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1.
In "air-grown" Chroomonas sp. cells, low concentrations of DCMU(less than 0.1 µM) could prevent the inhibition of 14CO2fixation by anaerobiosis under light-saturating conditions (morethan 40 W.m–2), with phenazine methosulfate showing asimilar effect. Antimycin A, carbonyl cyanide m-chlorophenylhydrazone(CCCP), and N,N'-dicyclohexylcarbodiimide strongly inhibitedanaerobic photosynthesis at concentrations which did not significantlyinhibit the rate under 2% O2 at high light intensity (200 W.m–2),although 0.2 µM CCCP stimulated the rate under 2% O2 tosome extent. On the other hand, KCN inhibited the rate muchmore strongly under 2% O2 than N2, although it inhibited therate very strongly at concentrations above 5 µM both underN2 and 2% O2. These results suggest that the inhibition of photosynthetic14CO2 fixation by anaerobiosis in this alga result from ATPdeficiency caused by over-reduction of electron carriers ofthe cyclic electron flow and that oxygen can prevent the over-reduction.Cyclic electron flow seems to be necessary to provide additionalATP for CO2 reduction under anaerobic conditions, although itseems to be less necessary under aerobic conditions. (Received July 21, 1983; Accepted January 23, 1984)  相似文献   

2.
In vivo net CO2 exchange characteristics of attached Brassicapods were studied during the entire period of their growth anddevelopment after anthesis. 14CO2 was fed both from the externalatmosphere and internally through the pod cavity, and the anatomyof the pod-wall was examined microscopically. Stomata were observedin the outer epidermal layer of the pod wall. Net in vivo CO2fixation by the pods was observed throughout the period of theirdevelopment and was maximum on day 42 after anthesis (DAA).Compared to the internal feeding experiments, 14CO2 fixationfrom the external environment was very high. Apparent translocationof fixed carbon from the pod wall to seeds was rapid. Pod photosynthesiscontributed substantially to seed growth. pods, Brassica campestris L, CO2 fixation, stomata  相似文献   

3.
The mechanism for utilization of dissolved inorganic carbon(DIC) was investigated in the marine unicellular calcareousalga Emiliania huxleyi, grown with constant aeration. The apparentK0.5 (DIC), the concentration of DIC which attains one-halfof the maximum velocity of apparent photosynthesis, for photosyntheticevolution of O2, measured under saturating light, was 5.5 mM(55 µM for CO2) at pH 8.0 and 25°C. The value of K0.5was not affected by inhibitors of carbonic anhydrase (CA), andan electrometric assay of CA showed that the enzyme was notinvolved in photosynthesis in this alga. The rate of photosyntheticfixation of 14C-DIC into acid-stable products was about 20 timeshigher than that into CaCO3, irrespective of the external concentrationof DIC. In short-term experiments, 14C-DIC was usually incorporatedinto the internal pool of DIC (IIC) to concentrations up to13 to 16 times higher than that of the external DIC. CO2 addedexternally was utilized mainly for fixation of CO2 and accumulationof IIC. By contrast, HCO-3 was utilized mainly for productionof CaCO3 and accumulation of IIC. Incorporation of 14C intoIIC was partially suppressed by DCMU or in darkness but itstransfer to CaCO3 was unaffected. These results suggest thataccumulation of IIC in this alga, even under ordinary circumstances,is only partially responsible for increasing the efficiencyof utilization of DIC by photosynthetic fixation but may bemost useful for the production of CaCO3. (Hydroxyethylidene) bisphosphonic acid, an inhibitor of thegrowth of CaCO3 crystals, completely suppressed production ofCaCO3. The accumulation of IIC was also partially suppressed,but photosynthetic fixation of CO2 was enhanced. In a pulse-chaseexperiment with 14CDIC, 14C incorporated into IIC and CaCO3in darkness was transferred to acid-stable products of photosynthesisin the light. These results suggest that 14C-DIC in IIC andpre-formed CaCO3 may be useful sources of carbon for fixationof CO2. (Received July 2, 1993; Accepted January 10, 1994)  相似文献   

4.
In vivo net CO2 exchange characteristics of attached Brassicapods were studied during the entire period of their growth anddevelopment after anthesis. 14CO2 was fed both from the externalatmosphere and internally through the pod cavity, and the anatomyof the pod-wall was examined microscopically. Stomata were observedin the outer epidermal layer of the pod wall. Net in vivo CO2fixation by the pods was observed throughout the period of theirdevelopment and was maximum on day 42 after anthesis (DAA).Compared to the internal feeding experiments, 14CO2 fixationfrom the external environment was very high. Apparent translocationof fixed carbon from the pod wall to seeds was rapid. Pod photosynthesiscontributed substantially to seed growth. pods, Brassica campestris L., CO2 fixation, stomata  相似文献   

5.
Seeni  S.; Gnanam  A. 《Plant & cell physiology》1983,24(6):1033-1041
Photomixotrophic cell suspension culture was established fromthe leaf derived callus cells of Gisekia pharnaceoides L., aC4 dicotyledonous weed. The late log phase cells possessed shade-typecharacters such as low chlorophyll a/b ratio, less pronouncedO2 evolution and CO2 fixation, saturation of photosyntheticCO2 fixation at low intensity. The chloroplasts from these cellscontained granal stacking with high degree of a very few granawhich are characterized by their wide and high degree of stackings. The predominant labelling of 3-phosphoglyceric acid and sugarphosphates (40% of the total 14C incorporated) during 5 s exposureto 14CO2 in light and subsequent decrease in percentage of 14Cin these compounds with increase in exposure time indicatedthe operation of the C3 pathway in these cells. The simultaneoussynthesis of malate (23% of the total 14C incorporated) is relatedto the much pronounced glycolytic and tricarboxylic acid cycleactivities in these cells. The initial proliferation of callimainly from the zones of vascular supplies in the leaf, highstarch content of the cells, presence of large starch grainsin all the chloroplasts, activities of Calvin cycle enzymes,heavy labelling of C3 type intermediates and less labellingof aspartate as early photosynthates and rapid accumulationof radioactivity into starch during 14CO2 assimilation indicatedthat most of the cells in photomixotrophic culture were derivedfrom bundle sheath cells or the leaf cells of Gisekia changetheir function under culture conditions. 1Present address: Tropical Botanic Garden and Research Institute,Navaranga Road, Trivandrum 695 011, India. (Received January 29, 1982; Accepted June 4, 1983)  相似文献   

6.
Dunaliella tertiolecta, a green euryhaline flagellate, is unableto use glucose as a substitute for photosynthetically fixedCO2 to maintain growth. Glucose, acetate, pyruvate, succinate,sucrose, glycerol, alanine and -ketoglutarate do not stimulateendogenous respiration in this alga. By incubating whole cellswith these compounds labelled with 14C, it was shown that onlyacetate, pyruvate and glycerol penetrated the cell at rateswhich might affect growth. These rates were still only of theorder of 10 m/(moles/hr/mg protein. Only acetate and pyruvatewere metabolized to CO2 at appreciable rates, 20 and 80% ofthe total assimilated, respectively. Cell free preparations of D. tertiolecta metabolized glucoserapidly, up to 2 µmoles/hr/mg protein, with over 75% ofthe 14C-label being recovered as triose phosphate. Both thehexose monophosphate shunt and the Embden-Meyerhof pathway wereactive. When specifically labelled glucose was supplied, CO2from the C-6 carbon was released more rapidly than from theC-6 position, in both whole cells and in the cell free extract. It is concluded that the failure of D. tertiolecta to use glucoseis due to membrane impermeability, not lack of hexokinase. Apossible basis for this impermeability is discussed in the lightof the metabolic sequence which seems to be active in this alga. 1Colombo Plan Fellow, 1968–69. Present address: NaturalProducts Research Institute, Seoul National University, Seoul,Korea. 2Present address: Biology Dept. Queen's University, Kingston,Ont., Canada. (Received August 13, 1970; )  相似文献   

7.
Chlorella cells incubated in the dark longer than 12 hr showedpronounced blue light-induced 14CO2 fixation into aspartate,glutamate, malate and fumarate (blue light effect), whereasthose kept under continuous light showed only a slight bluelight effect, if any. 2) During dark incubation of Chlorellacells, phosphoenolpyruvate carboxylase activity and the capacityfor dark 14CO2 fixation decreased significantly, whereas ribulose-1,5-diphosphatecarboxylase activity and the capacity for photosynthetic 14CO2fixation (measured under illumination of white light at a highlight intensity) did not decrease. 3) In cells preincubatedin the dark, intracellular levels of phosphoenolpyruvate and3-phosphoglycerate determined during illumination with bluelight were practically equal to levels determined during illuminationwith red light. 4) The blue light effect was not observed incells incubated widi chloramphenicol, indicating that blue light-inducedprotein synthesis is involved in the mechanism of the effect. (Received April 9, 1971; )  相似文献   

8.
The development of the lipid synthesizing system in Avena leafsections was examined in connection with carbon fixation duringthe greening of etiolated seedlings under light. During theinitial 2 h illumination there was a low level of CO2 fixationby PEP carboxylation, but its products, malate and citrate,did not serve as a carbon source for lipid synthesis, althoughlipid synthesis from acetate had already been established. Withthe initiation of Calvin cycle activity after the initial 2h illumination, lipid synthesis began, with CO2 fixed by RuBPcarboxylation serving exclusively as the carbon source. Fattyacid synthesis in the leaves during the initial 3 h illumination,unlike the fatty acid synthesis thereafter, was insensitiveto thiolactomycin, an inhibitor of type II fatty acid synthetasecontained in the plastids, and was not dependent on light, incontrast to light-dependent activity in greened leaves. The distribution of 14C incorporated into lipid molecules fromNaH14CO3 showed an equal ratio of 14C in fatty acid, glyceroland choline moieties of labeled phosphatidylcholine, but a denserradioactivity in the galactose moiety than in the residual moietyof mono- and di-galactosyldiacylglycerols. This suggests a regulatedsupply of glycerol, choline and fatty acid moieties for phosphatidylcholinesynthesis, and an excess supply of galactose to diacylglycerolmoiety for galactosyldiacylglycerol synthesis in Avena leaves. (Received October 31, 1984; Accepted January 25, 1985)  相似文献   

9.
Biochemical studies of epidermal tissue may not reflect metabolismof the guard cells which represent less than 5% of the tissuevolume. Pure samples of guard cell protoplasts of Commelinacommunis were therefore used to investigate CO2 fixation ratesand 14C-labelling patterns of metabolites in the light and thedark. Qualitatively, results were similar in most respects tothose obtained in a previous study (Schnabl, 1980) for guardcell protoplasts of Vicia faba. CO2 fixation rates by guardcell protoplasts of C. communis were the same in the light andthe dark but about 50 times lower than the values Schnabl obtainedfor V.faba. The 14C-labelling pattern of metabolites in C. communiswas also similar in the light and the dark: over 60% of thetotal fixed was in malate with only 1% in sugar phosphates.Label was also detected in starch, aspartate, glutamate andcitrate but not in glycollate as previously recorded in V. fabaguard cell protoplasts. The results confirm the view that the reductive pentose phosphatepathway does not occur in guard cells of C. communis. Key words: CO2 fixation, Guard cell protoplasts, Stomata  相似文献   

10.
The pH changes in the blue-green alga (cyanobacterium) Anabaenacylindrica caused by addition of ammonia were investigated using31P NMR spectroscopy. A pH shift of 0.9 or more was observedwhen 30 nM NH4OH was added to the cell suspension, but no significantcellular pH change was observed with 50 mM NH4CI, a concentrationhigh enough to stimulate dark CO2 fixation of this alga. Thechange in cellular pH does not seem to cause ammonia-inducedstimulation of dark CO2 fixation. (Received June 22, 1985; Accepted January 10, 1986)  相似文献   

11.
Experiments are reported on the spatial distributions of isotopiccarbon within the mesophyll of detached leaves of the C3 plantVicia faba L. fed 14CO2 at different light intensities. Eachleaf was isolated in a cuvette and ten artificial stomata providedspatial continuity between the ambient atmosphere (0.03–0.05%v/v CO2) and the mesophyll from the abaxial leaf side. Paradermalleaf layers exhibited spatial profiles of radioactivity whichvaried with the intensity of incident light in 2 min exposures.At low light, when biochemical kinetics should limit CO2 uptake,sections through palisade cells contained most radioactivity.As the light intensity was increased to approximately 20% offull sunlight, peak radioactivity was observed in the spongycells near the geometric mid-plane of the mesophyll. The resultsindicate that diffusion of carbon dioxide within the mesophyllregulated the relative photosynthetic activity of the palisadeand spongy cells at incident photosynthetically active lightintensities as little as 110 µE m–2 s–1 whenCO2 entered only through the lower leaf surface. Key words: CO2 capture sites, Vicia faba L., Artificial stomata  相似文献   

12.
HO  L. C. 《Annals of botany》1978,42(1):155-164
Rates of carbon transport from a single mature tomato leaf inthe light period (day transport) and the dark period (nighttransport) were estimated from the rate of carbon fixation inthe light period, the rate of respiration in the dark periodand the changes in carbon contents over these two periods. Plantswere grown initially at 40 W m–2 light intensity witheither 350 vpm (nonenriched plants) or 1000 vpm CO2 (enrichedplants). Various light flux densities or CO2 concentrationswere then applied to the experimental leaves in the light periodduring the experiment When leaves were temporarily exposed to contrasting light fluxdensities both day transport and night transport were linearlyrelated to the rate of carbon fixation. If leaves were shadedbelow the light compensation point for up to five days, or transferredto contrasting CO2 concentrations for up to ten days, the linearrelationship between carbon fixation and carbon transport nolonger held. During acclimatization, therate of wbon fixationwas simply related to thecurrent light flux density and CO2concentration, but the rate of carbon transport changed withtime. Day and night transports responded differently to changesin environment: night transport was more related to the contentof reserve, particularly starch, than to the rate of concurrentwbon fixation. It is concluded that the rate of carbon transport of a maturetomato leaf in a single photoperiod is regulated not merelyby the rate of concurrent carbon fixation but by the contentof reserve in the leaf. The latter results from previous cumulativewbon fixation and carbon transport. As a result of changingthe rate of carbon transport, a balance of carbon input andoutput was achieved within 10 days of acclimatization in a maturetomato leaf.  相似文献   

13.
To study the wavelength-effect on photosynthetic carbon metabolism,14C-bicarbon-ate was added to Chlorella vulgaris 1 lh suspensionunder monochromatic blue (456 nm) and red (660 nm) light. Thelight intensities were so adjusted that the rates of 14CO2 fixationunder blue and red light were practically equal. Analysis of14C-fixation products revealed that the rates of 14CO2 incorporationinto sucrose and starch were greater under red light than underblue light, while blue light specifically enhanced 14CO2 incorporationinto alanine, aspartate, glutamate, glutamine, malate, citrate,lipid fraction and alcohol-water insoluble non-carbohydratefraction. Pretreatment of the algal cells in phosphate mediumin the dark, which was essential for the blue light enhancementof PEP carboxylase activity, was not necessary to induce theabove wavelength effects. Superimposition of monochromatic bluelight at low intensity (450 erg.cm–2.sec–1) on thered light at saturating intensity caused a significant decreasein the rate of 14CO2 incorporation into sucrose and increasein incorporation into alanine, lipid-fraction, aspartate andother related compounds, indicating that the path of carbonin photosynthesis is regulated by short wavelengdi light ofvery low intensity. Possible effects of wavelength regulationof photosynthetic carbon metabolism in algal cells are discussed. 1 Part of this investigation was reported at the XII InternationalBotanical Congress, Leningrad, 1975 and the Japan-US CooperativeScience Seminar "Biological Solar Energy Conversion", Miami,1976. Requests for reprints should be addressed to S. Miyachi,Radioisotope Centre, University of Tokyo, Bunkyo-ku, Tokyo 113,Japan. 4 Present address: Department of Chemistry, Faculty of PharmaceuticalSciences, Teikyo Univ., Sagamiko, Kanagawa, Japan. (Received August 6, 1977; )  相似文献   

14.
Green Light Drives CO2 Fixation Deep within Leaves   总被引:5,自引:0,他引:5  
Maximal l4CO2-fixation in spinach occurs in the middle of thepalisade mesophyll [Nishio et al. (1993) Plant Cell 5: 953],however, ninety percent of the blue and red light is attenuatedin the upper twenty percent of a spinach leaf [Cui et al. (1991)Plant Cell Environ. 14: 493]. In this report, we showed thatgreen light drives 14CO2-fixation deep within spinach leavescompared to red and blue light. Blue light caused fixation mainlyin the palisade mesophyll of the leaf, whereas red light drovefixation slightly deeper into the leaf than did blue light.14CO2-fixation measured under green light resulted in less fixationin the upper epidermal layer (guard cells) and upper most palisademesophyll compared to red and blue light, but led to more fixationdeeper in the leaf than that caused by either red or blue light.Saturating white, red, or green light resulted in similar maximal14CO2-fixation rates, whereas under the highest irradiance ofblue light given, carbon fixation was not saturated, but itasymptotically approached the maximal 14CO2-fixation rates attainedunder the other types of light. The importance of green lightin photosynthesis is discussed. 1Supported in part by grants from Competitive Research GrantsOffice, U.S. Department of Agriculture (Nos. 91-37100-6672 and93-37100-8855).  相似文献   

15.
In 14C fixation experiments, 3-phosphoglyceric acid was thefirst product of carbon assimilation in the light in Potamogetonpectinatus. The pattern of early 14C-labelled compounds wasthe same over a range of pH values of the medium from 3.5 to8.1. Rates of 14C incorporation declined with increasing pHof the medium indicating that free CO2 is the major exogenoussource of carbon for photosynthesis in Potamogeton pectinatus.  相似文献   

16.
Photosynthetic carbon metabolism was studied with Chroomonassp. cells in which the rate of photosynthesis was inhibitedunder both an anaerobic condition and high concentrations ofoxygen. The time course of 14C-incorporation into photosyntheticproducts showed that 3-phosphoglycerate was the initial productof photosynthetic CO2 fixation in Chroomonas sp. cells. During5-min photosynthesis, a considerable amount of 14C was incorporatedinto the insoluble fraction (mostly cryptomonad starch), andoxygen predominantly affected 14C-incorporation into this fraction.Although 14C-incorporation into intermediates of the photorespiratorypathway increased with increasing O2 concentration, the amountswere much less than expected from the degree of oxygen inhibition.It is noteworthy that 14C-dihydroxyacetone phosphate accumulatedduring photosynthesis only under the anaerobic condition, whereasthe levels of the other phosphate esters were scarcely affectedby the oxygen concentration. Ribulose-1,5-bisphosphate carboxylase from Chroomonas sp. wascompetitively inhibited by oxygen, and its Km(CO2) value wassimilar to those of terrestrial C3 plant enzymes. (Received November 19, 1984; Accepted May 20, 1985)  相似文献   

17.
HEUER  BRURIA; PLAUT  Z. 《Annals of botany》1981,48(3):261-268
The influence of salinity in the growing media on ribulose-1,5-bisphosphate (RuBP) carboxylase and on CO2 fixation by intactsugar beet (Beta vulgaris) leaves was investigated. RuBP carboxylase activity was mostly stimulated in young leavesafter exposure of plants for 1 week to 180 mM NaCl in the nutrientsolution. This stimulation was more effective at the higherNaHCO2 concentrations in the reaction medium. Salinity also enhanced CO2 fixation in intact leaves mostlyat rate-limiting light intensities. A 60 per cent stimulationin CO2 fixation rate was obtained by salinity under 450 µEm–2 s–1. At quantum flux densities of 150 µEm–2 s–1 (400–700 nm) this stimulation was280 per cent. Under high light intensities no stimulation bysalinity was found. In contrast, water stress achieved by directleaf desiccation or by polyethylene glycol inhibited enzymeactivity up to fourfold at –1.2 MPa. Beta vulgaris, sugar beet, ribulose-1, 5-bisphosphate carboxylase, salt stress, water stress, carbon dixoide fixation, salinity  相似文献   

18.
Dark CO2-fixation in guard cells of Vicia faba was much moresensitive to ammonium than in mesophyll cells. Addition of ammonium(5.0 mol m–3; pH0 7.6) caused up to a 7-fold increasein dark CO2-fixation rates in guard cell protoplasts (GCP),whereas in leaf slices, mesophyll cells, and mesophyll protoplaststhe increase was only about 1.4-fold. In both cell or tissuetypes, total CO2-fixation rates were higher in the light (2–12-foldhigher in GCP and 28-fold in mesophyll); these rates were onlyslightly changed by ammonium treatment. However, separationof 14C-labelled products after fixation of CO2 in the lightby GCP revealed a large ammonium-induced shift in carbon flowfrom starch and sugars to typical products of C4-metabolism(mainly malate and aspartate). In contrast, in mesophyll cellsamino acid and malate labelling was only moderately increasedby ammonium at the expense of sucrose. The data suggest thatin vivo ammonium might facilitate stomatal opening and/or delaystomatal closing through an increased production of organicacids. Key words: PEP-carboxylation, guard cell protoplasts, ammonium, fusicoccin  相似文献   

19.
Physiology and Growth of Wheat Across a Subambient Carbon Dioxide Gradient   总被引:5,自引:0,他引:5  
Two cultivars of wheat (Triticum aestivum L.), 'Yaqui 54' and'Seri M82', were grown along a gradient of daytime carbon dioxideconcentrations ([CO2]) from near 350-200 µmol CO2 mol-1air in a 38 m long controlled environment chamber. Carbon dioxidefluxes and evapotranspiration were measured for stands (plantsand soil) in five consecutive 7·6-m lengths of the chamberto determined potential effects of the glacial/interglacialincrease in atmospheric [CO2] on C3 plants. Growth rates andleaf areas of individual plants and net assimilation per unitleaf area and daily (24-h) net CO2 accumulation of wheat standsrose with increasing [CO2]. Daytime net assimilation (PD, mmolCO2 m-2 soil surface area) and water use efficiency of wheatstands increased and the daily total of photosynthetic photonflux density required by stands for positive CO2 accumulation(light compensation point) declined at higher [CO2]. Nighttimerespiration (RN, mmol CO2 m-2 soil surface) of wheat, measuredat 369-397 µmol mol-1 CO2, apparently was not alteredby growth at different daytime [CO2], but RN /PD of stands declinedlinearly as daytime [CO2] and PD increased. The responses ofwheat to [CO2], if representative of other C3 species, suggestthat the 75-100% increase in [CO2] since glaciation and the30% increase since 1800 reduced the minimum light and waterrequirements for growth and increased the productivity of C3plants.Copyright 1993, 1999 Academic Press Atmospheric carbon dioxide, carbon accumulation, evapotranspiration, light compensation point, net assimilation, respiration, Triticum aestivum, water use efficiency, wheat  相似文献   

20.
The unicellular, green alga Ankistrodesmus braunii is subjectto a rapid photoinhibition of photosynthesis when exposed toa photon fluence rate in excess of that required to saturatephotosynthesis. Photoinhibition is manifested as a time-dependentdecrease in the capacity for either 14CO2 fixation or CO2-dependentO2 evolution. Room temperature chlorophyll fluorescence inductionin intact cells, has been used to probe the primary site(s)of light damage during photoinhibition. Initially, at least,photoinhibition is due to a block in Photosystem II of photosyntheticelectron transport, at a site on the water-splitting side. (Received September 19, 1983; Accepted February 7, 1984)  相似文献   

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