biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 3211 to 3240 of 6170:

Mercuric chloride induced membrane damage in tomato cultured cells

B. De, A. K. Mukherjee

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

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

Ecophysiology of Tropical Intercropping

J. Gloser

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

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

M. Šindelářová, L. Burketová, L. Šindelář

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

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

Book review

V. Novák

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

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

R. Parra, J. B. Amo-Marco

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

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

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

S. K. Sharma

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

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

Auxin levels and auxin binding protein availability inrolB transformedBeta vulgaris cells

T. Xing, E. Blumwald, D. -Y. Zhang, J. F. Hall

Biologia plantarum 38:351, 1996 | DOI: 10.1007/BF02896662

The final biological effect of auxin depends both on free auxin levels and on auxin perception capacity.RolB transformedBeta vulgaris L. hairy roots provide a system for studying both factors. Highly purified plasma membrane fractions were prepared with aqueous two-phase partitioning. Individual hairy root clones were assessed for the binding activities of plasma membrane-bound auxin binding proteins and for their free intracellular indole-3-acetic acid levels. The presence of a high affinity auxin binding protein with a dissociation constant of 9.07 x 10-7 M was detected in the plasma membrane fractions isolated from non-transformed seedling roots and the six clones ofrolB transformed hairy roots. However, the levels of specific IAA binding considerably varied among different hairy root clones and between transformed and non-transformed roots. The levels of the detectable polypeptide in immunoblotting with an antibody against maize 22-kD auxin binding protein subunit were in good agreement to the levels that were detected in auxin binding assays. Differences in the indole-3-acetic acid levels were found between transformed and non-transformed roots and also between different transformed hairy root clones. A negative correlation was observed between free intracellular IAA levels and its specific binding to the plasma membrane-bound auxin binding proteins. A latency study indicated that the binding site for auxin may be located on the exterior face of the plasma membrane

Phenolic compounds in date palm cultivars sensitive and resistant toFusarium oxysporum

A. Ziouti, C. El Modafar, A. Fleuriet, S. EL Boustani, J. J. Macheix

Biologia plantarum 38:451-457, 1996 | DOI: 10.1007/BF02896679

In date palm (Phoenix dactylifera L.) leaves, the main compounds of the phenolic pool were quercetin and isorhamnetin heterosides, (+)-catechin and (-)-epicatechin. Although previously observed only in date palm fruits, 5-caffeoylshikimic acid (dactylifric acid) and its positional isomers (3-caffeoylshikimic acid and 4-caffeoylshikimic acid) were detected also in the leaves and roots. Quantitative, but not qualitative, differences between cultivars resistant and susceptible toFusarium oxysporum f. sp.albedinis during growth period were observed

Molecular Mechanisms in Bioenergetics

P. Šiffel

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

In Vitro Embryogenesis in Plants

J. Opatrná

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

Action of selected heavy metal ions on the photosystem 2 activity of the cyanobacteriumSpirulina platensis

S. D. S. Murthy, P. Mohanty

Biologia plantarum 37:79, 1995 | DOI: 10.1007/BF02913001

Addition of different concentrations of heavy metal ions (Hg2+, Cu2+, Ni2+ and Pb2+) inhibited the photosystem 2 catalyzed electron transport activity (H2O→p-benzo-quinone) of the cyanobacteriumSpirulina platensis. Hg2+ caused the inhibition in electron transport activity in very low concentrations compared to the other metal ions. Hg2+ at this low concentration specifically altered the spectral properties of phycocyanin of the phycobilisomes in the intact cells ofSpirulina, whereas other heavy metal ions were ineffective in this sense.

Annual review of genetics. Volume 24

T. Gichner

Biologia plantarum 37:196, 1995 | DOI: 10.1007/BF02913209

Plant Structure: Function and Development. A Treatise on Anatomy and Vegetative Development, with Special Reference to Woody Plants

I. Ticha

Biologia plantarum 37:272, 1995 | DOI: 10.1007/BF02913225

Aitkin-Chistie, J., Kozai, T., Smith, M.A.L. (ed.):Automation and environmental control in plant tissue culture

T. Gichner

Biologia plantarum 37:328, 1995 | DOI: 10.1007/BF02913973

Alleviation of salinity stress in chickpea byRhizobium inoculation or nitrate supply

D. L. N. Rao, P. C. Sharma

Biologia plantarum 37:405-410, 1995 | DOI: 10.1007/BF02913989

Influence of inoculation with efficient rhizobia or nitrate fertilization in alleviating salinity (NaCl, CaCl2 and Na2SO4) stress was investigated in sand culture experiments. Shoot dry mass declined beyond salinity level corresponding to electrical conductivity (EC) 5.6 dS m-1 in control or in inoculated plants and after EC 7.4 dS m-1 in nitrate fed ones. Root growth was more sensitive and decreased at EC 3.3 dS m-1. Nitrate reductase activity in leaves reduced at EC 3.3 dS m-1 but in inoculated and nitrate fed plants it reduced at EC 5.6 dS m-1. Na+ accumulation increased at EC 5.6 and 7.4 dS m-1 in roots and, shoots, respectively. In inoculated and nitrate fed plants Na+ content in roots increased at EC 7.4 dS m-1. Content of Ca2+ increased slightly only in shoots and content of K+ was unaffected. Besides inoculation, application of small doses of nitrogen should prove beneficial for legume cultivation in saline soils.

Jennings, D.H.:The physiology of fungal nutrition

J. Černohorská

Biologia plantarum 37:490, 1995 | DOI: 10.1007/BF02908824

Responses of four arid zone grass species from varying habitats to drought stress

M. Ashraf, N. Yasmin

Biologia plantarum 37:567, 1995 | DOI: 10.1007/BF02908840

The effects of 4 or 8 drought cycles on four grass species,Cenchrus pennisetiformis, Leptochloa fusca, Panicum turgidum, andPennisetum divisum were assessed in a pot experiment. There were significant differences between the species in biomass production under water stress.C. pennisetiformis andP. turgidum produced significantly greater fresh and dry matter thanP. divisum and especially thanL. fusca. L. fusca had the lowest andP. divisum highest osmotic potentials compared with the other species after the completion of 4 or 8 drought cycles. Osmotic adjustment (difference between osmotic potential of droughted/rehydrated plants and control plants) was highest inL. fusca. The stomatal conductance was significantly decreased with increased drought stress inC. pennisetiformis. The elasticity ofC. pennisetiformis, P. turgidum andP. divisum increased with increase in number of drought cycles, whereas that ofL. fusca remained unchanged.L. fusca andP. turgidum had the lowest leaf hydration of all species after 8 drought cycles. The chlorophyllsa andb in all species remained unaffected by drought treatments. The proline content ofC. pennisetiformis andL. fusca increased significantly with increased drought stress, whereas that ofP. turgidum remained unaffected after 4 or 8 drought cycles.L. fusca synthesized great amount of leaf soluble proteins during 8 drought cycles, whereasP. divisum had low protein content after 4 drought cycles. The protein contents ofC. pennisetiformis andP. turgidum remained unaffected after 8 drought cycles. The leaf epicuticular wax ofL. fusca increased consistently with increased drought stress, but leaf wax ofP. divisum increased only at the highest drought stress and that ofC. pennisetiformis andP. turgidum increased after 4 drought cycles. On the basis of these results it was established thatC. pennisetiformis andP. turgidum were the most tolerant,P. divisum intermediate, andL. fusca the most sensitive to drought stress. The osmotic adjustment did not positively correlate with the degree of drought resistance.

Limitations on photosynthesis under environment-simulating culturein vitro

J. Čatský, J. Pospíšilová, J. Solárová, H. Synková, N. Wilhelmová

Biologia plantarum 37:35, 1995 | DOI: 10.1007/BF02912996

Limitations on photosynthesis, characterized by leaf CO2 exchange, chlorophyll fluorescence, and thylakoid structure, were studied under environmental conditions simulating culturein vitro. These were simulated by growingPhaseolus vulgaris plants in nutrient solution under high relative humidity of air (>90%), and CO2 concentrations (ca) that decreased with the development of photosynthetic activities during plant ontogeny (1200 to 300 mg m-3). The ontogeny of such model plants was more rapid, primary leaves reached photosynthetic maturity 2 to 3 d earlier and their life span was 7 to 14 d shorter than in control plants. Their photosynthetic activityin situ was limited, after reaching "photosynthetic maturity", similarly to plants grownin vitro. When measured under optimal conditions, however, 50 to 70% higher net photosynthetic rates (PN) were found in leaves of different ages as compared with plants grown under ca of 700 mg m-3 and a lower air humidity (30-35%). This increase in PN was associated with a high conductance for CO2 transfer by adaxial and abaxial epidermes. In model plants, the dark respiration rate (RD) was almost twice that in the control, while the photorespiration rates were similar to controls; CO2 compensation concentration was about 50% of that in controls. The ratios PN/RD were similar in control and in model plants. Chlorophylla+b content in leaves of the model plants was lower than that in the control plants. Grana extent increased with plant age in the model plants while it decreased in the control ones. In both the stromal and granal membranes of the chloroplasts in model plants, a marked accumulation of carotenoids occurred independent of age. The ratio of variable to maximal fluorescence, Fv/Fm, did not differ in the model and the control plants. In the control plants, photochemical quenching (qP) slightly increased with plant age and was not affected by CO2 concentration present during measurement. In the model plants, qP increased with elevated CO2 concentration in young plants and decreased in saturating CO2 concentrations in older plants. Nonphotochemical quenching (qNP) was lower in the model plants and increased under CO2 saturating conditions. Vitality index, Rfd, was markedly lower in the model plants than in the control ones and a decline was found in saturating CO2 concentration.

Stimulation of growth and nitrate assimilation inLeucaena leucocephala seedlings in response to spermidine supply

S. Pandey, H. S. Srivastava

Biologia plantarum 37:153, 1995 | DOI: 10.1007/BF02913012

Supply of 100 μM spermidine (Spd) in the nutrient solution containing 10 mM nitrate as the sole nitrogen source, increased growth of roots and shoots, total nitrogen content andin vivo orin vitro nitrate reductase (NR) activity of leaves of 10-d oldLeucaena leucocephala seedlings. Spd and the cytokinins benzyladenine or kinetin also increased growth, total nitrogen andin vivo NR activity of isolated cotyledons. The synergistic effects of nitrate, kinetin and Spd in increasing NR activity, indicate that the Spd acted at different level than the nitrate or cytokinin.

Synergistic effects of cadmium and NaCl on the growth, photosynthesis and ion content in wheat plants

E. Abo-Kassem, A. Sharaf-el-Din, J. Rozema, E. A. Foda

Biologia plantarum 37:241-249, 1995 | DOI: 10.1007/BF02913220

The addition of NaCl to cadmium had significant synergistic effect on the wheat root and shoot fresh mass, relative growth rate and net assimilation rate, while showed no significant effects on the dry mass production, leaf area, leaf area ratio, leaf mass ratio and specific leaf area. Additive depression of the rate of photosynthesis and the stomatal conductance was recorded, while no significant effect on the transpiration rate was observed. The Cd stress disturbed the mineral nutrition of the wheat plants either directly or indirectly, NaCl markedly reduce the uptake and internal concentration of K and Ca in the shoot. The combination of cadmium and NaCl showed no additive effects on the content of ions in the root as well as in the shoot of wheat plants.

Overcoming prefertilization barriers in the crossDiplotaxis siettiana ×Brassica juncea using irradiated mentor pollen

B. K. Sarmah, N. Sarla

Biologia plantarum 37:329-334, 1995 | DOI: 10.1007/BF02913236

Hybridization between the nearly extinct speciesDiplotaxis siettiana andBrassica juncea is prevented because of strong prefertilization barriers. Use of mentor pollen ofD. siettiana irradiated with 1000 Gy gamma radiation before the incompatible pollination led to fertilization. 5 d after pollination 17% ovules showed entry of pollen tubes, 10 d after pollination 27% ovules showed small globular embryos which grew no further. No embryos were found in control pollinations. Thus , use of irradiated mentor pollen brings about fertilization in this difficult cross and hybrids can be obtained if embryos are rescued.

Kinetics of phosphate uptake in excised maize root

P. Kumar, U. S. Mishra, R. C. Pant

Biologia plantarum 37:381, 1995 | DOI: 10.1007/BF02913984

The short term uptake of phosphate involving 10 min absorption followed by 5 min desorption, both at 30 °C, in the concentration range 1.0×10-9 to 7.5×10-2 M KH2PO4 by fresh and washed maize (Zea mays L. cv. Ganga Safed-2) roots can be described by a single isotherm having five phases (0 and I-IV) with regularly spaced kinetic constants. Almost identical kinetics were observed in both fresh and washed maize roots. The kinetics of phase 0 in the concentration range 1.0×10-9-3.0×10-5 M. was sigmoidal in fresh maize roots, however, in washed tissue exhibited 2 phases termed here as 0a and 0b. 0a covered the concentration range 1.0×10-9-5.0×10-6 M and 0b 6.0×10-6-3.0×10-5 M. In the concentration range 1.0×10-4-7.5×10-2 M four distinct phases, termed as I, II, III and IV were evident in both fresh and washed maize roots. Each phase obeyed Michaelis-Menten kinetics. The values of Km and Vmax have been estimated for each phase. The uptake isotherm was accompanied by discontinuous transitions.

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

F. El-Shintinawy, A. Selim

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

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

Meyerowitz E.M., C.R. Somerville (ed.): Arabidopsis

T. Gichner

Biologia plantarum 37:540, 1995 | DOI: 10.1007/BF02908835

The influence of incorporated bromodeoxyuridine on mutagenicity testing by sister chromatid exchange induction inVicia faba root tip cells

R. Veselská, P. Kuglík, J. Relichová

Biologia plantarum 37:9-14, 1995 | DOI: 10.1007/BF02912991

The induction of sister chromatid exchanges (SCEs) inVicia faba root-tip cells after short-term (2 h) and long-term (24 h) treatments with alkylating agents (N-methyl-N-nitrosourea, ethyl methanesulphonate) and maleic hydrazide was studied. The primary roots were treated with mutagens before or after 5-bromodeoxyuridine (BrdU) incorporation into DNA and the influence of mutagen application on SCE induction in the cells with non- and BrdU-substituted chromosomal DNA. On the contrary, application of maleic hydrazide after the incorporation of BrdU into DNA strongly increased the rate of SCEs. The lowest limit concentrations of mutagens capable of significantly increasing SCE frequency in the cells with non-substituted DNA after the long-term treatment were estimated.

Effect of native and introduced arbuscular mycorrhizal fungi on growth and nutrient uptake ofLygeum spartum andAnthyllis cytisoides

G. Díaz, M. Honrubia

Biologia plantarum 37:121-129, 1995 | DOI: 10.1007/BF02913007

The interaction between native and introduced fungi and their effect on plant growth and mineral uptake were studied. The host plants wereLygeum spartum andAnthyllis cytisoides, the introduced fungus wasGlomus fasciculatum. The four soils used were selected from disturbed and contaminated by mining activities areas. Inoculated and uninoculated plants were grown in the unsterilized and sterilized soils (with and withouth native microflora, respectively). Plants inoculated withG. fasciculatum were higher and had higher tissue P concentration than uninoculated plants, especially inA. cytisoides. However, this inoculation was not effective in unsterilized substrates, suggesting a competition between introduced and native fungi. Concentration of mineral elements other than P varied depending on the host plant and soil. Decrease in Fe, Cu, Mn, Zn and Pb was observed in mycorrhizalA. cytiosides plants and a slight increase in Zn concentration was noted in mycorrhizalL. spartum plants. The study showed that the type of soil and their populations of native endophytes have a considerable effect on plant response to mycorrhizal symbiosis, especially in disturbed soils.

Annual review of cell biology. Volume 10

T. Gichner

Biologia plantarum 37:218, 1995 | DOI: 10.1007/BF02913215

NaCl stress in rice seedlings: effects of L-proline, glycinebetaine, L-and D-asparagine on seedling growth

C. C. Lin, C. H. Kao

Biologia plantarum 37:305, 1995 | DOI: 10.1007/BF02913231

The effect of L-proline, glycinebetaine, L-and D-asparagine on rice seedling growth under NaCl stress was investigated. Glycinebetaine and L-asparagine were not effective in reducing NaCl inhibition in shoot growth of rice seedlings. L-Proline and D-asparagine were found to be able to reduce shoot growth inhibition under NaCl stress. However, L-proline, glycinebetaine, D- and L-asparagine further enhanced NaCl inhibition of root growth.

NaCl-induced amoeboid plastids and mitochondria in meristematic cells of barley roots

Yan Xian Xi

Biologia plantarum 37:363, 1995 | DOI: 10.1007/BF02913979

The barley (Hordeum vulgare L.) seeds were germinated in the non-saline conditions after 12 h imbibition in 2 % of NaCl solution. The results of treatment were: (l) the membrane system in meristematic cells of root tips developed well; (2) many profiles of endoplasmic reticulum and Golgi bodies appeared; and (3) the quantities of amoeboid plastids and amoeboid mitochondria increased. Thus the inhibitory effects of short-term NaCl stress on plants were reversible, and simultaneously NaCl treatment enhanced the metabolic activities in cells. The amoeboid form may be an adaptive form of plastids or mitochondria to an enhanced metabolic activity.

Struik, P.C., Vredenberg, W.J., Renkema, J.A., Parlevliet, J.E. (ed.): Plant production on the threshold of a new century

J. Pulkrábek, V. Švachula, D. Hradecká

Biologia plantarum 37:442, 1995 | DOI: 10.1007/BF02913995

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