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1.
Transpiration, water uptake by the roots and CO2 exchange oftwo leaf succulents, Senecio medleywoodii (Asteraceae) and Aloejucunda (Asphodeliaceae), were monitored simultaneously andcontinuously with a gas exchange cuvette combined with an apparatusto quantify water uptake (= waterbudget- meter). Measurements,which are primarily valid for plants with a sufficient watersupply, were made with the same plant for up to 29 consecutivedays. Ambient air temperature varied between 17 and 35 C witha constant dewpoint temperature of 13C of the ambient air anda 12 h photoperiod at 400–500mol m–2s–1 photonirradiance. The net water flux (Jw(net)=water uptake–transpiration)and the water balance (Jw(net) integrated for a timespan) werecalculated. Various tests were made to determine the accuracyof the measurements made with this rather complex equipment.In most cases the errors for transpiration and uptake rateswere much lower than 8% determined under the conditions of drastically(about 10 K per 30 min) increased or decreased ambient air temperatures.The experimental set-up proved to be a most valuable tool todetermine and analyse interactions between transpiration andwater uptake, changes in plant water status and the bufferingof negative Jwnet). Increasing the temperature of ambient air resulted, for bothspecies investigated, in a quick and considerably enhanced transpiration,but there was only a minor impact on water uptake. Water lossexceeding uptake was buffered by internal water reserves whichwere refilled within about 1 d after the plant was relievedof heat and drought stress caused by a period of high ambientair temperatures and high water vapour saturation deficits ofthe air. Repeated simulation of such stress periods showed thatthe absolute values of transpiration and the water uptake for24 h can vary, but the diurnal course of the values showed thesame pattern if the environmental conditions were identical.Such standardized diurnal transpiration and water uptake curvescould be very useful for the validation of mathematical modelsused to describe plant water relations. Key words: Plant water relations, water budget, drought stress, transpiration, water uptake  相似文献   

2.
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   

3.
The effects of osmotically induced water deficits on the metabolismof aged beetroot and potato discs were investigated. In thispaper the tissue-water relationships in two osmotica, mannitol,and Carbowax 1540, are described. Tissues in equilibrium with Carbowax solutions had lower freshweights than those in isotonic mannitol solutions, particularlyat water potentials below –0.7 J g–1 with potatoand –2.0J g with beetroot. Potato discs killedby freezing and thawing lost water to Carbowax but not to mannitolsolutions. The extra effectiveness of Carbowax solutions inlowering fresh weight was attributed to an osmotic effect acrossthe cell wall. Carbowax was found to penetrate plasmolysed potatotissue, however, at a rate of about 3.0 mg (g fresh weight)–1h. The extent to which water uptake occured on retransfer to waterwas unaffected by the nature of the soulte used, but dependon the degree of dehydration. The following phases were clearlydefined: (1) recovery to the fresh weight at full turgor, whenthe water potential of potato tissue was not reduced below –0.5J g and of beetroot below –1.2 J g–1; (2)a declining degree of recovery with decreasing water potentialover the ranges –0.5 to –1.0 J g–1 and –1.2to –3.0 J g–1 for potato and beetroot, respectively,and (3)in potato, the absence of recovery of fresh weight followingreduction of the water potential below –1.0 J g–1.  相似文献   

4.
Barley plants were grown in nutrient solution at two contrastingnitrate concentrations to produce plants of low or high nitrogen(N) status. Leaves were then exposed continuously to either0.3 mm3 dm–3 NO2 or clean air, with the roots and rootingmedium isolated from the polluted air. Uptake of NO2 was measuredin two ways; as depletion from an air stream containing thegas and using 15N-labelled NO2. Results from the two methodsagreed well and demonstrated that the flux of NO2 into the leavesof N-deficient barley was lower than that of N-sufficient plants.Nevertheless, the relative contribution of15N derived from 15NO2to the N status of the plant was greater in the plants suppliedwith low nitrate. A major factor in regulating NO2 uptake bybarley leaves appeared to be stomatal conductance, althoughinternal conductance may also be involved. The effects of NO2exposure of barley on carbon dioxide exchange rates, transpirationand water vapour conductance were also influenced by the N statusof the plant. Key words: Hordeum vulgare, 15N-labelled NO2, carbon dioxide exchange, transpiration  相似文献   

5.
Comparison of Trunk and Branch Sap Flow with Canopy Transpiration in Pecan   总被引:9,自引:0,他引:9  
Trunk and branch sap flow were compared with canopy transpirationin a 5-year-old pecan tree (Carya illinoensis ‘Wichita’).Total trunk sap flow, measured by a heat balance trunk flowgauge, was 122.8 kg over a 24 h period, corresponding closelyto the 113.4 kg of canopy transpiration measured by a largeprecision weighing lysimeter. Branches, less than half the diameterof the main trunk, had a total sap flow an order of magnitudeless than the total flow in the trunk. Sap flow in a branchwith a northern exposure was 41% less than that with a southernexposure. When sap flow was normalized per unit tree or branchleaf area, peak sap flow in the south branch matched that inthe main trunk. Tree transpiration and the sap flow in trunkand branches began concurrently, indicating little dynamic waterstorage in the trunk above the gauge. The hydraulic conductanceof the entire tree was 8 to 14 x 10–14 m s–1 Pa–1,similar to values found for a number of woody and herbaceousspecies. Key words: Sap flow, Carya illinoensis, transpiration, lysimeter, trunk flow gauge  相似文献   

6.
Sugar beet grown in solution culture, with or without a supplementof 16 millequivalents per litre of sodium, were subjected towater stress with polyethylene glycol solutions of –0.4,–3, and –8 bar osmotic potential. With the –0.4bar solution leaf water potential was between –6 and –8bar and leaf relative water content about 90 per cent. Decreasingthe solution osmotic potential to –8 bar decreased leafwater potential to about –15 bar and relative water contentto 75 per cent; leaves stopped expanding and transpiration andcarbon dioxide uptake were decreased by 80 and 50 per cent respectively.Net assimilation rates were only slightly decreased becauseleaf growth was decreased more than carbon dioxide assimilation.Relative growth rates of the plants were decreased by 8 percent at –3 bar and by 15 per cent at –8 bar. Sodium absorbed by the plant accumulated mainly in the leavesand petioles; it increased the water content of the leaves andstorage root and the plant fresh weight. Sodium decreased theleaf osmotic potential, slightly increased leaf water potential,and significantly increased turgor. It had no effect on carbondioxide uptake, transpiration, net assimilation rate, or relativegrowth rate. Sodium increased the rate at which the leaf areagrew and it is concluded that it did so by altering the leafwater balance.  相似文献   

7.
Soybean [Glycine max (L.) Merrill] seeds and cotyledons weregrown in an in vitro culture system to investigate the relationshipsbetween cell expansion (net water uptake by the seed) and drymatter accumulation. Seeds or cotyledons grown in a completenutrient medium containing 200 mol m–3 sucrose continueddry matter accumulation for up to 16 d after in planta seedsreached physiological maturity (maximum seed dry weight). Seedor cotyledon water content increased throughout the cultureperiod and the water concentration remained above 600 g kg–1fresh weight. These data indicate that the cessation of seeddry matter accumulation is controlled by the physiological environmentof the seed and is not a pre-determined seed characteristic.Adding 600 mol m–3 mannitol to the medium caused a decreasein seed water content and concentration. Seeds in this mediumstopped accumulating dry matter at a water concentration ofapproximately 550 g kg–1. The data suggest that dry matteraccumulation by soybean seeds can continue only as long as thereis a net uptake of water to drive cell expansion. In the absenceof a net water uptake, continued dry matter accumulation causesdesiccation which triggers maturation. Key words: Glycine max (L.) Merrill, solution culture, duration of seed growth, water content, dry matter accumulation  相似文献   

8.
Young tomato plants were grown from germination in water cultureat light-flux densities from 6 to 110 W m-2 (400–700 nm),daylengths from 8 to 24 h and CO2 concentrations from 0.4 to2.2 g CO2 m-3 in controlled environment cabinets. The growth rates and net assimilation rates of 14–17-day-oldplants at the highest light integrals were appreciably greaterthan most values previously recorded for tomato, and diminishedwith time. Plants in the lowest light conditions had leaf arearatios five times larger than those in the highest light, attributablemainly to a difference in leaf dry weight/area. Such flexibilityin leaf area ratio has not previously been associated with ‘sun’plants such as the tomato. Relatively normal growth was obtained in continuous light, incontrast to most other reports. This may have been due to theuse of conditions which would minimise water stress. The efficiency of the conversion of incident light energy tochemical energy by the whole plant ranged from 15 per cent inseedlings in low continuous light to about 6 per cent, tendingto be higher in young plants in long days under CO2 enrichment.The higher values are probably overestimates because of theexclusion of reflected light from the energy receipt values.  相似文献   

9.
The control of soil moisture depended on the arrangement ofnumerous auto-irrigation cells radially around the plant, allowingrelatively unrestricted spread of the root system, the cellsbeing so placed that no point in the soil was more than about1 in from a water-supplying surface. Water for the cells wassupplied from barostat reservoirs fixed at the levels requiredto give the target hydrostatic pressures of –27, –84,–149, –266 mb at the centre of the cells. The degree of soil moisture control achieved was assessed bysoil moisture tensiometers. Three months after sowing mean matricpotentials were reduced below target levels to minimum valuesof only –33, –104, –178, and –329 mb.At this time some of the tomato plants had leaf areas in excessof 2000 cm2 per plant and water uptakes of 200 ml per day perplant in the –27 mb and of 150 ml in the –266 mbtreatment. Leaf area per plant decreased with decrease in matric potential;leaf dry weight decreased with matric potentials less than –84mb; root growth, observed in glass panels, was depressed atboth the largest and smallest matric potentials. The reductionin water uptake with decreasing matric potential was more thancould be accounted for by a smaller leaf area alone.  相似文献   

10.
Experiments were performed with soybean plants to test the hypothesisthat the inhibition of NO3 uptake in darkness is dueto feedback control by NO3 and/or Asn accumulating inthe roots. Xylem export of N compounds was shown to depend onwater flux in both excised root systems and 15N-labelled intactplants, suggesting that the shortage of transpiration in darknessmay be responsible for the retention of NO3 and Asn inthe roots. This was verified in experiments where the light/darkpattern of transpiration was modulated in intact plants by changingthe relative humidity of the atmosphere. Any decrease of transpirationat night was associated with a concurrent stimulation of NO3and Asn accumulations in the roots. However, the light/darkrhythmicity of NO3 uptake was only marginally affectedby these treatments, and thusappeared quite independent fromtranspiration and root NO3 or Asn levels. Typically,the maintainance of a constant transpiration during the day/nightcycle did not suppress the inhibition of NO3 uptake indarkness, whereas it almost prevented the dark increase in rootNO3 and Asn contents. These data strongly support theconclusion that the effect of light on NO3 uptake isnot mediated by changes in translocation and accumulation ofN compounds. Key words: Glycine max, light/dark, cycles, nitrate uptake, transpiration, transport of N compounds, accumulation of N compounds  相似文献   

11.
Yeo, A. R., Yeo, M. E., Caporn, S. J. M., Lachno, D. R. andFlowers, T. J. 1985. The use of 14C-ethane diol as a quantitativetracer for the transpirational volume flow of water and an investigationof the effects of salinity upon transpiration, net sodium accumulationand endogenous ABA in individual leaves of Oryza sativa L.—J.exp. Bot. 36: 1099–1109. Oryza sativa L. (rice) seedlings growing in saline conditionsexhibit pronounced gradients in leaf sodium concentration whichis always higher in the older leaves than the younger ones.Individual leaf transpiration rates have been investigated todiscover whether movement of sodium in the transpiration streamis able to explain these profiles from leaf to leaf. The useof 14C labelled ethane diol to estimate transpiration was evaluatedby direct comparison with values obtained by gas exchange measurements.Ethane diol uptake was linearly related to the transpirationalvolume flow and accurately predicted leaf to leaf gradientsin transpiration rate in saline and non-saline conditions. 14C-ethanediol and 22NaCl were used to compare the fluxes of water andsodium into different leaves. The youngest leaf showed the highesttranspiration rate but the lowest Na accumulation in salineconditions; conversely, the older leaves showed the lower transpirationrates but the greater accumulation of Na. The apparent concentrationof Na in the xylem stream was 44 times lower into the youngerleaf 4 than into the older leaf 1. Exposure to NaCl (50 molm–3) for 24 h elicited an increase in endogenous ABA inthe oldest leaf only, but no significant changes occurred inthe younger leaves. Key words: —Salinity, rice, Oryza sativa L., transpiration, volume flow, abscisic acid  相似文献   

12.
Barley plants (Hordewn vulgare L. cv. Atem) were grown fromseed for 28 d in flowing solution culture, during which timeroot temperature was lowered decrementally to 5?C. Plants werethen subjected to root temperatures of 3, 5, 7, 9, 11, 13, 17or 25 ?C, with common air temperature of 25/15 ?C (day/night).Changes in growth, plant total N, and NO3 levels, andnet uptake of NH4+ and NO3 from a maintained concentrationof 10 mmol m–3 NH4NO3 were measured over 14 d. Dry matterproduction increased 6-fold with increasing root temperaturebetween 3–25 ?C. The growth response was biphasic followingan increase in root temperature. Phase I, lasting about 5 d,was characterized by high root specific growth rates relativeto those of the shoot, particularly on a fresh weight basis.During Phase I the shoot dry weight specific growth rates wereinversely related to root temperature between 3–13 ?C.Phase 2, from 5–14 d, was characterized by the approachtowards, and/or attainment of, balanced exponential growth betweenshoots and roots. Concentrations of total N in plant dry matterincreased with root temperature between 3–25 ?C, moreso in the shoots than roots and most acutely in the youngestfully expanded leaf (2?l–6?9% N). When N contents wereexpressed on a tissue fresh weight basis the variation withtemperature lessened and the highest concentration in the shootwas at 11 ?C. Uptake of N increased with root temperature, andat all temperatures uptake of NH4+, exceeded that of NO3,irrespective of time. The proportions of total N uptake over14 d absorbed in the form of NH4+ were (%): 86, 91, 75, 77,76, 73, 77, and 80, respectively, at 3, 5, 7, 9, Il, 13, 17,and 25 ?C. At all temperatures the preference for NH4+ overNO3 uptake increased with time. An inverse relationshipbetween root temperature (3–11 ?C) and the uptake of NH4+as a proportion of total N uptake was apparent during PhaseI. The possible mechanisms by which root temperature limitsgrowth and influences N uptake are discussed. Key words: Hordeum vulgare, root temperature, ammonium, nitrate, ion uptake, growth rate  相似文献   

13.
木质部是植株体内水分传输的主要通路,其水力特性的变化会影响植株的水分关系和果实的水分积累。目前关于番茄植株木质部解剖结构和水力特性对水分和盐分胁迫的响应及其与植株生长和果实含水量之间的关系尚不明确。本研究通过日光温室番茄盆栽试验,设置3个处理:对照,土壤含水量(θ)为75%~95%田间持水量(FC),初始电导率(EC)为0.398 dS·m-1;水分胁迫,开花前θ为75%~95% FC,开花后至成熟期θ为45%~65% FC,EC为0.398 dS·m-1;盐分胁迫,θ为75%~95% FC,EC为1.680 dS·m-1,研究了樱桃型番茄(红宝石)和中果型番茄(北番501)植株在水分和盐分胁迫下的植株生长、果实含水量以及木质部水力特性的变化。结果表明: 与对照相比,水分和盐分胁迫下茎秆横截面积和木质部导管直径分别减小了22.0%~40.7%和10.0%~18.3%,茎秆比导水率和桁架柄比导水率分别降低了8.8%~41.1%和12.9%~28.4%,抑制了植株生长,减少了地上部鲜重、果实大小、果实鲜重和含水量,且与樱桃型番茄相比,中果型番茄的降幅更大。此外,果实含水量分别与茎秆和桁架柄比导水率呈显著正相关。综上,番茄植株在水分和盐分胁迫下木质部水力特性指标减小,生长被抑制,果实鲜重显著降低,最终导致产量降低。其中,中果型番茄相较于樱桃型番茄对水分和盐分胁迫更敏感。  相似文献   

14.
Transpiration and Carbon Acquisition in Root Hemiparasitic Angiosperms   总被引:5,自引:1,他引:4  
Press, M. C. Graves, J. D. and Stewart, G. R. 1988. Transpirationand carbon acquistion in root hemiparastic angiosperms.—J.exp. Bot. 39: 1009–1014. Field measurements of carbon dioxide and water vapour exchangewere made on eight species of root hemiparasite at sites insouthern England, Scotland and northern Sweden. Rates of light-saturatedphotosynthesis and night-time respiration were of the same orderof magnitude, ranging from 2.10 to 7.53 and – 2.76 to– 7.82 µmol m–2 s–1 respectively. Wesuggest that autotrophic carbon must be supplemented by a heterotrophic,host-derived supply. Day- and night-time transpiration rateswere very high, ranging from 6.12 to 9.22 and 2.58 to 8.69 mmolm–25–1 respectively. High transpiration rates, dayand night, will facilitate movement of water, inorganic andorganic solutes from host to parasite. Whereas in autotrophicplants stomata function to minimize water loss and maximizecarbon gain, in hemiparasites the reverse is the case, wherebywater loss is maximized in order to maximize carbon gain. Key words: Transpiration, photosynthesis, respiration, parasitic angiosperm  相似文献   

15.
Plantlets of Limonium estevei Fdez. Casas, an endangered Spanishspecies, were successfully regenerated from nodal segments excisedfrom young seedlings. Initiation of multiple adventitious budswere obtained in MS modified medium plus 1 mg l–1 IBAand 0·1 mg l–1 BAP. Rooting was achieved by transferof the isolated shoots to fresh MS medium without plant growthregulators. Fully grown plants were established in a pottingmix and are growing well in a greenhouse. Limonium estevei, in vitro multiplication, adventitious regeneration  相似文献   

16.
Wolterbeek, H. Th. 1987. Relationships between adsorption, chemicalstate and fluxes of cadmium applied as Cd(NO3)2 in isolatedxylem cell walls of tomato.—J. exp. Bot. 38: 419–432. Isolated xylem cell wall pieces were applied as membranes inion diffusion experiments. The cell walls were isolated fromtomato internodes (Lycopersicon esculentum Mill, cv. Tiny Tim)and sealed in a two-compartment diffusion system. In flux andadsorption calculations, the cell wall was regarded as a leakymembrane with parallel fluxes through Donnan Free Space (DFS)and Water Free Space (WFS). During the experiments absorptioninto and diffusion across the walls was determined of Cd2 +, applied as 115Cd(NO3)2. Flux experiments with 82Brindicated that excluded volume effects and path tortuosity resultedin apparent WFS diffusion coefficients in the walls which were0·012 times as high as in water. The free proton concentration in the DFS was shown to be relatedto a complex formation between fixed charges and Cd2 +. Thecell wall permeability for Cd2 + and NO3 varied withapplied and absorbed concentrations, and the Cd2 + flux curveshowed an inflexion point coinciding with a buffered degreeof dissociation of fixed charges in the DFS. The necessary couplingof fluxes of opposite charges resulted in relatively high NO3and small Cd2 + permeability of the DFS for strongly dilutedsolutions (P = 10–4 m s–1 and 10–11 m s–1for NO3 and Cd2 + respectively). The results demonstratethe possible regulatory effects of the cell wall in processesof ion transfer from xylem vessels, or ion uptake in plant tissues. Key words: Cadmium, chemical state, DFS, WFS, ion flux, permeability, xylem cell walls, tomato, bromium, nitrate  相似文献   

17.
The factors affecting the absorption and translocation of simazineby young barley plants in short-term experiments in water culturehave been investigated. Chromatographic examination of the xylemsap indicated no extensive breakdown of the herbicide in thetranspiration stream. Under varying conditions of humidity,light intensity, temperature, and in the presence of metabolicinhibitors, the concentration of simazine in the transpirationstream relative to that in the uptake medium was always lessthan unity. This could, in part, be attributed to retentionof simazine at a higher concentration on a fresh weight basisin the root tissues than in the ambient medium. There was littleevidence that the absorption and translocation of simazine wasinfluenced by metabolism except in so far as this affected movementof water, and micro-organisms present on the plant roots atambient laboratory levels had no effect on the uptake and transportof the herbicide. Simazine brings about a decrease in the rate of transpirationand a reduction in the total uptake of rubidium and phosphateat relatively high concentrations. However, when the phosphateconcentration in the ambient medium was below the level at whichtranslocation of this ion is affected by the rate of transpiration,the herbicide did not reduce uptake of phosphate. There is thereforeno evidence that in short-term experiments simazine has an effecton active transport processes.  相似文献   

18.
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   

19.
The impact of low humidity in ambient air on water relations,nitrate uptake, and translocation of recently absorbed nitrogen,was investigated in 5-week-old tomato (Lycopersicon esculentumMill cv. Ailsa Craig) plants grown hydroponically in a completenutrient solution. Plants were subjected to dry air (relativehumidity 2–4% for 6 h. The transpiration rate increasedseveral-fold and the shoot water content decreased by almost20%, whereas root water content was unaffected. No effect onin vitro nitrate reductase (NR) activity was detected when usingan EDTA-contraining assay buffer. Replacement of EDTA with Mg2+revealed a significant decline in shoot NR activity, which suggestsphosphorylation of the enzyme during the stress treatment. Plantswere grown in a split-root system, in which one root half wasfed 15N-nitrate during the treatment, in order to determinenitrate uptake and translocation of recently absorbed nitrogenin the plants. Uptake of nitrate was substantially inhibited,but the proportion of absorbed 15N that was translocated tothe shoots was only slightly affected. In untreated plants,71% of the 15N recovered in roots had been retranslocated fromthe shoots, whereas in plants subjected to stress the deliveryof 15N from shoots to roots appeared to be completely inhibited.The data show that lowered humidity in air has significant effectson both uptake of nitrate as well as translocation of nitrogenwithin the plants. Some of these effects appear to be commonwith those observed in plants subjected to reduced water potentialsin the root environment and point to the possibility of theshoot water relations being highly influential on nitrogen uptakeand translocation. Key words: Air humidity, nitrate assimilation, nitrate reductase activity, nitrogen translocation, tomato, water stress  相似文献   

20.
Although it is well established that the root growth in manyspecies is very sensitive to mechanical impedance or to confinementin small volumes, little is known about the consequent effectson growth of the whole plant and the mechanisms involved. Thiswork investigated the effects of root confinement on the waterrelations, growth and assimilate partitioning of tomato (Lycopersiconesculentum Mill) grown in solution culture. Six-week old plants were transferred to either 4500 ml or 75ml containers filled with nutrient solution, and allowed togrow for 14 d. Transpiration, leaf-air temperature differences,and leaf diffusive resistances were measured frequently. Leaf,stem and shoot dry masses, leaf area and root length, were estimatedwhen the treatments were imposed and at the end of the experiment.After 14 d growth the root and shoot hydraulic resistances wereestimated from measurements of leaf water potential and transpirationrate, using a steady-state technique. Confining root growth to the small containers substantiallyreduced shoot and root growth and increased the proportion oftotal dry matter present in the stems. These effects were dueto drought stress. The hydraulic resistance of the root systemwas greatest in the confined plants. This led to more negativeleaf water potentials, increased leaf diffusive resistance,and reduced the net assimilation rate by a factor of 2.5. Transpirationper unit leaf area was less affected. However, cumulative transpirationwas also reduced by a factor of 2.5. mostly because of the smallerleaf area on the confined plants. Root hydraulic resistivitywas measured at 3.1 x 1012s m–1 in the control treatment,but increased to 3.9 x 1012 s m–1 for roots in the smallcontainer. The mechanisms by which root confinement caused drought stressand disrupted the pattern of assimilate partitioning are discussedin detail. Assimilate partitioning, Lycopersicon esculentum, root confinement, plant growth, root growth, root resistance, shoot resistance, tomato, transpiration, water-use efficiency  相似文献   

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