biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 3541 to 3570 of 6171:

Fineschi, S., Malvolti, M.E., Cannata, F., Hattemer, H.H. (ed.): Biochemical markers in the population genetics of forest trees

S. Chomátová

Biologia plantarum 35:120, 1993 | DOI: 10.1007/BF02921133

Modification of cultivar-specific regeneration capacity of potato expiants by phytohormones and byAgrobacterium oncogenes

J. Ovesná, I. Burdová, L. Křížková, Z. Opatrný

Biologia plantarum 35:199-208, 1993 | DOI: 10.1007/BF02925939

To overcome low, genotype dependent regeneration capacity of some commercially important potato cultivars, two alternative treatments of stem primary expiants were employed: modification of the hormonal composition of inductive MS medium and insertion of someAgrobacterium oncogenes. A replacement of 6-BAP with zeatin in the inductive MS medium stimulated bud/shoot formation in only two of three tested cultivars with naturally low regeneration capacity. GA3 did not affect the bud initiation phase (i.e. regeneration capacity of cultivars), it only stimulated shoot development. The insertion of some bacterial oncogenes (in particular genes 4, rolB, C and 5) enhanced bud/shoot formation, especially in the case of low-regenerating cultivars.

The growth and nodulation ofTrifolium alexandrinum as affected by salinity

J. I. Mirza, R. Tariq

Biologia plantarum 35:289-292, 1993 | DOI: 10.1007/BF02925957

The growth and nodulation ofTrifolium alexandrinum were compared at six levels (0 - 1.2 % NaCl) of salinity. Dry mass of shoots and roots, 14 and 20 weeks after the commencement of salinity treatment, increased at low levels of salinity (0.1 - 0.2 % NaCl) but decreased with higher NaCl concentrations (0.4 - 1.2 %). Nodulation occurred at NaCl concentrations up to 0.8 %. Nodule mass decreased with increasing salinity levels. The nodule size remained unaffected at NaCl concentrations up to 0.4 % but was reduced at higher concentrations.

Book review

J. JenÍk

Biologia plantarum 35:400, 1993 | DOI: 10.1007/BF02928517

Effects of seasons and hormones on pre- and postfertilization barriers of crossability andin vitro hybrid development betweenVigna unguiculata andV. mungo crosses

S. Shrivastava, H. S. Chawla

Biologia plantarum 35:505-512, 1993 | DOI: 10.1007/BF02928024

Effect of two different seasons and hormones on pre- and postfertilization barriers in crossability were studied inVigna mungo, V. unguiculata and their crosses. Significant differences between the two seasons for pollen fall, pollen germination, tube growth and pod set were observed. In kharif season with an average temperature of 26 to 30 °C and 75 to 85 % humidity all the characters showed higher values than in the spring season with a higher temperature of 32 to 36 °C and low humidity of 40 to 50 %. Application of gibberellic acid (GA) alone and a combination of gibberellic acid, naphthaleneacetic acid (NAA) and kinetin (KIN) significantly increased the pollen fall by 7-13 %, pollen germination by 10-12 % and pollen tube growth by 27-30 %. More pollen tube abnormalities in interspecific crosses only indicates partly incompatible reaction of pollen tube in the stylar tisue. Hormonal treatments, especially GA, significantly increased the pod set and pod harvest by 20 % and 34 %, respectively. Higher pod harvest was seen in crosses withV. unguiculata as female parent. GA treatment enhanced pollen germination and pollen tube growth, and by partially overcoming embryo abortion for 10 to 12 d, immature embryos were successfully rescued forin vitro production of hybrid plantlets.

Studies on thermoprotection induced by heavy metal ions in spring barley seedlings

V. Repka

Biologia plantarum 35:617, 1993 | DOI: 10.1007/BF02928040

Barley seedlings (Hordeum vulgare L., cv. Fatran) were pretreated with various concentrations of five heavy metal ions (Zn, Cu, Fe, Mg, Mn) for 3 d. When the subsequent heat shock was administered for 2 h, the heavy metal ions had thermoprotective effect against the sub-lethal (40 °C) and lethal (45 °C) temperature stresses, which were otherwise lethal to control (water grown) seedlings. The effectiveness of each of the heavy metal ions was different, the most effective being Cu. The level of protection provided by these heavy metal ions was dependent on both the time and the concentration that plants were exposed to them. The greatest differences were recorded in the thermotolerance mediated by applied metal ions in the shoot and root cells. Thermotolerance was exhibited by both the shoot and root of pretreated seedlings, even though the heavy metal stresses were applied solely to the roots.

Bell, K.R.: Green plants. Their origin and diversity

I. Tichá

Biologia plantarum 35:16, 1993 | DOI: 10.1007/BF02921112

Kohls, G., Kähler, U.: Orchideen im Garten. Verwendung, Pflege und Vermehrung

I. Tichá

Biologia plantarum 35:102, 1993 | DOI: 10.1007/BF02921128

Interspecific hybridization inBrassica: Application of flow cytometry for analysis of ploidy and genome composition in hybrid plants

P. S. Sabharwal, J. Doležel

Biologia plantarum 35:169-177, 1993 | DOI: 10.1007/BF02925934

Interspecific hybrids from the crosses betweenBrassica campestris, B. carinata, B. juncea andB. napus were obtained throughin vitro ovary and ovule culture. F1 hybrids were studied morphologically and flow cytometry was used to estimate 2C nuclear DNA content both in parentalBrassica species and their hybrids. It was found that in comparison with the A genome, the B and the C genomes ofBrassica contained 26.9 % and 43.9 % more DNA, respectively. This finding may be used to distinguish interspecific hybrids containing various genome combinations. It was concluded that flow cytometric analysis of nuclear DNA content might be useful tool inBrassica breeding.

Isolation of sodium chloride tolerant cell lines and plants in finger millet

J. Pius, S. Eapen, L. George, P. S. Rao

Biologia plantarum 35:267, 1993 | DOI: 10.1007/BF02925951

Sodium chloride tolerant cell lines of finger millet were isolated from embryogenic cultures growing on MS medium supplemented with picloram (2 mg I-1), kinetin (0.1 mg l-1) and sodium chloride (1 %) at the end of 6 passages. The sodium chloride tolerant cell lines showed better growth in comparison with control at all concentrations of sodium chloride tested, with optimum growth at 0.25 % NaCl. When the tolerant lines were grown for 3 passages in absence of NaCl, the growth was lower than that of the tolerant lines tested immediately at the end of 6 passages of selection. NaCl tolerant calli had more Na1 in comparison with control and they regenerated plants in presence of 1 % NaCl, while the control lines failed to differentiate. When screened in a hydroponics system with 1 % NaCl, the tolerant plants grew to maturity while the control plants failed to grow.

Book review

J. POSPÍŠILOVÁ

Biologia plantarum 35:364, 1993 | DOI: 10.1007/BF02928511

Peroxidases during the course of callusing and organ differentiation from root explants ofCichorium intybus

A. Bouazza, S. Rambour, T. Gaspar, B. Legrand

Biologia plantarum 35:481-489, 1993 | DOI: 10.1007/BF02928019

Growth ofCichorium intybus root explants was accompanied by an important increase of fresh mass during the course of callusing and rooting. The absence of glucose in callus forming medium was compensated for by hydrolysis of storage carbohydrates of the tissues, inducing a decrease in dry mass. Protein content showed similar slight variations in explants during the course of budding and callusing, whereas an important increase of protein content was found during the first 48 h in explants cultured on root forming medium.
Specific increase of soluble peroxidase activity during bud and root neoformation was found. A peak of peroxidase activity, proceeding the organ emergence, was always observed. This peak occurred earlier in bud forming than in root forming explants. Conversely, during callusing, the bulk peroxidase activity showed only weak variations, and no peak was detectable. Moreover one basic isoperoxidase was missing in these explants after a 6-d culture, whereas in both root and bud forming explants the isoperoxidase patterns were very similar. When explants growing on differentiation media were in darkness a supplementary basic isoperoxidase with the highest electrophoretic mobility was revealed.
The data obtained show that isoperoxidase patterns cannot be correlated to a particular organ differentiation process, but that peroxidase activity and especially the moment of peak emergence can be a reliable marker of the differentiation process. Moreover, light seems to inhibit the expression of a basic peroxidase in explants growing in media promoting organ differentiation.

Physiological responses of mangrove seedling to triacontanol

P. Moorthy, K. Kathiresan

Biologia plantarum 35:577, 1993 | DOI: 10.1007/BF02928035

In viviparous hypocotyls ofRhizophora apiculata Blume the triacontanol treatment enhanced the growth of root and shoot (number of primary and secondary roots, length of roots, shoot height and biomass) protein and energy contents of leaves and roots,in vivo nitrate reductase activity, contents of chlorophylls and carotenoids in leaves as well as the amount of chlorophylls present in photosystems 1 and 2 and in the light harvesting complex of chloroplasts. These promotory effects were recorded at 40 and 80 mg m-3 triacontanol, but they decreased with increasing growth regulator concentration.

The effect of glucosinolates (mustard oil glycosides) and products of their enzymic degradation on the infectivity of turnip mosaic virus

J. Špak, L. Kolářová, J. Lewis, G. R. Fenwick

Biologia plantarum 35:73, 1993 | DOI: 10.1007/BF02921123

The effect of glucosinolates sinigrin, progoitrin, epiprogroitrin, gluconapin, gluconapoleiferin, glucobrassicanapin, glucotropaeolin and gluconasturtiin without and with the glucosinolate-degrading enzyme (myrosinase, EC:3.2.3.1.), on the infectivity of turnip mosaic virus was studied. Little or no effect was observed when the intact glucosinolate (2.5 μmol cm-3) was added to the suspension of turnip mosaic virus (TuMV, isolate Ruzyně; 0.2 mg cm-3 in 0.01 M potassium phosphate buffer) at both pH 7 and pH 6. A significant decrease of virus infectivity was, however, observed when 0.25, 1.25 and 2.5 μmol cm-3 of the glucosinolate together with 0.31, 1.56 and 3.13 mg cm-3 of the myrosinase, respectively, was added to the virus suspension of both pH 7 and pH 6. The effect, which was greater at pH 6, was most intense with sinalbin and glucobrassicin substrates.

RFLP analyses of severalBrassica representatives

S. Zelenková

Biologia plantarum 35:141-146, 1993 | DOI: 10.1007/BF02921139

Molecular variability was determined between, 17Brassica napus cultivars, 8 new selections 4 F1 hybrids, 5 cultivars ofB. oleracea, B. campestris andB. peruvianum with 4 rDNA probes fromLycopersicon esculentum, 3 probes from a PstI library ofB. oleracea, 3 probes from EcoRI libraries ofB. napus andB. oleracea and the acetolactatsynthase gene fromNicotiana tabacum. Sporadic interspecific and rare intraspecific variability was detected.

Role of calcium and calmodulin antagonist in photosynthesis and salinity tolerance inChlorella vulgaris

R. Abdel-Basset

Biologia plantarum 35:237-244, 1993 | DOI: 10.1007/BF02925946

To cast light upon the role of Ca1+ and calmodulin on photosynthetic rate (Pn), dark respiration (RD) and amino acid and protein contents in salinity stressed and non-stressedChlorella cultures, the Ca2+ chelator EGTA [ethylene glycol-bis-(2-aminoethyl ether)-N,N- tetraacetate] and the calmodulin antagonist TFP (trifluperazine) were used. TFP markedly inhibited PN while EGTA exerted a slight, if any, effect on PN. NaCl tolerance, on the other side, was markedly abolished by TFP that inhibited PN and lowered rate of proline accumulation. Calmodulin might be involved in osmoregulation and salt tolerance ofChlorella. RD, however, was markedly enhanced by EGTA and Ca2+-free medium and hence the Ca2+ deprivation increased stress severity exerted by NaCl. Combinations of Na+ and Ca2+ enhanced PN, decreased RD and proline content in comparison with an osmotically equivalent reference culture containing only NaCl. Addition of Ca2+ to TFP treated cultures failed to reactivate calmodulin for proline synthesis. However, when Ca2+ was added to EGTA-treated cultures, only relatively reduced proline contents were recorded.

Mild mosaic of spiraea caused by cucumber mosaic virus

Z. Polák, H. G. Kontzog

Biologia plantarum 35:311-312, 1993 | DOI: 10.1007/BF02925963

A disease of spiraea(Spiraea xvanhouttei) manifested in leaves by very mild, mostly hardly perceptible mosaic, was found to be caused by cucumber mosaic virus (CMV) infection. The proof was given on the basis of responce of differential plants after virus transmission, by immunosorbent electron microscopy and ELISA.

Flowering and male reproductive functions of chickpea (Cicer arietinum L.) genotypes as affected by salinity

H. R. Dhingra, T. M. Varghese

Biologia plantarum 35:447, 1993 | DOI: 10.1007/BF02928525

The influence of salinity, given at germination (stage I) or 75 d after sowing (stage II), on flower production and characteristic features of male reproductive structures was studied in three promising genotypes of chickpea (Cicer arietinum L. cv. ICCV 88102, H 82-2 and C-235). In ICCV 88102 and H 82-2 salinity 20 meq 1-1 increased the number of flowers when applied at both stages whereas in C-235 only when applied at the later stage. The salinity also delayed flowering; the higher salinity the greater was delay in flowering. In H 82-2 and C-235 salinity treatment given at stage II (when few flower buds appeared) hastened the flowering. The salinity curtailed pollen production; the reduction being minimum in C-235 and maximum in H 82-2. Germination was not significantly affected in C-235 pollen collected from plants grown under salinity conditions upto 60 meq 1-1 applied at stage I but the tube elongation was inhibited. The inhibition of tube elongation was greatest in C-235. Salinity treatment administered at stage II did not affect significantly pollen germination excepting C-235 in which a consistent decline with increasing salinity was evident. Salinity stimulated tube growth in ICCV 88102. Na2SO4 in the germination medium was more detrimental for both pollen germination and tube growth than NaCl.

Compartmentation of ions and organic compounds inSalicornia brachiata Roxb.

M. P. Reddy, S. Sanish, E. R. R. Iyengar

Biologia plantarum 35:547, 1993 | DOI: 10.1007/BF02928030

The actively growing stems ofSalicomia brachiata (60-d old) were dissected into three major tissue layers: vascular, spongy mesophyll and palisade. Each layer was analysed for chlorophyll, protein, amino acids, and sugar contents and the activities of ATPase and phosphatase (alkaline and acid). The differences in organic compounds and enzyme activities in these different tissues have been correlated with the ion content of the corresponding tissues.

O'Connor, M.: Writing successfully in science

I. Tichá

Biologia plantarum 35:52, 1993 | DOI: 10.1007/BF02921118

Restriction site polymorphism in rDNA repeat unit ofHordeum vulgare for some restriction endonucleases

J. Kraic, I. Žák

Biologia plantarum 35:121-124, 1993 | DOI: 10.1007/BF02921134

Restriction fragment length polymorphism in rDNA repeat unit for eight restriction endonucleases was studied in two genotypes of barley (Hordeum vulgare L.). Both genotypes contained restriction sites for EcoRI, EcoRV, PvuII and Sau3239I in rDNA repeat unit and contained two different rDNA repeat unit length variants 9.7 kbp and 9.1 kbp.

Effect of auxins and cytokinins on plant regeneration from hypocotyls and cotyledons in niger (Guizotia abyssinica Cass.)

T. R. Ganapathi, K. Nataraja

Biologia plantarum 35:209-215, 1993 | DOI: 10.1007/BF02925940

Tissue cultures were established from hypocotyl and cotyledonary leaf segments ofGuizotia abyssinica Cass. on MS medium supplemented with various concentrations of auxins (IAA, NAA, IBA or 2,4-D) and cytokinins (KN or BA). Expiants cultured on media with cytokinins or in combination with auxins produced shoot buds. Maximum number of shoot buds (20-25 per culture) were differentiated from cotyledonary leaf segments on medium with 2 mg 1-1 each of KN and IBA. Rooting of regenerated shoot buds was acheived on medium with NAA. The obtained plantlets were successfully transferred to soil.

Autotoxic impact of essential oil extracted fromLantana camara L.

R. K. Arora, R. K. Kohli

Biologia plantarum 35:293, 1993 | DOI: 10.1007/BF02925958

The effect of crude volatile oils extracted from the young leaves ofLantana camara var.camara was studied on the parent plant itself. The contents of water and chlorophyll, of leaves apart from seed germination, seed vigour and length of seedlings of the parent plant were adversely affected with increasing concentration of theLantana oils; this indicated autotoxic potential of the oil. The correlations between oil concentration and the studied parameters were rather strong and obeyed the concentration response relationship, typical of chemical bases. The cell respiration, however, increased with increasing concentration of the oil vapours. Compared to control, less than 13 % of the seeds of the parent plant exposed to 30 cm3 m-3 of oil showed incipient germination with no growth of radicle beyond immeasurable protuberance, and no plumule emergence.

Differential responses of N-nitrosoamines and aromatic amines in the plant cell/microbe coincubation assay

T. Gichner, E. D. Wagner, M. J. Plewa

Biologia plantarum 35:401-406, 1993 | DOI: 10.1007/BF02928518

The plant cell/microbe coincubation assay is based on employing living tobacco cells in suspension culture as the activating system for promutagens and the Ames/Salmonella cells as the genetic indicator system. In contrast to aromatic amines(e.g. 2-aminofluorene andm-phenylenediamine) that were previously reported to be activated to products mutagenic in theS. typhimurium strains TA98 or YG1024 by tobacco cells, promutagenic N-nitrosoamines (N-nitrosodimethylamine, N-nitroso-morpholine, N-nitrosopiperidine, N-nitrosomethyl-2-hydroxypropylamine) were not activated to product(s) mutagenic inS. typhimurium TA 100.

Transport of14C-IAA from leaves and shoots to different fruit parts

M. J. Grochowska, U. Dzieciol

Biologia plantarum 35:513, 1993 | DOI: 10.1007/BF02928025

Transport of14C-IAA was studied in apple spurs of a 20-year-old McIntosh with one fruit and one shoot. Water solutions of IAA were applied to intact, pricked or scratched leaf blades, to decapitated shoots or to petioles (leaf-blade removed) at the end of June, July and August.14C-IAA (in an unknown form) was transported from intact leaves and shoots to pedicel, pericarp and seeds. Radioactivity of the pedicels increased every month while that of seeds reached maximum at the end of July and then markedly decreased in August. Total radioactivity of whole fruit doubled, at least, with every month due to enlargement of the pericarp. Pedicels deprived of fruits had their retention prolonged on spurs with leaves or shoots treated with 1% IAA in lanoline. It is assumed that auxin delivered from shoots or still growing leaves at the time of its deficiency in seeds, restrains fruits from premature dropping. At the same time seeds seem to be protected by a regulatory system in pedicel against too massive flow of auxin from outside.

Chemical composition of the cell wall in some green algae species

A. M. Abo-Shady, Y. A. Mohamed, T. Lasheen

Biologia plantarum 35:629-632, 1993 | DOI: 10.1007/BF02928041

Cell walls of two strains ofChlorella vulgaris (from fresh water, F, and saline water, S) and ofKirchneriella lunaris contained various proportion of saccharides and proteins (highest percentage in dry matter was found inK. lunaris). They differed also in presence of individual monosaccharides (5 inC. vulgaris F, 8 inC. vulgaris S and 6 inK. lunaris) and amino acids (11 in C.vulgaris F, 6 in C.vulgaris S and 7 inK. lunaris). Common substances were rhamnose, cystine, proline, glutamic acid and leucine.

Book Review

J. SoláRová

Biologia plantarum 34:84, 1992 | DOI: 10.1007/BF02925795

Seedling age and cytokinin effects on glutamate dehydrogenase activity and nitrogen assimilation in maize leaves

S. Garg, H. S. Srivastava

Biologia plantarum 34:153, 1992 | DOI: 10.1007/BF02925812

Glutamate dehydrogenase (GDH) activity, protein and total nitrogen contents in the secondary leaves of maize(Zea mays L. cv. Ganga Safed-2) seedlings increased during early seedling growth and then declined after reaching a peak level at either 10 d (GDH) or 12 d (metabolites). While the effect of kinetin on enzyme activity was statistically insignificant, benzyladenine supplied with nutrient solution increased GDH activity in secondary leaves of both 10-d as well as 14-d seedlings. However, both growth regulators increased the contents of total soluble proteins, total nitrogen, chlorophyll(a+b) and carotenoids in both 10 and 14-d old leaves.

Book Review

T. Gichner

Biologia plantarum 34:266, 1992 | DOI: 10.1007/BF02925880

Plasmalemma fluidity in parenchyma cells from Jerusalem artichoke (Helianthus tuberosus L.) tubers during the break of dormancy

G. Pétel, R. Sueldo, A. Coudret, M. Gendraud

Biologia plantarum 34:373, 1992 | DOI: 10.1007/BF02923582

Plasmalemma-enriched fractions were isolated from Jerusalem artichoke tubers along the time course of dormancy break produced by cold treatment. A decrease of membrane fluidity was noted from the 3rd to the 8th week of this treatment, as well as a decrease of plasmalemma NADH dehydrogenase activity from the 5th to the 8th week. The plasmalemma lipid extracts studied revealed two major phospholipidic components: phosphatidylcholine (PC) and phosphatidylethanolamine (PE). Their respective quantities decreased until the 12th week, where the phosphatidylcholine level is lower than the phosphatidylethanolamine one. The observed changes are discused in relation to dormant and non-dormant states of tubers and the breaking of dormancy.

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