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1.
Abstract— Carbon dioxide inhibits phorogenesis in Phycomyces as does a gas produced by Phycomyces. We have isolated mutants which are supersensitive (B451, B452) or resistant (B455, B457) to the gas. These mutants are also supersensitive or resistant to CO2. We conclude that the gas is CO2. A pulse of blue, but not red, light overcomes this inhibition. The CO2 sensitive step is completed 5–10 h before the appearance of visible sporangiophore initials.  相似文献   

2.
Abstract— It is generally accepted that phytochrome influences the photoperiodic induction of flowering through its interaction with the circadian clock mechanism. We have attempted to separate the effects of phytochrome on the clock mechanism from those that mediate flowering directly by examining a number of responses that are unrelated to flowering but are also regulated by the circadian clock. Gas exchange measurements of both CO2 and H20 vapor were monitored under light conditions (200 μmol m 2 s−1) where the addition of far-red energy is required for the maximal promotion of flowering. In addition, photosynthetic capacity and maximal transpiration rates were measured in plants grown under continuous dim (20 μmol m−2 S') light, with or without supplemental far-red, by exposing them briefly to saturating fluxes (1000 μmol m−2 s-l) of light. Net CO2 fixation was very weakly rhythmic in plants grown under both high and low light and this weak oscillation was completely suppressed by far-red light. Far-red also suppressed the rhythm in transpiration under high light, but the rhythm was immediately reinstated when the far-red light was removed. The phase of this rhythm was also reset with the next peak always occurring15–18 h after the far-red was turned off. When grown under dim light, the transpiration rhythm was not suppressed and the amplitude of the oscillation was more than doubled. Far-red light appears to interact with the rhythm in transpiration in a manner suggesting that the stomatal rhythm may be coupled to the same clock oscillator that regulates the flowering rhythm.  相似文献   

3.
Binding of GTP-binding proteins with [35S]GTP7S in the extract containing membrane components of Lemna paucicostata 441 was inhibited by red or far red light by 20 to 25%, but blue light showed no or little effect. The plant used for the preparation of the extract was subjected to single darkness for 8 h, as both red and far red light inhibit flowering. The extract treated with 1% Lubrol was fractionated by gel filtration. Four species of GTP-binding proteins, GL1, GL2, GL3 and GL4 were detected with Km values 3, 7, 80 and 4 n M , respectively. GL1, GL2 and GL3 were ADP-ribosylated by pertussis toxin. The extract activated by [35S]GTP-γS in darkness, under red light or under far red light was treated with 1% Lubrol and subsequent gel filtration of the extracts made it possible to detect GTP-binding protein with a small molecular weight only in an extract labeled in darkness. The reduction in the molecular weight of GTP-binding protein from the larger molecule associated with the binding of [35S]GTPγS was confirmed by rechromatography of the larger molecule activated by [35S]GTPγS in darkness. The binding of GL2 and/or GL3 with [35S]GTPγS was suggested to be inhibited by red or far red light.  相似文献   

4.
Abstract— Although the mechanism of bioluminescent reactions in various species, such as fireflies, ostracod crustaceans ( Cypridina ), sea pansies ( Renilla ), and the deep-sea shrimp Oplophorus , are thought to involve dioxetanone intermediates, studies reported in the past from different laboratories have included widely different experimental results, most likely due to various factors including the effects of contaminating CO2. With the improved technique employed in the present study, bioluminescent reactions of the firefly and Cypridina in 18O2 gas resulted in an incorporation of over 75% of 18O into one oxygen of the product CO2. with a reproducibility within a few per cent. When 13CO2. instead of the product CO2 of the bioluminescent reaction, was studied in an H218O medium, the exchange of one oxygen of 13CO2 with H2O was 64%. and the effect of contaminant CO2 amounted to 1418% of the total CO2. These results suggest that every molecule of CO2 formed in the bioluminescent reactions of the firefly and Cypridina had intially contained 1 oxygen atom derived from O2.  相似文献   

5.
Chlorophyll synthesis is stimulated by red light pulses in the green alga Ulva rigida C. Aghard. Chlorophyll synthesis in darkness is greater after longer red light pulses (30 min) than after shorter red light pulses (5 min). Chlorophyll synthesis was higher after red light pulses of 14 Wm-2 fluence rate than after those of 7 Wm-2. The effect of red light showed some far-red reversibility. The reversion by far-red light was higher after red light pulses of 4 min than after those of 30 min. These results indicate the existence of a rapid induction of chlorophyll synthesis during the red light pulses and a fast escape from photoreversibility. The percentage of reversion is also affected by the fluence rate of the light pulses. The reversion was reduced by about 15% when the photon fluence rate was increased from 7 to 14 Wm-2. Reversion was also observed when red and far-red light pulses were applied successively. Thus, phytochrome or a phytochrome-like photoreceptor could be involved in the induction of chlorophyll synthesis in Ulva rigida.  相似文献   

6.
Abstract The rate of hypocotyl longitudinal growth in seedlings of Sesamum indicum L. is strongly inhibited by continuous blue light (cBL)† and slightly by continuous far-red light while continuous red light (cRL) or red light pulses are hardly effective from 60 h after sowing onwards. Between 36 and 60 h after sowing the growth rate responds to red light pulses the effect of which is fully reversible by long wavelength far-red light. When seedlings are kept in cBL for 3 days and then treated with red light hypocotyl growth rate responds strongly. However, RL effectiveness decreases with time after transfer from BL to RL. BL → darkness transfer experiments with different levels of Pfr established at the beginning of darkness show that after a BL pretreatment phytochrome (Pfr) alone is capable of fully controlling growth rate. When white light (WL) is given no BL effect is detectable in weak WL. Only high light fluxes maintain a typical BL growth rate. At medium WL fluxes elongation rate returns gradually to the dark rate. The simplest explanation of the data is that light absorbed by a separate BL photoreceptor is necessary to maintain responsivity to Pfr. With increasing age of the seedlings the requirement for BL increases strongly. On the other hand, brief light pulses—given to demonstrate photoreversibility of phytochrome—remain equally effective provided that responsivity to Pfr exists.  相似文献   

7.
Abstract— Kinetic experiments have provided evidence for a series of light and dark reactions of phytochrome intermediates at low temperature in Pisum epicotyl tissue. A photoequilibrium exists between Pr and P698, and between Pfr and P650. A dark reversion of P698Pr and P650pfr at –70°C has been demonstrated. When cooled to 70°C under incandescent light, most of the phytochrome in the tissue is driven into photochemically unreactive intermediates. About 2% of the phytochrome remains as weakly absorbing intermediates that form Pr and Pfr in darkness. A scheme is presented for phytochrome phototransformation in vivo.  相似文献   

8.
Abstract— The contents of ATP, ADP and AMP (enzymatic assay) and the rate of respiration (output of CO2 per h, continuously measured with an infrared CO2 analyzer) were determined in long-term experiments with intact dark-grown and far-red-light-grown mustard ( Sinapis alba L.) seedlings. While there is a strong effect of far-red light treatment on the respiratory rate (inhibition as well as promotion, depending on the onset of light), an effect on the contents of adenosine nucleotides, and therewith on energy charge, is hardly detectable. At most, there is a tendency that long-term far-red light slightly lowers ATP levels and energy charge. The results suggest that the adenylate system (and therewith the energy charge) in the mustard seedling is controlled by endogenous homoeostasis even under intense phytochrome-mediated photomorphogenesis. It is unlikely that the levels of adenosine nucleotides or the energy charge are links in any causal chain originating from Pfr and leading to phenomena of photomorphogenesis.  相似文献   

9.
Abstract— Irradiation of the Pr form of phytochrome in the presence of flavin mononucleotide (FMN) which absorbs the actinic blue light yields Pfr at a rate greater than that in the absence of FMN. The actinic blue light absorbed by FMN enhances the phototransformation of Pr via the energy transfer from the former to the latter. On the other hand, the photoreversion of Pfr was inhibited by the presence of FMN when illuminated with blue light. The lack of photo-enhancement of the reversion of Pr, by blue light suggests that the Pfr chromophore (acceptor) transition dipole is virtually perpendicular to the FMN transition dipole, as the result of a chromophore reorientation in the Pr→Pfr phototransformation. The fact that blue light absorbed by flavin preferentially enhances the forward phototransformation of phytochrome while inhibiting the reversion may have an important implication in the high irradiance responses in plants in terms of a preferential accumulation of Pfr by blue light excitation.  相似文献   

10.
Pronounced aggregation of the photosystem II light-harvesting complex (LHC II) was observed in low-lightgrown tobacco plants stressed with a strong CO2 deficit for 2–3 days. The LHC II aggregates showed a typical band at 697–700 nm (F699) in low-temperature emission spectra. Its excitation spectrum corresponded to that of detergent-solubilized LHC II. Formation of F699 in stressed plants was not reversed in the dark and leaves did not contain any zeaxanthin showing that neither a light-induced transthylakoid pH gradient nor zeaxanthin was required for LHC II aggregation. The CO2-stressed plants showed clear signs of photodamage: depression of the potential yield of photosystem II photochemistry (F,/FM) by 50–70% and a decline in chlorophyll content by 10–15%. Therefore, we propose that the photodamage to the photosynthetic apparatus is the cause of the LHC II aggregation in plants. The F699 exhibited a reversible decrease of its intensity upon irradiation of leaves with intensive light. There was no or only slight decrease around 700 nm in unstressed plants. The nonphotochemical quenching of chlorophyll fluorescence showed the opposite relation, being higher before than after the strong CO2 deficit. This discrepancy was likely related to the different LHC II aggregation state in control and stressed plants.  相似文献   

11.
Abstract— The photolysis of aqueous solutions of cis -[Cr(C2O4)2(H2O)2]- at 254 nm and pH 4 produced CO2 and H2 in nearly equal yields. The quantum yield of hydrogen, φ2, increased by 9% and the yield of carbon dioxide, φ, by 65% as the pH was lowered from 4 to I. The total gas yield, φgas, decreased in the presence of added oxalate or chromium (II) ions and when the light intensity was lowered. The gas yield in D2O was appreciably higher than in H2O. The variation of φgas with pH (D) and with added oxalate ion was roughly parallel in the two liquid media. The gas yield increased in the series:
A tentative mechanism is suggested to explain the results.  相似文献   

12.
Abstract— By means of in situ photolysis EPR of aqueous solutions of α-oxocarboxylic acids (RCO-CO2H) at pH values above 5, semidione radical anions [RC(O-)=C(O')R] and α-hydroxy-α-carboxy alkyl radicals [RC(OH)CO2-] were detected. C02 was identified as a reaction product. On photolysis of mixtures of α-oxocarboxylic acids (RCOCO2H and R'COCC2H), "mixed" semidione radical anions [RC(O->=C(O)R'] were observed in addition to RC(O-)=C(O')R, R'C(O-)=C(O')R', RC(OH)CO2- and R'C(OH)CO2-. The experimental results are explained in terms of photodecarboxylation (α-clea-vage) of electronically excited RCOCOJ to yield RCO and CO2. The radicals RC(OH)CO2- are formed by reduction of RCOCO2- by CO2-. The semidione radicals are produced by addition of RCO to RCOCO2- followed by decarboxylation of the intermediate adduct. This mechanism was confirmed by generating acyl radicals independently and reacting them with α-oxocarboxylic acids. Selected product studies support the mechanism suggested.  相似文献   

13.
THE FORMATION OF TWO FORMS OF BATHORHODOPSIN AND THEIR OPTICAL PROPERTIES   总被引:3,自引:0,他引:3  
Abstract— Using two kinds of rhodopsin preparations (digitonin extract and rod outer segments suspension), we measured changes in absorption spectra during the conversion of rhodopsin or isorhodopsin to a photosteady state mixture composed of rhodopsin, isorhodopsin and bathorhodopsin by irradiation with blue light (437 nm) at 77 K and during the reversion of bathorhodopsin to a mixture of rhodopsin and isorhodopsin by irradiation with red light (> 650 nm) at 77 K. The reaction kinetics could be expressed with only one exponential in the former case and with two exponentials in the latter case. These data suggest that both rhodopsin and isorhodopsin are composed of a single molecular species, while bathorhodopsin is composed of two molecular species, designated as bathorhodopsin1 and bathorhodopsin2. The absorption spectra of these bathorhodopsin were calculated by two different methods (kinetic method and warming-cooling method). The former was based on the kinetics of the conversion of two forms of bathorhodopsin by irradiation with the red light. The spectra obtained by this method were consistent with those obtained by the warming-cooling method. Bathorhodopsin1 and bathorhodopsin2 have Λmax at 555 and 538 nm, respectively. The two forms of bathorhodopsin are interconvertible in the light, but not in the dark. Thus, we suggest that a rhodopsin molecule in the excited state relaxes to either bathorhodopsin1 or bathorhodopsin2 through one of the two parallel pathways.  相似文献   

14.
Abstract— In isolated respiratory multienzyme complexes of beef heart mitochondria the b -type cytochromes can be photoreduced in presence of flavin via the superoxide anion. O-2 does not reduce cytochrome c 1. In an anaerobic system, FMNH2 formed by irradiation with blue light in presence of EDTA reduces cytochromes b and c 1 The possible implication of O-2 in the electron transfer from flavin/flavoprotein to cytochrome b in blue light-controlled biological processes is discussed.  相似文献   

15.
Abstract— Using excise sections of oat first-internodes, a dual effect of blue light can be demonstrated on elongation when the sections are first irradiated in distilled H2O, then incubated with gibberellic acid (GA). At low light energies (230 ergs/cm2 per sec, for 2 min), a pretreatment with blue light enhances the GA effect above the elongation it can produce in the dark. At high energies (650 ergs/cm2/sec for 45 min), the same wavelengths cause an inhibition of the GA-induced elongation. An action spectrum for the two effects show a maximum near 435 mμ in both cases. Neither light effect is visible when indoyl-3-acetic acid is used instead of GA. Several physiological effects distinguish the two blue effects. The promotive effect is most marked in the young regions of the mesocotyl, whereas the maximum inhibitive effect is located in slightly older tissues. Time-course experiments showed that the promotive effect is partly due to an extension of the duration of elongation. The inhibitory effect is only temporary and vanishes about 30 hr after the beginning of the experiment. The promotive effect of blue light resembles the effect of far-red light, but the former can be observed with gibberellins A2, A4, A5, A6 and A7 which are practically inactive after an irradiation with far-red light. The inhibitory effect of blue light is different from the red-light effect as shown by the time-course experiments.  相似文献   

16.
Abstract— Action spectra for accumulation of inorganic carbon were obtained for Anabaena variabilis , strainM–2, in the presence and absence of photosynthetic CO2 fixation. The action spectrum for inorganic carbon accumulation in the presence of CO2 fixation showed a peak around 684 nm, corresponding to chlorophyll a absorption in PS 1, while that for CO2 fixation showed a peak around 630 nm, corresponding to phycocyanin absorption in PS 2. The action spectra obtained in the presence of iodoacetamide or diuron, which inhibit CO2 fixation, showed two peaks, one at about 684 nm and the other at 630 nm, with the 630 nm peak height 80 to 90% of the 684 nm peak. These results indicate that inorganic carbon transport in A. variabilis can be driven with near equal efficiency by energy derived from absorption in photosystem 1 alone and with energy transferred to PS 1 after absorption by PS 2.  相似文献   

17.
Abstract— Using high-intensity actinic light, the chlorophyll a fluorescence transient from HCO-3-depleted chloroplasts shows a rapid initial rise (O → I) followed by a slow phase (I → P). In the presence of HCO-3, the O → I rise is delayed but the I → P phase is much more rapid. Using low-intensity actinic light, the chlorophyll a fluorescence transient from 3-(3,4-dichlorophenyl)-1,1 dimethylurea (DCMU)-treated chloroplasts is delayed in the presence of HCO-3. Bicarbonate increases the amount of delayed light emission from chloroplasts given 10 s illumination with weak blue light (0·4 W/m2). DCMU greatly increases the amount of delayed light seen in the presence of HCO-3 under these conditions but decreases the amount seen in the absence of HCO-3. It is suggested that HCO-3 may somehow form or stabilize, in the dark, a number of reaction centers corresponding to the S1 state in the model of B. Forbush, B. Kok and M. McGloin ( Photochem. Photobiol. 14, 307–321, 1971).  相似文献   

18.
Abstract— Involvement of phytochrome in the regulation of nitrate reductase (NR) and nitrite reductase (NIR) activities in excised, etiolated leaves of Zea mays (L.) variety 'Ganga-5' is demonstrated using low energy and high irradiance responses of phytochrome action. Photoreversibility by far-red light of red light stimulated increases in NR and NIR activities was lost by 2 h. Red light given to the leaves, when induction by NO-3, was saturated, further increased both enzyme activities. Even if red light was given 4–8 h before NO-3, it still increased both NR and NIR activities.  相似文献   

19.
Abstract— The photosynthetic activity of white light-grown Acetabularia mediterranea Lamouroux (= A. acetabulum (L.) Silva) decreases under continuous red light to less than 20% within 3 weeks. Subsequent blue light reactivates photosynthesis within a relatively short period of 3 days. In a former publication (Wennicke and Schmid, Plant Physiol. 84 ,1252–1256, 1987) we have shown that the regulated rate limiting step, which is an immediate light driven reaction, is part of photosystem II (PS II). The following biophysical properties of PS II were analyzed in thylakoids isolated from algae grown 3 weeks under either blue or red light with or without subsequent 3 days of blue light illumination: (a) fluorescence induction in the short time domain dominated by QA reduction, (b) the slow fluorescence decline reflecting pheophytin photoaccumulation, (c) absorption changes at 320 and 830 nm under repetitive flash excitation as indicator for the turnover of QA and P680, respectively, (d) oscillation pattern of the oxygen yield by a flash train in dark adapted samples and (e) the binding capacity for atrazine. None of these PS II functions were severely affected, but a minor impairment of20–30% was observed in the thylakoids from algae grown for 3 weeks in red irradiation. The changes do not fully account for the drastic reduction of the electron transport through PS II which was 80% after red light treatment. Therefore, the regulated rate-limiting step appears to not be mainly located in the PS II core complex itself. It seems likely that the regulation process predominantly comprises the antenna system.  相似文献   

20.
In this review, we describe the regulation of photomovement responses by phototropin and phytochrome photoreceptors. The blue light receptor phototropin mediates various photomovement responses such as phototropism, chloroplast movement and stomatal opening. In cryptogamic plants including ferns, mosses and green alga, red as well as blue light mediates phototropism and chloroplast movement. The red/far-red light reversibility suggests the involvement of phytochrome in these responses. Thereby, plant growth is presumably promoted by coordinating these photomovements to capture efficiently light for photosynthesis.  相似文献   

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