biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 4051 to 4080 of 6171:

Effect of soil moisture and the phenyl mercuric acetate on the physiology of lupine and safflower

A. M. Ahmed, A. M. Abdel-Rahman, A. M. Hassanein

Biologia plantarum 29:374-383, 1987 | DOI: 10.1007/BF02886617

Transpiration rate, leaf area, the content of nitrogen and saccharides decreased with the decrease in soil moisture content from 90 % to 30 % of full field capacity. Stomatal frequency, fresh and dry matter and the chlorophyll and carotenoid contents of lupine or safflower remained more or less unaffected. After spraying with the antitranspirant (PMA) the saccharide contents were raised. As concern the lipids content and the contents of Ca, Mg and P, treated plants exhibited variable response to both drought stress and spraying with various PMA concentrations.

Moore, R. (ed.): Vegetative Compatibility Responses in Plants

Vlasta Čatská

Biologia plantarum 29:436, 1987 | DOI: 10.1007/BF02882216

Gardner, F. P., Pearce, R. B., Mitchell, R. L. (ed.): Physiology of Crop Plants

Jarmila Solárová

Biologia plantarum 29:21, 1987 | DOI: 10.1007/BF02902309

Book review

Z. Opatrný, V. Skládal

Biologia plantarum 29:79-80, 1987 | DOI: 10.1007/BF02902326

Sequential analysis of nuclei transformation in stem nodulation sites ofSesbania rostrata Bbem (Leguminosae) during infection by specificrhizobium

E. Duhoux, C. Le Coq, C. Guervin

Biologia plantarum 29:134-142, 1987 | DOI: 10.1007/BF02878167

This paper is a sequential analysis of qualitative and quantitative nuclear evolution inSesbania rostrata (Leguminosae) stem nodules. Before infection, the nuclei of the root primordia (nodulation site) cells show a 2G level of DNA. Immediately upon infection, the cells cease their mitotic activity and the nuclei begin synthesizing DNA up to a 32C level after the onset of the infection. The increase in the diameter of the nuclei of the infected cells is concomitant with the rise in the level of DKA. In the final phase of the evolution of these nodules, the nuclei of the infected cells undergo degenerative changes.

Book review

P. Žák

Biologia plantarum 29:182, 1987 | DOI: 10.1007/BF02876825

The influence of 2,4-dichlorophenoxyacetic acid on cell cycle Kinetics and Sister-Chromatid Exchange Frequency in Garlic (Allium sativum L.) Meristem Cells

J. Doležel, S. Lucretti, F. J. Novák

Biologia plantarum 29:253, 1987 | DOI: 10.1007/BF02892785

The effect of 2,4-dichlorophenoxyacetic acid (2,4-D) at low concentrations on cell cycle duration and sister-chromatid exchange (SCE) frequency was studied using meristem root-tip cells ofAllium sativum L. 2,4-D induced a marked prolongation of the cell cycle. At the same time, small but statistically significant increases in SCE frequencies were observed at 5 μM and 15 μM 2,4-D concentrations. The significance of these findings in the evaluation of mutagenic activity of 2,4-D is discussed.

Annual review of genetics

K. Gichner

Biologia plantarum 29:349, 1987 | DOI: 10.1007/BF02886612

Sharma, S. K., Gupta, C.: Saline Environment and Plant Growth

Jana Pospíšilová

Biologia plantarum 29:421, 1987 | DOI: 10.1007/BF02882210

Green, M. B., Hedin, P. A. (ed.): Natural Resistance of Plants to Pests. Roles of Allelochemicals

T. Gichner

Biologia plantarum 29:69, 1987 | DOI: 10.1007/BF02902321

Non-Decarboxylating transformation of indol-3-ylacetic acid in apple seeds

Katarzyna Dziewanowska, S. Lewak

Biologia plantarum 29:110-117, 1987 | DOI: 10.1007/BF02878162

An enzyme extract from apple(Pyrus malus Borb.) seeds which causes the disappearance of free indol-3-ylacetic acid (IAA) requires the presence of oxygen, but is not inhibited by cyanide. Using 1-14C-IAA it has been demonstrated that the IAA transformation is not accompanied by its decarboxylation. Decarboxylating IAA oxidase is absent during the whole period of apple seed cold stratification. Free IAA has not been detected in dormant apple seeds and in seeds stratified at low temperature. It appears during stratification at 25 °C. Ethyl ester of IAA and indol-3-ylacetyl aspartate have been identified in dormant and after-ripened seeds. Exogenous 1-14C IAA taken up by apple embryos is converted into conjugates with aspartate and short peptides containing an aspartate moiety.

In memorian of professor hitoshi kihara (1893-1986)

Singo Nakazawa

Biologia plantarum 29:159-160, 1987 | DOI: 10.1007/BF02878179

Light gap detection by the photoblastic seeds ofCecropia obtusifolia andPiper auritum, two tropical rain forest trees

C. Vazquez-Yanes, A. Orozco-Segovia

Biologia plantarum 29:234-236, 1987 | DOI: 10.1007/BF02876836

The photoblastic seeds of two pioneer trees from the tropical rain forest-Cecropia obtusifolia andPiper auritum - require long diurnal periods of red light to germinate. In the field, the establishment of the trees takes place only in light gaps produced by falling trees. Experiments were performed in order to ascertain the relationship between the light requirements of the seeds and the germination control in the field. Results show that phytochrome regulated germination allows the detection of light gaps.

Notice to biologia plantarum contributors

Biologia plantarum 29:317, 1987 | DOI: 10.1007/BF02892797

Some immunochemical properties of pollen extracellular nuclease

J. Matoušek, Věra Turková

Biologia plantarum 29:401-408, 1987 | DOI: 10.1007/BF02882205

The extracellular nuclease fromPinus silvestris pollen was isolated and characterized. Molecular sieving produced only one peak of nuclease with apparent molecular mass of about 30 kDaltons, while molecular mass of the enzyme as determined by means of sodium dodecyl sulphate-DNA gel electrophoresis was 25.7 kDaltons or less. The nuclease exhibited one electrophoretic molecular form only.
Specific antiserum against this nuclease was prepared and the nuclease was shown to be immunochemically cross-reactive with extracellular nuclease from Pinus nigra pollen. No immunochemical relationships were observed between pine nuclease and the pollen extracellular nucleases from the angiosperm species,Nicotiana tabacum, Corylus avellana, Alnus incana andBetula pubescens. No cross-reactivity was detected by double diffusion between the pine nuclease and the extracellular proteins from vegetative spores ofEquisetum arvense.

Biochemical indicators of water stress in sunflower seedlings

A. L. García, A. Torrecillas, A. León, M. J. Sánchez-Blanco

Biologia plantarum 29:473, 1987 | DOI: 10.1007/BF02882224

The free proline and chlorophyll contents, and the chlorophyllase, peroxidase and nitrate-reductase activities were determined in sunflower seedlings grown under controlled conditions and submitted to water stress induced by 14 % polyethyleneglycolj (Mr = 4000) or isotonic NaCl solution. Combined free proline content and peroxidase activity may be used for detection of the factor inducing water stress.

Biochemical indicators of the water stress in maize seedlings

A. L. García, A. Torrecillas, A. León, M. C. Ruiz-Sánchez

Biologia plantarum 29:45, 1987 | DOI: 10.1007/BF02902316

Free proline and chlorophyll contents, chlorophyllase, peroxidase and nitrate reductase activities were determined in maize seedlings grown under controlled conditions and submitted to water stress induced by 14 % PEG-4000 or NaCl (isotonic). All the parameters studied showed a significant response to the water stress, but the level of free proline and peroxidase activity together may preferentially be used for the diagnosis of osmotic stress or saline-osmotic stress.

Histochemical IAA-oxidase localization in the shoot of wheat

Z. Zmrhal, Frideta Seidlová, Ivana Macháčková

Biologia plantarum 29:94-97, 1987 | DOI: 10.1007/BF02878157

A histochemical method for the determination of IAA-oxidase has been used in sections of various aerial parts of winter wheat plants. High IAA-oxidase activity was localized in the cell walls of sclerenchyma near the periphery of the stem, in the vascular bundle sheath of sclerenchyma and in xylem, both in the stem and in the leaf. The cell wall-bound IAA-oxidase activity therefore appeared in lignifying tissues. The staining was very weak or absent in the cell walls of parenchyma tissues and phloem. The positive reaction of the cytosol at the bulbous ends of guard cells and in the leaf primordia is presumed to be due to cytosolic IAA-oxidase. These results are discussed in relation to peroxidase localization and to our previousin vitro studies.

Book review

Ingrid Tichá

Biologia plantarum 29:155, 1987 | DOI: 10.1007/BF02878173

The function of metabolism in phosphorus accumulation in plant roots and its transport over long distances

I. Michalík

Biologia plantarum 29:204-213, 1987 | DOI: 10.1007/BF02876831

The values of influx (Ji) and efflux (Jo) of phosphates through intact maize roots (primary, seed roots) have confirmed the dependence of the P concentration in nutrient medium on the activity and efficiency of transport mechanism with respect to the accumulation of phosphates (J) by roots. The phosphate accumulation is about 97-99 % of the total uptake. If the P concentration is < 1 mM the efflux is negligible, and Ji <=g Jo. In contrast, if the P concentration is τ 1 mM, the proportion of efflux significantly increases, up to 45 % of the whole influx. The approximation to the conditions of equilibrium of phosphate flows ( Ji = Jo) depends on the P concentration in root cells, the accumulation of phosphates being determined by the relation Ji τ Jo. In the roots growing in P-containing medium the values of efflux are much higher than in the roots lacking P.
The positive effect of Ca2+ ions on the accumulation of phosphates is caused by the decreased proportion of efflux. The factors instigating the integrity or non-integrity of the cell structure (Ca2+, SDS, EDTA, Sorbitol,etc.) and thus its effectiveness determine the accumulation of phosphates by roots. Analogously, the factors stimulating the ability of accepted phosphate to be metabolized, and their use in the form of organic compounds decrease the proportion of efflux; these activities are shown in the increased efficiency of the phosphate uptake. The presented results show the importance of the integrity of the cell structure, the functioning of membranes and of metabolism efficiency for the accumulation of phosphates by plant roots. The main form of phosphorus transport in xylem exudate is inorganic phosphorus. Its share is from 79 to 82 % of the total amount of transported P. The utilization of P in the roots in the form of organic, slowly motabolizable P compounds (mannose-6-phosphate) and inhibition of acid phosphatase activity effectively restrains P transport over long distances. The correlation of P transport from roots into shoots with phosphatase activity was established (correlation coefficient is 0.74++). It can be summarized that long-distance P tran sport is a function of dephosphorylating reactions.

Changes in contents of chlorophyll, proteins, and saccharides in leaves during plant development of determinate, semideterminate, and indeterminate lines of soybean

H. Ghiasi, C. Dean Dybing, C. Paech

Biologia plantarum 29:283, 1987 | DOI: 10.1007/BF02892791

Major differences betwean the determinate (dt1Dt2,dt1dt2), semideterminate (Dt1Dt2), and indeterminate (Dt1dt2) near-isogenic lines of glycine max (L.) Merr, mainly appeared after R1 (reproductive) stage. Increases in specific leaf matter (SLM) between Rl and R6 stages showed that determinate lines have higher SLM than semideterminate or indeterminate lines. Soluble protein and starch also accumulated more rapidly in determinate lines. Insoluble protein, ribonucleic acid (RNA), and deoxyribonucleic acid (DNA), reducing saccharides, chlorophyll, and soluble saccharides contents of leaf from determinate lines resembled those of semideterminate and indeterminate lines.

Chemotaxonomical and karyological comparison of three species of theGenus Allium

Sylva Zelenková

Biologia plantarum 29:384-389, 1987 | DOI: 10.1007/BF02886618

Karyotypes ofAllium fistulosum, A. altaicum andA. cepa cv. Karmen are described and protein patterns of their seeds determined by immunoelectrophoresis are compared. Esterase isoenzymes were evaluated by polyacrylamide gel electrophoresis and isoelectrofocusing. Karyological and chemotaxonomical analysis confirmed thatA. fistulosum andA. altaicum are closely related and both species are taxonomieally distant fromA. cepa cv. Karmen.

Formation of adventitious buds in needle primordia isolated from embryonic shoots of adult picea abies

P. Krogstrup

Biologia plantarum 29:437-444, 1987 | DOI: 10.1007/BF02882217

Needle primordia were isolated from embryonic shoot expiants of 88 year oldPicea abies (Norway spruce) in order to develop a method for micropropagation using adult mother trees. The isolation of needle primordia in combination with frequent subculture, stimulated the formation of peripheral meristematic tissue in expiants cultured on a modified Murashige & Skoog medium supplemented with cytokinin. Transfer of isolated needle primordia with peripheral meristematic tissue to medium without growth regulators, and with a reduced ratio of NH+4/ NO-3, resulted in the formation of adventitious buds.

Book review

Olga Máchová

Biologia plantarum 28:51, 1986 | DOI: 10.1007/BF02885321

Effects of nitrogen deprivation on the ATP-sulphurylase and O-acetylserine sulphydrylase activities of mesophyll protoplasts and bundle sheath strands of maize leaves

Rossella Ghisi, F. Anaclerio, C. Passera

Biologia plantarum 28:114, 1986 | DOI: 10.1007/BF02885205

In maize leaves nitrogen (N)-deprivation induced a significant decline of chlorophyl and total N contents. On the contrary, sulphur (S) content increased with N-deprivation. The activities of ATP-sulphurylase and O-acetylserine sulphydrylase also decreased with N-deprivation, but ATP-sulphurylase activity was more sensitive than O-acetylserine sulphydrylase activity to N-deficiency both in whole leaf extracts and in isolated leaf cells. Finally, N-deprivation induced higher changes in activity of the two enzymes in mesophyll protoplasts than in bundle sheath strands.

The effect of pyruvic acid thiosemicarbazone on ornithine carbamoyl transferase of Lycopersicon esculentum Mill

J. Miersch, G. -J. Krauss, K. Grancharov, F. Bublitz, N. Spassovska, E. Golovinsky

Biologia plantarum 28:174-179, 1986 | DOI: 10.1007/BF02894593

The pyruvic acid thiosemicarbazone was found to inhibitin vitro the soluble ornithine carbamoyl transferase as well as the enzyme in a mitochondria-rich cell fraction. For proving the inhibition of ornithine carbamoyl transferase in mitochondria-rich fraction a new method for DEAE-thin-layer chromatography of radiocarbon labelled citrulline and ornithine was used. The mitochondria prepared by discontinuous sucrose density gradient centrifugation are physiologically active and oxidized succinate under state 3 conditions. The respiratory control ratio was determined to 3.3. The results obtained show that this analogue of pyruvic acid is an inhibitor of ornithine carbamoyl transferase.

O'neill, I. K., von Borstel, R. C., Miller, C. T., Long, J., Bartsch, H. (ed.): N-Nitroso compounds: Occurence, biological effects and relevance to human cancer

T. Gichner

Biologia plantarum 28:257, 1986 | DOI: 10.1007/BF02902288

Errata

S. Strother, R. Vatta

Biologia plantarum 28:320, 1986 | DOI: 10.1007/BF02902304

Proline accumulation induced by weak acids and IAA in coleoptiles of wheat seedlings

H. Göring, P. Plescher

Biologia plantarum 28:401-406, 1986 | DOI: 10.1007/BF02885041

Proline accumulation in coleoptiles of wheat seedlings or in excised coleoptile segments incubated under shaking for a 24 h period was studied. There was no increase of proline content of coleoptiles after incubation of the seedlings in 5 mM citric acid (a relatively strong and slowly penetrating organic acid) in a pH range from 4.5 to 7.0 and only a slight increase of proline content after incubation in phosphate buffer at pH 7.0 to 7.5 duo to the higher osmotic concentration of phosphate buffer in this pH range. Quite different results were obtained with seedlings incubated in 10 mM acetic acid, a weak and easily penetrating organic acid. With increasing proton concentrations, proline accumulation increased. Application of 400 mM mannitol or higher concentrations of IAA (more than 10-5M) additionally increased proline accumulation in the presence of 10 mM acetic acid in the pH range from 6.0 to 7.5 in which acetic acid alone was loss effective. It is suggested that a decrease of cytosolic pH causes stress-induced proline accumulation.

Book review

J. Krekule

Biologia plantarum 28:30, 1986 | DOI: 10.1007/BF02885315

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