biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 4321 to 4350 of 6293:

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

Genetic aspects of plant nutrition, (Developments in Plant and Soil Sciences

Ingrid Tichá

Biologia plantarum 26:454, 1984 | DOI: 10.1007/BF02909597

Gaseous Air Pollutants and Plant Metabolism

Jarmila Solárová

Biologia plantarum 27:40, 1985 | DOI: 10.1007/BF02894632

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.

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

Dryland agriculture

Jarmila Solárová

Biologia plantarum 27:21, 1985 | DOI: 10.1007/BF02894627

The interaction of hormonal and environmental factors in leaf senescence

K. V. Thimann

Biologia plantarum 27:83, 1985 | DOI: 10.1007/BF02902140

The work concerns the senescence of isolated young leaves of oats (Avena sativa) floated on water or solutions. Senescence is rapid in darkness but slow in white light; the effect of light is not due to photosynthesis, but is paralleled by stomatal opening. Closure of the stomata by osmotic or chemical means makes senescence in light proceed as fast as in darkness, while opening the stomata in darkness by cytokinins, fusicoccin,etc., delays senescence to rates typical of light. The osmotic closure in light is mediated by abscisic acid, and since this also accumulates in darkness it appears as a major factor controlling senescence. Efflux of ions into the solution; indicating increased permeability, occurs almost in parallel with senescence. Senescence in light is accelerated by 1-aminocyclopropane-l-carboxylic acid (ACC) and inhibited by cobalt, silver or aminoethoxyvinyl glycine (AVG) which interfere with ethylene production or action; however, ethylene's role is unclear because some reagents, including kinetin, that delay senescence, actually increase ethylene production. At the endogenous level, therefore, ethylene may not be a limiting factor. Finally, a new ethylene-generating system is described in which the dehydrogenation of linoleic acid is coupled through manganese to the oxidation of ACC; it is probably activein vivo.

Cytokinin metabolism in autonomous and crown gall tissue cultures

J. W. Einset

Biologia plantarum 27:276-280, 1985 | DOI: 10.1007/BF02879860

When tissues ofCatharanthus roseus A6 crown gall were incubated on medium supplemented with 50 (μM N6-isopentenyladenine (i6Ade), endogenous i6Ade, N6-isopentenyladenosine (i6A) and i6A nucleotide (i6AXP) increased to. 6, 5 and 12 nmol g-1, respectively, during 100 h. Whereas i6Ade and i6AXP increased rapidly during the initial 4 h and then remained relatively constant, the level of i6A continued to increase to 25 nmol g-1 by 16 h and then decreased; Ribosylzeatin (io6A) and its nucleotide (io6AXP) remained constant at 1.5 and 1.7 nmol g-1, respectively. Upon transfer to cytokininless medium, i6Ade and i6AXP declined rapidly but i6A increased to 10 nmol g-1 after 4 h and then declined. Again, io6A and io6AXP were unchanged. Prolonged incubation of crown gall tissue on i6Ade completely inhibited growth. By contrast, nonrtransformed, autonomous tissue lines fromCalycanthus fertilis andActinidia chinensis Xarguta continued to proliferate on this medium. TheActinidia Une was shown to metabolize i6Ade to zeatin and to accumulate this cytokinin to levels in excess of 70 nmol g-1.

Chenopodium rubrum as a model plant for testing the flowering effects of PGRs

J. Ullmann, Frideta Seidlová, J. Krekule, Libuše Pavlova

Biologia plantarum 27:367-372, 1985 | DOI: 10.1007/BF02879878

In short-day plantChenopodium rubrum the photoperiodic requirement for flowering increases from one short day at the age of four days to two or three short days at the age of five to seven days. The photoperiodic requirement decreases again to one short day between the 10th and 12th day of cultivation. This feature, together with endogenous circadian rhythmicity of flowering, enabled us to test the effects of PGRs under different morphogenetic patterns. Representative PGR effects on flowering are quoted.

Book reviews

M. Kamínek, J. Toman, Helena Benešová, V. Škrdleta

Biologia plantarum 26:238-240, 1984 | DOI: 10.1007/BF02895058

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.

Hormonal control of growth and differentiation in conifer tissuesin vitro

C. H. Boenman

Biologia plantarum 27:249-256, 1985 | DOI: 10.1007/BF02879855

The mechanisms by which exogenously applied plant growth regulators act to express those genes that are selectively involved in cell and tissue differentiation are not at all well comprehended. However, the ontogenetic sequences of events that enable receptor or target cells to be activated and to undergo dedifferentiation and redifferentiation, can often be followed experimentally and can lead to a better understanding of the causal relations and control mechanisms in coordinated cell growth and development.
Cytokinins, applied either in an agar medium or as high-concentration, short-duration pulses to expiants or as high-concentration, intermittent sprays to intact plants, induce switches in the normal developmental pattern of cells of certain explanted tissues. Examples of cells that are particularly receptive are the subsidiary cells of stomatal complexes and the differentiating cells of very young presumptive leaf primordia, that is before the latter have become irreversibly determined as leaves.

Rapid interorgan communications in higher plants with special reference to flowering

C. Penel, Th. Gaspae, H. Greppin

Biologia plantarum 27:334-338, 1985 | DOI: 10.1007/BF02879873

Several examples of transmission of rapid signals within plants are described. Most of these signals may be inhibited by pretreating plants with LiCl, with inhibitors of ionic permeability, or with substances interfering with Ca2+. Accordingly, they are dependent on ionic changes. LiCl also prevents or delays the onset of flowering in long-day plants. In addition isolated organs or tissues most often do not react to an external stimulus as do similar organs or tissues within an intact plant. All these facts lead to the conclusion that plants are highly integrated organisms. Any change in the ionic equilibrium occurring in one part of these organisms has rapid consequences in other parts. This hypothesis may be applied to the floral process: after perception of the appropriate environmental conditions, the leaves modify the orientation of meristem differentiation by promoting the redistribution of ions (especially Ca2+, which has a "second messenger" function).

Role of hormones on flower bud formation in thin-layer expiants of tobacco

G. W. M. Barendse, A. F. Ceoes, G. van den Ende, Margaret Bosveld, Tineke Creemers

Biologia plantarum 27:408-412, 1985 | DOI: 10.1007/BF02879889

Flower bud formation was studied in thin-layer tissue expiants of epidermis plus subepidermal cortex from the inflorescence ramifications ofNicotiana tabacum cv. Samsun. With appropriate hormone concentrations of BA and NAA expiants from flowerv and fruitbearing stalks regenerate flower buds only, while those from the internodes of the inflorescence ramifications produce generative as well as vegetative buds. In both types of expiants the number of buds formed depend mainly on the hormone concentrations but, in addition, the age of stalks and internodes from which expiants are taken also affects bud formation. Both ABA and JA inhibit flower bud formation in expiants of flower stalks. JA was shown to particularly inhibit bud initiation.

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.

Cooke, M., Dennis, A. J.: Polynuclear aromatic hydrocarbons: formation, metabolism and measurement

Kateřina Pánková

Biologia plantarum 27:130, 1985 | DOI: 10.1007/BF02902148

Briggs, W. R., Jones, R. L., Walbot, V. (ed.): Annual review of plant physiology

Z. Šesták

Biologia plantarum 27:220, 1985 | DOI: 10.1007/BF02902164

Böhmer, B.: Ratgeber für Pflanzenschutz und Unkrautbekämpfung im Zierpflanzenbau

P. Bartoš

Biologia plantarum 27:309, 1985 | DOI: 10.1007/BF02879867

Chemical control of flowering in the long-day plantLemna gibba G3

C. F. Cleland

Biologia plantarum 27:392-397, 1985 | DOI: 10.1007/BF02879884

Lemna gibba G3 is an ideal system for studying the chemical control of flowering in a photoperiodic plant due to its small size and aquatic growth habit which allow substances to be taken up continuously and rapidly distributed throughout the plant. Each of the known plant growth regulators has been tested onL. gibba G3 and only the gibberellins appear to be important for flowering, although they are not the limiting factor for flowering on short days. Salicylic acid (SA) and ferricyanide will both induce flowering inL. gibba G3 with ferricyanide being most effective on short days where flowering is daylength limited and SA most effective where flowering is limited by factors other than daylength. The ferricyanide action is probably due to HCN and it may act during photoperception or photoinduction. SA is most effective when reversing the inhibition caused by various parameters including copper and agar, and its effect is always strongly daylength dependent. It is postulated that SA may interact with the flowering stimulus to promote flowering and thus that SA acts at some point following photoinduction and the formation of the flowering stimulus.

Crown gall tumors inCentaurium

Jana Dusbábková, J. Nečásek, K. Pešina

Biologia plantarum 27:465-467, 1985 | DOI: 10.1007/BF02894720

Agrobacterium tumefaciens C58M (a nopaline strain) was used for induction of crown gall tumors inCentaurium umbellatum Gilib. The formation of tumors is very rare. After elimination of bacteria the tumor tissues grow in the light on R3B medium without growth regulators. They are positive in nopaline synthase.

Mutational events after recurrent or chronic exposures of mutagenic and promutagenic N-nitroso compounds to a heterozygous tobacco tester strain

J. Bříza, T. Gichner, J. Velemínský, Z. Opatrný

Biologia plantarum 27:22-27, 1985 | DOI: 10.1007/BF02894628

Recurrent exposures (17 administrations in 37 days) to the direct-acting mutagens N-methyl-N-nitrosourea and N-ethyl-N-nitrosourea and a chronic exposure (38 days) to the metabolism-requiring mutagen dimethylnitrosamine markedly increased the frequency of somatic mutations in a double heterozygous chlorophyll mutant ofNicotiana tabacum, whereas exposure to N-methyl-N'-nitro-N-nitrosoguanidine was ineffective.

Cytokinins in maturing and germinatingLupinus luteus L. seeds

J. S. Knypl, D. S. Letham, L. M. S. Palni

Biologia plantarum 27:188-194, 1985 | DOI: 10.1007/BF02902159

3H-labelled zeatin riboside (ZR) was applied to pod walls of intactLupinus luteus L. plants. Metabolites present in mature, dry seeds were zeatin nucleotide (ZNT), zeatin riboside (ZR) and zeatin (Z), zeatin O-glucosides and lupinic acid (LA), and the corresponding dihydro-derivatives of the cytokinins listed. Endogenous cytokinins were rapidly metabolised in germinating seeds. In seeds labelled with [3H]ZR for 90 min following a 2 h period of imbibition in water, ZR was actively converted to ZNT and dihydro-ZNT but the prevailing CTK was Z in cotyledons and ZR in embryo axes (EA); later LA and dihydro-LA, and O-glucoside metabolites accumulated. When [3H] zeatin was introduced into imbibing seeds, it was converted to dihydro-ZNT, ZNT, dihydro-ZR, ZR and dihydro-Z; in EA of the Z-labelled seeds, dihydro-ZR and ZR were the main cytokinins. After incubation of the Z-labelled seeds for 6 h in water, the ratios of dihydro-ZNT: ZNT and dihydro-ZR: ZR were, respectively, 20: 1 and 3.4: 1 in EA, and 3.5: 1 and 1.4: 1 in cotyledons.

Woodward, F. I., Sheehy, J. E.: Principles and Measurements in Environmental Biology

Jana Pospíšilová

Biologia plantarum 27:280, 1985 | DOI: 10.1007/BF02879861

Jameson, C. W., Walters, D. B.: Chemistry for Toxicity Testing

J. Velemínský

Biologia plantarum 27:372, 1985 | DOI: 10.1007/BF02879879

Effect of gibberellic acid on organogenesis in buckwheat tissue culture

Veroslava Srejović, Mirjana Nešković

Biologia plantarum 27:432, 1985 | DOI: 10.1007/BF02894712

Buckwheat cotyledons were induced to form callus tissuein vitro, in which shoots or roots could be regenerated, by changing the hormonal composition of the medium. The effect of gibberellic acid (GA3) was studied in these processes. Addition of GA3 to cell division medium during the first 5 days after inoculation did not interfere either with the induction of cell division, or with the subsequent organogenesis. However, GA3 had a very pronounced effect on organogenesis when added immediately upon the transfer of expiants to organ induction medium. While root initiation was accelerated and root number increased, bud induction was inhibited. An initial GA3 treatment had a long-lasting effect on bud induction and the tissue recovered from inhibition only in the fifth subculture.

Effects of some carbon sources on growth and nitrogen fixation in the cyanobacteriumNostoc linckia

D. K. Mishra, H. D. Kumar, M. Jha

Biologia plantarum 27:1, 1985 | DOI: 10.1007/BF02894623

Glucose, fructose, sucrose, maltose, and lactose stimulated photoheterotrophic growth ofNostoc linckia (Roth.)Born. as well as its heterocyst frequency, chlorophyll and protein contents, ammoniacal nitrogen uptake and nitrogenase activities. Glucose, fructose and sucrose also supported slow chemoheterotrophic growth. α-ketoglutarate, pyruvate, ribose, succinate, acetate, sorbose and formate were inhibitory.

Book review

Jarmila Solárová, Dagmar Dykyjová

Biologia plantarum 27:77-78, 1985 | DOI: 10.1007/BF02894640

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