biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 4261 to 4290 of 6171:

Apical reactions to gibberellic acid application according to the genotype in Silene armeria

Christiane Besnard-Wibaut, Michèle Noin, T. Cochet

Biologia plantarum 27:360-366, 1985 | DOI: 10.1007/BF02879877

Two selected strains ofSilene armeria L. were used: S1-2 (GA-line, not induced to flowering by GA3 in SD of 8 h) and S2-1 (GA+ line which reacts to GA3 with flowering in non-inductive photoperiod). Moreover S1-2 and S2-1 differ in their critical daylength 14.5 and 8.0 h, respectively. Changes in the mitotic index and DNA content of cells in the various zones of the apical meristem during GA3 treatment were described. At the start of the experiment, the functioning of the apex was characterized by a predominance of G1 phase in the two strains. Therefore S2-1 differed by a higher mitotic activity specially in the central zone. In S1-2, GA3 acted mainly on the rib-meristem cells, which resulted in stem elongation. Lack of response in the cells of the central zone explains why GA3 fails to induce flowering in this strain. In S2-1, GA3 acted mainly on the central zone where a gradual increase in mitotic acitivity and in the percentages of nuclei at the (S + G2) level was recorded. This stimulation brought the meristems into the prefloral stage. The differences between the two strains are discussed according to the status of control meristems. The reactions induced by GA3 were compared with the pattern of changes during induction, in LD.

Screening of compounds for antimutagenic properties towards dimethylnitrosamine-induced mutagenicity inArabidopsis thaliana

T. Gichner, J. Velemínský, F. Pospíšil

Biologia plantarum 27:417-423, 1985 | DOI: 10.1007/BF02894710

The inhibitor of microsomal monooxygenase activities 9-hydroxyellipticine markedly inhibited the frequency of embryonic and chlorophyll mutations induced by the metabolism-requiring mutagen dimethylnitrosamine (DMN) in a higher plantArabidopsis thaliana, but had no effect on the frequency of mutations induced by the direct-acting mutagen N-methyl-N-nitrosourea (MNU). The presence of thiol containing compounds thiourea and cysteine before and during DMN or MNU treatment resulted in a decline of mutation frequency as compared to treatment with either nitroso compound alone. In contrast, the mutagenicity of DMN and. MNU was not altered in the presence of two other thiol compounds, thiouracil and glutathion and by six naturally occurring phenolic acids: ellagic. vanillic, cinnamic, coumaric, caffeic and ferulic acids.

Sucrose synthesis in callus cultures

S. Hisajima, Y. Arai, T. A. Thorpe

Biologia plantarum 27:74-77, 1985 | DOI: 10.1007/BF02894639

Occurrence and operation of sucrose synthetic system in randomly selected callus cultures such as persimmon, soybean and poplar cultures were examined by14C-tracer analysis and determining enzyme activities involved in sucrose metabolism. All the enzymes examined were present and14C-glueose was transformed into14C-sucrose in every callus. Sucrose synthetic capacity appears to be widely distributed in cultured plant tissues.

Auxin biosynthesis and its regulation on the molecular level

M. Kutáček

Biologia plantarum 27:145, 1985 | DOI: 10.1007/BF02902152

IAA synthesis proceeding by indol-3-ylpyruvate (IPyA) pathway seems to be regulated in two steps. In the first the L-trp conversion into IPyA is reduced by a low affinity of L-trp to the unspecific aminotransferase, by competition of L-trp with some aminoacids (e.g. L-asp) and indoles (e.g. indol-3-ylacetylaspartate). Simultaneously, a specific L-trp-dehydrogenase in dependence on the NAD(P)/NAD(P)H ratio regulates by its reversible effect the level of IPyA, connecting photosynthesis with growth. A second more "delicate" regulation of IAA level is carried out by the indol-3-ylacetaldehyde system. In pea plants two indol-3-ylacetaldehyde oxidases with pH optima 4.5 and 7.0 were found. The oxidases are differentially inhibited by an excess of IAA, different indoles as indol-3-ylacetylaspartate and aminoacids as L-asp. GA3 and kinetin stimulate the conversion of indol-3-ylacetaldehyde to IAA.

Determination in plant cells

P. F. Wareing, T. Al-Chalabi

Biologia plantarum 27:241-248, 1985 | DOI: 10.1007/BF02879854

The possibility that some of the variation in callus cultures involves epigenetic changes is examined in cultures established from the hypoootyls and roots ofEuphorbia heterophylla. It is shown that the responses of the cultures are affected by the light regimes under which they are grown and that in the dark and under short photoperiods, there are differences between the two types of culture with respect to pigmentation, auxin requirement, capacity to regenerate buds and roots and in certain isozyme patterns, whereas the two cultures are similar from the first passage under continuous light. However, these differences are only maintained for 2-3 passages, after which the root callus becomes similar to the hypoc otyl callus. Evidence is presented that these differences between cultures are epigenetic. Callus cultures established from the apical meristems of shoots and roots ofE. hetero phylla show similar differences to those observed between hypocotyl and root cultures and these differences are also lost after 3 passages. These results indicate that the cells of apical meristems are not totally uncommitted, but are determined as 'shoot' and 'root' meristem colls, respectively. The practical importance of a better understanding of epigenetic effects in plant cells is strassed.

In vivo andin vitro studies of peroxidase and IAA-oxidase activity in relation to floral morphogenesis in 'Trapezond' tobacco

Lidiya Sergeeva, Nina Aksenova, Tat'yana Konstantinova

Biologia plantarum 27:330-333, 1985 | DOI: 10.1007/BF02879872

The decrease of peroxidase (PO) and IAA-oxidase (IAAO) activities in stem bark of intact photoperiodically neutral tobacco plants was shown both in the course of development and in an acropetal direction along the stem as related to flowering regulation. In stem expiantsin vitro, the realisation stage of floral morphogenesis is related to an increase in PO and IAAO. This correlates with low auxin concentrations in the medium as required for floral morphogenesis. The changes in both PO and IAAO are suggested to be in the opposite directions during floral induction and floral morphogenesis.

Book reviews

T. Gichner, J. Velemínský

Biologia plantarum 27:407, 1985 | DOI: 10.1007/BF02879888

Seasonal changes in the photosynthetic response ofMercurialis perennis plants from different light regime conditions

Elena Masarovičova, P. Eliáš

Biologia plantarum 27:41-50, 1985 | DOI: 10.1007/BF02894633

Curves relating net photosynthetic rate to irradiance [P(I) curve relation] were estimated and analysed inMercurialis perennis L. plants stemming from three forest (spruce, beech and ash) stands with different tree leaf canopy development and different light regime.
The saturating irradiance (Is) reached the highest values in plants of all three stands in spring (spruce forest: 438 W m-2, beech forest: 440 W m-2 and ash forest: 367 W m-2), it declined sharply in the middle of the growing season (283, 285 and 297 W m-2, respectively) and this Is level persisted until autumn. A pronounced dynamics in plants from spruce and beech forests made itself manifest also in the adaptation (Ia) and compensating (Ic) irradiances, respectively. After a sudden decline in summer, values in autumn were close to those of the vernal season.
The most pronounced parameter, which optimally expressed the adaptation ofMercurialis perennis to various light conditions, was the photosynthetic efficiency (α) calculated as the slope of the linear part of the curve relating net photosynthetic rate to irradiance.
At the time of the highest PN sat. value in course of the growing season (August) (spruce forest: 100, beech forest: 98.7 and ash forest: 85.8 μg CO2 m-2 s-1), RD was in its minimum; in autumn PN sat. reached the lowest values which corresponded to the most intensive RD.
It was found thatMercurialis perennis plants stemming from forest stands with different light conditions did not make use equally of the altering light conditions in the course of the growing season. By the underlying analysis of P(I) curves this rhizomatous perennial herb (geophyte) may be characterized as a shade tolerant species.

Influence of inhibitors of alternative respiration pathway and oxygen on growth and proton secretion

M. Böttger, H. -J. Soll, M. Bigdon

Biologia plantarum 27:125, 1985 | DOI: 10.1007/BF02902147

A possible involvement of the alternative oxidase pathway in proton translocation was investigated. Net H+ efflux- and elongation-rates were simultaneously and continuously measured by means of a pH-stat and an angular position transducer. Disulfiram, an inhibitor of the alternative path, reduces the IAA- and Fusicoccin-induced as well as endogenous proton secretion and growth. Fusicoccin-induced H+ secretion is very sensitive to reduced oxygen concentration values far apart from the Km of cytochrome oxidase. The sensitivity of non stimulated proton secretion to reduction of oxygen concentration depends on the age of plant material. It is proposed that more than one system is responsible for proton translocation across the plasmalemma. One of them has a high sensitivity to reduced oxygen concentration which is within the same range of the high Km value of the alternative oxidase.

Control of growth by auxin and its specific neutral inhibitor

R. M. Muir

Biologia plantarum 27:216, 1985 | DOI: 10.1007/BF02902163

Evidence for the existence of a neutral inhibitor specific for auxin has been in the literature for 45 years. The inhibitor is demonstrable by its effect in causing positive curvature of theAvena coleoptile. The growth of the mesocotyl of oat and corn seedlings in darkness and its inhibition by light are determined by the neutral inhibitor as is the phototropic response of the sunflower stem. Production of the inhibitor is promoted by red and fluorescent light. Irradiance at 730 nm promotes auxin production while irradiance at 660 nm promotes production of the inhibitor. The positive curvature induced by 2,3,5-triiodobenzoic acid can be used to quantify the neutral inhibitor. Since the benzoic acid is more effective than iodoacetate in reacting with the sulfhydryl of cysteine, a sulfhydryl group is indicated to bo one reaction site for auxin and to be the basis of polar transport.

The role of auxin in inductive phenomena

W. P. Jacobs

Biologia plantarum 27:303-309, 1985 | DOI: 10.1007/BF02879866

The current status of our knowledge of auxin effects on floral induction is summarized. The most general effect is inhibition, although the concentration of synthetic auxins added to. plants tends to be too high for us to be certain that the inhibitory effects are truly physiological. Studies of endogenous levels of auxin have focused almost entirely on IAA-like bioassay activity. Chemical identifications of endogenous IAA are needed and feasible. In addition, a search for-other auxins involved in vegetative to floral transitions, their chemical identification, and measurement of their changing levels in the plant are urgently needed.

Root-shoot correlation linked with photoperiodic floral induction inChenopodium rubrum L.

Zuzana Josefusová, Jana Opatrná, Libuše Pavlová

Biologia plantarum 27:386-391, 1985 | DOI: 10.1007/BF02879883

Inhibition of root growth was observed inChenopodium rubrum under photoperiodic conditions inducing flowering. That this inhibition is mediated by the cotyledons was shown directly by the effect of their excision, which changes the responsiveness of the roots to photoperiodic treatment. On the other hand, decapitation did not lead to such an effect. Some evidence is put forward suggesting that changes in IAA may be involved in these correlations. The existence of two different mechanisms of photoperiodic action in flowering and in root growth is proposed to explain these differences.

Stratification of tropical forests as seen in leaf structure (tasks for vegetation science vol. 6)

Ingrid Tichá

Biologia plantarum 27:464, 1985 | DOI: 10.1007/BF02894719

Book review

T. Giohner

Biologia plantarum 26:15, 1984 | DOI: 10.1007/BF02880418

Ude, J., Koch, M.: Die Zelle. Atlas Der Ultrastruktur

Ingrid Tichá

Biologia plantarum 26:120, 1984 | DOI: 10.1007/BF02902275

Do volvocal algae form their cultures as autonomous systems?

J. Nečas

Biologia plantarum 26:189, 1984 | DOI: 10.1007/BF02895048

A low reproducibility of some characteristics in the life cycle of the volvocal algaChlamydomonas geitleri was observed in repeated experiments. The sets of the cultures were very similar in the number of the studied characteristics, but some of them differed significantly in one or several characteristics whereas the others agreed in a whole set. This is documented by the growth in a nitrogenless medium, the formation of zygotes, and their maturation and germination. The results of a small representative set of experiments were treated by an analysis of variance. Some possible explanations are discussed.

Influence on chromosome behaviour, nucleic acid content and ultra-structural analysis of accessories inUrginea indica KUNTH.

Sumita Jha, Sumitra Sen

Biologia plantarum 26:260-262, 1984 | DOI: 10.1007/BF02902906

The occurrence of polysomaty was noted in a diploid cytotype ofUrginea indica with B chromosomes. These accessories could be clearly distinguished from the other chromosomes in their stainability, very small size, morphology, variability and irregular behaviour. The variant nuclei were hyperdiploid, hypertriploid and hypertetraploid. B chromosomes were noted only in diploid cells and no accessories could be recorded in cells showing higher chromosome number.
The amount of DNA content as indicated by the absorbance is rather low as compared to the diploid without accessories which may be due to the shorter size of the chromosomes. Under ultrastructural study subterminal centromeric region of B chromosome show low electron dense appearance.

Book review

Ingrid Tichá

Biologia plantarum 26:348, 1984 | DOI: 10.1007/BF02898570

The integration of growth activity in vegetatively propagated poplar during the establishment year

Mária Luxová

Biologia plantarum 26:433-440, 1984 | DOI: 10.1007/BF02909593

On rooting the poplar stem cutting, the growth processes are coordinated so as to ensure optimum development of the new, vegetatively acquired individual. At first, adventitious roots develop on the cutting from latent root primordia. A part of them is short-lived, but in the meantime other, the so-called wound adventitious roots initiate from the callus on the lower cut surface of the cutting, which complement the permanent root system. In this way, conditions are prepared for a rapid growth and development of the stem, which forms from the upper bud on the cutting. The action of apical meristems providing the elongation of the stem and root, is followed by the action of vascular cambium. By the radial growth of organs controlled by cambium, the capacity of substance transport increases relatively to progressing development of the new plant. In the buried stem cutting cambium is the first to start functioning. Its reactivation is slow, discontinuous, and at the beginning it depends on local stimulating sources of the cutting itself. It was observed for the first time that, in addition to expanding buds, activated root primordia are also such sources of stimuli. The overall induction of cambial activity in the cutting occurs only in the period of rapid growth and development of the new stem, which thus becomes the main source of factors controlling the cambial activity of the cutting. In comparison with the growth of stem and cutting, the radial growth of adventitious roots is limited and there are considerable differences in the thickness of radial increments between individual roots.

Possibilities to reduce adverse effects of salinity by indole-3-acetic acid

A. M. Abdel-Rahman, A. H. Abdel-Hadi

Biologia plantarum 26:81, 1984 | DOI: 10.1007/BF02902270

Salinity caused a consistent reduction in the growth of cowpea plants and water content in their leaves. The total as well as the pigment fractions, except carotenoids, exhibited lower values than those of control plants at almost all salinity levels. With the rise of salinization, the total nitrogen and potassium contents in the leaves were decreased but the sodium content was increased and phosphorus content was not significantly affected as compared with the controls.
The application of IAA to salt-treated plants increased the water content in the leaves but it had no effect on the number of leaves and the stem length. The pigment contents in the leaves were either promoted or inhibited with the application of IAA, depending upon the level of salinization. The application of IAA to plants irrigated with water of the highest salinity level was effective in increasing the potassium content in the leaves as compared with the control, but it had no effect on the other mineral elements.

Gottschalk, W., Wolff, G.: Induced Mutations in Plant Breeding

J. Velemínský

Biologia plantarum 26:173, 1984 | DOI: 10.1007/BF02895043

Effect of phenolic acids on anthocyanin content in maize roots

Abha Jain, H. S. Srivastava

Biologia plantarum 26:241, 1984 | DOI: 10.1007/BF02902901

Supply of 0.01 to 5.0 mM salicylic, caffeic and gallic acids, either during imbibition of seeds for 24 to 48 h or during seedling growth increased anthocyanin production in maize (Zea mays L. cv. Ganga safed-2) roots. While tyrosine had no effect, phenylalanine either in the presence or absence of the phenolic acids increased anthocyanin content. Glucose in a concentration range of 1 to 20 mM and shikimic acid in 0.01 to 5.0 mM range also increased pigment level, which was higher in the presence of salicylic acid than in it.s absence. The experiments demonstrate the possibility of some indirect effects of salicylic acid and other phenolic acids on anthocyanin synthesis.

In memoriam of RNDr Jaroslav Brčák, DrSc.

F. Pospíšil

Biologia plantarum 26:319-320, 1984 | DOI: 10.1007/BF02902918

Water in plants bibliography

H. Göring

Biologia plantarum 26:409, 1984 | DOI: 10.1007/BF02909588

Nitrate reductase, nitrite reductase activities and leaf diffusive resistance in wheat under water deficit

S. K. Sharma, O. P. Garg

Biologia plantarum 26:151, 1984 | DOI: 10.1007/BF02902282

The flag and second leaves of wheat showed physiological and biochemical differences in the normal and water stressed plants. Although the flag leaf had lower enzyme activities in the control plants, in stressed plants it could continue nitrate assimilation better than the second and other leaves. The flag leaf also exhibited a higher tendency to resume normal metabolic activity after the release of stress as is indicated by higher NRA, NiRa, lower rad and rab.

Phosphorus uptake suppression in maize seedlings as related to humate supply

V. Tichý

Biologia plantarum 26:221-229, 1984 | DOI: 10.1007/BF02895054

The effect of sodium humate on phosphorus uptake by maize seedlings devoid of the endosperm was studied. Short-term experiments have shown that a suppression of phosphate ion absorption occurs under the described conditions in the presence of humate without decreasing the weight of experimental plants. The effect reported is delayed and is enhanced by prolonging the preliminary phase of starvation. It varies with the pH of the medium and reduces under extreme conditions the phosphate release from the root to the medium.

Markham, U. R.: Techniques of Flavonoid Identification.

J. Challice

Biologia plantarum 26:302, 1984 | DOI: 10.1007/BF02902913

Proteins of aleurone grains isolated from cotyledons ofLupinus luteus L.

Ligia Konopska

Biologia plantarum 26:378, 1984 | DOI: 10.1007/BF02898578

Lupin aleurone grains from dry cotyledons contain about 87% of globulin including 57% of proteins solubilized by NaCl solution and 30% by NaOH extractions, and also about 12% of albumin. Activity of acid protease with the optimum at pH 3.6-3.8 was associated with albumin. Albumin was separated by gel filtration on Ultrogel AcA 22 into 3 fractions with mol. m. 179 000, 113 000, and below 100 000, respectively. The component with mol. m. 113 000 prevailed and comprised about 60% of albumin. Globulin was composed mainly of two major components with mol. m. above 364 000 and about 280 000. These correspond to α-and β-conglutin fractions, respectively.
γ-conglutin minor globulin fraction of lupin aleurone grains was composed of about 66% glycoprotein. In contrast, about 82% of albumin lack glycosylation. Essentially, globulins in lupin aleurone grains are glycoprotein.

Inorganic plant nutrition. Encyclopedia of Plant Physiology, New Series

Ivana Macháčková

Biologia plantarum 26:460, 1984 | DOI: 10.1007/BF02909599

An improved system of subjecting plants to water stress

P. N. Singh, R. Prasad, M. Salim, A. Sharga

Biologia plantarum 26:16-21, 1984 | DOI: 10.1007/BF02880419

An improved system of plant cultivation at stable and specific levels of polyethyleneglycol (PEG, mol. mass 1400-1600) - induced water stress has been described. To set up this system a perforated tubular glass vessel containing soil to support seedling growth was wrapped externally first with a layer of macroporous silica gel-G and then with three layers of a dialysis membrane of a lower exclusion limit (2000 mol. mass). Effects of 8 days of PEG - induced stress have been studied on uptake and translocation of N and P and growth of barley (Hordeum vulgare L. cv. KN 16) seedlings. Some of the noteworthy improvements of the system were exelusion of PEG from the plant consequent upon use of silica gel-membrane combination, shorter time (2 days) for the soil-plant-air continuum to attain steady state, and stability of the plant water potential over a period of a few days.

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