biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 4561 to 4590 of 6171:

Book review

Jarmila Solárová, Jarmila Solárová, M. Kamínek

Biologia plantarum 24:399-400, 1982 | DOI: 10.1007/BF02909111

The effect of leaf insertion on nitrate reductase and glutamine synthetase activity and NO3-N content inPisum sativum L.

Alena Gaudinová

Biologia plantarum 24:468-470, 1982 | DOI: 10.1007/BF02880447

Nitrate reductase (NR) activity estimated byin vivo andin vitro methods in 17 days old pea seedlings is the highest in young fully expanded leaves (4th leaf from the stem base). NO3-N content is parallel to the NR activity being also highest in the 4th leaf. On the other hand the activity of glutamine synthetase (GS) is the highest in the youngest leaves which had not yet reached their maximum size (5th leaf). Equilibrium between NO3-N content and activity of enzymes involved in assimilation of nitrogen containing compounds in individual leaves is discussed in relation to their insertion.

Partial purification and characterization of bapa-ase fromVigna unguiculata (L.) walp

Iracema L. Ainouz, Norma M. B. Benevides

Biologia plantarum 24:39, 1982 | DOI: 10.1007/BF02898482

α-N-Benzoyl-DL-arginine-p-nitroanilide (BAPA) hydrolytic enzyme was partially purified from cotyledons of mature dry seeds ofVigna unguiculata (L.) Walp, cv. Seridó. Extracts of a finely ground meal ofVigna seeds were obtained with 0.02 M phosphate buffer (KH2PO4/ /Na2HPO4) pH 7.6. A protein fraction was obtained from the extracts by ammonium sulfate precipitation (25 to 50% saturation). This protein fraction was subjected to chromatography on DEAE-cellulose. A separated fraction of the cellulose column presented one main component and two minor bands as seen on polyacrylamide gels. The main component of the separated fraction gave a positive reaction with BAPA and acetyl-DL-phenylalanine-β-naphthyl ester (APNE). This fraction shows a molecular mass of 60 000 by gel filtration on Sephadex G-100, pH 7.6.
The BAPA-ase activity was stable at pH values of 7.0 to 9.0 and no decrease in activity was observed by heating at 40 °C up to 40 min. The activity was not affected by PMSF, EDTA, cysteine,p- CMB, and IAC but was inhibited by NEM and strongly inhibited by TLCK.
Leucine-p-nitroanilide (LPA) hydrolytic enzyme properties were also determined. This activity was inhibited by PMSF,p- CMB, and NEM.

Evans, D. D., Thames, J. L. (ed.): Water in Desert Ecosystems

Jana Pospíšilová

Biologia plantarum 24:116, 1982 | DOI: 10.1007/BF02902856

Stimulation of Root Formation onImpatiens balsamina L. cuttings by coumarin and the associated biochemical changes

Rupa S. Dhawan, K. K. Nanda

Biologia plantarum 24:177-182, 1982 | DOI: 10.1007/BF02883658

Coumarin-caused stimulation of rooting of cuttings ofImpatiens balsamina L. is associated with an increase in the endogenous contents of carbohydrates, total phenols and proteins. Peroxidase, IAA oxidase and polyphenol oxidase activities also increased in coumarin treated cuttings at the time of cell division preceding primordia formation (6-12 h after treatment). Coumarin effect on rooting as well as on related biochemical changes resembles the effect of auxins in some ways.

Tissue specificity of assimilation and transport of nitrogen in the root ofZea mays L. seedlings. I. Transformations of14C- sucrose and the nitrogen metabolism enzymes in cortex and stele

S. F. Izmailov, V. P. Piskorskaya, R. K. Bruskova, A. M. Smirnov

Biologia plantarum 24:241-247, 1982 | DOI: 10.1007/BF02879452

An investigation has been carried out to find out in what compounds carbon is radially transported from stele to the cortex and to study sucrose metabolism in the root. These tissues were fed with14C-sucrose either directly or through the mesocotyle. In the latter case, the bulk of radioactivity, both in the stele and cortex, was concentrated in sucrose rather than in mono saccharides. This corresponds to the radial transport of carbon from stele to cortex predominantly in the form of sucrose. In the case of a direct exposure of stele and cortex,14C-sucrose was utilized for respiration, amino acid biosynthesis, and accumulation of carbon in the form of glucose. The hydrolysis of sucrose to the monosaccharides and subsequent utilization of the latter in respiration was more intensive in the stele. In the cortex, the sucrose carbon was more actively used for amino acid synthesis, owing to a high concentration of nitrate reductase, glutamate dehydrogenase and glutamine synthetase. It was concluded that the cortex is the main issue zone providing nitrogen assimilation in the root.

Book review

T. Gichner

Biologia plantarum 24:306, 1982 | DOI: 10.1007/BF02879468

Cell-free translation of polyribosomes from detached pumpkin cotyledons: Effects of starvation and cytokinin

N. L. Klyachko, L. A. Yakovleva, F. M. Shakirova, O. N. Kulaeva

Biologia plantarum 24:374, 1982 | DOI: 10.1007/BF02909106

The effects of 6-benzylaminopurine (BAP, 5.10-5M) treatment of pumpkin cotyledons and their starvation after excision upon polysome/monosome ratio and translational capacity of polysomes in cell-free system were studied. It has been found that starvation causes a progressive polysome degradation. Polysome translation in a wheat germ cell-free proteinsynthesizing system reveals that the translation capacity of polysome preparations decreases with the time after cotyledon excision much more sharply than polysome/monosome ratio. This indicates the starvation damage in elongation steps of protein synthesis. The decrease of postribosomal supernatants activity in the system of poly(U)-directed polyphenylalanine synthesis confirms this conclusion.
BAP treatment brings about a very rapid monosome mobilization into polysomes and activation of cell-free translation of ribosome preparations which is however closely parallel to the polysome percentage in them. That means that during this initial period of BAP action only protein synthesis initiation is under BAP control. The experiments with aurintricarboxylic acid (ATA) support this idea.

Book review

T. Gichner

Biologia plantarum 24:439, 1982 | DOI: 10.1007/BF02880442

Der Einfluss von CCC auf die Entwicklung des Roggenhalmes

Svetlana Koshuchowa, H. W. Müller, K. Adolf, H. Münnich, H. Göring

Biologia plantarum 24:20, 1982 | DOI: 10.1007/BF02898477

Field trials on the effect of chlorocholinechloride (CCC) on rye plants of the cultivar Danae and of a selected population "WRS" proved that rye principally shows as reaction analogous to wheat. The CCC-induced decrease of stalk length is due to the reduction of elongation growth of the 4th internode. This shortening effect is mainly the result of decreased cell extension and, in the middle internode, additionally of inhibited cell division in longitudinal direction. The shape of internodes is changed under the influence of CCC. Walls of parenchyma cells of CCC-treated plants are thinner and those of sclerenchyma cells are thicker compared with cell walls of control plants.

Effect of water stress on protein content in two maize cultivars differing in drought resistance

P. S. Thakur, V. K. Rai

Biologia plantarum 24:96, 1982 | DOI: 10.1007/BF02902851

The changing pattern, of WSD and concomitant protein changes were scanned in twoZea mays cultivars, with differential sensitivity to water stress. Increasing protein values were recorded in resistant cv. Ageti-76 with decreasing osmotic potentials of substrate (on 3rd day of stress), although the values in susceptible cv. Vijay remained almost on a par with the controls. In another experiment both the cultivars revealed initial increase of protein on 2nd day at osmotic potentials of - 2 and -4 × 106 Pa, however, values declined up to day 7 of stress. WSD showed an increasing trend in both the experiments, although slightly higher values of WSD were registered in cv. Ageti-76 in comparison with cv. Vijay. The significance of protein changes in reference to drought is discussed.

Professor Hans Stubbe ist 80 jahre alt

T. Gichner

Biologia plantarum 24:160, 1982 | DOI: 10.1007/BF02902867

Time course of foliar absorption of water inPanicum andPaspalum

A. G. Suárez, J. Gloser

Biologia plantarum 24:226-230, 1982 | DOI: 10.1007/BF02883669

The leaves of two tropical grasses (Panicum maximum Jacq. andPaspalum notatum Flügge) recovered from water deficit within 1 to 3 h after surface wetting. No substantial differences were found in absorption activity of abaxial and adaxial leaf epidermes between apical and basal parts of a leaf blade, or between leaves of different age.

Book review

P. Tichý

Biologia plantarum 24:289, 1982 | DOI: 10.1007/BF02879463

The molecular biology of the yeast saccharomyces

T. Gichner

Biologia plantarum 24:340, 1982 | DOI: 10.1007/BF02909099

Kinetics of uridine uptake and incorporation into RNA in tobacco pollen culture

J. Süss, J. Tupý

Biologia plantarum 24:72, 1982 | DOI: 10.1007/BF02898489

The capacity of pollen tubes to utilize exogenous uridine during 8 h of cultivation in shaken suspension in a sugar-mineral medium was examined by continuous and pulse labelling with3H-uridine. The increase of uptake with increasing concentration of the nucleoside indicated a saturable transport system with an approximate Km of 9.4 × 10-6 M and 12.5 × 10-6M as determined in 1-h and 6-h cultures, respectively. Maximal uptake took place at the beginning of germination reaching a rate of about 2 nmol h-1 per 1 mg of dry pollen at 0.1 mM external uridine. The uptake activity decreased with the time of pollen tube growth to less than one third during the 8-h cultivation period. Moreover, the level of radioactivity taken up initially decreased later on during continuous cultivation in the presence of3H-uridine. The uptake took place against a concentration difference and the onset and rate of uridine release depended on its exogenous concentration.
The activity of the nucleoside incorporation into RNA increased during the first 4 h of cultivation, decreasing later on. The proportion of RNA radioactivity in continuously labelled pollen tubes grew steadily during 6 h and reached 2.5% with respect to soluble pool at 0.4 μM uridine. The time course of RNA labelling was independent of uridine concentration within the range of 0.4 μM to 40 μM but this concentration rise resulted in an about fiftyfold increase of the total amount of external uridine incorporated.

Book reviews

Jana Pospíšilová, Jiřina Švachulová

Biologia plantarum 24:151, 1982 | DOI: 10.1007/BF02902862

Control of Shoot Growth in Trees. Proceedings of the joint workshop of International Union of Forest Research Organizations (IUFRO) working parties on Xylem Physiology and Shoot Growth Physiology, held in Fredericton, July 20--24, 1980.

J. Krekule

Biologia plantarum 24:201, 1982 | DOI: 10.1007/BF02883664

Uptake and efflux of fluoresceine inAnacystis nidulans

Gisela Grunwaldt, Kamilla A. Nikitina

Biologia plantarum 24:270-274, 1982 | DOI: 10.1007/BF02879458

InAnacystis nidulans uptake and efflux kinetics of fluoresceine were studied. It could be concluded that the distribution of fluoresceine depends on the pHc of the cells. The comparison of different fluoresceine accumulation levels and flux equilibria allows conclusions regarding changes of the pHc.

"Regulation of Genome Expression in Plants"

Biologia plantarum 24:321, 1982 | DOI: 10.1007/BF02909094

The importance of FeEDTA for reversibility of phosphate-induced chlorosis in maize (Zea mays L.)

Hana Vejsadová, Z. Laštůvka

Biologia plantarum 24:401-406, 1982 | DOI: 10.1007/BF02880432

Chlorosis induced with a supraoptimum dose of phosphorus in nutrient solution (69 mg P l-1) was reverted by spraying of leaves of chlorotio maize plants (Zea mays L.) with FeEDTA. Biomass formation, chlorophyll and iron content were decreased in the above-ground parts of plants grown under chlorosis-inducing conditions. Spraying always decreased content of inorganic phosphorus (Pi/Fe ratio was significantly changed), increased chlorophyll content in old plants and stimulated dry mass formation at supraoptimum phosphorus doses. FeEDTA application improved phosphate utilization (portion of phosphate in organic bonds was increased). This may be the basis of chlorosis-reverting effect of FeEDTA.

The behaviour of the shoot apical meristem inChenopodium rubrum under conditions non-inductive for flowering

Frideta Seidlová, Ljubinka Ćulafić

Biologia plantarum 24:471-473, 1982 | DOI: 10.1007/BF02880448

The results of different photoperiodic treatments preventing flowering and representing the control vegetative treatments in the studies of floral induction and differentiation were studied inChenopodium rubrum seedlings. A fully vegetative growth pattern of the meristem was maintained only in continuous light or after a photoperiodic treatment which consisted in a 15 min light break of the 8 h dark periods which themselves are a threshold for flowering inChenopodium. Light breaks applied to 10 h and longer dark periods did not prevent the changes resembling the early events of transition to flowering. Disappearance of zonal pattern, stimulation of apical growth, precocious initiation of leaf primordia and weakening of apical dominance have been observed. Flower formation did not follow.

Book review

V. Škrdleta

Biologia plantarum 23:90, 1981 | DOI: 10.1007/BF02878409

A textbook on algae

J. Čatský

Biologia plantarum 23:160, 1981 | DOI: 10.1007/BF02894876

Choliae esterases and choline acetyltransferase in the seeds ofAllium altaicum (Pall.) Reyse

Věra Hadačová, J. Hofman, Rita Malini de Almeida, Květa Vacková, M. Kutáček, Eva Klozová

Biologia plantarum 23:220, 1981 | DOI: 10.1007/BF02894892

In the seeds ofAllium altaicun (Pall.)Reyse a set of enzymes was found, metabolizing choline esters, composed of active choline esterases and choline acetyltransferase. Choline esterase cleaving acetylcholine occurs in five isoenzymes. The enzyme preparation hydrolyses strongly acetylthiocholine and sinapine, but weakly butyrylthiocholine (20%) in comparison with acetylthiocholine. The hydrolysis of the substrates mentioned is inhibited by physostigmine and neostigmine, but it is not inhibited by the specific inhibitor of acetylcholine esterase (BW 284 C51). In addition to hydrolytic activity a strong catalytic activity of choline acetyltransferase was also observed during the synthesis of sinapine from sinapic acid and choline. The detection of the mentioned enzymes in some representatives of theAllium genus indicates that choline esterases are more widely distributed in monocotyledons than previously assumed.

Dependence of the gametogenesis induction, zygote formation and their germination on the culture density of the homothallic algaChlamydomonas geitleri Ettl

J. Nečas

Biologia plantarum 23:278, 1981 | DOI: 10.1007/BF02895365

The induction of gametogenesis has its beginning in the most diluted cell suspension after the transfer of the cells to a nitrogen-less medium. Here, the highest percentage frequencies of zygotes are formed within the same period of time in comparison with the less diluted cell suspensions. The zygotes formed in the mostly diluted cell suspensions mature relatively very slowly and germinate very irregularly. The induction of gametogenesis retards in the denser cultures probably due to the strongest homeostatic forces trying to return the cell population to its initial stage. In our experiments up to now, the effects of the changing irradiance of the cells inside the suspension were not separated from the effects of the changing number of the cells in the given volume of the culture. Neither were the ratios of distilled water to the amount of the zygotes, nor to the vegetative cells constant. Thus, it is necessary to consider the mentioned effects as the result of an interaction of both factors under consideration. Each of the cell populations behaved as an autonomous whole. Also the populations, starting after the transfer to a nitrogen-less medium of the same culture density, may sometimes differ significantly in the observed characteristic features at various phases of their growth. The discontinued supply of nitrogen obviously causes a change of the cell metabolism in favour of the nitrogen-less substances, especially in the more diluted cell suspension. This work completes and explains some earlier results obtained from the study of the life cycle inChlamydomonas geitleri.

Gibberellic acid- and salicylic acid-caused formation of new proteins associated with extension growth and flowering ofImpatiens balsamina

Surinder Kumar, K. K. Nanda

Biologia plantarum 23:321-327, 1981 | DOI: 10.1007/BF02877404

GA3 as well as SA increase the protein content of the stem and the leaves at 1 day under both 8- and 24-h photoperiods. A new protein band with Rm 0.47 seems to be associated with floral bud initiation as it develops within 1-3 days in the stem as well as in the leaves of plants exposed to inductive treatments regardless of whether the induction is caused by 8-h photoperiods or by treatment with GA3 of SA under 24-h photoperiods. Another band with Rm 0.23 developed only in the stem of water-as well as GA3- or SA-treated plants under 8-h photoperiods. It may possibly be associated with extension growth.

Ökologie der Hochgebirge

B. Slavik

Biologia plantarum 23:388, 1981 | DOI: 10.1007/BF02877421

Visual estimation of leaf water stress inMercurialis perennis L.

P. Eliáš

Biologia plantarum 23:456-461, 1981 | DOI: 10.1007/BF02880596

Leaf inclination of three upper leaf pairs of a plant was used as a visual parameter for estimation of leaf (plant) water status inM. perennis. Negative correlation was found between leaf angle and leaf water saturation deficit (WSD). Large angles (between 130 and 80-90°) indicated WSD below approx. 12%, narrow angles expressed negative water balance of the plant and indicated usually strong or moderate water stress. The correlation may be expressed by two regression lines differing in slope. Some differences were observed between three leaf pairs investigated: At the same water deficits, leaves of the first pair (from apex) were inclined to a less degree than leaves of the other two leaf pairs. Leaves of the third pair wilted the most rapidly, therefore their WSD were highest at moderate and strong water stress of the plant. The approximation method tested is suitable for judgment of the plant water status inM. ptrennis and may be used in ecological investigations in forest ecosystems.

Cytogenetic effect of radiation products of cytosine: Parabanic and oxaluric acids

K. Pešina, M. Sosna

Biologia plantarum 23:46, 1981 | DOI: 10.1007/BF02909210

The two final products of radiolytic degradation of cytosinei.e. parabanic and oxaluric acids were investigated as regards their cytogenetic effects. Broad bean (Vicia faba L.) root meristem was used as experimental material. While the oxaluric acid was not able to induce chromosomal aberrations to a greater extent, the parabanic acid acts as a clastogenic compound. When applied on a resting broad bean root meristem at concentration from 10-3 to 10-2 M it induces chromosome and chromatid aberrations, especially breakages. Their frequency reaches 9-12% at the highest tested concentration. The same concentrations of the parabanic acid increases mitotic index of the first cell generation of primary root.

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