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1.
Radial salt transport in corn roots   总被引:10,自引:9,他引:1       下载免费PDF全文
Yu GH  Kramer PJ 《Plant physiology》1967,42(7):985-990
Primary roots of solution-grown, 5-day-old or 6-day-old seedlings of corn (Zea mays L.) 10 to 14 cm in length were used to study radial salt transport. Measurements were made of the volume of root pressure exudation, salt concentration of the exudate, and rate of salt movement into the xylem exudate. The 32P uptake, O2 consumption, and dehydrogenase activity of the root cortex and stele also were studied.

These roots produced copious root pressure exudate containing 4 to 10 times the concentration of 32P in the external solution. Freshly separated stele from 5-day-old roots accumulated 32P as rapidly as the cortex from which it was separated and the stele of intact roots also accumulated 32P. Separated stele has a higher oxygen uptake than cortex. It also shows strong dehydrogenase activity with the tetrazolium test. The high oxygen consumption, 32P uptake and strong dehydrogenase activity indicate that the cells of the stele probably play a direct role in salt transport.

These data raise doubts concerning theories of radial salt transport into the xylem based on the assumption that the stele is unable to accumulate salt vigorously.

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2.
When the seminal root system of 14-day-old corn (Zea mays cv. Dekalb 202) was subjected to O2 stress, nodal roots with well developed cortical air spaces (aerenchyma) grew into the deoxygenated solution. Microscopic examination showed that there was extensive breakdown of cells in the midcortex of these roots, while the stele, endodermis, and inner layer of cortical cells remained complete, as did the outer layers of the cortex and the epidermis. Occasional files of intact cells, and the wall residues of collapsed cells, crossed the space between inner and outer cortex. Experiments with short, intact root segments with and without air spaces showed that in the presence of O2 the ability to absorb and translocate 86Rb+, per unit volume or length of root, was little affected by cortical degeneration. The distribution across root sections of recently supplied strontium and rubidium, determined by electron microprobe analysis, indicated that in roots with air spaces the strands of wall residues bridging the cortex could be involved in maintaining the conduction of ions from the outer cortex up to the endodermis.  相似文献   

3.
Abscisic acid (ABA) was found to increase the accumulation of 36Cl, total Cl, 22Na and total Na+ in roots of intact bean seedlings. After an initial promotion. ABA inhibited longdistance transport of these ions from the root to the shoot. However, it consistently inhibited both uptake and transport of 42K and total K+ in intact bean seedlings. A promotion of net 36Cl influx (ψoc) and its accumulation in the root (Q*v) concomitant decrease in transport index (long-distance transport as percentage of total influx) showed that ABA stimulates -36Cl transport at the tonoplast. It inhibited H4 extrusion and net 86Rb influx which agrees with a cation exchange theory K+/Rb+ transport.  相似文献   

4.
D. A. Baker 《Planta》1973,112(4):293-299
Summary The accumulation of 86Rb labelled potassium by isolated stelar and cortical tissues from 7-day-old roots of Zea mays has been compared with the levels accumulated by these tissues in the intact root. Cortical tissues have similar uptake eapacities in these two conditions whereas stelar tissues only exhibit an uptake capacity in the intact root system. The uncoupler carbonylcyanide m-chlorophenylhydrazone caused a considerable decrease in the uptake of potassium by these tissues. In the intact root system it prevented ions from the bathing medium reaching the stelar tissues. The efflux pattern from preloaded isolated stelar and cortical tissues was considerably altered by the inhibitor, a promotion of the efflux occurring in both of these tissues.It is concluded that stelar tissues only accumulated ions when these are supplied through the root symplasm and that the stelar plasmalemma has only a limited uptake capacity per se. Stelar uptake is thus a reflection of vacuolar accumulation across the tonoplast. There is no evidence in the present study of a carrier-mediated active secretion of ions across the stelar plasmalemma. The fact that the efflux was promoted rather than depressed by the uncoupler supports the postulate that a passive leakage is the final stage in the transport of ions across the plant root.  相似文献   

5.
Lewis D. Dove 《Planta》1969,86(1):1-9
Summary Root systems from plants grown in nutrient solution were exposed to air and either transferred to fresh nutrient solution containing 32P-labeled phosphate or placed in a psychrometer to determine their water potential. The amount of 32P absorbed by maize and soybean roots in the hour following their exposure to air was proportional to their water potential at the time they were transferred. Some cells, probably located in the stele, were more resistant to moisture stress than others. Absorption of 32P by all cells was severely inhibited by water potentials below-12 to-15 bars. Nearly normal amounts of the radioisotope and total phosphate were absorbed within 72 hr following root exposure of 4 of 5 species of detopped plants; some phosphorus was lost to the nutrient solution. Uptake of 32P by passive processes was increased slightly by exposure of roots of intact maize plants to air, but the increase did not compensate for the substantial reduction in actively-absorbed 32P.  相似文献   

6.
The plasma membrane fractions from separated cortex and stele of primary roots of corn (Zea mays L. WF9 × M14) contained cation ATPase activity at similar levels but with somewhat different properties. ATPase activity from cortex was optimum at pH 6.5, showed a simple Michaelis-Menten saturation with increasing ATP·Mg, and showed complex kinetic data for K+ stimulation similar in character to the kinetic data for K+-ATPase and K+ influx in primary roots. The results for cortex indicate that homogenates of primary roots are dominated by membranes from cortical cells.

ATPase activity from stele was optimum at pH 6.5 and showed another maximum at pH 9. At pH 6.5, activity from stele had properties similar to that from cortex except that the kinetics of K+ stimulation closely approached that expected for a Michaelis-Menten enzyme. At pH 9, the enzyme activity from stele was inhibited by 5 μg/ml oligomycin, suggesting that a significant portion of the activity was of mitochondrial origin. Sucrose density gradient analysis indicated some contamination of mitochondrial membranes in the plasma membrane fraction from stele. The results for stele are consistent with the view that stelar parenchyma cells are not deficient in ion pumps.

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7.
Josef Weigl 《Planta》1971,98(4):315-322
Summary Fluxes, accumulation and transport rates of Cl- in excised corn roots were investigated.Flux equilibrium in 5×10-4M KCl was not reached within an experimental period of 28 hr.Transport of Cl- (5×10-4M KCl) through the xylem of 4–6 cm long excised corn roots had a lag of 1–2 hr. From 6 to 28 hr rates of accumulation and transport were nearly constant (5×10-4M KCl). The velocity of volume-flow within the xylem was 1.5–2 cm hr-1 (5×10-4M KCl). 36Cl--efflux through the cut end of roots preloaded in K36Cl of low concentration exhibits a discontinuity which is explained by addition of two fluxes: efflux of ions concentrated in the xylem (and symplasm) plus efflux from the vacuoles through the xylem.Accumulation of Cl- by excised roots approaches a maximum level (Jackson and Edwards, 1966). Influx rates remain constant while efflux rates increase with time. It is shown in this paper that the flux of Cl- through the xylem becomes a large proportion of the influx across the plasmalemma. Flux rates suggest that more than 50% of the Cl- ions transported to the xylem passed through a vacuole (5×10-4M KCl; 20–28 hr).  相似文献   

8.
Summary Roots of 3.5-day-old seedlings of Zea mays cv. Giant White Horsetooth contain an extractable auxin which has chromatographic properties and reactions to chromogenic sprays identical with those of indole-3-acetic acid (IAA). By separating stele from cortex (and root tips) before extraction it was shown that the auxin is localized predominantly in the stele, with little being found in the cortex. Whole roots, isolated cortices and isolated steles accumulate and metabolize exogenously applied IAA-1-14C. The stelar tissue is distinguished from whole roots and cortical tissue in having a different pattern of IAA metabolism.  相似文献   

9.
Luttge U  Laties GG 《Plant physiology》1966,41(9):1531-1539
The characteristics of ion transport to the shoots of young corn seedlings were studied with respect to the nature of the isotherm through a wide concentration range, the competitive influence of closely related ions upon the transport of a given ion, and the influence of the counter-ion. Both with respect to 36Cl and 86Rb transport, the characteristics of the process in every way resemble uptake by non-vacuolate root tips wherein the plasma membrane is the only membrane involved in absorption, and where system 1 — of the 2 systems which can be shown to participate in absorption by vacuolate tissue — is the only system operative. Net ion uptake by the roots per se was shown to display both the high affinity (system 1) and low affinity (system 2) mechanisms. It is concluded that the symplastic theory of ion movement to the xylem is valid, and that the contention that system 1 operates at the plasma membrane while system 2 functions at the tonoplast is strengthened.  相似文献   

10.
Summary Using carrier free32P, tagged single superphosphate and86Rb, the efficiency of different methods of plant injection and soil placement techniques for fertilizer application was examined. In the plant injection techniques the radioactivity was fed to the palms through growing roots tips, cut ends of roots, stem injection and leaf axils. The application of radioactivity through the cut ends of roots was most efficient since32P was detected in 10 m tall palms, four hours after application. In stem, leaf axil and growing roots tips injection the32P was detected after 8, 12 and 18 h. Out of four methods of soil application, the quickest recovery of32P in the palms was detected after 7 days of placement when applied by the hole method. The32P activity in the palms through circular trenches, strips and basin methods was recorded after 8, 8 and 11 days of application respectively. The accumulation of86Rb was significantly higher than32P. With plant injection technique the accumulation of activity was found to be significantly higher than with soil placement methods. The rate of radioactivity absorption was 10 to 60 time faster in the former technique as compared to that of the latter. The application of radioactivity through cut ends of roots and circular trench methods, were found to be better and may be recommended for nutrient application in coconut.  相似文献   

11.
Cotton (Gossypium hirsutum L. cv. Deltapine 15/21) plants were precultured for 19 to 25 days under controlled climatic conditions in nutrient solutions with different levels of Zn. With the onset of visual Zn-deficiency symptoms the pH of the nutrient solution decreased from 6.0 to about 5.0. In contrast, Zn-sufficient plants raised the pH of the nutrient solution to about 7.0. In short-term studies it could be demonstrated that the Zn nutritional status of the plants remarkably influenced the uptake and translocation rates of mineral nutrients. Compared to Zn-sufficient plants, P uptake rate in severely Zn-deficient plants was increased by a factor of 2 to 3, whereas the uptake rates of K, Ca and particularly NO3 decreased. The accumulation of P in the roots of Zn-deficient plants was either not affected or even lower than in Zn-sufficient plants. Thus, Zn deficiency had a specific enhancement effect on root to shoot transport of P. This enhancement effect of Zn deficiency on uptake and transport of P was similar at nutrient solution pH values of 7.0 and 5.8; i.e. it was not the result of acidification of the nutrient solution. After application of 36CI, 86Rb and 32P to plant stems, basipetal transport of 36CI and 86Rb was not affected by the Zn nutritional status of the plants. However, in Zn-deficient plants, only 7.8% of the 32P was translocated basipetally compared to 34% in the Zn-sufficient plants. A resupply of Zn for 19 h to Zn-deficient plants enhanced basipetal 32P transport. The results indicate that a feedback mechanism in the shoots is impaired in Zn-deficient plants which controls the P uptake by roots and especially the P transport from roots to shoots. As a result of this impairment toxic concentrations of P accumulate in the leaves. The mechanism responsible is likely the retranslocation of P in the phloem from shoots to roots.  相似文献   

12.
In this paper, uptake and distribution of sodium and potassium within the mesocotyl are considered in excised, 8-day-old corn (Zea mays L.) seedlings supplied with label via the transpiration stream. The stele and cortex were dissected following uptake and analyzed separately. At equal concentrations, sodium uptake by the stele was much more rapid than potassium uptake, and sodium was preferentially retained within the stele. Transport of sodium to the cortex halted when the supply of ions in the transpiration stream was interrupted. Potassium would not substitute for sodium in restoring this transport but neither did it compete with sodium for transport to the cortex. In the presence of continued sodium supply, transport was temperature sensitive.

By labeling first with 22Na for 2 hours and subsequently with 24Na for up to 21 hours, three sodium pools were identified within the stele. The first was rapidly transportable to the cortex. The second equilibrated rapidly with the first but was not itself directly available for transport. We postulate that these represent the stelar symplasm and apoplasm, respectively. A third pool was not transported and probably represents sequestration within the vacuoles of some cell type. Transport of label acquired during the initial 2 hours proceeded with a half-time of approximately 10 hours with 10 millimolar sodium present during the redistribution period, and with a half-time of approximately 30 hours at 1 millimolar sodium.

A working model is presented which explains these characteristics and supplies approachable questions for subsequent study.

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13.
This investigation presents metabolic evidence to show that in 4- to 5-day-old roots of maize (Zea mays hybrid GH 5010) exposed to low external O2 concentrations, the stele receives inadequate O2 for oxidative phosphorylation, while the cortex continues to respire even when the external solution is at zero O2 and the roots rely solely on aerenchyma for O2 transport. Oxygen uptake rates (micromoles per cubic centimeter per hour) declined at higher external O2 concentrations in excised segments from whole roots than from the isolated cortex; critical O2 pressures for respiration were greater than 0.26 moles per cubic meter O2 (aerated solution) for the whole root and only 0.075 moles per cubic meter O2 for the cortex. For plants with their shoots excised and the cut stem in air, ethanol concentrations (moles per cubic meter) in roots exposed to 0.06 moles per cubic meter O2 were 3.3 times higher in the stele than in the cortex, whereas this ethanol gradient across the root was not evident in roots exposed to 0 moles per cubic meter O2. Alanine concentrations (moles per cubic meter) in the stele of roots exposed to 0.13 and 0.09 moles per cubic meter O2 increased by 26 and 44%, respectively, above the levels found for aerated roots, whereas alanine in the cortex was unchanged; the increase in stelar alanine concentration was not accompanied by changes in the concentration of free amino acids other than alanine. For plants with their shoots intact, alcohol dehydrogenase and pyruvate decarboxylase activities (micromoles per gram protein per minute) in roots exposed to 0.13 moles per cubic meter O2 increased in the stele by 40 to 50% over the activity in aerated roots, whereas there was no appreciable increase in alcohol dehydrogenase and pyruvate decarboxylase activity in the cortex of these roots. More convincingly, for roots receiving O2 solely from the shoots via the aerenchyma, pyruvate decarboxylase in the cortex was in an “inactive” state, whereas pyruvate decarboxylase in the stele was in an “active” state. These results suggest that for roots in O2-free solutions, the aerenchyma provides adequate O2 for respiration in the cortex but not in the stele, and this was supported by a change in pyruvate decarboxylase in the cortex to an active state when the O2 supply to the roots via the aerenchyma was blocked.  相似文献   

14.
Uptake and fluxes of sodium, rubidium (instead of potassium), and chloride ions in segments of 3-week-old sugar beet roots were studied. Radioactive 22Na, 86Rb and 36Cl were used for labelling of the ions. Compartmental analysis was used to obtain the fluxes and concentrations in the cell compartments. The passive or active character of the movements was examined by the Ussing-Teorell equation and compared with electropotential measurements. In the case of sodium, net flux was in the outward direction over both tonoplast and plasmalemma, but the active components were directed away from the cytoplasm. Potassium was close to equilibrium. Chloride was actively transported from the medium to the cytoplasm, and — contrary to observations in other systems — from the vacuole to the cytoplasm. This unusual situation may be caused by a loss of sugar, both by lowering the energy supply and by formation of organic acids.  相似文献   

15.
The Distribution of Mineral Elements Following Leaf and Root Uptake   总被引:2,自引:0,他引:2  
The initial and subsequent distribution of 22Na, 43K, 86Rb, 134Cs, 32P, 35S, 45Ca, 65Zn and 85Sr in bean plants, following leaf and root uptake was studied under controlled environmental conditions. Autoradiographic and counting methods reveal vascular connections between leaves and roots and two patterns of distribution in the leaves following root uptake are reported. Distribution following treatment of specific parts of the leaves or roots points to a morphological unity in the bean plant. A possible circulation pattern for some ions is discussed.  相似文献   

16.
Salinization of the medium inhibits both K+ uptake by excised barley (Hordeum vulgare L.) roots and K+ release from their stele, as measured by short-term 86Rb uptake and xylem exudation, respectively. Although inhibition was not specific to chloride, mannitol caused a different response from that of inorganic sodium salts, indicating that inhibition was at least partly the result of an ion effect. In roots previously exposed to low levels of NaCl, NaCl stress directly affected stelar K+ release, whereas in low-sodium roots stelar K+ release was much less salt-sensitive than K+ uptake.Abbreviation chCl choline chloride  相似文献   

17.
To examine the involvement of Na+,K+,2Cl cotransport in monovalent ion fluxes in vascular smooth muscle cells (VSMC), we compared the effect of bumetanide on 86Rb, 36Cl and 22Na uptake by quiescent cultures of VSMC from rat aorta. Under basal conditions, the values of bumetanide-sensitive (BS) inward and outward 86Rb fluxes were not different. Bumetanide decreased basal 86Rb uptake by 70–75% with a K i of ∼0.2–0.3 μm. At concentrations ranging up to 1 μm, bumetanide did not affect 36Cl influx and reduced it by 20–30% in the range from 3 to 100 μm. In contrast to 86Rb and 36Cl influx, bumetanide did not inhibit 22Na uptake by VSMC. BS 86Rb uptake was completely abolished in Na+- or Cl-free media. In contrast to 86Rb, basal BS 36Cl influx was not affected by Na+ o and K+ o . Hyperosmotic and isosmotic shrinkage of VSMC increased 86Rb and 36Cl influx to the same extent. Shrinkage-induced increments of 86Rb and 36Cl uptake were completely abolished by bumetanide with a K i or ∼0.3 μm. Shrinkage did not induce BS 86Rb and 36Cl influx in (Na+ or Cl)- and (Na+ or K+)-depleted media, respectively. In the presence of an inhibitor of Na+/H+ exchange (EIPA), neither hyperosmotic nor isosmotic shrinkage activated 22Na influx. Bumetanide (1 μm) did not modify basal VSMC volume and intracellular content of sodium, potassium and chloride but abolished the regulatory volume increase in isosmotically-shrunken VSMC. These data demonstrate the absence of the functional Na+,K+,2Cl cotransporter in VSMC and suggest that in these cells basal and shrinkage-induced BS K+ influx is mediated by (Na+ o + Cl o )-dependent K+/K+ exchange and Na+ o -dependent K+,Cl cotransport, respectively. Received: 30 January 1996/Revised: 20 May 1996  相似文献   

18.
Summary An inhibition of root growth, a decrease in the amount of potassium (as 86Rb) and phosphate (32P) accumulation by the root, and a partial depolarization of transmembrane electropotential were observed to develop with a similar time course and to a similar extent when intact maize (Zea mays L.) roots were treated with 10-5 M abscisic acid (ABA). Potassium uptake was inhibited by ABA when excised, low-salt roots were bathed in KCl, KH2PO4, or K2SO4. ABA did not affect the ATP content of the tissues, the activity of isolated mitochondria, nor the activity of microsomal K+-stimulated ATPases.  相似文献   

19.
The non-selective apoplastic passage of Cu and Cu-citrate complexes into the root stele of monocotyledonous corn and dicotyledonous soybean was investigated using an inorganic-salt-precipitation technique. Either Cu ions or Cu-citrate complexes were drawn into root through the apoplast from the root growth medium, and K4[Fe(CN)6] was subsequently perfused through xylem vessels or the entire root cross section. Based on microscopic identification of the reddish-brown precipitates of copper ferrocyanide in the cell walls of the xylem of corn and soybean roots, Cu2+ passed through the endodermal barrier into the xylem of both species. When the solution containing 200 μM CuSO4 and 400 μM sodium citrate (containing 199.98 μM Cu-citrate, 0.02 μM Cu2+) was drawn via differential pressure gradients into the root xylem while being perfused with K4[Fe(CN)6] through the entire root cross-section, reddish-brown precipitates were observed in the walls of the stele of soybean, but not corn root. However, when a CuSO4 solution containing 0.02 or 0.2 μM free Cu2+ was used, no reddish-brown precipitates were detected in the stele of either of the two plants. Results indicated that endodermis was permeable to Cu-citrate complexes in primary roots of soybean, but not corn. The permeability of the endodermal barrier to the Cu-citrate complex may vary between dicotyledonous and monocotyledonous plants, which has considerable implications for chelant-enhanced phytoextraction.  相似文献   

20.
The aim of this work was to relate [14C]-sucrose metabolism to the activities of sucrose synthetase and acid and alkaline invertases in roots of Pisum sativum. We fed [U-14C]-sucrose to 5-day-old plants and then excised the apical 6 mm of the roots and dissected the regions 6–24 mm from the root apices into stele and cortex. The detailed distribution of 14C in these parts of the roots was determined at the end of the feeding period and after a chase. The data indicate that sucrose arriving in the stele is divided between storage, conversion to polysaccharide, and consumption in respiration, whereas sucrose arriving in the rest of the root is used in respiration or converted to polysaccharide or hexose so rapidly that little is stored. Fractionation of carefully prepared extracts of pea roots, tubers of Solanum tuberosum, and spadices of Arum maculatum showed that sucrose synthetase was recovered in the soluble fraction. The results are discussed in relation to the roles of the aforementioned enzymes.  相似文献   

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