biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1711 to 1740 of 6170:

Structure and development of the secretory cavities of Myrtus communis leaves

D. Kalachanis, G. K. Psaras

Biologia plantarum 49:105-110, 2005 | DOI: 10.1007/s00000-005-5110-2

The structure and development of Myrtus communis L. secretory cavities has been studied in young and expanded leaves, using light and scanning electron microscope. Secretory cavities are continuously formed during leaf development, but in mature leaves the rhythm of their appearance shows steep decrease. Each secretory cavity is developed from a single epidermal cell, which undergoes a periclinal division followed by anticlinal and several oblique cell divisions. The lumen of the secretory cavity is initiated by cell wall separation, i.e., schizogenously. The secretory cells line the cavity, where the secreted material is collected. Secretory cavities are covered by modified epidermal cells, which do not seem to form any special aperture. Essential oils seem to be discharged after mechanical treatment of the leaf.

Benech-Arnold, R.L., Sánchez, R.A. (ed.): Handbook of Seed Physiology. Application to Agriculture. - The Haworth Press, New York - London - Oxford 2004. 480 pp. USD 49.95. ISBN 1-56022-928-4

L. Moravcová

Biologia plantarum 49:174, 2005 | DOI: 10.1007/s10535-005-4174-4

Importance of glucose-6-phosphate dehydrogenase in taxol biosynthesis in Taxus chinensis cultures

L. J. Yu, W. Z. Lan, C. Chen, Y. Yang, Y. P. Sun

Biologia plantarum 49:265-268, 2005 | DOI: 10.1007/s10535-005-5268-8

The roles of glucose-6-phosphate dehydrogenase (G6PDH) in paclitaxel production were investigated in cell suspension cultures of Taxus chinensis. In the normal cultures, the trend of G6PDH activity was similar to that of cell growth. Addition of glutamate increased G6PDH activity, while dehydroepiandrosterone (DHEA) decreased G6PDH activity. In elicitor-treated cultures, cell growth was depressed, while G6PDH activity and taxol production were enhanced compared with the control. Glutamate recovered the depression of cell growth, and resulted in further increase in G6PDH activity and taxol production. Contrarily, DHEA exacerbated the depression of cell growth, and decreased G6PDH activity and taxol production induced by fungal elicítor. The results indicated that G6PDH played a critic role of taxol production by affecting cell viability.

Propagation of Haemaria discolor via in vitro seed germination

Y.-J. Shiau, S. M. Nalawade, C.-N. Hsai, H.-S. Tsay

Biologia plantarum 49:341-346, 2005 | DOI: 10.1007/s10535-005-0005-x

In vitro propagation protocol for Haemaria discolor (Ker) Lindl. var. dawsoniana by artificial cross-pollination and asymbiotic germination of seeds has been developed. Fruit set (100 %) was obtained when the pollinia and ovules of various aged flowers were used for pollination. In vitro germination of seeds obtained from capsules of various ages was achieved on half-strength Murashige and Skoog's (MS) medium supplemented with 3 % sucrose and 0.85 % agar. The germinated seedlings were cultured on half-strength MS medium with 0.2 % activated charcoal, 8 % banana homogenate, 0.1 mg dm-3 1-phenyl-3-(1,2,3-thiadiazol-5-yl)urea (TDZ) and 1 mg dm-3 α-naphthaleneacetic acid (NAA). Ninety-six percent of plantlets survived after hardening in greenhouse.

Micropropagation of Lavandula dentata from axillary buds of field-grown adult plants

S. Echeverrigaray, R. Basso, L. B. Andrade

Biologia plantarum 49:439-442, 2005 | DOI: 10.1007/s10535-005-0024-7

Axillary buds from adult field-grown plants of Lavandula dentata L. were used to evaluate the effect of growth regulators and culture media on the in vitro shoot proliferation and growth. The highest multiplication rate was obtained using Murashige and Skoog (MS) medium supplemented with a combination of 2.2 μM of benzyladenine and 2.5 μM indole-3-butyric acid. The best condition for rooting was MS medium plus 2.5 μM naphthaleneacetic acid. Rooted plantlets were successfully transferred to soil. Short-term culture derived plants (6 month) exhibited a normal development, but a low frequency of not heritable morphological changes were detected in long term culture derived plants (more than 1 year).

Book review

J. Catsky

Biologia plantarum 49:512, 2005 | DOI: 10.1007/s10535-005-0043-4

Protein analysis of dwarfed transgenic rice plants overexpressing GA2-oxidase gene

M. Hajduch, H. Tanaka, Y. Morinaka, Y. Otake, H. Nakamura, T. Kayano, Y. Koga-Ban

Biologia plantarum 49:621-624, 2005 | DOI: 10.1007/s10535-005-0061-2

Using 2-D electrophoresis, we analyzed proteins from transgenic rice overexpressing gibberellin acid (GA) catabolic enzyme, GA2-oxidase. These results indicate eight specific proteins differentially expressed in the transformed rice stems of T1 generation, but non in case of T2 generation. Proteins isolated from different stages of leaves of T1 generation showed no significant differences, except one-month-old leaf, where five differentially expressed proteins are visible.

Somatic embryogenesis from ovaries, developing ovules and immature zygotic embryos, and improved embryo development of Castanea sativa

U. Sauer, E. Wilhelm

Biologia plantarum 49:1-6, 2005 | DOI: 10.1007/s10535-005-1006-5

Somatic embryogenesis of European chestnut (Castanea sativa Mill.) was obtained using juvenile tissue cultured on P24 medium with 5 μM 2,4-dichlorophenoxyacetic acid plus 0.5 μM 6-benzylaminopurine (BA) for three weeks and then cultured on 0.89 μM BA. Induction frequency with ovaries ranged from 2.0 to 19.1 % and was observed in tissue collected 2 to 8 weeks postanthesis, ovules used as a starting tissue gained 0.8 to 7.8 %, 3 to 9 weeks postanthesis. Zygotic embryos collected 5 to 10 weeks postanthesis formed 10.5 to 57.1 % somatic embryos, respectively. The culture lines were maintained via secondary embryogenesis on P24 medium with 0.89 μM BA. Development and maturation were stimulated on P24 medium with increased agar concentration (1.1 %). Five plantlets were transferred to substrate and acclimatized successfully in greenhouse.

Photosynthetic light-use by three bromeliads originating from shaded sites (Ananas ananassoides, Ananas comosus cv. Panare) and exposed sites (Pitcairnia pruinosa) in the medium Orinoco basin, Venezuela

P. Keller, U. Lüttge

Biologia plantarum 49:73-79, 2005 | DOI: 10.1007/s10535-005-3079-6

Three Bromeliaceae species of the medium Orinoco basin, Venezuela, were compared in their light-use characteristics. The bromeliads studied were two species of pineapple, i.e. the wild species Ananas ananassoides originating from the floor of covered moist forest, and the primitive cultivar Panare of Ananas comosus mostly cultivated in semi-shaded palm swamps, and Pitcairnia pruinosa, a species abundant in highly sun exposed sites on rock outcrops. Ananas species are Crassulacean acid metabolism (CAM) plants, P. pruinosa is C3 plant. Plants were grown at low daily irradiance (LL = 1.3 mol m-2 d-1 corresponding to an incident irradiance of 30 μmol m-2 s-1) and at high irradiance (HL = 14.7 mol m-2 d-1 or 340 μmol m-2 s-1), and CO2 and H2O-vapour gas exchange and photochemical (qP) and non-photochemical quenching (qNP) of chlorophyll a fluorescence of photosystem 2 (PS2) were measured after transfer to LL, medium irradiance (ML = 4.1 mol m-2 d-1 or 95 μmol m-2 s-1) and HL. All plants showed flexible light-use, and qP was kept high under all conditions. LL-grown plants of Ananas showed particularly high rates of CAM-photosynthesis when transferred to HL and were not photoinhibited.

Water stress-induced oxidative damage and antioxidant responses in micropropagated banana plantlets

T. -T. Chai, N. M. Fadzillah, M. Kusnan, M. Mahmood

Biologia plantarum 49:153-156, 2005 | DOI: 10.1007/s00000-005-3156-9

Oxidative injury and antioxidant responses were investigated in two banana genotypes (Musa AAA 'Berangan' and Musa AA 'Mas') subjected to 40 % PEG-induced water stress. PEG treatment resulted in oxidative injury, as expressed in increased lipid peroxidation and reduced membrane stability index, in both cultivars; however, greater oxidative injury was detected in 'Mas'. Under PEG treatment, catalase activity and glutathione reductase activity were enhanced in both cultivars, but were higher in 'Mas'. Ascorbate peroxidase activity was enhanced in 'Berangan' under water stress, but was unaffected in 'Mas'. Meanwhile, superoxide dismutase activity was inhibited in both cultivars under water stress, but higher activity was detected in 'Berangan'. Higher ascorbate peroxidase and superoxide dismutase activities were associated with greater protection against water stress-induced oxidative injury.

Cadmium uptake, localization and detoxification in Zea mays

M. Wójcik, A. Tukiendorf

Biologia plantarum 49:237-245, 2005 | DOI: 10.1007/s10535-005-7245-7

Cadmium uptake, translocation and localization in maize roots and shoots at the tissue and cellular level were investigated. Metal accumulation in plant organs as well as symptoms of Cd toxicity were closely correlated with an increase in Cd concentration applied (5 - 300 μM). Most of the metal taken up was retained in roots, mainly inside the cells of endodermis, pericycle and central cylinder parenchyma. Accumulation of phytochelatins and related peptides also depended on Cd concentration in the nutrient solution.

Use of a simple semiquantitative method for appraisal of green fluorescent protein gene expression in transgenic tobacco plants

M. Hraška, S. Rakouský, T. Kocábek

Biologia plantarum 49:313-316, 2005 | DOI: 10.1007/s10535-005-3316-z

We have applied a simple method for evaluation of gfp gene expression in plants using a CCD camera and computerized processing of images. Transgenic tobacco plants were obtained by Agrobacterium tumefaciens-mediated transfer of plasmid T-DNA bearing a m-gfp5-ER sequence governed by the 35S promoter together with the nptII selectable marker gene. Presence of the gfp gene in plants was confirmed by a polymerase chain reaction method. Mean brightness values measured using image analysis software showed differences between transgenic and control plants and suggest the possibility of rapid selection of transgenic individuals among regenerants and their progenies.

Mapping of esterase loci in Aegilops uniaristata and homoeologous group 3 chromosomes of wheat

N. Iqbal, M. Asghar, R. Arshad, A. Hameed

Biologia plantarum 49:419-422, 2005 | DOI: 10.1007/s10535-005-0019-4

This study was planned to identify the chromosomal location of esterase loci in wheat (Triticum aestivum), in comparison to Aegilops uniaristata, using wheat Ae. uniaristata disomic addition and translocation lines. Two loci (Est-N1 and Est-N8) were identified on 3N chromosome of Ae. uniaristata and their probable homoeoloci were, for the first time, mapped close to three RFLP probes (Xpsr56, Xpsr394, and Xpsr1196) on homoeologous group 3 wheat chromosomes.

Optimalization of the peroxidase production by tissue cultures of horseradish in vitro

P. Soudek, R. Podlipna, P. Marsik, T. Vanek

Biologia plantarum 49:487-492, 2005 | DOI: 10.1007/s10535-005-0037-2

Tissue cultures of Armoracia rusticana L., both transformed with Agrobacterium rhizogenes and nontransformed, were screened for peroxidase activity. Most of the derived and tested strains exhibited 20 times higher activity [from 99 to 723 U g-1(d.m.)] than the root of the intact plant [(30 U g-1 (d.m.)]. The highest peroxidase activity was found in tumour culture growing on the medium without growth regulators. The influence of the addition of sugars and heavy metal ions in the medium on peroxidase production was tested. Increase in peroxidase activity was observed after cultivation of horseradish culture with cadmium, cobalt, nickel or lead ions.

Random amplified DNA polymorphism of Nicotiana tabacum L. cultivars

H. Y. Zhang, X. Z. Liu, C. S. He, C. M. Zheng

Biologia plantarum 49:605-607, 2005 | DOI: 10.1007/s10535-005-0056-z

The polymorphism, similarities and relationships among Nicotiana tabacum L. cultivars were assessed with RAPD analyses. One hundred and forty-nine bands were detected, of which 94 were polymorphic (63.1 %). A primer distinguishing all of the tested cultivars was found. High similarity between cultivars was revealed, and cultivar relationships were estimated through cluster analysis (UPGMA) based on RAPD data.

Responses to environment

Biologia plantarum 49(Suppl.1):S31-S33, 2005 | DOI: 10.1007/s10535-006-0041-1

Book review

J. Gloser

Biologia plantarum 49:46, 2005 | DOI: 10.1007/s10535-005-6046-3

Effects of competition and N and P supply on carbon isotope discrimination and 15N-natural abundance in four grassland species

J. T. Tsialtas, M. T. Kassioumi, D. S. Veresoglou

Biologia plantarum 49:133-136, 2005 | DOI: 10.1007/s10535-005-3136-1

The effect of interspecific competition and element additions (N and P) on four grassland species (Poa pratensis, Lolium perenne, Festuca valida, Taraxacum officinale) grown under field conditions was studied. Two grasses (L. perenne, F. valida) grown in monoculture (absence of competition) showed lower carbon isotope discrimination (Δ13C) and enriched δ15N values. Nitrogen addition (as urea) had inconsistent effects on species Δ13C while caused enrichment of δ15N of P. pratensis and F. valida but strong depletion of δ15N of T. officinale. Phosphorous had no significant effect on Δ13C but depleted δ 15N of all species.

Oxidations of various substrates and effects of the inhibitors on purified mitochondria isolated from Kalanchoë pinnata

H. T. K. Hong, A. Nose, S. Agarie

Biologia plantarum 49:201-208, 2005 | DOI: 10.1007/s10535-005-1208-x

Kalanchoë pinnata mitochondria readily oxidized succinate, malate, NADH, and NADPH at high rates and coupling. The highest respiration rates usually were observed in the presence of succinate. The high rate of malate oxidation was observed at pH 6.8 with thiamine pyrophosphate where both malic enzyme (ME) and pyruvate dehydrogenase were activated. In CAM phase III of K. pinnata mitochondria, both ME and malate dehydrogenase (MDH) simultaneously contributed to metabolism of malate. However, ME played a main function: malate was oxidized via ME to produce pyruvate and CO2 rather than via MDH to produce oxalacetate (OAA). Cooperative oxidation of two or three substrates was accompanied with the dramatic increase in the total respiration rates. Our results showed that the alternative (Alt) pathway was more active in malate oxidation at pH 6.8 with CoA and NAD+ where ME operated and was stimulated, indicating that both ME and Alt pathway were related to malate decarboxylation during the light. In K. pinnata mitochondria, NADH and NADPH oxidations were more sensitive with KCN than that with succinate and malate oxidations, suggesting that these oxidations were engaged to cytochrome pathway rather than to Alt pathway and these capacities would be desirable to supply enough energy for cytosol pyruvate orthophosphate dikinase activity.

Effect of arsenic on some physiological parameters in bean plants

N. Stoeva, M. Berova, Z. Zlatev

Biologia plantarum 49:293-296, 2005 | DOI: 10.1007/s10535-005-3296-z

The objective of the study was to investigate the effect of different arsenic concentrations on some physiological parameters of bean (Phaseolus vulgaris L.) cultivars Plovdiv 10 and Prelom in the early growth phases. Seedlings, grown in sand with Hoagland-Arnon nutrient solution in a climatic box, were treated with 0, 2, 5 mg(As) dm-3 as Na3AsO4 (pH 5.5). After 5 d of As treatment, the changes in leaf gas-exchange, water potential, chlorophyll and protein contents, peroxidase activity and lipid peroxidation in roots were recorded. Physiological analysis showed a minor negative effect of arsenic at concentration 2 mg(As) dm-3, but at the higher dosage of 5 mg(As) dm-3 growth, leaf gas-exchange, water potential, protein content and biomass accumulation were reduced in both cultivars. The peroxidase activity and lipid peroxidation increased considerably at 5 mg(As) dm-3, which is a typical reaction of the plants to a presence of oxidative stress.

The effects of ozone on growth and stomatal response in the F2 generation of hybrid poplar (Populus trichocarpa × Populus deltoides)

S. Y. Woo, T. M. Hinckley

Biologia plantarum 49:395-404, 2005 | DOI: 10.1007/s10535-005-0014-9

Thirty-six F2 hybrid poplar (Populus trichocarpa × P. deltoides) clones were fumigated with ozone to record its effects on growth, correlate them with stomatal response and screen for ozone sensitivity. Fumigation was applied for 6 to 9 h each day for approximately 3 months at ozone concentrations of 85 to 128 μg g-1 using open-top chambers. Height, diameter, number of leaves, stomatal conductance, transpiration rate, total biomass, biomass components and root/shoot ratios were reduced by ozone stress. Percent of leaf fall in ozone-treated plants was nearly three times higher than in control plants exposed to charcoal-filtered air. Leaf senescence, because of ozone exposure, did not appear to be associated with reduced biomass production. Some clones had a high percentage of leaf-fall with ozone exposure, but were able to maintain total biomass production near that of the control. Their response may be an example of an ability to adjust or compensate for ozone damage. There was no significant or consistent relationship between stomatal conductance and total biomass or the change in stomatal conductance as a result of ozone exposure and the change in total biomass. Taken together, these results suggest that effects of ozone on poplar growth cannot be solely correlated to changes in stomatal conductance, more physiological and biochemical parameters should be examined.

Production of saponins from Panax ginseng suspension and adventitious root cultures

L. Langhansova, P. Marsik, T. Vanek

Biologia plantarum 49:463-465, 2005 | DOI: 10.1007/s10535-005-0030-9

Biomass growth and ginsenoside production in cell suspension and adventitious roots of Panax ginseng C.A. Meyer cultures cultivated both in Erlenmayer flasks and a 3 dm3 bioreactor were studied. The maximum content of ginsenosides was found in the suspension culture cultivated in the bioreactor (4.34 % dry mass), however the saponin content was limited to two major ginsenosides, Rb1 and Rg1. The production of ginsenosides in adventitious roots was lower (1.45 or 1.72 % dry mass), nevertheless, the full range of ginsenosides was detected.

Role of enzymes of sucrose-starch conversion in seed sink strength in mung bean

J. Chopra, N. Kaur, A. K. Gupta

Biologia plantarum 49:561-566, 2005 | DOI: 10.1007/s10535-005-0050-5

Changes in the activities of sucrose synthase (SuSy), ADP-glucose pyrophosphorylase (AGPase), UDP-glucose pyrophosphorylase (UGPase), alkaline inorganic pyrophosphatase, 3-phosphoglycerate (3-PGA) phosphatase and amylases were monitored in relation to accumulation of starch in developing pods of mung bean (Vigna radiata L.). With the advancement in the seed development, the contents of starch rose with a concomitant fall in the branch of inflorescence and podwall after 10 d after flowering. The activity of UDPase in all the three pod tissues remained higher than the activity of AGPase showing it to be an important enzyme controlling carbon flux. The activity of alkaline inorganic pyrophosphatase in developing seed in contrast to 3-PGA phosphatase correlated with starch accumulation rate. Activity of β-amylase increased in all the pod tissues till maturity. It appears that the cooperative action of SuSy, UGPase and AGPase controls the efficient partitioning of sucrose into ADP glucose and thereby regulate the seed sink strength of the mung bean.

Biosynthesis and metabolism

Biologia plantarum 49(Suppl.1):S2-S8, 2005 | DOI: 10.1007/s10535-006-0036-y

Leaf construction cost in Avicennia germinans as affected by salinity under field conditions

N. Suárez

Biologia plantarum 49:111-116, 2005 | DOI: 10.1007/s10535-005-1116-0

This study assessed the effects of salinity and drought upon leaf construction (CC) and maintenance (MC) costs in Avicennia germinans growing under contrasting soil salinities in the field. Additionally, an analysis of leaf chemical composition was carried out to determine the underlying reasons for possible variation in CC. With the increase of external salinity, leaf osmotic potential (ψs) declined and a significant negative correlation was found between both variables. Changes in average CC were about 15 % when ψs changed by 85 %. Despite this, leaf ash-free heat of combustion per unit of leaf dry mass remained relatively constant at 21.3 ± 0.9 kJ g-1 in all conditions. The estimated maximum and minimum CC for the synthesis of protein present in leaves increased significantly with total leaf CC. Conversely, the estimated CC for lipid synthesis shows a tendency to decrease with total leaf CC. Under conditions of high salinity, ash content increased by 78 % compared to that of leaves collected at low salinity. It is concluded that undergoing changes in proteins and lipids (expensive) and ash (cheap) explain the changes in CC under contrasting salinities. Additionally, the average MC remained almost constant at moderate salinity and declined by 6 % under hyper-saline conditions. Thus, differences in CC and MC with salinity are explained in part by changes in the chemical composition of different compound fractions.

Efficient regeneration of Brassica napus L. hypocotyls and genetic transformation by Agrobacterium tumefaciens

P. Jonoubi, A. Mousavi, A. Majd, A.H. Salmanian, M. Jalali Javaran, J. Daneshian

Biologia plantarum 49:175-180, 2005 | DOI: 10.1007/s10535-005-5180-2

An efficient system for shoot regeneration and Agrobacterium-mediated gene transfer into Brassica napus was developed through the modification of the culture conditions. Different concentrations of benzyladenine (1.5, 3.0 and 4.5 mg dm-3) and thidiazuron (0.0, 0.15 and 0.30 mg dm-3) were evaluated for shoot regeneration of 7, 14 and 21-d-old hypocotyl explants. Maximum shoot regeneration frequency was obtained in 21-d-old explants using 4.5 mg dm-3 benzyladenine and 0.3 mg dm-3 thidiazuron. Under above culture condition, the highest percentage of shoot regeneration frequency was 200 %. Agrobacterium-infected explants grown on the selection medium gave rise to transgenic shoots at a frequency of 11.8 %. Transformed shoots rooted when cultured on a medium supplemented with 2 mg dm-3 of indolebutyric acid and 10 mg dm-3 kanamycin. The rooted plantlets were successfully established in the soil and developed fertile flowers and viable seeds. Evidences for transformation were confirmed by GUS assay and PCR analysis.

Water-use efficiency and carbon isotope discrimination of Acacia ampliceps and Eucalyptus camaldulensis at different soil moisture regimes under semi-arid conditions

J. Akhter, K. Mahmood, M. A. Tasneem, K. A. Malik, M. H. Naqvi, F. Hussain, R. Serraj

Biologia plantarum 49:269-272, 2005 | DOI: 10.1007/s10535-005-0272-6

Acacia ampliceps Maslin and Eucalyptus camaldulensis Dehnh. were grown for one year in lysimeters at three soil moisture regimes: 100 % (well-watered), 75 % (medium-watered) and 50 % (low-watered) of total plant available water. Biomass yield of both species increased with increase in soil moisture. Water-use efficiency (WUE) of E. camaldulensis decreased and that of A. ampliceps increased markedly with decrease in available soil moisture. A. ampliceps showed 4 - 5 times more biomass yield than E. camaldulensis grown at similar soil moisture. A. ampliceps showed almost 5, 9 and 12 times higher WUE than E. camaldulensis under low-, medium- and well-watered treatments, respectively. Significant negative correlation of δ13C with WUE (r = -0.99) was observed in A. ampliceps. In contrast, δ13C of E. camaldulensis showed a significant positive correlation with WUE (r = 0.82).

Changes in protein profiles associated with somatic embryogenesis in peanut

A. Roja Rani, V. D. Reddy, P. Prakash Babu, G. Padmaja

Biologia plantarum 49:347-354, 2005 | DOI: 10.1007/s10535-005-0006-9

The somatic embryogenesis potential of zygotic embryo axes of peanut (Arachis hypogaea L. cv. DRG-12) at different stages of development was evaluated by culturing on MS medium with 18.1 μM 2,4-dichlorophenoxyacetic acid (2,4-D). A 100 % frequency with 18.3 somatic embryos per explant was observed from 4 mm long immature zygotic embryo axes collected 31 - 40 d after pollination. Medium supplemented with 16.6 μM picloram resulted in slow development of somatic embryos whereas in the presence of 21.5 μM α-naphthaleneacetic acid (NAA), the explants underwent maturation with induction of roots after 30 d. The changes in protein profiles in zygotic embryo axes at different stages of development correlated with their potential to form somatic embryos. Immature zygotic embryo axes exhibited high frequency somatic embryogenesis in the stage preceding abundant accumulation of 22 and 65 kDa proteins. The content of 22 and 65 kDa proteins decreased immediately after culture on medium fortified with 18.1 μM 2,4-D and increased again after 12 d of culture coinciding with the development of somatic embryos on the explants. The content of 22 and 65 kDa proteins was low at 15 d of culture on medium supplemented with 16.6 μM picloram possibly due to slow development of the somatic embryos on the explant. On maturation medium containing 21.5 μM NAA, a marked increase in the content of 22 and 65 kDa proteins in 15 d-old cultures was observed.

Effects of L-arginine and L-cysteine on growth, and chlorophyll and mineral contents of shoots of the apple rootstock EM 26 cultured in vitro

T. E. Sotiropoulos, K. N. Dimassi, I. N. Therios

Biologia plantarum 49:443-445, 2005 | DOI: 10.1007/s10535-005-0025-6

1, 5, or 10 mM arginine and 25, 50, or 100 μM cysteine were added in the Murashige and Skoog medium. By increasing arginine concentration the number of shoots per explant increased. Inclusion of 50 μM cysteine in the medium resulted in maximum number of shoots but it was not significantly different in comparison to 10 mM arginine. The chlorophyll content was significantly increased in explants treated with 10 mM arginine in comparison to the control, 1 mM arginine and 25 μM cysteine. By increasing arginine and cysteine concentrations of the medium, N, K, and Ca contents of explants increased but no significant changes in P, Mg, Fe, Mn, Zn, and B contents were observed.

Regulation of the structure and catalytic properties of plasma membrane H+-ATPase involved in adaptation of two reed ecotypes to their different habitats

K.-M. Chen, H.-J. Gong, S.-M. Wang, W.-J. Zheng, C.-L. Zhang

Biologia plantarum 49:513-519, 2005 | DOI: 10.1007/s10535-005-0044-3

The properties and kinetics of ATP and p-nitrophenyl phosphate (PNPP) hydrolysis activities of plasma membrane H+-ATPase from the two reed ecot ypes, swamp reed (SR) and dune reed (DR), were investigated. The pH optimum of the plasma membrane H+-ATPase in both reed ecotypes was similar but the sensitivity of the enzyme to the reaction medium pH seemed to be higher in DR than that in SR. Compared to SR, the DR exhibited a higher Vmax value for ATP hydrolysis whereas the Km value was almost similar in both reed ecotypes. The PNPP hydrolysis of the plasma membrane H+-ATPase was also studied in both reed ecotypes at increasing PNPP concentrations. Km and Vmax for PNPP hydrolysis showed great differences in the two reed ecotypes and in DR the Km and Vmax values were 2- and 10-fold, respectively, higher than those in SR. The ATP hydrolysis activity of the plasma membrane was markedly inhibited by hydroxylamine in both reed ecotypes, and the percentage inhibition of ATP hydrolysis rate seemed higher in DR than that in SR. In addition, the structure or property of the C-terminal end of the plasma membrane H+-ATPase were also different in the two reed ecotypes. These data suggest that different isoforms of the plasma membrane H+-ATPase might be developed and involved in the adaptation of the plant to the long-term drought-prone habitat.

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