biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 3271 to 3300 of 6293:

Jones, R.L., Sommerville, C.R., Walbot, V. (ed):Annual Review of Plant Physiology and Plant Molecular Biology. Vol. 45

Z. Šesták

Biologia plantarum 38:386, 1996 | DOI: 10.1007/BF02896667

Mercuric chloride induced membrane damage in tomato cultured cells

B. De, A. K. Mukherjee

Biologia plantarum 38:469, 1996 | DOI: 10.1007/BF02896684

Suspension cultures of tomato cells were used to study the membrane injury by the toxic concentration of mercuric chloride. Assessment of electrolyte leakage, UV-absorbance of the tissue leachates, relative leakage ratio, injury index, membrane lipid peroxidation, lipoxygenase activity, α-amino nitrogen and total soluble carbohydrate contents showed the extent of membrane damage as a function of the increasing concentration of mercuric chloride. It is suggested that the selected parameters can be used as qualitative tests for determination of stress-induced membrane damage

Ecophysiology of Tropical Intercropping

J. Gloser

Biologia plantarum 38:562, 1996 | DOI: 10.1007/BF02890607

Protein and chlorophyll contents in autotrophically and heterotrophically cultivated tobacco mesophyll protoplasts

M. Šindelářová, L. Burketová, L. Šindelář

Biologia plantarum 38:633, 1996 | DOI: 10.1007/BF02890625

Changes in the number of protoplasts, viability, protein and chlorophyll content were studied in tobacco mesophyll protoplasts cultivated either autotrophically in CPW medium with mannitol (MCPW) in the light or heterotrophically in CPW medium with glucose (GCPW) in the dark. The number and viability of protoplasts in the both cultivation media were unchanged. In MCPW in the light, the protein and chlorophyll content strongly decreased already after 12 h of cultivation, at 72 h of cultivation, values dropped to 23.6 % (proteins) and to 3.5 % (chlorophyll) in comparison with the initial content. In GCPW in the dark, the protein and chlorophyll contents decreased only slightly to 75 % (proteins) and to 57.7 % (chlorophyll).

Book review

V. Novák

Biologia plantarum 38:60, 1996 | DOI: 10.1007/BF02879635

Effect of plant growth regulators and basal media onin vitro shoot proliferation and rooting ofMyrtus communis L.

R. Parra, J. B. Amo-Marco

Biologia plantarum 38:161, 1996 | DOI: 10.1007/BF02873839

The influence of macronutrients and growth regulators on in vitro shoot proliferation and rooting of an East Spanish population ofMyrtus communis L. were studied. Preincubation of field material on a medium without mineral salts prevented the browning from phenolic exudates. For multiplication, nodal segments of 5 mm fromin vitro produced shoots were cultured on Murashige and Skoog (MS), Schenk and Hildebrandt (SH) and Heller (H) media (full strength or diluted to 1/2 or 1/4), with 6-benzylaminopurine (BAP) at concentrations 4.4, 13.3 and 22.2 ΜM or kinetin (K) at concentrations 4.7, 14.0 and 23.2 ΜM. The optimum shoot proliferation was on quarter-strength MS medium with 4.4 ΜM BAP, whereas the maximum number of nodal segments was produced on half-strength MS medium with 4.4 ΜM BAP. Rooting of shoots was obtained by adding 2.5 - 24.6 ΜM indole-3-butyric acid (IBA) and broad range of macronutrients; Lloyd and McCown (WPM) and Gresshoff and Doy (GD) media both full strength or diluted to 1/2 were optimum. No rooting was obtained in the presence of α-naphthaleneacetic acid (NAA).

Effects of salinity on uptake and distribution of Na+, Cl- and K+ in two wheat cultivars

S. K. Sharma

Biologia plantarum 38:261, 1996 | DOI: 10.1007/BF02873857

Plants of two wheat (Triticum aestivum L.) cultivars differing in salt tolerance were grown in sand with nutrient solutions. 35-d-old plants were subjected to 5 levels of salinity created by adding NaCl, CaCl2 and Na2SO4. Growth reduction caused by salinity was accompanied by increased Na+ and Cl- concentrations, Na+/K+ ratio, and decreased concentration of K+. The salt tolerant cv. Kharchia 65 showed better ionic regulation. Salinity up to 15.7 dS m-1 induced increased uptake of Na+ and Cl- but higher levels of salinity were not accompanied by further increase in uptake of these ions. Observed increases in Na+ and Cl- concentrations at higher salinities seemed to be the consequence of reduction in growth. Uptake of K+ was decreased; more in salt sensitive cultivar. This was also accompanied by differences in its distribution.

Molecular Mechanisms in Bioenergetics

P. Šiffel

Biologia plantarum 38:530, 1996 | DOI: 10.1007/BF02890602

In Vitro Embryogenesis in Plants

J. Opatrná

Biologia plantarum 38:616, 1996 | DOI: 10.1007/BF02890619

Proline accumulation inTephrosia purpurea pers

S. R. Erakar, C. V. Murumkar

Biologia plantarum 37:301-304, 1995 | DOI: 10.1007/BF02913230

Tephrosia purpurea Pers. was found to accumulate high proline content in dry habitat. The proline content was higher in shoots, especially in leaves, than in roots. Pod walls and young seeds showed the highest proline content. The proline content of young leaves was higher than that of mature and old leaves. During leaf senescencein vitro proline content increased rapidly upto 6 h and further decreased in leaves as well as in leachate. High proline content seems to be positively related with 'survival capability' of this plant.

Growth,14CO2 fixation, activites of photosystems, ribulose 1,5-bisphosphate carboxylase and nitrate reductase in trees as affected by simulated acid rain

K. Muthuchelian, C. Murugan, R. Harigovindan, N. Nedunchezhian, G. Kulandaivelu

Biologia plantarum 37:355, 1995 | DOI: 10.1007/BF02913978

In seedlings of the tropical tree speciesErythrina variegata Lam. andHardwickia binata Roxb. exposed to different acidic mist (H2SO4, pH 5, 3 and 2) for 5 d significant reduction in seedling growth, biomass accumulation and14CO2 fixation were determined. In isolated chloroplasts a decrease in the activities of photosystem 2 and whole electron transport chain was observed only at pH 3 and 2, but no significant change in photosystem 1 activity was observed. SDS-PAGE analysis of crude leaf extracts of ribulose 1,5-bisphosphate carboxylase (RuBPC) indicated a significant loss of 55 and 15 kDa polypeptides at pH 2 inErythrina. The reduction in the RuBPC activity in seedlings grown under acidic mists correlated well with CO2 fixation.

Effect of Cd and UV-B radiation on polypeptide composition and photosystem activities ofVigna unguiculata chloroplasts

N. Nedunchezhian, G. Kulandaivelu

Biologia plantarum 37:437, 1995 | DOI: 10.1007/BF02913994

Rates of whole chain and photosystem 2 activities in chloroplasts isolated fromVigna unguiculata L. seedlings grown under ultraviolet-B (UV-B) enhanced radiation were less affected by 3, 6 and 9 mM CdCl2 for 60 min at 0 °C in the dark than the rates in chloroplasts from control plants grown under normal irradiation. The results are in agreement with changes in contents of chloroplast 55, 47, 43, 33, 29, 27-25, 23 and 17 kDa polypeptides that were significantly lowered at 3, 6 and 9 mM CdCl2 only in chloroplasts from control plants. On the other hand, in the simultaneous treatment of chloroplast isolated from control plants the UV-B supported the inhibitory effect of all applied concentrations of CdCl2. The photosystem 1 activity was only marginally affected in the all experimental variants.

Book review

J. Pospíšilová

Biologia plantarum 38:38, 1996 | DOI: 10.1007/BF02879630

Phytochelatin synthesis in maize seedlings in response to excess zinc

A. Tukendorf

Biologia plantarum 38:137, 1996 | DOI: 10.1007/BF02879648

Buthionine sulfoximine (BSO) specifically inhibits γ-glutamylcysteine synthetase and decreases a cellular level of glutathione (GSH) in maize seedling roots. Exogenous GSH restores Zn-phytochelatins synthesis in BSO-treated maize plants.

Enzymatic determination of ascorbic acid in leaf cell walls using acidic buffer during infiltration

H. Moldau, I. Bichele, H. Kollist, E. Padu

Biologia plantarum 38:229, 1996 | DOI: 10.1007/BF02873851

A modification of the procedure of extraction of cell wall solution for enzymatic determination of ascorbic acid and its reduction level in the apoplast of leaf cells is proposed. The modification consists in infiltration of leaves with citric acid/sodium phosphate buffer, pH 3, instead of customarily used neutral solutions. In acidic media autooxidation of ascorbic acid is effectively suppressed, so that infiltration could be performed at laboratory temperatures. Using polyacrylamide gel electrophoresis and infiltration solutions of pH down to 1.5 it is shown, that at pH 3 the extracted fluid is not contaminated with intracellular substances if appropriate vacuum and centrifugation forces are used. The modification is shown to be more effective for leaves ofPhaseolus than for those ofSpinacia. In cell walls of mature leaves of these species the concentration of ascorbic acid was found to be around 1 mM, with reduction level up to 0.90. The role of ascorbic acid in cell walls as ozone scavenger is discussed

Cornish-Bowden, A.:Fundamentals of Enzyme Kinetics

N. Wilhelmová

Biologia plantarum 38:430, 1996 | DOI: 10.1007/BF02896674

Spectroscopy of Biological Molecules. (6th European Conference on the Spectroscopy of Biological Molecules, 3-8 September 1995, Villeneuve d'Àscq, France)

J. Nauš

Biologia plantarum 38:510, 1996 | DOI: 10.1007/BF02890597

Agroforestry: Science, Policy and Practice

J Gloser

Biologia plantarum 38:600, 1996 | DOI: 10.1007/BF02890613

Session 13 Primary metabolism

T. J. Daniell, R. Edwards, W. R. Deppert, E. Wagner, M. Desimone, A. Henke, A. Diaz, H. Maza, B. Gonzalez-moro, M. Lacuesta, C. Gonzalez-murua, A. Muñoz-rueda, P. Du Jardin, R. Viola, F. Wyzen, J. Rojas-Beltran, A. J. Gordon, E. P. Harrison, F. R. Minchin, I. Hagima, N. N. Saulescu, M. Hardegger, V. Šebková, C. Unger, K. Lorenz, S. Lienhard, A. Sturm, E. O. Leidi, D. N. Rodriguez, A. Moing, A. J. Escobar-Gutierrez, J. P. Gaudillere, S. Pereira, C. Fernandes, D. Pinto, O. Figueira, S. Paiva, R. Salema, G. N. Rudenskaya, E. A. Bogdanova, L. P. Revina, B. N. Golovkin, V. M. Stepanov, J. Vicente-ca

Biologia plantarum 36(Suppl.1):S213-S223, 1994 | DOI: 10.1007/BF02931125

Photophysiology of turion formation and germination inSpirodela polyrhiza

K. -J. Appenroth, S. Teller, M. Horn

Biologia plantarum 38:95, 1996 | DOI: 10.1007/BF02879642

Standardized laboratory techniques for the vegetative growth of the duckweedSpirodela polyrhiza (Lemnaceaé), and for formation as well as germination of their turions were described. Increasing photon fluence rates of blue or red light increased the yield of turions. A specific stimulating effect of blue light was demonstrated under autotrophic but not under mixotrophic conditions. Therefore the spectral composition of light is not important in mixotrophic formation of turions whereas in autotrophic formation light sources with a higher portion of blue light are recommended. Dark-grown (etiolated) turions showed accelerated germination and higher germination percentage in comparison with light-grown turions after induction by a single red light pulse. This difference was overcome in continuous red light by speeding up the germination response of light-grown turions. Use of Petri dishes (8 cm3 nutrient solution) instead of Erlenmeyer flasks (50 cm3 nutrient solution) retarded germination response. Especially for long term experiments the use of Erlenmeyer flasks is recommended. Storage of turions for 72 h at 25 ‡C following at 5 ‡C in darkness after-ripening resulted in a decreased lag phase of the light-induced germination both after induction by a single light pulse and in continuous light.

Effect of air humidity on the development of functional stomatal apparatus

J. PospíšILOVá

Biologia plantarum 38:197, 1996 | DOI: 10.1007/BF02873846

Phaseolus vulgaris L. seedlings were grown under different air humidities simulating conditions during micropropagation (very high humidity duringin vitro cultivation and low air humidity after transferex vitro). The functional stomatal apparatus developed after a short period of growth at low air humidity at the beginning of plant ontogeny or after transfer from high to low air humidity, but not in plants grown steadily under high air humidity. The ability of stomata to regulate gas exchange was not persistent and disappeared after transfer of plants from low to high humidity.

Ferulic acid mediated changes in oxidative enzymes of maize seedlings: implications in growth

S. Rama Devi, M. N. V. Prasad

Biologia plantarum 38:387, 1996 | DOI: 10.1007/BF02896668

Maize (Zea mays L. cv. Ganga-5) seedlings were grown in the presence of ferulic acid (0.5 - 3.0 mM) for 8 d. Treatment with ferulic acid considerably decreased shoot and root length, increased the activity of peroxidase, catalase and indole-3-acetic acid (IAA) oxidase and decreased the activity of polyphenol oxidase. The increased activity of peroxidase correlated with pronounced increase in content of lignin and phenolic compounds

Cytokinins in the hemiparasiteMelampyrum arvense L. before and after attachment to the host

Z. Lechowski, J. Bialczyk

Biologia plantarum 38:481, 1996 | DOI: 10.1007/BF02890592

Concentration of cytokinins (CKs) of zeatin-type (Z) and isopentyladenine-type (iP) were determined using an enzyme-linked immunosorbent assay (ELISA) technique in xylem sap and bulk leaf extract of the hemiparasiteMelampyrum arvense before and after attachment to the host (Capsella bursa pastoris). In all the samples Z-type were dominant, though the iP-type was also frequent. The results also demonstrate that in comparison with the unattached hemiparasite after attachment to the host the concentration of Z-type in xylem sap increased about 92 and 182 times in the light and dark phase, respectively, and that of the iP-type about 34 times in the two phases. The concentration of Z-type and iP-type in leaves expressed per dm3 of cell water was at the level of 10-7 M and 10-8 M, respectively in the unattached hemiparasite. After attachment, the concentration of CKs increased to 10-5 M and 10-6 M for Z-type and iP-type, respectively. In xylem sap the concentration of Z-type was at the level of 10-9 M and 10-7 M and in the unattached and attached hemiparasite, respectively. The concentrations of iP-type were 10-10 M and 10-8 M for the unattached and attached hemiparasite, respectively. The diurnal oscillation of CK concentration was evident in the unattached hemiparasite, but after attachment their level was nearly constant and independent of the diurnal cycle.

Effect of pH, irradiance and population size on the toxicity of Furadan to two species of Anabaena

B Rath, S. P. Adhikary

Biologia plantarum 38:563-570, 1996 | DOI: 10.1007/BF02890608

In two selected nitrogen-fixing cyanobacterial speciesAnabaena fertilissima andAnabaena variabilis pH, irradiance and different inocula sizes considerably modified the toxic effect of 50 % effective concentration (EC 50) dose of the pesticideFuradan (carbofuran 75 DB). Maximum growth and chlorophyll (Chl)a content ofA. fertilissima was observed in the pH range of 8 - 9 and that ofA. variabilis at pH 7-8, while at acidic pH (5 - 6) and at pH above 9 these parameters were considerably retarded. Toxicity of the EC 50 dose ofFuradan was increased further at pH 5-6, whereas reduction in the toxicity to the test cyanobacteria was observed at pH 7.8 - 9.0. The experimental organisms grew comparatively better and synthesized higher amount of Chl a at an irradiance of 12.5 than at 7.5 or 2.5 W m-2. The toxicity of EC 50 dose of the pesticide gradually decreased with the increasing irradiance. The toxic effect ofFuradan was larger when the initial cyanobacterial population concentration was low andvice versa.

Effect of formaldehyde and glutaraldehyde fixation on the immunochemical reactivity of potato virus A with monoclonal antibodies

T. Moravec, N. Cěřovská

Biologia plantarum 38:637-640, 1996 | DOI: 10.1007/BF02890626

Potato virus A (PVA) was treated with different glutaraldehyde concentrations at a range of different pH values, and its immunochemical reactivity and integrity was tested in various types of ELISA using a panel of six monoclonal antibodies. Glutaraldehyde fixation was compared with formaldehyde fixation, and there was no significant difference in reactivity between PVA non-treated and treated with formaldehyde, but almost the entire immunochemical activity was lost after treating with glutaraldehyde.

Triazine inhibits electron transfer in photosystem 2 and induces lipid peroxidation in thylakoid membrane of maize

F. El-Shintinawy, A. Selim

Biologia plantarum 37:461, 1995 | DOI: 10.1007/BF02914000

Triazine treatment of thylakoid membranes isolated from the primary leaves ofZea mays L. showed an 80% inhibition of photosystem (PS) 2 activity. No detectable change of PS 1 activity was found. The inhibited membranes showed a selective reduction of the most unsaturated linolenic acid (C18∶3) biosynthesis by about 15% coupled with a corresponding increase in stearic (C18∶0), oleic (C18∶1) and linoleic (C18∶2) acids. Thus the inhibition of electron transfer of PS 2 induced by triazine treatment was followed by lipid peroxidation and changes in the thylakoid membrane fluidity.

Photoprotective effect of kinetin on pigment content and photochemical activities of wheat chloroplasts agingin vitro

N. K. Choudhury, H. T. Choe

Biologia plantarum 38:61, 1996 | DOI: 10.1007/BF02879636

The effects of kinetin (Kn) on pigment content and electron transport activities (ETA) in wheat leavesin vivo and chloroplastsin vitro aging in light was investigated. Excised wheat leaves were infiltrated with Kn for 3 h under irradiation. The treatment increased zeaxanthin (Zx) content by 40% and also increased chlorophyll (Chia, Chib) and major carotenoid (Car) contents in the leaves (per fresh mass unit). Chloroplasts isolated from Kn treated leaves, when incubated in light for 4 h showed relatively lower pigment loss and slower loss of ETA compared to the chloroplasts of untreated leaves. These observations suggest photoprotective action of Kn. The photoprotection was more prominent when Kn was applied directly to the irradiated chloroplastsin vitro. Moreover, chloroplasts agingin vitro under irradiation without Kn treatment lost pigments and ETA. Within 3 h of irradiation, both whole chain (H2O to methylviologen) electron transport as well as photosystem (PS) 2 activity were completely lost. However, in the chloroplasts treated with Kn, the loss of pigments was slow and even after 4 h of irradiation the chloroplasts retained 15 % of PS 2 and 9 % of whole chain ETA. In the untreated chloroplasts, the loss of Zx after 4 h of irradiation was 49 % whereas in Kn treated samples its level was 1.3 times higher than that of control. Since a higher level of Zx was maintained in Kn treated chloroplasts, photoprotective action of Kn is possibly mediated through Zx.

Micropropagation ofDalbergia sissoo from nodal explants of mature trees

A. Gulati, P. K. Jaiwal

Biologia plantarum 38:169-175, 1996 | DOI: 10.1007/BF02873840

A method for micropropagation ofDalbergia sissoo has been developed. Single node segments obtained from coppice shoots of a mature tree (20 - 25 year old) produced 3-4 shoots per explant on Murashige and Skoog (MS) medium containing 4.4 x 10-6 M benzylaminopurine (BAP) and 4.4 × 10-7 M of Β-naphthoxy acetic acid (NOA) (shoot multiplication medium) within 4 weeks. Thein vitro regenerated shoots were 3 - 4 cm in length and provided 2 to 3 culturable nodal segments which on shoot multiplication medium again produced 3-4 shoots. Following this procedure 18-24 shoots were produced from single nodal segment within 60 d. 80 % of the shoots directly produced five roots when they were firstly treated with MS medium supplemented with 10-5 M indole-3-butyric acid (IBA) and subsequently transferred to half strength liquid MS medium containing 1 % activated charcoal followed by half strength liquid MS free hormones, vitamins and activated charcoal. Thein vitro raised plants were hardened for survival after transplantation to soil by exposing them to various humidity conditions, gradually from higher to low, with nearly 100 % transplant success.

Book review

J. Pospiśïlová

Biologia plantarum 38:268, 1996 | DOI: 10.1007/BF02873858

Effect ofin vivo andin vitro application of the cytokinin N6 -(m-hydroxybenzyl)adenosine on respiration and membrane transport processes in sugar beet

A. Kotyk, M. Kamínek, J. Pulkrábek, J. Zahradníček

Biologia plantarum 38:363, 1996 | DOI: 10.1007/BF02896663

Sugar beet grown in pots was sprayed with N6-(m-hydroxybenzyl)adenosine, (mOH)- [9R]BAP, one of the synthetic cytokinins. Root tissue was then examined for respiration and for H+-adenosinetriphosphatase activity and both leaf and root tissue served as the object for 6-deoxy-D-glucose and 2-aminoisobutyric acid uptake estimations. Treatment with (mOH)[9R]BAP depressed the uptake of oxygen by the roots of both young and old plants by 17 - 30 % while addition of (mOH)[9R]BAP to the respiring slices decreased it by 10 - 23 %. Uptake of 6-deoxy-D-glucose was mostly diminished byin vivo spraying with the cytokinin (by up to 12 % in leaves and by up to 60 % in roots), as well as by adding it to the experimental vessel (insignificantly in the leaves but by up to 80 % in the roots). The H+-ATPase activity was stimulated bothin vivo andin vitro appreciably in young plants but not at all in plants at the end of their vegetation period.

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