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1.
The stay-green mutations cytG and Gd1d2 prevent the normal yellowingduring senescence of soybean (Glycine max) leaves and cotyledons.Because light plays such an important role in regulating morphogenesisand it promotes the formation of chlorophyll (Chl), we determinedthe effect of cytG and Gd1d2 (in a cv. Clark background) onthe development and some light responses of seedlings. AlthoughcytG and Gd1d2 seeds, particularly the cotyledons, are greenwhen mature, 44 and 71 % respectively of this Chl broke downwhen the seeds were germinated in darkness. Chlorophyllidesand phaeophytins were not present in the seeds in significantamounts. cytG and Gd1d2 as well as wild type (cv. Clark) seedlingsdeveloped a full etiolation syndrome (morphology and lack ofChl) in darkness. Light induced rapid Chl accumulation in thedark-grown seedlings with no apparent difference among the threeisolines. A short (8 h) exposure to light induced some Chl inthe cotyledons of dark-grown plants, and 22 h of light producedfour times more. Following return to darkness, the 8-h groupshowed very little breakdown over the next 12 d. After the 22-hgroup was returned to darkness, the wild-type lost Chl steadily,but Gd1d2 and eventually also cytG inhibited this breakdown.In the 22-h group, the Chl a/b ratio decreased in wild typeand cytG indicating preferential breakdown of Chl a relativeto Chl b; however, Gd1d2 prevented this change. cytG and Gd1d2seem to act preferentially on Chl breakdown rather than synthesis.Copyright1995, 1999 Academic Press Glycine max, soybean, chlorophyll, chlorophyll a/b ratio, cotyledons, etiolation, cytG, Gd1d2, mutations, senescence  相似文献   

2.
Ribulose-l,5-diphosphate (RuDP) carboxylase protein and activitywere determined in relation to net photosynthetic rate duringthe senescence of intact flag leaves of wheat on the plant.Initially the decrease in RuDP carboxylase activity was greaterthan the decline in net photosynthesis. The major decrease inRuDP carboxylase activity over this period resulted from a decreasein enzyme specific activity from 11 to 2 µmol CO2 fixedh–1 mg–1 protein. Loss of RuDP carboxylase proteindid not occur until late in senescence by which time chlorophyllconcentration had decreased by more than 50%. Treatment of flagleaves at weekly intervals with either 1000 parts 10–62-chloro-ethyltrimethylammonium chloride or 100 parts 10–6gibberellic acid with 1 part 10–6 kinetin did not significantlyaffect net photosynthetic rate, RuDP carboxylase protein oractivity during senescence.  相似文献   

3.
During leaf senescence, chioroplast proteins, lipids and pigmentsundergo massive degradation releasing large amounts of nutrientsfor reuse elsewhere. Understandably, the chloroplast-degradingmachinery has been considered to operate within the chloroplastitself. However, most of those lipases and proteases that increaseduring senescence and have been localized occur in the vacuoleor cytoplasm rather than in the chloroplast. In chloroplastsof senescing (monocarpic) soybean (Glycine max) leaves, numerousplastoglobuli (lipid-protein globules) protruded through thechloroplast envelope and emerged into the cytoplasm, where theseglobules acquired a polygonal coat and eventually disintegrated.The fluorescence characteristics of these cytoplasmic globulesindicated that they contained chlorophyll or chlorophyll derivatives.The secreted globules were specific to senescing cells and wereabsent in old leaves of the ‘stay green’ genotypeGGd1d1d2d2 which shows a generalized inhibition of chloroplastdegradation. These observations suggest that the globules secretedby the chloroplast carry photosynthetic components to the cytoplasmor vacuole where they are degraded. This blebbing from the chloroplastsuggests the occurrence of a novel pathway for the degradationof photosynthetic components in senescing leaves, and it opensnew approaches to the study of chloroplast breakdown and itsregulation. 1 Permanent address: Instituto de Fisiología Vegetal,Universidad Nacional de La Plata, c. c. 327, 1900-La Plata,Argentina.  相似文献   

4.
Stands of spring wheat grown in open-top chambers (OTCs) wereused to assess the individual and interactive effects of season-longexposure to elevated atmospheric carbon dioxide (CO2 and ozone(O3) on the photosynthetic and gas exchange properties of leavesof differing age and position within the canopy. The observedeffects were related to estimated ozone fluxes to individualleaves. Foliar chlorophyll content was unaffected by elevatedCO2 but photosynthesis under saturating irradiances was increasedby up to 100% at 680 µmol mol–1 CO2 relative tothe ambient CO2 control; instantaneous water use efficiencywas improved by a combination of increased photosynthesis andreduced transpiration. Exposure to a seasonal mean O3 concentration(7 h d–1) of 84 nmol mol–1 under ambient CO2 acceleratedleaf senescence following full expansion, at which time chlorophyllcontent was unaffected. Stomatal regulation of pollutant uptakewas limited since estimated O3 fluxes to individual leaves werenot reduced by elevated atmospheric CO2, A common feature ofO3-treated leaves under ambient CO2 was an initial stimulationof photosynthesis and stomatal conductance for up to 4 d and10 d, respectively, after full leaf expansion, but thereafterboth variables declined rapidly. The O3-induced decline in chlorophyllcontent was less rapid under elevated CO2 and photosynthesiswas increased relative to the ambient CO2 treatment. A/Ci analysessuggested that an increase in the amount of in vivo active RuBisCOmay be involved in mitigating O3-induced damage to leaves. Theresults obtained suggest that elevated atmospheric CO2 has animportant role in restricting the damaging effects of O3 onphotosynthetic activity during the vegetative growth of springwheat, and that additional direct effects on reproductive developmentwere responsible for the substantial reductions in grain yieldobtained at final harvest, against which elevated CO2 providedlittle or no protection. Key words: Elevated CO2 and O3, gas exchange, O3 flux, stomata, chlorophyll, Triticum aestivum  相似文献   

5.
Cultivars of cassava, Manihot esculenta Crantz, were studiedto determine the mechanism of photosynthetic carbon assimilationin this species. The results, contrary to recent reports, indicatethat cassava is a C3 plant based on a number of physiologicaland biochemical photosynthetic characteristics. The CO2 compensationpoints among 10 cassava cultivars ranged from 55 to 62 µlliter–1, which was typical for C3 plants including castorbean, a member of the same family (Euphorbiaceae). The initialproducts of photosynthesis in cassava are C3-like; the activitiesof several key C4 enzymes in cassava are low and similar tothose of C3 plants. Data on the rates of photosynthesis perunit of leaf area and the photosynthetic response of cassavato CO2 is also consistent with C3 photosynthesis. Cassava hasa distinctive chlorenchymatous vascular bundle sheath locatedbelow a single layer of palisade cells. Unlike C3-C4 intermediatesand C4 species, the bundle sheaths of cassava are not surroundedby mesophyll cells. The bundle sheath cells which occur at highfrequency in cassava may function in both photosynthesis andtransport of photosynthates in the leaf. (Received July 31, 1990; Accepted September 25, 1990)  相似文献   

6.
Photosynthesis is known to occur in rice panicles, but littlehas been reported about the photosynthetic or biochemical characteristicsof such panicles. The estimated gross amount of photo-syntheticallyassimilated CO2 in a panicle is 30% of that in a flag leaf.This result and the good light-intercepting characteristicsof the panicle in the canopy suggest that photosynthesis inthe panicle may contribute significantly to grain filling. Therice panicle is composed of spikelets and of rachis-branchesincluding rachis which have estimated gross rates of photosynthesisduring the 30-day period after anthesis of 130 to 180 and 50to 100 µmol CO2.(mg Chl)–1.h–1, respectively.The corresponding rate for the flag leaf is 180 to 230 µmolCO2.(mg Chl).h. On the basis of Chl, spikeletshave a high photosynthetic capability which is similar to thatof the flag leaf. The activities of ribulose-l,5-bisphosphate carboxylase (RuBPCase),phosphoenolpyruvate carboxylase (PEPCase), and pyruvate.Pi dikinase(PPDK) in spikelets were 129, 220, and 87 µmol.(mg Chl).h,respectively. The activities of PEPCase and PPDK in spikeletswere considerably higher than those in the flag leaf or rachis-branches.Oxygen-insensitive photosynthesis was found only in spikelets.The Km of NaHCO3 for photosynthesis by slices of spikelets inan aqueous solution (0.6 mM) was considerably lower than thatfor slices of flag leaf (4.2 mM). All these results indicatethat spikelets have different photosynthetic characteristicsfrom those of the flag leaf and rachis-branches. The possibilityof C3–C4 intermediate photosynthesis or C4-like photosynthesisin spikelets is discussed. 4Present address: Department of Biochemistry, Faculty of Science,Saitama University, Urawa, 338 Japan (Received February 14, 1990; Accepted June 12, 1990)  相似文献   

7.
Defined solutions containing cytokinin and/or mineral nutrientswere supplied in lieu of the roots through the cut stem baseof soybean explants (a leaf with associated pod and subtendingstem segment) in order to analyze the roles of cytokinin andmineral nutrients from the roots in pod development and foliarmaintenance. In explants cut at early-mid podfill, supplyingonly H2O accelerated leaf senescence and pod maturation anddecreased seed d. wt relative to comparable parts of intactplants. Zeatin (Z) and/or minerals not only delayed leaf yellowingand the decline in foliar chlorophyll levels and photosyntheticrates but also inhibited leaflet and petiole abscission relativeto H2O controls. Even large declines in foliar assimilatoryprocesses did not necessarily lead to abscission. Z and/or mineralsalso increased stomatal conductivity throughout podfill. Z showedsome positive synergistic effects with minerals on leaf maintenance.Pod wall, cotyledon and radicle yellowing were delayed by Zand/or minerals but not as much as leaf senescence. Mineralsonly or Z +minerals prolonged seed d. wt accumulation and increasedfinal dry seed wt to a level similar to that for intact plants.Seed growth showed a complex interrelation with pod wall andleaf f. wt and d. wt changes. A decline in cytokinin and mineralflux from the roots appears to be important for pod-inducedleaf senescence; however, pod development, foliar senescenceand their component processes may be affected differently. Thus,even though the explant is a physiological/nutritional moduleof the whole plant, it is influenced by cytokinin and mineralsfrom the roots and therefore only semiautonomous. Glycine max L. Merr. cv. Anoka, soybean, abscission, cytokinin, chlorophyll, mineral nutrients, seed development, semiautonomous physiological modules, senescence, stomatal resistance  相似文献   

8.
不同地理种群两针松光合和生长特性的差异   总被引:2,自引:2,他引:0  
为认识两针松中的赤松(Pinus densiflora)、长白松(Pinus sylvestris var. sylvestriformis)和樟子松(Pinus sylvestris var. mongolica)光合作用对环境变化的响应和适应特征,在其自然分布区内选择地理和气候差异显著的9个地理种群,采集成熟种子并播种于东北林业大学温室,2 a后,测定针叶的光合能力及其相关因子,并同时测定幼苗的株高和基径,比较种间和地理种群间差异。结果表明:赤松、长白松和樟子松种间最大光合速率(p=0.34)、呼吸速率(p=0.15)和表观量子效率(p=0.18)的差异均不显著;地理种群间表观量子效率(AQY)差异显著(p=0.08),其中兴凯湖种群表观量子效率最高,为0.084 5±0.002 4 mol CO2·mol-1 photons,较其他种群高13.10%~159.23%。地理种群间呼吸速率(Rd)差异显著(p=0.01),黑河和兴凯湖种群的呼吸速率最高(分别为1.62±0.18 μmol CO2·m-2·s-1,1.52±0.30 μmol CO2·m-2·s-1),安图和东宁种群的呼吸速率最低,分别为0.40±0.01 μmol CO2·m-2·s-1,0.34±0.03 μmol CO2·m-2·s-1。地理种群间最大净光合速率(Pmax)差异显著(p=0.02),其中兴凯湖、东宁、韩国、鸡东、二道白河、红花尔基种群的最大光合速率差异不显著,均值为18.36±1.81 μmol CO2·m-2·s-1,高于安图、漠河、黑河种群。安图、漠河、黑河种群间最大光合速率差异不显著,均值为12.57±0.86 μmol CO2·m-2·s-1。地理种群间的株高和基径差异均显著,其中韩国种群株高最高,黑河种群最低;基径兴凯湖种群最高,安图种群最低。株高和基径最大值约为最小值的3倍。两针松针叶的光合能力及其一些相关因子的地理种群间差异可能是其光合机构对种源地环境条件长期生理适应的结果。  相似文献   

9.
Patterns of initial photosynthetic CO2 incorporation were determinedfor some seagrasses and were related to activities of primarycarbon fixing enzymes, carbonic anhydrase activities, and 13Cvalues. According to the incorporation patterns, Cymodocea nodosa wasa C4 species while Thalassia hemprichli and Thalassodendronciliatum were C3 plants. Halophila stipulacea showed an unusualincorporation pattern which could be viewed as intermediatebetween typical C3 and C4 pathways. The activity ratios of ribulose-l,5-bisphosphate carboxylase (RUBPcase) to phosphoenolpyruvatecarboxylase (PEPcase) were about 3 for Thalassodendron ciliatumand 1 for Cymodocea nodosa and Halophila stipulacea. The lattervalue, which is intermediate to ratios found in terrestrialC3 and C4 plants, may correlate with the incorporation patternsfound for Halophila stipulacea. Since the C4 seagrass lackedthe Kranz anatomy, it may, in addition, point to a flexibleincorporation potential for these plants. The high 13C values found in these and other seagrasses didnot correlate with their photosynthetic pathways as in terrestrialplants. This discrepancy is probably due to a ‘closedsystem’ type of photosynthesis in which CO2 is efficientlyutilized. The C3 species which utilize CO2 enzymatically must convertexogenous HCO-3 to CO2 internally. Even though carbonic anhydraseactivities were very low, conversion rates seemed to be sufficientfor high rates of photosynthesis. Since enzymatic fixation ratesapproached photosynthetic rates even at CO2 saturation, thelimitation for these seagrasses to express their high photosyntheticpotential is most probably the HCO3 uptake system.  相似文献   

10.
Effect of the age of tobacco leaves on photosynthesis and photorespiration   总被引:1,自引:0,他引:1  
Relationships among the activities of enzymes related to photosynthesisand photorespiration, and 14CO2 photosynthetic products wereinvestigated with individual tobacco leaves attached to thestalk from the bottom to the top. P-glycolate phosphatase ofthe chloroplasts and glycolate oxidase of the peroxisomes hadtheir maximum activities in the 25th leaf from the dicotyledons.Maximum photorespiration was similarly distributed. The highestratio of serine-14C to glycine-14C in the photosynthesates andmaximum glycolate formation were also observed in the 25th leaf.Glutamateglyoxylate aminotransferase, serine hydroxymethyltransferaseand glycine decarboxylase were more active in the upper leaves.RuDP carboxylase had nearly constant activity in all leaves,except for the youngest in which activity decreased. MaximumCO2 photosynthesis and enzyme activity for the C4 dicarboxylicacid cycle occurred in the upper, youngest leaf. Distributionof photosynthetic CO2 fixation among the leaves did not coincidewith RuDP carboxylase activity. The photosynthetic capacityappeared to be better related to the distribution pattern forenzymes of the C4 dicarboxylic acid pathway, i.e. PEP carboxylase,pyruvate Pi dikinase and 3-PGA phosphatase in the upper leaves.The results suggest that the C4 dicarboxylic acid pathway participates,to some extent, in photosynthesis in young leaves of tobacco,a dicotyledonous plant. 1This work was reported at the Annual Meeting (1970) of theJapanese Plant Physiologists in Kobe. 2The Central Research Institute, Japan Monopoly Corporation1-28-3, Nishishinagawa, Shinagawaku, Tokyo, 141 Japan. (Received November 2, 1972; )  相似文献   

11.
Carbonic anhydrase (CA, EC. 4.2.1.1 [EC] ) activity in air-grown Characorallina was detected mainly in the intracellular fraction,most of which composed of chloroplasts and cytoplasmic gel,and not on the cell surface. Only minor levels of CA activity,on the basis of equivalent volumes, were detected in the cellsap and the cytoplasmic sol. The maximum rate of photosynthetic O2 evolution by air-grownChara corallina at pH 6.0 was twice that at pH 7.6, while theapparent Km for external inorganic carbon (Ci) at pH 7.6 wasabout three times that at pH 6.0. However, the apparent Km(CO2)was about three times larger at pH 6.0 than at pH 7.6. The Km(Ci)-valueat pH 7.6 increased severalfold in the presence of acetazolamide(AZA), an inhibitor of CA, but no inhibition was observed atpH 6.0. The pH-dependence may be due to differences in the permeabilityof AZA at the given pH values. Fixation of 14CO2 at 20 µMand of H14CO3 at 200 µM over the course of 5 swas very similar at pH 7.4. Addition of CA significantly suppressedthe photosynthetic 14CO2-fixation but it stimulated the H14CO3-fixation.This result indicates that free CO2 is an active species ofCi that is incorporated into the cell during photosynthesis. These results together suggest the following: (1) Free CO2 isutilized for photosynthesis, (2) CA is mainly located insidethe cell and functions to increase the affinity for CO2 in photosynthesisby facilitating the supply of CO2 from the plasmalemma to thesite of CO2-fixation. 3Present address: Biological Laboratory, The University of theAir, Wakaba 2-11, Chiba, 260 Japan. (Received December 9, 1988; Accepted March 22, 1989)  相似文献   

12.
The rates of photosynthetic 14CO2 fixation by Chlorella vulgarisllh, grown under high CO2, were determined between 4 to 37°Cwith air containing from 300 to 13,000 ppm 14CO2. When the CO2level was increased, both the rate of photosynthesis and theoptimum temperature for maximum photosynthesis increased. Themaximum photosynthetic rate was reached at 12°C with 300ppm l4CO2. Among the photosynthetic products fromed at 300 ppm 14CO2, glycolatedecreased greatly when the temperature was raised from 20 to30°C. At 3,000 ppm 14CO2 an insignificant amount of glycolatewas formed at all temperatures, whereas 14C-incorporation intothe insoluble fraction, sucrose, and the lipid fraction wassignificantly higher than at 300 ppm 14CO2. The 14C in sucrosewas greatly increased and the radioactivity in the insolublefraction decreased when the temperature was raised from 28 to36°C. (Received April 8, 1980; )  相似文献   

13.
青海省三江源区人工草地生态系统CO2通量   总被引:13,自引:2,他引:11       下载免费PDF全文
 了解三江源人工草地净生态系统CO2交换(Net ecosystem CO2 exchange, NEE)的季节变化规律和主要生物因子及环境因子对这些过程的影响将有助于认识青藏高原人工草地生态系统碳循环、生态价值、功能,以及对三江源区的生态安全的重要意义。该研究利用涡度相关技术,于2005年9月1日至2006年8月31日对位于青海腹地的垂穗披碱草(Elymus nutans)人工草地的NEE及生物和环境因子进行观测, 阐明NEE及其组分的动态变化特征和影响因子。三江源区人工草地生态系统的日最大吸收量为2.38 g C·m-2·d-1,出 现在7月30日。日间最大吸收率和最大排放率都出现在8月,分别为-6.82和2.95μmol CO2·m-2·s-1。在生长季, 白天的NEE主要受光合有效辐射(Photosynthe tically active rad iation, PAR)变化控制,同时又与叶面积指数和群落多样性交互作用,共同调节光合速率和光合效率的强度。最大光合同化速率为2.46~10.39μmol CO2·m-2·s-1,表观初始光能利用率为0.013~0.070μmol CO2·μmol-1 PAR。 在碳交换日过程中,NEE并不完全随着 PAR的增加而增大,当PAR超过某一值(>1 200μmol ·m-2·s-1)时,NEE随PAR的增加而降低。受温度的影响,生长季的生态系统的呼吸商Q10(1.8)小于非生长季节的 2.6)。 生态系统呼吸主要受温度的控制,同时也受到叶面积指数的显著影响。生长季昼夜温差大并不利于生态系统的碳获取。 三江源区人工草地生态系统是一个较强的碳汇,为-49.35 g C·m-2·a-1。  相似文献   

14.
Haloxylon aphyllum and H. persicum of Chenopodiaceae are dominantplants in the continental deserts of the Asian Irano-Turanianregion. The photosynthetic organs, assimilating shoots and leaf-likecotyledons of these two species were studied to characterizetheir photosynthetic types. 13C/12C isotope ratios, the cellularanatomy of as similating organs, primary photosynthetic products,and activities of carbon metabolism enzymes, RUBP carboxylase,PEP carboxylase, malic enzymes, and aspartate aminotransferase,indicate different pathways of CO2 fixation in the photosyntheticorgans. Assimilating shoots had attributes of the C4 photosynthesisentirely, while cotyledons lack Kranz-anatomy and incorporatedCO2 via C3 photosynthesis. Cotyledons and seeds had lower  相似文献   

15.
Activities of photosynthetic and photorespiratory enzymes viz.,ribulose bisphosphate carboxylase, phosphoenol pyruvate carboxylaseand glycolate oxidase from jute (Corchorus olitorius L.; cv.JRO 632) leaves were compared with those from maize (C4) andsunflower (C3) leaves. The photosynthetic CO2 fixation products,the release of 14CO2 in light and dark following photosynthesisin 14CO2, chlorophyll a: b ratio, gross leaf photosyntheticrate and dry matter production rate were also studied. The resultsshow that jute is a C3 plant. Key words: Jute, Corchorus olitorius, C3 photosynthesis  相似文献   

16.
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   

17.
Limitation of photosynthesis and light activation of ribulose,1,5-bisphosphate carboxylase (RuBPCO) were examined in the 5thleaf of seedlings of red clover (Trifolium pratense L. cv. Renova)for 5 d following an increase in photosynthetic photon fluxdensity (PPFD) from 200 to 550µmol quanta m–2 s–1.Net photosynthesis and its stimulation at 2.0 kPa O2 initialactivity of rapidly extracted RuBPCO, standard activity of RuBPCOafter incubation of the extracts in the presence of CO2, Mg2+,and inorganic phosphate and contents of soluble protein, starch,soluble sugars, and various photosynthetic metabolites weredetermined. Photosynthesis decreased and starch content increased.No decrease in photosynthesis was found if, when PPFD was increased,all leaves except the investigated 5th leaf were removed, suggestingthat the decrease in photosynthesis was due to accumulated carbohydrates.The stimulation of photosynthesis at 2.0 kPa O2 did not decreaseand the ratio of the total foliar steady-state contents of triosephosphate to 3-phosphoglycerate increased suggesting that thedecrease in photosynthesis was not due to limiting inorganicphosphate in chloroplasts. Intercellular CO2 partial pressureand RuBP content were not decreased. Nevertheless, the ratioof photosynthesis to initial RuBPCO activity decreased, suggestingthat the catalysis per active RuBPCO site was decreased. Theincrease in PPFD in the growth cabinet and the PPFD at whichleaves were preconditioned for 1 h, affected not only initialactivity but also the standard activity of RuBPCO. The resultssuggest that a varying proportion of RuBPCO was bound to membranesand was contained in the insoluble fraction of the extracts.A comparison of photosynthesis with extracted RuBPCO activitysuggested that membrane bound RuBPCO did not contribute to photosyntheticCO2 fixation and that the binding and release to and from membranesmodulated actual RuBPCO activity in vivo. Key words: Photosynthesis, ribulose 1,5-bisphosphate carboxylase, starch  相似文献   

18.
Photosynthetically competent chloroplasts were isolated fromcells of Euglena gracilis Z grown photoautotrophically in 1.5%CO2. The isolated chloroplasts were intact and substantiallyfree from cytosolic, mitochondrial and microbody materials.The effects of some compounds on the activity of photosynthetic14CO2 fixation were examined. The optimal pH and sorbitol concentrationwere 8.0 and 0.33 M, respectively. The chloroplasts requireda high level of P, (5 to 20 mM) for the maximal rate of photosynthesis.They were insusceptible to 10 mM of free Mg2+. ATP, ADP andAMP at 1 to 5 mM notably stimulated photosynthesis, althoughhigh concentrations of AMP were unfavorable. In the assay mediumdeveloped for this study, the chloroplasts exhibited photosyntheticactivity of 120µmoles-mg–1 Chl-h–1 at 30?C. Chloroplasts could also be isolated from cells grown under ordinaryair. The rate of photosynthetic 14CO2 fixation at 1 mM NaHl4CO3was higher in these chloroplasts than in those isolated fromcells grown in 1.5% CO2, whereas at 10 mM NaHl4CO3, the ratesof the two types of chloroplasts were nearly the same. Theseresults suggest that the CO2 concentration given during growthof the algal cells affects the affinity for dissolved inorganiccarbon at the chloroplast level. (Received March 30, 1987; Accepted August 17, 1987)  相似文献   

19.
Barley (Hordeum vulgare L. cv. Golf) plants were grown at twodifferent relative addition rates; 0.1 and 0.2 d–1 ofnitrate. Three to five days before measurements started theplants were transferred to a nutrient solution with 2 mM nitrateor ammonium. The ammonium-grown plants showed increased ammoniumlevels in both shoots and roots and also increased ammoniumconcentrations in xylem sap. Ammonia emission measured in cuvettes connected to an automaticNH3 monitor was close to zero for nitrate-grown plants but increasedto 0.59 and 0.88 nmol NH3 m–2 S–1 for plants transferredto ammonium after growing at RA=0.2 and 0.1 d–1, respectively.In darkness, NH3 emission decreased together with photosynthesisand transpiration, but increased rapidly when the light wasturned on again. Addition of 0.5 mM methionine sulphoximine (MSO) to the plantscaused an almost complete inhibition of both root and shootglutamine synthetase (GS) activity after 24 h. Ammonia emissionincreased dramatically and photosynthesis and transpirationdecreased in both nitrate- and ammonium-grown plants as a resultof the GS inhibition. At the same time plant tissue and xylemsap ammonium concentrations increased, indicating the importanceof GS in controlling plant ammonium levels and thereby NH3 emissionfrom the leaves. Key words: Hordeum vulgare, ammonia emission, ammonium, glutamine synthetase, nitrogen nutrition, photosynthesis, transpiration  相似文献   

20.
Methionine sulfoximine (MSO) greatly reduced the carbon dioxideexchange rate (CER) of detached wheat (Triticum aestivvm L.cv Roland) leaves in 21% O2, but only slightly reduced it in2% O2. A supply of 50 mM NH4Cl had little effect on the CERirrespective of the O2 concentration. A simultaneous additionof glutamine and MSO protected against the inhibition of photosynthesisto a considerable extent and caused the accumulation of moreNH3 than did the addition of MSO alone. Fixation of 14CO2 in wheat leaves was inhibited by MSO treatmentin 22% O2, and there was decreased incorporation of 14G intoamino acids and sugars and increased label into acid fractions.The addition of MSO and glutamine together eliminated the effectof MSO on the photosynthetic 14CO2 fixation pattern. NH4Cl stimulatedthe synthesis of amino acids from 14CO2, especially the synthesisof serine in 22% O2. Our observations show that factors other than the uncouplingof photophosphorylation by accumulated NH3 may be responsiblefor the early stage of photosynthesis inhibition by MSO underphotorespiratory conditions. 1Present address: Department of Agricultural Chemistry, KyushuUniversity, Fukuoka 812 Japan. 2Also at U.S. Department of Agriculture, Agricultural ResearchService, Urbana, Illionois 61801, U.S.A. (Received September 13, 1983; Accepted February 2, 1984)  相似文献   

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