biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2821 to 2850 of 6171:

Birren, B., Green, E.D., Klapholz, S., Myers, R.M., Roskams, J.: Genome Analysis: A Laboratory Manual. Volume 1 Analyzing DNA

K.J. Angelis

Biologia plantarum 41:100, 1998 | DOI: 10.1023/A:1001761927284

Isenberg, G. (ed.): Modern Optics, Electronics, and High Precision Techniques in Cell Biology

J. Nauš

Biologia plantarum 41:192, 1998 | DOI: 10.1023/A:1001820225826

Chlorophyll accumulation in black pine seedlings treated with 5-aminolevulinic acid

G. Dražić, N. Mihailović

Biologia plantarum 41:277-280, 1998 | DOI: 10.1023/A:1001891319465

5-Aminolevulinic acid (10-5 M), a key precursor in chlorophyll biosynthetic pathway, stimulated chlorophyll accumulation in the dark grown black pine (Pinus nigra Arn.) seedlings and did not affect chlorophyll accumulation in the light.

Repression of Genetic Activity in Root Meristem Cells by Peptidic Factor Derived from Male Sex Organs of Chara

J. Maszewski, A. Kaźmierczak

Biologia plantarum 41:357-368, 1998 | DOI: 10.1023/A:1001834007595

Present autoradiographic investigations using 3H-uridine and 3H-leucine incorporation indicate that preincubation of primary roots of Melandrium noctiflorum with antheridial chromatin condensation factor (ACCF), a low molecular mass peptidic factor (4.5 kDa) obtained from maturing male sex organs of Chara tomentosa, leads to a marked reduction of transcription and translation in G1, G2 and endopolyploid cells (8C DNA level). Moreover, silver staining of cells reveals considerable decrease in number and sizes of nucleoli. The similarities that exist between the "innate" processes within developing antheridial filaments of Chara and the genetic repression induced by antheridial peptidic extracts in root cells of M. noctiflorum seems to provide further positive evidence for the presence of a highly specific factor that contributes to nuclear re-patterning of differentiating germ line cells in male sex organs of Chara.

Twyman, R.M.: Advanced Molecular Biology. A Concise References.

L. Skálová

Biologia plantarum 41:468, 1998 | DOI: 10.1023/A:1001843721225

Quantitative changes in maize cytoplasmic proteins induced by aluminium

J. Huttová, L. Tamás, I. Mistrík

Biologia plantarum 41:547-554, 1998 | DOI: 10.1023/A:1001892300233

Three-day-old maize seedlings were subjected to 100 µM AlCl3 for 24 h. Cytoplasmic proteins were isolated from root tips, root base and from coleoptiles. After fractionation of cytoplasmic proteins on anion chromatography column Bio-Scale Q2 sodium dodecylsulphate polyacrylamide gel electrophoresis (SDS-PAGE) analysis was used to monitor Al-induced changes in polypeptide composition of particular fractions. Four (root) and 7 (coleoptile) fractions were eluted from the column with linear 0 - 1.0 M NaCl gradient. In fraction 1 of cytoplasmic proteins from root tips Al induced accumulation of polypeptide with molecular mass of 16 kD and simultaneous reduction of two polypeptides (67.5 and 60 kD). In fraction 1 isolated from mature zone of maize roots Al-induced accumulation of 22 kD polypeptide and reduction of 67.5, 60, and 14 kD polypeptides. Most pronounced changes were revealed in coleoptile. In three protein fractions increased accumulation of polypeptides with molecular mass of 14, 17.5, 20, 24.5, 28, 30, and 37.5 kD were observed. In the remaining three root or four coleoptile fractions of cytoplasmic proteins, no differences were found between Al-treated and control maize seedlings.

The effect of drought, temperature and irradiation on leaf rolling in Ctenanthe setosa

R. Turgut, A. Kadioglu

Biologia plantarum 41:629-633, 1998 | DOI: 10.1023/A:1001817105685

The effects of drought, temperature and irradiation on leaf rolling of Ctenanthe setosa were studied. Water deficit and air temperature were the most important, and have a synergistic effect on the degree and number of the rolled leaves. Irradiation also increased the rolling together with the water deficit but not alone. The stomata were open in rolled leaves.

Nicotinamide Adenine Dinucleotide Phosphate Phosphatase Facilitates Dark Reduction of Nitrate: Regulation by Nitrate and Ammonia

D. Pattanayak, S.R. Chatterjee

Biologia plantarum 41:75-84, 1998 | DOI: 10.1023/A:1001712500451

Leaves of 15 - 30-d-old plants of sunflower and jute were harvested at 10.00 or 23.00 (local time) and measured immediately, or those harvested at 10.00 were incubated for one hour in sunlight either in water or 5 mM methionine sulfoximine (MSX) solution and then for three hours in dark either in water or 15 mM KNO3 solution. Nitrate feeding during dark incubation, in general, increased nitrate reductase (NR) and nitrite reductase (NiR) activities, and NADH and soluble sugar contents. Increase in tissue nitrate concentration in MSX fed but not in control samples suggested reduction of nitrate in dark. NADPH-dependent NR activity increased considerably upon feeding with nitrate in dark. Concomitantly, NADPH phosphatase activity was also increased in nitrate treated, dark incubated leaves. It is proposed that nitrate regulates dark nitrate reduction by facilitating generation of NADH from NADPH by NADPH phosphatase. High amounts of ammonia accumulated in MSX treated, but not in control leaves, upon dark incubation. Relative activities of NR and NADPH phosphatase, and amounts of soluble sugar and NADH were low in MSX fed samples compared to that of control. So, high amount of ammonia might partially repress NADPH phosphatase and consequently deprive NR of reducing equivalents.

Growth and proliferation in vitro of Vaccinium corymbosum under different irradiance and radiation spectral composition

N. Noè, T. Eccher, E. Del Signore, A. Montoldi

Biologia plantarum 41:161-167, 1998 | DOI: 10.1023/A:1001878901718

Plantlets of highbush blueberry (Vaccinium corymbosum) cvs. Atlantic, Berkeley and Elizabeth, were exposed in vitro to radiation of different spectral compositions obtained by filtering the cool-white light with either 2 types of polymethylmethacrylate (PMMA) layers or glass and different photosynthetic photon flux density (PPFD, ranging from 10 to 180 µmol m-2 s-1). Red colour of leaves was the first response to the light treatments: after 14 d under unfiltered light, the shoots exposed to higher PPFD showed dramatic reddening of leaves and sprouts, especially in cv. Atlantic; cutting wavelengths shorter than 520 nm (no-B-PMMA filter) prevented those effects. On average, cv. Atlantic yielded the highest number of shoots per explant (10.4), followed by cv. Elizabeth (9.1) and cv. Berkeley (6.5). No-B-PMMA increased the proliferation rate in all the 3 genotypes, especially in cv. Atlantic. On the other hand, cutting wavelengths between 650 and 760 nm (no-R-PMMA filter) generally depressed the proliferation rate. No-B-PMMA induced remarkable changes in the morphology of the shoots - more elongate leaves and longer internodes - especially in cv. Atlantic.

The effect of selected plant hormones on in vitro proliferation of hyphae of Glomus fistulosum

M. Gryndler, H. Hršelová, I. Chvátalová, J. Jansa

Biologia plantarum 41:255-263, 1998 | DOI: 10.1023/A:1001874832669

Effects of N6-benzyladenine, kinetin, zeatin, N6-benzyladenosine, kinetin riboside, zeatin riboside, jasmonic acid, indole-3-acetic acid, indole-3-butyric acid, indole-3-propionic acid, abscisic acid and gibberellic acid on proliferation of hyphae of arbuscular mycorrhizal (AM) fungus Glomus fistulosum were studied under axenic conditions in vitro. The growth of intraradical hyphae of G. fistulosum was fully suppressed by 30 µM indole-3-acetic acid, but a perceptible decrease in the proliferation of the hyphae was observed already at 3 µM. Because such concentration is near the concentrations common in root tissues in vivo, the effect may be biologically significant. Similar effect was also observed for Glomus mosseae. Inhibitory effects of abscisic acid and cytokinins occurred only at very high, non-physiological concentrations. Ribosylated cytokinins showed stronger inhibition effects than their non-ribosylated counterparts. No stimulation of proliferation of hyphae by any plant hormone tested was observed.

Isolation and Preliminary Characterization of ATPase from Olive Calli Grown at Different Auxin/Cytokinin Ratio

S. Astolfi, M.G. De Biasi, E. Rugini, Z. Varanini

Biologia plantarum 41:321-330, 1998 | DOI: 10.1023/A:1001853120799

ATPase activity was studied in calli from olive (Olea europaea L.) petioles cultured in media modified in their auxin/cytokinin ratio in order to induce different morphogenetic responses. Addition of 0.54 µM α-naphthaleneacetic acid (NAA) or 14 µM zeatin (ZEA) did not induce any morphogenesis in calli and proton pump activity in vivo was very low, while calli produced roots at 27 or 11 µM NAA + 0.28 µM ZEA and possessed clearly detectable proton pump activity. ATPase activity associated with microsomes isolated by differential centrifugation from different callus cultures had the same pH optimum and similar sensitivity toward nitrate and azide. However, microsomes isolated from non-morphogenetic calli had higher specific ATPase activity which was very poorly (6 %) inhibited by vanadate. Also, the fractionation of these microsomes on a continuous sucrose gradient showed two peaks of ATPase activity, the more pronounced one co-purifying with the Golg i marker enzyme, Triton-stimulated UDPase activity, suggesting thus the presence of very high ATPase activity in Golgi secretory vesicles. On the contrary, ATPase activity of microsomes from calli producing roots was more sensitive to vanadate (30 - 40 % inhibition). Furthermore, the component of ATPase activity attributable to Golgi secretory vesicles was less abundant.

Nodule structure and functioning in Cicer arietinum as affected by nitrate

S. Sheokand, S. Babber, K. Swaraj

Biologia plantarum 41:435-443, 1998 | DOI: 10.1023/A:1001810813047

Chickpea (Cicer arietinum L.) cv. C-235 inoculated with Rhizobium sp. (Cicer) strain cv4Az was raised in sand culture under natural conditions with nitrogen-free nutrient solution. 45-d-old plants were treated with 20 and 50 mM KNO3 and sampling made 2 and 6 d after treatment. KNO3 application induced premature nodule senescence. Light microscopic investigations showed that KNO3 treatments resulted in structural degradation of the central bacteroidal tissue. The mass of green nodules increased by 35 % under these treatments. This was accompanied by a rapid decline in leghemoglobin (Lb) content of the nodules being 51 - 67 % lower than in control. The total soluble nodule proteins showed relatively minor changes under KNO3 treatments thus suggesting preferential degradation of Lb. These changes were associated with a rapid decline in N2-fixing activity. However, the decline in total soluble sugars was relatively minor as compared to acetylene reducing activity, thus indicating that sugar deprivation is not the cause of decreased nitrogen fixation ability. Glutathione reductase and ascorbate peroxidase activity showed a 10 - 20 % decrease in comparison with the control. Accumulation of H2O2 and structural degradation of the nodular tissue are considered to be the factors leading to nodule senescence under nitrate treatments.

Jaroszeski, M.J., Heller, R. (ed.): Flow Cytometry Protocols

J. Doležel

Biologia plantarum 41:514, 1998 | DOI: 10.1023/A:1001877424340

Effect of 1,10-phenanthroline on peroxidase and catalase activity and chlorophyll, sugar, and ascorbic acid contents

B. Herman, R. Biczak, E. Gurgul

Biologia plantarum 41:607-611, 1998 | DOI: 10.1023/A:1001808903867

Changes in the peroxidase (EC 1.11.1.7) and catalase (EC 1.11.1.6) activities, and total chlorophyll, soluble sugars, and ascorbic acid contents of leek leaves treated with the herbicide 1,10-phenanthroline (Phe) in concentrations 0.5, 2.5, 5.0, 7.5, and 10.0 mM have been determined. Plants treated with Phe were characterised by a higher activity of peroxidase and a lower activity of catalase and lower contents of chlorophyll, soluble sugars, and ascorbic acid as compared to non-treated plants.

Henry, R.J.: Practical Applications of Plant Molecular Biology

I. Babůrek

Biologia plantarum 41:56, 1998 | DOI: 10.1023/A:1001701625467

Amelioration of NaCl Stress by Triadimefon in Soybean Seedlings

R. Panneerselvam, M. Muthukumarasamy, S.N. Rajan

Biologia plantarum 41:133-137, 1998 | DOI: 10.1023/A:1001737221832

NaCl stress decreased root growth, shoot length and dry matter production of Glycine max seedlings. It has also caused accumulation of proline and amino acids and decreased protein and nucleic acid contents of the seedlings. Addition of triadimefon to NaCl stressed seedlings partially restored the growth and increased the protein, amino acid, proline and nucleic acid contents of the seedlings. The root biomass production under combination of triadimefon and NaCl was even larger than control. Thus triadimefon can ameliorate the effect of NaCl stress in soybean.

Smith, B.J. (ed.): Protein Sequencing Protocols

T. Moravec

Biologia plantarum 41:216, 1998 | DOI: 10.1023/A:1001828411713

Effect of salicylic acid on nodulation, nitrogenous compounds and related enzymes of Vigna mungo

M.P. Ramanujam, V. Abdul Jaleel, G. Kumaravelu

Biologia plantarum 41:307-311, 1998 | DOI: 10.1023/A:1001859824008

Plants of Vigna mungo raised from seeds presoaked in salicylic acid (0.0, 0.01, 0.1 and 1.0 mM) and nodulated with the cowpea strain of Rhizobium leguminosarum were analysed 15 and 30 d after sowing. The foliar nitrate and nitrite contents were varying but soluble protein and total nitrogen contents were lower in treated than control plants. Nitrate reductase activity was increased at the two lower concentrations of 0.01 and 0.1 mM but was inhibited at the highest concentration used (1.0 mM). The number of nodules, their leghemoglobin and protein contents and nitrogenase activity of roots were reduced.

Jain, M., Brar, D.S., Ahloowalia, B.S. (ed.): Somaclonal Variation and Induced Mutations in Crop Improvement.

T. Gichner

Biologia plantarum 41:414, 1998 | DOI: 10.1023/A:1001883318499

Brock, J.H., Wade, M., Pyšek, P., Green, D. (ed.): Plant Invasions. Studies from North America and Europe

P. Kovář

Biologia plantarum 41:496, 1998 | DOI: 10.1023/A:1001821206593

The effect of local application of fertilizer on the content of cytokinins in the xylem sap of maize

I.I. Ivanov, G.R. Kudoyarova, V.K. Trapeznikov

Biologia plantarum 41:587-590, 1998 | DOI: 10.1023/A:1001800702050

Cytokinin content in xylem sap was higher in plants grown under local supply of fertilizers as compared to those grown under homogenous distribution of nutrients in soil. The separate assay of cytokinins in xylem exudate from split root system showed that roots, which were in contact with fertilizer mainly contributed to cytokinins transported from roots to shoots.

Callus Induction and Protoplast Isolation from Tissues of Cucumis Sativus L. and C. Melo L. Seedlings

M. Fellner, A. Lebeda

Biologia plantarum 41:11-24, 1998 | DOI: 10.1023/A:1001791812746

Hypocotyls, cotyledons and true leaves of in vitro seedlings of 10 cucumber and melon genotypes resistant to downy and powdery mildew were cultured on several combinations of initiation and multiplication media to produce callus and subsequently cell suspensions as suitable sources for isolation and culture of protoplasts. Cotyledons of both species were shown to be the most responsive to variation in culture media. However, calli and cell suspensions derived from hypocotyls generally provided higher number of protoplasts by treatment with several enzymatic solutions. The protoplasts formed new cell walls after 12 h of culture in liquid culture medium and first cell division was observed 2 d later with more frequent divisions after one week of culture.

Impacts of Boron Application on Maize Plants Growing under Flooded and Unflooded Conditions

S.A. Sayed

Biologia plantarum 41:101-109, 1998 | DOI: 10.1023/A:1001720702268

Plants of maize (Zea mays L.) were waterlogged for 7 d and irrigated (root application) or sprayed (foliar application) with 0, 1, 3 and 6 mg dm-3 of boron. The stability of leaf membranes was assessed by determining leakage of electrolytes from leaf discs exposed to heat (51 °C) and dehydration (40 % PEG). Leaf membranes were more stable to heat than to dehydration. The membranes of waterlogged plants were more injured than those of control plants. Waterlogging reduced contents of dry mass, chlorophyll, soluble proteins, total free amino acids and soluble sugars and leaf relative water content (RWC). Application of boron increased the stability of leaf membranes, chlorophyll, soluble sugars, soluble proteins, amino acids contents, leaf RWC and dry mass accumulation. Foliar boron application was more effective. Application of boron alleviated the deleterious effect of waterlogging.

Plant mitochondrial electrical potential monitored by fluorescence quenching of rhodamine 123

E. Braidot, E. Petrussa, F. Macrì, A. Vianello

Biologia plantarum 41:193-201, 1998 | DOI: 10.1023/A:1001898027218

The suitability of the fluorescent dye rhodamine 123 for qualitative and quantitative determinations of the electrical potential difference (ΔΨ) in isolated pea (Pisum sativum L.) stem mitochondria was evaluated. A fluorescence quenching of rhodamine 123, as a consequence of dye uptake, occurred following mitochondria energization by both external and internal substrates. This quenching was associated to the generation of ΔΨ, because it was completely released by uncouplers and respiratory inhibitors. The conversion of the proton gradient (ΔpH) into ΔΨ, induced by nigericin or a permeant weak acid (phosphate), increased the quenching. The uptake of the probe was accompanied by 40 % of unspecific binding in coupled, but not in uncoupled, mitochondria. Rhodamine 123 quenching varied linearly with a K+-diffusion potential. ADP induced a transient and cyclic change of fluorescence which was associated to ATP synthesis. Consequently, rhodamine 123 did not influence oxygen consumption by mitochondria in both state 4 and 3, thus indicating that, at the concentrations assayed, the probe was not toxic. It is concluded that rhodamine 123, followed by fluorescence quenching, is a suitable probe to study the energetics of isolated plant mitochondria.

Wien, H.C. (ed.): Physiology of Vegetable Crops.

J. Krekule

Biologia plantarum 41:286, 1998 | DOI: 10.1023/A:1001840730369

Light Regulation of Diurnal Variation of Sucrose-Phosphate Synthase in Potato

D. Pattanayak

Biologia plantarum 41:369-376, 1998 | DOI: 10.1023/A:1001838125342

Light regulation of diurnal variation of sucrose-phosphate synthase (SPS) activity was studied in potato leaves during pre-tuber initiation stage. SPS activity was greatest at 14:00 and coincident with highest irradiance [2 000 µmol(PAR) m-2 s-1], and lowest at 18:00 during lowest irradiance (200 µmol m-2 s-1). In contrast, fructose-1,6-bisphosphatase (FBPase) activity was greatest at 12:00 (irradiance 1 700 µmol m-2 s-1). Inhibition of SPS activity by phosphorylation was least at 14:00 and highest at 18:00. Considerable inhibition was also observed at 10:00. SPS showed hyperbolic saturation kinetics in response to varying UDP-glucose concentrations. Diurnal variation of SPS activity was due to a change of affinity for its substrate (Km), but not due to change of Vmax. Phosphate (Pi) decreased the activation state of SPS. Inhibition by Pi was most severe under limiting UDP-glucose concentration. Sensitivity towards Pi inhibition at limiting substrate concentration was highest at 18:00 and lowest at 14:00. Change of tissue phosphate concentration followed the opposite pattern to that of diurnal variation of SPS activity and irradiance, being highest at 18:00 and lowest at 14:00. A dual mode of regulation is considered to exist for diurnal variation of potato leaf SPS: covalent modification and effector (Pi) regulation. Thus the change of tissue phosphate concentration may play a pivotal role in regulating potato leaf SPS.

Amelioration of lead and mercury effects on germination and rice seedling growth by antioxidants

A. Mishra, M.A. Choudhuri

Biologia plantarum 41:469-473, 1998 | DOI: 10.1023/A:1001871015773

Germination of two rice (Oryza sativa L.) cultivars (Ratna and IR 36) in the presence of 10 µM PbCl2 and 10 µM HgCl2 decreased germination percentage, germination index, shoot/root length, tolerance index and dry mass of shoots and roots. Mercury was more toxic than lead. Reduced glutathione (GSH), cysteine (Cys), ascorbic acid, and α-tocopherol alleviated the adverse effects of these metals on plants in the order GSH > Cys > ascorbic acid > α-tocopherol. The effects were more pronounced in tolerant cultivar IR 36 than in the relatively susceptible cultivar Ratna.

Genotypic differences and alterations of protein patterns of tomato explants under copper stress

H.M. El-Aref, A.M. Hamada

Biologia plantarum 41:555-564, 1998 | DOI: 10.1023/A:1001844417071

In vitro response of six tomato genotypes to different copper concentrations was studied. Cu was toxic to tomato explants at a relatively high concentration (100 µM), which reduced callus growth and shoot regeneration. Peto-86 followed by UC-97-3 were more tolerant to copper than the other genotypes. Cu (100 µM) induced the synthesis of eight new proteins (70.86 - 14.78 kD) in Peto-86 and six in Western Improve (46.43 - 14.78 kD) and UC-97-3 (77.69 - 14.78 kD). Cu-stress reduced the expression of some enzymatic bands of alcohol dehydrogenase and esterase, meanwhile, one peroxidase band at the locus Prx-1 was newly expressed under Cu-treatment.

Effect of cadmium and copper on growth of Bacopa monniera regenerants

G. Ali, P.S. Srivastava, M. Iqbal

Biologia plantarum 41:635-639, 1998 | DOI: 10.1023/A:1001869122523

The effects of cadmium and copper on in vitro growth of Bacopa monniera (L.) Wettst. was monitored. Cadmium (25 and 50 µM CdCl2) inhibited plantlet growth and addition of 50 or 100 µm CuSO4 partially alleviated this negative effect. Cadmium increased both protein and proline contents, but to a lesser extent with the additional supply of CuSO4.

Rootstock-imposed Alterations in Nitrate Reductase and Glutamine Synthetase Activities in Leaves of Rose Plants

H. Agbaria, B. Heuer, N. Zieslin

Biologia plantarum 41:85-91, 1998 | DOI: 10.1023/A:1001716617289

The activities of nitrate reductase and glutamine synthetase in leaves of greenhouse grown rose plants (Rosa hybrida cvs. Ilseta and Mercedes) grafted on various rootstocks were compared with those in leaves of non-grafted, own-root plants of these cultivars. The results obtained showed that the enzymatic activities as well as nitrate content in the leaves were altered by the grafting and by type of the rootstock used. These rootstock-imposed alterations differed between the two cultivars used in the study.

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