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51.
Photoinhibition of photosynthesis represents a mechanism for the long-term regulation of photosystem II 总被引:19,自引:0,他引:19
The obligate shade plant, Tradescantia albiflora Kunth grown at 50 mol photons · m–2 s–1 and Pisum sativum L. acclimated to two photon fluence rates, 50 and 300 mol · m–2 · s–1, were exposed to photoinhibitory light conditions of 1700 mol · m–2 · s–1 for 4 h at 22° C. Photosynthesis was assayed by measurement of CO2-saturated O2 evolution, and photosystem II (PSII) was assayed using modulated chlorophyll fluorescence and flash-yield determinations of functional reaction centres. Tradescantia was most sensitive to photoinhibition, while pea grown at 300 mol · m–2 · s–1 was most resistant, with pea grown at 50 mol · m–2 · s–1 showing an intermediate sensitivity. A very good correlation was found between the decrease of functional PSII reaction centres and both the inhibition of photosynthesis and PSII photochemistry. Photoinhibition caused a decline in the maximum quantum yield for PSII electron transport as determined by the product of photochemical quenching (qp) and the yield of open PSII reaction centres as given by the steady-state fluorescence ratio, FvFm, according to Genty et al. (1989, Biochim. Biophys. Acta 990, 81–92). The decrease in the quantum yield for PSII electron transport was fully accounted for by a decrease in FvFm, since qp at a given photon fluence rate was similar for photoinhibited and noninhibited plants. Under lightsaturating conditions, the quantum yield of PSII electron transport was similar in photoinhibited and noninhibited plants. The data give support for the view that photoinhibition of the reaction centres of PSII represents a stable, long-term, down-regulation of photochemistry, which occurs in plants under sustained high-light conditions, and replaces part of the regulation usually exerted by the transthylakoid pH gradient. Furthermore, by investigating the susceptibility of differently lightacclimated sun and shade species to photoinhibition in relation to qp, i.e. the fraction of open-to-closed PSII reaction centres, we also show that irrespective of light acclimation, plants become susceptible to photoinhibition when the majority of their PSII reaction centres are still open (i.e. primary quinone acceptor oxidized). Photoinhibition appears to be an unavoidable consequence of PSII function when light causes sustained closure of more than 40% of PSII reaction centres.Abbreviations Fo and Fo
minimal fluorescence when all PSII reaction centres are open in darkness and steady-state light, respectively
- Fm and Fm
maximal fluorescence when all PSII reaction centres are closed in darkand light-acclimated leaves, respectively
- Fv
variable fluorescence
- (Fm-Fo)
under steady-state light con-ditions
- Fs
steady-state fluorescence in light
- QA
the primary,stable quinone acceptor of PSII
- qNe
non-photochemical quench-ing of fluorescence due to high energy state
- (pH); qNi
non-photochemical quenching of fluorescence due to photoinhibition
- qp
photochemical quenching of fluorescence
To whom correspondence should be addressedThis work was supported by the Swedish Natural Science Research Council (G.Ö.) and the award of a National Research Fellowship to J.M.A and W.S.C. We thank Dr. Paul Kriedemann, Division of Forestry and Forest Products, CSIRO, Canberra, Australia, for helpful discussions. 相似文献
52.
Bombesin and cholecystokinin (CCK) have a variety of similar actions. Previous investigations have demonstrated that IP injections of bombesin and CCK-33 increased corticosterone secretion in conscious, freely-moving, fed rats. In this study bombesin or CCk-8 was administered by continuous, intravenous infusion to conscious, awake, fasted, mongrel dogs. Following a 30-40 minute control infusion, a progressively-increasing, stepwise infusion of either bombesin (0.1, 1.0 and 2.0 micrograms/kg-hr) or CCK-8 (62.5, 125, and 250 ng/kg-hr) was administered. Each drug dose was infused for 40-45 minutes and blood samples were drawn at 20-22.5 minutes intervals. Bombesin caused significant, dose-dependent increases in plasma cortisol (286 +/- 39% of control) and plasma ACTH (176 +/- 33% of control). CCK-8 had no consistent effect on either cortisol or ACTH secretion. Whether the lack of effect of CCK-8 in dogs, as compared to rats, is due to species variations or to the differing experimental designs is unknown. 相似文献
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The rapidly growing body of sequenced DNA demands efficientcomputer programs for its analysis and storage. The programdescribed in this paper, SEQ-ED, has been designed to handlea large number of DNA sequences up to 200 kilobases [kb] longstored in a sequence library. In order to minimize the requiredstorage space, the sequences are stored in a compressed formatusing three binary digits per base. In the development of thisprogram, special care has been given to make it easy to usefor molecular biologists without any previous computer experience.
Received on September 10, 1984; accepted on October 30, 1984 相似文献
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Christopher J. Fowler Sandra Holt Gunnar Tiger 《Journal of enzyme inhibition and medicinal chemistry》2013,28(1):55-58
Previous studies have demonstrated that fatty acid amide hydrolase, the enzyme responsible for the metabolism of anandamide, is inhibited by the acidic non-steroidal anti-inflammatory drug (NSAID) ibuprofen with a potency that increases as the assay pH is reduced. Here we show that (R) -, (S) - and (R, S) -flurbiprofen, indomethacin and niflumic acid show similar pH-dependent shifts in potency to that seen with ibuprofen. Thus, (S) -flurbiprofen inhibited 2 μM [3 H]anandamide metabolism with IC 50 values of 13 and 50 μM at assay pH values of 6 and 8, respectively. In contrast, the neutral compound celecoxib was a weak fatty acid amide hydrolase inhibitor and showed no pH dependency (IC 50 values ~300 μM at both assay pH). The cyclooxygenase-2-selective inhibitors nimesulide and SC-58125 did not inhibit fatty acid amide hydrolase activity at either pH. The data are consistent with the conclusion that the non-ionised forms of the acidic NSAIDs are responsible for the inhibition of fatty acid amide hydrolase. 相似文献
60.
Christopher J. Fowler Gunnar Tiger María L. López-Rodríguez Alma Viso Silvia Ortega-Gutiérrez José A. Ramos 《Journal of enzyme inhibition and medicinal chemistry》2013,28(3):225-231
Arachidonoyl-serotonin inhibits in a mixed-type manner the metabolism of the endocannabinoid anandamide by the enzyme fatty acid amidohydrolase. In the present study, compounds related to arachidonoyl-serotonin have been synthesised and investigated for their ability to inhibit anandamide hydrolysis by this enzyme in rat brain homogenates. Removal of the 5-hydroxy from the serotonin head group of arachidonoyl-serotonin produced a compound (N-arachidonoyltryptamine) that was a 2.3-fold weaker inhibitor of anandamide hydrolysis, but which also produced its inhibition by a mixed-type manner (Ki(slope) 1.3 µM; Ki(intercept) 44 µM). Replacement of the amide linkage in this compound by an ester group further reduced the potency. In contrast, replacement of the arachidonoyl side chain by a linolenoyl side chain did not affect the observed potency. N-(Fur-3-ylmethyl) arachidonamide (UCM707), N-(fur-3-ylmethyl)linolenamide and N-(fur-3-ylmethyl)oleamide inhibited anandamide hydrolysis with pI50 values of 4.53, 5.36 and 5.25, respectively. The linolenamide derivative was also found to be a mixed-type inhibitor. It is concluded that the 5-hydroxy group of arachidonoyl-serotonin contributes to, but is not essential for, inhibitory potency at fatty acid amidohydrolase. 相似文献