biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2491 to 2520 of 6170:

Assessment of Allelopathic Potential of Root Exudate of Rice Seedlings

H. Kato-Noguchi, T. Ino

Biologia plantarum 44:635-638, 2001 | DOI: 10.1023/A:1013731828945

To determine the allelopathic potential of root exudate from early developmental stage of rice (Oryza sativa L), 6-d-old seedlings of eight cultivars were grown with 3-d-old alfalfa (Medicago sativa L.), cress (Lepidium sativum L.) or lettuce (Lactuca sativa L.) seedlings in Petri dishes under controlled condition. All rice cultivars (cv. Norin 8, Kamenoo, Nipponbare, Kinuhikari, Koshihikari, Sasanishiki, Yukihikari and Hinohikari) inhibited growth of roots, shoots and fresh mass of alfalfa, cress and lettuce seedlings. Effectiveness of cv. Koshihikari was the greatest and more than 60% inhibition was recorded in all bioassays, followed by that of cv. Norin 8 of which effectiveness was more than 40%.

Changes in Parameters of the Plasmalemma ATPase during Peach Vegetative Bud Dormancy

H.-L. Aue, I. Lecomte, G. Pétel

Biologia plantarum 43:25-29, 2000 | DOI: 10.1023/A:1026538526649

Plant dormancy and dormancy breaking depend, at least partially, on close relationships between buds and tissues underlying bud (bud stands). In Prunus persica, the dormancy was related to high nutrient absorption in bud stands linked to high plasmalemma ATPase (EC 3.6.1.3) activity. Two plasmalemma fractions was isolated from peach vegetative buds and bud stands using aqueous phase partitioning and ultracentrifugation. Results of markers enzyme assays indicated that both plasmalemma enriched fractions obtained were highly purified. During the dormancy period plasma membrane ATPase amount and activity were higher in bud stands than in buds. Moreover, assays performed at different temperatures (4, 18, 30 °C) indicated modifications of kinetic parameters (Km, Vm) in both tissues during dormancy release. In buds, from November to February, Km declined at 4°C and increased at 30 °C whereas no changes was measured at 18 °C and Vm increased at all temperature. In bud stands, no changes of Km was measured at 4 °C and 18 °C whereas an increase occurred at 30 °C and Vm decreased at all temperature. According to the results, it can be postulated that dormancy release in peach-tree could be related to modifications of plasma membrane ATPase properties, in buds and bud stands, during winter time.

Wall Thickenings - Moss Protonema Apical Cell Reaction to Lead

M. Krzesłowska, A. Woźny

Biologia plantarum 43:93-98, 2000 | DOI: 10.1023/A:1026511215263

Two-days-old protonemata of Funaria hygrometrica Hedw. growing in in vitro conditions were treated with 4 μM PbCl2 for 48 h. After this time grey or brown colour thickenings of the cell wall appeared in protonemata cells. They were then localized in tip parts of apical cells. Electron microscopical (TEM) observations showed that the thickenings were structurally connected with the wall and sometimes they included lead deposits. Cytochemically it was found that they contained pectic polysaccharides, callose, lipid substances (probably suberin or sporopollenin) and only few cellulose. Other compounds of cell wall, e.g. lignin and cutin were not detected.

Lambers, II., Poorter, H., Van Vuuren, M.M.I. (ed.): Inherent Variation in Plant Growth. Physiological Mechanisms and Ecological Consequences

N. Wilhelmová

Biologia plantarum 43:166, 2000 | DOI: 10.1023/A:1002793303394

Introduction of Alcohol Dehydrogenase in Lettuce Seedlings by Flooding Stress

H. Kato-Noguchi, H. Saito

Biologia plantarum 43:217-220, 2000 | DOI: 10.1023/A:1002796009329

Alcohol dehydrogenase (ADH), its isozyme profiles and ethanol concentration in lettuce (Lactuca sativa L.) seedlings subjected to flooding stress were determined. Flooding stress caused increases in ADH activity and ethanol concentration. By 48 h, ADH activity and ethanol concentration in the flooded seedlings increased 3.2- and 7.0-fold, respectively, in comparison with those in non-stressed seedlings. Five electrophoretically separable ADH bands were found in extract of the flooded seedlings, whereas only two or three ADH bands were found in extract of non-stressed seedlings. These results indicate that lettuce ADH may have a system of three-gene and six-isozyme, and the increase in ADH activity in the flooded seedlings may be due to increased synthesis of the enzyme.

The Effect of Activated Charcoal Supplemented Media to Browning of In Vitro Cultures of Piper species

K. Madhusudhanan, B.A. Rahiman

Biologia plantarum 43:297-299, 2000 | DOI: 10.1023/A:1002729032527

With the aim to effectively minimise the browning of tissue cultures of different Piper species (P. longum, P. attenuatum, P. betle, P. nigrum) explants from stem (nodal and internodal segments), petiole, and leaf were planted on Murashige and Skoog's basal medium supplemented with activated charcoal (AC). AC in the concentration of 200 mg dm-3 proved to be the best. Among the taxa studied, P. longum showed the least browning whereas, wild P. nigrum showed maximum browning.

Content of Gibberellic Acid in Apical Parts of Male and Female Thalli of Chara Tomentosa in Relation to the Content of Sugars and Dry Mass

A. Kaźmierczak, M. Rosiak

Biologia plantarum 43:369-372, 2000 | DOI: 10.1023/A:1026717723029

The contents of gibberellic acid (GA3), glucose and starch, and dry mass in four nodes of apical parts of male and female thalli of Chara tomentosa were measured. The GA3 concentration was about 4 times higher in male than in female thallus and about 10 times higher in the first node than in the next three nodes of both thalli. The apical part of male thallus contains 2.5 times less glucose and 1.7 times less starch than female one. The average amount of dry mass of male and female thallus was similar: 9.9 and 9.8 % of fresh mass. The findings of this investigation demonstrate the interdependence of gibberellic acid and sugars in development of male and female Chara tomentosa thalli.

The Effects of Growth Regulators on Flowering of Chenopodium murale Plants in vitro

A. Mitrović, B. Živanović, Lj. Ćulafić

Biologia plantarum 43:451-454, 2000 | DOI: 10.1023/A:1026799906616

In vitro culture of Chenopodium murale L. (ecotype 197) green and herbicide SAN 9789 - treated "white" plants was established and the effects of benzylaminopurine (BAP), indole-3-acetic acid (IAA) and gibberellic acid (GA3) on growth and flowering were tested. Green plants did not flower on glucose free media, while 17 % of plants flowered on 5 % glucose-containing medium. SAN 9789 (10-5 M) inhibited growth and flowering. BAP and IAA (0.1 - 5 mg dm-3) also inhibited growth and flowering of green and "white" plants. GA3 (10 mg dm-3) stimulated leaf development in green plants, but had no significant effect on "white" plants, and stimulated flowering of green (41 %) and "white" (33 %) plants.

Temporal Changes in the RNA Distribution between Polysomes and Postpolysomal Ribonucleoprotein Particles in Tobacco Male Gametophyte

D. Honys, V. Čapková

Biologia plantarum 43:517-522, 2000 | DOI: 10.1023/A:1002846105299

Growth of tobacco (Nicotiana tabacum L.) pollen tube is controlled by post-transcriptionally regulated protein synthesis. Stored mRNA was found to be present in the form of messenger ribonucleoprotein particles (mRNPs) in both maturing and germinating pollen. During pollen dehydration in the anthers content of mRNPs strongly increased during dissociation of polysomes suggesting a transfer of mRNA liberated from polysomal structures into mRNP particles. Pollen germination and initial pollen tube growth characterized by rapid reassociation of ribosomes was accompanied by decrease of mRNPs indicating an involvement of mRNA of these particles in the formation of polysomes. Distribution of the particular mRNAs during the pollen activation preceeding tube growth suggests that other mechanisms along with pollen rehydration are engaged in this process and that the continuous exploitation of stored mRNPs during pollen tube growth is precisely regulated.

Effects of Aluminium on Pigments and Pigment-Protein Complexes of Soybean

D.B. Milivojević, D.Đ. Stojanović, S.D. Drinić

Biologia plantarum 43:595-597, 2000 | DOI: 10.1023/A:1002899932075

The effect of aluminium (0.5 -1.0 mM) on contents of phosphorus, pigments, and pigment-protein complexes was studied in soybean (Glycine max Merril.) grown in different nutrient medium with and without P. Increased Al concentrations led to the decrease in the contents of chlorophylls (Chl) a and b, and carotenoids (Car) in soybean leaves, but Chl a/b ratio did not vary significantly. In long-term experiments, P ameliorates the negative effects of Al.

Polyamines and Plant Morphogenesis

R.K. Kakkar, P.K. Nagar, P.S. Ahuja, V.K. Rai

Biologia plantarum 43:1-11, 2000 | DOI: 10.1023/A:1026582308902

Alterations in free and conjugated polyamines (PAs) and the enzymes involved in their biosynthesis, namely arginine decarboxylase, ornithine decarboxylase and S-adenosyl methionine decarboxylase have been reported to occur during cell division, growth, embryogenesis and rhizogenesis in an array of plant materials. However, the relationship, if any, between them and all these processes has not yet been established. It seems that specific PAs at specific concentration ranges are required during critical stages of growth and morphogenetic events. Furthermore, the effects of PA biosynthesis inhibitors vary considerably at different developmental stages of the same tissue. The present review deals with the available information about the possible role of PAs in aforesaid physiological processes.

Influence of Triadimefon on the Metabolism of NaCl Stressed Radish

M. Muthukumarasamy, S. Dutta Gupta, R. Panneerselvam

Biologia plantarum 43:67-72, 2000 | DOI: 10.1023/A:1026503013445

The effect of triadimefon (TDM) on various biochemical parameters was studied in NaCl stressed radish (Raphanus sativus L.). Stress imposed by 80 mM NaCl decreased the protein content and proline oxidase activity, and increased the proline and glycine betaine contents, and protease, γ-glutamyl kinase and ATPase activities. The TDM treatment alleviated the stress by increasing protein, and glycine betaine contents, and by decreasing proline accumulation, and proline oxidase and ATPase activities.

A Low Transmissibility of Hop Latent Viroid through a Generative Phase of Humulus lupulus L.

J. Matoušek, J. Patzak

Biologia plantarum 43:145-148, 2000 | DOI: 10.1023/A:1026531819806

A significant reduction of hop latent viroid (HLVd) content during the generative phase of hop was detected using reverse transcriptase-polymerase chain reaction (RT PCR) and molecular hybridisation methods. A low transmissibility of HLVd through seed may be a feature valuable for the selection and maintenance of viroid-free hybrid hops.

Rochaix, J.D., Goldschmidt-Clermont, M., Merchant, S. (ed.): The Molecular Biology of Chloroplasts and Mitochondria in Chlamydomonas

T. Kučera

Biologia plantarum 43:204, 2000 | DOI: 10.1023/A:1002714023867

Šesták, Z: Jak psát a přednášet o vědě. [How to Write and Lecture in Science]

L. Skálová

Biologia plantarum 43:278, 2000 | DOI: 10.1023/A:1002782411571

Burst Potential Characterisation by Capacity for Nucleotide Accumulation in Rhododendron Catawbiense Apical Buds

J. Fustec, F. Beaujard, J.D. Viémont, M. Gendraud

Biologia plantarum 43:353-357, 2000 | DOI: 10.1023/A:1026732618486

Rhododendron catawbiense cv. Album propagated in vitro were transferred ex vitro and grown in a greenhouse, under long or short days. Under long days, the rhythmic growth led to an acrotonous development. In contrast, under short days, the upper buds were unable to burst, allowing basitony. In both photoperiodic conditions, the apical buds were sampled at different stages of the experiment. Growth capacities of the isolated buds were estimated by measuring their abilities to increase and diversify their non-adenylic nucleotide pool (NTP) after supplying adenosine as a precursor. Under long days, during the growth pause, the apical buds were able to increase and diversify their NTP pool. Under short days, adenosine was used to produce important quantities of ATP, while NTP pool increase became weaker. Nevertheless, during this long growth pause, apical bud tissues retained capacities to increase their NTP pool until the basal shoots developed.

Effects of High Temperature Exposure of Spinach Intact Plants and Isolated Thylakoids on Light-Harvesting Complex 2 Protein Phosphorylation

M. Satpathy, P. Mohanty

Biologia plantarum 43:433-435, 2000 | DOI: 10.1023/A:1026775202073

After a 6 min exposure of isolated thylakoids to 43 °C, the extent of phosphorylation of light-harvesting complex of photosystem 2 (LHC2) was higher than in control thylakoids kept at 25 °C. Similarly, the exposure of intact spinach plants to 43 °C in dark for 11 h induced higher extent of thylakoid LHC2 phosphorylation than in control plants kept at 25 °C. The induced ability of LHC2 for enhanced phosphorylation may enable better energy distribution in favour of photosystem 1.

Nitrogen Containing Compounds and Adaptation of Plants to Salinity Stress

M.M.F. Mansour

Biologia plantarum 43:491-500, 2000 | DOI: 10.1023/A:1002873531707

A number of nitrogen containing compounds (NCC) accumulate in plants exposed to salinity stress. The most frequently accumulating NCC include amino acids, amids, imino acids, proteins, quarternary ammonium compounds (QAC) and polyamines. The specific NCC that accumulate in saline environment vary with the plant species. Osmotic adjustment, protection of cellular macromolecules, storage form of nitrogen, maintaining cellular pH, detoxification of the cells, and scavenging of free radicals are proposed functions for these compounds under stress conditions. NCC accumulation is usually correlated with plant salt tolerance, even though this correlation is based on untested hypotheses.

Growth and Protein Content in Colletotrichum circinans, Fusarium solani and Rhizoctonia solani in Liquid Culture

M. Juarez, D. Juarez, V.M. Russo

Biologia plantarum 43:577-582, 2000 | DOI: 10.1023/A:1002850522080

The phytopathogenic fungi Colletotrichum circinans, Fusarium solani, and Rhizoctonia solani were incubated in aerated (0, 0.5, 1 dm3 min-1) potato dextrose broth (PDB) or Czapek-Dox broth (CDB), under 0-, 12- or 24-h photoperiods. Greater dry mass was produced in PDB. Higher air flows improved dry mass of F. solani and R. solani. The 24-h photoperiod improved F. solani dry mass. Except for F. solani, which was not affected, incubation in PDB increased protein content. The no air treatment increased protein content in F. solani, 0.5 dm3 min-1 produced the highest protein content in R. solani, but air flow-rate did not affect C. circinans. Incubation in the dark produced the lowest protein content in C. circinans, the highest under the 24-h photoperiod for R. solani, and photoperiod did not affect protein content in F. solani. Protein content in R. solani, incubated in CDB, was lowest at the 0 dm3 min-1 air flow at all photoperiods. Molecular masses of most proteins were under 30 kDa, and numbers of bands in SDS-PAGE gels varied with air flow. In CDB, especially under 12- or 24-h photoperiods, proteins in F. solani were between 1.6 and 310 kDa. For R. solani in PDB, at 0.5 dm3 min-1 air flow and 12-h light, proteins were between 6 and 81 kDa.

Response of Scenedesmus Incrassatulus to Salt Stress as Affected by Methyl Jasmonate

I.S. Fedina, K.M. Benderliev

Biologia plantarum 43:625-627, 2000 | DOI: 10.1023/A:1002816502941

Exposure of the freshwater green alga Scenedesmus incrassatulus Bohl, strain R-83 to salt stress (175 mM NaCl) resulted in a reduction of its growth and 14CO2 fixation and in an increase of accumulation of free proline and malondialdehyde (MDA). The accumulation of proline in the light was higher than in dark. NaCl significantly inhibited the Fe-induced release of organic chelators from the cells. Exogenously supplied 10-4M methyl jasmonate (JA-Me) did not considerably change the 14CO2 fixation, but increased proline and MDA accumulation in the cells and moderately inhibited the release of chelators from cells. JA-Me supplied simultaneously with NaCl helps the algae to counteract the salt stress.

Effects of a Severe Drought on Water and Nitrogen Use by Quercus ilex and Phyllyrea latifolia

J. Peñuelas, I. Filella, F. Lloret, J. Piñol, D. Siscart

Biologia plantarum 43:47-53, 2000 | DOI: 10.1023/A:1026546828466

A severe drought that took place in Spain and other Mediterranean countries in 1994 produced a dieback of Quercus ilex trees on south-facing conglomerates but only minor defoliations in trees on north-facing schists. The foliar Δ13C of damaged trees continued to decrease in the next two wet years probably indicating increasing water use efficiency, and their δ15N continued to increase indicating progressive ecosystem N saturation and/or N losses whereas there were no significant changes in undamaged trees. Pre-drought Δ13C values were reached in the third year after the drought, but δ15N values did not yet recover. Another co-occurring small tree, Phyllyrea latifolia, did not show any damage and gained dominance in the most affected stands.

Effect of Different Saccharides on Viability of Isolated Microspores and Androgenic Induction in Zea Mays

B. Obert, A. Preťová, B. Büter, J.E. Schmid

Biologia plantarum 43:125-128, 2000 | DOI: 10.1023/A:1026571401150

Sucrose, glucose, fructose, and melibiose in different concentrations and combinations in the induction media influenced the viability of the isolated maize microspores and the formation of multinuclear structures. The induction of multinuclear structures on media containing combination of sucrose, fructose and glucose was lower than on media only with sucrose. In media containing melibiose alone or in combination with sucrose, no induction of multinuclear structures was found, however, microspore viability was improved.

Kubišta, V.: Buněčné základy životnich procesů [Cellular Principles of Life Processes.]

I. Tichá

Biologia plantarum 43:184, 2000 | DOI: 10.1023/A:1002709922958

Inhibition of Wheat Nitrate Reductase Activity by Zinc

C.M. Luna, L.M. Casano, V.S. Trippi

Biologia plantarum 43:257-262, 2000 | DOI: 10.1023/A:1002760412055

The effect of Zn2- on nitrate reductase (NR, EC 1.6.6.1) activity was studied in botá wheat (Triticum aestivum cv. Oasis) leaves and in the NR enzyme partially purified from wheat leaves. Leaf segments were floated on 0 to 5 mM ZnSO4 solutions (pH 6.0) for 24 h under continuous light. Zn2- at 250 μM decreased NR activity and increased membrane permeability. However, parameters of cellular oxidative damage were scarcely affected by Zn2- treatments. Accordingly, the decrease of NR activity induced by Zn2- was not prevented by benzoate (a scavenger of oxygen radicals). The effect of Zn2- was dependent on leaf age: it decreased NR activity in mature but not in young leaves. Zn2 inhibited the partially purified NR. This inhibition was not reversed by either co- or post-incubation with cysteine, and the amount of -SH groups of the purified NR was not affected by Zn2+ indicating that Zn2- inhibition does not involve key -SH groups of the enzyme. However, o-phenantroline both prevented and reversed Zn2+-induced NR inhibition. We concluded that the effect of Zn2+ on NR activity in vivo is not associated with an increase in active oxygen generation and involves a direct and reversible inhibition of the enzyme.

Cytokinins and Water Stress

J. Pospíšilová, H. Synková, J. Rulcová

Biologia plantarum 43:321-328, 2000 | DOI: 10.1023/A:1026754404857

It is almost impossible to find a single process in plant life that is not affected by both stress and hormones directly or indirectly. This minireview is focused on the interactions between water stress and cytokinins (CKs). The attention was paid mainly to changes in endogenous CK content and composition under water stress, involvement of CK in plant responses to water stress mainly in stomatal regulation of gas exchange, water relations of transgenic plants with elevated CK content, and possibilities to ameliorate the negative effects of water stress by application of exogenous CKs.

Effect of Osmotic Stress on Abscisic Acid Efflux and Compartmentation in the Roots of Two Maize Lines Differing in Drought Susceptibility

Lj. Jovanović, R. Stikić, W. Hartung

Biologia plantarum 43:407-411, 2000 | DOI: 10.1023/A:1026702729389

Roots of two Zea mays L. lines (drought-resistant Polj 17, and drought-susceptible F-2) were exposed to osmotic stress induced by sorbitol (osmotic potential -1.0 MPa). The following parameters were determined in cortex cells: membrane permeability for abscisic acid (ABA), ABA fluxes across membranes, pH values and ABA content in cytoplasm and vacuole. Osmotic stress induced different distribution of ABA within cell compartments in the investigated lines. ABA transport in the F-2 line occurred according to the intracellular pH gradient and the anion trap concept. In Polj 17, however, osmotic stress did not cause any significant effect on pH gradient and compartmental ABA content, but had a stimulating effect on ABA efflux from cytoplasm to apoplast and than via xylem to the leaf. These findings indicate different mechanisms of ABA transport between the investigated lines in response to osmotic stress.

In Vitro Selection for Salt Tolerance in Rice

D. Shankhdhar, S.C. Shankhdhar, S.C. Mani, R.C. Pant

Biologia plantarum 43:477-480, 2000 | DOI: 10.1023/A:1026716527089

In six cultivars of rice (Oryza sativa L.), Pusa Basmati 1, Basmati 370, Type III, Pant Dhan 4, CSR 10 and Pokkali, embryogenic callus growth, plant regeneration, and proline and total protein contents were studied under salt stress (on agar solidified media containing 0, 0.5, 1.0, 1.5 and 2.0 % NaCl). Four weeks after inoculation the callus fresh mass decreased with increasing salt concentration in all the six cultivars. The regeneration frequency in salt stressed callus was also lower as compared to control. 15 d and 30 d after inoculation proline content increased several fold whereas total protein content decreased markedly with increase in salt concentration.

The Substrate Preference and Histochemical Localization Argue against the Direct Role of Cucumber Stress-Related Anionic Peroxidase in Lignification

V. Repka, D. Štetková, I. Fischerová

Biologia plantarum 43:549-558, 2000 | DOI: 10.1023/A:1002813530741

The substrate preference and the localization of cucumber (Cucumis sativus L.) stress-related anionic peroxidase (srPRX) were investigated in order to assess whether this activity correlates with the lignification. The results showed that none of the purified srPRX isoenzymes (PRX 1 -3) could oxidize the lignin monomer analog syringaldazine. The srPRX immunospecific signal was found to be highly abundant in both the extrafascicular and fascicular phloem regions in cucumber stem and leaf petiole. In Nicotiana, Petunia and Dahlia, the srPRX homologs were specifically deposited in both outer and inner phloem elements of stem and in both abaxial and adaxial phloem of leaf stems. The srPRX mRNA expression analysis showed similar pattern as for immunolocalization. The subcellular localization of immunospecific srPRX demonstrated that at least part of the peroxidase could be ionically-bound to phloem cell wall.

Stacey, G., Keen, N.T. (Ed.): Plant-Microbe Interactions. Vol. 4

L. Burketová

Biologia plantarum 43:610, 2000 | DOI: 10.1023/A:1002809712936

Scholthof, K.-B. G., Shaw, J.G., Zaitlin, M. (Ed.): Tobacco Mosaic Virus. One Hundred Years of Contributions to Virology

L. Šindelář

Biologia plantarum 43:30, 2000 | DOI: 10.1023/A:1026544106602

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