biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 2341 to 2370 of 6293:

Cytogenetic Analysis of Cotton Monosomics

M.F. Sanamyan, J.E. Petlyakova

Biologia plantarum 45:367-373, 2002 | DOI: 10.1023/A:1016261416000

Eleven monosomics in cotton that were obtained in the progenies of three disomic desynaptic plants were cytologically characterized. The transmission of the monosomes in progeny was shown in the 26 monosomic plants. In 23 plants the frequency of monosomics was ranged between 14.29 and 41.67 %. Three monosomics usually occurred in much lower frequencies (from 3.03 to 5.00 %). Various transmission rates indirectly pointed out different monosomes as a specific chromosomes of cotton genome. Three telochromosomes and one isochromosome were isolated from the progenies of the four monosomics. Using translocation test it was recovered that seven monosomes of different monosomics are homologous to one of the chromosomes of six translocation lines of our collection.

Effective Protocol for in Vitro Shoot Production Through Nodal Explants of Simmondsia Chinensis

V. Agrawal, S. Prakash, S.C. Gupta

Biologia plantarum 45:449-453, 2002 | DOI: 10.1023/A:1016238205522

Nodal explants excised from 18 to 20-year-old female plants of Simmondsia chinensis if cultured on Murashige and Skoog's medium supplemented with 20 μM N6-benzyladenine (BA) differentiated an average of 2.7 ± 0.4 shoots in 11.5% explants. The percentage of nodal explants inducing multiple shoots enhanced significantly if in vitro raised shoots were used as source of explants. Nearly 100% cultures differentiated an average of 4.7 ± 2.0 shoots per explant on the same medium. Nearly 85% of the shoots induced roots when a pulse treatment of 50 μM indole-3-butyric acid (IBA) was given prior to their transfer to semi-solid MS medium containing 10 μM IBA + 0.5% activated charcoal + 1 μM BA. Plantlets were gradually hardened in Soilrite and acclimatized to soil.

RAPD Profile Analysis of Betel Vine Cultivars

S.A. Ranade, A. Verma, M. Gupta, N. Kumar

Biologia plantarum 45:523-527, 2002 | DOI: 10.1023/A:1022364823330

RAPD analysis in selected cultivars of Kapoori and Bangla betel vines (Piper betle L.) were carried out in order to ascertain the relatedness of the two to each other. On the basis of the data from 10 RAPD primers, it was found that the Kapoori cultivars were more heterogeneous (mean SI = 0.521) while the Bangla cultivars were mostly similar to each other (mean SI = 0.884). Within each type, the overall polymorphism of RAPD bands was more than 70 %. When RAPD band data for both types of cultivars were considered cumulatively, the two were clearly separated from each other. In fact only six bands out of a total of 60 bands were found to be common to cultivars of both types. Bands specific to only one of the two types have potential for developing betel vine cultivar-specific probes and SCAR-markers.

Chilling Induced Oxidative Stress in Germinating Wheat Grains as Affected by Water Stress and Calcium

H. Nayyar, S.K. Kaushal

Biologia plantarum 45:601-604, 2002 | DOI: 10.1023/A:1022308809328

Wheat (Triticum aestivum L.) plants were subjected to mild water stress during grain filling at milk (early, medium, and late) and dough (early, soft, hard) stages. The grains harvested from stressed plants were subjected to low temperature stress of 10 °C for 24 h in presence or absence of 1 mM CaCl2, and embryos were examined for oxidative injury. The embryos of grains water stressed at milk and soft dough stages showed lowest contents of H2O2 and malondialdehyde and highest membrane stability index, ascorbic acid content, and activities of catalase, ascorbate peroxidase, and superoxide dismutase as compared to control embryos or water-stressed at other stages. Presence of Ca2+ in the medium reduced H2O2 and malondialdehyde content and increased ascorbic acid content, and catalase, ascorbate peroxidase and superoxide dismutase activities.

Øvstedal, D.O., Lewis Smith, R.I.: Lichens of Antarctica and South Georgia. A Guide to their Identification and Ecology

J. Gloser

Biologia plantarum 45:38, 2002 | DOI: 10.1023/A:1015130808724

Leshem, Y.Y.: Nitric Oxide in Plants. Occurrence, Function and Use

N. Wilhelmová

Biologia plantarum 45:116, 2002 | DOI: 10.1023/A:1015147312359

Morphology and Anatomy of Pisum Sativum Somatic Embryos

M. Griga

Biologia plantarum 45:173-182, 2002 | DOI: 10.1023/A:1015176118719

The morphological and anatomical aspects of direct and indirect somatic embryogenesis in pea were described. Direct embryos were induced from shoot apical meristems of 3 to 5-d-old pea seedlings, embryogenic callus originated from immature pea zygotic embryos or shoot apices. Auxin (picloram, 2,4-dichlorophenoxyacetic acid) was necessary to induce somatic embryos. The developmental stages typical for pea zygotic embryos were detected. Globular and heartshaped somatic embryos were morphologically similar to their zygotic counterparts; in contrast, torpedo and cotyledonary somatic embryos displayed great morphological variation, which affected mainly cotyledons (size, shape, number). Based on anatomical sections, possible ways of somatic embryo formation and localization of initiation sites within primary explant tissue have been proposed. The multicellular origin of somatic embryos is supposed in both systems of pea somatic embryogenesis under investigation.

Hg and Cd Induced Changes in Proline Content and Activities of Proline Biosynthesizing Enzymes in Phaseolus Aureus and Triticum Aestivum

B.P. Shaw, N.P. Rout

Biologia plantarum 45:267-271, 2002 | DOI: 10.1023/A:1015109125988

The effect of mercury and cadmium, in the form of HgCl2 and CdCl2 respectively, on proline accumulation and two key proline biosynthesizing enzymes, Δ1-pyrroline-5-carboxylate synthetase (P5CS) and Δ1-pyrroline-5-carboxylate reductase (P5CR), was investigated in Phaseolus aureus Roxb. and Triticum aestivum L. The 5-d-old seedlings were exposed to 0.05, 0.1, 0.2 or 0.4 mM concentrations of the metals in Hoagland solution for 12 and 36 h. T. aestivum exhibited considerably greater accumulation of proline than P. aureus in response to the metal treatment. Among the two metals, Hg induced greater accumulation of proline than Cd. The activity of P5CS increased significantly in response to the metal treatment, particularly in T. aestivum in which the activity of the enzyme in the control was much higher than that was in P. aureus. The activity of P5CR on the other hand mostly decreased in response to the metal treatment. The study indicated a strong dependence of the metal induced proline accumulation on the constitutive P5CS content of the plants.

Chapman, K.E., Higgins, S.J. (Ed.): Regulation of Gene Expression

V. Žárský

Biologia plantarum 45:352, 2002 | DOI: 10.1023/A:1016254709156

Glucose-6-Phosphate Dehydrogenase, Ribonucleases and Esterases upon Tobacco Mosaic Virus Infection and Benzothiodiazole Treatment in Tobacco

M. Šindelářová, L. Šindelář, L. Burketová

Biologia plantarum 45:423-432, 2002 | DOI: 10.1023/A:1016277919634

Effect of the benzothiodiazole (BTH) pre-treatment was monitored during the acute infection stage in the susceptible and the hypersensitive tobacco plants infected with the tobacco mosaic virus (TMV). Dynamic changes in the contents of chlorophyll, the total proteins, and the pathogenesis related proteins (PR-proteins), and activities of ribonucleases (RNase), phosphomonoesterase (PME), phosphodiesterase (PDE), and glucose-6-phosphate dehydrogenase (G6P DH) were studied. Neither the protein nor the chlorophyll contents were significantly changed by the TMV infection and/or the BTH treatment. The BTH pre-treatment caused a substantial reduction in the multiplication of TMV in the locally-infected leaves of the hypersensitive cultivar Xanthi-nc (to 15.1%). A lesser decrease (to 50.3%) was observed in the locally-infected leaves of susceptible cultivar Samsun. But in the systemically-infected leaves of this cultivar, only a 4-d delay in the multiplication of TMV was found. In the locally-infected leaves of both cultivars, the activities of the RNase, PME, PDE and G6P DH were sharply increased during the acute phase of TMV multiplication (when compared with the healthy plants) and the curves of these activities correlated with the multiplication curves of TMV. The BTH alone also strongly enhanced the activities of these enzymes early after application. Only low additional increases in some enzymes and even slight declines in the others were observed when the inoculation of leaves of cultivar Xanthi-nc followed the pre-treatment with the BTH. No inhibition of the enzymes was observed when the direct effect of different concentration of the BTH (1 - 1000 μM) was examined in vitro during a measurement of the activity. The analysis of intercellular proteins by PAGE under native conditions shows the similar spectrum of the proteins extracted from either the BTH-treated or the TMV-infected tobacco cv. Xanthi-nc.

Karnosky, D.F., Ceulemans, R., Scarascia-Mugnozza, G.E., Innes, J.L. (ed.): The Impact of Carbon Dioxide and Other Greenhouse Gases on Forest Ecosystems

J. Pospíšilová

Biologia plantarum 45:494, 2002 | DOI: 10.1023/A:1022353931769

Micropropagation of Spilanthes acmella Murr.

K.V. Saritha, E. Prakash, N. Ramamurthy, C.V. Naidu

Biologia plantarum 45:581-584, 2002 | DOI: 10.1023/A:1022385327873

Multiple shoots of Spilanthes acmella Murr. were induced from hypocotyl segments obtained from 1-week-old seedlings on Murashige and Skoog's (MS) medium containing benzyladenine (BA), isopentenyl adenine, and naphthaleneacetic acid (NAA). High frequency shoot proliferation (95 %) and maximum number of shoots per explant (10 ± 0.6) were recorded with 0.5 mg dm-3 BA in combination with 0.1 mg dm-3 NAA. A proliferation was achieved by repeatedly subculturing the nodal segments on shoot multiplication medium. About 95 % of the in vitro shoots developed roots after transfer to half strength MS medium containing indole-3-butyric acid (1.0 mg dm-3). 95 % of the plantlets were successfully acclimatized and established in soil. Transplanted plantlets showed normal flowering without any morphological variation.

Dafni, A., Hesse, M., Pacini, E. (ed.): Pollen and Pollination

J. Tupý

Biologia plantarum 45:18, 2002 | DOI: 10.1023/A:1015162305999

Effects of Cadmium, Lead, Mercury and Zinc on °-Aminolevulinic Acid Dehydratase Activity from Radish Leaves

V.M. Morsch, M.R.C. Schetinger, A.F. Martins, J.B.T. Rocha

Biologia plantarum 45:85-89, 2002 | DOI: 10.1023/A:1015196423320

The purpose of the present study was to investigate the in vitro and the in vivo effects of cadmium, zinc, mercury and lead on δ-aminolevulinic acid dehydratase (ALA-D) activity from radish leaves. The in vivo effect of these metals on growth, DNA and protein content was also evaluated. The results demonstrated that among the elements studied Cd2+ presented the highest toxicity for radish. 50% inhibition of ALA-D activity (IC50) in vitro was at 0.39, 2.39, 2.29, and 1.38 mM Cd2+, Zn2+, Hg2+ and Pb2+, respectively. After in vivo exposure Cd2+, Zn2+, Hg2+ and Pb2+ inhibited ALA-D by about 40, 26, 34 and 15%, respectively. Growth was inhibited by about 40, 10, 25, and 5% by Cd2+, Zn2+, Hg2+, and Pb2+, respectively. DNA content was reduced about 35, 30, 20, and 10% for Cd2+, Zn2+, Hg2+, and Pb2+, respectively. The metal concentration in radish leaves exposed to Cd2+, Zn2+, Hg2+, and Pb2+ was 18, 13, 6, and 7 μmol g-1, respectively. The marked ability of radish to accumulate Cd2+ and Zn2+ raises the possibility of using this vegetable as a biomonitor of environmental contamination by these metals.

In Vitro Regeneration of European Linden

I. Sarvašová, J. Ďurkovič

Biologia plantarum 45:149-152, 2002 | DOI: 10.1023/A:1015102019203

The regeneration of European linden (Tilia × europaea L.) in vitro was successful. When using axillary buds as primary explants it was possible to induce a new shoot growth. The highest number of shoots per explant (2.13 ± 1.09) was recorded at the presence of 0.2 mg dm-3 6-benzylaminopurine. Up to 50% of elongated shoots rooted in the presence of 2.0 mg dm-3 α-naphthaleneacetic acid.

Effect of NaCl and Polyamines on Plasma Membrane Lipids of Wheat Roots

M.M.F. Mansour, K.H.A. Salama, M.M. Al-Mutawa, A.F. Abou Hadid

Biologia plantarum 45:235-239, 2002 | DOI: 10.1023/A:1015144607333

Caryopses of a salt sensitive wheat cultivar (Triticum aestivum L. cv. Giza 163) were presoaked in 2.5 mM putrescine (Put), 5 mM spermidine (Spd) or 2.5 mM spermine (Spm) for 24 h and then subjected to 150 mM NaCl added to the growth medium for 15 d. Effects of NaCl and polyamines (PAs) on plasma membrane (PM) lipids, phospholipids, fatty acids, and free sterols were determined. NaCl treatment caused a decrease in total phospholipids, increase in saturated fatty acids and altered distribution of sterols and phospholipids. NaCl also induced increase in sterol/phospholipid ratio. PAs treatments (particularly Put and Spd) counterbalanced the NaCl deleterious effects on PM lipids.

Jiří Čatský

Zdeněk Šesták

Biologia plantarum 45:1-2, 2002 | DOI: 10.1023/A:1016207629204

Changes in Nitrogen Metabolism of Vigna Radiata in Response to Elevated CO2

A.C. Srivastava, M. Pal, U.K. Sengupta

Biologia plantarum 45:395-399, 2002 | DOI: 10.1023/A:1016269717817

With the aim to determine the effects of CO2 on nitrogen metabolism mungbean (Vigna radiata) plants were grown from seedling emergence to maturity inside open top chambers under ambient CO2 (CA, 350 ± 25 µmol mol-1) and elevated CO2 (CE, 600 ± 50 µmol mol-1) concentrations at the Indian Agricultural Research Institute, New Delhi. Leaflet blades of the same physiological age were sampled at 20, 35 and 50 d after germination. Total nitrogen concentration in dry mass was consistently lower under CE than in CA. Non-protein nitrogen and protein nitrogen were also decreased under CE Total soluble protein content also decreased up to 35 d after germination under CE. However, a 27 % increase in protein content at 50 d after germination due to CE was observed. A significant decrease in total free amino acid under CE at 20 d after germination was observed. CE also brought about a remarkable decrease in the activity of nitrate reductase in leaves at 20 d after germination but increase at 35 d and 50 d after germination. Nitrogenase activity increased at all growth stages due to CE. Although total harvested leaves of CE plants accumulated more nitrogen, the relative amount of nitrogen on a percentage basis was low, probably due to a comparatively greater accumulation of sugars in the leaves of CE plants.

Seed Longevity of Eucalyptus Victrix in Grassland in the Floodplain of the Fortescue River, Pilbara, Western Australia

S.K. Florentine, J.E.D. Fox

Biologia plantarum 45:477-479, 2002 | DOI: 10.1023/A:1016250608248

Burial and removal techniques with seeds bags were used to examine the Eucalyptus victrix seed longevity. Seeds kept in room temperature (control) had 94% germination within 25 d, however, with increasing duration of burial the E. victrix seed viability decreased to zero before 142 d. Similarly, seed buried in shade and open had no significance difference in germination.

Response of Tea Plants to Water Stress

U. Chakraborty, S. Dutta, B.N. Chakraborty

Biologia plantarum 45:557-562, 2002 | DOI: 10.1023/A:1022377126056

Two-year-old potted plants of six Camellia sinensis cultivars (TV-18, TV-26, UPASI-3, UPASI-26, T-78 and HV-39) were subjected to water stress for 4, 8 and 12 d. Relative water content (RWC) of leaves of all cultivars declined with water stress, but in the two drought tolerant cultivars (UPASI-3 and UPASI-26), higher RWC were maintained in comparison to the others. Phenol content and activities of phenylalanineammonialyase, polyphenoloxidase and peroxidase initially increased, but decreased during extended drought. Chlorophyll contents decreased, whereas proline contents increased during water stress. SDS-PAGE analysis of proteins revealed increased accumulation of proteins of intermediate molecular masses (42 - 44 kDa) and low molecular masses (14 - 26 kDa). After 12 d of water stress, most of these proteins disappeared in T-78 and HV-39, but in the other cultivars they were still detectable.

Induction of Oxidative Stress in Roots of Oryza sativa L. in Response to Salt Stress

M.H. Khan, S.K. Panda

Biologia plantarum 45:625-627, 2002 | DOI: 10.1023/A:1022356112921

With the imposition of salt stress (0.5 to 3 % NaCl or CaCl2) a decrease in germination rate and accumulation of proline was observed in the root tissue. Both NaCl and CaCl2 solutions induced an increase in the total peroxide content and lipid peroxidation and decrease in catalase, guaiacol peroxidase and superoxide dismutase activities in root tissues suggesting an oxidative stress in the salt sensitive rice cultivar.

Light-Dark Changes in Proline Content of Barley Leaves under Salt Stress

I.S. Fedina, K. Georgieva, I. Grigorova

Biologia plantarum 45:59-63, 2002 | DOI: 10.1023/A:1015175802847

Proline accumulation in leaves of barley (Hordeum vulgare L. cv. Alfa) seedlings treated with 150 mM NaCl was promoted in the light and suppressed in the dark. The light/dark changes of proline content was enhanced with each 12 h light/12 h dark cycle and the proline content increased steadily. Root and shoot concentrations of Na+ and Cl- in salt treated plants increased about 10 to 25 times as compared to the control. The content of these ions and the content of malondialdehyde were higher in the shoot of seedlings exposed to salt stress for 4 d in the light in comparison with the seedlings exposed to NaCl for 4 d in darkness. Light stimulated both ions and proline accumulation in the leaves and has no effect in the roots. Oxygen uptake was higher in the seedlings kept 4 d in the light which have higher endogenous free proline content. Chlorophyll fluorescence measurements showed that the photochemical activity of PS 2 slightly decreased as a result of salt stress and was not influenced by light regimes during plant growth.

Seed Germination in Relation to Salinity and Temperature in Sarcobatus Vermiculatus

M.A. Khan, B. Gul, D.J. Weber

Biologia plantarum 45:133-135, 2002 | DOI: 10.1023/A:1015133515568

Sarcobatus vermiculatus (Hook) Torrey is a leaf succulent, sodium-accumulating shrub usually found in saline substrates of the Great Basin desert, Utah, USA. Laboratory experiments were conducted to determine the effect of salinity (0, 200, 400, 600, 800 and 1000 mM NaCl) and temperature (day/night: 5/15, 10/20, 15/25, 20/30, and 25/35°C) on seed germination. S. vermiculatus showed 100% germination in non-saline controls, at all thermoperiods. Percentage and rate of germination decreased with increases in salinity and few seeds germinated at even 1000 mM NaCl. High salinity exposure caused the loss of viability at higher temperature regimes, while some recovery was recorded in low salinity treatments.

Smit, A.L., Bengough, A.G., Engels, C., van Noordwijk, M., Pellerin, S., van de Gijn, S.C. (Ed.): Root Methods. A Handbook

O. Votrubová

Biologia plantarum 45:212, 2002 | DOI: 10.1023/A:1015185815510

Reddening of Cotton (Gossypium Hirsutum L.) Leaves

A. Edreva, A. Gürel, E. Gesheva, H. Hakerlerler

Biologia plantarum 45:303-306, 2002 | DOI: 10.1023/A:1015121428714

Reddening of leaves is a physiological disorder in cotton induced by different abiotic stresses. Dramatic biochemical changes occurred in reddening leaves: strong accumulation of anthocyanins and drop of chlorophyll content, important increase of proline content and peroxidase activity. The lipid peroxide content indicative of membrane fragmentation was decreased. In this way a multicomponent system encompassing anthocyanins, proline, and peroxidase may act coordinately to overcome abiotic stress in cotton.

Bovey, R.W.: Woody Plants and Woody Plant Management. Ecology, Safety and Environmental Impact

M. Matucha

Biologia plantarum 45:374, 2002 | DOI: 10.1023/A:1016210926903

Genome Size Variation in Some Tropical Hardwoods

D. Ohri

Biologia plantarum 45:455-457, 2002 | DOI: 10.1023/A:1016290222360

4-C DNA values of 36 tropical hardwood species belonging to 13 families show a range from 2.08 to 20.07 pg, a 9.64-fold difference. DNA per chromosome values show a 10-fold difference. The minimum range of variation (1.2-fold) is shown by Annonaceae and Sapindaceae while the maximum range (6.23-fold) is shown by Euphorbiaceae, and Fabaceae and Rutaceae show 1.7 and 1.9-fold differences, respectively. On an average, Euphorbiaceae and Rutaceae have been found to possess the largest and the smallest genome sizes respectively.

Comparative Study of Seed Protein Profiles in the Genus Pisum

S.S. Jha, D. Ohri

Biologia plantarum 45:529-532, 2002 | DOI: 10.1023/A:1022316907401

Seed protein profiles of 24 wild and cultivated taxa of Pisum have been compared by sodium dodecyl sulphate polyacrylamide gel electrophoresis. No consistent differences were detected either among wild taxa or between wild and cultivated taxa. This shows that Pisum forms a single-species complex on the basis of seed protein profiles.

Putrescine Effect on Nitrate Reductase Activity, Organic Nitrogen, Protein, and Growth in Heavy Metal and Salinity Stressed Mustard Seedlings

D.B. Singh, S. Varma, S.N. Mishra

Biologia plantarum 45:605-608, 2002 | DOI: 10.1023/A:1022360612976

Putrescine effect on nitrate reductase activity, organic nitrogen and protein contents, and plant growth under Cd or Pb (0.1 - 2 mM) and salinity (5 and 100 mM NaCl) stresses was examined in Indian mustard (Brassica juncea L. cv. RH-30) seedlings. Cd or Pb and salinity inhibited nitrate reductase activity and decreased organic nitrogen and protein contents in leaf tissue. The increased nitrate reductase activity induced by putrescine was correlated with increased organic nitrogen and protein contents and growth of plants.

Brassinolide Effect on Growth of Apical Meristems, Ethylene Production, and Abscisic Acid Content in Potato Tubers

N.P. Korableva, T.A. Platonova, M.Z. Dogonadze, A.S. Evsunina

Biologia plantarum 45:39-43, 2002 | DOI: 10.1023/A:1015167616960

Treatment of intact potato (Solanum tuberosum L., cv. Nevskii) tubers with 24-epibrassinolide (EB) resulted in prolonged deep dormancy, increased production of ethylene and higher contents of free and bound abscisic acid (ABA) in buds. EB at the most efficient concentration 0.021 mg dm-3, applied immediately after tuber harvest, inhibited sprouting by 36 - 38 d, increased ethylene formation after 1 and 7 d of storage by almost 300 and 150%, respectively, and increased the content of both free and bound ABA during the whole period of storage (on average by about 80%). Electron microscopic and morphometric studies showed that EB brings about a decrease in cell volume in tunica and all types of meristems and an increase in the number of vacuoles, accompanied by a decrease in their volume.

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