biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2671 to 2700 of 6170:

Promotion of Androgenesis in Rice Anther Cultures by Substitution of Sucrose with Maltose and Mannitol

H. Pande, S.S. Bhojwani

Biologia plantarum 42:125-128, 1999 | DOI: 10.1023/A:1002187930087

Maltose was four times more effective than sucrose for androgenesis in anther cultures of an indica rice cultivar IR 43. Partial substitution of maltose by mannitol considerably enhanced the regeneration of green plants.

Restriction Fragment Length Polymorphism and Random Amplified Polymorphic DNA Analysis of Chickpea Accessions

H. Banerjee, R.A. Pai, R.P. Sharma

Biologia plantarum 42:197-208, 1999 | DOI: 10.1023/A:1002152416883

Genetic diversity analysis was carried out in chickpea accessions using restriction fragment length polymorphism (RFLP) and random amplified polymorphic DNA (RAPD) techniques. RFLP analysis using 26 Pst I sub-genomic clones on ten chickpea accessions in 130 probe-enzyme combinations detected polymorphism with only two clones. Pst I clones, CG 141 detected polymorphism in ICC 4918 and Pusa 209 while CG 500 detected polymorphism in Pusa 261, ILC 26 and in ILC 13326. These clones detected very few polymorphic markers. Analysis using 10 Eco RI clones on twelve chickpea accessions have shown better hybridisation signal and one clone detected polymorphism in Pusa 256. RFLP analysis of both cultivated and wild Cicer species using heterologous DNA probe Cab3C revealed polymorphism only in wild Cicer species (Cicer reticulatum L., JM 2100). RAPD analysis of 13 chickpea accessions which includes mutants of C 235 and E100Y showed greater degree of polymorphism with 1 - 5 unique DNA bands for all the accessions. Phylogenetic analysis of the RAPD data helped to group the accessions. C 235 and its mutants were found to be closely grouped while E100Y and its mutant E100Ym grouped apart. Desi and kabuli chickpea accessions however, could not be separately grouped.

Effects of Abscisic Acid and Water Stress on the Senescence of Detached Rice Leaves

J.-N. Lin, J.-W. Wang, C.H. Kao

Biologia plantarum 42:313-316, 1999 | DOI: 10.1023/A:1002133307314

The effects of abscisic acid (ABA) and water stress on senescence and enzyme activities of oxygen scavenging enzymes of detached rice leaves were compared. Exogenously applied ABA exhibited water stress-like effects by promoting senescence, by decreasing the activities of catalase, peroxidase, ascorbate peroxidase and superoxide dismutase. It seems that the effects of water stress on senescence and enzyme activities are possibly mediated through increased content of endogenous ABA.

Effects of Salicylic Acid on Heavy Metal-Induced Membrane Deterioration Mediated by Lipoxygenase in Rice

A. Mishra, M.A. Choudhuri

Biologia plantarum 42:409-415, 1999 | DOI: 10.1023/A:1002469303670

Deterioration of membranes caused by lipoxygenase (LOX) activity under 10 µM PbCl2 or 10 µM HgCl2 was partially alleviated by the exogenous application of 100 µM salicylic acid (SA). In two cultivars of rice (Oryza sativa L. cvs. Ratna and IR 36), the presence of SA ameliorated the increased leakage of electrolytes, injury index, and the content of malondialdehyde caused by these heavy metals. Lead decreased H2O2 content whereas Hg increased it in both cultivars. Application of SA increased H2O2 in presence of Pb, while decreased it in presence of Hg. Both Pb and Hg decreased superoxide dismutase activity, while increased peroxidase activity. The activity of catalase was decreased by Hg but increased by Pb and SA reversed their effects. Thus, SA ameliorated the damaging effects of Pb and Hg on membranes.

Stomatal Morphology during Acclimatization of Tobacco Plantlets to ex vitro Conditions

I. Tichá, B. Radochová, P. Kadleček

Biologia plantarum 42:469-474, 1999 | DOI: 10.1023/A:1002450210939

Image analysis was used in studying stomatal morphology during acclimatization of tobacco plantlets to ex vitro conditions, 45 d after transfer leaf area was 15 times, and total number of stomata per leaf four times increased. During acclimatization stomatal density was decreased considerably on both leaf sides, and was compensated by an increase in stomatal sizes, e.g., in stomatal length and in stomatal area (both guard cells and pore). Elongation of stomata was increased indicating that the originally circular stomata of in vitro plantlets were changed into elliptical ones in ex vitro acclimatized plants.

Hall, F.R., Menn, J.J. (ed.): Biopesticides: Use and Delivery

P. Ryšánek

Biologia plantarum 42:566, 1999 | DOI: 10.1023/A:1002685030564

Detection of Polymorphic DNA and Taxonomic Relationships Among 10 Wild Perennial Soybean Species Using Specific and Arbitrary Nucleotide Primers

N. Taylor-Grant, K.M. Soliman

Biologia plantarum 42:25-37, 1999 | DOI: 10.1023/A:1002155022818

Polymorphic DNA in complex genomes of agronomic crops can be detected using specific nucleotide and arbitrary primers and the polymerase chain reaction (PCR). Nineteen accessions representing 10 species of the wild perennial soybean were evaluated using 4 sets of specific primers and 3 sets of random amplified polymorphic DNAs (RAPD) primers. The potential of the RAPD assays was further increased by combining two primers in a single PCR. The fragments generated by the two assays discriminated 10 wild species by banding profiles. The size of the amplified DNA fragments ranged from 100 to 2100 base pairs. The resolved PCR products yielded highly characteristic and homogeneous DNA fingerprints. The fingerprints were useful not only for investigating genetic variability but also for further characterizing the wild soybean species by detecting inter- and intra-specific polymorphisms, constructing dendrograms defining the phylogenetic relationships among these species, and identifying molecular markers for the construction of genetic linkage maps. Furthermore, unique markers distinguishing particular species were also identified. Thus, it is expected that PCR will have great relevance for taxonomic studies.

Salt Tolerance of Solanum tuberosum L. Overexpressing an Heterologous Osmotin-like Protein

D. Evers, S. Overney, P. Simon, H. Greppin, J.F. Hausman

Biologia plantarum 42:105-112, 1999 | DOI: 10.1023/A:1002131812340

Potato (Solanum tuberosum L. cv. Bintje) was transformed with a cDNA clone encoding an osmotin-like protein. Transgenic and non-transgenic in vitro plants were subjected to NaCl for 3 weeks. The shoot and root development was slightly affected by salinity indicating that the salt condition used was a mild stress. The endogenous proline content of the osmotin-like transformed clone only raised slightly as compared to the non-transformed genotype, where a marked increase in proline content could be observed as a result to salt stress. These data provide evidence for the involvement of osmotin-like proteins in the mechanisms of salt tolerance in potato plants.

Changes in Isozyme Patterns During in Vitro Regeneration from Cotyledon Explants of Brassica Species

S. Samantaray, G.R. Rout, P. Das

Biologia plantarum 42:169-176, 1999 | DOI: 10.1023/A:1002196231904

High frequency shoot regeneration from cotyledons excised from 4-d-old seedlings of Brassica campestris L. cv. M 27 and Brassica juncea (L.) Czern. cv. Pusabold was achieved on Murashige and Skoog's (MS) medium supplemented with 1.0 mg dm-3 N6-benzyladenine (BA) and 3 % (m/v) saccharose. Rooting occurred simultaneously with shoot formation on the medium containing 1.0 mg dm-3 BA and 0.5 mg dm-3 1-naphthaleneacetic acid. Cultures of cotyledon, cotyledon derived non-differentiating calli and differentiated calli with shoots and/or roots were analysed at different intervals for isozyme patterns of esterase and peroxidase. With the BA-induced development of shoot and/or root from non-differentiating callus, some conspicuous isozymes appeared which indicates the involvement of these isozymes in root and shoot development rather than in induction of morphogenesis in callus.

Benzothiadiazole as an Inducer of β-1,3-Glucanase and Chitinase Isozymes in Sugar Beet

L. Burketová, M. Šindelářová, L. Šindelář

Biologia plantarum 42:279-287, 1999 | DOI: 10.1023/A:1002172921426

The effect of benzothiadiazole (BTH) on protein synthesis was studied in sugar beet plants. Extracellular proteins induced by 0.025 % BTH were examined and their pattern was compared with that induced by sodium salicylate, chitosan, paraquat, AgNO3, and by tobacco necrosis virus. BTH induced synthesis of at least 9 acidic and 6 basic proteins; three of them appeared as acidic chitinase isozymes, three as acidic β-1,3-glucanase isozymes, three as basic chitinase isozymes, and one as a basic β-1,3-glucanase isozyme. One of the basic chitinase isozymes was found also in control plants. The most of the newly formed proteins was also induced by the other inducers under study regardless of the necrotic or symptomless reaction of plants. The benzothiadiazole proved to be an efficient inducer of proteins in sugar beet.

Cram, W.J., De Kok, L.J., Stulen, I., Brunold, C., Rennenberg, H. (ed.): Sulphur Metabolism in Higher Plants

N. Wilhelmová

Biologia plantarum 42:388, 1999 | DOI: 10.1023/A:1002466730503

Alleviation of Salinity Stress During Germination in Brassica Juncea by Pre-sowing Chilling Treatments to Seeds

P.C. Sharma, P. Kumar

Biologia plantarum 42:451-455, 1999 | DOI: 10.1023/A:1002481709121

Influence of pre-sowing chilling treatments to seeds on seed germination and accumulation of osmotics in Indian mustard [Brassica juncea (L.) Czernj & Cosson] under NaCl stress was investigated. Germination was 100 % in water soaked non-chilled (control) seeds upto 100 mM NaCl, whereas it was upto 200 mM NaCl in chilling treated seeds. Pre-sowing chilling treatments to seeds for 5, 10 and 15 d also enhanced the dry mass of 6-d-old seedlings, and concentrations of saccharides and amino acids. The alleviation of NaCl stress by pre-sowing chilling treatments was also associated with decrease in Na+ and proline accumulation and a slight increase in K+ and Ca2+ contents of seedlings.

Use of Isoenzymes to Differentiate Growth Categories of Pericopsis Mooniana Trees

P.A. Weerasinghe, M.L.M.C. Weerasekera, L.H.J. Van Holm

Biologia plantarum 42:541-547, 1999 | DOI: 10.1023/A:1002610914209

Leaf isoenzymes of Pericopsis mooniana from twenty-one trees at forest plantation were evaluated for their use in identification of elite trees among heterogeneous population. Trees were grouped morphologically, before leaf extracts were separated by one-dimensional polyacrylamide gel electrophoresis. Isoenzyme analysis were carried out for peroxidase, esterase, alcohol dehydrogenase, formate dehydrogenase, acid phosphatase, aspartate aminotransferase, isocitrate dehydrogenase, malate dehydrogenase, leucine aminopeptidase, phosphoglucoisomerase, phosphogluconate dehydrogenase, phosphoglucomutase, and shikimate dehydrogenase. From the thirteen enzymes studied only four gave distinct banding patterns. Level of significance of appearing particular band for each enzyme of a given category was investigated using χ2-test, followed by cluster analysis for categorization. The isozyme type A of formate dehydrogenase showed promising results that could be used for differentiating trees of categories investigated.

Response of Barley Lines with Structural Rearrangements in Chromosomes 5, 6 and 7 to Limited Nitrogen Nutrition

T. Sodkiewicz

Biologia plantarum 42:625-629, 1999 | DOI: 10.1023/A:1002652123296

The responses of barley (Hordeum vulgare L.) lines with rebuilt chromosomes 5, 6 and 7 to reduced nitrogen nutrition were evaluated in juvenile growth stages. The material included two series of duplications (D) produced in the short arm of chromosome 6 and of chromosome 7, and in the long arm of chromosome 5 and of chromosome 6; their parental translocation lines (T) - from which analyzed duplications were derived and a standard karyotype cv. Bonus as a control. The translocation lines have break points located in 6S and 7S, or 5L and 6L. Only the lines with duplicated segments of the short arms of satellited (6 and 7) chromosomes exhibited an improved tolerance to reduced nitrogen supply. No changes relative to cv. Bonus were observed in the T-lines. More tolerant D-lines showed lower stimulation of the root development. Obtained results suggests that the adaptability factors for the low N tolerance at the vegetative growth stage of barley are located in the short arms of 6 and 7 chromosomes.

Mobilization of Reserve Proteins During Early Stages of Seed Germination in Fagopyrum Esculentum

M.K. Rout, N.K. Chrungoo

Biologia plantarum 42:81-87, 1999 | DOI: 10.1023/A:1002123627361

Hydrolysis of 13S globulin, the main storage protein in grains of common buckwheat (Fagopyrum esculentum Moench), proceeds in at least two phases during germination. The first stage, involving a limited proteolytic cleavage of the protein, is associated with increased activity of proteases having maximum activity at pH 7.6. The second stage, involving further hydrolysis of the partially cleaved protein, starts after 12 h of imbibition. During this phase, activity of proteases increased and activity maximum shifted to pH 5.6. Nevertheless, 13S globulin retains its antigenic identity till the emergence of radicle and plumule. Thus, it may not be the major source of amino acids utilized by the germinating seed during the initial stages of imbibition.

Responses of Ceriops Roxburghiana to NaCl Stress

A. Rajesh, R. Arumugam, V. Venkatesalu

Biologia plantarum 42:143-148, 1999 | DOI: 10.1023/A:1002189425061

Responses of Ceriops roxburghiana Arn. leaves to the sodium chloride, applied at different concentrations (ranging from 100 to 600 mM), has been evaluated. Total amino acid content decreased with increasing NaCl concentration, while the protein content increased significantly up to 400 mM concentration and decreased thereafter. Total sugar content decreased at concentrations beyond 400 mM. Proline and glycine betaine were accumulated with increasing NaCl concentration. Protease and ATPase activities were increased whereas proline oxidase activity were decreased with increasing salinity. Peroxidase and malate dehydrogenase (NADH-MDH) activities did not significantly differ under various NaCl concentrations.

Alterations in Protein and Esterase Patterns of Peanut in Response to Salinity Stress

A.M. Hassanein

Biologia plantarum 42:241-248, 1999 | DOI: 10.1023/A:1002112702771

The ability of peanut (Arachis hypogaea L.) to grow at high concentrations of NaCl may be due to the alteration in gene expression. SDS-PAGE analysis has revealed that plants grown under NaCl showed induction (127 and 52 kDa) or repression (260 and 38 kDa) in the synthesis of few polypeptides. In addition, nine different esterase isoenzymes were detected in embryos of seeds germinated in 105 mM NaCl, whereas only five of them were detected in the embryos of untreated seeds. On the other hand, in the cotyledons, the esterase pattern was not affected by NaCl concentration. The esterase patterns of both stems and leaves were less influenced by NaCl in comparison to those of roots. The lipid contents, and fresh and dry masses were increased up to 45 mM NaCl and decreased at higher concentrations.

Identification and Mapping of a T-DNA Induced Flower Mutation in Arabidopsis Thaliana

T. Kocábek, S. Rakouský, M. Ondřej, J. Řepková, J. Relichová

Biologia plantarum 42:349-359, 1999 | DOI: 10.1023/A:1002405016874

Collection of the T-DNA tagged lines of Arabidopsis thaliana have been created by Agrobacterium-mediated root transformation. Transgenic lines produced by this method have been screened for morphogenic mutations. A flower mutation with increased number of stamens and carpels (scaf1) was identified. This mutation has similar but weaker phenotype than the known mutant superman. Two mapping procedures, with visible and molecular markers, were used to locate scaf1 flower mutation. Genetic analysis showed that this mutation is located on chromosome 3 near gl1 gene. It is probably one of the SUPERMAN epigenetic alleles.

Spector, D.L., Goldman, R.D., Leinwand L.A. (ed.): Cells: A Laboratory Manual. Volume 2: Light Microscopy and Cell Structure

T. Moravec

Biologia plantarum 42:440, 1999 | DOI: 10.1023/A:1002427016390

Morphogenesis in Helianthus Tuberosus: Genotypic Influence and Increased Totipotency in Previously Regenerated Plants

R. Bianchi, M. Fambrini, C. Pugliesi

Biologia plantarum 42:515-523, 1999 | DOI: 10.1023/A:1002698511484

Leaf tissues of 38 genotypes, derived from four accessions, of the hexaploid species Helianthus tuberosus (2n=6x=102) responded to growth regulators (BA, NAA) chiefly by forming callus, while aventitious organogenesis or somatic embryogenesis were induced occasionally. A remarkable regeneration frequency (about 30 %) was achieved only from leaves of genotype HTPI-15. Explants of many regenerated plants of HTPI-15 subjected to a second culture cycle in vitro displayed a high morphogenetic potential (regeneration frequency > 90 %). White globular structures were initiated on the adaxial surface of these leaves without a callus phase. Somatic embryogenesis was asynchronous and embryoids, of different developmental stage, were simultaneously detected on each explant. Although many embryos developed single or malformed cotyledons or germinated precocciously, without the differentiation of a complete root system, phenotypically normal plants were regenerated after rooting on regulator-free half-strength MS medium.

Induction of Heat Shock Proteins and Acquisition of Thermotolerance in Germinating Pigeonpea Seeds

V. Sri Devi, N.V. Satyanarayana, K.V. Madhava Rao

Biologia plantarum 42:589-597, 1999 | DOI: 10.1023/A:1002635602823

Heat shock proteins (HSPs) ranging in molecular masses from 14 to 110 kDa were induced in embryonic axes of germinating Cajanus cajan (L.) Millspaugh seeds after exposure to 40 °C for 1 or 2 h. At 45 °C, there was a marked decline in synthesis of HSPs. A close relationship was observed between HSPs induced and the growth of the germinating seeds. Pretreatment of germinating seeds at 40 °C for 1 h or 45 °C for 10 min followed by incubation at 28 °C for 3 h led to considerable thermotolerance (45 °C, 2 h) and the recovery of protein synthesis.

Effect of Calcium and Zinc on Subcellular Distribution, Activity and Thermosensitivity of Superoxide Dismutase in Mnium Affine

K. Christov, N.T. Bakardjieva

Biologia plantarum 42:57-63, 1999 | DOI: 10.1023/A:1002111224635

In the leafstem moss Mnium affine two superoxide dismutase (SOD) isoforms were found in chloroplasts and two in mitochondria. Four other isozymes were probably cytosolic and two of them had high activity and thermostability and were very sensitive to H2O2. On the other hand, one of the mitochondrial isoenzymes was very sensitive to high temperature. The activity and thermosensitivity of SOD was considerably dependent on calcium and zinc ions. The effect was different for the individual isoforms and related to their subcellular distribution. Calcium ions predominantly activated and stabilized one cytosolic and the mitochondrial SODs, while zinc ions influenced one chloroplastic and two cytosolic SODs.

Response of Calamagrostis Arundinacea and C. Epigeios to short- and long-term water stress

E. Kramářová, M. Klemš, B. Klejdus, D. Veselá

Biologia plantarum 42:129-131, 1999 | DOI: 10.1023/A:1002140014157

Water relations of two rapidly expanding species in deforested localities, Calamagrostis epigeios and Calamagrostis arundinacea, were compared. After short- or long-term water stress, water content and specific leaf area were more reduced in C. epigeios than in C. arundinacea. After short-term stress, osmotic potential was similar in both species, but after long-term stress, it was much lower in C. epigeios plants. Abscisic acid and proline contents were higher in stressed plants of C. epigeios than in those of C. arundinacea.

Stable Transformation of the Intact Cells of Chlorella Kessleri with High Velocity Microprojectiles

M.M. El-Sheekh

Biologia plantarum 42:209-216, 1999 | DOI: 10.1023/A:1002104500953

A transgenic expression system of Chlorella kessleri using the gene for β-glucuronidase (GUS) was developed. Cells of this unicellular green alga were bombarded with the plasmid pBI 121, which bears β-glucuronidase under the control of CaMV 35S promoter and the kanamycin resistant gene. Maximum GUS activity was obtained after 48 h of bombardment using a helium pressure of 900 kPa; GUS activity was then assayed for many generations. The stable transformants were able to grow on kanamycin containing medium after repeated passages between selective and nonselective medium and exhibited GUS activity comparable to that of control cells. Stable transformed cells were confirmed by polymerase chain reaction (PCR) and Southern hybridization of GUS probe with the genomic DNA of C. kessleri.

Pinus Halepensis and Quercus Ilex Terpene Emission as Affected by Temperature and Humidity

J. Llusià, J. Peñuelas

Biologia plantarum 42:317-320, 1999 | DOI: 10.1023/A:1002185324152

The short-term relationships of monoterpene emission with temperature and relative humidity were studied in Pinus halepensis L. and Quercus ilex L. seedlings grown in air-conditioned chamber. In P. halepensis terpene emission rate increased with temperature (from 15 to 35 °C) and relative humidity (from 40 - 60 to 65 - 95 %). In Q. ilex, a terpene non-storing species, it increased with temperature only at high relative humidities but not at relative humidities lower than 60 %.

Abe, M. (ed.): Environmental Effects and Their Control in Plant Propagation and Transplant Production

J. Pospíšilová

Biologia plantarum 42:416, 1999 | DOI: 10.1023/A:1002422915482

Alternaria Brassicae Induced Changes in the Activity of Cell Wall Degrading Enzymes in Leaves of Brassica Juncea

S. Garg, K. Dhawan, H.K.L. Chawla, H.S. Nainawatee

Biologia plantarum 42:475-478, 1999 | DOI: 10.1023/A:1002454327777

After inoculation of Brassica juncea leaves with Alternaria brassicae, activities of the cell wall degrading enzymes, polygalacturonase (EC 3.2.1.15) and cellulase (EC 3.2.1.4) decreased in leaf blight resistant cultivar RC-781 and increased in the susceptible cultivar Varuna upto 3 d. In the leaves of both the cultivars 11 poly-peptides were observed in the absence of A. brassicae inoculation. After inoculation in the resistant cultivar RC-781 there was no change in the polypeptide pattern, while in the susceptible cultivar Varuna, four polypeptides (43.7 to 58.8 kDa) disappeared only at 3rd day after inoculation.

Influence of Ageing and Abscisic Acid on Potassium Uptake by Potato Tuber Tissues

A. Reddahi, A. Es-Sgaouri, C. R'Kiek

Biologia plantarum 42:567-573, 1999 | DOI: 10.1023/A:1002623300097

The potassium uptake by potato tuber discs tissues freshly cut and after 24 h of ageing in the presence or not of abscisic acid was investigated. Uptake kinetics revealed a biphasic dependence on external K+ concentrations. At concentration less than 10 mM, uptake was mediated by a saturable component and a linear component became apparent at higher concentrations. At low K+ concentrations (lmM), the capacity of K+ uptake diminished by 2 times after ageing. Treatment of tissues with ABA increased the rate of K+ uptake. In both fresh and aged tissues the uptake was strongly enhanced by fusicoccin and decreased by several metabolic inhibitors and ATPase inhibitors, underlying the active nature of uptake and suggesting the involvement of a plasmalemma H+-ATPase in K+ transport system.

Collins, H.A., Edwards, G.S.: Plant Cell Culture

R. Podlipná

Biologia plantarum 42:38, 1999 | DOI: 10.1023/A:1002145610040

Changes in Soluble Proteins in Spring Wheat Stressed with Sodium Chloride

M. Ashraf, J.W. O'Leary

Biologia plantarum 42:113-117, 1999 | DOI: 10.1023/A:1002183829178

Two newly developed salt-tolerant genotypes of spring wheat, S24 and S36 and their salt-tolerant parents, LU26S (from Pakistan) and Kharchia (from India) along with a salt-sensitive cv. Potohar were grown in full strength Hoagland's nutrient solution with 0 or 125 mM NaCl. At the onset of the booting stage third leaf from top was sampled for protein analysis. Total soluble protein content increased due to salt treatment in all cultivars/lines but this increase was more marked in salt-sensitive cv. Potohar and low in salt-tolerant S24 as compared with the other lines. Patterns of labelled polypeptides in all cultivars/lines were identical; the differences were only quantitative (for instance, 29 kD and 48 kD polypeptides were reduced significantly due to NaCl treatment only in the cv. Potohar).

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