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1.
Chloroplast envelopes were isolated from chloroplasts purifiedfrom Spinacea oleracea L. (C3), Panicum miliaceum L. (NAD-malicenzyme-type C1), Digitaria sanguinalis (L.) Scop. (NADP-malicenzyme-type C4), Kalanchoe daigremontiana Hamet et Perrier (constitutiveCAM), and from Mesembryanthemum crystallinum L. (inducible CAM)performing either C3 photosynthesis or Crassulacean acid metabolism(CAM). For each species, methods were developed to isolate chloroplastenvelopes free of thylakoid contamination. The polypeptidesof ribulose bisphosphate (RuBP) carboxylase which has been consistentlyreported in envelope preparations of spinach were not foundin envelope preparations of C4 mesophyll chloroplasts. Silverstaining of envelope polypeptides resolved electrophoreticallyon sodium dodecylsulfate polyacrylamide gradient slab gels produceda more complex profile than did Coomassie staining which haspreviously been used with C3 envelope preparations, even thoughsilver reacted poorly with polypeptides corresponding to thesubunits of RuBP carboxylase. All of the plants examined possesseda major polypeptide of 27 to 29 kilodaltons (kD) which was previouslysuggested to be the phosphate translocator in spinach. WithC3 M. crystallinum, the 29 kD polypeptide stained most intensely.After induction of CAM, a 32 kD polypeptide also stained intensely,giving a profile similar to that obtained with the constitutiveCAM species. A 32 kD polypeptide was also prominent in C4 envelopepreparations, suggesting that a 32 kD polypeptide may be a translocatorprotein which is required in Crassulacean acid metabolism andC4 photosynthesis, but not in C3 photosynthesis. (Received April 25, 1983; Accepted July 9, 1983)  相似文献   

2.
Lee, H. S. J. and Griffiths, H. 1987. Induction and repressionof CAM in Sedurn relephluni L. in response to photopcnod andwater stress.—J. exp. Bot. 38: 834–841. The introduction and repression of CAM in Sedurn telephiunmL, a temperate succulent, was investigated in watered, progressivelydrouglited and rewatered plants in growth chambers. Measurementswere made of water vapour and CO2 exchange, titratable acidity(TA) and xylem sap tension. Effects of photoperiod were alsostudied. CAM was induced by drought under long or short days,although when watered no CAM activity was expressed. C3-CAM intermediate plants were used for the investigation ofwater supply. Those which had received water and those drought-stressedboth displayed a similar nocturnal increase in TA, with a day-nightmaximum (H+) of 69 µmol g–1 fr. wt. The wateredplants took up CO2 at a maximum rate of 2?2 µmol m–2s–1 only in the light period, while the droughted plantsshowed a maximum nocturnal CO2 uptake rate of 0?69 µmolm–2 s–1. Subsequently, as CAM was repressed, thewatered S. telephiwn displayed little variation in TA, withconstant levels at 42 µmol g–1 fr. wt. (day 10).After 10 d of drought stress, the CAM characteristics of S.telephiurn were aLso affected, with reduced net CO2 uptake andH+. The transition between C3 and CAM in S. telephium can be describedas a progression in terms of the proportion of respiratory CO2which is recycled and refixed at night as malic acid, in comparisonwith net CO2 uptake. Recycling increased from 20% (day 1) to44% (day 10) as a result of the drought stress and was highin both the CAM-C3 stage (no net CO2 uptake at night) and alsoin the drought-stressed CAM stage (reduced net CO2 uptake atnight). The complete C3-CAM transition occurred in less than8 d, and the stages could be characterized by xylem sap tensionmeasurements: CAM = 0?50 MPa C3-CAM = 0?36 MPa C3 = 0?29 MPa. Key words: CAM, Sedum telephium L., recycling  相似文献   

3.
Rintamäki, E. and Aro, E.-M. 1985. Photosynthetic and photorespiratoryenzymes in widely divergent plant species with special referenceto the moss Ceratodon purpureus: Properties of ribulose bisphosphatecarboxylase/oxygenase, phosphoenolpyruvate carboxylase and glycolateoxidase.—J. exp. Bot. 36: 1677–1684. Km(CO2) values and maximal velocities of ribulose bisphosphatecarboxylase/oxygenase (E.C. 4.1.1.39 [EC] ) were determined for sixplant species growing in the wild, consisting of a moss, a fernand four angiosperms. The maximum velocities of the RuBP carboxylasesvaried from 0.13 to 0.;62 µmol CO2 fixed min–1 mg–1soluble protein and the Km(CO2) values from 15 to 22 mmol m–3CO2. The highest Km(CO2) values found were for the moss, Ceratodonpurpureus, and the grass, Deschampsia flexuosa. These plantsalso had the highest ratios of the activities of RuBP carboxylaseto RuBP oxygenase. Glycolate oxidase (E.C. 1.1.3.1 [EC] ) activitieswere slightly lower in D.flexuosa, but not in C. purpureus,than for typical C3 species. Phosphoenolpyruvate carboxylase(E.C. 4.1.1.31 [EC] ) was not involved in the photosynthetic carboxylationby these two plants. However, another grass, Phragmites australis,was intermediate in PEP carboxylase activity between C3 andC4 plants The properties of RuBP carboxylase/oxygenase are discussedin relation to the activities of PEP carboxylase and glycolateoxidase and to the internal CO2 concentration. Key words: RuBP carboxylase, oxygenase, Km(CO2), moss  相似文献   

4.
ABSRACT: Groenhof, A. C, Smirnoff, N. and Bryant, J. A. 1988. Enzymicactivities associated with the ability of aerial and submergedforms of Littorella uniflora (L.) Aschers to perform CAM.—J.exp. Bot. 39: 353-361. The submerged form of Littorella uniflora shows a full CAM modeof photosynthesis as shown by diel acid fluctuations and elevatedactivities (in comparison to non-submerged leaves) of the enzymesphosphoenolpyruvate carboxylase (PEPC) and NADP-malic enzyme.Non-submerged plants exhibit no diel fluctuations of acidityand no changes in activity of NADP-malic enzyme or PEPC. PEPCactivity is low and NADP-malic enzyme is not detectable. Furthercharacterization of PEPC extracted from submerged plants duringthe light and dark periods of a diel cycle shows that the enzymeextracted in the dark is more active. In addition, the enzymeshows a decrease in Km (PEP) and an increase in Vmax in thepresence of glucose-6-phosphate, whilst in the presence of malateKm (PEP) is increased and Vmax decreased; this response to malateis only observed in the light and at pH 7.2. Molecular weightdeterminations using a Sephacryl S-300 column show that theenzyme extracted from plants during the dark period has an apparentmol. wt. of 375 KDa and the enzyme extracted from plants duringthe light period has an apparent mol. wt. of 307 KDa. Key words: Littorella uniflora (shoreweed), Crassulacean acid metabolism, PEP carboxylase, malic enzyme  相似文献   

5.
Lehnherr, B., Mächler, F. and Nösberger, J. 1985.Influence of temperature on the ratio of ribulose bisphosphatecarboxylase to oxygenase activities and on the ratio of photosynthesisto photorespiration of leaves.—J. exp. Bot. 36: 1117–1125. Rates of net and gross photosynthesis of intact white cloverleaves were measured by infrared gas analysis and by short termuptake of 14CO2 respectively. Ribulose bisphosphate carboxylaseoxygenase (RuBPCO) was purified from young leaves and kineticproperties investigated in combined and separate assays. Theratio of carboxylase to oxygenase activities was compared withthe ratio of photosynthesis to photorespiration at various temperaturesand CO2 concentrations. The ratio of photosynthesis to photorespiration at 30 Pa p(CO2)was consistent with the ratio of carboxylase activity to oxygenaseactivity when each was measured above 20 °C. However, theratio of photosynthesis to photorespiration increased with decreasingtemperature, whereas the ratio of carboxylase to oxygenase activitywas independent of temperature. This resulted in a disagreementbetween the measurements on the purified enzyme and intact leafat low temperature. No disagreement between enzyme and leafat low temperature occurred, when the ratio of photosynthesisto photorespiration was determined at increased CO2 concentrations. The results suggest an effect of low temperature and low CO2concentration on the ratio of photosynthesis to photorespirationindependent of the enzyme. Key words: Ribulose bisphosphate carboxylase oxygenase, photorespiration, temperature  相似文献   

6.
Activities of Carboxylation Enzymes in Freshwater Macrophytes   总被引:2,自引:0,他引:2  
Fifteen species of freshwater macrophytes, mainly from cool,temperate waters, were assayed for ribulose bisphosphate carboxylase-oxygenase(RuBPCase) and phosphoenolpyruvate carboxylase (PEPCase) activities.In extracts from all the species RuBPCase was the most activecarboxylation enzyme, and the RuBPCase/PEPCase ratio was atleast 2·0, even for the submersed species Isoetes lacustrisL. and Littorella unifiora (L.) Aschers. which have been reportedto show Crassulacean Acid Metabolism (CAM) activity. The PEPCaseactivity in I.lacustris was lower than that found in some non-CAM-likespecies. In this respect, I.lacustris and L unifiora differfrom most terrestrial CAM plants. However, these two species,along with Potamogeton praelongus Wulf. and Juncus bulbosusvar.fluitans L., had the lowest RuBPCASE/PEPCase ratios, lowerthan found in terrestrial C3 species; suggesting that the potentialfor substantial photosynthetic metabolism of C4 acids existsin some temperate, submersed plants. In the three amphibiousspecies (Potamogeton polygonifolius Pourr., Mentha aquaticaL., and Hippuris vulgaris L.) examined, the aerial leaves exhibitedhigher RuBPCase activities than the submersed leaves. Key words: Ribulose bisphosphate carboxylase-oxygenase, phosphoenolpruvate carboxylase, freshwater macrophytes  相似文献   

7.
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   

8.
The carbon balance of shade-grown Ananas comosus was investigatedwith regard to nitrogen supply and responses to high PAR. Netdark CO2 uptake was reduced from 61.2 to 38.5 mmol CO2 m–2in N limited (–N) plants grown under low PAR (60 µmolm–2 s–1) and apparent photon yield declined from0.066 to 0.034 (mol 02.mol–1 photon), although photosyntheticcapacities (measured under 5% CO2) were similar. Following transferfor 7 d to high PAR (600. µmol m–2 s–1), netCO2 uptake at night increased by 14% in +N plants, and daytimephotosynthetic capacity was higher, with a maximum value of7.8 µmol m–2 s–1. The magnitude of dark CO2 fixation during CAM was measured asdawn—dusk variations in leaf-sap titratable acidity (H+)and as the proportion of malic and citric acids. The contributionfrom re-fixation of respiratory CO2 recycling (measured as thedifference between net CO2 uptake and malic acid accumulation)varied with growth conditions, although it was generally lower(30%) than reported for other bromeliads. Assuming a stoichiometryof 2H+: malate and 3H+: citrate, there was a good agreementbetween titratable protons and enzymatically determined organicacids. The accumulation of citric acid was related to nitrogensupply and PAR regime, increasing from 7.0 mol m–3 (+Nplants) to 18 mol m–3 (–N plants) when plants weretransferred to high PAR; malate: citrate ratios decreased from13.1 to 2.5 under these conditions. Under the low PAR regime, leaf-sap osmotic pressure increasedat night in proportion to malic acid accumulation. However,following the transfer to high PAR for 7 d, there was a muchgreater depletion of soluble sugars at night which correspondedto a decrease in leaf-sap osmotic pressure. Although a rolefor citric acid in CAM has not been properly defined, it appearsthat the accepted stoichiometry for CAM in terms of gas exchange,titratable acidity, malic acid and osmotic pressure may nothold for plants which accumulate citric acid. Key words: Ananas comosus, CAM, citric acid accumulation, carbon recycling  相似文献   

9.
Mächler, F., Lehnherr, B., Schnyder, H. and Nösberger,J. 1985. A CO2 concentrating system in leaves of higher C3-plantspredicted by a model based on RuBP carboxylase/oxygenase kineticsand 14CO2/12CO2 exchange.–J. exp. Bot. 36: 1542–1550. A model is presented which compares the ratio of the two activitiesof the enzyme nbulose bisphosphate carboxylase/oxygenase asdetermined in vitro with the ratio of photosynthesis to photorespirationin leaves as determined from differential 14CO2/12CO2 uptakeor from CO2 compensation concentration. Discrepancies betweenmeasurements made in vitro and in vivo are attributed to theeffect of a CO2 concentrating system in the leaf cells. Interferencefrom dark respiration is discussed. A CO2 concentrating systemis postulated which is efficient mainly at low temperature andlow CO2 concentration. Key words: —Photosynthesis, photorespiration, ribulose bisphosphate carboxylase/oxygenase  相似文献   

10.
The maximum catalytic activities of several photorespiratoryand photosynthetic enzymes were determined in leaf extractsof three C3–C4 intermediates (Alternanthera ficoides,A. tenella and Parthenium hysterophorus) and were compared tothose of C3 (A. sessiles, Pisum sativum) and C4 (A. pungens,Zea mays and Amaranthus hypochondriacus) species. The activitylevels of key photorespiratory enzymes, glycolate oxidase, catalase,NADH-hydroxypyruvate reductase and glycerate kinase were less(28 to 35% reduced) in intermediates than those of typical C3species. Similarly, the activities of photorespiratory aminotransferasesin the C3–C4 intermediates were also partially reduced(23 to 37% reduction). The activities of phosphoenolpyruvatecarboxylase (PEPC), pyruvate, orthophosphate dikinase and NAD-malicenzyme were higher (2 to 7 times) in leaf extracts of the intermediatesthan those of C3 species. But the ratios of PEPC/rubisco inthe C3–C4 intermediates were more like C3 than C4 species.We draw attention to the partial reduction in enzyme activityof photorespiratory metabolism, which could be an importantfactor for restriction of photorespiration in the C3–C4intermediate species, in addition to enzyme compartmentationand/or operation of a ‘C4-like’ cycle Key words: C3–C4 intermediates, C4 pathway, enzyme profile, glycolate metabolism, photorespiration, photosynthesis  相似文献   

11.
Sedum telephium is a C3/CAM intermediate plant in which expressionof CAM is caused by water deficit. The timing of the C3-CAMswitch and its relationship with water status and phosphoenolpyruvate(PEP) carboxylase activity have been investigated. Water deficitwas provided by application of polyethylene glycol (PEG) solutionsso that roots were exposed to water potentials from 0 to –2.0 MPa below that of the nutrient solution. The response ofthe plants was measured during the first dark period after PEGaddition and 7 d later. Malic acid accumulation was triggeredduring the first dark period at root water potentials of –0.3MPa or less. This corresponded with very small decreases inleaf water potential and relative water content. The capacityof PEP carboxylase was not altered at any water potential duringthe first dark period. After 7 d the capacity of PEP carboxylaseprogressively increased as water potential declined to –0.4MPa. At this, and more negative, water potentials it was 5-foldhigher than in well-watered leaves. Malic acid fluctuationsincreased with decreasing PEG water potential below a thresholdof –0.1 MPa. Malic acid levels at the end of the lightperiod were progressively lower as water potential decreased.NAD- and NADP-malic enzyme activity were not affected by lowwater potential. Leaves detached from well-watered plants in the middle of thelight period and kept hydrated did not accumulate malic acidduring the following dark period. Allowing the leaves to lose10% of their water content induced malic acid accumulation duringthe same time. Conversely, leaves detached from long-term droughtedplants (which had malate fluctuations and a PEP carboxylasecapacity 5-fold higher than well-watered plants) accumulatedmalate during the night if maintained at the same low hydrationstate (82%RWC), whereas malic acid accumulation was promptlyreduced if they were rehydrated. Malic acid accumulation couldtherefore be rapidly altered by changing the hydration stateof the leaves. The short-term rehydration treatments did notalter PEP carboxylase capacity. However, alteration of leafhydration affected the apparent Km (PEP) of PEP carboxylaseextracted 1 h before the end of the dark period. The Km wasincreased by rehydration and decreased by dehydration. Sensitivityto feedback inhibition by malate was not affected by hydrationstate and was high for PEP carboxylase from well-watered leavesand lower for PEP carboxylase from long-term droughted leaves. Taken together, the responses of intact plants and detachedleaves show that malic acid accumulation can be triggered veryrapidly by small water deficits in the leaves. The extent ofnight-time malic acid accumulation is independent of PEP carboxylasecapacity. However, a change in the hydration state of the leavescan rapidly alter the affinity of PEP carboxylase for PEP. Theregulation of malic acid accumulation in relation to the drought-inducedtriggering of CAM is discussed. Key words: Crassulacean acid metabolism, water stress, Sedum telephium, phosphoenolpyruvate carboxylase (PEP carboxylase), malic enzyme  相似文献   

12.
Gas exchange and organic acid accumulation of the C3-CAM intermediateClusia minor L. were investigated in response to various day/nighttemperatures and two light regimes (low and high PAR). For bothlight levels equal day/night temperatures between 20°C and30°C caused a typical C3 gas exchange pattern with all CO2uptake occurring during daylight hours. A day/ night temperatureof 15°C caused a negative CO2 balance over a 24 h periodfor low-PAR-grown plants while high-PAR-grown plants showeda CAM gas exchange pattern with most CO2 uptake taking placeduring the dark period. However, there was always a considerablenight-time accumulation of malic acid which increased when thenight-time temperature was lowered and had its maximum (54 mmolm–2) at day/night temperature of 30/15°C. A significantamount of malic acid accumulation (23 mmol m–2) in low-PAR-grownplants was observed only at 30/15°C. Recycling of respiratoryCO2 in terms of malic acid accumulation reached between 2·0and 21·5 mmol m–2 for high-PAR-grown plants whilethere was no significant recycling for low-PAR-grown plants.Both low and high-PAR-grown plants showed considerable night-timeaccumulation of citric acid. Indeed under several temperatureregimes low-PAR-grown plants showed day/night changes in citricacid levels whereas malic acid levels remained approximatelyconstant or slightly decreased. It is hypothesized that lowand high-PAR-grown plants have different requirements for citrate.In high-PAR-grown plants, the breakdown of citrate preventsphotoinhibition by increasing internal CO2 levels, whereas inlow-PAR-grown plants the night-time accumulation of citric acidmay function as an energy and carbon saving mechanism. Key words: C. minor, C3, CAM, citric acid, light intensity  相似文献   

13.
A remarkable difference was found in the survival of leavesof Mesembryanthemum crystallinum with plants grown in the C3versus the CAM mode. With excised leaves (petiole in solution)of C3-mode plants subjected to 6 days of darkness, there wasa large reduction in the chlorophyll content of the leaf andleaf turgor had decreased. By day 9, the chlorophyll had disappeared,except at the major veins, and the leaf tip had dried and turnedbrown. In contrast, the leaf tissue in the CAM mode showed onlya partial loss of chlorophyll during the same period, and evenafter 17 days of darkness, the tissue at the base was stillalive. Similarly, intact plants grown in the C3 mode deterioratedmuch faster during 20 days of darkness than did plants grownin the CAM mode. Chlorophyll content, chlorophyll a/b ratio,phosphoenolpyruvate carboxylase, NADP-malic enzyme, malate andstarch content were measured. In both C3- and CAM-mode plants,the starch content decreased rapidly during the dark periodand was nearly depleted after two days. In the CAM-mode tissue,there was a relatively high level of malate during prolongeddarkness (up to 17 days), with a transitory rise early in thedark period. In contrast, the malate content was low and rapidlydepleted in the C3-mode leaves kept in darkness. These findingssuggest that malate may be an important source of carbon forsustaining leaves of CAM-mode M. crystallinum during prolongeddarkness. (Received May 20, 1987; Accepted October 23, 1987)  相似文献   

14.
Madsen, T. V. 1987. Sources of inorganic carbon acquired throughCAM in Littorella uniflora (L.) Aschers.—J. exp. Bot.38: 367–377. The CO2 dynamics of the lacunal air and the relative contributionof external and internal CO2 sources to dark CO2 assimilationwas examined in the submerged aquatic CAM species Littorellauniflora (L.) Aschers. Refixation of internal CO2, released by dark respiration, constitutedabout 30–35% of the total dark CO2 assimilation. At aCO2 concentration of 0·2 mol m–3 around the leavesthe external CO2 uptake through the roots increased from 45%of the total CO2 uptake at 0·7 mol m–3 CO2 to 100%at 1·6 mol m–3 and 3·1 mol m–3 CO2around the roots. The negligible importance of leaf CO2 uptakeat high CO2 concentrations around the roots was the result ofa causative high CO2 concentration in the leaf lacunae. The CO2 permeability of Littorella leaves was high relativeto root permeability. This has at least two ecological implications:(1) it enhances the potential diffusive release of CO2 fromthe sediment C02-pool via the lacunal system of the plants.This loss of CO2, however, was found to be greatly reduced byCAM activity of the plants. (2) The high permeability of theleaf surface to CO2 exchange allows the plants to assimilateCO2 from the water surrounding the leaves when the concentrationis high, i.e. during extensive epiphyte dark respiration. Thus,CAM tends to facilitate retension of a high CO2 pool in thesediment-plant system and at the same time allows the plantsto exploit the water column CO2 source when it is abundant.This result is in accordance with the general idea that CAMin aquatics constitute a carbon conserving mechanism. Key words: Aquatic macrophytes, dark CO2 assimilation, inorganic carbon sources  相似文献   

15.
Photosynthesis and photorespiration in the genus Oryza   总被引:7,自引:0,他引:7  
Photosynthetic gas exchange has been surveyed in 22 of the 23species currently placed in the genus Oryza and constitutingthe wild relatives of cultivated rice. Unimproved, wild germplasmof a number of species showed light-saturated assimilation ratesin atmospheric air at least as great as cultivars and elitebreeding material of the cultigen O. satlva. One of these specieswas O. australiensis, different accessions of which were significantly(P=0.001) superior in assimilation rate to the 0. satlva genotypestested, including representatives of the Indica, Japonica andJavanica subgroups. Amongst species, assimilation rate was correlatedpositively with light saturation and with carboxylation efficiency.The wild species fell into two distinct groupings accordingto whether they originated from sun or shade habitats, withthe higher assimilation rates being associated with the sunspecies. Assimilation rates were also higher in diploids thanin tetraploids and this was associated with the fact that allsun species are diploids and all tetraploids are shade species.The carbon dioxide compensation concentrations ranged from 28to 43µmol mol–1 with the two lowest values (28 and32µmol mol–1) coming from accessions of O. rufipogon.The mean value for the absolute quantum yield of photosynthesismeas ured on attached leaves was 0.060. There was a large rangein the activity of phosphoenolpyruvate (PEP) carboxylase witha number of species having rates several times those of C3 species.Some species with the highest assimilation rates were assessedfor photorespiratory losses and these were generally around30% and similar to O. satlva cultivars. However, a range ofO. rufipogon accessions had photorespiration rates significantly(P=0.01) lower than the O. sativa genotypes tested. No speciesin the genus possessed C4 photosynthetic metabolism though somedid overlap with compensation concentrations and phosphoenolpyruvatecarboxylase activities reported for C3–C4 intermediatespecies. The potential value of wild relatives to the improvementof cultivated rice is discussed. Key words: Oiyza, photorespiration, photosynthesis, rice, wild rice  相似文献   

16.
In species of Clusia, switching from C3-photosynthesis (C3-PS)to crassulacean acid metabolism (CAM) may be a means of optimizingwater use, plant carbon balance and photon utilization duringperiods of stress. We ask whether, in perennial species of Clusia,the switch from CAM back to C3-PS is also of ecophysiologicalsignificance. Our objective was to investigate the performanceof C. minor L. during a short-term shift from CAM to C3-PS.During the transition from CAM to C3-PS, nocturnal malate andcitrate accumulation decreased whereas CO2uptake increased duringthe daytime. However, after 7 d, marked nocturnal accumulationof citrate and 24 h CO2uptake occurred. In contrast to C3-likephotosynthesis, a pronounced reduction in the effective quantumyield of photosystem II,  相似文献   

17.
Enzymes of the C4, C3 pathway and photorespiration have beenanalyzed for P. hians and P. milioides, which have chlorenchymatousbundle sheath cells in the leaves. On whole leaf extracts thelevels of PEP carboxylase are relatively low compared to C4species, RuDP carboxylase is typical of C3 species, and enzymesof photorespiratory metabolism appear somewhat intermediatebetween C3 and C4. Substantial levels of PEP carboxylase, RuDPcarboxylase, and photorespiratory enzymes were found in bothmesophyll and bundle sheath cells. Low levels of C4-acid decarboxylatingenzymes may limit the capacity for C4 photosynthesis in P. hiansand P. milioides. The results on enzyme activity and distributionbetween mesophyll and bundle sheath cells are consistent withCO2 fixation via C3 pathway in these two species. 1 This research was supported by the College of Agriculturaland Life Sciences, University of Wisconsin, Madison; and bythe University of Wisconsin Research Committee with funds fromthe Wisconsin Alumni Research Foundation; and by the NationalScience Foundation Grant BMS 74-09611. (Received September 16, 1975; )  相似文献   

18.
Kalanchoe blossfeldiana Poelln. cv. Hikan (a Crassulacean acidmetabolism (CAM) plant) was grown in pots containing soil for6 months and then cultured in nutrient solution containing 10mM nitrate or ammonium as a sole nitrogen source for 2 or 3months, under a long-day (16 h) condition. Plant growth was better in the nitrate medium. Leaves of thenitrate-grown plants showed greater diurnal fluctuations intitratable acidity and malate content than those of the ammonium-grownplants. The diurnal patterns in CO2 exchange of nitrate-grownplants were basically similar for both groups, but the amountof net CO2 uptake at night was twice as large in the nitrate-grownplants. The leaves of the nitrate-grown plants had 1.3 to 2.5times higher activities of phosphoenolpyruvate carboxylase (PEPC),phosphofructokinase (PFK) and NAD glycelaldehyde-3-phosphatedehydrogenase (G3PDH). These results indicate that K. blossfeldianagrown in nitrate medium showed more CAM activity than thosein ammonium medium. (Received August 13, 1987; Accepted February 22, 1988)  相似文献   

19.
To study possible changes in the transport metabolites betweenchloroplasts and cytoplasm during CAM induction of Mesembryanthemumcrystallinum, we compared substrate specificity of P11 translocator(s)in isolated chloroplasts from the C3 and CAM-induced plants.The [14C]glu-cose 6-phosphate (G6P) transport activity was significantonly in the chloroplasts of CAM-mode plants and not detectablein those of C3-mode, while a similar high rate of [32P]Pi uptakewas observed with both types of chloroplasts. Kinetic analysisof G6P uptake in the CAM chloroplasts showed a high Vmax [10.6µmol (mg Chl)–1 h–1] and a comparatively lowKm value (0.41 mM); the latter was similar to Ki values of Pi,3-phosphoglycerate and phospho-enolpyruvate, 0.30, 0.34 and0.47 mM, respectively. On the other hand, [32P]Pi uptake inthe CAM chloroplasts was inhibited competitively by G6P witha Ki value (8.4 mM) 20-fold higher than the Km value for G6Puptake, while that in C3 chloroplasts was not inhibited at all.These results suggest that a new G6P/Pi, counterexchange mechanismis induced in the chloroplast envelope of CAM-induced M. crystallinumin addition to the ordinary type of P, translocator, that cannottransport G6P, already present in the C3-type chloroplasts. (Received March 17, 1997; Accepted May 10, 1997)  相似文献   

20.
Three isoforms (Types 1, 2 and 3) of phosphoenolpyruvate (PEP)carboxylase in young leaves of the Crassulacean acid metabolism(CAM) plant Kalanchoe daigremontiana were separated by DEAE-cellulosecolumn chromatography and preparative polyacrylamide-agarosegel electrophoresis, and their enzymatic properties were characterized. All three isoforms had similar molecular weights of about 234,000.At pH 8.0 Type 1 showed a high affinity to PEP, (Km=0.08 mM),whereas Type 3 showed a low affinity (Km=1.0mM). Km values forMgCl2 were 0.26 HIM in Types 1 and 3 and 0.5 nut in Type 2.All three types exhibited the same pH optimum at 8.0, but Type1 showed relatively low activity below pH 6.0, whereas Type3 showed high activity. Type 3 was more acid stable than theother forms. In the presence of glucose-6-phosphate, the Kmvalues of Types 1, 2 and 3 for PEP lowered to 0.027, 0.037 and0.044 mu at pH 8.0, respectively. Inhibition of activity byorganic acids such as malate and pyruvate was pronounced inType 3. Type 2 exhibited properties intermediate to Types 1and 3 with regard to pH curve, affinity to PEP and its effectof various metabolites. The physiological significance of PEPcarboxylase isoforms in CAM plants is discussed on the basisof these findings. 1Present address: Agricultural Chemicals Research Lab., SankyoCo., Ltd., Yasu-cho, Yasugun, Shiga 520-23, Japan. (Received November 30, 1983; Accepted March 24, 1984)  相似文献   

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