biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1951 to 1980 of 6170:

Caemmerer, S. von: Biochemical Models of Leaf Photosynthesis.(Techniques in Plant Science No. 2)

J. Pospíąilová

Biologia plantarum 46:34, 2003 | DOI: 10.1023/A:1022388107795

The Effect of Pseudomonas fluorescens and Fusarium oxysporum f.sp. cubense on Induction of Defense Enzymes and Phenolics in Banana

R. Thangavelu, A. Palaniswami, S. Doraiswamy, R. Velazhahan

Biologia plantarum 46:107-112, 2003 | DOI: 10.1023/A:1022374520121

The effect of Pseudomonas fluorescens treatment and Fusarium oxysporum f. sp. cubense inoculation on induction of phenylalanine ammonia-lyase (PAL), peroxidase (POX), chitinase, β-1,3-glucanase and accumulation of phenolics in banana (Musa sp.) was studied. When banana roots were treated with P. fluorescens strain Pf10, a two-fold increase in phenolic content in leaf tissues was recorded 3 - 6 d after treatment. Challenge inoculation with F. oxysporum, the wilt pathogen, steeply increased the phenolic content in P. fluorescens-treated banana plants. Significant increase in POX activity was detected 6 - 9 d after P. fluorescens treatment. PAL, chitinase and β-1,3-glucanase activities increased significantly from 3 d after P. fluorescens treatment and reached the maximum 6 d after treatment. Challenge inoculation with F. oxysporum further increased the enzyme activities. These results suggest that the enhanced activities of defense enzymes and elevated content of phenolics may contribute to bioprotection of banana plants against F. oxysporum.

Glaser, R.: Biophysics

M. Durchan

Biologia plantarum 46:180, 2003 | DOI: 10.1023/A:1022830022612

Effects of Paclobutrazol on Response of Two Barley Cultivars to Salt Stress

A.D. Özmen, F. Özdemír, I. Türkan

Biologia plantarum 46:263-268, 2003 | DOI: 10.1023/A:1022862929881

The seeds of two barley (Hordeum vulgare L.) cultivars (a drought resistant cv. Tokak-137/57 and a drought sensitive cv. Erginel-90) were imbibed either in distilled water (control) or in a solution containing 40 mg dm-3 paclobutrazol (PBZ) and air dried. Seeds were germinated and grown in a glasshouse for 21 d and seedlings were subjected to salt stress by treating them with 100 and 200 mM NaCl for 12 d. The height of shoots was significantly decreased and root length was increased in PBZ-treated plants prior and after NaCl stress for 12 d leading to an increase in root to shoot ratio. Leaf chlorophyll and carotenoid contents in PBZ treated plants were increased in controls and especially in plants subjected to salt stress. PBZ induced increase in superoxide dismutase (SOD) activities was higher in cv. Tokak-157/37, than in cv. Erginel-90. However, an increase in SOD activity was not accompanied by an increase in peroxidase activity.

Howe, S., Hendriksson, K.: PhraseBook for Writing Papers and Research. 2nd Ed.

Z. ©esták

Biologia plantarum 46:342, 2003 | DOI: 10.1023/A:1024323529527

Trigonelline Concentration in Field-Grown Soybean in Response to Irrigation

Y. Cho, V.N. Njiti, X. Chen, D.A. Lightfoot, A.J. Wood

Biologia plantarum 46:405-410, 2003 | DOI: 10.1023/A:1024390522259

Trigonelline (TRG) is a conjugate of nicotinic acid, and is postulated to function as a compatible solute in response to salinity- and water deficit-stresses. TRG concentrations and several agronomic characteristics were measured under irrigated field and non-irrigated field conditions within 18 soybean (Glycine max) genotypes using leaves taken from different growth stages (vegetative, flowering and pod development). Under irrigation, relative water content (RWC) ranged from 90.0 to 99.6 %. Under non-irrigation, RWC ranged from 86.3 to 97.5 %. TRG concentration ranged from 364 to 555 μg g-1(d.m.) under irrigation, and from 404 to 570 μg g-1(d.m.) under non-irrigation. TRG concentrations increased in the majority of genotypes (15 of 18) under non-irrigation even though RWC did not significantly differ in many genotypes between treatments. TRG decreased as plants progressed to pod development and seed filling. Mean seed yield under non-irrigated conditions declined 55 % relative to the irrigated controls. TRG concentrations among all genotypes were significantly correlated with seed yield.

Participation of Phytohormones in the Stomatal Regulation of Gas Exchange During Water Stress

J. Pospíąilová

Biologia plantarum 46:491-506, 2003 | DOI: 10.1023/A:1024894923865

Almost all processes in the life of a plant are directly or indirectly affected by both stresses and phytohormones. Nevertheless, apart from abscisic acid, the role of phytohormones in plant response to water stress is far from being fully elucidated. This review tries to answer the question whether interactions between abscisic acid and some other phytohormones might be important in the regulation of stomatal opening during water stress and subsequent rehydration. Firstly, it describes the changes in the contents of individual endogenous phytohormones during water stress. Then, it deals with the effects of applied phytohormones on stomatal opening, and on transpiration and photosynthetic rates in different plants species. Finally, it focuses on the alleviation or stimulation of absicic acid-induced stomatal closure by application of other phytohormones.

Alleviation of NaCl Stress by Pretreatment with Phytohormones in Vigna radiata

N. Chakrabarti, S. Mukherji

Biologia plantarum 46:589-594, 2003 | DOI: 10.1023/A:1024827931134

Efficiency of pretreatment as foliar spray of indole-3-acetic acid, gibberellic acid and kinetin, each ranging from 0.1 to 10.0 μM concentration, in restoring the metabolic alterations imposed by NaCl salinity was investigated in Vigna radiata (L.) Wilczek. Glycolate oxidase, superoxide dismutase, catalase and peroxidase activities increased under stress in leaves and roots also. Malondialdehyde content and total peroxide content also increased under stress. All the three hormones used were able to overcome to variable extents the adverse effects of stress imposed by NaCl to these parameters.

Rengel, Z.: Handbook of Plant Growth. pH as the Master Variable

N. Wilhelmová

Biologia plantarum 46:20, 2003 | DOI: 10.1023/A:1027374124586

Micropropagation of Sesbania sesban from the Mature Tree-Derived Explants

A. K. Jha, S. Prakash, N. Jain, K. Nanda, S.C. Gupta

Biologia plantarum 46:121-124, 2003 | DOI: 10.1023/A:1027349419134

The nodal and internodal explants excised from the orthotropic shoots of Sesbania sesban var. bicolor elicited the development of shoots directly from the explants as well as via an intervening callus phase on Nitsch (N) medium. On benzyladenine (BA) supplemented media, the adventitious shoot buds developed involving a callus phase. An average of 8.9 ± 4.1 shoots developed per nodal explant on N medium containing 0.5 mg dm-3 BA in 95 % cultures, whereas 65 % cultures of internodal explants developed shoots with an average of 5.9 ± 3.6 shoots per explant on N medium supplemented with 1.0 mg dm-3 BA. On kinetin (Kn) supplemented medium shoots developed directly from the surface of both the explants at all the concentrations tried. Nodal explants on N medium supplemented with 1.5 mg dm-3 Kn developed an average of 12.5 ± 7.9 shoots per explant in 100 % cultures, while internodal explants induced an average of 11.6 ± 7.4 shoots per explant in 75 % explants at 0.5 mg dm-3 Kn. The in vitro regenerated shoots developed roots when implanted on N medium supplemented with 2 mg dm-3 indole-3-butyric acid (IBA), after 30 d of inoculation. The in vitro developed plantlets were initially acclimatized under controlled conditions for four months, prior to their transfer to the field.

Immunohistological Analysis of Chemically Induced Proteins in Sugar Beet

L. Burketová, K. ©tillerová, M. Feltlová, M. ©indelářová

Biologia plantarum 46:243-251, 2003 | DOI: 10.1023/B:BIOP.0000022259.87594.96

Tissue-specific distribution of basic β-1,3-glucanase (Glu2), basic class II chitinase (Ch2), basic class IV chitinase (Ch4), and acidic class III chitinase (SE2) were examined both in leaves and roots of sugar beet treated with salicylic acid (SA), benzothiadiazole (BTH) and glycine betaine. Protein localization was monitored by immunohistological analysis using specific antibodies. BTH, SA as well as glycine betaine induced both Glu2 and chitinase isozymes in leaves and roots of treated plants. The enzymes were accumulated in extracellular space and cell walls. They were mostly deposited in parenchyma cells of leaves and cortex parenchyma and endodermis of roots. In leaf tissues, BTH and SA induced proteins more effectively than glycine betaine but the effect of glycine betaine in roots was as efficient as BTH and SA. Glycine betaine induced the formation of extracellular globuli containing Ch4. Induced proteins were spatially distributed over the whole plant regardless the site of the inducer application.

Petr, J.: Klonování. Hrozba nebo naděje? [Cloning. Threat or Hope?]

I. Macháčková

Biologia plantarum 46:326, 2003 | DOI: 10.1023/B:BIOP.0000023916.52157.ba

Somatic Embryogenesis, Plantlet Regeneration and Micropropagation of Cultivars and F1 Hybrids of Manihot esculenta

M.N. Ogburia

Biologia plantarum 46:429-432, 2003 | DOI: 10.1023/B:BIOP.0000023888.82993.b1

Explants of four F1 hybrids (OMR 36-41/1, OMR 36-41/2, OMR 36-41/4 and OMR 36-41/5) and two cultivars (Rayong 1 and Rayong 60) of cassava (Manihot esculenta Crantz) were subjected to different combinations of 2,4-dichlorophenoxyacetic acid (2,4-D), 1-naphthaleneacetic acid (NAA), kinetin (KIN) and N6-benzylaminopurine (BAP) to induce somatic embryogenesis, organogenesis and micropropagation. Shoot apices of the F1 hybrids exhibited higher frequency (62 - 74 %) of proliferation of somatic embryos than the cultivars (21 - 43 %) in Murashige and Skoog basal medium supplemented with 8 mg dm-3 2,4-D and 0.5 mg dm-3 NAA. Nodal explants of regenerated plantlets were rapidly micropropagated with 90 % efficiency on a medium containing 0.1 mg dm-3 NAA and 0.05 mg dm-3 BAP irrespective of explant source.

Glattstein, J.: Consider the Leaf. Foliage in Garden Design

J. Čatský

Biologia plantarum 46:486, 2003 | DOI: 10.1023/B:BIOP.0000041117.07618.8b

Selecting Bacterial Strains for Use in the Biocontrol of Diseases Caused by Phytophthora capsici and Alternaria alternata in Sweet Pepper Plants

A. Sid, M. Ezziyyani, C. Egea-Gilabert, M.E. Candela

Biologia plantarum 46:569-574, 2003 | DOI: 10.1023/B:BIOP.0000041063.38176.4a

More than 500 isolates of bacteria were obtained from the aerial part and rhizosphere of sweet pepper (Capsicum annuum L.) plants harvested from different places in the Region of Murcia (Spain). The isolates were purified and assayed in vitro against Phytophthora capsici and Alternaria alternata. Sixty isolates (12 %) produced an inhibition zone against at least one of the pathogens, while ten had a strongly inhibitory effect on both pathogens assayed. Microscopic observation of interactions zone showed cell vacuolisation, hyphae lysis and spilling of cytoplasm content of the pathogens in the culture media. These ten isolates were then chosen for biocontrol of Phytophthora root rot and Alternaria leaf spots of pepper plants in vivo. Four of them denominated HS93, LS234, LS523 and LS674 reduced P. capsici root rot by 80, 51, 49 and 54 %, respectively, and A. alternata leaf spots by 54, 74, 62 and 53 %. HS93 belongs to the genus Bacillus and probably the species subtilis, while LS234, LS523 and LS674 belong to the genus Bacillus and probably the species licheniformis. Dry mass of plants treated with these bacteria was significantly higher than that of non-treated and inoculated plants.

Effects of Irradiance on Photosynthesis and Activity of Protease Inhibitors in Amaranthus hypochondriacus

Y. Nagamatsu-López, A. Blanco-Labra, J. Délano-Frier, E. Pimienta-Barrios

Biologia plantarum 46:633-634, 2003 | DOI: 10.1023/B:BIOP.0000041078.99055.93

Amaranthus hypochondriacus plants were grown under three photosynthetic photon flux densities (PPFD). Mature plants grown at full sunlight (38.8 mol m-2 d-1) had higher maximum net photosynthetic rate (PN) and significantly higher leaf trypsin inhibitor activity than plants that developed under lower PPFD (19.4 and 12.8 mol m-2 d-1). In contrast, seeds collected from plants fully exposed to sunlight showed the lowest activity of trypsin inhibitor, higher rate of germination and susceptibility to infection by Aspergillus niger.

Changes in Sugars, Sucrose Synthase Activity and Proteins in Salinity Tolerant Callus and Cell Suspension Cultures of Brassica oleracea L.

O.C. Elavumoottil, J.P. Martín, M.L. Moreno

Biologia plantarum 46:7-12, 2003 | DOI: 10.1023/A:1022389428782

Salt tolerant callus and cell suspension cultures of Brassica oleracea L. var. botrytis were obtained by the selection of cells from cultures growing in medium supplemented with 85, 170, and 255 mM NaCl. Salt adapted calli and cell suspensions differed in their RNA and protein concentrations. These concentrations tend to diminish in calli and increase in cell suspensions, both at one or three weeks periods of growth in NaCl. Contents of sucrose and reducing sugars, however, accumulate similarly both in calli and cell suspensions after NaCl treatments. The activity of sucrose synthase was higher in salt adapted cells than in controls. Calli exposed to 255 mM NaCl for six months synthesized a 27 kDa polypeptide, while a 13 kDa polypeptide present in control conditions was absent under salinity. Several high molecular mass polypeptides (> 200 kDa) were visualized in control calli and at moderate salt concentrations, when conditions of the gel were modified.

Response of Wild Type of Arabidopsis thaliana to Copper Stress

M. Wójcik, A. Tukiendorf

Biologia plantarum 46:79-84, 2003 | DOI: 10.1023/A:1022314201466

Wild type of Arabidopsis thaliana plants were cultivated hydroponically in Hoagland and Arnon nutrient solution and treated with copper (5 - 100 µM) for 2, 4, 7 and 14 d. A progressive decrease of the root length and biomass was observed at increasing Cu concentration in the nutrient solution. Roots accumulated higher amounts of Cu than shoots at all Cu treatments. Changes of cell and chloroplast ultrastructure of Cu-treated plants were also observed. Cu application did not induce formation of Cu-phytochelatin complexes. Changes in glutathione and glutathione disulfide content observed in roots and shoots of Cu-treated plants suggest their participation in amelioration of metal-induced oxidative stress.

Preferential Induction of Alcohol Dehydrogenase in Coleoptiles of Rice Seedlings Germinated in Submergence Condition

H. Kato-Noguchi, T. Kugimiya

Biologia plantarum 46:153-155, 2003 | DOI: 10.1023/A:1022389707352

Difference in the growth response to submergence between coleoptiles and roots of rice (Oryza sativa L.) was investigated in 9-d-old rice seedlings. The coleoptile length in the submergence condition was much greater than that in aerobic condition, whereas the root length in the submergence condition was less than that in the aerobic condition. Alcohol dehydrogenase (ADH) activity in the coleoptiles in the submergence condition was much greater than that in the aerobic condition, but ADH activity in the roots in the submergence condition increased slightly. These results suggest that the preferential ADH induction in rice seedlings may contribute to the difference in the growth response between the coleoptiles and roots under low oxygen conditions.

Chara tomentosa Antheridial Plasmodesmata at Various Stages of Spermatogenesis

M. Kwiatkowska, K. Popłońska, A. Wojtczak

Biologia plantarum 46:233-238, 2003 | DOI: 10.1023/A:1022802711225

Chara tomentosa antheridial plasmodesmata are described during proliferation and spermiogenesis. In antheridial filament cells which are cycling completely synchronously, unplugged plasmodesmata are filled with light cytoplasm. The same plasmodesmata are observed after cessation of mitotic division followed by the onset of synchronous spermiogenesis. Walls separating cells at different cell cycle stages and dividing antheridial filaments into asynchronous domains are plugged with a dense osmophilic substance. Similarly plugged plasmodesmata are present between antheridial cells of different types, e.g., capitular cells and antheridial filaments. In mid spermiogenesis when abundant endoplasmic reticulum (ER) appears temporarily it penetrates into plasmodesmata enabling cell-to-cell transport via ER cisternae. In late spermiogenesis there are no cisternae in plasmodesmata.

International Conference - "Water-Saving Agriculture and Sustainable Use of Water and Land Resources in Arid and Semiarid Areas" October 26 - 29, 2003. Yangling-Shaanxi-P. R. China

Biologia plantarum 46:321, 2003 | DOI: 10.1023/A:1022871114736

Lack of Mitotic Delays at the Onset of Proliferation in Dormant Root Primordia Challenged by Ionizing Radiation

S. Pérez-Talavera, J.A. Carballo, C. de la Torre

Biologia plantarum 46:383-387, 2003 | DOI: 10.1023/A:1024330303603

X-rays at doses between 2.5 and 20 Gy were applied to Allium cepa L. bulbs containing either dormant root primordia (before water imbibition) or actively proliferating meristems. Irradiation of the primordia that were enriched in G0 cells neither delayed proliferation onset nor root sprouting. Under both protocols, irradiation decreased the final length of the roots to about 60 % (at 20 Gy) of that reached by the unirradiated controls. Irradiation of the proliferating meristems increased the mitotic index at some fixation times. This could not be due to a rise in the cell entry into mitosis, as the rate of root growth decreased simultaneously. The increased mitotic index should be the consequence of a delay in the relative time taken by mitosis in the whole cycle time. Lengthened mitosis probably allows the post-replicative repair of most DNA lesions, as the frequency of interphases with micronuclei was higher in the cells which were irradiated when still dormant than in those irradiated when cycling. Thus, the mitotic delays should be the consequence of a checkpoint pathway activated by the presence of DNA damage. This feedback mechanism seems only to develop after cell proliferation is restored.

Assessment of Phytotoxicity of α-Aminoalkanephosphonic Acids Derivatives

K. Bielecki, A. Dziamska, J. Sarapuk

Biologia plantarum 46:467-470, 2003 | DOI: 10.1023/A:1024315327710

Newly synthesized derivatives of α-aminoalkanephosphonic acids (aminophosphonates) differ in the substituents at the carbon, nitrogen, and phosphorus atoms. They modified in different degree the properties of cucumber (Cucumis sativus cv. Wisconsin) cotyledon membranes, physiological activity of some enzymes (guaiacol and pyrogallol peroxidases, and catalase), chlorophyll content, and cellular membrane lipid peroxidation. Most active modifiers were those possessing sufficiently long hydrocarbon substituents at the nitrogen atom (C10H21) or isopropyl chain at the phosphorus atom. The branched tertbutyl group at the carbon atom enhanced slightly the activities of peroxidases in contrast to hexane ring at the same position, which decreased them.

Leaf Photosynthesis in Eight Almond Tree Cultivars

F. De Herralde, C. Biel, R. Savé

Biologia plantarum 46:557-561, 2003 | DOI: 10.1023/A:1024867612478

Response of gas exchange traits to irradiance were studied in eight almond tree (Prunus amygdalus) cultivars: Desmayo Largueta, Falsa Barese, Garrigues, Lauranne, Marcona, Masbovera, Nonpareil and Ramillete, grafted on a hybrid rootstock almond × peach GF-677. From these responses cultivars can be classified from the best to the worst photosynthetic performance as follows: Falsa Barese, Masbovera, Marcona, Nonpareil, Ramillete, Desmayo Largueta, Lauranne and Garrigues. The highest net photosynthetic rate was 20.3 μmol m-2 s-1 in Falsa Barese. In the absence of water stress, photosynthetic rate was not limited by stomatal conductance. Consequently, non-stomatal limitations prevailed under such conditions.

Restart of Lignification in Micropropagated Walnut Shoots Coincides with Rooting Induction

B. Bisbis, C. Kevers, M. Crevecoeur, J. Dommes, T. Gaspar

Biologia plantarum 46:1-5, 2003 | DOI: 10.1023/A:1027360326886

The lignin content of walnut shoots did not change during in vitro shoot multiplication. Lignin content started to increase as soon as shoots were passed to a rooting medium with auxin. Exogenous auxin (applied for rooting) caused a transient elevation of the endogenous free indoleacetic acid (IAA) content with a simultaneous decrease of peroxidase activity. These events typically marked the completion of the rooting inductive phase (before any visible histological event, that is before the cell divisions beginning the rooting initiation phase). This meant that either the given exogenous auxin or the endogenous IAA has served as signal for the stimulation of lignification. Continued increase of lignification in the shoots required completion of root formation; this increase indeed was slown down when root emergence did not occur. It was further shown that lignification varied conversely to the content of the soluble phenol content, itself apparently being related to the activity of phenylalanine ammonia-lyase activity.

Growth and Differentiation of Root Endodermis in Primula acaulis Jacq.

A. Lux, M. Luxová

Biologia plantarum 46:91-97, 2003 | DOI: 10.1023/A:1027389100479

Adventitious roots of Primula acaulis Jacq. are characterized by broad cortex and narrow stele during the primary development. Secondary thickening of roots occurs through limited cambial growth together with secondary dilatation growth of the persisting cortex. Close to the root tip, at a distance of ca. 4 mm from the apex, Casparian bands (state I of endodermal development) within endodermal cells develop synchronously. During late, asynchronous deposition of suberin lamellae (state II of endodermal development), a positional effect is clearly expressed - suberization starts in the cells opposite to the phloem sectors of the vascular cylinder at a distance of 30 - 40 mm from the root tip. The formation of secondary walls in endodermis (state III of endodermal development) correlates with the beginning of secondary growth of the root at a distance of ca. 60 mm. Endodermis is the only cortical layer of primrose, where not only cell enlargement but also renewed cell division participate in the secondary dilatation growth. The original endodermal cells additionally divide anticlinally only once. Newly-formed radial walls acquire a typical endodermal character by forming Casparian bands and deposition of suberin lamellae. A network of endodermal Casparian bands of equal density develops during the root thickening by the tangential expansion of cells and by the formation of new radial walls with characteristic wall modifications. These data are important since little attention has been paid up till now to the density of endodermal network as a generally significant structural and functional trait of the root.

CO2 Dynamics and Growth in Photoautotrophic and Photomixotrophic Apple Cultures

S. Morini, M. Melai

Biologia plantarum 46:167-172, 2003 | DOI: 10.1023/B:BIOP.0000022246.09161.63

The daily dynamics of CO2 concentration in the culture vessels and the photoautotrophic or photomixotrophic growth capacity of apple (Malus pumila hybrid MM 106 paradisiaca× Northern Spy) cultures were studied. The photoautotrophic cultures were grown on a sugar-free growth medium and submitted (0S+CO2) or not (0S-CO2) to periodic injections of exogenous CO2. The photomixotrophic cultures were grown in the presence of 30 g dm-3 sucrose, with (30S+CO2) or without (30S-CO2) CO2 enrichment. The photosynthetic photon flux density applied was of 210 ± 5 μmol m-2s-1. In the 0S-CO2 treatment, CO2 showed rather uniform and narrow light-dark fluctuations throughout the culturing cycle. In the 30S-CO2 treatment, the daily ratio between CO2 produced during the dark period and that uptaken during the following light period, was almost always above 1 with the only exception of a few days (from the 5th to the 9th day) when the amount of photosynthesised CO2 was equal to or higher than that produced during dark respiration. The 0S+CO2 cultures needed to be enriched all days with exogenous CO2 to avoid periods of gas deficiency while in 30S+CO2 the CO2 injected the first culturing day was uptaken over 5 d; thereafter, daily injections were necessary. Culture fresh and dry mass, number of newly formed shoots and number of nodes per shoot in 0S+CO2 treatment did not statistically differ from the values obtained with 30S-CO2. The highest growth was observed in 30S+CO2 treatment. The increase in culture fresh mass due to 1 μmol of CO2 added to the culture vessels was 1.54 and 1.36 mg for 30S and 0S respectively, while in terms of dry mass the increase was about 2.5 times higher in the sugar-enriched treatment. CO2 enrichment accounted for 77.3 % and 21.2 % of the final fresh mass in 0S+CO2 and 30S+CO2, respectively.

Functioning of the γ-Aminobutyrate Pathway in Wheat Seedlings Affected by Osmotic Stress

I. Bartyzel, K. Pelczar, A. Paszkowski

Biologia plantarum 46:221-225, 2003 | DOI: 10.1023/B:BIOP.0000022255.01125.99

γ-Aminobutyrate (GABA) was the only amino acid out of three amino acid intermediates of GABA shunt that increased significantly after 28 h from the beginning of osmotic stress induced by 20 % polyethylene glycol 6000 in wheat seedlings. At the same time specific activities of glutamate decarboxylase (GAD) and GABA aminotransferase (GABA-T) two enzymes of GABA pathway did not change as compared with the control plants. The response of two GABA-T activities (with pyruvate or 2-oxoglutarate as amino acid acceptor) to aminooxyacetate, 3-chloro-L-alanine and p-hydroxymercuribenzoate prompted us to suggest that at least two isoforms of GABA-T showing different substrate specificity do exist in wheat leaves.

Glutamine Synthetase Activity, Relative Water Content and Water Potential in Maize Submitted to Drought

L.O. Medici, A.T. Machado, R.A. Azevedo, C. Pimentel

Biologia plantarum 46:301-304, 2003 | DOI: 10.1023/B:BIOP.0000022271.35778.17

Two maize (Zea mays L.) hybrids, BR 201 and P 6875, were submitted to drought by withholding irrigation at the vegetative or reproductive phases. During water deficit, in both phases, the relative water content (RWC) was higher and leaf water potential (Ψw) was lower in the hybrid P 6875 than in the hybrid BR201. This response indicated a better osmotic adjustment capacity of the hybrid P 6875 when compared to BR 201. Glutamine synthetase activity was not affected by drought even at a RWC of 60 % and Ψw of -1.2 MPa or during rehydration.

Ecophysiological Characterization of Dormancy States in Turions of the Aquatic Carnivorous Plant Aldrovanda vesiculosa

L. Adamec

Biologia plantarum 46:395-402, 2003 | DOI: 10.1023/B:BIOP.0000023883.62127.5e

Two main dormancy states, innate and imposed dormancy, were characterized in turions (winter buds) of the aquatic carnivorous plant Aldrovanda vesiculosa L. (Droseraceae) kept at 3 ± 1 °C in a refrigerator over the winter. As a result of the breaking of imposed dormancy by a temperature increase (at 15 - 20 °C), some of the turions rose to the water surface within 1 - 3 d and germinated. Turion leaves contained large lacunae with a slimy reticulum and were filled by water over winter. As a result of breaking imposed dormancy, the proportion of gas volume in inner turion leaves rose from 10 - 20 % to 100 % of leaf lacunae volume. The aerobic dark respiration rate of the turions [0.74 - 1.5 μmol O2) kg-1(FM) s-1] slightly increased during innate dormancy after 1 - 2 d at 20 °C, while it was almost constant during the breaking of imposed dormancy. The anaerobic fermentation rate of the turions was only 1.5 - 7 % of the oxygen respiration rate and also was constant during the breaking of imposed dormancy. In turions, the content of glucose, fructose, and sucrose was the same for the two states of dormancy, but starch content was greatly reduced for the imposed dormancy (10 - 11 vs. 32 % DM). It may be suggested that a temperature increase causes an increase of fermentation or respiration which is responsible for the evolution of gas in turion lacunae and, thus, for turion rising.

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