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Book reviewBohumila BezvodováBiologia plantarum 32:387, 1990 | DOI: 10.1007/BF02898504 |
Evaluation of the most adequate organ of reference for sap analysis in the tomato plantM. E. Garcia López de Sá, P. AzuaraBiologia plantarum 33:91, 1991 | DOI: 10.1007/BF02897784 The most adequate organ of reference for sap analysis is studied during the phenological stage corresponding to the fructification of the second flower bud in the tomato plant grown in hydroponic culture with normal nutrient solution. Thus, the composition of the sap extracted from petioles of leaves in different stages of growth is studied. |
Receptors, membrane transport and signal transductionEva ZažímalováBiologia plantarum 33:454, 1991 | DOI: 10.1007/BF02897718 |
The growth of the shoot apical meristem during flower initiationR. F. Lyndon, N. H. BatteyBiologia plantarum 27:339-349, 1985 | DOI: 10.1007/BF02879875 The vegetative apex grows in an indeterminate, iterative mode. When flowers are formed it changes to determinate, sequential growth. The essential change in growth at the transition to flowering seems to be the decrease in primordium size at initiation, relative to the size of the apex. In the formation of the flower itself there may be a further requirement, that primordia undergo a decrease in absolute size at initiation. Where measured, this decrease is parallelled by a decrease in the size of the stem frustum at initiation. While in the case of the stem frustum this decrease in size has a predictable consequence, the reduced size of internodes in the mature flower, it is not clear how the reduction in size of the primordium is related to the subsequent development of flower parts. Reduction in primordium size seems to be fundamental to the changes in primordium arrangement and divergence angle that typically occur on flower formation, but not sufficient to cause the subsequent differentiation of floral parts. This presumably occurs as a consequence of the interactions between the developing primordia and substances present in the flowering apex. |
Polyamine metabolism in hants : Arginine and omithine decarboxylase activity in ripeningTrlticum durum seedsM. Cecilia Anguillesi, Isa Grilli, C FlorisBiologia plantarum 31:81, 1989 | DOI: 10.1007/BF02907235 The pattern of the activity of arginine decarboxylase (ADC) and omithine decarboxylase (ODC) involved in polyamine synthesis in ripening wheat seeds was examined. The aim was to study the polyamines and the activity of the two enzymes in correlation with the growth processes occurring in the developing wheat seeds. The results obtained showed a very different pattern of polyamine content in the two organs of caryopsis, and that the two enzymes in the embryos have a higher activity than in the endosperms. Moreover, while in the embryos the ADC exhibits higher activity than the ODC, in the endosperms the activity of ODC is about similar to that of ADC. This pattern is discussed in relation to the different histological characteristics of embryo and endosperm tissues during seed development. |
Influence of light on adventitious root formation in birch shoot culturesin vitroIna Pinker, K. Zoglauer, H. GöringBiologia plantarum 31:254, 1989 | DOI: 10.1007/BF02907285 The influence of light of different spectral composition and levels of irradiance (2-40 Wm-2) on adventitious root formation (ARF) in birch shoot segments was investigated. Spontaneous rooting of shoot segments occurred in segments with intact apical or axillary meristems. Concerning ARF shoot meristems could be substituted by application of auxin. The very low rooting percentage of shoot segments in darkness was improved considerably by auxin application. Irradiation of cuttings was a requirement for a high percentage of spontaneous rooting. The promoting effect of light was dependent on its spectral composition and was the highest under red followed by white and blue light. The low rooting response under blue light was enhanced almost to the red light level by shielding the root-forming cutting base from light. |
Anatomy ofZea mays andGlycine max seedlings treated with triazole plant growth regulatorsA. M. Barnes, R. H. Walser, T. D. DavisBiologia plantarum 31:370-375, 1989 | DOI: 10.1007/BF02876355 Soil drenches containing 250 μg of paclobutrazol or uniconazol (50 ml of a 17 μM solution) reduced the height of both corn (Zea mays L. cv. How.Sweet It Is) and soybean (Glycine max (L.) Merr. cv. A2) seedlings. With corn, uniconazol was considerably more active than paclobutrazol in reducing height whereas with soybean both compounds had similar dwarfing effects. The compounds increased foliar chlorophyll content and leaf thickness in soybean but had no effect on these parameters in corn. The increase in leaf thickness with soybean was due primarily to an increase in the thickness of the palisade cell layer. Chloroplast size and ultrastructure of both species were unaffected by the compounds. The growth regulators increased root diameter in both corn and soybean because of increased size of cortical parenchyma cells and particularly in soybean because of radial rather than longitudinal growth of the first few layers of the cortical parenchyma. |
Enucleation of protoplasts derived from suspension cultures of winged bean and from a crown gall cell line ofParthenocissus tricuspidataH. Fakhrai, H. Haq, P. K. EvansBiologia plantarum 30:401, 1988 | DOI: 10.1007/BF02890507 Protoplasts derived from suspension cultures of the winged bean and a crown gall lineof Parthenocissus tricuspidata were enucleated by centrifugation on iso-osmotic discontinuous Percoli gradients and on discontinuous sucrose-mannitol density gradients. Enucleation was achieved according to the buoyant density of the protoplasts and preparations of both cytoplasts and miniprotoplasts were recovered. The Percoll gradients gave more satisfactory results than the sucrose-mannitol gradients. Enucleation was increased by raising the centrifugal force from 20 kg to 60 kg. The presence of nuclei was determined by the DNA specific probe 4'6-diamidino-2-phenylindole (DAPI). Membrane integrity, as measured by staining with fluorescein diacetate, showed that some 85 % of the cytoplasts were bounded by an intact plasma membrane. |
The Influence of Some Phenolic Compounds on Nodulation in Pigeonpea (Cajanus cajan(L.) Millsp.)K. K. Dhir, Lalitha RaoBiologia plantarum 31:44, 1989 | DOI: 10.1007/BF02890677 Studies on exogenous application of phenolic compoundsviz: p-hydroxybenzoic acid, resorcinol and chlorogenic acid each with concentration of 10-4 M are done on the legume (Cajanus cajan (L.)Millsp.) AL-15. The effect of applied phenolic compounds as well as of structural differences in phenols indicate a marked influence of phenolic compounds in regulating growth processes in plants. Fresh and dry mass of various plant parts increased after foliar spray with phenols resulting in an improved harvest index. It is seen that phenols also play an important role in the initiation and development of nodules. |
Abscisic acid as a potent regulator of the transition from juvenile to mature stage inXanthium strumariumV. Z. Podolnyi, Zuzana Josefusova, Ina F. Khmelnitskaya, S. P. Verenchikov, J. Krekule, M. Kh. ChailakhyanBiologia plantarum 31:139-144, 1989 | DOI: 10.1007/BF02907247 The cotyledons ofXanthium strumarium plants are of low sensitivity to photoperiodic treatment and contain only trace amounts of ABA under long-day conditions. The first pair of leaves, very sensitive to photoperiodic treatment, contains a higher level ofABA, decreasing with age of the plant. Prolonged short-day photoperiodic treatment increases the ABA level in the cotyledons but this is still 10times lower than in the first two leaves. Exogenous 10-4M ABA increases the ABA level in the cotyledons to the level corresponding to that in the first leaves, and enhances the photoperiodic sensitivity of cotyledons. In contrast to cotyledons, the photoperiodic treatment affects the ABA level in the first pair of leaves only slightly. The authors propose that a high ABA level supports the transition of plants to flowering, while a low ABA level may be responsible for a low photoperiodic sensitivity of cotyledons inXanthium plants. |
Changes in transorgan electric potential inChenopodium rubrum during the course of photoperiodic flower inductionL. Adamec, J. KrekuleBiologia plantarum 31:344-353, 1989 | DOI: 10.1007/BF02876349 Electrophysiological processes were investigated in reception organs of photoperiodism in a model short-day plant,Chenopodium rubrum L. (selection 374), within the inductive cycle for flowering. Transorgan (surface) electric potential (Etr) was measured as a potential difference between the first leaf surface and the roots of an intact plant, and between the surface of an excised leaf and the petiole base. The time-course of Etr in intact plants showed irregular, or partially regular, oscillations within both phases of the inductive cycle and under continuous light. The highest amplitudes were during the postinductive light period. Etr in excised leaves behaved practically in the same way as in intact plants. The Etr oscillations were localized in leaves. In general, no electrophysiological changes were found in the reception organs within the inductive cycle which could be correlated with the formation and transport of floral stimulus, or with the attainment of an induced state. The results indirectly support the idea that the floral stimulus is chemical in nature. |
Biochemical frontiers of allelopathyG. R. WallerBiologia plantarum 31:418, 1989 | DOI: 10.1007/BF02876217 Allelopathic interactions between plants and other organisms have been recognized by scientists worldwide because they offer alternative uses in agriculture, such as decreasing our reliance on synthetic herbicides, insecticides, and nematicides for disease and insect control. The recognition of the role that allelopathy can have in producing optimum crop yields is of fundamental importance. Despite much optimism and some progress in unravelling the complexities of biochemical interactions between species, a firm foundation for the scientific rationale of the existence and function of the allelopathic phenomenon has not been developed. Allelopathic chemicals are primarily secondary products of plant metabolism which have been an enigma to plant scientists; however, they undergo a variety of reactions with plant, insect and animal species that inhibit or stimulate their growth and development. Examples of some allelochemicals and their basis of molecular and biological action are shown: interaction between the unicorn plant (Proboscidea louisianica L.) and cotton (Gossypium hirsutum L.); diterpenoid alkaloids (fromDelphinium ajacis L.) as allelochemicals; substances that occur in wheat (Tritcum aestivum) and wheat soil that cause autotoxic effects; alfalfa (Medicago sativa L.) root saponins as allelochemicals; humic acids from wheat soil as allelochemicals; and structure-function of flavonols serving as allelochemicals in chloroplast-mediated electron transport and phosphorylation. This paper concludes with a discussion of some frontier areas of research in allelopathy. |
Regeneration responses of callus from different expiants and changes in isozymes during morphogenesis in wheatH. S. ChawlaBiologia plantarum 31:121-125, 1989 | DOI: 10.1007/BF02907242 Immature embryo and root meristem expiants of wheat were cultured on modified medium of Murashige and Skoog and Gamborg's medium supplemented with 2,4-dichlorophenoxy acetic acid. Morphogeriic callus cultures were obtained from both the expiants. The frequency of shoot formation varied from 22% to 48% from callus obtained from embryos while only root formation could be induced from root meristem expiants. Cultures from young and old non-differentiating calli, and calli with shoot and/or root formation at different intervals were analysed for isozymes of esterase, peroxidase and acid phosphatase for studying the morphogenic capacity. With the development of shoot and/or root from callus, some conspicuous isozymes appeared which indicates the involvement of these isozymes in root/shoot development rather than in the induction of morphogenesis in callus. Basic isozyme pattern of each enzyme for the callus was retained in all the callus stages. |
The effect of temperature gradient on the transport phenomenon in roots of maize plants grown under salinity conditions. conductivity and filtration propertiesJ. MichalovBiologia plantarum 31:302-311, 1989 | DOI: 10.1007/BF02907292 An analysis of flows through primary root and first node root tissues of plants grown under conditions of salinity and nutrient deficiency induced by temperature gradients was carried out using. a mathematical model. The results obtained show that high KNO3 concentration in Knop's nutrient solution (salinity) causes an inhibition of volume and heat flows and that the omission of KNO3 from Knop's nutrient solution (deficiency) stimulates these flows. The causes of the inhibition lay in the fact that salinity reduced hydraulic, electric, and osmotic conductivity when compared with the control (Knop's solution), but relative to nutrient deficiency, it increased osmotic conductivity, electrodiffusion, diffusion, and filtration of heat flow induced by the electric and heat power. The causes of the stimulation were that deficiency partially decreased conductivities, similarly as salinity when compared with the control, and also decreased osmotic abilities of the system. By contrast, it increased heat conductivity and corresponding filtrations (diffusion-thermal, thermoosmotic). In first node root tissues, it increased all conductivities with the exception of electric conductivity, then osmotic, electroosmotic, diffusion, electrodiffusion, and filtration of heat flow and current flow, that is the number of possible ways of solution transport through root tissues increased. |
Micropropagation ofLarix decidua Mill. andpinus sylvestris L.V. ChalupaBiologia plantarum 31:400-407, 1989 | DOI: 10.1007/BF02876363 Shoot multiplication of Larixdecidua was achieved using axillary and adventitious buds. The formation of axillary buds was stimulated on shoot tips soaked in a cytokinin solution (BAP 10-50 mg 1-1 for 2-4 h. Adventitious buds were induced on cotyledons, needles and vegetative buds cultured on WPM or QL medium supplemented with cytokinin (BAP 1-3 mg 1-1). The shoot formation from induced axillary and adventitious buds was promoted on WPM or QL medium containing a low concentration of auxin (IBA 0.1 mg 1-1). Shoot multiplication of Pinussylvestris was stimulated on WPM, MS, and QL media supplemented with a low concentration of cytokinin (BAP 0.2 mg 1-1) and auxin (IBA 0.1 mg 1-1). Shoot segments produced 2-5 new axillary shoots within 4-5 weeks. Root initiation was stimulated on larch and pine shoots cultured first on WPM supplemented with auxins (NAA and IBA) and later transferred to auxin-free medium. |
Book reviewJ. VelemínskýBiologia plantarum 31:87, 1989 | DOI: 10.1007/BF02907236 |
Effects of different nitrogen compounds and temperatures on the germination ofAvena sterilis spp.macrocarpa Mo.R. Gonzalez Ponce, M. L SalasBiologia plantarum 31:261, 1989 | DOI: 10.1007/BF02907286 The effect of several nitrogen compounds on the germination of the first seed of each spikelet ofAvena sterilis spp.macrocarpa Mo. was studied on Petri dishes placed in germination chamber. The compounds assayed were ammonium sulphate, ammonium nitrate, urea and calcium nitrate, generally used as fertilizer for cereal crops, as well as a control supplied with water only |
Localization of axillary meristems of short day plantChenopodium rubrum L.Zofia Michno-Zatorska, Jana Opatrná, J. Krekule, M. Michniewicz, Teresa SzcesniakBiologia plantarum 31:376-380, 1989 | DOI: 10.1007/BF02876356 Axillary meristems of short day plantChenopodium rubrum are localized as caulinar, foliar or axillar. The localization of axillary meristems and axillary buds of 14 day old plants varied in similar pattern as in other plant species so far investigated: after several nodes with foliar axillary meristems the caulinar ones were produced. However, unlike in other species, in C.rubrum a very high percentage of caulinar meristem is produced also on the first node. In this case, like in the case of its later differentiation at higher nodes, the formation of caulinar meristem is confined also to the vegetative state. It was found that the caulinary position coincides with higher responsiveness to photoperiodic induction. The developmental significance of such behaviour is discussed. |
Stimulation of Ethylene Production by Exogenous Spermidine in Detached Tobacco Leaves in the LightS. Pennazio, P. RoggeroBiologia plantarum 31:58, 1989 | DOI: 10.1007/BF02890679 Exogenous supply of Spd and Spin stimulated ethylone production in detached tobacco leaves kept in the light. Stimulation, that was first detected after 9 but not 6 h of treatment, linearly increased with concentration and was maintained for several h after returning treated leaves to deionized water. Stimulation of ethylene production was prevented by AVG and Co2+ and was accompanied by increased activity of ACC synthase and ethylene-forming enzyme. Put, and other diamines, did not give any stimulatory effect. Stimulation was not accompanied by apparent damage of plasmalomina nor was it reversed by Ca+ or Put, suggesting that the cationic properties of polyamines are probably not involved. Stimulation might be due to endogenous polyamine accumulation high enough to inhibit the activity of S-adenosylmethionine decarboxylase, so that all S-adenosyhnethionine might be committed to the ethylene pathway. The stimulatory effect of poly a nines acquires particular interest considering that they have so fur been doscribod to inhibit ethylone production in darkened plant tissues. This finding suggests that polyamines may play a regulatory role in plant development by modulating ethylene bio-synthesis under the control of light. |
Book reviewP. ŽákBiologia plantarum 31:151, 1989 | DOI: 10.1007/BF02907249 |
Book reviewJArmila SolárováBiologia plantarum 31:353, 1989 | DOI: 10.1007/BF02876350 |
General and specific mechanisms of biochemical interactions between plantsA. M. GrodzinskyBiologia plantarum 31:448-457, 1989 | DOI: 10.1007/BF02876218 There exist two main mechanisms of allelopathy: 1) direct transfer of metabolites between neighbouring plants during their life and 2) accumulation and transformation of bioactive substances in the environment with their subsequent influence on higher plants. The latter mechanism is similar to that causing soil sickness or soil toxicity. Allelochemicals affect all functions of the living system: photosynthesis, respiration, mineral nutrition, transpiration, immunity, and growth. The initial biochemical effect of allelochemicals seems to be on the synthesis of protein mediated by RNA/DNA. Knowledge of the mechanisms of concrete signals during realization of hereditary codes would serve as a powerful tool for the improvement of crop plant development and productivity. |
Developmental and Dimensional Changes in the Cambial Fusiform Initials ofHoloptelea integrifolia (Roxb.) Planch.K. S. Rao, A. R. S. Menon, Yash DaveBiologia plantarum 31:126, 1989 | DOI: 10.1007/BF02907243 Divisional activity, intrusive growth of the cell wall and loss of fusiform initials have been studied in Holoptelea integrifolia. The dimensional changes in relation to mean length, length frequency, mean width and length variation in relation to fibre length have also been analysed. |
Potato transformation byAgrobacterium rhizogenes Ri plasmidM. Ondřej, M. Hrouda, P. KostřicaBiologia plantarum 31:312, 1989 | DOI: 10.1007/BF02907293 Potato root cultures transformed bypRiA4 T-DNA do not regenerate plants in vitro spontaneously, but regeneration can be induced by a sequence of callogenesis and regeneration media. Both Tl and Tr-DNA were found by Southern blotting. Regenerated transformants showed characteristic morphological deviations in the invitro cultures. Plants in the soil showed differences in the inflorescence and tuber development. |
Book reviewIngrtd TicháBiologia plantarum 31:407, 1989 | DOI: 10.1007/BF02876364 |
Compared effectiveness of antibiotic treatments and shoot tip culture on bacterial decontamination of an in vitro propagated clone of hybrid walnut (Juglans nigra x J. regia)Veronique Meynier, Marie-France ArnouldBiologia plantarum 31:269-275, 1989 | DOI: 10.1007/BF02907287 Two ways were tested to obtain the definitive bacterial decontamination of a clone of hybrid walnut culturedin vitro: treatment of the plantlets with Rifampicin and other antibiotic agents, and culture establishmentvia shoot tip expiants. The former failed whereas the latter led to plantlets truly free of contaminants which could be satisfactory propagated, rooted and weaned |
Book reviewIngrid TicháBiologia plantarum 31:380, 1989 | DOI: 10.1007/BF02876357 |
AnnouncementJerzy LobarzewskiBiologia plantarum 31:506, 1989 | DOI: 10.1007/BF02876225 |
Preparation of Chloroplast DNA from Barley and Lettuce and Comparison of Restriction FragmentsMercedes Martin, R. Tomás, María Cruz Izquierdo, C. Prádanos, B. SabaterBiologia plantarum 31:67, 1989 | DOI: 10.1007/BF02890680 Chloroplast DNA from three barley cultivars and from one lettuce cultivar was prepared from chloroplasts isolated by Conventional differential centrifugation. Barley chloroplast DNA size was sensibly lower (130 kpb) than lettuce chloroplast DNA (150 kpb). Chloroplast DNAs from the three barley cultivars showed similar restriction fragment patterns after digestion with: BamHI, EcoRI or HindIII. The lettuce chloroplast DNA restriction pattern was very different from the barley chloroplast DNA restriction pattern. |
Induced Mutation inPetunia nyctaginiflora JUSS.S. K. Mahna, Rashmi GargBiologia plantarum 31:152-155, 1989 | DOI: 10.1007/BF02907250 Seeds ofPetunia nyctaginifloraJuss. a common ornamental garden plant, were treated with two alkylating agents (methyl methane sulphonate and N-methyl-N'-nitro-N-nitrosoguanidine). Six morphological and seven chlorophyll mutants were isolated from M2 segregating families. The isolated induced mutants are described and genetically analysed. |


