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1.
Using excised low-salt roots of barley and Atriplex hortenslsthe transport of endogenous potassium through the xylem vesselswas studied It was enhanced by nitrate and additionally by sodiumions which apparently replaced vacuolar potassium which wasthen available in the symplasm of root cells for transport tothe shoot Vacuolar Na/K exchange also has been investigatedby measurements of longitudinal ion profiles in single rootsof both species. In Atriplex roots a change in the externalsolution from K+ to Na+ induced an exchange of vacuolar K+ forNa+, in particular in the subapical root tissues and led toincreased K+ transport and loss of K+ from the cortex. In inverseexperiments a change from Na+ to K+ did not induce an exchangeof vacuolar Na+; merely in meristematic tissues Na+—apparentlyfrom the cytoplasm—was extruded in exchange for K+. Inroots of barley seedlings without caryopsis, as in excised roots,a massive exchange of K+ for Na+ was observed in the continuouspresence of external 1.0 mM Na and 0.2 mM K. This exchange alsowas attributed to the vacuole and was most pronounced in theyoung subapical tissues. It did not occur, however, in the correspondingtissues in roots of fully intact barley seedlings. In these,the young tissues retained a relatively high K/Na ratio alsoin their vacuoles. Similarly, contrasting results were obtainedwith intact and excised roots of Zea mays L. Based on theseresults a scheme of the events that lead to selective cationuptake in intact barley roots is proposed. In this scheme acrucial factor of selectivity is sufficient phloem recirculationof K+ by the aid of which K+ rich cortical cells are formednear the root tip. When matured these cells are suggested tomaintain a high cytoplasmic K/Na ratio due to K+ dependent sodiumextrusion at the plasmalemma and due to recovery of vacuolarK+ by Na/K exchange across the tonoplast. Key words: Potassium/Sodium selectivity, Vacuolar exchange, Xylem transport, Hordeum, Zea, Atriplex  相似文献   

2.
The effects of growth and assay temperature on unidirectionalK+ fluxes in excised roots of rye (Secale cereale cv. Rheidol)were studied using 86Rb+ as a tracer. Both K+ influx to thevacuole, estimated as K+ uptake between 3 and 12 h after transferof unlabelled roots to radioactive solution, and movement ofK+ to the xylem were determined directly. Other fluxes weredetermined on excised roots of plants, which had been labelledwith 86Rb+ since germination, by conventional triple exponentialefflux analysis. When assayed at 20°C, roots of plants previously grown at20°C(WG roots) had lower rates of net K+ uptake than rootsof low temperature-acclimated plants, grown with a temperaturediferential between roots (87°C) and shoots (20°C) eithersince germination (DG roots) or for 3 d prior to experiments(DT roots). This resulted from a greater unidirectional K+ effluxacross the plasma membrane and a reduced K+ flux to the xylemin WG roots, compared to DG or DT roots, rather than a decreasein unidirectional K+ influx or a decrease in the net K+ fluxto the vacuole. Indeed, although WG roots had lower rates ofK+ influx and K+ efflux across the tonoplast at 20°C thanDG or DT roots, roots of plants from all growth temperaturetreatments showed an equivalent net K+ flux to the vacuole. Although all unidirectional K+ fluxes in roots from plants grownunder all temperature regimes were reduced by lowering the temperatureof the root, these fluxes were differentially affected in rootsof plants from contrasting growth temperature treatments. Rapidcooling to 8°C of WG roots resulted in a lower rate of K+influx and a transient increase in K+ efflux across both theplasma membrane and tonoplast, compared to DG and DT roots.Furthermore, since the K+ flux to the xylem was lower in WGroots, the net K+ uptake at 8°C into WG roots was considerablyreduced compared to DG and DT roots. These results suggest thatlow temperature-acclimation of K+ fluxes in rye roots may involvea reduction in the temperature sensitivity of K+ influx anda curtailment of K+ efflux across both the plasma membrane andtonoplast at low temperatures. Key words: K+influx, K+ efflux, low temperature, potassium, rye (Secale cereale cv. Rheidol)  相似文献   

3.
Effluxes of K+ and Ca2+ from root segments of both wheat, Triticunaestivum L. cv. Capelle and mung bean, Vigna radiata (L.) Wilczek,were measured in the presence or absence of 20 mol m–3para-fluorophenylalanine (p-FPA). The results were used to estimatethe compartment contents and transmembrane K+ and Ca2+ fluxesin root cortex cells. Using the Ussing-Teorell flux equationas the criterion, it was concluded that entry of K+ from theoutside solution to the cytoplasm, and from the cytoplasm tothe vacuole were active in both wheat and mung bean. Also, inboth species, Ca2+ entered the cytoplasm passively across theplasmalemma and was actively pumped back to the external solution.However, interpretation of the direction of active transportacross the tonoplast depends upon an assumption about Ca2+ activityin the cytoplasm. The only qualitative effect of p-FPA was to alter the drivingforce for K+ influx, across the plasmalemma in wheat, from anactive to a passive one. Quantitative effects of the analoguewere seen for K+ fluxes in both wheat and mung bean and forCa2+ fluxes in wheat. The p-FPA reduced transport of K+ in bothspecies, while transport of Ca2+ was unaffected. The implicationsof these results for the ‘two pump hypothesis’ arediscussed. Key words: Triticum aestivum, Vigna radiata, Two pump hypothesis  相似文献   

4.
The extent by which salinity affects plant growth depends partlyon the ability of the plant to exclude NaCl. To study the uptakeof NaCl into excised roots of Zea mays L. cv. ‘Tanker’,two different techniques were applied. A root pressure probewas used to record steady state as well as transient valuesof root (xylem) pressure upon exposure of the root to mediacontaining NaCl and KCl as osmotic solutes. In treatments withNaCl, pressure/time responses of the root indicated a significantuptake of NaCl into the xylem. NaCl induced kinetics were completelyreversible when the NaCl solution was replaced by an isosmoticKCl solution. This indicated a passive movement of Na+-saltsacross the root cylinder. Root samples were taken at differenttimes of exposure to NaCl and prepared for X-ray microanalysis(EDX analysis). Radial profiles of ion concentrations (Na+,K+, Cl) were measured in cell vacuoles and xylem vesselsalong the root axis. Na+ appeared rapidly in mature xylem (earlymetaxylem) and living xylem (late metaxylem) before it was detectablein vacuoles of the root cortex. EDX results confirmed that thekinetics observed by the pressure probe technique correspondedmainly to an influx of Na+-salts into early metaxylem. In latemetaxylem, the uptake of Na+ was associated with a decline ofK+. The Na+/K+ exchange indicated a mechanism to reduce sodiumfrom the transpiration stream. Ion localization, ion transport, maize, root pressure, salinity, water relations, X-ray microanalysis, Zea mays  相似文献   

5.
Siddiqi, M. Y. and Glass, A. D. M. 1987. Regulation of K+ influxin barley: Evidence for a direct control of influx by K+ concentrationof root cells.—J. exp. Bot. 38: 935–947. The kinetics of K+ (86Rb+) influx into intact roots of barley(Hordeum vulgare L. cv. Fergus) seedlings having different combinationsof root and shoot [K+], different growth rates and differentroot:shoot weight ratios were studied. K+ influx was stronglycorrelated with root [K+]; shoot [K+], growth rates, and root:shoot ratios appeared to have little effect on K+ influx. Adetailed study showed that both Vmax and Km for K+ influx wereaffected by root [K+] but not by shoot [K+]. We have suggestedthat factors such as growth rates and root: shoot ratio mayaffect K+ influx indirectly primarily via their influence onroot factors such as root [K+]. We have reiterated that othertypes of kinetic control, e.g. increased or decreased synthesisof ‘carrier systems’, may operate in addition todirect (allosteric?) control of K+ influx by root [K+]. Thenegative feedback signal from root [K+] appeared to be the primeeffector in the regulation of K+ influx. Key words: Barley, K+ influx  相似文献   

6.
Hordeum vulgare cv. California Mariout was grown for 50 d insand culture at 100 mol m–3 NaCl. Xylem sap was collectedthrough incisions at the base of individual leaves along thestem axis by applying pressure to the root system. K+ concentrationsin the xylem sap reaching individual leaves increased towardsthe apex, while concentrations of Na+, NO3, and Cldeclined. Phloem exudate was obtained by collecting into Li2EDTAfrom the base of excised leaves. K/Na ratios of phloem exudatesincreased from older to younger leaves. K/Na ratios in xylem sap and phloem exudate were combined withchanges in ion content between two harvests (38 and 45 d aftergermination) and the direction of phloem export from individualleaves, to construct an empirical model of K+ and Na+ net flowswithin the xylem and phloem of the whole plant. This model indicatesthat in old leaves, phloem export of K+ greatly exceeded xylemimport. In contrast, Na+ export was small compared to importand Na+ once imported was retained within the leaf. The direction of export strongly depended on leaf age. Old,basal leaves preferentially supplied the root, and most of theK+ retranslocated to the roots was transferred to the xylemand subsequently became available to the shoot. Upper leavesexported to the apex. Young organs were supplied by xylem andphloem, with the xylem preferentially delivering Na+ , and thephloem most of the K+ . For the young ear, which was still coveredby the sheath of the flag leaf, our calculation predicts phloemimport of ions to such an extent that the surplus must havebeen removed by an outward flow in the xylem. Within the culm,indications for specific transfers of K+ and Na+ between xylemand phloem and release or absorption of these ions by the tissuewere obtained. The sum of these processes in stem internodes and leaves ledto a non-uniform distribution of Na+ and K+ within the shoot,Na+ being retained in old leaves and basal stem internodes,and K+ being available for growth and expansion of young tissues. Key words: Hordeum vulgare L., K+, Na+, stem, salt stress  相似文献   

7.
Caesium (Cs+) is a potentially toxic mineral element that isreleased into the environment and taken up by plants. AlthoughCs+ is chemically similar to potassium (K+), and much is knownabout K+ transport mechanisms, it is not clear through whichK+ transport mechanisms Cs+ is taken up by plant roots. In thisstudy, the role of AtHAK5 in high affinity K+ and Cs+ uptakewas characterized. It is demonstrated that AtHAK5 is localizedto the plasma membrane under conditions of K+ deprivation, whenit is expressed. Growth analysis showed that AtHAK5 plays arole during severe K+ deprivation. Under K+-deficient conditionsin the presence of Cs+, Arabidopsis seedlings lacking AtHAK5had increased inhibition of root growth and lower Cs+ accumulation,and significantly higher leaf chlorophyll concentrations thanwild type. These data indicate that, in addition to transportingK+ in planta, AtHAK5 also transports Cs+. Further experimentsshowed that AtHAK5 mediated Cs+ uptake into yeast cells andthat, although the K+ deficiency-induced expression of AtHAK5was inhibited by low concentrations of NH  相似文献   

8.
The uptake of K+ by plant roots is matched to the demand forK+ for growth. The growing shoot must communicate its K+ requirementto the root. It has been suggested that this might be effectedby varying the amount of K+ retranslocated from the shoot tothe root via the phloem. It is predicted that less K+ is returnedto the roots in K+-deficient plants and that this promotes compensatoryK+ uptake from the external medium. These experiments addressthis hypothesis. Rye (Secale cereale L.) was grown hydroponically in completenutrient solutions containing either 100 aM or 400 µMK+. Plant development, shoot fresh weight (FW) and plant drymatter accumulation did not differ between seedlings grown atthese K+ concentrations. However, root FW was lower in seedlingsgrown in solutions containing 100 µM K+, which resultedin a greater shoot/root FW ratio. Seedlings from both treatmentshad similar shoot K+ concentrations, but the root K+ concentrationof seedlings grown In solutions containing 100 µM K+ wasless than their counterparts grown at 400 µM K+. When assayed at the same K+ concentration, unidirectional K+(86Rb+) influx into 14-d-old seedlings grown with 100 µMK+ in the nutrient solution was greater than that into seedlingsgrown with 400 µM K+ in the nutrient solution, indicatingan increased K+ influx capacity in the former. Furthermore,K+ (86Rb+) influx into seedlings grown and assayed at 100 µMK+ was greater than that into seedlings grown and assayed at400 µM K+. Since net K+ uptake was lower in the seedlingsgrown at 100 µM K+, this indicates a greater unidirectionalK+ efflux from roots in solutions containing 100 µM K+. An empirical model, based on the immobility of calcium in thephloem, was used to describe quantitatively K+ fluxes in seedlings14 d after sowing. As primary data, the composition of xylemsap and the accumulation of elements in root and shoot tissueswere determined. Xylem sap was collected either as root-pressureexudate or from excised roots immersed in nutrient solutionand subjected to a pneumatic pressure of 0.4 MPa. The K:Ca ratioin these saps differed, and led to contrasting conclusions concerningthe effect of K+ nutrition on the recirculation of K+. Basedon the K:Ca ratio in the sap obtained following the applicationof pneumatic pressure, which is thought to resemble that ofintact transpiring plants, it was calculated that the K+ fluxfrom the shoot to the root was higher in seedlings maintainedin solutions containing higher K+ concentrations. This suggeststhat a negative feedback mechanism based on K+ recirculationfrom the shoot to the root via the phloem could be a primarysignal decreasing K+ influx. Key words: K+ influx, K+ recirculation, regulation, root, rye, Secale cereale L  相似文献   

9.
Guttation was used as a non-destructive way to study the flowof water and mineral ions from the roots and compared with parallelmeasurements of root exudation. Guttation of the leaves of barley seedlings depends on age andon the culture solution. Best rates of guttation were obtainedwith the primary leaves of 6- to 7-day-old seedlings grown onfull mineral nutrient solution. The growing leaf tissue becomessaturated with K+ below 1.5 mM K+ in the medium, whereas K+concentration in the guttated fluid still increases furtheras K+ concentration in the medium is raised. At 3 mM K+ averagevalues of guttation were 1.4–2.4 mm3 h–1 per plantwith a K+ concentration of 10–20 mM; for exuding plantsthe flow was 4.2–7.6 mm3 h–1 per plant and K+ concentration35–55 mM. Abscisic acid (ABA) at 10–6 to 10–4 M 0–2h after addition to the root medium increased volume flow ofguttation and exudation and the amount of K+ exported. Threeh after addition of ABA both volume and amount of K+ were reduced.There was an ABA-dependent increase in water permeability (Lp)of exuding roots shortly after ABA addition. Later Lp was decreasedby 35 per cent and salt export by 60 per cent suggesting aneffect of ABA on salt transport to the xylem apart from itseffect on Lp. Benzyladenine (5 x 10–8 to 10–5 M)and kinetin (5 x 10–6 M) progressively reduced volumeflow and K+ export in guttation and exudation and reduced Lp. Guttation showed a qualitatively similar response to phytohormonesas found here and elsewhere using exuding roots. Hordeum vulgare L., barley, guttation, abscisic acid, cytokinins, benzyl adenine, kinetin  相似文献   

10.
Unidirectional fluxes and the cytoplasmic and vacuolar contentsof potassium and sodium in root cells of intact barley seedlings(Hordeum vulgare L., cv. Villa) were determined by use of compartmentalanalysis. In addition, the net vacuolar accumulation Jcv andthe xylem transport øcx of K+ and Na+ were measured.Both of these data were needed for the evaluation of the effluxdata. Fluxes and compartmental contents of K+ and Na+ were comparableto data obtained with excised roots. The effect of the shoot-to-rootratio—as varied by partial excision of the seedlings seminalroots—on the fluxes and contents was investigated. Highershoot-to-root ratios induced an increase in xylem transport,in plasmalemma influx, and also in the cytoplasmic content ofK+ and Na+. With potassium the plasmalemma efflux was almostunaltered while the tonoplast fluxes and vacuolar content weredecreased (in presence of Na+). With sodium, on the other hand,the plasmalemma efflux and the tonoplast fluxes were also increasedin the plants having one root and a high shoot-to-root ratio.These changes occurred even under conditions of low humidity,when transpiration was low and guttation occurred. The latterwas also increased at the high shoot-to-root ratio. The observedchanges could be due to a relieved feedback control of ion fluxesby the shoot and mediated in part by a relatively higher supplyof photosynthates in the plants having one root In addition,hormonal signals were suggested to participate. In particulara possibly decreased level of cytokinins in the plants havingonly one root could contribute to the signal. The observed changesappear to be responses of the plant to an alteration that canoccur under natural conditions when the root system is damaged.  相似文献   

11.
Using the compartmental analysis the unidirectional Na+ fluxesin cortical cells of barley roots, the cytoplasmic and vacuolarNa+ contents Qc and Qv, and the trans-root Na+ transport R'have been studied as a function of the external Na+ concentration.Using the re-elution technique the effect of low K+ concentrationson the plasmalemma efflux co of Na+ (K+-Na+ exchange) and onR' was investigated at different Na+ concentrations and correspondinglydifferent values of the cytoplasmic sodium content Qc. The relationof the K+-dependent Na+ efflux coK+-dep to Qc or to the cytoplasmicNa+ concentration obeyed Michaelis-Menten kinetics. This isconsistent with a linkage of co, K+-dep to K+ influx by a K+-Na+exchange system. The apparent Km corresponded to a cytoplasmicNa+ concentration of 28 mM at 0·2 mM K+ and about 0·2mM Na+ in the external solution. 0·2 mM K+ stimulatedthe plasma-lemma efflux of Na+ and inhibited Na+ transport selectivelyeven in the presence of 10 mM Na+ in the external medium showingthe high efficiency of the K+-Na+ exchange system. However,co, K+-dep was inhibited at 10 mM Na1 compared to lower Na1concentrations suggesting some competition of Na1 with K1 atthe external site of the exchange system. The effect of theNa+ concentration on Na1 influx oc is discussed with respectto kinetic models of uuptake.  相似文献   

12.
This paper reports the effects of low O2 concentration (0–01,0–055, and 0.115mol m–3) in nutrient solutions onK+/Na+ selectivity of growing and mature root tissues of 6-to 8-d-old, intact, wheat (Triticum aestivum cv. Gamenya) seedlings. Increases in anaerobic catabolism and decreases in O2 uptake,K+ uptake and K+/Na+ selectivity were all more pronounced and/oroccurred at higher external O2 concentrations in the apex (0–2mm) than in the expanding tissues (2–4 mm); these growingtissues were, in turn, more affected than the expanded tissuesof the roots (4–12 mm). Selectivity for K+ over Na+ in roots and shoots was particularlysensitive to O2 deficiency. For example, in apical tissues (0–2mm) K + /Na+ selectivity was already reduced at 0.115 mol m–3O2, yet at this O2 concentration there was no effect on eithergrowth or (K+/Na+) uptake. Upon transfer from 0.01 to 0.26 mol m–3 O2, a detailedstudy of the 12 mm root tips showed that 70% of these tips regainedhigh (K+ + Na+) concentrations and K+/Na+ ratios. In contrast,there was no recovery in the remaining 30% of the 12 mm roottips. Net K+ transport to the shoots during the period afterre-aeration was negative for the population as a whole. Theseverity of these effects supports the view that the root tipsand the stele were more susceptible to O2 deficiency than wasthe cortex of the fully-developed root tissues. Key words: Hypoxia, K+/Na+ selectivity, expanded and expanding tissues  相似文献   

13.
Previous papers have shown that abscisic acid can inhibit transportof ions across the root to the xylem vessels, resulting in reducedexudation from excised roots or inhibiting guttation from intactplants. However, it has not been established whether the inhibitionwas due to a reduction in salt transport (Js) or in permeabilityof the roots to water (Lp). This paper investigates the effectof ABA on Lp and Js separately. It is shown that Lp increasedin ABA and then fell, but was about the same as in control rootswhen transport was inhibited. The effect of ABA on exudationtherefore appeared to be mainly due to reduction in Js. Inhibitionof Js was also present in intact, transpiring plants and sowas not due to reduced water flow. The inhibition of ion releaseto the xylem affected Na+, Mg2+, Ca2+, and phosphate as wellas the major ion in the exudate, K+. It is concluded that ABAinhibits salt transport to the shoot by acting on ion transportinto the xylem, and not by reducing water flow coupled withsalt transport.  相似文献   

14.
Activation of K+ channels induces apoptosis in vascular smooth muscle cells   总被引:10,自引:0,他引:10  
Intracellular K+ playsan important role in controlling the cytoplasmic ion homeostasis formaintaining cell volume and inhibiting apoptotic enzymes in thecytosol and nucleus. Cytoplasmic K+ concentration is mainlyregulated by K+ uptake viaNa+-K+-ATPase and K+ efflux throughK+ channels in the plasma membrane. Carbonyl cyanidep-trifluoromethoxyphenylhydrazone (FCCP), a protonophorethat dissipates the H+ gradient across the inner membraneof mitochondria, induces apoptosis in many cell types. In ratand human pulmonary artery smooth muscle cells (PASMC), FCCP opened thelarge-conductance, voltage- and Ca2+-sensitiveK+ (maxi-K) channels, increased K+ currentsthrough maxi-K channels [IK(Ca)], and inducedapoptosis. Tetraethylammonia (1 mM) and iberiotoxin (100 nM)decreased IK(Ca) by blocking the sarcolemmalmaxi-K channels and inhibited the FCCP-induced apoptosis inPASMC cultured in media containing serum and growth factors.Furthermore, inhibition of K+ efflux by raisingextracellular K+ concentration from 5 to 40 mM alsoattenuated PASMC apoptosis induced by FCCP and theK+ ionophore valinomycin. These results suggest thatFCCP-mediated apoptosis in PASMC is partially due to anincrease of maxi-K channel activity. The resultant K+ lossthrough opened maxi-K channels may serve as a trigger for cellshrinkage and caspase activation, which are major characteristics ofapoptosis in pulmonary vascular smooth muscle cells.

  相似文献   

15.
Cytochrome c activates K+ channels before inducing apoptosis   总被引:10,自引:0,他引:10  
Cellshrinkage is an early prerequisite for apoptosis. Theapoptotic volume decrease is due primarily to loss ofcytoplasmic ions. Increased outward K+ currents have indeedbeen implicated in the early stage of apoptosis in many celltypes. We found that cytoplasmic dialysis of cytochrome c(cyt-c), a mitochondria-dependent apoptotic inducer,increases K+ currents before inducing nuclear condensationand breakage in pulmonary vascular smooth muscle cells. Thecyt-c-mediated increase in K+ currents tookplace rapidly and was not affected by treatment with a specificinhibitor of caspase-9. Cytoplasmic dialysis of recombinant (active)caspase-9 negligibly affected the K+ currents. Furthermore,treatment of the cells with staurosporine (ST), an apoptosisinducer that mediates translocation of cyt-c frommitochondria to the cytosol, also increased K+ currents,caused cell shrinkage, and induced apoptosis (determined byapoptotic nuclear morphology and TdT-UTP nick end labeling assay).The staurosporine-induced increase in K+ currents concurredto the volume decrease but preceded the activation of apoptosis(nuclear condensation and breakage). These results suggest that thecyt-c-induced activation of K+ channels and theresultant K+ loss play an important role in initiating theapoptotic volume decrease when cells undergo apoptosis.

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16.
Plants of Lupinus albus L., cv. Ultra, were grown hydroponicallywith NO3-nutrition for 51 d under control (0.05 mol m–3Na+ and 10 mol m–3 Cl) and saline (40 mol m–3NaCI) conditions. Plants were harvested 41 and 51 d after germinationand analysed for content and net increment of C, N and the mineralcations K+, Na+, Mg2+, and Ca2+ and the anions Cl, NOJ,malate, phosphate, and SO42–. Roots, stem interaodes,petioles and leaflets were analysed separately. During the studyperiod net photosynthesis, respiratory losses of CO2 from shootand root and the composition of the spontaneously bleeding phloemsap and the root pressure xylem exudate were also determined.Using molar ratios of C over N in the transport fluids, incrementsof C and N, and photosynthetic gains as well as respiratorylosses of C, the net flows of C and N in the xylem and phloemwere then calculated as in earlier studies (Pate, Layzell andMcNeill, 1979a). Knowing the carbon flows, the ratios of ionto carbon in the phloem sap, and ion increments in individualorgans, net flows of K+, Na+, and Cl over the study periodwere also calculated. Salt stress led to a general decrease of all partial componentsof C and N partitioning indicating that inhibitions were notdue to specific effects of NaCI salinity on photosynthesis oron NO3 uptake. However, there were differences between variouslyaged organs, and net phloem export of nitrogenous compoundsfrom ageing leaves was substantially enhanced under saline conditions.In addition, NO3reduction in the roots was specificallyinhibited. Uptake and xylem transport of K+ was more severelyinhibited than photosynthetic carbon gain or NO3 uptakeby the root. K+ transport in the phloem was even more severelyrestricted under saline conditions. Na+ and Cl flowsand uptake, on the other hand, were substantially increasedin the presence of salt and, in particular, there were thenmassive flows of Na in the phloem. The results are discussedin relation to the causes of salt sensitivity of Lupinus albus.The data suggest that both a restriction of K+ supply and astrongly increased phloem translocation of Na+ contribute tothe adverse effects of salt in this species. Restriction ofK+ supply occurs by diminished K+ uptake and even more by reducedK+ cycling within the plant. Key words: Lupinus albus, salt stress, phloem transport, xylem transport, partitioning, carbon, nitrogen, K+, Na+, CI  相似文献   

17.
The effects of some amino acid analogues (o-, m- and p-fluorophenylalanineand azetidine-2-carboxylic acid) on uptake of42K and 45Ca intothe roots and transport to the shoots of whole wheat and mungbean seedlings were measured. The effect of each analogue oneither K+ or Ca2+ movement could be placed into one of fourcategories: (1) No effect on either ion uptake or transport;(2) No effect on ion uptake, but a reduction in transport; (3)Similar reductions in ion uptake and transport; (4) A relativelygreater reduction in ion transport than in uptake. At leasttwo independent sites of protein involvement in ion movementwere required to account for all four types of analogue effectobserved; one site of protein involvement was probably at theplasmalemma of root cortex cells and the second site, involvinga protein that turned over more quickly, was within the stele.Some evidence was found that Ca2+ transport is a passive process.Light did not stimulate uptake. Key words: Triticum aestivum, Vigna radiata, Two pump hypothesis  相似文献   

18.
The effects of sodium chloride salinity and root oxygen deficiency(anoxia) were studied in 11-12d old maize plants (Zea mays L.cv. LG 11) in nutrient solution culture. Transport of 22Na bythe roots to the shoot in 24 h was markedly increased by anoxiawhen the external concentration of NaCl was in the range 0·1-10·9mol m–3. Anoxia severely inhibited uptake of 42K by rootsand its transport to the shoot, so that the ratio of Na+/K+moving into the shoot was increased by a factor of approximately10. When the external concentration of NaCl was increased to2.4 mol m–3, the roots showed much less ability to excludeNa+ under aerobic conditions, and anoxia caused no further increasein the movement of Na+ to the shoot. It is concluded that atthe higher concentration the ability of the roots to excludeNa+, presumably through an active mechanism in the xylem parenchymacells or in the root cortex and transporting Na+ to the outersolution, is saturated by excessive inward diffusion of Na+.The ratio of Na+/K+ transported to the shoot increased by afactor of 600 when the concentration of NaCl was increased from2·4 mol m–3 to 40 mol m–3 and roots weremade anoxic. Such imbalances in the supply of cations to theshoot, particularly when roots are oxygen-deficient, may contributeto salinity damage. Key words: Anaerobic, Anoxic, Oxygen deficiency, Roots, Salinity, Salt stress, Sodium chloride, Zea mays  相似文献   

19.
Cucumber (Cucumis sativus L.) seedlings were grafted onto cucumber-(CG) or figleaf gourd- (FG, Cucurbita ficifolia Bouché)seedlings in order to determine the effect of solution temperature(12, 22, and 32°C) on the mineral composition of xylem sapand the plasma membrane K+-Mg++-ATPase activities of the roots.Low solution temperature (12°C) lowered the concentrationof NO3 and H2PO4 in xylem sap of CG plants butnot of FG plants. Concentrations of K+, Ca++ and Mg++ in xylemsap were less affected than anions by solution temperature.The plasma membrane of FG plants grown in 12°C solutiontemperature showed the highest K+- Mg++-ATPase activity at allATP concentrations up to 3 mM and at low reaction temperatureup to 12°C, indicating resistance of figleaf gourd to lowroot temperature. (Received December 27, 1994; Accepted March 10, 1995)  相似文献   

20.
The effects of Ca2+ in the external medium on intact mung beanroots under high NaCl stress were investigated. With increasingexternal concentrations of NaCl, mung bean roots showed suppressionof elongation and a decrease in the intracellular concentrationof K+. Addition of Ca2+ to the external medium alleviated theinhibition of root elongation under the high NaCl stress andmaintained a high intracellular concentration of K+ in the elongatingregion of the roots. This counter effect of Ca2+ against theNaCl stress on roots was correlated with the ratio of [Ca2+]/[Na+]2in the external medium. A value above 5.0 ? 10–4 mM–1resulted in almost complete recovery of root elongation undervarious high concentrations of NaCl. Root elongation for 24h under NaCl stress was correlated with the extent to whichthe intracellular concentration of K+ was in excess of 10 mM.Maintenance of an adequate concentration of K+ in root cellsis essential for root elongation under salt stress. These findingsindicate that Ca2+ prevents the leakage of intracellular K+and thereby supports the elongation of roots under salt stress. (Received November 13, 1989; Accepted June 5, 1990)  相似文献   

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