Characteristics of in vivo nitráte reductase (NR, EC 1.6.6.1) activity in leaf tissue of the crassulacean acid metabolism (CAM) plant Notonia grandiflora DC. were determined. The pH optimum for the enzyme was 7.0. Among the five low molecular mass solvents tested, n-propanol was more effective in promoting NR activity. Supply of 1.0 % (v/v) M-propanol along with 0.5 % Triton X-100 was the most appropriate assay condition to bring about maximum NR activity (NRA), that was proportionally enhanced with duration of the incubation and mass of the leaf tissue. Leaf fragments of 2 to 4 mm slice width had maximal NRA. The highest NRA was obtained with 200 mM of nitráte supplied in the infiltration medium. NRA was higher in fully expanded, mature leaves than in tender and senescing leaves. The cellular nitráte content was strongly positively correlated with NRA in leaves of various physiological ages. The NRA/N03’ content ratio (index of nitráte utilization efQciency) was the highest for the tender leaves and the lowest for the senescing leaves. However, maximum total titratable acidity (malate production) was obtained for the fully expanded mature leaves in comparison with the other leaves. A positive and significant correlation (r = 0.92) was obtained between nitráte reduction and titratable acid content. The results are indicative of a possible role of nitráte reduction in the regulation of noctumal acid production in the CAM plants.
Nowadays we can commonly encounter with revitalizations of an original HPPs which were earlier fitted with Francis turbines. They were often placed to the locations with low head and higher discharge, which means high specific speed (ns > 400). Generally it is quite complex to design Francis turbines for such high specific speed. These very old turbines usually have lower efficiency due to the earlier limited possibilities of hydraulic design. An exchange of a water turbine with another type can be quite expensive and therefore it can be more suitable to change only an old runner for a new one. In this article the design process of high specific speed turbine ns = 430 is described. Optimization was done as the full-automatic cycle and was based on a simplex optimization method as well as on a genetic algorithm. For the parameterization of the runner blade, the BladeGen software was used and CFD (Computational Fluid Dynamics) analysis was run in Ansys CFX v.14 software. The final shape runner blade was reached after computing about 1000 variants, which lasted about 250 computational hours. and Obsahuje seznam literatury
The boundary layer equations for the non-Newtonian power law fluid are examined under the classical conditions of uniform flow past a semi infinite flat plate. We investigate the behavior of the similarity solution and employing the Crocco-like transformation we establish the power series representation of the solution near the plate.
Biological membrane mimetics, such as liposomes, lipid bilayers and model membranes, are used in a broad range of scientific and technological applications due to the unique physical properties of these amphiphilic aggregates. They serve as platforms for studying soft matter physics of membranes and membrane dynamics, interactions of bilayers with drugs, and effects of various additives of environmental changes. State-of-the-art research takes advantage of the combination of the brilliance of X-ray scattering sources with peculiar properties of neutrons and the power of computer simulations. The advances in chemistry, and in particular the possibility of deuteration, enables improved experimental spatial resolution and the ability to pi-point labels within membranes. It is only a matter of time for many biological functions, which occur at the membrane interface, to be matched with the structural properties of these membranes., Článok referuje o zákonitostiach stavby lipidových membrán a ich interakciách s biologicky aktívnymi molekulami. Vplyv iónov nachádzajúcich sa v prirodzenom prostredí bunkovej membrány, anestetický efekt alkánov a účinok cholesterolu a melatonínu pri zabudovaní do membrány je diskutovaný najmä z pohľadu zmeny štruktúry lipidovej matrice membrány. Štruktúrne výsledky sú získané pomocou experimentálnych prístupov, pričom dôraz sa kladie na pokrok dosiahnutý v metódach využívajúcich moderné zdroje röntgenového žiarenia a neutrónov., Norbert Kučerka., and Obsahuje bibliografii