biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2791 to 2820 of 6171:

Structure of root nodules and nitrogen fixation in Egyptian wild herb legumes

H.H. Zahran

Biologia plantarum 41:575-585, 1998 | DOI: 10.1023/A:1001848617980

Five wild herb legumes (Trifolium resupinatum, Melilotus indica, Medicago intertexta, Trigonella hamosa, and Alhagi murarum) were collected from cultivated lands of the Nile Valley, and compared with clover (Trifolium alexandrinum), a cultivated forage legume. The wild herb legumes exhibited great variation in nodulation percentage, nodule number, nodule mass and acetylene reduction activity with regard to locality. Nodulation of T. resupinatum and M. indica ranged between 50 - 100% and 33 - 100%, respectively, compared to 50 - 100% for T. alexandrinum. The number of nodules formed on T. resupinatum was 9 - 128 and that of M. indica 6 - 39, compared to 13 - 122 nodule per plant for T. alexandrinum. Nodule mass was correlated with nodule number. In M. indica, a small number of nodules was compensated with high specific nitrogenase activity. The herb legumes formed nodules of small size, varying shape (globose, cylindrical, branched, etc.), and of different types (crotalaroid and astragaloid). Microscopic examination of root-nodules from T. resupinatum, M. indica and M. intertexta, showed that these legumes formed indeterminate and effective nodules, containing apical meristems, central symbiotic tissue with characteristic zonation and peripheral vascular bundles. The nodules harboured bacteroids with pleiomorphic morphology.

Dehne, H.-W., Adam, G., Diekmann, M., Frahm, J., Mauler-Machnik, A., Van Halteren, P. (ed.): Diagnosis and Identification of Plant Pathogens

N. Čeřovská

Biologia plantarum 41:100, 1998 | DOI: 10.1023/A:1001714011354

Heat shock responses of bean plants: involvement of free radicals, antioxidants and free radical/active oxygen scavenging systems

A. Edreva, I. Yordanov, R. Kardjieva, E. Gesheva

Biologia plantarum 41:185-191, 1998 | DOI: 10.1023/A:1001846009471

In non-acclimated bean plants heat shock induced oxidative damage (increase of free radical concentration and drop of bound thiols, indicating aggregation of proteins) which was regulated by the enhanced activities of peroxidase and superoxide dismutase, as well as by the accumulation of polyphenols and especially of polyamines. In the plants acclimated to high temperature no oxidative damage occurred following heat shock.

Accumulation of proline and glycine betaine in Ipomoea pes-caprae induced by NaCl

A. Venkatesan, K.P. Chellappan

Biologia plantarum 41:271-276, 1998 | DOI: 10.1023/A:1001839302627

The present study pertains to the effect of different concentration of NaCl on the contents of proteins, free amino acids, proline and glycine betaine in leaves, stems and roots of Ipomoea pes-caprae. The protein content of the tissues increased in response to salinity upto 200 mM NaCl; the free amino acids content showed a reversal trend. The proline and glycine betaine contents increased with increasing salinity upto 500 mM NaCl. The accumulation of proline and glycine betaine might play a role in the alleviation of salt stress.

Francis, D., Duditz, D., Inzé, D.: Plant Cell Division.

M. Strnad

Biologia plantarum 41:356, 1998 | DOI: 10.1023/A:1001831317590

Allelopathic potential of Zilla spinosa on growth of associate flowering plants and some rhizosphere fungi

A.A. El-Khatib, G.A. Abd-Elaah

Biologia plantarum 41:461-467, 1998 | DOI: 10.1023/A:1001819014864

Zilla spinosa plant part extracts exhibited significantly different inhibitory effect on the seed germination and seedling growth of its associate species. Shoot extract reduced the percentage germination and seedling length of different test species more than root extract. Except of Z. coccineum, seedling growth was more sensitive than seed germination. Shoot/root ratio of all test species increased significantly with increase in extract concentration. Mycelia growth of the two rhizosphere fungal species was more significantly reduced by Z. spinosa shoot extract than root extract. The effects of the different extracts on total protein and total carbohydrate contents of the two test species were comparable. Non-significant increase was recorded at low concentration of both shoot and root extract. However, with the rise of extract concentration, highly significant reduction in the content of these metabolites was recorded.

Relationship between development of endosperm transfer cells and grain mass in maize

R. Gao, S. Dong, J. Fan, C. Hu

Biologia plantarum 41:539-546, 1998 | DOI: 10.1023/A:1001840316163

The most basal endosperm cells of maize (Zea mays L.) began differentiating into transfer cells in 10 days after pollination (DAP). The thickening and ingrowths forming in the transfer cell wall were slow during 10 and 15 DAP. There were many vesicles, silky and string ball objects in cytoplasm, and the number of mitochondria and rough endoplasm reticulum increased. After 15 DAP, the wall thickening and ingrowths forming in the transfer cells sped up. By 20 DAP, the transfer cell zone had developed, there appeared 65 - 70 rows of cells in width and 3 - 4 layers of cell in depth, the obvious cell wall ingrowths presented strong positive reaction with periodic acid Schiff's reagent. After 20 DAP, no significant change appeared in the shape and structure of the transfer cells, and the transfer cells entered function stage. In the mature kernels (53 DAP), the most basal transfer cells were filled with ingrowths, however, dense cytoplasm was also found in these cells. The nuclei had quite irregular shapes in these cells. Some transfer cells contained black grains and crystals. A black layer formed in the pericarp tissue adjacent to the transfer cell zone. Full development of endosperm transfer cells was important for reduction of kernel abortion and increase of kernel mass.

Effects of local source-sink manipulations on fruits and leaves of young pear trees

P.I. Garriz, G.M. Colavita, H.L. Alvarez

Biologia plantarum 41:623-627, 1998 | DOI: 10.1023/A:1001865021614

The effects of modifying local source-sink relations on fruit and leaf characteristics of young pear trees were evaluated during the 1997 - 1998 growing season. The following treatments were applied: early spur ringing (ESR) from 27 days after full bloom (DAFB), late spur ringing (LSR) from 97 DAFB, early 15 % spur leaf area removal (ELAR) and late 15 % spur leaf area removal (LLAR). ESR and LSR significantly inhibited fruit growth, suggesting that the fruiting spurs were not fully autonomous in their carbon economy. ELAR and LLAR had little effect on fruit size; sink strength was demonstrated here, since the presence of the fruit caused an efficient transfer of photoassimilates. ESR treatment decreased specific leaf mass (SLM) by 23.84 % when measured 94 DAFB. ELAR did not significantly influence SLM. Treatments had no marked influence on fruit quality.

Slavík, B. (ed.): Květena České republiky 5

V. Zelený

Biologia plantarum 41:74, 1998 | DOI: 10.1023/A:1001757826375

Effect of Cytokinin 4-PU-30 on the Lipid Composition of Water Stressed Bean Plants

A.P. Ivanova, K.L. Stefanov, I.T. Yordanov

Biologia plantarum 41:155-159, 1998 | DOI: 10.1023/A:1001797407720

Fourteen days-old bean plants, grown on sand with Knop's nutrient solution were subjected to water stress (three days without irrigation). The stress led to a decrease in almost all lipid classes except phospholipids in the primary leaves. The content of palmitic acid increased, and that of the linolenic acid decreased. An increase of hexadecenoic acid in phospholipids was also observed. Rewatering for 24 h led to the recovery of the stressed plants including that of the photosynthetic apparatus, but the changes in the lipid composition were insignificant. The spraying of the plants before and after the water stress with 5 × 10-6 M solution of the phenylurea cytokinin 4-PU-30 alleviated negative effect of water stress on the lipid membrane composition permitting the plants to resist the harmful environment.

Screening of the occurrence of copper amine oxidases in Fabaceae plants

L. Luhová, M. Šebela, I. Frébort, L. Zajoncová, H.G. Faulhammer, P. Peč

Biologia plantarum 41:241-254, 1998 | DOI: 10.1023/A:1001822831761

Aim of this work was to find the best source for obtaining high amount of copper amine oxidase (EC 1.4.3.6) that can be further used for analytical or industrial applications. The study focused on plant enzymes, because they occur in much higher content in the starting material than the enzymes from other sources, have higher specific activity and are also more thermostable. Presence of the amine oxidase was tested in extracts from 4 to 7-d-old seedlings of thirty-four various Fabaceae plants. Amine oxidases from nine selected plants were purified by general method involving ammonium sulfate fractionation, controlled heat denaturation, and three chromatographic steps. Kinetic properties of the amine oxidases purified were tested with a wide range of substrates and inhibitors and were found to be very similar. Best purification yield, and total and specific activities were obtained for the enzyme from grass pea (Lathyrus sativus) throughout all purification steps. Hence, the grass pea extract was chosen as a suitable candidate for massive production of the amine oxidase.

Page, C.N.: The Ferns of Britain and Ireland, 2nd Edition.

P. Havlíček

Biologia plantarum 41:319-320, 1998 | DOI: 10.1023/A:1001849016256

Redistribution of cobalt and nickel in detached wheat shoots: effects of steam-girdling and of cobalt and nickel supply

S. Zeller, U. Feller

Biologia plantarum 41:427-434, 1998 | DOI: 10.1023/A:1001858728977

Detached wheat shoots (ear with peduncle and flag leaf) were incubated for 4 d in a solution containing 1 mM RbCl and 1 mM SrCl2 as well as 10, 40 or 160 µM NiCl2 and CoCl2. The phloem of some plants was interrupted by steam-girdling the stem below the ear to distinguish between xylem and phloem transport. The phloem-immobile Sr flowed mainly to the leaf lamina and to the glumes via the xylem. The Sr transport was not sensitive to steam-girdling. In contrast, the phloem-mobile Rb accumulated during the incubation time mainly in the stem and the leaf sheath. The Rb transport to the grains was impaired by steam-girdling as well as by elevated Ni and Co concentrations in the incubation solution indicating that Rb was transported via the phloem to the maturing grains and that this transport was affected by the heavy metals. Ni was removed more efficiently from the xylem in the peduncle than Co (but far less efficiently than Rb). It became evident that the two heavy metals can also be transferred from the xylem to the phloem in the stem of wheat and reach the maturing grains via the phloem.

The efficiency of transfer of plants cultivated in vitro to ex vitro conditions as affected by sugar supply

Z. Voráčková, H. Lipavská, P. Konečný

Biologia plantarum 41:507-513, 1998 | DOI: 10.1023/A:1001832114345

The greatest growth of wheat and rape plants in vitro was reached on media with 5 or 9 % sucrose, respectively. The highest efficiency for transfer of these plants to ex vitro conditions was found at the same sucrose concentrations. The content of endogenous non-structural saccharides (glucose, fructose, sucrose, starch and fructans) increased with increasing sucrose concentration in the medium up to 10 %.

Influence of Cd2+ on growth, chlorophyll content, and water relations in young barley plants

A. Vassilev, M. Berova, Z. Zlatev

Biologia plantarum 41:601-606, 1998 | DOI: 10.1023/A:1001856819797

Barley (Hordeum vulgare L., cv. Hemus) plants were grown in nutrient solution with or without 54 µM Cd2+ for 12 d. A treatment with Cd2+ inhibited the growth of young barley plants. The main factor limiting plant growth was net assimilation rate, due to decreased photosynthetic rate and accelerated dark respiration rate. One of the reasons for the reduced photosynthetic rate was the lower chlorophyll and carotenoid content. Cd2+ decreased water potential and transpiration rate, but relative water content in leaves of the treated plants was not significantly changed.

Changes in Nuclear Ultrastructure during Callus Development in Tissue Culture of Allium Sativum

H.-L. Wang, Y.-Q. Kang, C.-J. Zhang, Y. Ma, T.-K. Wang

Biologia plantarum 41:49-55, 1998 | DOI: 10.1023/A:1001752214563

The changes in nuclear ultrastructure during garlic development were investigated. In quiescent cells, the nucleus was oblate and small, full of heterochromatin, and without nucleolus. In the active phase cells, the nucleus moved toward the center of the cell, and was enlarged with many deep fissures, and the heterochromatin in the nucleus turned to be euchromatin. One or more nucleoli were seen in active phase cells. Cell divisions were by means of amitosis. Relatively large nuclei with small distortions were seen in the callus cells. These results suggest that the metabolism of the active cells was higher than that of callus and quiescent cells.

Changes in Saccharide Metabolism Induced by Infection of Camellia Sinensis by Exobasidium Vexans

P.K. Pius, K.V. Krishnamurthy, R. Nelson

Biologia plantarum 41:127-132, 1998 | DOI: 10.1023/A:1001785104994

Changes in saccharide contents of tea leaves during infection with blister blight fungus Exobasidium vexans Masse was studied. Saccharose and glucose contents decreased in the blistered portions when compared to the normal regions until sporulation and remained constant during the entire period of sporulation. Fructose content increased abruptly during the initiation of sporulation and remained constant up to the end of sporulation in both blistered and non-blistered regions. Starch content continuously decreased in the blistered region. Peroxidase activity was highly enhanced during the final stages of leaf senescence. The activity of acid invertase was inversely proportional to the starch content and closely related to the changes in the saccharose and glucose contents. Protein and chlorophyll contents gradually decreased in the blistered regions.

Role of aminolevulinic acid in improving biomass production in Vigna catjung, V. mungo, and V. radiata

C. Bindu Roy, M. Vivekanandan

Biologia plantarum 41:211-215, 1998 | DOI: 10.1023/A:1001806429035

A precursor in tetrapyrrole biosynthesis, 5-aminolevulinic acid (ALA), was applied via presowing soaking in Vigna catjung, V. mungo, and V. radiata. ALA increased plant growth and influenced dry matter accumulation in leaves, stems, and pods through increased chlorophyll content and photosynthetic CO2 absorption. At harvest, ALA treated plants had increased number of pods per plant, seeds per pod, 100 seed dry matter, biological yield, and the harvest index. Therefore, pretreatment of seeds with optimal concentration of ALA is recommended for improving the growth and productivity of tropical legumes.

Effect of flavonoids on in-vitro proliferation of hyphae of Glomus fistulosum

M. Gryndler, H. Hršelová

Biologia plantarum 41:303-306, 1998 | DOI: 10.1023/A:1001807823100

Biochanin A, luteolin, naringenin and quercetin significantly decreased the percentage of root segments bearing the intraradical proliferating hyphae of Glomus fistulosum at the concentrations up to 10 µmol dm-3. The growth of hyphae was inhibited by biochanin A and luteolin whereas no significant effects of quercetin and naringenin were observed.

Chilling-induced changes in membrane fluidity and antioxidant enzyme activities in Coffea arabica L. roots

C.G.S. Queiroz, A. Alonso, M. Mares-Guia, A.C. Magalhães

Biologia plantarum 41:403-413, 1998 | DOI: 10.1023/A:1001802528068

Exposure of coffee to low temperatures caused growth inhibition, changes in metabolic rates, and membrane alterations. Root tissue exposed to 10 °C evolved significantly lower rates of metabolic heat compared with controls grown at 25 °C, and the values were closely associated with the observed root growth inhibition. Electron paramagnetic resonance spectra of intact tissues showed that the spin probe 5-doxylstearic acid was capable to intercalate within the cellular membrane lipids. Indeed, at the depth of the 5th carbon atoms of the alkyl chains, the nitroxide radical detected more rigid membranes in seedlings exposed to 10 °C compared with 25 °C treated samples. Ascorbate peroxidase and catalase activities did not show appreciable changes under chilling conditions, while guaiacol peroxidase activity increased 55 % compared to the control. On the other hand, glutathione reductase activity decreased, in parallel to a significant decline in the capacity to reduce triphenyl-tetrazolium. Our results showed a marked correlation between lipid peroxidation and root tissue damage, which seemed to be associated with increased membrane rigidity.

Direct somatic embryogenesis from shoot apical meristems of pea, and thidiazuron-induced high conversion rate of somatic embryos

M. Griga

Biologia plantarum 41:481-495, 1998 | DOI: 10.1023/A:1001834213437

Direct somatic embryogenesis from shoot apical meristems of pea is described. Somatic embryos were induced directly (without callus intervention) from meristematic tissues grown on a medium supplemented with 2.5 µM picloram. Within 4 to 5 weeks, fully morphologically developed somatic embryos were obtained. Somatic embryos originated from apical as well as from basal parts of meristem explants. The initiation and development of somatic embryos was asynchronous, basal somatic embryos developed more quickly than apical ones. Abundant secondary embryogenesis was observed after isolation of primary somatic embryos and culturing them on media for germination. Morphologically normal somatic embryos germinated on medium without growth regulators; the conversion rate was increased by application of 10 µM thidiazuron (TDZ). TDZ was also able to induce shoot bud regeneration on embryos without differentiated a shoot apex, allowing to germinate up to 78 % of all harvested somatic embryos with various morphology. The protocol was successfully tested in 47 out of 48 P. sativum and P. arvense cultivars as well as in two wild peas (P. elatius, P. jomardi).

Raghavendra, A.S. (ed.): Photosynthesis. A Comprehensive Treatise

J. Pospíšilová

Biologia plantarum 41:586, 1998 | DOI: 10.1023/A:1001881525249

Harnessing Senescence Delaying Gases Nitric Oxide and Nitrous Oxide: A Novel Approach to Postharvest Control of Fresh Horticultural Produce

Y.Y. Leshem, R.B.H. Wills

Biologia plantarum 41:1-10, 1998 | DOI: 10.1023/A:1001779227767

The effects of ethylene on postharvest horticultural produce are a major limiting factor in their orderly and efficient marketing. Nitric oxide and nitrous oxide have recently been shown to inhibit ethylene action and synthesis in higher plants and their potential for commercial use to extend the storage and marketing life of fruits, vegetables and flowers is reviewed.

Birren, B., Green, E.D., Klapholz, S., Myers, R.M., Roskams, J.: Genome Analysis: A Laboratory Manual. Volume 1 Analyzing DNA

K.J. Angelis

Biologia plantarum 41:100, 1998 | DOI: 10.1023/A:1001761927284

Isenberg, G. (ed.): Modern Optics, Electronics, and High Precision Techniques in Cell Biology

J. Nauš

Biologia plantarum 41:192, 1998 | DOI: 10.1023/A:1001820225826

Chlorophyll accumulation in black pine seedlings treated with 5-aminolevulinic acid

G. Dražić, N. Mihailović

Biologia plantarum 41:277-280, 1998 | DOI: 10.1023/A:1001891319465

5-Aminolevulinic acid (10-5 M), a key precursor in chlorophyll biosynthetic pathway, stimulated chlorophyll accumulation in the dark grown black pine (Pinus nigra Arn.) seedlings and did not affect chlorophyll accumulation in the light.

Repression of Genetic Activity in Root Meristem Cells by Peptidic Factor Derived from Male Sex Organs of Chara

J. Maszewski, A. Kaźmierczak

Biologia plantarum 41:357-368, 1998 | DOI: 10.1023/A:1001834007595

Present autoradiographic investigations using 3H-uridine and 3H-leucine incorporation indicate that preincubation of primary roots of Melandrium noctiflorum with antheridial chromatin condensation factor (ACCF), a low molecular mass peptidic factor (4.5 kDa) obtained from maturing male sex organs of Chara tomentosa, leads to a marked reduction of transcription and translation in G1, G2 and endopolyploid cells (8C DNA level). Moreover, silver staining of cells reveals considerable decrease in number and sizes of nucleoli. The similarities that exist between the "innate" processes within developing antheridial filaments of Chara and the genetic repression induced by antheridial peptidic extracts in root cells of M. noctiflorum seems to provide further positive evidence for the presence of a highly specific factor that contributes to nuclear re-patterning of differentiating germ line cells in male sex organs of Chara.

Twyman, R.M.: Advanced Molecular Biology. A Concise References.

L. Skálová

Biologia plantarum 41:468, 1998 | DOI: 10.1023/A:1001843721225

Quantitative changes in maize cytoplasmic proteins induced by aluminium

J. Huttová, L. Tamás, I. Mistrík

Biologia plantarum 41:547-554, 1998 | DOI: 10.1023/A:1001892300233

Three-day-old maize seedlings were subjected to 100 µM AlCl3 for 24 h. Cytoplasmic proteins were isolated from root tips, root base and from coleoptiles. After fractionation of cytoplasmic proteins on anion chromatography column Bio-Scale Q2 sodium dodecylsulphate polyacrylamide gel electrophoresis (SDS-PAGE) analysis was used to monitor Al-induced changes in polypeptide composition of particular fractions. Four (root) and 7 (coleoptile) fractions were eluted from the column with linear 0 - 1.0 M NaCl gradient. In fraction 1 of cytoplasmic proteins from root tips Al induced accumulation of polypeptide with molecular mass of 16 kD and simultaneous reduction of two polypeptides (67.5 and 60 kD). In fraction 1 isolated from mature zone of maize roots Al-induced accumulation of 22 kD polypeptide and reduction of 67.5, 60, and 14 kD polypeptides. Most pronounced changes were revealed in coleoptile. In three protein fractions increased accumulation of polypeptides with molecular mass of 14, 17.5, 20, 24.5, 28, 30, and 37.5 kD were observed. In the remaining three root or four coleoptile fractions of cytoplasmic proteins, no differences were found between Al-treated and control maize seedlings.

The effect of drought, temperature and irradiation on leaf rolling in Ctenanthe setosa

R. Turgut, A. Kadioglu

Biologia plantarum 41:629-633, 1998 | DOI: 10.1023/A:1001817105685

The effects of drought, temperature and irradiation on leaf rolling of Ctenanthe setosa were studied. Water deficit and air temperature were the most important, and have a synergistic effect on the degree and number of the rolled leaves. Irradiation also increased the rolling together with the water deficit but not alone. The stomata were open in rolled leaves.

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