biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 3151 to 3180 of 6170:

Micropropagation ofDalbergia sissoo from nodal explants of mature trees

A. Gulati, P. K. Jaiwal

Biologia plantarum 38:169-175, 1996 | DOI: 10.1007/BF02873840

A method for micropropagation ofDalbergia sissoo has been developed. Single node segments obtained from coppice shoots of a mature tree (20 - 25 year old) produced 3-4 shoots per explant on Murashige and Skoog (MS) medium containing 4.4 x 10-6 M benzylaminopurine (BAP) and 4.4 × 10-7 M of Β-naphthoxy acetic acid (NOA) (shoot multiplication medium) within 4 weeks. Thein vitro regenerated shoots were 3 - 4 cm in length and provided 2 to 3 culturable nodal segments which on shoot multiplication medium again produced 3-4 shoots. Following this procedure 18-24 shoots were produced from single nodal segment within 60 d. 80 % of the shoots directly produced five roots when they were firstly treated with MS medium supplemented with 10-5 M indole-3-butyric acid (IBA) and subsequently transferred to half strength liquid MS medium containing 1 % activated charcoal followed by half strength liquid MS free hormones, vitamins and activated charcoal. Thein vitro raised plants were hardened for survival after transplantation to soil by exposing them to various humidity conditions, gradually from higher to low, with nearly 100 % transplant success.

Book review

J. Pospiśïlová

Biologia plantarum 38:268, 1996 | DOI: 10.1007/BF02873858

Effect ofin vivo andin vitro application of the cytokinin N6 -(m-hydroxybenzyl)adenosine on respiration and membrane transport processes in sugar beet

A. Kotyk, M. Kamínek, J. Pulkrábek, J. Zahradníček

Biologia plantarum 38:363, 1996 | DOI: 10.1007/BF02896663

Sugar beet grown in pots was sprayed with N6-(m-hydroxybenzyl)adenosine, (mOH)- [9R]BAP, one of the synthetic cytokinins. Root tissue was then examined for respiration and for H+-adenosinetriphosphatase activity and both leaf and root tissue served as the object for 6-deoxy-D-glucose and 2-aminoisobutyric acid uptake estimations. Treatment with (mOH)[9R]BAP depressed the uptake of oxygen by the roots of both young and old plants by 17 - 30 % while addition of (mOH)[9R]BAP to the respiring slices decreased it by 10 - 23 %. Uptake of 6-deoxy-D-glucose was mostly diminished byin vivo spraying with the cytokinin (by up to 12 % in leaves and by up to 60 % in roots), as well as by adding it to the experimental vessel (insignificantly in the leaves but by up to 80 % in the roots). The H+-ATPase activity was stimulated bothin vivo andin vitro appreciably in young plants but not at all in plants at the end of their vegetation period.

Mohr, H., Schopfer, P.:Plant Physiology

J. Pospišilová

Biologia plantarum 38:458, 1996 | DOI: 10.1007/BF02896680

Growth and proline accumulation in mungbean seedlings as affected by sodium chloride

A. N. Misra, B. Murmu, P. Singh, M. Misra

Biologia plantarum 38:531, 1996 | DOI: 10.1007/BF02890603

Mungbean (Vigna radiata L. Wilczek cv. Sujata and cv. K851) seedlings were grown in paper towelins in dark under 0, 0.5, 1, 2 and 3 % (m/v) NaCl salinity. Germination percentage, shoot and root length, fresh mass of both cultivars decreased with salinity. Total soluble saccharides and proline accumulated in the root and shoot of salt stressed seedlings. The proline accumulation in the root was four to five times higher than that of the shoot of NaCl treated etiolated mungbean seedlings.

Endogenous indole-3-acetic acid during adventitious root formation inPopulus £canadensis Moench.

T. Doleželová, V. Psota, Z. Feiglová

Biologia plantarum 38:617, 1996 | DOI: 10.1007/BF02890620

Indole-3-butyric acid (IBA), phenylacetic acid (PAA) and naphthaleneacetic acid (NAA) were applied at a concentration of 10-4 mol dm-3 to stem cutting bases ofPopulus x canadensis Moench. During adventitious root formation, the content of indole-3-acetic acid (IAA) in cutting bases was estimated using the fluorimetric method. In the control variant, a rapid increase in endogenous IAA appeared after 24-h cultivation followed by gradual decrease during the following days. In contrast, the variants treated with IBA, PAA, and especially NAA exhibited firstly a decrease in endogenous IAA content and only afterwards an increase, reaching a maximum 48 h after excision. As root regeneration proceeded gradually, a decrease in the level of endogenous IAA occurred in all treatments. The first adventitious roots appeared in all treatments after 216-h cultivation.

Pospíšil, F., Hrachová, B.: Užitkové rostliny jižních zemí. [Useful plants of southern countries.]

J. Zichová

Biologia plantarum 37:576, 1995 | DOI: 10.1007/BF02908841

Glycanase activities associated with cell walls ofCicer arietinum L. epicotyls

J. L. Acebes, I. Zarra

Biologia plantarum 38:39, 1996 | DOI: 10.1007/BF02879631

The effect of the proteins extracted with 1 M LiCl from theCicer arietinum etiolated epicotyl cell walls on the degradation of polysaccharides extracted with alkali was studied. The hemicellulosic polysaccharides were fractionated into three fractions extracted with 4 % KOH, 4 % KOH containing 8 M urea, and 24 % KOH. The protein extract showed exo-glycanase activity against all three hemicellulosic fractions whilst endo-glycanase activity was shown mainly against the hemicellulosic polysaccharides extracted with 4% KOH.

Gas exchange inHardwickia binata after water stress and rewatering

K. Natarajan, K. Paliwal

Biologia plantarum 38:141, 1996 | DOI: 10.1007/BF02879649

The net photosynthetic rate (PN), stomatal conductance (gs) and transpiration (E) ofHardwickia binata Roxb. leaves were reduced due to decrease in the leaf water potential (ψw) from -2.0 to - 5.7 MPa. PN partially recovered in the treated plants upon rewatering. Decrease in gs due to water stress may be the main factor for reduction of PN.

Structural and functional alterations in radish plants induced by the phenylurea cytokinin 4-PU-30

E. Z. Stoynova, L. K. Iliev, G. T. Georgiev

Biologia plantarum 38:237, 1996 | DOI: 10.1007/BF02873852

Single treatment of expanding radish leaves with N1-(2-chloro-4-pyridyl)-N2-phenylurea (4-PU-30) lead to the stimulation of root cambial tissue activity and root growth. Leaf thickness, the volume of chlorophyll (Chl) containing cells per unit leaf area, starch content in the chloroplasts, and the Chl content increased simultaneously. These alterations were associated with increased leaf net photosynthetic rate and stomatal conductance in treated plants.

Lectin biosynthesis in callus culture established from seeds ofCanavalia virosa

K. K. Jayavardhanan, J. Padikkala, K. R. Panikkar

Biologia plantarum 38:329, 1996 | DOI: 10.1007/BF02896658

Plant tissue cultures established from isolated embryos or cotyledons were used to investigate the lectin biosynthesis inCanavalia virosa. The lectin (CVL) was detected by double immunodiffusion and hemagglutination tests. CVL was present in all callus cultures. The stem and leaf of the plantlet generated from the embryo also contain CVL, but no CVL was detected in the roots. As compared to mature seeds, callus derived from cotyledon of immature seeds exhibited the largest CVL content.

Growth responses of barley and wheat seedlings to lead and cadmium

A. F. Titov, V. V. Talanova, N. P. Boeva

Biologia plantarum 38:431, 1996 | DOI: 10.1007/BF02896675

The responses of barley and wheat seedlings to lead and cadmium ions in relation to the concentration and duration of treatment were studied. Both metals inhibited seed germination and growth of roots and shoots, but the toxic effect of cadmium was observed at lower concentrations. Inhibition of seedling growth was already recorded already within a day after the beginning of the treatment, and then increased further. The sensitivity of the processes studied to both the metals decreased in the order: root growth, shoot growth and seed germination. The resistance of barley and wheat to lead was similar, whereas the resistance to cadmium was higher in barley

Seasonal changes in sugar beet photosynthesis as affected by exogenous cytokinin N6-(m- hydroxybenzyl)adenosine

J. Čatský, J. Pospíšilová, M. Kamínek, A. Gaudinová, J. Pulkrábek, J. Zahradníček

Biologia plantarum 38:511, 1996 | DOI: 10.1007/BF02890598

Foliar sprays with N 6-(m-hydroxybenzytyadenosine, (mOH)-[9R]BAP, one of the synthetic cytokinins, were applied to field-grown sugar beet twice during the vegetation period: before full canopy closing (I), 6 weeks before harvest (II) or both. Application of (mOH)[9R]BAP retained high cytokinin content that usually declines prior to harvest. The total content of isoprenoid cytokinins at harvest was 2.6-fold higher in (mOH)[9R]BAP-treated plants as compared to the controls. Treatment I had no significant effect on contents of chlorophylls (Chl)a andb and carotenoids, nor on the rates of net photosynthesis (PN) or photorespiration (Rl), or on CO2 compensation concentration (Γ) measured during the whole vegetation period on detached leaves under optimum environmental conditions. Increased values in PN, RL and Chla andb contents were found in variantsII and I+II linked with a delay in leaf senescence before harvest. Transpiration rate and stomatal conductances of adaxial and abaxial epidermes were not significantly affected by any treatment.

Effect of gibberellic acid and nitrogen on carbonic anhydrase activity and mustard biomass

N. A. Khan, H. R. Ansari, M. Mobin

Biologia plantarum 38:601-603, 1996 | DOI: 10.1007/BF02890614

In mustard(Brassica juncea L.) addition of 20 mM nitrogen (in the form of NaNO3) inhibited after 50 d the activities of carbonic anhydrase and nitrate reductase and net photosynthetic rate. However, when nitrogen was applied in association with the foliar spray of gibberellic acid, the inhibition was reversed and the above parameters and also leaf area index and dry mass were enhanced.

Leaf anatomy of highbush blueberry grownin vitro and during acclimatization toex vitro conditions

N. Noé, L. Bonini

Biologia plantarum 38:19-25, 1996 | DOI: 10.1007/BF02879626

Leaves of micropropagated highbush blueberry (Vaccinium corymbosum) cv. 'Bluetta' have been observed during the acclimatization phase. In vitro-developed leaf cells were circular and small, the spongy parenchyma was discontinuous and disorganized and formed by 1-2 layers of cells with large intercellular spaces and the palisade to spongy mesophyll thickness ratio was 1:1.5. After rooting ex vitro, the first leaves formed under natural conditions showed substantial changes in the anatomical characteristics. After 6 months, the plants produced leaves similar to those in field-grown plants. The palisade cells were rectangular, the spongy parenchyma was formed by 3-4 layers of cells and the intercellulars were around the stomata. Leaves from field-grown plants lost 24 % of water during 150 min after excision while leaves from in vitro shoots lost about 50 % of water in the same time. Leaves from in vitro shoots showed a higher number of smaller stomata (361 per mm2), with the guard cells forming a circular ring; the stomata frequency in field-grown leaves was 241 per mm2 and the guard-cells were elliptical.

Regions of lead uptake inLemna minor plants and localization of this metal within selected parts of the root

G. Kocjan, S. Samardakiewicz, A. Woźny

Biologia plantarum 38:107, 1996 | DOI: 10.1007/BF02879643

Investigations were carried out to determine the sites of lead uptake within the frond and the root ofLemna minor. With the sodium rhodizonate four regions favoured in lead uptake were distinguished: the frond region between the base and the node, the basal part of the root, and the regions at the proximal and distal ends of the root cap. For analysis in electron microscope only the root regions were chosen. The highest rate of lead uptake was found in the basal part of the root. Lead was present in the apoplast of this region after 5 min of exposure and was observed in the stelar cells after 30 min of incubation. Lead deposits were detected mostly in the cell walls adjacent to the plasma membrane and in the lumen of several endomembrane compartments - the endoplasmic reticulum (ER), dictyosomal vesicles, nuclear envelope and the vacuoles. Lead induced changes of cell ultrastructure; an increase in the number of membraneous structures, swelling of ER cisternae and distortion of the dictyosomal cisternae were observed after 2 to 6 h of exposure.

Effects of ultraviolet-B enhanced radiation and temperature on growth and photochemical activities inVigna unguiculata

N. Nedunchezhian, G. Kulandaivelu

Biologia plantarum 38:205, 1996 | DOI: 10.1007/BF02873847

Changes in growth characteristics and photochemical activities inVigna unguiculata L. Walp seedlings maintained at constant temperature of 10, 20, 30 and 40 ‡C under control and ultraviolet-B enhanced radiation (UV-B) were investigated. UV-B retarded the shoot elongation and also leaf expansion to a great extent at 30 ‡C but produced only marginal changes at 20 and 40 ‡C. Similar response was also observed with respect to changes in leaf fresh and dry masses and total chlorophyll (Chl) content under these temperatures. At 10 ‡C the total Chl content was 3-fold higher under the treatment than under control conditions. In seedlings growing at 20 and 30 ‡C the overall photosynthetic electron transport (H2O -> methyl viologen) showed a significant enhancement during the 36-h UV-B treatment and thereafter a gradual reduction. Although a similar trend was found in photosystem 1 (PS1), the inhibition even after 60 h of UV-B treatment was not statistically significant. Photosystem 2 (PS2) activity was inhibited in seedlings treated for 60 h by UV-B at 20 and 30 ‡C. However, no inhibition was observed at 40 ‡C. No detectable photochemical activity was found in seedlings grown at 10 ‡C under either control or UV-B enhanced irradiation although the chloroplasts contained Chl.

Embolism vulnerability of an evergreen tree

M. A. Sobrado

Biologia plantarum 38:297, 1996 | DOI: 10.1007/BF02873864

Leaf bearing stems ofCuratella americana L. were very susceptible to induced cavitation: embolisms began at a pressure of 0.5 MPa (15 %) and at 2.0 MPa most of the conductivity was lost (85 %). Nevertheless, in nature similar leaf specific conductivities, of about 90 x 10-5 kg m-2 s-1 MPa-1 during both wet and dry seasons indicated absence of drought induced embolisms. Leaf water potentials were neither very negative or considerably different between seasons but stomatal conductance decreased from 236 mmol m-2 s-1 measured during wet period to 100 mmol m-2 s-1 during drought season. Therefore, it was concluded thatCuratella had an accurate homeostatic balance of leaf water status to keep up xylem integrity.

Lobban, C.S., Harrison, P.J.: Seaweed Ecology and Physiology

Z. Šesták

Biologia plantarum 38:396, 1996 | DOI: 10.1007/BF02896669

Abscisic acid content in the root hemiparasiteMelampyrum arvense L. before and after attachment to the host plant

Z. Lechowski

Biologia plantarum 38:489, 1996 | DOI: 10.1007/BF02890593

The content of abscisic acid (ABA) in abaxial leaf epidermis of the host (Capsella bursa pastoris) and the unattached hemiparasiteMelampyrum arvense showed diurnal changes. ABA content increased during the light period and declined rapidly upon the darkening of leaves. In an attached hemiparasite the content of ABA in the epidermis was maintained at an almost constant level irrespective of the diurnal cycle. As compared with the maximum level in the host, at the end of the light phase the content of ABA in abaxial epidermis constituted about 70 % and 164 % in the unattached and attached hemiparasite, respectively. No significant changes in ABA content were recorded in adaxial epidermis. In all the samples abaxial/adaxial epidermis ABA content ratio was about 3.6:1 in light phase. In darkness this ratio decreased to about 1.1:1 in the host and the unattached hemiparasite and did not show significant change after attachment. ABA content ratio in mesophyll was 1:0.7:1.5 for the host, the unattached, and attached hemiparasite, respectively. In comparison with the host the concentration of ABA in xylem sap of the hemiparasite constituted about 31 % and 152 % for the unattached and attachedM. arvense, respectively.

Distribution of the stress-related anionic peroxidases in different cucumber organs

V. Repka, I. Fischerová

Biologia plantarum 38:571, 1996 | DOI: 10.1007/BF02890609

The distribution of the stress-related anionic peroxidase (srPRX) activity was investigated in various organs of cucumber (Cucumis sativus L. cv. Laura) during their development by activity staining and immunoblotting. In shoots, including cotyledon, leaf, stem and tendril, three stress-related peroxidase isoenzymes were present, particularly in old ones. The PRX1 was the only srPRX isoenzyme found in both young and old roots. As fruits became mature, srPRX activity increased dramatically and was particularly enriched in the external parts of the fruit. The PRX1 isoenzyme was highly accumulated in the course of seed germination, while the absence of other two srPRX isoenzymes (PRX2 and PRX3) was recorded. The possible function of the srPRX is discussed, with respect to this spatio-temporal distribution.

Book review

J. Gloser

Biologia plantarum 38:70, 1996 | DOI: 10.1007/BF02879637

Book review

M. Barták

Biologia plantarum 38:176, 1996 | DOI: 10.1007/BF02873841

Germination of dormant seeds ofStylosanthes humilis as related to heavy metal ions

C. A. Delatorre, R. S. Barros

Biologia plantarum 38:269, 1996 | DOI: 10.1007/BF02873859

Cadmium, copper and zinc ions at high concentrations partially released scarified freshly-harvested seeds ofStylosanthes humilis from physiological dormancy. This response to toxic metals increased along with seed postharvest ageing. Cobalt and silver ions, and abscisic acid impaired metal-promoted germination.

Abscisic acid and Ethrel abolish the inhibition of adventitious root formation of paclobutrazol-treated bean primary leaf cuttings

I. Tari, M. Nagy

Biologia plantarum 38:369, 1996 | DOI: 10.1007/BF02896664

Paclobutrazol (PB), a triazole growth retardant and an inhibitor of gibberellin biosynthesis, reduced at 17 μM concentration the adventitious root formation of bean primary leaf cuttings. Treatments with 5 μM ABA or 4 μM Ethrel, an ethylenereleasing compound, restored the rooting of PB-treated cuttings. Ethylene production and the content of the precursor 1-aminocyclopropane-l-carboxylic acid (ACC) were enhanced in root-forming tissues of PB-treated petioles 48 h after ABA application. The effect of ABA could be abolished by 10 μM CoCl2, an inhibitor of ACC oxidase. Thus, ABA might stimulate rooting through its effect on ethylene release. 2 mM silver thiosulphate, an inhibitor of ethylene action, decreased the rooting of PB-treated cuttings similarly to Co2+, but failed to negate the ABA effect. These data indicate that the effect of PB on rhizogenesis is not associated directly with the inhibition of the biosynthesis of gibberellins

Inhibition of chlorophyll biosynthesis by lead in greeningPisum sativum leaf segments

R. S. Sengar, M. Pandey

Biologia plantarum 38:459-462, 1996 | DOI: 10.1007/BF02896681

Supply of 0.01 to 1.0 mM lead acetate to greening pea(Pisum sativum L.) leaf segments either in the absence or in the presence of inorganic nitrogen lowered total chlorophyll (Chl) content. During a time course study, there was not any appreciable effect of Pb2+ upto 4 h but thereafter Pb inhibited Chl synthesis. While supply of succinate, cysteine dithiothreitol, 5,5-dithio-bis-2-nitrobenzoic acid and NH4C1 had no protective action against Pb2+ toxicity, and glycine, glutamate 2-oxoglutarate, MgCl2, KH2PO4, CaCl2, KC1 protected only partially, reduced glutathione (GSH) could completely overcome the inhibition of Chl biosynthesis by the metal. It is suggested that Pb2+ interferes with Chl biosynthesis through GSH availability

Growth, nodulation and nitrogen fixation in soybean as affected by air humidity and root temperature

J. Stoyanova

Biologia plantarum 38:537, 1996 | DOI: 10.1007/BF02890604

Growth, nodulation and N2 fixation inGlycine max L. Merr., cv. Biison as affected by the relative humidity of air (RH) during the dark period (95 or 50 - 65 %) and day/night root temperature (Tr) (28/28, 25/25, 18/18, 22/28, 22/18 °C) were studied. The growth parameters (plant fresh and dry mass, yield), nodulation (nodule number and fresh mass) and N2 fixation abilities (total nitrogen content, nitrogenase activity) increased significantly with the increasing Tr. In addition, at the same Tr during the day all studied parameters were increased at the higher Tr during the dark period. Growth, nodulation and N2 fixation were significantly enhanced at low RH. The findings indicate that all studied parameters could be regulated by environmental factors during the dark period.

Spectroscopic Methods for Determining Protein Structure in Solution

J. Nauś

Biologia plantarum 38:620, 1996 | DOI: 10.1007/BF02890621

Sulphydryl groups in the maintenance of the activity of binding protein for N-1-naphthylphthalamic acid fromAcer pseudoplatanus cells

T. Xing, J. F. Hall, R. D. J. Barker, M. C. Elliott

Biologia plantarum 38:47-51, 1996 | DOI: 10.1007/BF02879632

Binding protein for N-1-naphthylphthalamic acid (NPA), an auxin transport inhibitor, was studied by analysis of the effects of reactions which modify particular amino acid side chains upon their binding activity. Na2SO3, N-ethylmaleimide (NEM) and dithiobisnitrobenzoic acid all inhibited the specific binding of NPA to its binding protein fromAcer pseudoplatanus L. cells. The presence of 10-6 M Na2SO3 in the binding assay reduced the affinity of the binding protein to NPA from Kd of 1.5 £ 10-8 M to Kd of 2.1 £ 10-8 M, while concentration of the binding protein was not significantly changed. When the same analysis was applied to NPA binding to the NEM-treated membrane particles, it was found that NEM inactivated binding without changing the affinity for NPA. This study revealed the importance of sulphydryl group(s) in the maintenance of NPA binding protein activity.

Effect of gibberellic acid on carbonic anhydrase, photosynthesis, growth and yield of mustard

N. A. Khan

Biologia plantarum 38:145, 1996 | DOI: 10.1007/BF02879650

The plants of mustard (Brassica juncea L.) were treated with 0, 25 and 50 ΜM gibberellic acid (GA3) at three fully developed leaf stage (30 d after sowing). Effect of GA3 on carbonic anhydrase activity, photosynthetic rate, leaf area index and dry mass was studied at 50, 70 and 90 d after sowing. At harvest 1000 seed mass, pod number and seed yield were recorded. GA3 treatment (50 ΜM) enhanced all the characteristics studied.

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