biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2371 to 2400 of 6293:

Morphological and Structural Responses of Plant Roots to Aluminium at Organ, Tissue, and Cellular Levels

M. Čiamporová

Biologia plantarum 45:161-171, 2002 | DOI: 10.1023/A:1015159601881

Toxic effects of aluminium are primarily root-related. This review deals with growth, morphological, and ultrastructural responses of root to aluminium, their diversity along the root axis, and in the root tissues. The cell elongation seems to be most sensitive and responsible for early inhibition of root elongation. Longer Al treatment is required to reduce cell division or to interfere with nucleic acids in the root apex. Alterations of root morphology include root thickening, disturbances of root peripheral tissues, and initiation of lateral roots closer to the root tip. Ultrastructure alterations depend strongly on position of the cells with respect to the Al source, and on their developmental stage. Cell elongation and cell ultrastructure including organisation of cytoskeleton are most sensitive within the distal part of the transition zone of the root apex. This correlates with the rate of uptake and accumulation of Al along the root apex. Recognising the diverse responses and the most sensitive sites within the root apex can help in elucidating the mechanism(s) of Al effects on plants.

Changes in Thiol Content in Roots of Wheat Cultivars Exposed to Copper Stress

I. Tari, G. Szalai, Zs. Lôrincz, A. Bálint

Biologia plantarum 45:255-260, 2002 | DOI: 10.1023/A:1015105025080

Wheat (Triticum aestivum L.) cultivars GK Tiszatáj, Yubileinaya, GK Öthalom and a landrace Kobomugi were grown for 18 d in hydroponic cultures containing 0 (control), 0.1, 1.0 or 10.0 µM Cu2+. On a dry mass basis, cvs. Tiszatáj and Kobomugi accumulated slightly more Cu2+ in the root tissues than did cvs. Yubileinaya and Öthalom, but their controls also contained higher amounts of Cu2+. As a result of perturbation in the plasma membrane functions the K+ content of roots was reduced at 10 µM Cu2+ in all cultivars, whereas the K+/Na+ ratio decreased significantly only in the roots of cv. Öthalom. In the sensitive cultivar, Öthalom, the dry mass of the roots decreased while the cysteine content, which is a limiting factor for glutathione synthesis, did not satisfactorily increase with increasing tissue Cu2+ content. This suggests that in cv. Öthalom the membrane damage of the root cells at 10 µM Cu2+ concentration may affect the sulphur availability or metabolism. Concentrations of glutathione and hydroxymethyl-glutathione, a tripeptide which may play a similar biochemical role to glutathione, were also lower in the sensitive cultivar. In the absence of glutathione the root tissues failed to cope with the oxidative stress caused by the excessive amount of Cu2+. A significant accumulation of iron in the roots of the sensitive cultivar at 10 µM Cu2+ supply enhanced the oxidative damage.

Cambell, A., Anderson, W.W, Jones, E.W. (Ed.): Annual Review of Genetics. Volume 35

T. Gichner

Biologia plantarum 45:346, 2002 | DOI: 10.1023/A:1016202725086

Galle, F.C.: Hollies. The Genus Ilex

J. Štěpánek

Biologia plantarum 45:408, 2002 | DOI: 10.1023/A:1016267011882

Schekman, R., Goldstein, L., McKnight, S.L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Vol. 17

T. Gichner

Biologia plantarum 45:488, 2002 | DOI: 10.1023/A:1022301925409

Dashek, W.V. (ed.): Methods in Plant Electron Microscopy and Cytochemistry

H. Synková

Biologia plantarum 45:574, 2002 | DOI: 10.1023/A:1022334832678

Comparison of Barley Response to Short-Term Cold or Dehydration

Z. Faltusová-Kadlecová, M. Faltus, I. Prášil

Biologia plantarum 45:637-639, 2002 | DOI: 10.1023/A:1022353316419

Abscisic acid (ABA) content and relative water content (RWC) in second fully expanded leaves of cold hardened plants and in dehydrated leaves of freezing tolerant barley (Hordeum vulgare L. cv. Lunet) were compared. ABA content and RWC in leaves did not change during the first day of cold hardening. On the contrary, dehydration of leaves led to a decrease of RWC and to an increase of ABA content.

Robert, P.C., Rust, R.H., Larson, W.E. (ed.): Site Specific Management for Agricultural Systems

J. Šroller

Biologia plantarum 39:542, 1997 | DOI: 10.1023/A:1001734110464

Plant Pyruvate Kinase

P.K. Ambasht, Arvind M. Kayastha

Biologia plantarum 45:1-10, 2002 | DOI: 10.1023/A:1015173724712

Pyruvate kinase is an important enzyme of glycolytic pathway that also functions in providing carbon skeleton for fatty acid biosynthesis. It has been purified to near homogeneity from Ricinus communis, Selenastrum minutum, Cynodon dactylon, Brassica campestris and B. napus, and characterised. Partially purified preparations are reported from several other sources. A phosphoenolpyruvate (PEP) phosphatase accompanies pyruvate kinase. In plants, two isozymes of pyruvate kinase are reported, namely cytosolic and plastidic. Isoforms of cytosolic pyruvate kinase have also been reported from spinach. In most cases pyruvate kinase is a tetrameric protein and the molecular mass lies between 200 to 250 kDa. The pH optimum is in the range of 6.2 to 7.5. It requires both Mg2+ and K+ for maximum activity. ATP, citrate, and oxalate inhibit pyruvate kinase in most cases. A sequential compulsory ordered mechanism of binding of substrates to the enzyme has been proposed.

Heat Shock Induced Lipid Changes and Solute Leakage in Germinating Seeds of Pigeonpea

K.V. Madhava Rao, V. Sridevi, N.V. Satyanarayana

Biologia plantarum 45:71-76, 2002 | DOI: 10.1023/A:1015184004665

Heat shock (HS) reduced total lipid and phospholipid contents and their synthesis in germinating seeds of pigeonpea [Cajanus cajan (L.) Millspaugh]. Lipid peroxidation was also enhanced with increasing temperature and HS duration. HS influenced lipid metabolism to a higher extent at 45°C than at 40°C. This altered lipid metabolism and lipid peroxidation was associated with the loss of various solutes from the germinating seeds, and modification of growth and development. Pretreatment of germinating seeds at 40°C for 1 h or at 45°C for 10 min followed by incubation at 28°C for 3 h prior to 45°C for 2 h ameliorated solute leakage due to reduced lipid peroxidation and improvement in lipid content and membrane function.

Effects of Increased Supply of Potassium on Growth and Nutrient Content in Pearl Millet under Water Stress

M. Ashraf, M. Ashfaq, M.Y. Ashraf

Biologia plantarum 45:141-144, 2002 | DOI: 10.1023/A:1015193700547

Influence of increased K supply on growth and nutrient content in pearl millet (Pennisetum glaucum) under severe water stress was assessed in a pot experiment under glasshouse conditions. Nineteen-day-old plants of two lines, ICMV94133 and WCA-78 were subjected for 30 d to 235, 352.5, and 470 mg(K) kg-1(soil) and two water regimes (100 and 30% field capacity). Increasing soil K supply did not alleviate the adverse effect of water deficit on the growth of two lines of pearl millet. Accumulation of N and K in the shoots of both lines was higher under water deficit than that under well-watered conditions, but such effect was not observed for P or Ca.

Bohm, B.A., Stuessy, T.F.: Flavonoids of the Sunflower Family (Asteraceae)

Z. Šesták

Biologia plantarum 45:226, 2002 | DOI: 10.1023/A:1015137932348

Optimum Conditions for the Storage of Potato Virus YNTN Strain

N. Čeřovská, M. Filigarová, R. Hadámková

Biologia plantarum 45:315-316, 2002 | DOI: 10.1023/A:1015177513693

The effect of storage conditions on the serological activity of two isolates of potato virus YNTN strain (PVYNTN) was studied by ELISA. Purified virus, intact and homogenized infected leaves stored freeze-dried and frozen at various temperatures were tested. Purified virus was the most stable at +4 °C and non-purified virus was best preserved as a freeze-dried leaf homogenate at -20 °C. Their serological activity did not change after three months of storage.

Verpoorte, R., Alfermann, A.W. (Ed.): Metabolic Engineering of Plant Secondary Metabolism

T. Vaněk

Biologia plantarum 45:388, 2002 | DOI: 10.1023/A:1016262910973

Callus Induction and Plant Regeneration in Lemna Minor L.

B. Stefaniak, A. Woźny, I. Budna

Biologia plantarum 45:469-472, 2002 | DOI: 10.1023/A:1016246507339

Callus induction was obtained on Murashige and Skogg agar medium with 45 μM 2,4-dichlorophenoxyacetic acid under dark at 25°C. Among the four explant types investigated, the best callus induction was obtained from two-week old fronds to which a surgical incision was applied in the basal (meristematic) region. This treatment resulted in 89.11% of fronds producing callus which continued to proliferate for another 24 months. To obtain plant regeneration pieces of calluses were transferred onto Murashige and Skoog agar medium containing 22 μM indole-3-acetic acid and 4.6 μM kinetin and maintained under 16-h photoperiod (irradiance of 30 μmol m-2 s-1) at 23°C. Green fronds formed on all callus pieces. The regenerated fronds were later transferred onto Wang medium where they formed roots. The regenerated Lemna minor L. plants obtained through indirect organogenesis did not differ morphologically from individuals forming the stock collection.

Effect of Salt Stress on the Superoxide Dismutase Activity in Leaves of Citrus limonum in Different Rootstock-Scion Combinations

M.S. Almansa, J.A. Hernandez, A. Jimenez, M.A. Botella, F. Sevilla

Biologia plantarum 45:545-549, 2002 | DOI: 10.1023/A:1022373025148

The effect of salinity on leaf superoxide dismutase (SOD) activity of lemon trees of different rootstock-scion combinations was studied. In leaves from Citrus limonum cv.Verna scions on Citrus macrophylla and C. reticulata rootstocks, salinity treatment clearly caused a significant depression in both Fe-SOD and Mn-SOD activities and an increase in Cu,Zn-SOD activity. However, in leaves from Citrus limonum on Citrus aurantium rootstook, the reduction observed in the activity values of Fe-SODs and Mn-SODs was not statistically significant. Salt stress also produced a decrease in the content of soluble proteins and chlorophylls. However, this drop was greater in C. limonum leaves on C. macrophylla than for other combinations.

Alleviation of Salinity-Induced Dormancy in Perennial Grasses

S. Gulzar, M.A. Khan

Biologia plantarum 45:617-619, 2002 | DOI: 10.1023/A:1022352012012

All seeds of Aeluropus lagopoides and Urochondra setulosa germinated under non-saline conditions except for Sporobolus ioclados which showed only 40 % germination. Increase in salinity substantially inhibited germination and few seeds germinated at 400 mM NaCl. Germination at 200 mM NaCl was alleviated in U. setulosa by the application of gibberellic acid and fusicoccin, in A. lagopoides by thiourea, betaine, kinetin, fusicoccin and ethephon, and in S. ioclados by gibberellin and ethephon. High salinity (400 mM NaCl) induced germination inhibition was alleviated by proline, kinetin, fusicoccin and ethephon only in A. lagopoides.

Griffiths, A.J.F., Miller, J.H., Suzuki, D.T., Lewontin, R., Gelbart, W.M.: An Introduction to Genetic Analysis

M. Bunček

Biologia plantarum 45:50, 2002 | DOI: 10.1023/A:1015187026471

Miller, G.T.: Living in the Environment. Principles, Connections, and Solutions

J. Gloser

Biologia plantarum 45:128, 2002 | DOI: 10.1023/A:1015199330106

Artichoke Leaf Morphology and Surface Features in Different Micropropagation Stages

C.B. Brutti, E.J. Rubio, B.E. Llorente, N.M. Apóstolo

Biologia plantarum 45:197-204, 2002 | DOI: 10.1023/A:1015132303698

Artichoke (Cynara scolymus L.) leaf size and shape, glandular and covering trichomes, stomatal density, stomata shape, pore area and epicuticular waxes during micropropagation stages were studied by scanning electron microscopy (SEM) and morphometric analysis with the aim to improve the survival rate after transfer to greenhouse conditions. Leaves from in vitro shoots at the proliferation stage showed a spatular shape, ring-shaped stomata, a large number of glandular trichomes and juvenile covering hairs, but failed to show any epicuticular waxes. Leaves from in vitro plants at the root elongation stage showed a lanceolated elliptic shape with a serrated border, elliptical stomata, decreased pore area percentage, stomatal density, and mature covering trichomes. One week after transfer to ex vitro conditions, epicuticular waxes appeared on the leaf surface and stomata and pore area were smaller as compared to in vitro plants. Artichoke acclimatization may be improved by hormonal stimulation of root development, since useful morphological changes on leaves occurred during root elongation.

Growth and Metabolism of Senna as Affected by Salt Stress

A. Arshi, M.Z. Abdin, M. Iqbal

Biologia plantarum 45:295-298, 2002 | DOI: 10.1023/A:1015117327805

Pot culture experiments were conducted using different NaCl concentrations to assess their impact on the growth and metabolic changes in senna (Cassia angustifolia Vahl.). Five treatments (0, 40, 80, 120, and 160 mM NaCl) were given to the plants at three phenological stages, i.e. at pre-flowering, (45 days after sowing, DAS); flowering (75 DAS) and post-flowering (90 DAS) stages. A significant reduction in the biomass and length of the roots and shoots, photosynthetic rate, stomatal conductance, the total chlorophyll content, protein content, nitrate reductase activity, and reduced nitrogen content of the leaves was observed at each phenological stage with each salt concentration applied. Contrary to this, proline and nitrate contents of the leaves increased markedly. The post-flowering stage was most sensitive to NaCl treatment.

Chopra, V.L., Malik, V.S., Bhat, S.R. (Ed.): Applied Plant Biotechnology

N. Čeřovská

Biologia plantarum 45:366, 2002 | DOI: 10.1023/A:1016258810065

Effect of Growth Regulators on Photosynthetic Metabolites in Cotton under Water Stress

D.M. Pandey, C.L. Goswami, B. Kumar, S. Jain

Biologia plantarum 45:445-448, 2002 | DOI: 10.1023/A:1016286121451

The contents of several photosynthetic metabolites - 3-phosphoglyceric acid (3-PGA), pyruvate, nicotinamide adenine dinucleotide phosphate (NADP) and adenosine triphosphate (ATP) - were determined in leaves of cotton plants (Gossypium hirsutum L. cv. H-777) subjected to waterlogging at vegetative stage, and/or drought at the reproductive stage. In controls, soil moisture contents was kept at field capacity. One day prior to stress, the plant shoots were sprayed with 5 μM aqueous solution of indole-3-acetic acid (IAA), gibberellic acid (GA3), benzylaminopurine (BAP), abscisic acid, and ethrel. In control plants, various growth regulators reduced contents of 3-PGA and ATP while increased contents of NADP and pyruvate. During waterlogging IAA promoted 3-PGA content, and BAP enhanced pyruvate content. During drought, GA3 enhanced ATP and 3-PGA contents, while IAA enhanced pyruvate content.

Malate Dehydrogenase, Alcohol Dehydrogenase, and 6-Phosphogluconate Dehydrogenase Isozymes of Zea mays L. × Tripsacum dactyloides L. Hybrids and Parents

V. Tsanev, R. Vladova, K. Petkolicheva, B. Kraptchev, C. Milanov

Biologia plantarum 45:517-522, 2002 | DOI: 10.1023/A:1022312806492

Electrophoretic patterns of malate dehydrogenase (Mdh), alcohol dehydrogenase (Adh), and 6-phosphogluconate dehydrogenase (Pgd) of Zea mays L. × Tripsacum dactyloides L. hybrids and their parents were compared. The components of enzymes specific to T. dactyloides may be used as markers to identify the following T. dactyloides chromosomes in the hybrids: Tr 16 (Mdh 2 and Pdg 1), Tr 7, and/or Tr 13 (Adh 2). The isozymes of Mdh 2 are supposed as a possible biochemical marker to evaluate the introgression of genes, determining an apomictic mode of reproduction from T. dactyloides (localized on Tripsacum 16 chromosome) into Z. mays. The isozymes may be used as markers for the identification of maize chromosomes 1 and 6 in the hybrids as well. Chromosome count taken on the examined hybrids showed the addition of 9 to 13 chromosomes of T. dactyloides to maize chromosome complement.

Effect of NaCl and Proline on Bean Seedlings Cultured in vitro

Y. Demir, I. Kocaçalişkan

Biologia plantarum 45:597-599, 2002 | DOI: 10.1023/A:1022343101727

Effects of NaCl (150 mM), proline (10 mM) and their combination on growth and contents of chlorophyll, proline and protein of bean (Phaseolus vulgaris cv. Kizilhaç) seedlings in vitro were investigated. NaCl decreased seedling growth. Proline added to control seedlings did not change seedling growth but decreased chlorophyll and increased protein contents. When proline added to NaCl-treated seedlings growth was increased in comparison with NaCl-treated only. Thus, proline alleviated salinity stress in bean seedlings.

Influence of ABA and 4PU-30 on the Growth, Proteolytic Activities and Protein Composition of Maize Seedlings

Y.M. Angelova, S.G. Petkova, N.I. Popova, B.J. Stefanov, L.K. Iliev

Biologia plantarum 45:33-37, 2002 | DOI: 10.1023/A:1015138816051

The experiments were carried out with germinating maize seeds (Zea mays L.), grown 6 d in the dark at 26°C. Before germination the seeds were soaked for 4 h in solutions containing 1 mM abscisic acid (ABA), 0.1 mM N1-(2-chloro-4-pyridyl)-N2 phenylurea (4PU-30) and their combination. The influence of plant growth regulators on the length, fresh (FM) and dry (DM) masses, proteolytic activities and soluble protein fractions in shoots, roots and endosperm were studied. As compared to control the seedlings treated with ABA showed lower length, FM and DM of shoots and roots, and lower proteolytic activities. As a consequence of suppression of both growth and protein breakdown, these seedlings possessed higher protein content in endosperm. 4PU-30 partially decreased the ABA suppressing effects.

Hydrogen Peroxide Generated Via the Octadecanoid Pathway is Neither Necessary nor Sufficient for Methyl Jasmonate-Induced Hypersensitive Cell Death in Woody Plants

V. Repka

Biologia plantarum 45:105-115, 2002 | DOI: 10.1023/A:1015112926955

Exogenously applied methyl jasmonate (MeJA) might induce the formation of necrotic lesions that closely resemble hypersensitive response lesions. Cellular damage, restricted to the infiltrated zone, was accompanied with the production of H2O2 from the oxidative burst. H2O2 generated in response to MeJA can be histochemically detected in cells surrounding the necrotic lesions as well as in the vascular tissues. The response is systemic and maximizes with time. Among 12 plant species from different families that were assayed for both hypersensitive reaction (HR)-like response and H2O2 generation, only woody species exhibited both MeJA-inducible HR cell death and the generation of H2O2. To assess the role of H2O2 in MeJA-induced HR-like cell death, a gain and loss of function strategy was employed. The cumulative results indicate that H2O2 is neither necessary nor sufficient for MeJA-inducible cell death and that O2- rather than H2O2 might be responsible.

Spangenberg, G. (Ed.): Molecular Breeding of Forage Crops

J. Nedělník

Biologia plantarum 45:172, 2002 | DOI: 10.1023/A:1015181714602

Adsorption of Zinc Ions by Scenedesmus Obliquus and S. Quadricauda and its Effect on Growth and Metabolism

H.H. Omar

Biologia plantarum 45:261-266, 2002 | DOI: 10.1023/A:1015157009150

Zinc adsorption by two green algae, Scenedesmus obliquus and Scenedesmus quadricauda, was investigated. The maximum adsorption capability of zinc ion obtained from the Langmuir adsorption isotherms was higher for S. obliquus (6.67) than for S. quadricauda (5.03), and S. obliquus was more tolerant to zinc phytotoxicity than S. quadricauda. Lower concentrations of zinc increased dry mass, chlorophylls a and b, carotenoids, and total amino acid contents in both algae. On the other hand, higher concentrations of zinc were inhibitory for growth and the other metabolic activities in a concentration dependent manner.

Direct Differentiation of Shoot Buds from Leaf Explants of Cajanus Cajan L.

P. Misra

Biologia plantarum 45:347-351, 2002 | DOI: 10.1023/A:1016205331021

A protocol was developed for direct differentiation of multiple shoot buds from leaf explants of Cajanus cajan. In a modified Murashige and Skoog's medium supplemented with 2.22 µM benzyladenine (BA), 0.57 µM indole-3-acetic acid (IAA) and 41 µM adenine sulphate (AdS), the segments of basal halves of the first two leaves of a young seedling incubated on filter paper bridges in liquid medium took 20 - 25 d to differentiate shoot buds. The explants after transfer to solidified medium, with lower concentration of BA (0.22 μM) resulted in fast growing healthy shoots. The developed shoots (measuring ca. 3 cm) were rooted in a medium supplemented with 1.42 µM IAA. They were subsequently grown in pots with soil with more than 80 % transplantation success.

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