首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   16篇
  免费   0篇
  2000年   2篇
  1971年   1篇
  1970年   3篇
  1969年   2篇
  1966年   1篇
  1965年   1篇
  1964年   1篇
  1962年   1篇
  1961年   2篇
  1960年   2篇
排序方式: 共有16条查询结果,搜索用时 31 毫秒
1.
Preillumination of leaves of spinach, soybean and maize in theabsence of CO2 greatly enhanced the capacity for fixing CO2in an immediately following dark period. Lightenhanced darkCO2-fixation was further observed in isolated chloroplasts ofspinach and soybean. When isolated chloroplasts were illuminated,CO2-fixing capacity in the subsequent dark period increasedrapidly at first and later more slowly attaining a stationaryvalue in about 20 min. When the light was turned off at thisstage, the capacity decreased very rapidly becoming zero inabout 10 min. The magnitude of the enhanced dark fixation andits decay in the dark were not influenced by the presence orabsence of atmospheric oxygen. In both leaves and isolated chloroplasts,no significant change in oxygen (21%) occurred in distributionpatterns of radioactivity in products fixed by photosynthetic,or light-enhanced, dark, 14CO2-fixation. In preilluminated leaves14C was incorporated into sucrose in the subsequent dark period,indicating that the photosynthetic carbon reduction cycle isoperating in light-enhanced dark fixation in higher plants. 1Present address: Noda Institute for Scientific Research, Noda,Chiba Prefecture (Received August 10, 1970; )  相似文献   
2.
Using uniformly 32P-labeled Chlorella cells as material, compositionof acid-soluble inorganic polyphosphates was studied by paperchromatography and ion-exchange chromatography. 2.By the paper chromatographic analysis it was found that theacid-soluble polyphosphates consisted of highly condensed polyphosphates.Ring-forming tri- and tetrametaphosphates, pyrophosphate andtripolyphosphate were not detected in the acid-soluble fractionof the algal cells. 3.By an ion-exchange chromatography with the use of increasingconcentrations of KCl-solution as eluant, it was found thatthe acid-soluble polyphosphate was a mixture of polyphosphateswith a variety of condensation number (n-values). Polyphosphatesof the n-values between 3 and 15 were only 20% of the totalacid-soluble polyphosphate. The majority of the other polyphospateshad greater n-values which was eluted with 0.5–1.0 M KCl. (Received March 2, 1964; )  相似文献   
3.
  1. Using intact cells of Chlorella ellipsoidea, investigationswere made on the effects of some SH-reagents (IAA, CMB and arsenite)upon various reactions pertaining to the primary photogenicagent (designated by R) formed in the mechanism of photosynthesis.
  2. The pre-illumination experiments using 14CO2 as a tracer haveled us to the inference that (i) the process of photochemicalformation of R is inhibited by IAA, that (ii) the spontaneousdecay of R in the dark is markedly accelerated by CMB and arsenite,but not at all affected by IAA, and that (iii) the participationof R in the cyclic path of carbon leading to the fixation ofCO2 is not affected by IAA and CMB.
  3. Based on the assumptionthat R is a reducing agent, it was discussedthat the fact mentionedunder (iii) is incompatible with theidea that the reductionof PGA to triose phosphate be the soleor rate-determining reductivestep in the cyclic path of carbonin photosynthesis.
  4. The possibilitythat R may have a functional SH-group (s) wasinvoked to accountfor the observation that the decay of R inthe dark was markedlyaccelerated by CMB and arsenite.
(Received February 11, 1960; )  相似文献   
4.
1) The wavelength effects on 14CO2-fixation by Chlorella cellswere studied, using monochromatic light of different light intensities. 2) Blue light (453 mµ) stimulated the incorporation of14C into aspartate, glutamate and malate. Red light (679 mµ),on the other hand, stimulated its incorporation into P-esters,free sugars and insoluble material. 3) The blue light effect was observed in the presence of CMUat concentrations completely suppressing ordinary photosyntheticCO2-fixation. 4) The blue light effect in the presence of CMU was inducedat very low intensities. At 453 mµ, 300 erg cm–2sec–1 was sufficient for complete saturation. 5) Time courses of 14C-incorporation into individual compoundswere investigated. Irrespective of the wavelength of the illuminatinglight, the first stable CO2-fixation product formed under weaklight (400–500 erg cm–2 sec–1) was citrulline.At higher light intensities (4,000–7,000 erg cm–2sec–1), PGA was the first stable CO2-fixation product.The incorporation of 14C into citrulline was not inhibited byCMU. 6) Experimental results indicate that both blue light-inducedincorporation of 14C into amino and organic acids and the incorporationof 14C into citrulline induced by low intensity light are operatedby a mechanism(s) independent of ordinary photosynthetic CO2-fixation.Possible effects of light regulating the carbon metabolism inalgal cells are discussed. (Received July 24, 1969; )  相似文献   
5.
1) With Chlorella ellipsoidea cells, in the presence of 5x10–6M DSPD, or in its absence, the amounts of 14CO2 incorporatedin P-esters, serine-plus-glycine and alanine were larger underred light than under blue light, whereas blue light specificallyincreased 14CO2-incorporation in aspartate, glutamate, malateand fumarate (blue light effect). The amount of total 14C fixedunder blue or red light was greatly decreased by the additionof DSPD. When the concentration of DSPD was raised to 5x10–4M, practically no radioactivity was found, under blue or redlight, in aspartate, glutamate and fumarate. Radioactivity inalanine was greatly increased. Effects of higher concentrationof DSPD are explained as due to the inhibition of PEP carboxylaseactivity in Chlorella cells. 2) The percentage incorporation of 14C into aspartate and theother compounds mentioned above, under near infra-red illuminationwas significantly smaller than that under blue light and wasalmost equal to that under red light. These results along withthe effect of 5x10–6 M DSPD, exclude the possibility thatcyclic photophosphorylation is involved in the "blue light effect"mechanism. (Received December 12, 1969; )  相似文献   
6.
QUANTITATIVE SEPARATION OF INORGANIC POLYPHOSPHATES IN CHLORELLA CELLS   总被引:1,自引:0,他引:1  
Using unicellular green alga, Chlorella ellipsoidea, which hadbeen labeled with 32P-phosphate, re-examination was performedon our routine method for the quantitative separation of inorganicpolyphosphates (poly-Pi). Confirming the previous results, itwas demonstrated that poly-Pi's in Chlorella cells are clearlyseparated from each other by successive extractions with cold8% TCA (poly-Pi "A"), with cold KOH at pH 9 (poly-Pi "B"), andwith 2 N KOH (poly-Pi's "C" and "D"; the former precipitateson neutralization with PCA, leaving the latter in solution).Use of 2N KOH was found to be most suitable for the purposeof fractionation of poly-Pi's "C" and "D." (Received February 25, 1965; )  相似文献   
7.
1. With the view to get information as to the mode of phosphatetransfer among the intracellular phosphorous compounds undernonphotosynthesizing conditions, investigation was made on thechanges of P-distribution occurring when the algal cells wereincubated in a P-deficient medium in the dark. 2. During the incubation, appreciable decrease of P-contentwas observed only in the fraction of polyphosphate "B". In parallelwith this decrease, an increase of P occurred only in the RNAfraction,indicating that, under non-photosynthesizing conditions, RNAis synthesized with the expenditure of phosphorus of polyphosphate"B". 3. By comparing the present results with those obtained earlierunder photosynthesizing conditions, the effect of light on themode of intracellular mobilization of phosphorous compoundswas discussed. (Received June 8, 1961; )  相似文献   
8.
DISTRIBUTION AND TURNOVER OF PHOSPHATE COMPOUNDS IN GROWING CHLORELLA CELLS   总被引:1,自引:0,他引:1  
  1. Using the Chlorella cells which had been uniformly labeled with32P, the distribution of phosphorus in various fractions ofcell material was investigated. Uniformly 32P-labeled Chlorellawas further grown in a P-free medium or in a standard "cold"medium, and the change of distribution of 32P (as well as theuptake of exogenous P) in various cell fractions was followed.
  2. Analysis of the 32P-labeled algal cells showed that the highestin P-content was the fraction of RNA followed by those of polyphosphates,lipid, nucleotidic labile phosphate compounds, DNA and protein(in decreasing order). ATP and ADP were found to be only minorfractions of the total labile phosphates.
  3. On incubating the3P-labeled alga in a P-free medium, the P.contentsin the fractionsof DNA, protein, lipid and ATP increased, thosein polyphosphatesand ADP decreased, and that in RNA remainedalmost unchanged.When the 32P-labeled alga was further grownin the normal "cold"medium, DNA and protein increased withthe expenditure of endogenous32P, but with practically no incorporationof external P. Inthe meantime the P in polyphosphates decreasedconsiderably,and the RNA fraction incorporated a large amountof externalP but only a little of endogenous32P.
  4. It was inferred that,under the experimental conditions of thepresent study, thephosphorus used in the syntheses of DNA andprotein was primarilytaken from polyphosphates, while thatused in the synthesesof RNA, phospholipid and polyphosphateswas, for the most part,taken from the extracellular P-source.
1A part of this paper was read at the Vth International Congressof Biochemistry, Moscow, August 10–16, 1961. (Received June 4, 1961; )  相似文献   
9.
Ultraviolet light (UV) radiation causes skin‐tanning, which is thought to be mediated by stimulating the release of melanogenic factors from keratinocytes as well as other cells. Nitric oxide (NO) has been reported to be generated after UV radiation and to stimulate melanocytes as one of the melanogens. In a previous experiment by another group on melanogenesis induced by NO, increases in both tyrosinase activity and tyrosinase protein levels were observed after daily stimulation of NO for 4 days. In the present study, we investigated tyrosinase gene expression within the first 24 hr of NO‐induced melanogenesis. Tyrosinase mRNA expression was found to be induced 2 hr after a single treatment with S‐nitroso‐N‐acetyl‐ l ‐arginine. An increase of tyrosinase activity was also detected time‐dependently within the 24‐hr period, accompanied by an increase of tyrosinase protein levels. The induction of mRNA expression was suppressed by a cyclic guanosine 3′,5′‐monophosphate (cGMP)‐dependent protein kinase (cGMP/PKG) inhibitor. These results suggest that the enhancement of tyrosinase gene expression via the cGMP pathway may be a primary mechanism for NO‐induced melanogenesis.  相似文献   
10.
  1. Starting with uniformly 32P-labeled Chlorella cells, a synchronousculture was run in a medium containing non-labeled phosphate.During the synchronous growth and division of the algal cells,the changes in amount of total and labeled P in various phosphatecompounds were followed.
  2. Characteristic changes were observedwith (acid-soluble) polyphosphate"A", nucleotidic labile phosphates,(acid-insoluble) polyphosphate"C", DNA-P and protein-P. Thelabeled phosphorus of polyphosphate"C" showed a decrease duringthe earlier phase of experiment,although a considerable uptakeof non-labeled P from the culturemedium into this compoundwas observed throughout the experiment.In parallel with theloss of labeled phosphorus in this compound,the increase oflabeled phosphorus occurred in polyphosphate"A", in the nucleotidiclabile-P compounds, and in DNA, suggestingthat these substancesreceived P from polyphosphate "C". Thelabeled P in polyphosphate"A" and in the nucleotidic labile-Pcompounds increased graduallywith the progress of culture,attained their maximum levelsat the stage of ripening, anddecreased markedly during theprocess of "post-ripening" anddivision of cells, indicatingthat these compounds were in activeturnover and playing someimportant roles in the process ofcell maturation and division.
  3. The total amounts of inorganic P, RNA-P and lipid-P increasedcontinuously throughout the experiment and showed no significantchange in the content of labeled P.
(Received June 5, 1961; )  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号