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1.
Extreme climate events are being recognized as important factorsin the effects on crop growth and yield. Increased climaticvariability leads to more frequent extreme conditions whichmay result in crops being exposed to more than one extreme eventwithin a growing season. The aim of this study was to examinethe implications of different drought treatments on the proteinfractions in grains of winter wheat using 1H nuclear magneticresonance spectroscopy followed by chemometric analysis. Triticumaestivum L. cv. Vinjett was studied in a semi-field experimentand subjected to drought episodes either at terminal spikelet,during grain-filling or at both stages. Principal componenttrajectories of the total protein content and the protein fractionsof flour as well as the 1H NMR spectra of single wheat kernels,wheat flour, and wheat methanol extracts were analysed to elucidatethe metabolic development during grain-filling. The resultsfrom both the 1H NMR spectra of methanol extracts and the 1HHR-MAS NMR of single kernels showed that a single drought eventduring the generative stage had as strong an influence on proteinmetabolism as two consecutive events of drought. By contrast,a drought event at the vegetative growth stage had little effecton the parameters investigated. For the first time, 1H HR-MASNMR spectra of grains taken during grain-filling were analysedby an advanced multiway model. In addition to the results fromthe chemical protein analysis and the 1H HR-MAS NMR spectraof single kernels indicating that protein metabolism is influencedby multiple drought events, the 1H NMR spectra of the methanolextracts of flour from mature grains revealed that the amountof fumaric acid is particularly sensitive to water deficits. Key words: Chemometrics, drought, fumaric acid, grain-filling, HR-MAS NMR, PARAFAC, PCA trajectory, single kernel, wheat Received 19 August 2008; Revised 14 October 2008 Accepted 24 October 2008  相似文献   

2.
A field experiment was conducted to investigate the effect ofK nutrition under water stress conditions on cell membrane stabilitymeasured by the polyethylene glycol test, plant growth, internalplant water relations and solute and mineral concentrationsin maize (Zea mays L.). Water-stressed plants showed greateradaptation to water deficits at higher K levels. Cell membranestability increased, leaf water potential and osmotic potentialdecreased, turgor potential increased and stomatal resistancedecreased with increasing K nutrition. Osmotic adjustment wasevident and it may have been influenced by increased K+ concentrationsin leaf tissues with increasing K nutrition. Higher leaf thicknessand higher leaf water content were observed at higher K levels.Results suggested that higher supplies of K nutrition may increaseplant production during periods of water stress. Key words: Zea mays L., cell membrane stability, leaf water potential, osmotic adjustment, osmotic potential, potassium nutrition, water stress  相似文献   

3.
Studies on the Movement of Water Through Apple Trees   总被引:12,自引:0,他引:12  
Resistances to the flow of water through young potted appletrees were estimated by measuring the transpiration rate oftrees with and without root systems. Root system resistanceswere obtained by difference. Whole-plant resistances were ofthe order 10 x 1013 Pa s m–3 and there was some evidencethat root resistances (Rr) varied with transpiration rate; theratio Rr:Rx (where Rx is resistance to water flow in the stemsystem) altered from 2:1 at relatively high transpiration ratesto 1:1 at lower rates. The trunk of a 9-year-old orchard tree (trunk diameter {smalltilde}7 cm, height {small tilde}2.5 m) was cut under water andestimates of the flow resistances in this tree were obtained.These were much lower than the resistances to flow in the pottedtrees. Capacitance (defined as the change in stored water content perunit change in plant water potential) values were calculatedfor the small trees and the large tree from measurements ofweight and water potential changes after the trees were removedfrom water. They were very similar on a weight basis (approx.2.0 x 10–8 kg kg–1 Pa–1). Leaf capacitancevalues ({small tilde}1 x 10–8 kg Pa–1 m–2)were also obtained. Stomatal conductances decreased with water potential and increasedwith short-wave radiation, but the relationships were not definitive.Estimates of boundary layer conductance in a greenhouse (verylow wind speeds) were of the same order ({small tilde}5 mm s–1)as values obtained previously.  相似文献   

4.
31P nuclear magnetic resonance (NMR) spectra are described fora variety of plant tissues, including sections of mature potatotuber (Solanum tuberosum) and sections of maize seedling (Zeamays). The experimental procedures for obtaining such spectra,using a conventional high field spectrometer, are discussedin detail. Assignments are given for the observed resonancesand the results are discussed in relation to the storage formsof plant phosphate. Attention is drawn to the power of the techniqueto distinguish the cytoplasm and vacuole in vivo, through thewell-known pH dependence of the 31P chemical shifts.  相似文献   

5.
Gas exchange measurements were undertaken on 2-year-old plantsof Clusia rosea. The plants were shown to have the ability toswitch from C3-photosynthesis to CAM and vice versa regardlessof leaf age and, under some conditions, CO2 was taken up continuously,throughout the day and night. The light response was saturatedby 120 µmol m–2 s–1 typical of a shade plant. Gas exchange patterns in response to light, water and VPD wereexamined. All combinations of daytime and night-time CO2 uptakewere observed, with rates of CO2 uptake ranging from 2 to 11µmol m–2 s–1 depending upon water status andlight. Categorization of this plant asC3, CAM or an intermediateis impossible. Differing VPD affected the magnitude of changesfrom CAM to C3-photosynthesis (0 to 0.5 and 0 to 6.0 µmolm–2 s–1 CO2, respectively) when plants were watered.Under well-watered conditions, but not under water stress, highPPFD elicited changes from CAM to C3 gas exchange. This is unusualnot only for a shade plant but also for a plant with CAM. Itis of ecological importance for C. rosea, which may spend theearly years of its life as an epiphyte or in the forest understorey,to be able to maximize photosynthesis with minimal water loss. Key words: Clusia rosea, CAM, C3, stress  相似文献   

6.
The NMR Microscope: a Unique and Promising Tool for Plant Science   总被引:13,自引:1,他引:12  
An outline is given of nuclear magnetic resonance (NMR) microscopyand its application to plant science. An NMR microscope non-destructivelydetects free water in tissues and creates anatomical imagesof the tissues. Since the quantity and mobility of cell-associatedwater is closely related to the condition of the cells,1H-NMRimages represent physiological maps of the tissue. In addition,the technique locates soluble organic compounds accumulatedin the tissues, such as sugars in vacuoles or fatty acids storedas oil droplets in vesicles.23Na-NMR imaging is suitable forstudying the physiology of salt-tolerant plants. Diffusion measurementsprovide information about the transport of substances and ionsaccompanied by water movement. The recently developed techniquesof three-dimensional imaging, flow-encoded imaging and spectroscopicimaging open up new opportunities for plant biologists. TheNMR microscope is thus a unique and promising tool for the studyof living plant systems in relation to morphology, the truefeatures of which are often lost during preparation for moreconventional tissue analysis. Copyright 2000 Annals of BotanyCompany Review, NMR microscope,1H-NMR imaging, non-destructive analysis, anatomy, cell-associated water, relaxation times, soluble compound mapping,23Na-NMR imaging, physiological mapping, diffusion measurement, flow-encoded imaging  相似文献   

7.
To examine the effects of a doubled atmospheric CO2 concentrationand other aspects of global climate change on a common CAM speciesnative to the Sonoran Desert, Agave deserti was grown under370 and 750 µmol CO2 mol–1 air and gas exchangewas measured under various environmental conditions. Doublingthe CO2 concentration increased daily net CO2 uptake by 49%throughout the 17 months and decreased daily transpiration by24%, leading to a 110% increase in water-use efficiency. Underthe doubled CO2 concentration, the activity of ribulose-1,5-bisphosphatecarboxylase/oxygenase (Rubisco) was 11% lower, phosphoenolpyruvatecarboxylase was 34% lower, and the activated:total ratio forRubisco was 25% greater than under the current CO2 concentration.Less leaf epicuticular wax occurred on plants under the doubledCO2 concentration, which decreased the reflectance of photosyntheticphoton flux (PPF); the chlorophyll content per unit leaf areawas also less. The enhancement of daily net CO2 uptake by doublingthe CO2 concentration increased when the PPF was decreased below25 mol m–2 d–1 when water was withheld, and whenday/night temperatures were below 17/12 C. More leaves, eachwith a greater surface area, were produced per plant under thedoubled CO2 concentration. The combination of increased totalleaf surface area and increased daily net CO2 uptake led toan 88% stimulation of dry mass accumulation under the doubledCO2 concentration. A rising atmospheric CO2 concentration, togetherwith accompanying changes in temperature, precipitation, andPPF, should increase growth and productivity of native populationsof A. deserti. Key words: Crassulacean acid metabolism, gas exchange, global climate change, Sonoran Desert  相似文献   

8.
The rate of net photosynthesis (P) of whole plant stands oftomato (Lycopersicon esculentum Mill.), cucumber (Cucumis sativusL.) and sweet pepper (Capsicum annuum L.) was measured in sixlong-term experiments in large greenhouses under normal operatingconditions and CO2-concentrations between 200 and 1200 µmolmol-1. The objective was to quantify the responses to lightand carbon dioxide and to obtain data sets for testing simulationmodels. The method of measuring canopy photosynthesis involvedan accurate estimation of the greenhouse CO2 balance, usingnitrous oxide (N2O) as tracer gas to determine, on-line, theexchange rate between greenhouse and outside air. The estimatedrelative error in the observed P was about ± 10%, exceptthat higher relative errors could occur under particular conditions. A regression equation relating P to the photosynthetically activeradiation, the CO2 concentration and the leaf area index explained83-91% of the variance. The main canopy photosynthesis characteristicscalculated with the fitted regression equations were: canopyPmax 5-9 g m-2 h-1 CO2 uptake; ratio Pmax/LAI 1·5-3 gm-2 h-1; light compensation point 32-86 µmol s-1 m-2;light use efficiency (quantum yield) at low light 0·06-0·10µmol µmol-1 and CO2 compensation point 18-54 µmolmol-1. The results were related to the prevailing conditions.Copyright1994, 1999 Academic Press Canopy photosynthesis, Capsicum annuum L., carbon dioxide, CO2, CO2 balance, CO2 use efficiency, cucumber, Cucumis sativus L., glasshouse, greenhouse, light use efficiency, Lycopersicon esculentum Mill., sweet pepper, tomato, tracer gas  相似文献   

9.
Connelly, A., Lohman, J. A. B., Loughman, B. C., Quiquampoix,H. and Ratcliffe, R. G. 1987. High resolution imaging of planttissues by NMR.—J. exp. Bot. 38: 1713–1723. NMR images of living plant tissues were recorded at a 1H frequencyof 200 MHz using a high resolution imaging technique that gavean in-plane pixel resolution of 50 µm x 50 µm orbetter. Images with interpretable contrast were obtained fromgerminating seeds, the roots of seedlings and the stems of youngplants. The expected structural features of these tissues werereadily observed including, in Mn2+ loaded tissue, the xylemvessels of maize root sections. Preliminary experiments on H2O-D2Oexchange in maize roots, on the uptake of Mn2+ by maize rootsand on the germination of seeds in situ demonstrate that thenon-invasive method of NMR mini-imaging has the potential tocomplement existing techniques for physiological investigationsin plant tissues. Key words: NMR imaging, water content, ion uptake  相似文献   

10.
The red mangrove (Rhizophora mangle L.) in southern Floridaoccurs frequently in two distinct growth forms, tall and scrubplants, with the scrub form usually found in coastal inlandareas having a higher fluctuation of soil water salinity. Inthe present study, effects of constant and fluctuating salinitieson leaf gas exchange and plant growth of red mangrove seedlingswere investigated under greenhouse conditions. Both constantand fluctuating salinity treatments significantly affected leafgas exchange and plant growth of red mangrove seedlings. Seedlingssubjected to the fluctuating salinity with the mean of both100 and 250 mol m–3 NaCl showed significantly lower photosynthesisand plant growth than those subjected to the corresponding constantsalinity with the same mean. The photosynthetic and growth ratesof the seedlings under these fluctuating treatments were aslow as, or even lower than those expected if they were growingunder the high constant salinity of their respective fluctuationtreatments. Seedlings subjected to the fluctuating salinitywith the mean of 500 mol m–3 NaCl, however, demonstratedslightly higher CO2 assimilation rate and stomatal conductance,but the same plant growth rates as those under the constant500 mol m–3 NaCl treatment. These results suggest that,in general, fluctuating salinity has significant negative effectson photosynthesis and plant growth relative to constant salinitywith the same mean. If this finding can be applicable to fieldsituations, the low photosynthesis and plant growth observedpreviously in several scrub mangrove forests probably can beattributed in part to the salinity fluctuation of soil waterin these mangrove forests. Key words: Fluctuating salinity, photosynthesis, growth, growth forms, mangroves  相似文献   

11.
The role of water relations and abscisic acid (ABA) in the responsesto drought were studied in a mediterranean forage crop, Trifoliumsubterraneum L. under field conditions. Soil and plant waterstatus, leaf gas exchange parameters, and xylem sap ABA contentwere determined at different times during a long-term soil dryingepisode in irrigated and droughted plants. The diurnal time-coursesof these parameters were also measured at the end of a droughtperiod. In response to soil drying stomatal conductance (g) was reducedearly to 50% that of irrigated plants before any substantialchange in water potential was detected. A close logarithmicregression between photosynthesis rate (A) and g was present.For the first weeks of drought the decline in A was less pronouncedthan in g, thus increasing water use efficiency. Stomatal conductanceduring diurnal time-courses showed no consistent relationshipswith respect to etther ABA or leaf water potential. Throughoutthe experimental period dependence of g on leaf water statuswas evident from the tight correlation (r2=0.88, P<0.01)achieved between stomatal conductance and midday water potential,but the correlation was also high when comparing g with respectto ABA content in xylem sap (r=0.83, P<0.001). However, thestomata from drought acclimated plants were apparently moresensitive to xylem ABA content. For similar xylem ABA concentrationsstomatal conductance was significantly higher in irrigated thanin waterstressed plants. Key words: Drought, stomatal conductance, water potential, abscisic acid  相似文献   

12.
WILSON  J. WARREN 《Annals of botany》1960,24(3):372-381
Examination of the net assimilation rate (E) during the growingseason in arctic regions by a detached-leaf method revealedno differences between species or with soil richness, but showeda reduction of E with exposure to wind–probably resultingfrom cooling–and a tendency for E to fall towards thelater part of the growing season. E generally lay in the range0·5 to o·8 g./dm.2/week. E for detached leaves ignores respiratory losses in other partsof the plant and is not comparable with E for whole plants;failure to appreciate this confused a previous comparison ofE under arctic and temperate environments. E for detached leavesin temperate summer conditions is normally around 1·1to 1·5 g./dm.2/week. Thus E is reduced in arctic environmentsto about half the value in temperate conditions. This reductionis due mainly to the cold climate.  相似文献   

13.
l4N nuclear magnetic resonance (NMR) spectroscopy was used todetect simple nitrogen compounds in root tissues from barley(Hordeum vulgare), maize (Zea mays) and pea (Pisum sativum)seedlings. The spectra included contributions from amino andamide groups but, as expected, these peaks were broad and poorlydefined in comparison with the resonances from nitrate and ammonium.A quantitative analysis of the spectra of nitrate-grown barleyroots showed that the nitrate resonance intensity accountedfor the total nitrate content of the tissue. Timecourses ofthe tissue nitrate intensity in response to changes in the externalnitrate composition followed single exponentials, and couldbe discussed in terms of nitrate exchange and possibly reduction.There was no evidence from these data, or from spin-latticerelaxation measurements, for the existence of more than onelarge pool of nitrate in the roots, and the results were consistentwith a model in which the bulk of the nitrate is vacuolar. Incontrast, timecourses of the ammonium resonance in ammonium-grownbarley roots were biphasic under certain external conditions,suggesting some form of compartmentation of ammonium in thetissue. Key words: Nitrate, Ammonium, NMR, Compartmentation  相似文献   

14.
The energy status and the phosphate metabolism of Prasiola crispduring and after desiccation stress was investigated by in vivo31P NMR. The effect of desiccation was simulated by additionof the nonionic osmoticum PEG 200 (polyethylene glycol). Photosynthesisand respiration were effectively inhibited under these conditions.The most notable changes in the in vivo 31P NMR spectra werean increase in the cytoplasmic inorganic phosphate signal afterPEG stress, a decrease in the polyphosphates and a lowfieldshift of the core polyphosphate signal followed by an appearanceof extracellular inorganic phosphate. Cytoplasmic pH remainedalmost constant during stress. After a return to control conditions,photosynthesis and respiration recovered within 4 h as wellas the concentrations of the phosphorus metabolites. An as yetunassigned phosphate signal increased in the phosphodiesterregion of the NMR spectra. Simultaneousty, the polyphosphatesignal recovered in intensity and chemical shift. It is suggestedthat phosphate metabolism and complexation of cations to polyphosphatesmay play an important role in the distinct desiccation toleranceof P. crispa. Key words: In vivo 31P NMR, Prasiola crispa, desiccation tolerance, polyphosphates  相似文献   

15.
开垦对克氏针茅草地生态系统碳通量的影响   总被引:6,自引:0,他引:6       下载免费PDF全文
 植被–大气间CO2净交换及其对环境变化的响应是目前全球变化研究的热点问题。该研究通过同化箱式法, 在内蒙古农牧交错带对比研究生长季草地生态系统和耕种多年的小麦田生态系统碳通量的变化, 以探讨该地区碳通量的变化规律及影响碳通量主要因子, 并揭示农田开垦对草原碳通量的影响。结果显示: 两个生态系统的群落净气体交换(Net ecosystem exchange, NEE)有明显的季节变化。整个测定期间, 草地生态系统的净气体交换NEE的最高值为–11.26 µmol CO2&#8226;m–2&#8226;s–1, 平均群落净气体交换为–5.33 µmol CO2&#8226;m–2&#8226;s–1; 小麦田群落NEE最大值为–12.29 µmol CO2&#8226;m–2&#8226;s–1, 平均群落净气体交换为–7.66 µmol CO2&#8226;m–2&#8226;s–1。分析发现, 叶面积指数LAI是影响该地区生态系统NEE的主要因子, 相对贫瘠的土壤也是限制该地区生态系统碳固定的一个重要因子。因小麦的生长特性, 在生长中后期, 小麦田生态系统NEE随LAI的变化没有草地生态系统的敏感。此外, 较低的土壤含水量限制了小麦田群落呼吸, 使得小麦田群落呼吸对温度的敏感性降低。  相似文献   

16.
Pereira, J. S., Tenhunen, J. D. and Lange, O. L. 1987. Stomatalcontrol of photosynthesis of Eucalyptus globulus Labill. treesunder field conditions in Portugal.—J. exp. Bot. 38: 1678–1688. Stomatal behaviour of adult leaves of Eucalyptus globulus treeswas studied under field conditions in Portugal. In the absenceof severe plant water stress stomata were open when the summedtotal of photosynthetically active photon flux density incidenton both leaf surfaces was above 100 µmol m2s1 and leafconductance to water vapour reached 245 mmol m 2 s1 on a total(both epidermes) leaf area basis. The stomata of both leaf epidermesresponded similarly to changes in solar radiation and waterstress. Water stress resulted in decreasing daily maxima inleaf conductance as predawn leaf water potential decreased.Maximal leaf conductance decreased to less than 50 mmol m 2s 1 when predawn leaf water potential decreased below —1·0MPa. At similar values of predawn leaf water potential stomatawere more closed as the leaf to air water vapour partial pressuredifference increased. The effect of increasing air dryness onstomata was greatest at high predawn leaf water potential. Dailymaxima in photosynthetic rates and in leaf conductance werelinearly related to one another in spring and summer. Both decreasedwith increase in leaf water stress. In autumn and winter, increasesin leaf conductance occurring under natural conditions duringthe course of the day were not necessarily accompanied by increasesin net photosynthesis. Stomata were more closed in the afternoonthan in the morning at the same rates of net photosynthesis,temperature or leaf to air water vapour partial pressure difference. Key words: Eucalyptus globulus,, photosynthesis, stomata, water stress.  相似文献   

17.
Plants ofMolinia caeruleawere supplied with either a low (0.2mol m-3) or high (10 mol m-3) supply of nitrogen over two growingseasons. A total of 14 destructive plant harvests were made:when plants were in an over-wintering state prior to the secondseason; immediately following bud burst; and on 12 further occasionsthroughout the second season. The relationships between shootnitrogen concentration on a dry mass basis, shoot water contentand plant developmental stage were investigated. Shoot nitrogenconcentration on a dry mass basis fell as the growing seasonprogressed. In contrast, the concentration of nitrogen in tissuewater after bud burst showed only a slight reduction. The concentrationof nitrogen both on a dry mass basis and in tissue water wasgreater for plants receiving the higher supply of nitrogen.Shoot water content was highest immediately following bud burstthen declined as the season progressed, with plants receivingthe low nitrogen supply having slightly greater shoot watercontents. It was concluded that the decline in shoot nitrogenconcentration ofM. caeruleaon a dry mass basis as the mass increasedwas mainly explained by changes in shoot water content. Theobserved increase in the rate of decline of both shoot nitrogenconcentration and water content with increased shoot mass coincidedwith the cessation of leaf tissue production and was thereforedue to a switch from the production of leaves to other tissues.Copyright1999 Annals of Botany Company Molinia caerulea(L.), purple moor grass, nitrogen, water content, shoot development.  相似文献   

18.
Light Distribution and Photosynthesis in Field Crops   总被引:7,自引:1,他引:6  
In a new model of light distribution in field crops a parameters is the fraction of light passing through unit leaf layer withoutinterception. Radiation profiles measured with solarimetersand photocells give values of s from 0.7 for grasses to 0.4for species with prostrate leaves. Knowing s, leaf transmissionT and leaf-area index L the light distribution in a field cropmay be described by a binomial expansion of the form {s+(I-s)T)L.To calculate crop photosynthesis at given light intensity thisexpansion is combined with two parameters describing the shapeof the light-response curve of single leaves. Finally, the assumptionthat solar radiation varies sinusoidally allows daily totalphotosynthesis to be estimated from daylength and insolation. The theory predicts about the same potential photosynthesisin a cloudy temperte climate with long days as in a more sunnyequatorial climate with short days. When L < 3 photosynthesisincreases as s decreases, i.e. as leaves become more prostrate;but when L > 5, photosynthesis increases as s increases,i. e. as leaves become more erect. Assuming that respirationis proportional to leaf area, estimated dry-matter productionagrees well with field measurements on sugar-beet, sugar-cane,kale, and subterranean clover. Estimates of maximum gross photosynthesis(for sugar-cane and maize) range from 60 to 9 g m–2 day–1depending on insolation.  相似文献   

19.
A stomatal diffusion porometer is described which measures directlythe diffusion of radioactive krypton through amphistomatousleaves. The porometer is relatively small and portable and iseasily used under field conditions. It consists of a miniaturediffusion chamber above an acrylic plastic reservoir which contains1200 cm3 of air enriched with 85Kr. Geiger tubes in the diffusionchamber and in the reservoir monitor the relative concentrationsof 85Kr. Krypton is allowed to diffuse from the larger reservoirthrough the leaf into the diffusion chamber and the time forits concentration in relation to that in the reservoir to changebetween two fixed values is recorded. When this time lapse wascalibrated against known resistances a linear relationship,independent of temperature was found. Sources of error are analysedand some experiments are described in which the porometer wasused to measure diurnal changes in stomatal resistance. Resistancesof potted sunflower plants (Helianthus annuus L.) grown in agreenhouse were measured with both the krypton diffusion porometerand a condensation-type porometer and the results were usedto calculate both cuticular and stomatal resistances. Demonstrationof field measurements with the porometer include data from eucalyptustrees {Eucalyptus camaldulensis Dehn) and from an unirrigatedcotton crop {Gossypium hirsutum var. SJ 2) growing under semi-aridconditions. Stomatal conductance of the cotton crop during theopening phase was linearly related to solar radiation.  相似文献   

20.
全球气候变化包括氮沉降增加和降水格局改变, 影响着生态系统的生物地球化学循环, 进而可能会对植物的养分保持特性产生影响。研究不同氮、磷和水分梯度上植物叶片养分特性的响应格局, 对于预测氮沉降增加和降水格局的改变对植物养分策略的潜在影响, 具有一定的理论与实践意义。该研究通过3个盆栽控制实验 (施氮肥实验:0、0.5、1、2、4、8、16、32、64和128g·m-2等10个水平;施磷肥实验:梯度同施氮肥实验;控水实验:3600、 4000、4500、5143、6000、7200、9000、12000、18000和36000ml-pot-1等10个水平), 探讨了羊草 (Leymuschinensis) 绿叶氮、磷浓度和比叶面积 (Specificleafarea, SLA) 对这些环境因子改变的响应。结果表明, 在一定范围内, 施氮肥提高了羊草绿叶比叶面积和绿叶氮浓度, 但对绿叶磷浓度没有明显的影响;施磷肥显著提高了绿叶比叶面积、绿叶氮浓度和绿叶磷浓度;供水量增加提高了羊草绿叶比叶面积, 降低了绿叶氮浓度, 但对绿叶磷浓度无显著影响。这表明, 氮、磷和水分因子的改变影响了植物叶片的养分保持能力, 且不同梯度的影响程度也不同。因此, 全球气候变化可能影响植物养分利用策略, 进而可能对植被-土壤系统养分循环产生影响。  相似文献   

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