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In vitro regeneration of Perilla frutescens from hypocotyl and cotyledon explantsS. W. Hou, J. F. JiaBiologia plantarum 49:129-132, 2005 | DOI: 10.1007/s10535-005-0132-4 Organogenetic buds were induced from hypocotyl and cotyledon explants of oil crop Perilla frutescens in Murashige and Skoog (MS) medium supplemented with 5.7 μM indole-3-acetic acid (IAA) and 8.9 - 13.3 μM 6-benzylaminopurine (BA). Shoots were rooted on MS medium with 2.9 μM IAA and 1.4 μM gibberellic acid (GA3) and the regenerated plants flowered and set seeds normally. |
The relationship between vernalization requirement and frost tolerance in substitution lines of wheatI. T. Prášil, P. Prášilová, K. PánkováBiologia plantarum 49:195-200, 2005 | DOI: 10.1007/s10535-005-5200-2 Two sets of wheat (Triticum aestivum L.) substitution lines for the homoeologous group 5 chromosomes, 5A, 5B and 5D, carrying vernalization genes (Vrn-A1, Vrn-B1, Vrn-D1) were used to study the relationship between vernalization requirement and winter survival, with respect to the induction and maintenance of frost tolerance. Substitution lines carrying dominant Vrn loci substituted from the spring cultivars Zlatka (5A), Chinese Spring (5D) and the alternative cultivar Česká Přesívka (5B) into three different winter wheat backgrounds, Vala, Košútka and Zdar, showed lower winter survival by 20, 36, and 41 % for substitutions of 5B, 5A and 5D, respectively, compared to the original winter cultivars. Reciprocal substitution lines between two winter cultivars Mironovskaya 808 and Bezostaya 1 carrying different recessive alleles, vrn-A1, vrn-B1, vrn-D1, did not exhibit a modified induction of frost tolerance, but the duration of good frost tolerance, as well as the ability to survive the whole winter, was changed. In accordance with the model suggesting that genes for vernalization act as a master switch regulating the duration of frost tolerance, substitutions of homoeologous group 5 chromosomes induced, at first, frost tolerance at a level equal to the parental cultivar, and then, relative to the different extent of saturation of vernalization requirement, they gradually lost both frost tolerance and their ability to re-induce significant frost tolerance with a drop in temperature following warm periods in the winter. |
Growth and ion uptake in Annona muricata and A. squamosa subjected to salt stressV. M. Passos, N. O. Santana, F. C. Gama, J. G. Oliveira, R. A. Azevedo, A. P. VitóriaBiologia plantarum 49:285-288, 2005 | DOI: 10.1007/s10535-005-5288-4 The effects of treatment with NaCl (3, 100 and 300 mM) for 1, 2, 3 and 7 d on plant growth and ion accumulation were analyzed in 2-week and 8-week-old Annona muricata and A. squamosa plants. Fresh mass and root growth inhibition were directly related to the increase in salinity, particularly for A. squamosa. Two-weeks old seedlings were sensitive to 100 and 300 mM NaCl particularly after 7 d, whereas 8-week-old plants were shown to be more resistant to NaCl even at 300 mM NaCl. Na+ and Cl- mostly accumulated in young leaves. Our results suggest that A. squamosa is more sensitive than A. muricata to salt stress and that older seedlings of both species are more tolerant than younger seedlings. |
Book reviewL. BurketovaBiologia plantarum 49:388, 2005 | DOI: 10.1007/s10535-005-0012-y |
Gas exchange characteristics and water relations in two cultivars of Hibiscus esculentus under waterloggingM. Ashraf, M. ArfanBiologia plantarum 49:459-462, 2005 | DOI: 10.1007/s10535-005-0029-2 Thirty-day-old plants of two okra cultivars, Sabzpari and Chinese-red, were subjected for 30 d to normal watering or continuous flooding. Continuous flooding did not cause any adverse effect on shoot fresh and dry biomass. Leaf water potential and pressure potential of both cultivars increased significantly due to waterlogging, but there was a slight increase in leaf osmotic potential. Chlorophyll a and b contents decreased significantly and chlorophyll a/b ratio increased. Waterlogging caused a significant reduction in net photosynthetic rate, water use efficiency and intrinsic water use efficiency, but stomatal conductance and intercellular CO2/ambient CO2 ratio remained unchanged. |
Contribution of physiological and morphological adjustments to drought resistance in two Mediterranean tree speciesL. Serrano, J. PenuelasBiologia plantarum 49:551-559, 2005 | DOI: 10.1007/s10535-005-0049-y Plant water potential (ψ), its components, and gas exchange data of two Mediterranean co-occurring woody species (Quercus ilex L. and Phillyrea latifolia L.) were measured in response to seasonal changes in water availability over two consecutive years. The relative contribution of physiological and morphological adjustments to drought resistance was assessed through Principal Component Analyses. There were large adjustments in stomatal conductance (∼36 % of accounted variance). Net photosynthetic rate and water use efficiency were closely tuned to water availability and accounted for ∼17 % of variance. The slope of the water potential vs. relative water content (dψ/dRWC0) below zero pressure potential increased as a result of seasonal and ontogenic increases in apoplastic water fraction and accounted for ∼20 % variance. This tolerance mechanism was accompanied by an increased range of positive pressure potential, suggesting a functional role of sclerophylly in these Mediterranean evergreens. Similarly, changes in the slope of dψ/dRWC in the range of positive pressure potential (∼13 % of accounted variance) were associated to variations in cell wall elasticity and resulted in lower RWC at zero pressure potential. When considering the species studied separately, the results indicated the primary role of stomatal regulation in the drought resistance of Qilex, while increased apoplastic water fraction had a major contribution in the drought resistance of P. latifolia. |
Plenary lecturesBiologia plantarum 49(Suppl.1):S1, 2005 | DOI: 10.1007/s10535-006-0035-z |
Microspore development during in vitro androgenesis in triticaleJ. M. González, N. JouveBiologia plantarum 49:23-28, 2005 | DOI: 10.1007/s10535-005-3028-4 Microspore division was monitored in three triticale (× Triticosecale Wittmack) genotypes over 21 d of in vitro anther culture, on two media differing in their 2,4-dichlorophenoxyacetic acid content. After low temperature (4 °C) pre-treatment for two weeks, all the microspores were still alive, but they began to die from day one of culture. Both genotype and culture medium affected the number of microspores that aborted over time (82 - 97 % by day 21), the number of microspores that underwent the first symmetrical division (> 82 % over all), the number of microspores that attained four or more nuclei, and the number of divisions per 100 alive microspores after 21 d of culture. |
Structure and development of the secretory cavities of Myrtus communis leavesD. Kalachanis, G. K. PsarasBiologia 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. |
Importance of glucose-6-phosphate dehydrogenase in taxol biosynthesis in Taxus chinensis culturesL. J. Yu, W. Z. Lan, C. Chen, Y. Yang, Y. P. SunBiologia 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 germinationY.-J. Shiau, S. M. Nalawade, C.-N. Hsai, H.-S. TsayBiologia 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 plantsS. Echeverrigaray, R. Basso, L. B. AndradeBiologia 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 reviewJ. CatskyBiologia plantarum 49:512, 2005 | DOI: 10.1007/s10535-005-0043-4 |
Protein analysis of dwarfed transgenic rice plants overexpressing GA2-oxidase geneM. Hajduch, H. Tanaka, Y. Morinaka, Y. Otake, H. Nakamura, T. Kayano, Y. Koga-BanBiologia 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. |
Changes in Peroxidases and Catalase Activity During in vitro RootingA.N. Molassiotis, K. Dimassi, G. Diamantidis, I. TheriosBiologia plantarum 48:1-5, 2004 | DOI: 10.1023/B:BIOP.0000024267.68394.96 Enzyme changes in non-rooted (treated with Fe-EDTA) and rooted (treated with Fe-EDDHA) stems of rootstock GF-677 (Prunus amygdalus×P. persica) during adventitious root formation in vitro have been recorded. The first roots appeared approximately after 12 d on the rooting medium. By contrast to non-rooted stems, rooted stems showed a maximum of soluble peroxidase activity on the 9th day, of ionically bound peroxidase to cell wall on the 6th and 12th day and of catalase on the 6th and the 15th day. A time course study of changes of soluble peroxidases isoenzymes showed that there was a band visible only in the rooted stems and also a new band appeared three days before the emergence of roots. |
Thermotolerance of Pearl Millet and Maize at Early Growth Stages: Growth and Nutrient RelationsM. Ashraf, M. HafeezBiologia plantarum 48:81-86, 2004 | DOI: 10.1023/B:BIOP.0000024279.44013.61 Thermotolerance of pearl millet (Pennisetum glaucum cv. ICMV-94133) and maize (Zea mays cv. Golden) was assessed at germination and vegetative stage. Final percentage of germinated seeds and rate of germination (number of days to 50 % germination) decreased due to high temperature (45 °C) similarly in the both species. In contrast, at the vegetative stage, high temperature (38/27 °C) caused a significant reduction in shoot dry mass of maize, whereas this attribute remained almost unchanged in pearl millet. Relative growth rate and net assimilation rate (NAR) increased significantly in pearl millet due to high temperature, but in contrast, in maize NAR was slightly reduced. Concentrations of N, P, and K in the shoots of both species increased at high temperature, but N accumulation was more pronounced in pearl millet than in maize. High temperature caused a marked increase in both shoot and root Ca2+ concentration in maize, but it did not affect that of pearl millet. S concentration in the shoots of maize decreased significantly due to high temperature, whereas that in pearl millet remained unaffected. Shoot Na+ concentration of both species was not significantly affected by high temperature. High temperature caused a significant increase in uptake of N, P, and K+ in pearl millet, but the uptake of Ca2+, Mg2+, Na+ and S remained unaffected in this species. In contrast, in maize, a significant increase in uptake of K+ and Ca2+, and a decrease in uptake of N, S, Mg2+, and Na+ were found at high temperature. Overall, maize showed lower tolerance to high temperature compared with pearl millet. |
Cadmium-Induced Changes in Chloroplast Lipids and Photosystem Activities in Barley PlantsA. Vassilev, F. Lidon, P. Scotti, M. Da Graca, I. YordanovBiologia plantarum 48:153-156, 2004 | DOI: 10.1023/B:BIOP.0000024295.27419.89 Fatty acid content and composition of chloroplast membranes, ethylene production associated with thylakoid lipids degradation as well as photosynthetic electron transport involving photosystems 1 and 2 were used to determine the effects of increasing Cd concentrations in the growth medium [0, 14, 28, and 42 mg (Cd) kg-1(sand)] on the photosynthetic performance of barley plants (H. vulgare L., cv. CE9704). High concentrations of Cd triggered serious disturbances of the chloroplast membranes. Ethylene production increased whereas a drop of 18:3 fatty acid content occurred, indicating that Cd mediates lipid peroxidation in the thylakoids. The enhanced ethylene production could be used as an early indicator of Cd-induced membrane degradation, yet at very high concentration (42 mg kg-1) Cd decreased ethylene production. |
Protein Patterns, Characterized by Computer Image Analysis, of Lentil Embryo Axes Germinating Under Salt StressA. Dell'AquilaBiologia plantarum 48:237-242, 2004 | DOI: 10.1023/B:BIOP.0000033450.16985.07 Following 16, 40 and 64 h exposure to 0.33 M NaCl given after 8 h water imbibition, lentil seeds showed a gradual decrease of germination upon their transfer to water. These salt related changes were accompanied by modifications in the protein patterns of embryo axes as revealed by two-dimensional electrophoresis separation and by the computer image analysis of protein spots. In comparison with 8 h water imbibed seeds, prominent proteins comprised between the 5.1 - 7.6 pH isoelectric point in the first dimension and 75 - 50 kDa molecular mass in the second dimension showed a significant increase in their abundance as salt exposure increased. On transfer to water to complete germination, the content of many of these proteins decreased at 24h in 2 - 3 cm length embryo axes in comparison with the corresponding embryo axes of seeds continuously imbibed in water for 24 h. Some groups of proteins ranging between 15.5 - 17.3 kDa, already present after 8 h water imbibition, were not detectable after 24 h but were expressed in seeds exposed to NaCl and transferred to water for 24 h. Up- and down-regulated proteins in lentil embryo axes, imbibed under non-lethal salt stress conditions, have been tentatively identified by comparison with the protein map of germinating seeds of the model plant Arabidopsis. |
In vitro Regeneration and Transformation of Blackstonia perfoliataA. Bijelović, N. Rosić, J. Miljuš-Djukić, S. Ninković, D. GrubišićBiologia plantarum 48:333-338, 2004 | DOI: 10.1023/B:BIOP.0000041083.41294.31 In vitro root culture of yellow wort (Blackstonia perfoliata (L.) Huds.) was initiated on Murashige and Skoog (MS) medium. In the presence of benzylaminopurine (BAP) numerous adventitious buds formed, which developed into shoots. Presence of indole-3-butyric acid (IBA) in media significantly decreased number of buds, but increased development of lateral roots. On hormone-free medium shoots successfully rooted and developed flowers and viable seeds that formed another generation. Shoot cultures of B. perfoliata inoculated with suspension of Agrobacterium rhizogenes strain A4M70GUS developed hairy roots at 3 weeks and they were cultured on hormone-free MS medium. Spontaneous shoot regeneration occurred in 3 clones. |
TMV-RNA Biosynthesis in the Light-Green and Dark-Green Regions of Tobacco LeavesM. Šindelářová, L. ŠindelářBiologia plantarum 48:419-423, 2004 | DOI: 10.1023/B:BIOP.0000041096.21583.61 Changes in the proteins, chlorophyll, virus content and activity of key enzymes of viral RNA biosynthesis were investigated in the light- and dark-green regions of tobacco leaves systemically infected with tobacco mosaic virus. The protein content was increased to 118 % in the dark-green islands in contrast to 60 % in the light-green regions when compared with the control healthy leaves. The comparative analysis of soluble proteins from healthy and light- or dark-green regions of leaves by means of SDS-PAGE revealed that the main soluble proteins are equal in pattern but differ in quantity. The contents of chlorophylls did not differ from healthy tissues in the dark-green islands but were considerably lower in the light-green regions. The content of virus in light-green tissues was about 10 times higher than in the dark-green islands. The activities of key enzymes of oxidative pentosephosphate cycle -- glucose-6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase -- did not differ from healthy tissues in the dark-green islands but were considerably higher in the light-green tissues when compared with healthy control. Similar relationships were observed for ribonuclease, phosphomonoesterase and phosphodiesterase activities. The biosynthesis of viral RNA in the dark-green islands is probably restricted by the steady (or reduced) activities of key enzymes of these metabolic pathways. |
High Frequency Somatic Embryogenesis in CottonY. Aydin, Z. Ipekci, T. Talas-Oğraş, A. Zehir, K. Bajrovic, N. GozukirmiziBiologia plantarum 48:491-495, 2004 | DOI: 10.1023/B:BIOP.0000047142.07987.e1 A highly reproducible system for efficient somatic embryogenesis was developed to regenerate plantlets from cotton (Gossypium hirsutum L.) cultivars (Nazilli M-503 and Nazilli 143). Shoot apices, hypocotyls and nodes of 10-d-old seedlings were used as explants. High frequency (100 %) embryogenic calli was initiated from all tested explants on Murashige and Skoog (1962) (MS) media supplemented with 1 g dm-3 polyvinylpyrrolidone (PVP), 1 mg dm-3 6-benzylaminopurine (BAP), 0.5 mg dm-3 kinetin for Nazilli M-503 and 1 g dm-3 PVP, 2 mg dm-3 BAP, 0.5 mg dm-3 kinetin for Nazilli-143. Globular stage somatic embryos were produced 4 months after transfer to hormone-free MS medium supplemented with 1 g dm-3 PVP. Subsequent subculture of globular embryos every 3 weeks on hormone-free MS medium led to the development of torpedo and cotyledonary stage embryos with the frequency of 75 and 83.2 % from hypocotyl explants of Nazilli M-503 and Nazilli-143, respectively. Afterwards, mature somatic embryos were isolated and cultured on hormone-free MS medium for germination and development into plantlets. The highest germination frequency (42.9 %) for Nazilli M-503 somatic embryos were obtained on hormone-free MS medium after 5 months with hypocotyl explants, whereas germination frequencies of Nazilli-143 embryos from hypocotyl, node and apex explants varied between 22 - 30 %. |
Calcium Ameliorates Effects of Lead in Protonema of Funaria hygrometrica Hedw.M. Krzesłowska, A. Woźny, J. Konieczna-KoperskaBiologia plantarum 48:569-574, 2004 | DOI: 10.1023/B:BIOP.0000047154.16119.32 Two-days-old in vitro grown protonemata of Funaria hygrometrica Hedw. were treated with a mixture PbCl2 (4 μM Pb2+) and CaCl2 (16 μM Ca2+) (Ca+Pb) for 48 h. The results were compared with the control: distilled water (H2O) and the solution of PbCl2 (4 μM Pb2+) (Pb). Protonemata treated with Ca+Pb were longer and contained more cells than those treated with Pb. Moreover, a lower number of cells showed apical cell deformations typical for lead toxicity: swollen tips and wall thickenings at the apex. If deformations were present they were not as extended as in Pb. In comparison with the control, however, protonemata treated with Ca+Pb were shorter, contained a lower number of cells and some apical cells in this material were altered. It can be concluded that the presence of calcium partially neutralised toxic effects of lead in Funaria hygrometrica protonemata cells. |
Antioxidant Systems in Ripening Tomato FruitsK. Mondal, N.S. Sharma, S.P. Malhotra, K. Dhawan, R. SinghBiologia plantarum 48:49-53, 2004 | DOI: 10.1023/B:BIOP.0000024274.43874.5b Two cultivars of tomato (Lycopersicon esculentum Mill.), Selection-7 (shelf life 7-8 d) and ARTH-3 (shelf life 14-15 d) were analyzed for oxidative stress and the antioxidant enzyme system at different stages of fruit ripening. The results presented here suggest that during the early stages of fruit ripening, efficient antioxidant system protects the tomato fruits against the damaging effect of progressive oxidative stress. At later stages, however, oxidative damage occurs due to decreased activities of the ROS scavenging enzymes. |
Influence of Acidity on Growth and Biochemistry of Pennisetum clandestinumM. Sidari, M.R. Panuccio, A. MuscoloBiologia plantarum 48:133-136, 2004 | DOI: 10.1023/B:BIOP.0000024290.38546.8a Hydroponics were used to study the impact of acidity on growth, nutritive properties and metabolic changes in kikuyu grass (Pennisetum clandestinum Hochst). Four treatments (pH 6.0, 5.0, 4.0, and 3.0) were compared for effects on biomass, leaf and root length, crude protein, amino acid content and key enzymes of sugar metabolism. Reduction in biomass, root and leaf length, amino acid contents, glucose-6-phosphate dehydrogenase (G6PDH) and pyruvate kinase (PK) content was observed only at pH 3.0, in association with increased leaf proline content. Kikuyu grass is able to grow normally under mild acidity (down to at least pH 4.0). |
Estimation of Genetic Variability of Vigna radiata Cultivars by RAPD AnalysisS. Betal, P. Roy Chowdhury, S. Kundu, S. Sen RaychaudhuriBiologia plantarum 48:205-209, 2004 | DOI: 10.1023/B:BIOP.0000033446.43495.0c DNA was isolated from 14 cultivars of Vigna radiata (L.) Wilczek and subjected to RAPD analysis using 14 random decamer primers. These cultivars revealed polymorphism with respect to RAPD markers and were subjected to hierarchical cluster analysis. A dendrogram was prepared based on these data. Analysis of banding patterns confirmed that two strongly aromatic cultivars IC1, IC4, were closely linked. But another aromatic cultivar, B1, formed a separate cluster. The high yielding cultivars were closely related to B1. The phylogenetic tree constructed by the neighbour joining method showed that RAPD results were correlated with morphological characters like plant height, leaf and seed size, seed colour, etc. |
Variation in the Amino Acid Concentration During Development of Canavalia ensiformesL.S. Camargos, L.F. Aguiar, R.A. AzevedoBiologia plantarum 48:309-312, 2004 | DOI: 10.1023/B:BIOP.0000033463.98440.db The distribution of amino acids in distinct tissues of Canavalia ensiformes was determined during the life cycle of the plant. Glycine was shown to be the main amino acid in mature seeds, while the nonprotein amino acid canavanine exhibited a high concentration in 7-d-old seedlings. Canavanine was lower in the seeds when compared to other tissues analyzed. This does not support the nitrogen-storage function of canavanine, however, it suggests that it is involved in the translocation of amines during the early stages of the development. |
Callus Induction and in vitro Regeneration from Barley Mature EmbryosJ.M. Zapata, B. Sabater, M. MartínBiologia plantarum 48:473-476, 2004 | DOI: 10.1023/B:BIOP.0000041108.89399.85 We have assayed different combinations of nutrient media and growth regulators to induce callus and plant regeneration from explants of root, shoot and leaf, complete seed, and isolated mature embryo of barley (Hordeum vulgare L. cv. Hassan). The best results were obtained with mature embryo in J25-8 medium supplemented with 2.0 mg dm-3 2,4-dichlorophenoxyacetic acid where about 75 % developed friable calli. Some 80 - 85 % of these calli regenerated barley plants in the same J25-8 medium supplemented with 1.0 mg dm-3 indole-3-butyric acid and 0.1 mg dm-3 kinetin. |
Comparison of Two Methods for Preparing Mitochondria from Tomato Leaves to Study the Ascorbate-Glutathione Cycle ActivityE. Kuźniak, M. SkłodowskaBiologia plantarum 48:537-542, 2004 | DOI: 10.1023/B:BIOP.0000047149.57946.a5 Mitochondria were purified from tomato leaves by a differential centrifugation method and a Percoll density-gradient method. A comparative study on the ascorbate-glutathione cycle activity revealed that there was no difference in the specific activity of the antioxidative enzymes and ascorbate and glutathione concentrations between mitochondria prepared by these two methods. However, the contents of dehydroascorbic acid and oxidised glutathione in Percoll-separated organelles were 260 and 210 %, respectively, of those found in mitochondria purified by the differential centrifugation method. |


