biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2911 to 2940 of 6239:

Wildi, O., Orlóci, L.: Numerical Exploration of Community Patterns. A Guide to the Use of MULVA-5

J. Gloser

Biologia plantarum 39:596, 1997 | DOI: 10.1023/A:1001742312281

Changes in abscisic and gibberellic acids contents during the release of potato seed dormancy

R. Bhargava

Biologia plantarum 39:41-45, 1997 | DOI: 10.1023/A:1000300804760

Gas chromatographic measurements demonstrated that the content of endogenous gibberellic acid increased and that of abscisic acid decreased during storage of potato seeds, suggesting that the dormancy of the seeds is controlled by the balance between these two hormones.

Blankenship, R.E., Madigan, M.T. and Bauer, C.E. (ed.): Anoxygenic Photosynthetic Bacteria

J. Nauš

Biologia plantarum 39:159-160, 1997 | DOI: 10.1023/A:1000633520354

Low irradiance stress tolerance in rice (Oryza sativa L.)

M.M. Viji, M. Thangaraj, M. Jayapragasam

Biologia plantarum 39:251-256, 1997 | DOI: 10.1023/A:1000353206366

The effect of low irradiance on three rice cultivars (shade tolerant cvs. Swarnaprabha and CO 43 and shade susceptible cv. IR 20) was studied. The large subunit (LSU) of ribulose-1,5-bisphosphate carboxylase/oxygenase with molecular mass of 55 kDa was reduced in cv. IR 20 grown under low irradiance (LI). Native protein profile studied showed, under LI, reduction in the contents of proteins with RF values 0.03, 0.11 and 0.37. Analysis of chloroplast polypeptides revealed an induction of light-harvesting chlorphyll-protein 2 (LHCP2) under shade. The induction was more expressed in cv. CO 43 than in cv. IR 20. Under LI, in vivo labelled protein bands in the molecular range of 26 - 27 kDa were induced. These proteins were highly turned over in the LI-grown plants of cv. CO 43 than in cv. IR 20. A signal for rbcL gene sequences in EcoRI digested lanes was also found. Isozyme analysis of peroxidase showed an induction of a new band with RF 0.43 in cv. IR 20 subjected to LI.

Baker, N.R. (ed.): Photosynthesis and the Environment

J. Pospíšilová

Biologia plantarum 39:330, 1997 | DOI: 10.1023/A:1001065217773

Effects of cadmium, nickel and lead on growth, chlorophyll content and proteins of weeds

E.A. Ewais

Biologia plantarum 39:403-410, 1997 | DOI: 10.1023/A:1001084327343

The effects of Cd, Ni and Pb on the growth, chlorophyll (Chl) and protein contents, and content of proteases of potted weed plants Cyperus difformis, Chenopodium ambrosioides and Digitaria sanguinolis were determined. The three heavy metals inhibited the shoot growth but were less suppresive to root growth. They also lowered leaf Chl content. The changes in root and shoot protein and proteases contents of weeds were interrelated. The heavy metal additions to soil increased their contents in both roots and shoots, several times more in roots than in shoots.

Immunohistochemical localization of the stress-related anionic peroxidase in germinating cucumber seeds

V. Repka, I. Fischerová, G. Vanek

Biologia plantarum 39:467-472, 1997 | DOI: 10.1023/A:1001061116864

The distribution of the stress-related anionic peroxidase in the course of cucumber (Cucumis sativus L.) seed germination was determined by tissue printing and immunoblotting. Of the three molecular forms of cucumber stress-related anionic peroxidase, the form PRX 1 was temporally accumulated in developing seedlings. Up to 6 d of germination PRX 1 was localized mainly in roots. As germination progressed, the immunoreactive PRX 1 signal was found in the transition zone between roots and stem, as well as in the lower epidermis of expanding cotyledons at the midrib.

Identification of wild and cultivated Hordeum species using two-primer RAPD fragments

P.V. Reddy, K.M. Soliman

Biologia plantarum 39:543-552, 1997 | DOI: 10.1023/A:1000922613713

Random amplified polymorphic DNAs (RAPD) analysis has been adapted to assess the degree of RAPD polymorphism within the genus Hordeum to determine if this approach can distinguish wild and cultivated species. Nineteen wild and seven cultivated accessions were evaluated using 4 random 10-mer primers. The potential of the RAPD assay was further increased by combining two primers in a single polymerase chain reaction (PCR). RAPD fragments generated by two pairs of arbitrary 10-mer primers discriminated six wild species and one cultivated species by banding profiles. The size of the amplified DNA fragments ranged from 150 to 2300 base pairs. 33 %percent of the fragments were common to both wild and cultivated species; 67% were specific to either wild or cultivated species. The average difference in fragments was less within the species than among the species. By comparing RAPD fingerprints of wild and cultivated barley, markers were identified among the set of amplified DNA fragments which could be used to distinguish wild and cultivated Hordeum species.

Jones, R.L., Somerville, C.R., Walbot, V. (ed.): Annual Review of Plant Physiology and Plant Molecular Biology

Z. Šesták

Biologia plantarum 39:24, 1997 | DOI: 10.1023/A:1000973307545

Verma, D.P.S. (ed.): Signal Transduction in Plant Growth and Development

I. Macháčková

Biologia plantarum 39:102, 1997 | DOI: 10.1023/A:1000941828018

Distribution of loosely-bound calcium in the vegetative and generative cells of the pollen grain in Chlorophytum elatum

A. Górska-Brylass, R. Butowt, M.I. Rodriguez-Garcia

Biologia plantarum 39:169-181, 1997 | DOI: 10.1023/A:1001004216982

We used chlorotetracycline fluorescence, alizarin staining and potassium pyroantimonate methods, as well as X-ray microanalysis, to demonstrate the differential localization of Ca2+ during pollen maturation. Level of loosely-bound Ca2+ ions was higher in the generative cell than in the vegetative cell of the mature pollen grain which is one of the symptoms of metabolic differentiation of the two sister cells.

Particle mediated DNA delivery and transient expression of GUS gene in plated cells of rice

R. Sathishkumar, S. Agrawal, K. Manoharan

Biologia plantarum 39:305-309, 1997 | DOI: 10.1023/A:1001044008321

Culture conditions for a fine dispersion of plated cells of Oryza sativa L. cv. IR 20, have been worked out. These plated cells developed microcalli containing large number of somatic embryos and subsequently plantlets. By using single cells and clusters of 2 - 4 cells, an efficient DNA-delivery by microprojectile bombardment into cells and its transient expression were assessed by employing a plasmid construct containing β-glucuronidase gene.

Effect of lead on nitrate reductase activity and alleviation of lead toxicity by inorganic salts and 6-benzylaminopurine

R.P. Singh, S. Dabas, A. Choudhary, R. Maheshwari

Biologia plantarum 39:399-404, 1997 | DOI: 10.1023/A:1001155431519

A concentration dependent decrease in root nitrate reductase (E.C.1.6.6.1) activity (NRA) by 0.1 to 2.0 mM lead acetate was noticed in three cultivars of Vigna radiata (L.) Wilczek (K851, MH8320 and ML337). Leaf NRA, on the other hand, increased significantly with increasing lead concentration which was more pronounced in cvs. MH8320 and ML337 than in cv. K851. Total nitrogen content of root and shoot was generally increased due to supply of the lead acetate, whereas the total nitrogen content of the colyledons was hardly affected in cvs. MH8320 and ML337 and decreased in cv. K851 during the early growth phase. The inhibition of root NRA could be alleviated by addition of inorganic salts (K2HPO4 and KNO3, but not CaCl2) or 6-benzylaminopurine (BAP) in the incubation medium. Lead mediated inhibition of root NRA was similar in light and dark grown seedlings, but lead induced increase in leaf NRA was more pronounced in the light than in the dark.

Foyer, C.H., Quick, W.P.: A Molecular Approach to Primary Metabolism in Higher Plants

H. Synková

Biologia plantarum 39:478, 1997 | DOI: 10.1023/A:1001159223767

Oropeza, C., Howard, F.W., Ashburner, G.R. (ed.): Lethal Yellowing: Research and Practical Aspects

L. Šindelář

Biologia plantarum 39:564, 1997 | DOI: 10.1023/A:1001738211373

Pessarakli, M. (ed.): Handbook of Photosynthesis

J. Gloser

Biologia plantarum 39:638, 1997 | DOI: 10.1023/A:1001750514098

W.G. Hopkins, (ed.): Introduction to Plant Physiology

N. Wilhelmová

Biologia plantarum 39:22, 1997 | DOI: 10.1023/A:1000673201699

Differences in compounds released by embryogenic and non-embryogenic suspension cultures of Euphorbia pulcherrima

K. Brandau, W. Preil, R. Lieberei

Biologia plantarum 39:113-124, 1997 | DOI: 10.1023/A:1000373426141

Media from embryogenic and non-embryogenic cell suspension cultures were analysed for protein content, electrophoretic protein patterns, glycoproteins and activity of peroxidases and β-glucosidases in order to characterize the physiological status of the cultures. On a dry mass basis the amount of extracellular proteins per cell was greater in embryogenic suspensions than in non-embryogenic suspensions. Non-embryogenic suspensions contained unidentified slimy compounds which were not present inembryogenic cultures. The extracellular Concanavalin A-specific glycoproteins gave different isoelectric focussing patterns and thus enabled embryogenic and non-embryogenic cultures to be differentiated. The extracellular peroxidase activity per cell dry mass was far greater in embryogenic than in non-embryogenic cultures. The isoenzymes differed in number and composition of the anionic bands. β-glucosidases were found in the same range of activity in both culture types, but the time course of enzyme activity during cultivation was significantly different. In the embryogenic culture the activity was correlated with dry mass increase, whereas in the non-embryogenic suspension the activity reached maximum during the linear growth phase. Polyphenoloxidase which was recently recognized as an intracellular marker for embryogenic stages was not released into culture media.

Source-sink relationship in Abelmoschus esculentum L.

R.M. Bhatt, N.K. Srinivasa Rao

Biologia plantarum 39:223, 1997 | DOI: 10.1023/A:1000392803640

The ontogenetic changes in source-sink relation associated with the manipulation of reproductive sink at different positions on the plant in two okra cultivars (Arka Anamika and Pusa Makhamali) with distinct branching habit (cv. Arka Anamika tends to branch at the middle nodes unlike cv. Pusa Makhamali) were analysed. The cultivar differences for extension growth were nonsignificant except at treatment where all flowers and flower buds upto 8th mode were removed. The reproductive sink reductions resulted in a decrease of total dry matter accumulation per plant to an extent of 13 to 46% in Arka Anamika and 18 to 34 % in Pusa Makhamali. Fruits on the middle nodes appear to be prominent sinks for photo assimilates in cv. Arka Anamika. The reproductive sink manipulation did not result in any particular change in the trend of photosynthesis, but brought about a significant change in the partitioning of dry matter.

Shoot regeneration and protein synthesis in tomato tissue cultures

A.E. El-Enany

Biologia plantarum 39:303-308, 1997 | DOI: 10.1023/A:1000692218731

Shoot regenerations from hypocotyls and cotyledons of tomato(Lycopersicon esculentum Mill.) was inhibited by NaCl (100 and 150 mM).Shoot fresh and dry masses were also reduced. Addition of proline (100 mgdm-3) counteracted the inhibitory effect of NaCl. SDS-PAGE analyses of extracted proteins, revealed that in cultures grown in medium with 25 mM NaCl plus proline, extra polypeptides of Mr 190, 58, 45 and 26 kDa accumulated. As NaCl was increased in the medium a new protein of Mr 67 kDa also accumulated.

Effects of source/sink manipulation on net photosynthetic rate and photosynthate partitioning during grain filling in winter wheat

Z. Wang, J. Fu, M. He, Q. Tian, H. Cao

Biologia plantarum 39:379-385, 1997 | DOI: 10.1023/A:1001076125525

Source-sink relationship, which was influenced by both genotype and environmental factors, contributed to the variation in photosynthesis and photosynthate partitioning of wheat. Source reduction by partial defoliation increased leaf net photosynthetic rate (PN), and sink reduction decreased PN of irrigated wheat. However, the change in PN varied among genotypes. Source reduction enhanced photosynthate translocation into grain in irrigated wheat. However, the enhancement was more evident in cv. Lumai 215953 than incv. Lumai 15. Sink reduction had little effect on the translocation of photosynthate into grain in cv. Lumai 15, but decreased the translocation of photosynthate into grain and increased it into stem in cv. Lumai 215953. In rainfed, non-irrigated wheat, the source or sink manipulation influenced PN only slightly. The source reduction decreased the partitioning of photosynthates into the upper parts (including grains) of plant. However, very little effects of sink reduction on the production of photosynthates occurred in rainfed wheat. This showed that grain sink size was not a factor limiting the production of photosynthates, but controlled the partitioning of photosynthates. Sink reduction decreased photosynthate translocation into grains, and increased it into upper parts of rainfed wheat plant.

Maliga, P., Kiessing, D.F., Cashmore, A.R., Gruissem, W., Varner, J.E. (eds.): Methods in Plant Molecular Biology

M. Ondřej

Biologia plantarum 39:452, 1997 | DOI: 10.1023/A:1001085822316

In vitro plant regeneration via callogenesis and organogenesis in Bambusa vulgaris

G.R. Rout, P. Das

Biologia plantarum 39:515-522, 1997 | DOI: 10.1023/A:1000966428734

Friable calli were induced from mature excised shoots of Bambusa vulgaris on Murashige and Skoog's (MS) medium supplemented with 2.2 µM6-benzylamino-purine (BAP), 9.04 µM 2,4-dichlorophenoxyacetic acid and 14.76 µM indole-3-butyric acid (IBA) with 3 % (m/v) saccharose. Adventitious shoots with root hairs were achieved from calli on MS medium supplemented with 13.33 µM BAP and 1.23 - 2.46 µM IBA within 4 weeks of subculture. The frequency of shoot bud regeneration was better in the light incubated cultures than in the dark incubated cultures. Isolated shoots were rooted on liquid half-strength MS basal medium supplemented with 0.49 µM IBA and 2 % (m/v) saccharose. Histological observations confirmed the regeneration of shoot buds from calli. The rooted plantlets were successfully transferred to greenhouse.

A method of DNA isolation from epiphytic CAM ferns for use in random amplified polymorphic DNA analysis

S.H. Lim, L.K.C. Looi, B.L. Ong, Y.C. Wee

Biologia plantarum 39:637-639, 1997 | DOI: 10.1023/A:1000947319165

A method for DNA extraction from Pyrrosia piloselloides (L.) Price and Pyrrosia longifolia (Burm.) Morton utilising hexadecyltrimethylammonium bromide is described. The genomic DNA isolated was found to be relatively pure and shown to be suitable for RAPD analysis.

Gräber, P., Milazzo, G. (ed.): Bioenergetics

J. Nauš

Biologia plantarum 39:80, 1997 | DOI: 10.1023/A:1000985610271

Smith, S.E., Read, D.J.: Mycorrhizal Symbiosis

V. Čatská

Biologia plantarum 39:154, 1997 | DOI: 10.1023/A:1000902213906

Effect of Azotobacter strains on sugar beet callus proliferation and nitrogen metabolism enzymes

S. Mezei, M. Popović, L. Kovačev, N. Mrkovački, N. Nagl, D. Malenčić

Biologia plantarum 39:277-283, 1997 | DOI: 10.1023/A:1001028922433

The effect of five Azotobacter chroococcum strains and nitrogen content in nutrient media on callus growth of two Beta vulgaris L. cultivars were investigated, as well as the activity of nitrate reductase (NR), glutamine synthetase (GS) and glutamate dehydrogenase (GDH) in inoculated callus tissue. On medium with full nitrogen content (1 N) the inoculation with A. chroococcum strain A2 resulted in the highest calli mass, while strains A8 and A14 maximally increased NR activity. On media with 1/8 N the highest effect on calli growth, GS and GDH activity had the strain A8. The strain A2/1 significantly increased callus proliferation on medium without N. Asymbiotic association between sugar beet calli and Azotobacter depended on genotype/strain interaction and was realised in presence of different nitrogen levels.

Effect of radiation quality on growth, nitrogen uptake, and HCO3-, CO2 and pH interactions in Ulva pertusa

B. Muthuvelan, S. Yamasaki, K. Fujimori, G. Kulandaivelu

Biologia plantarum 39:365-371, 1997 | DOI: 10.1023/A:1001061829702

A floating sterile mutant of Ulva pertusa, which grows faster than the wild type and also during summer periods, was grown in the laboratory under "white light" (WR as reference), broad band isoquantic red (600 - 700 nm, RR) and blue (400 - 500 nm, BR) radiation. The observed specific growth rates at WR, BR, and RR were 8.6, 2.15, and 1.2 %, respectively. A stimulatory effect of BR on the growth at low irradiance (60 μmol m-2 s-1) was observed during the 15 d of culture. Around 42.1 % of total nitrogen was used by Ulva mutant in WR, but under BR and RR it was around 27.0 and 16.7 %, respectively. However, the utilization of nitrogen under BR was significantly higher than under RR. Considerable CO2 fluctuation in the light and dark periods was observed in all the cultures, and it was higher under WR, followed by BR and RR. The possible growth promoting effect of BR includes nitrogen uptake and the consumption of HCO3- which in turn leads to reduced air CO2 concentration in the medium.

Effect of salinity on chlorophyll and proline contents in three aquatic macrophytes

N.P. Rout, S.B. Tripathi, B.P. Shaw

Biologia plantarum 39:453-458, 1997 | DOI: 10.1023/A:1001186502386

The role of proline in imparting tolerance to salinity was investigated in Hydrilla verticillata, Najas indica and Najas gramenia. The plants were exposed to different concentrations of NaCl and artificial sea water (SWS) separately. The chlorophyll (Chl) a/b ratio decreased significantly in all the three plant species in both NaCl and SWS treatments, comparatively more in former than the latter. NaCl resulted in drastic decrease in this ratio in salt sensitive H. verticillata and N. indica, but in somewhat lesser decrease in salt resistant N. gramenia. Proline content increased at both NaCl and SWS treatments, especially at the latter. However, in H. verticillata proline content at 1.5 and 2.5 % NaCl decreased. It was concluded that proline cannot be used as a biochemical marker of salt tolerance in aquatic plants, however, the decrease in Chl a/b ratio in response to NaCl may be used as an index of salt sensitivity in this ecological group of plants.

Activity of β-glucuronidase in Root Tips of Different Types of Transgenic Sugar Beet Plants

S. Vitha, J.P. Phillips, J.S. Gartland, K.M.A. Gartland, K. Beneš, M.C. Elliott

Biologia plantarum 39:531-541, 1997 | DOI: 10.1023/A:1001749119125

Expression of the β-glucuronidase (GUS) reporter gene driven by the CaMV 35S, rolC, nos and mas promoters was assessed in the tips of 12 independent clones of transgenic sugar beet (Beta vulgaris) roots. Three questions were addressed: 1) expression pattern specific for a given promoter, 2) expression pattern variability, and 3) relationship between gene expression and cell differentiation. Characteristic patterns of tissue-specific expression were distinguished for each promoter. Striking differences, however, were found between some clones, bearing the same construct. Statistical analysis of the pattern variability proved that the variability is significantly lower within the construct than between constructs. rolC-GUS clones exhibited the lowest and CaMV 35S clones the highest pattern variability. Comparisons between the four promoters showed consistent GUS activity in areas playing a key role in tissue determination (the elongation zone) where cells switch from frequent mitosis and mostly isodiametrical growth, typical for the promeristem, to rapid elongation and differentiation. All of the clones were highly GUS-positive in the elongation zone of stele. Activity was commonly localised in the stele of the maturation zone for CaMV 35S, rolC and mas-GUS clones. CaMV 35S-GUS clones were highly active in the promeristem.

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