split-root plants. Labelling studies showed a reduced translocation of photoassimilates to the dry nodules. The fixation of CO2 in the nodules seemed to be more tolerant to drought than nitrogenase activity. During the drought treatment there was an osmotic adjustment from -0.9 to -1.7 MPa, but no change in the storage of starch in the nodules. In alders where parts of the root system is kept dry these roots acclimate and continue a persistent nitrogenase activity.  相似文献   

18.
Adaptability to drought in sugar beet cultivars   总被引:1,自引:0,他引:1  
The effects of NaCl and polyethylene glycol (PEG) on superoxide dismutase (SOD) and peroxidase (P) activities, lipid peroxidation (LP) and proline content in seeds and leaves of drought tolerant (FC-506 and MS-100) and drought sensitive (MS-612 and MS-13) sugar beet cultivars were examined. After PEG and NaCl treatment in tolerant cultivars both in seeds and leaves SOD activity mainly increased, though P activity increased only in leaves of tolerant cultivars. In drought sensitive cultivars the decrease of SOD and P activity was mostly observed. LP increased in seeds and leaves of all examined cultivars. The proline content increased in the leaves of examined cultivars and was significantly higher in drought tolerant plants. On the other hand, in the seeds only slight increase in proline content was found. The results obtained indicated that drought tolerance could be correlated with high proline content and enzymatic defense against lipid peroxidation.  相似文献   

19.
以山杜英(Elaeocarpus sylvestris)和黧蒴(Castanopsis fissa)幼苗为试验材料,利用聚乙二醇6000(PEG-6000)人工模拟水分胁迫环境,设置三个胁迫强度处理(轻度、中度、重度)、三个胁迫持续时间处理(12h、24h、36h),以不加PEG.6000的1/2Hoagland营养液中的苗木作为对照,对2个树种幼苗的叶片相对含水量、相对电导率、脯氨酸含量、叶绿素含量、超氧化物歧化酶(SOD)活性、丙二醛(MDA)含量和可溶性糖含量进行了测定,研究了水分胁迫对这2种幼苗的影响.结果表明:随着水分胁迫强度的加深及持续时间的延长,2种幼苗叶片相对含水量出现下降趋势,黧蒴的含水量下降更为显著;2种树种幼苗叶片内相对电导率呈波动性上升,黧蒴在轻度胁迫时相对电导率有大幅增加;2种幼苗的脯氨酸含量显著增加,叶绿素含量呈小幅波动,SOD活性先升后降,可溶性糖含量呈现波动性上升;山杜英叶片的MDA含量增加较缓慢,而黧蒴叶片的MDA含量大幅度增加.研究表明幼苗山杜英比黧蒴抗旱性强,叶片相对含水量、相对电导率和MDA含量可作为评价这2种苗木抗旱性的依据.  相似文献   

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