biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2761 to 2790 of 6171:

Spudich, A.J., Gerhart, J., McKnight, S.L., Schekman, R. (ed.): Annual Review of Cell and Developmental Biology.

T. Gichner

Biologia plantarum 41:414, 1998 | DOI: 10.1023/A:1001887402569

DiSabato-Aust, T.: The Well-Tended Perennial Garden. Planting & Pruning Techniques

J. Čatský

Biologia plantarum 41:496, 1998 | DOI: 10.1023/A:1001873223431

Changes in leaf mineral composition and chloroplast proteins induced by K-deficiency and increased UV-B radiation

A. Premkumar, G. Kulandaivelu

Biologia plantarum 41:591-595, 1998 | DOI: 10.1023/A:1001852718888

Solar UV-B radiation increased to 20 % over ambient level at Madurai was given to cowpea (Vigna unguiculata L. cv. Pusa-152) seedlings sufficiently supplied by potassium (0.88 mM K2SO4) and K-deficient (0.05 mM K2SO4). Leaf mineral composition was significantly changed due to both increased UV-B radiation and K-deficiency imposed independently or jointly for 12 d. A severe reduction in 23 kDa chloroplast protein was seen only in seedlings encountered combined stress.

Phenotypes of Tobacco Plants Expressing Genes for the Synthesis of Growth Regulators

E. Hlinková, B. Obert, D. Filipp

Biologia plantarum 41:25-37, 1998 | DOI: 10.1023/A:1001748129584

The expression of genes for synthesis of auxin (iaaM and iaaH) and cytokinins (ipt) was studied in tobacco plants transformed by two Agrobacterium tumefaciens strains C 58 and LBA 4404. The strain LBA 4404 carried binary vector plasmid pCB 1334 (ipt gene) and plasmid pCB 1349 (iaaM, iaaH and ila genes). Both plasmids carried reportered gene for npt II. Obtained plants expressed incorporated genes. New proteins with molecular masses of about 74, 40, 26, 25, 21 and 17 kDa for wild plasmid pTi C58; 60, 36, 31.5, 27, 26 and 17 kDa for binary vector plasmid pCB 1334 and 74, 49, 36, 31.5, 26 and 25 kDa for binary vector plasmid pCB 1349 were found in the patterns of soluble proteins. Significant changes in the content of chlorophylls, especially chlorophyll a, were detected in the plants carrying ipt gene and in plants transformed by the wild strain C58 of A. tumefaciens. Tobacco plants expressing ipt gene and genes from T-DNA of pTi C58 plasmid were dwarf, and in comparison to the controls, they had thicker stems, and the surface of the leaf blades was reduced to 20 - 50 %. Adventitious roots, growing from the stem, were typical for transformants overproducing auxins. Regenerants and transformants expressing genes from T-DNA of plasmid pTi C58 differed in the shape of the flowers and their fertility.

Martínez-Zapater, J. M., Salinas, J. (ed.): Arabidopsis Protocols

J. Relichová

Biologia plantarum 41:110, 1998 | DOI: 10.1023/A:1001766012263

Mohren, G.M.J., Kramer, K., Sabaté, S. (ed.): Impacts of Global Change on Tree Physiology and Forest Ecosystems

J. Pospíšilová

Biologia plantarum 41:202, 1998 | DOI: 10.1023/A:1001872226734

Fluoride-induced alteration of carbon and nitrogen metabolism in developing wheat grains

B. Asthir, A.S. Basra, S.K. Batta

Biologia plantarum 41:287-292, 1998 | DOI: 10.1023/A:1001895420374

Effect of fluoride (10 and 50 mM) on the activities of sucrose metabolizing enzymes, alkaline inorganic pyrophosphatase, and transaminases in relation to the accumulation of free sugars, starch, and soluble protein was studied in detached ears of wheat cultured in a liquid medium. Culturing for 5 d in the presence of fluoride reduced the amount of grain starch whereas contents of total free sugars, particularly sucrose, and soluble protein increased. Fluoride inhibited the activities of soluble acid and neutral invertases, as well as sucrose synthase acting in the cleavage direction. Uptake of uniformly labelled 14C-sucrose or fructose was also drastically reduced by fluoride. Glutamate-oxaloacetate transaminase (GOT) and glutamate-pyruvate transaminase (GPT) activities also increased with fluoride addition in correspondence with an increase in soluble protein. Apparently, the wheat grain responds to fluoride-mediated disruption of carbon metabolism by a compensatory effect on nitrogen metabolism.

Dependence of Arabidopsis Thaliana Floral Stem Growth and Architecture on Photoperiod

L. Jouve, Y. Charron, C. Couderc, H. Greppin, R. Degli Agosti

Biologia plantarum 41:377-386, 1998 | DOI: 10.1023/A:1001894226251

The influence of the applied photoperiod during floral stem development has been studied. A clear relationship between the length of the photoperiod, the frequency of light/dark switches, and the dynamic of growth and the subsequent morphology and architecture has been found. An increase in the day length (L/D = 16/8) or an increase in frequency of light/dark transitions (L/D = 7/7) stimulated the inflorescence growth. The two treatments induced the same enlargement in the early inflorescence, but the L/D = 7/7 condition causes a greater increase in the late one. The treatments induced also a diminution in the number of lateral inflorescences, principally with the high frequency light-on/light-off condition. Moreover than differences in the growth along the early inflorescence, at the level of the internode, a gradual growth was observed from the basal part to the upper part of the internode. Finally, the floral stem growth dynamic showed that it could be adapted to the environmental light/dark signalling by a good extension rate synchronisation.

Wickens, G.E.: Ecophysiology of Economic Plants in Arid and Semi-Arid Lands.

I. Prášil

Biologia plantarum 41:474, 1998 | DOI: 10.1023/A:1001899822133

Potato virus-Y multiplication in susceptible tobacco cultivar and transgenic breeding line producing coat protein mRNA

M. Šindelářová, L. Šindelář, L. Burketová, V. Táborský, J. Kazda

Biologia plantarum 41:565-573, 1998 | DOI: 10.1023/A:1001896501142

Changes in ribonucleases (RNases) and glucose-6-phosphate dehydrogenase (G6P DH) activities, their content and subcellular localisation were studied in relation to virus multiplication in susceptible (cv. Samsun) or resistant (transgenic breeding line NCTG 83) tobacco plants infected with the potato virus YN (necrotic strain of PVY). Activities of RNases and G6P DH from diseased susceptible tobacco plants were markedly increased during the experimental period and significantly correlated with the multiplication curve of the PVYN. In contrast, the activities of RNases and G6P DH were not changed after PVY inoculation of resistant breeding line NCTG 83 producing the CP mRNA of PVY. Changes in the content and in the subcellular localisation of RNases and G6P DH isozymes were also determined in mesophyll protoplasts isolated from healthy as well as PVYN infected plants of both cultivars by differential centrifugation of broken protoplasts on day eight post inoculation (the culmination of multiplication curve of PVY and enhanced activity of both enzymes). The chloroplasts fraction from infected protoplasts showed an enhanced content of RNases (192.4% when compared with that from healthy control ones), and of G6P DH (174.4 %). The cytosol fraction from infected protoplasts contained slightly enhanced levels of G6P DH (117.4 %) and considerably enhanced levels of RNases (141.7 %). No significant differences in the activities, contents and subcellular localisation of RNases and/or G6P DH isozymes were observed in the resistant line NCTG 83. This is in accordance with no detectable contents of PVY.

Spector, D.L., Goldman, R., Leindwand, L. (ed.): Cells: A Laboratory Manual. Volume 3: Subcellular Localization of Genes and Their Products

I. Babůrek

Biologia plantarum 41:92, 1998 | DOI: 10.1023/A:1001709910445

Morphology and ultrastructure of isolated gemmae of Drosera pygmaea and their in vitro germination

M. Bobák, J. Šamaj, A. Blehová, M. Ovečka, S. Novomeská, J. Krištín

Biologia plantarum 41:169-176, 1998 | DOI: 10.1023/A:1001803108562

Gemma morphology, histology and ultrastructure before and after germination in vitro were studied in Drosera pygmaea. The histology of the gemma is similar to that of a seed, being characterized by an embryo-like structure and storage tissue, although no seed coat is formed. One embryo-like structure within the gemma, which gives origin to a new plant, expresses polar organisation with distinct meristematic regions. Storage tissue surrounding the embryo-like structure resembles endosperm and it is built of parenchyma cells possessing plastids with starch grains and dense material within vacuoles. The regeneration from the gemma may provide useful system to study plant morphogenesis under stress conditions including in vitro culture.

Application of seed esterase isoenzymes in testing hybridity of tomato

M. Markova, M. Vodenicharova, Ts. Stoilova, N. Cholakova

Biologia plantarum 41:265-269, 1998 | DOI: 10.1023/A:1001887218557

Expression of esterase isoenzymes in 1272 seeds was used to estimate hybridity of Lycopersicon esculentum Mill. Individual seeds (440) of the parental cultivars taken from different experimental stations in Bulgaria were also analysed. The banding patterns were obtained by means of vertical block electrophoresis in polyacrylamide gels. It was established that quantitative variation of locus Est-1 can be applied to prove hybridity of F1 tomato seeds. This marker is related to the genetic nature of tomatoes and is not the result of the environmental influence. The reason for this conclusion is the fact that the isoenzymes of the Est-1 locus are indicative for hybridity determination of all examined seeds taken from different regions in Bulgaria. Use of this locus is to be recommended for both its universality and the fact that the reagents for esterase isoenzymes staining are not expensive.

Elmerich, C., Kondorosi, A., Newton, W.E. (ed.): Biological Nitrogen Fixation for the 21st Century

K. Novák

Biologia plantarum 41:338, 1998 | DOI: 10.1023/A:1001827200752

Effect of simulated acid rain on nodulation and nitrogen metabolism in Vigna radiata cultivars

G. Kumaravelu, M.P. Ramanujam

Biologia plantarum 41:445-450, 1998 | DOI: 10.1023/A:1001862829885

Nodulation was inhibited in plants of green gram (Vigna radiata, cvs. ADT-1 and CO-5) exposed to different levels of simulated acid rain using a mixture of H2SO4, HNO3 and HCl (6:3:1) of pH 2.5, 4.0 and 5.5 in comparison with control (pH 7.0). Protein content of leaves increased in cv. CO-5 but decreased in cv. ADT-1 whereas the nitrate content of leaves increased in cv. ADT-1 but lowered in cv. CO-5. Nitrate reductase activity was increased in the nodular roots of cv. ADT-1 but was decreased in leaves. In cv. CO-5 it was increased in leaves but was insignificantly reduced in the nodules at pH 2.5. The nodule nitrogenase activity increased at pH 4.0 and 2.5 in cv. ADT-1.

Immunogold localization of trans-zeatin riboside in embryo and endosperm during early fruit drop of Malus domestica

M. Ruffini Castiglione

Biologia plantarum 41:523-532, 1998 | DOI: 10.1023/A:1001836215254

The specificity of a monoclonal antibody IgG1, raised against trans-zeatin riboside-keyhole limpet hemocyanin conjugate, was investigated by means of inhibition experiments with soluble competing antigens. A competitive enzyme immunoassay was set up, with immobilized antigen. The analysis of the cross reaction profile enabled a study of the specificity of the antigen-antibody interaction. The antibody was able to distinguish the trans form of zeatin riboside from the cis form (cross reaction index = 1 %); cross reactions with ribose, adenine, adenosine and other related heterologous antigens were not detectable over the range of concetration tested. The recognition centres for the antibody seem to be the purine ring and the R substituent, especially in its hydroxymethyl group. Employment of this monoclonal antibody to localize cytokinins in control and shedding affected fruits of Malus domestica Borkh. evidenced high content of trans-zeatin riboside in developing seeds, differences in its content in embryo and endosperm, and a strong reduction of its content in the tissues of drop fruits. This decrease may be an important component responsible for early fruit abscission.

Abscisic acid and ethylene content in Gerbera jamesonii plants submitted to drought and rewatering

C. Olivella, M. Vendrell, R. Savé

Biologia plantarum 41:613-616, 1998 | DOI: 10.1023/A:1001860920706

Gerbera jamesonii plants were subjected to a drying and rewatering for 10 d under greenhouse conditions. Transpiration rate and leaf water potential decreased with the application of stress and recovered to a level similar to that observed in the control plants. Leaf abscisic acid concentration increased while ethylene production decreased under stress. After rewatering, each of the parameters recovered, to similar levels, as in the control.

Murray, D.R.: Carbon Dioxide and Plant Responses

J. Pospíšilová

Biologia plantarum 41:64, 1998 | DOI: 10.1023/A:1001705709537

Photoautotrophic in vitro Multiplication of the Orchid Dendrobium under CO2 Enrichment

A. Mitra, S. Dey, S.K. Sawarkar

Biologia plantarum 41:145-148, 1998 | DOI: 10.1023/A:1001793306811

An attempt to reduce the production cost on tissue cultured plants, photoautotrophic culture of a high value orchid Dendrobium was established under CO2-enriched conditions. The shoot length and the number of leaves were almost equal in plantlets grown on medium with 2 % sucrose or without sucrose and under normal or enhanced (40 g m-3) CO2 concentration, whereas the fresh and dry masses were higher in cultures grown in sucrose containing media or under CO2 enrichment. Development of roots was observed only on media without sucrose, but CO2 enrichment did not have significant effects on in vitro rootings.

Osmotic adjustment in triticales grown in presence of NaCl

A. Morant-Avice, E. Pradier, R. Houchi

Biologia plantarum 41:227-234, 1998 | DOI: 10.1023/A:1001814614014

Growth and Na+, K+, Cl-, proteins, sugars and proline concentrations were measured in three triticale genotypes M2A, DF99 and Asseret grown on nutrient solution with or without 75 mM NaCl. In saline conditions, leaf area of the three triticales was reduced by 50 % and dry to fresh mass ratio increased. Total protein concentration was diminished by 10 %. K+ concentration decreased whereas Na+ and Cl- accumulated in roots and shoots of salt-stressed plants. This ion accumulation was greater in roots of Asseret than in roots of the other triticales. Soluble sugar concentration increased in M2A and Asseret and decreased in DF99. Proline concentration increased in M2A and DF99 and decreased in Asseret. Osmotic adjustment was essentially realized by Na+ and Cl- uptake. Non-reducing sugars and proline contributed too, but to a lesser extent.

Reuter, D.J., Robinson, B.J. (ed.): Plant Analysis: An Interpretation Manual.

P. Mader, P. Tlustoš

Biologia plantarum 41:317-318, 1998 | DOI: 10.1023/A:1001892714439

Effect of aluminium on the NAD+ kinase activity of Euglena gracilis grown heterotrophically

O. Delumeau, M.-A. Pou, F. Montrichard, D.L. Laval-Martin

Biologia plantarum 41:415-425, 1998 | DOI: 10.1023/A:1001806612138

The effect of 2 mM AlCl3 on NAD+ kinase (E.C. 2.7.1.23) activity was studied using Euglena gracilis strain Z grown heterotrophically in darkness at pH 3.5 in the presence of lactate as sole carbon source. The Al-treatment slowed down the culture growth and suppressed the peak of NAD+ kinase activity, which characterizes the beginning of the exponential phase of growth of the control cell cultures. There are two possible explanations of the Al effect: it 1) either prevents the enzyme activation by the Ca-calmodulin (CaM) complex; or 2) suppresses the CaM-dependent NAD+ kinase form. In Euglena cells, a part of the NAD+ kinase activity is enhanced by EGTA and lowered by Ca2+: this peculiar NAD+ kinase activity is unaffected by the Al treatment.

Physical mapping of the 18S-25S and 5S ribosomal RNA genes in diploid bananas

M. Doleželová, M. Valárik, R. Swennen, J.P. Horry, J. Doležel

Biologia plantarum 41:497-505, 1998 | DOI: 10.1023/A:1001880030275

Fluorescent in situ hybridisation (FISH) was used to determine the number and distribution of the 18S-25S and 5S rDNA sites on mitotic chromosomes of 6 wild and 2 edible diploid (2n=22) accessions belonging to the two banana species, Musa acuminata and M. balbisiana. FISH with the 18S-25S probe resulted in signals on one pair of chromosomes, the position of signals corresponded to the secondary constriction at the end of a short arm. The intensity of labelling was different between the homologues and the larger site corresponded to a larger secondary constriction. This labelling pattern was observed consistently in all genotypes. On the other hand, differences in the number of 5S sites were observed between the accessions. While in some of the wild seeded species, the 5S rDNA was localised on two pairs of chromosomes, hybridisation signals appeared on three pairs of chromosomes in other wild accessions. Quite unexpectedly, only five sites of 5S rDNA were reproducibly observed in the two vegetatively propagated diploid edible cultivars, Pisang Mas and Niyarma Yik, evidence for structural heterozygosity. A dual colour FISH showed that in all accessions, the satellite chromosomes carrying the 18S-25S loci did not carry the 5S loci. The results demonstrate that molecular cytogenetics can be applied to Musa and that physical cytogenetic maps can be generated.

Gentile, J.M., Lohman, P.H.M., Sankaranarayan, K. (ed.): The Field of Mutation Research: Where have we been and where are we going?

K.J. Angelis

Biologia plantarum 41:596, 1998 | DOI: 10.1023/A:1001833609319

Anderson, H.M., Barlow, P.W., Clarkson, D.T., Jackson, M.B., Shewry, P.R. (ed.): Plant Roots - From Cells to Systems

J. Pospíšilová

Biologia plantarum 41:38, 1998 | DOI: 10.1023/A:1001749524558

A Cytochemical Study on the Mycorrhizae of Spathoglottis Plicata

S. Senthilkumar, K.V. Krishnamurthy

Biologia plantarum 41:111-119, 1998 | DOI: 10.1023/A:1001724803177

This paper describes the hitherto unreported aspects of orchid mycorrhizae. The host cells harbour upto 4 generations of fungal pelotons which are formed after each peloton is digested. There are two types of hyphae in a host cell, one forming the pelotons, and the other which lies close to the host cell wall and separated from the former by a callosic wall. The later, called non-pelotonic hyphae form the fresh peloton when the former is digested. Consequently, there are also cytochemical differences between these two types of hyphae.

Postanthesis allocation of photosynthates and grain growth in wheat cultivars as affected by source/sink change

Y. Yin, Z. Wang, M. He, J. Fu, S. Lu

Biologia plantarum 41:203-209, 1998 | DOI: 10.1023/A:1001854311288

Two wheat cultivars, Hesheng 2 with large grain yield potential, and Shannong 505 with small grain yield potential, were used for investigating the responses of postanthesis photosynthesis, dry matter accumulation and allocation, and grain growth to source/sink changes. At the initial grain filling stage, Hesheng 2 was sensitive to source reduction leading to an increase of net photosynthetic rate (PN) by 10 %; however, little effect of sink reduction was observed. In Shannong 505, PN was obviously decreased by sink reduction, and changed a little after source reduction. At the rapid grain filling stage, Hesheng 2 was sensitive to both source and sink reduction resulting in the increase or decrease of PN, respectively. However, the response of PN in Shannong 505 to source/sink changes was similar to that in previous stage. The dry matter (DM) accumulation after anthesis was affected by source/sink changes. In Hesheng 2, the decrease in DM was higher than that in Shannong 505 after the same source or sink reduction. Source reduction caused a decrease in the allocation of DM to the sheath and stem, and promoted the reserve photosynthates to be reallocated to grain. The effect of sink reduction was contrary. The grain mass of Hesheng 2 was more easily regulated by source/sink changes than that of Shannong 505. The effect source/sink changes on grain mass was in order upper > basal > middle spikelets on spike. As for a spikelet, the effect was found mainly in the grain mass at the positions 3 and 4 from base of the spikelet.

A combined PRINS-FISH technique for simultaneous localisation of DNA sequences on plant chromosomes

M. Kubaláková, M. Nouzová, M. Doleželová, J. Macas, J. Doležel

Biologia plantarum 41:293-296, 1998 | DOI: 10.1023/A:1001847505353

A novel approach for simultaneous localization of two DNA sequences on plant chromosomes is described. The approach is based on a combined use of primed in situ DNA labelling (PRINS) with fluorescent in situ hybridization (FISH). Traditionally, this has been done using FISH with two probes labelled by two different marker molecules. Compared to this method, the combined PRINS-FISH procedure is faster. Furthermore, because one of the DNA sequences is localized by PRINS with specific primers, only one labelled probe is needed.

Role of Antioxidant Systems in Wheat Genotypes Tolerance to Water Stress

R.K. Sairam, P.S. Deshmukh, D.C. Saxena

Biologia plantarum 41:387-394, 1998 | DOI: 10.1023/A:1001898310321

The role of plant antioxidant systems in stress tolerance was studied in leaves of three contrasting wheat genotypes. Drought imposed at two different stages after anthesis resulted in an increase in H2O2 accumulation and lipid peroxidation and decrease in ascorbic acid content. Antioxidant enzymes like superoxide dismutase, ascorbate peroxidase and catalase significantly increased under water stress. Drought tolerant genotype C 306 which had highest ascorbate peroxidase and catalase activity and ascorbic acid content also showed lowest H2O2 accumulation and lipid peroxidation (malondialdehyde content) under water stress in comparison to susceptible genotype HD 2329 which showed lowest antioxidant enzyme activity and ascorbic acid content and highest H2O2 content and lipid peroxidation. HD 2285 which is tolerant to high temperature during grain filling period showed intermediate behaviour. Superoxide dismutase activity, however, did not show significant differences among the genotypes under irrigated as well as water stress condition. It seems that H2O2 scavenging systems as represented by ascorbate peroxidase and catalase are more important in imparting tolerance against drought induced oxidative stress than superoxide dismutase alone.

The metabolism of inhibitor of flowering and prostaglandin biosynthesis, acetylsalicylic acid, in Pharbitis nil cotyledons

E.G. Groenewald, A.J. Van Der Westhuizen

Biologia plantarum 41:475-479, 1998 | DOI: 10.1023/A:1001875132611

Acetylsalicylic acid, which applied to cotyledons of the short day plant Pharbitis nil prior to an inductive 16-h dark period inhibits flowering by 90 %, is converted to salicylic acid and to a lesser extent to gentisic acid in the cotyledons during this 16-h dark period. Our results confirmed that salicylic acid and gentisic acid are responsible for the inhibition of flowering. They also inhibit prostaglandin biosynthesis.

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