biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 3241 to 3270 of 6293:

Changes in photosynthetic apparatus during dark incubation of detached leaves from control and ultraviolet-B treatedVigna seedlings

N. Nedunchezhian, K. C. Ravindran, G. Kulandaivelu

Biologia plantarum 37:341, 1995 | DOI: 10.1007/BF02913976

Changes in various components of photosynthetic apparatus during the 4 d dark incubation at 25°C of detached control and ultraviolet-B (UV-B) treatedVigna unguiculata L. leaves were examined. The photosynthetic apparatus was more degraded in younger control seedlings and for a longer time UV-B treated seedlings than in the older or for a shorter time UV-B treated seedlings. This was shown by determining the losses in chlorophyll (Chl) and protein contents, variable fluorescence yield, photosystem (PS) 2, PS1 and ribulose-1,5-bisphosphate carboxylase (RuBPC) activities, and photosynthetic14CO2 fixation. In contrast, the Car/Chl ratio increased during the dark incubation due to less expressed degradation of Car.

Tissue culture and transformation ofOenothera biennis

D. Pavingerová, I. Gális, M. Ondřej

Biologia plantarum 38:27, 1996 | DOI: 10.1007/BF02879628

Five cultivars ofOenothera biennis have been tested for callogenesis and organogenesis on different media. The cultivar CV3 has been transformed byAgrobacterium tumefaciens strain which introduces into the plant genome kanamycin resistance gene and the T-DNAipt gene which causes increased levels of cytokinins. Transformed tissues showed elevated levels of cytokinins and grew as teratomas forming clumps of short, branched shoots with small modified leaves. Roots appeared rarely in later subcultivations of some teratomous clones.

Short term effect of ultraviolet-B radiation on photosystem 2 photochemistry in the cyanobacteriumSynechococcus 6301

S. Rajagopal, S. D. S. Murthy

Biologia plantarum 38:129-132, 1996 | DOI: 10.1007/BF02879646

Exposure of intact cells of theSynechococcus 6301 to UV-B radiation induced a loss in photosystem 2 (PS 2) electron transport activity prior to the alteration in pigment complexes. Thus the degradation of PS 2 was not directly related to pigment alteration.

Book review

T. Gichner

Biologia plantarum 38:222, 1996 | DOI: 10.1007/BF02873849

Seed germination and salinity tolerance in plant species growing on saline wastelands

K. Mahmood, K. A. Malik, M. A. K. Lodhi, K. H. Sheikh

Biologia plantarum 38:309, 1996 | DOI: 10.1007/BF02873866

Seven plant species including three chenopods:Suaeda fruticosa, Kochia indica, Atriplex crassifolia and four grasses:Sporobolus arabicus, Cynodon dactylon, Polypogon monspeliensis, Desmostachya bipinnata, varied greatly in their seed germination and growth responses to soil moisture or salinity. The germination percentage of each species was significantly lower at soil moisture level of 25 % of water holding capacity than at the levels ranging from 50 to 125 %. Increase in salinity resulted in gradual decrease in seed germination of each species. Growth responses of species to salinity varied widely from significant decrease with slight salinity to stimulation up to salinity levels of 20 dS m-2. Higher K+Na+ratios in plant shoots of all species compared to that in the root medium indicated selective K+uptake. Higher tolerance in chenopod species seems to be attendant on their ability for internal ion regulation.

Photosynthesis of natural cocksfoot populations under water and salt stresses

P. Ramos, N. Pedrol, M. J. Reigosa

Biologia plantarum 38:413, 1996 | DOI: 10.1007/BF02896672

Sampling of natural cocksfoot (Dactylis glomerata L.) populations was carried out on the O Morrazo peninsula in NW Spain, characterized by a strong moisture gradient. The plants were kept in greenhouse under standard conditions. Nevertheless, they differ in height of plants, length and width of flag leaves, panicle size, stomatal density and size as well as in flowering period. The effects of two levels of soil water deficit and two levels of salinity on photosynthetic rate were tested. One population was exceptionally well adapted to its original environment with great tolerance to water deficit and salinity

Somatic Embryogenesis in Woody Plants. Volume 2 - Angisperms.

L. Havel

Biologia plantarum 38:500, 1996 | DOI: 10.1007/BF02890595

Expression of cucumber stress-related anionic peroxidases during flower development or a cryptic infective process

V. Repka, I. Fischerová, K. Čanigová

Biologia plantarum 38:585, 1996 | DOI: 10.1007/BF02890611

The striking diversity in the expression pattern of the stress-related anionic peroxidase was observed during development of female cucumber flower. While the isoenzyme Prx3 was accumulated constitutively in the course of flower development, the expression patterns of other two isoenzymes (Prx1 and Prx2) were restricted to the period after flower opening. The virus infection was simulated by careful opening of the intact female flower buds 3 d before anthesis followed by exposition to the glasshouse environment for 3 d. The results obtained in this experiment revealed a marked accumulation of the isoenzyme Prx1 and Prx2 at anthesis. Under normal flower development, the pistils did not accumulate these isoenzymes at this stage. In contrast, the pattern of expression of Prx3 as well as of the pistil-specific peroxidase isoenzyme remained unchanged, confirming a constitutive type of expression. Beside the pistil, a 3-d exposition of the stripped flowers resulted in a marked accumulation of Prx1 and Prx2 isoenzymes also in both adjacent flower organs - the ovary and the pedicel. At the same time of the normal development of female flower these organs did not accumulate these isoenzymes.

Relationship between transpiration and respiration in plants during the dark period

J. Stoyanova

Biologia plantarum 38:77, 1996 | DOI: 10.1007/BF02879640

Energetic aspects of the relation between transpiration and respiration during the dark period were evaluated. One-year old seedlings of three trees, one bush and one annual plant were grown in controlled conditions. Experiments were performed under uniform environment during the day and two regimes of air relative humidity (RH) during the night, low (50 - 65 %) and high (95 %). For all investigated plant species the dark transpiration rate (E), the free energy of respiratory substrate, the entropy production and the free energy balance (FEB) of the dark respiration were higher at low than at high RH. E was linearly related to the FEBr 2 ranged between 0.63 and 0.90)

Effect ofCalotropis latex on laticifers differentiation in callus cultures ofCalotropis procera

S. S. Suri, K. G. Ramawat

Biologia plantarum 38:185-190, 1996 | DOI: 10.1007/BF02873844

Laticifers differentiation in callus cultures of Calotropis procera (Asclepiadaceae) as affected by own latex and its fractions incorporated in Murashige and Skoog (MS) medium is described. Callus cultures have been maintained on MS medium with 2.3 ΜM 6-furfurylaminopurine (FAP) and 3.0 ΜM 1-naphthylacetic acid (NAA). Marked increase in laticifers differentiation (from 10.1 to 28.4 %) was observed on this medium supplemented with 1 % (v/v) of latex. Latex fractions containing proteins + complex polysaccharides or inorganic salts also increased laticifers differentiation (by 21.8 % and 24.1 %, respectively). Other fractions (free amino acid + saccharides, phenols and terpenes + sterols) had no marked effect on laticifers differentiation while alkaloid fraction inhibited it. Effect of latex on laticifers differentiation was much more profound than the reported optimal concentration of plant growth regulators (4.6 ΜM FAP + 1 ΜM IAA).

The role of sulphur in detoxication of cadmium in young sugar beet plants

M. Popović, S. KevreŠan, J. Kandrač, J. Nikolić, N. Petrović, R. Kastori

Biologia plantarum 38:281-287, 1996 | DOI: 10.1007/BF02873861

In young sugar beet plants cadmium suppressed the activity of nitrate reductase, glutamine synthetase and glutamate dehydrogenase, whereas sulphur exhibited a protective role towards activity of these enzymes, except of glutamine synthetase. Protein synthesis was suppressed in the absence of S in nutrient medium; the lowest level was at 10-3 M Cd2+. Chloroplast pigment contents were increased by S while Cd2+, even in the lowest concentration, (10-5 M) showed a repressive effect. The highest concentrations of Cd2+ (10-3 M) caused a decrease in dry mass, whereas S induced its increase. Nitrate content was increased in the presence of Cd2+ and decreased by increased concentration of S.

Catalase activity in developing seedling of opium poppyPapaver somniferum L

L. Bezáková, M. Mikuš, H. Šmorgovičova, P. Kovács, M. Pšenák

Biologia plantarum 38:377, 1996 | DOI: 10.1007/BF02896666

Catalase is an enzyme unique to glyoxysomes in developing poppy seedlings. Catalase activity is very low in endosperm and in embryo of germinating poppy seeds. During postgerminative growth and development the enzyme activity increases rapidly with maximum in endosperm on day 2 and in developing seedling on day 3. A rapid decline of enzyme activity parallells the extension growth of poppy seedlings. Three electrophoretic forms of catalase have been detected in isolated glyoxysomes and partially purified catalase preparation. Electron microscopic observation indicates the presence of catalase in glyoxysomes of parenchyma cells of poppy seedling cotyledons. Numerous lipid bodies and electron-dense deposits in vacuoles are the most characteristic feature of these cells.

Advances in Molecular and Cell Biology. Vol. 10

Z. Šesták

Biologia plantarum 38:468, 1996 | DOI: 10.1007/BF02896683

Induction of sister chromatid exchanges by heavy metal salts in root meristem cells ofAllium cepa L.

K. K. Panda, J. Patra, B. B. Panda

Biologia plantarum 38:555, 1996 | DOI: 10.1007/BF02890606

Four heavy metal salts, nickel sulphate, mercuric chloride, cadmium sulphate and zinc sulphate, were tested for induction of sister chromatid exchange (SCE) in root meristem cells ofAllium cepa. A simple modified Feulgen staining procedure was employed for SCE-analysis. Maleic hydrazide and paraquat were included for comparison. An evaluation of genotoxicity of the above test chemicals made on the basis of SCE-assay was found positive for all the test chemicals with exception of zinc sulphate which gave a weak positive result.

Water relations and nitrogen fixation in potassium fedVigna radiata nodules

A. S. Nandwal, B. S. Kundu, A. Hooda, M. S. Kuhad

Biologia plantarum 38:629, 1996 | DOI: 10.1007/BF02890624

Drought created by withholding the irrigation at 30 and 45 d after sowing significantly decreased relative water content (RWC) and osmotic potential (ψs) ofVigna radiata (L.) Wilczek cv. MH-83-30 nodules. Potassium fed plants showed higher RWC, whereas ψs was further declined irrespective of soil moisture levels. The nitrogenase activity and leghemoglobin content of nodules markedly decreased under drought and nodules of potassium fed plants showed better recovery after rehydration. The proline content significantly increased under drought but declined upon reirrigation. Also, the C, N and K contents of nodules significantly declined under drought.

Polyamines and senescence of maintenance foliage of tea,Camellia sinensis L.

R. K. Kakkar, P. K. Nagar

Biologia plantarum 38:153, 1996 | DOI: 10.1007/BF02879652

In leaf discs of maintenance foliage of tea (Camellia sinensis) polyamines (PAs) and kinetin retarded chlorophyll (Chl) loss, whereas inhibitors of PA biosynthesis [difluoromethyl arginine, difluoromethyl ornithine, methylglyoxal-bis(guanylhydrazone)] and abscisic acid (ABA) promoted senescence. The contents of RNA and protein were significantly higher in PA and kinetin treated leaf discs as compared to those treated with inhibitors and ABA. The contents of total and reducing saccharides declined with the progressive loss of Chl, and the concentration of starch increased in all the PA treated leaf discs. Free amino acid content also increased under all the treatments, but the increase was comparatively larger in case of inhibitors application.

Induced Mutations and Molecular Techniques for Crop Improvement

T. Gichner

Biologia plantarum 38:350, 1996 | DOI: 10.1007/BF02896661

The effect of virus infection on morphology and protein components of pollen grains

K. Petrzik, J. Špak, J. Nebesářová, J. Fránova

Biologia plantarum 38:445, 1996 | DOI: 10.1007/BF02896678

Morphology of pollen grains collected from healthy and virus infected plants ofChenopodium quinoa L.,Chenopodium album L. andNicotiana tabacum L. cv. Samsun was investigated using scanning electron microscopy (SEM). Pollen grains from tobacco plans infected with tobacco mosaic virus (TMV) were smaller, with rounded shape and conspicuous deformation of aperture unlike oval and smooth pollen grains from healthy plants. No morphological alterations were observed inC. quinoa andC. album plants infected with TMV and cucumber mosaic virus (CMV). Polyacrylamide gel electrophoresis of pollen proteins revealed substantial quantitative and qualitative differences in protein components of pollen grains collected from healthy and virus infected plants

Effect of sodium and calcium chlorides, abscisic acid and proline on callus cultures ofArachis hypogaea L.

A. Gupta, G. S. Singhal

Biologia plantarum 38:525, 1996 | DOI: 10.1007/BF02890601

Callus cultures ofArachis hypogaea L. cv. JL-24 adapted to 200 mM NaCl (otherwise lethal to cells) were used for the study. Calli grew slowly when transferred to 250 mM NaCl, but the growth was enhanced when ABA was included in the medium. ABA induced increase in growth of callus was not accompanied by corresponding increase in internal free proline levels. 0.5 mM of CaCl2 ameliorated the negative effect of NaCl indicating that cells require a specific Ca2+/Na+ ratio for their growth. Proline content also increased at this ratio thereby suggesting that increase in growth at 0.5 mM Ca2+ may be due to an increase in proline content. However, exogenous proline did not increase the growth of callus (adapted to 200 mM), and higher concentrations even inhibited the growth. This shows that proline is not required for growth or adaptation of cells to salt stress, but is produced as a consequence of stress.

Soil salinity effect on soluble saccharides, phenol, fatty acid and mineral contents, and respiration rate of garlic cultivars

S. Siddiqui, K. Gupta, A. Yadav, J. L. Mangal

Biologia plantarum 38:611-615, 1996 | DOI: 10.1007/BF02890618

The effect of salinity on contents of water, soluble saccharides, phenols, minerals and on respiration rate in bulbs of five garlic (Allium sativum L.) cultivars differing in salinity tolerance was determined. Cultivar HG-6 was found to be the most tolerant followed by cvs. G-l and G-42, and cv. Aru the least tolerant to salinity. The cultivars which were tolerant showed lesser reduction in water content of the bulbs by salinity. Initial contents of phenolic compounds and sulphur were comparatively low in salinity tolerant cultivars but they increased under high salinity levels whereas reverse was found in salt sensitive cultivars. The fatty acids profile did not show significant changes under saline conditions. Contents of K and Ca were reduced, content of Na was increased and there were no changes in the contents of N, Mn, Cu, Zn and Fe. The changes in soluble saccharides content and respiration rate were not found to be associated with the salinity tolerance.

Appearance of bulges on maize roots as affected by 6-benzylaminopurine and α-naphthylacetic acid

O. Tsvilyniuk, O. Terek

Biologia plantarum 38:33, 1996 | DOI: 10.1007/BF02879629

The thickening that appeared on maize roots under the influence of 6-benzylaminopurine and α-naphthylacetic acid (concentration 10-5, 10-6, 10-7 and 10-8 M) were analysed. The changes in length and width of maize roots at the edge of elongation zone after 24,48 and 72 h of treatment were studied. The growth in length of cells at the edge of elongation zone stopped abruptly but the growth in width slowly continued. So, the growth of cells in length and width under the influence of growth regulators was not simultaneous. They had distinct time limits.

Ameliorating effect of triacontanol on salt stressederythrina variegata seedlings. Changes in growth, biomass, pigments and solute accumulation

K. Muthuchelian, C. Murugan, R. Harigovindan, N. Nedunchezhian, G. Kulandaivelu

Biologia plantarum 38:133, 1996 | DOI: 10.1007/BF02879647

Erythrina variegata Lam. seedlings were grown under low (100 mM NaCl) and high (250 mM NaCl) salinity. Seedlings exposed to high salinity for 10 d showed significant reduction in growth rate and biomass production while the root/shoot ratio increased. In contrast to pigment and protein contents, starch and saccharide contents increased in salt stressed seedlings. When the seedlings were subsequently sprayed with triacontanol (1 mg kg-1) the salinity effect was partially ameliorated and growth, biomass, chlorophyll and carotenoid contents increased.

Grain growth in wheat ears cultured in saccharose solution

A. Arora

Biologia plantarum 38:223, 1996 | DOI: 10.1007/BF02873850

Ears of uniculm wheat (Triticum aestivum L. cv. Gigas) grown in liquid medium for 11d absorbed more solution when the saccharose concentration was 2 % than when it was 10 %. When the ears were grown in 6 % saccharose solution, the rate of uptake from the solution was between that from the 2 and 10 % saccharose medium. Dry mass per grain increased with the saccharose concentration in the medium and the reduced uptake of solution did not decrease the moisture percentage of the grain. The culture of ears decreased pH of the solution with 2 % saccharose more than with 10 %. Addition of 0.5% chloramphenicol to the culture solution had no adverse effect on grain mass; it prevented contamination of the solution and maintained a higher pH

Effects of citrinin on pigment, protein and nucleic acid contents in maize seeds

K. K. Sinha, G. Prasad

Biologia plantarum 38:317, 1996 | DOI: 10.1007/BF02873867

Citrinin lowered contents of chlorophyll, carotenoids, proteins and nucleic acids during seed germination of maize cv. Suwan composite. The inhibitory effect was concentration dependent.

Effects of fusaric acid on respiration in maize root mitochondria

A. R. Telles-Pupulin, S. P. S. S. Diniz, A. Bracht, E. L. Ishii-Iwamoto

Biologia plantarum 38:421, 1996 | DOI: 10.1007/BF02896673

The effects of fusaric acid, a phytotoxin produced byFusarium pathogens, on the metabolism of isolated maize root mitochondria and on maize seed germination and seedling growth were investigated. The phytotoxin inhibited basal and coupled respiration when succinate and α-ketoglutarate were the substrates. Coupled respiration dependent on NADH was inhibited, but basal respiration was not. Consistently, succinate cytochromec oxidoreductase activity was decreased whereas NADH cytochromec oxidoreductase was not affected. The ATPase activities of carbonyl cyanide p-trifluoro-methoxyphenyl hydrazone stimulated mitochondria and of freeze-thawing disrupted mitochondria were inhibited. These results indicate that the phytotoxin impairs the respiratory activity of maize mitochondria by at least three mechanisms: (1) it inhibits the flow of electrons between succinate dehydrogenase and coenzyme Q, (2) it inhibits ATPase/ATP-synthase activity and (3) it possibly inhibits α-ketoglutarate dehydrogenase. Seed germination and seedling growth were also affected by fusaric acid with the most pronounced effect on root development. These effects can possibly contribute to the diseases ofFusarium- infected plants

The level of proteins and leakage of solutes in germinating fresh and stored seeds ofCicer arietinum L.

S. Hayat, A. Ahmad

Biologia plantarum 38:597, 1996 | DOI: 10.1007/BF02890612

One-year-old seeds of chickpea (Cicer arietinum L. cv. C-235) lost about 23 % germinability and leaked larger quantities of N, P, K, saccharides and proteins into the soaking medium in the first 48 h, as compared with fresh seeds. The protein content in stored seeds decreased more than in fresh seeds, as the soaking progressed.

Cu-ions mediated changes in growth, chlorophyll and other ion contents in a Cu-tolerantKoeleria splendens

G. Ouzounidou

Biologia plantarum 37:71, 1995 | DOI: 10.1007/BF02913000

The effects of Cu2+ on growth, chlorophyll and other ion contents ofKoeleria splendens originated from Cu-contaminated soil have been investigated in nutrient solution. The most evident Cu2+ effects concern the root growth, especially the root length. Since in plants grown under lower Cu2+ concentrations (4 and 8 μM) root elongation, biomass, chlorophyll, Mg2+, Fe2+, Ca2+ and K+ content were increased compared with the control, the development of an adaptive mechanism ofK. splendens to Cu2+ is suggested. High Cu2+ concentration (160 μM) caused a significant reduction in root length and biomass as well as a decreased rate of chlorophyll biosynthesis. The reduction of growth can be correlated with the toxic effect of Cu2+ on photosynthesis, root respiration and protein synthesis in roots. 160 μM Cu2+-treatment had a negative influence on the concentrations of Ca2+, Fe2+, Mg2+ and K+ and a positive influence on the Cu2+ concentration in the plant tissues. Loss of nutrients similar to the senescence response suggests that excess of Cu2+ leads to the progressive senescence of the plants. Our results demonstrate the existence of an adaptive mechanism ofK. splendens under low Cu2+ concentrations, while high Cu2+ quantities cause disturbances in plant function.

Identification and relationships of cultivated accessions fromLolium-Festuca complex based on RAPD fingerprinting

I. Wiesner, P. Samec, V. Našinec

Biologia plantarum 37:185, 1995 | DOI: 10.1007/BF02913208

Randomly Amplified Polymorphic DNA (RAPD) technique with 15 arbitrary primers was used to identify and reveal relationships of the accessions comprising 4 species ofLolium-Festuca complex. Altogether 252 RAPD markers were considered in statistical treatment, 60 of which could be identified as potentially taxon-specific. All analyzed taxa were fully distinguishable using RAPD markers.Lolium-Festuca relationships based on RAPD data were evaluated using cluster analysis (UPGMA) and principle coordinate analysis (PCO). The results of UPGMA as well as PCO performed on data pooled from all RAPD profiles support separation of the two generaLolium andFestuca.

Gas exchange in leaves of the root hemiparasitemelampyrum arvense L. before and after attachment to the host plant

Z. Lechowski

Biologia plantarum 38:85, 1996 | DOI: 10.1007/BF02879641

Gas exchange characteristics of a hemiparasiteMelampyrum arvense L. before and after attachment to the hostCapsella bursa pastoris (L.) Med. were compared. The net photosynthetic rates (PN) on a leaf area basis were extremely low and in comparison to the value obtained for the host were about 15 % and 23 % for the unattached and attached hemiparasite, respectively. Also the concentration of photosynthetic pigments was low (as compared with the host the content of chlorophylls was about 33 % and 49 % and of carotenoids about 38 % and 36 % in the unattached and attached hemiparasite, respectively). On the other hand the rates of respiration were high (about 1.8 and 2.6 times higher in the unattached and attached hemiparasite, respectively, than in the host). In darkness stomatal conductance (gS) of the host and the unattached hemiparasite was rapidly reduced to 10 % of the value obtained in light, gS of the attached hemiparasite was decreased only by about 30%. A total reduction of gS occurred at relative water content (RWC) of 85 %, 75% and 45 % for the unattached hemiparasite, the host, and the attached hemiparasite, respectively. The transpiration (E) rate in the preparasitic stage was very low, being 2.6 and 4.5 times smaller than in the host and the attached hemiparasite, respectively. In the attached hemiparasite WUE was 7.5 and 3 times poorer than in the host and in the preparasitic stage, respectively.

Effect of irradiation and growth regulators on degradation processes in detached soybean leaves

K. Annamalainathan, G. Pathmanabhan, K. Manian, L. Veerannah

Biologia plantarum 38:289, 1996 | DOI: 10.1007/BF02873862

Changes in soluble protein profile and chlorophyll (Ch1) content in detached soybean leaves incubated in darkness or light were delayed by application of benzyladenine or indole-3-acetic acid and enhanced by abscisic acid. The degradation in light differed significantly from the degradation in darkness. Chl and proteins were lost at a higher rate in darkness than in light.

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