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Multiple Shoot Regeneration from Immature Embryo Explants of PapayaJ. Bhattacharya, N.N. Renukdas, S.S. Khuspe, S.K. RawalBiologia plantarum 46:327-331, 2003 | DOI: 10.1023/B:BIOP.0000023873.55327.fe A simple and rapid method for multiple shoot formation in vitro from immature embryo axis explants of Carica papaya L. cvs. Honey Dew, Washington and Co2 is described. Multiple shoot regeneration was achieved by culture of the explants on modified Murashige and Skoog (MS) medium supplemented either with thidiazuron (TDZ; 0.45-22.7 μM) or a combination of benzylaminopurine (BAP; 0.2 - 8.84 μM) and naphthalene acetic acid (NAA; 0.5 - 2.64 μM). Highest frequency of shoot regeneration occurred on medium supplemented either with 2.25 μM TDZ or a combination of BAP (4.4 μM) and NAA (0.5 μM). Composition of the basal media influenced the frequency of multiple shoot initiation. Stunted shoots regenerated at 4.5 μM and higher concentrations of TDZ. Such shoots could, however, be elongated by transfer to medium containing 5.7 μM GA3. Rooting of the regenerated shoots was achieved in presence of indolebutyric acid (IBA; 4.92 - 19.68 μM), however, least response was in presence of 14.7 μM IBA. Rooted plants were hardened and transferred to pots. |
Multiple Shoot Induction and Plant Regeneration from Embryo Axes of Six Cultivars of Gossypium hirsutumA.K. Banerjee, D.C. Agrawal, S.M. Nalawade, S. Hazra, K.V. KrishnamurthyBiologia plantarum 46:433-436, 2003 | DOI: 10.1023/B:BIOP.0000023889.20631.92 The report describes in vitro plant regeneration from embryo axis explants of six cultivars of cotton. Induction of a maximum number of multiple shoots in all six cultivars could be achieved on Murashige and Skoog's (MS) salts and Gamborg's (B5) vitamins supplemented with 0.4 μM benzyladenine (BA) and 0.1 μM napthaleneacetic acid (NAA). Elongated shoots could be rooted on half strength medium supplemented with 0.5 μM NAA. Rooted shoots survived (92 %) after hardening in the greenhouse and grew to maturity (100 %) after transfer to field. |
The Horse Chestnut Lines Harboring the rol GenesS. Zdravković-Korać, D. Ćalić, P.H. Druart, Lj. RadojevićBiologia plantarum 46:487-491, 2003 | DOI: 10.1023/B:BIOP.0000041051.81210.9b An Agrobacterium rhizogenes-mediated transformation system for Aesculus hippocastanum L. has been developed. Wounded androgenic embryos of A. hippocastanum were inoculated with bacteria containing the pRiA4 plasmid, with the uid A sequence as a reporter gene. The hairy roots emerging from the wounded sites of androgenic embryos were isolated and maintained in Murashige and Skoog's (MS) liquid hormone-free medium. Five hairy root lines have been maintained in vitro for 4 years with unchanged growth rate and might be a suitable source for secondary metabolite production. The transformation events have been confirmed by a polymerase chain reaction specific to the rol A, B, C and D genes. The absence of residual contaminating bacteria has been shown by a polymerase chain reaction specific to the vir D1 sequence. |
Herbicide Induced Oxidative Stress in Lettuce, Beans, Pea Seeds and LeavesD. Štajner, M. Popović, M. ŠtajnerBiologia plantarum 46:575-579, 2003 | DOI: 10.1023/B:BIOP.0000041064.04385.c7 The effects of different paraquat, alachlor and metolachlor concentrations on superoxide dismutase (SOD), catalase (CAT), guaiacol peroxidase (GPX) activities and pigment contents in lettuce, bean and pea seeds and leaves were studied. Under paraquat (1.0 and 2.0 μM) treatment declined SOD and CAT activities were observed in seeds and undetectable ativity of GPX. Germination of all investigated seeds was completely inhibited. All used concentrations of alachlor and metolachlor inhibited antioxidant enzyme activities in seeds but did not prevent germination and growth. In leaves, lower concentrations of these herbicides increased activities of antioxidant enzymes but at the highest herbicide concentrations (200 μM) activities of investigated enzymes declined. The pigment contents the leaves decreased due to alachlor and metolachlor treatment in a concentration dependent manner. |
Molecular Cloning of a Phosphoenolpyruvate Carboxylase cDNA from Tropical Epiphytic CAM OrchidC.R. Li, X.B. Zhang, C.S. HewBiologia plantarum 46:635-636, 2003 | DOI: 10.1023/B:BIOP.0000041079.47888.ed A full-length cDNA encoding phosphoenolpyruvate carboxylase (PEPC) was isolated from tropical epiphytic CAM orchid Mokara Yellow. The cDNA designated as Mpepc1 is 3 450 bp in length with an open reading frame of 2 862 bp encoding 954 amino acids. The deduced amino acid sequence of Mpepc1 shows 83 % identity with pepc2 of sorghum, 82 % with pepc1 and pepc2 of maize and 81 % with pepc of Arabidopsis thaliana. RT-PCR analysis showed that Mpepc1 was expressed in mature leaves, immature leaves, and aerial roots of M. Yellow. No expression was detected in the flower. |
Molecular Evidence for the Occurrence of H+-Transporting V-ATPase Subunit D and Two Different Forms of Subunit E in Leaves of the Obligate CAM Species Kalanchoë daigremontianaR. Ratajczak, T. Pfeifer, M. Drobny, M. Schnölzer, U. LüttgeBiologia plantarum 46:13-21, 2003 | DOI: 10.1023/A:1022341612852 Membrane proteins of purified tonoplast vesicles from leaves of Kalanchoë daigremontiana Hamet et Perrier were solubilized by the non-ionic detergent Triton X-114 and subsequently separated by MonoQ® anion-exchange chromatography. Special attention was given to the range of molecular masses around 30 kDa comprising the central stalk subunit peptides of the H+-transporting V-ATPase. Three polypeptides of apparent molecular masses of 32, 33 and 34 kDa were separated. Proteolytic fragments were obtained by trypsin digestion. Analysis by matrix-assisted laser desorption ionization (MALDI) mass spectrometry of tryptic fragments of the 32 and 33 kDa peptides and protein data- bank comparisons showed that they are two different forms of subunit E. N-terminal amino acid sequencing of tryptic fragments of the 34 kDa peptide showed that it is subunit D. This work provides for the first time unequivocal molecular evidence that the central stalk of the V-ATPase of the obligate CAM plant K. daigremontiana includes subunit D and different forms of subunit E. |
Dynamics of Cadmium Distribution in the Intercellular Space and Inside Cells in Soybean Roots, Stems and LeavesS. Kevrešan, S. Kiršek, J. Kandrač, N. Petrović, Dj. KelemenBiologia plantarum 46:85-88, 2003 | DOI: 10.1023/A:1022366218304 Soybean (Glycine max L.) plants grown in nutrient solution were exposed to 1 mM Cd(NO3)2 for 24 h. Dynamics of distribution of cadmium among its different forms (water soluble, Ca-exchangeable and complexed) in the intercellular space and the ratio of the intercellular and intracellular cadmium in roots, stems and leaves were studied. In roots, in the beginning of treatment the largest portion of Cd was found in the intercellular space and 1 h later Cd content started to decrease, so that between 13- and 24-h treatment an equilibrium was reached in which about 70 % of Cd was found inside cells. In stems, already after 1-h treatment, the Cd concentrations in the cells and intercellular space were similar, the equilibrium being disturbed after 13 h, so that after 24-h treatment 80 % of Cd was found inside cells. In leaves, up to the 13 h Cd distribution showed fluctuation, after that equilibrium was reached, with 70 % of intracellular Cd. The highest contents of all Cd forms in the intercellular space was observed in roots. |
Rice Seedlings Release Allelopathic SubstancesH. Kato-Noguchi, T. InoBiologia plantarum 46:157-159, 2003 | DOI: 10.1023/A:1022337706443 Rice (Oryza sativa L.) seedlings inhibited the growth of hypocotyls and roots of cress (Lepidium sativum L.) seedlings when both seedlings were grown together. Two growth inhibiting substances were found in the culture solution in which rice seedlings were hydroponically grown for 14 d. One growth inhibitor was further purified. This suggests that the rice seedlings may produce growth inhibiting substances, acting as allelochemicals to other plants, and release them from their roots into the environment. |
Ammonium Ion, Ethylene, and Abscisic Acid in Polyethylene Glycol-treated Rice LeavesS.Y. Hsu, Y.T. Hsu, C.H. KaoBiologia plantarum 46:239-242, 2003 | DOI: 10.1023/A:1022854728064 Polyethylene glycol (PEG)-treatment decreased chlorophyll and protein contents and increased NH4 + content due to decreased glutamine synthetase activity in detached rice leaves. PEG-treatment also increased abscisic acid (ABA) content and decreased ethylene production. Addition of fluridone, an inhibitor of ABA biosynthesis, reduced ABA content in rice leaves but did not prevent chlorophyll and protein loss in rice leaves induced by PEG. Silver thiosulfate, an inhibitor of ethylene action, was effective in preventing PEG-promoted chlorophyll and protein loss, but had no effect on PEG-induced NH4 + accumulation. The current results suggest that NH4 + accumulation in rice leaves induced by PEG increases leaf sensitivity to ethylene, which in turn results in an enhancement of chlorophyll and protein loss. |
Singo NakazawaN. Tanno, Y. YamazakiBiologia plantarum 46:I-II, 2003 | DOI: 10.1023/A:1024397230011 |
Pasternak, D., Schlissel, A. (ed.): Combating Desertification with PlantsJ. PospíšilováBiologia plantarum 46:388, 2003 | DOI: 10.1023/A:1024382320441 |
Effect of Darkness on Growth and Flowering of Chenopodium rubrum and C. murale Plants in vitroA. Mitrović, B. Živanović, Lj. ĆulafićBiologia plantarum 46:471-474, 2003 | DOI: 10.1023/A:1024367311781 Chenopodium rubrum, a short-day plant, and C. murale, a long-day plant, were grown in vitro in continuous darkness. Control C. rubrum plants exposed to continuous darkness for 15 d at cotyledonary phase, did not flower, while 80 % of plants flowered on the medium with 5 % glucose and 10 mg dm-3 GA3. Control C. murale plants exposed to continuous darkness for 10 d at the age of 4th pair of leaves, did not flower, while GA3 (1 - 5 mg dm-3) stimulated flowering up to 65 %. |
Influence of Arbuscular Mycorrhiza and Phosphorus Supply on Polyamine Content, Growth and Photosynthesis of Plantago lanceolataI. Parádi, Z. Bratek, F. LángBiologia plantarum 46:563-569, 2003 | DOI: 10.1023/A:1024819729317 A greenhouse pot experiment with different phosphorus supply was conducted to study growth, photosynthesis and free polyamine (PA) content in Plantago lanceolata L. plants in relation to arbuscular mycorrhizal (AM) colonization. Inoculum of Glomus fasciculatum (BEG 53) was used. Inoculated plants had high colonization intensities which were related to the P supply. Non-mycorrhizal (NM) plants showed a typical yield response curve for P availability. Dry masses of mycorrhizal (M) plants were higher at the lowest soil P content than those of NM plants, but the opposite was found at the highest P supply. P contents in M plants were always higher. There were no differences in chlorophyll (Chl) concentrations (except the lowest soil P content) and ratios of variable to maximum Chl fluorescence (Fv/Fm) values between M and NM plants, whereas M plants had higher ratios of leaf area to fresh mass (A/f.m.) at low soil P contents and they had significantly higher CO2 fixation capacities per unit leaf area. Free putrescine (Put), spermidine (Spd) and spermine (Spm) contents in NM plants were usually highest at the lowest P supply. The ratios of Put/(Spd+Spm) were identical in M and NM leaves. They were significantly higher, however, in NM roots at the two low P doses. It is concluded, that a P nutritional status might exist, below which PA concentrations and ratio are increased drastically, possibly indicating P deficiency or a certain state of plant development with a higher demand for AM symbiosis. |
Schekman, R., Goldstein L., McKnight, S.L. Rossant, J. (ed.): Annual Review of Cell and Developmental BiologyT. GichnerBiologia plantarum 46:6, 2003 | DOI: 10.1023/A:1027370023677 |
Changes in Glucose-6-Phosphate Dehydrogenase, Ribonucleases, Esterases and Contents of Viruses in Potato Virus Y Infected Tobacco Superinfected with Tobacco Mosaic VirusM. Šindelářová, L. ŠindelářBiologia plantarum 46:99-104, 2003 | DOI: 10.1023/A:1027341217317 Effects of the superinfection with tobacco mosaic virus (TMV) on susceptible tobacco plants infected with potato virus Y (PVY) were determined. Dynamic changes in the TMV and/or PVY contents, the ribonucleases (RNases), the phosphomonoesterase (PME), the phosphodiesterase (PDE) and the glucose-6-phosphate dehydrogenase (G6P DH) activities were studied. The PVY infection caused a substantial reduction in the multiplication of TMV. The content of TMV in the PVY inoculated leaves amounts to 6 and 9 % in the PVY systemically infected leaves when compared with single TMV. Surprisingly, the challenging virus (TMV) enhanced the content of inducing virus (PVY) in the locally inoculated leaves up to 130 - 141 %. In contrast, the reduction of PVY content down to 35 - 40 % by TMV was seen in the PVY systemically infected leaves. The activities of the RNase, the PME, the PDE and the G6P DH were increased (when compared with the healthy plants) during the acute phase of single virus multiplication (PVY or TMV). The increase in the activities of the enzymes in the leaves with mixed infection was at least as high as the sum of the increases of single infections. Moreover, a higher increase than the sum was seen for G6P DH and PDE (by about 20 - 35 %). |
Propagation of Citrus reticulata via in vitro Seed Germination and Shoot CuttingsA.M. Hassanein, M.M. AzoozBiologia plantarum 46:173-177, 2003 | DOI: 10.1023/B:BIOP.0000022247.46798.59 Seeds of Citrus reticulata were germinated efficiently when they were sown directly after their extraction from fruits harvested in January, and incubated at constant temperature (25 °C). Seed drying decreased both the percentage of seed germination and the number of seedling per seed. Germination of seeds was better on Murashige and Skoog (MS) medium supplemented with 0.5 mg dm-3 benzylaminopurine (BAP) than in a soil. Shoot cuttings obtained from germinated seeds were subcultured on B5 medium supplemented with 1 mg dm-3 BAP, 0.5 mg dm-3 kinetin (KIN) and 0.5 mg dm-3 naphthalene acetic acid (NAA), where shoots grew and multiplied. They were rooted on half strength MS medium supplemented with 0.25 mg dm-3 BAP, 0.5 mg dm-3 NAA and 1 mg dm-3 isobutyric acid (IBA). Rooting under light was better than under dark. Seedlings and shoot cuttings with roots were transferred successfully to the soil after three weeks of acclimatization. |
Luštinec, J., Žárský, V.: Úvod do fyziologie vyšších rostlin. [Introduction to Physiology of Higher Plants.]J. ČatskýBiologia plantarum 46:226, 2003 | DOI: 10.1023/B:BIOP.0000022300.83242.56 |
Plant Regeneration from Immature Embryo Cultures of Vigna unguiculataP.-S. Choi, D.-Y. Cho, W.-Y. SohBiologia plantarum 46:305-308, 2003 | DOI: 10.1023/B:BIOP.0000022272.39625.59 Mature and immature cotyledon explants of cowpea were cultured on Murashige and Skoog's (MS) medium supplemented with 0.1 - 2.0 mg dm-3 benzyladenine (BA). Shoot organogenesis was observed from the minimal greenish calli formed at proximal cutting edges of the immature cotyledon explants after 15 - 20 d of culture. Among whole immature zygotic embryo and seven explant types we tested, single whole cotyledon was suitable for shoot organogenesis. Nearly 67.5 % of the explant types produced adventitious shoots on MS medium containing with 1 mg dm-3 BA, and the shoot number (10.1) per explant was higher than other explant types. From the histological studies, the shoot primordia originated from the procambial strands of immature cotyledon explants. When the shoots were transferred to 1/2 MS basal medium, formed roots within 20 d of culture. The rooted plants were subsequently transferred to the pots and to the field. |
Comparison of Cadmium Effect on Willow and Poplar in Response to Different Cultivation ConditionsL. Lunáčková, A. Šottníková, E. Masarovičová, A. Lux, V. StreškoBiologia plantarum 46:403-411, 2003 | DOI: 10.1023/B:BIOP.0000023884.54709.09 Salix alba L. and Populus×euroamericana cv. Robusta cuttings were grown in 10 μM Cd(NO3)2 (direct treatment) or in Knop solution and afterwards in Cd(NO3)2 (indirect treatment). Cd impact on rooting of directly treated plants and its impact on normally formed roots and shoots of indirectly treated plants were studied. The cumulative length, number and biomass of willow roots, pigment and starch contents, leaf net photosynthetic rate and dry mass/leaf area ratio of willow leaves were positively influenced by indirect treatment. However, indirectly treated poplars were more sensitive to Cd than directly treated ones. Indirect treatment lowered root Cd uptake in willow, Cd accumulation in cuttings of both species and Cd accumulation in poplar shoots. Cd-caused structural changes were similar in both species and in both treatments. Root apices, rhizodermis and cortex were the most seriously damaged root parts. In directly treated willow, the structure of central cylinder (0.5 - 1 cm from apex) remained unchanged in contrast to indirectly treated plants. Formation of cambium close to the apex indicated shortening of root elongation zone of indirectly treated plants. Directly Cd-treated poplar roots exhibited unusual defence activity of root apical meristem and accumulation of darkly stained material around central cylinder. |
The Mitotic Activity of Norway Spruce Polyembryonic Culture Oscillates During the Synodic Lunar CycleH. Vlašínová, M. Mikulecký, L. HavelBiologia plantarum 46:475-476, 2003 | DOI: 10.1023/B:BIOP.0000023900.49134.2d The present paper tests the hypothesis, that a periodic fluctuation of mitotic activity of the embryonal tissue of the Norway spruce (Picea abies (L.) Karst.) is synchronnous with synodic lunar cycling. The increased mitotic index (MI) was observed under full moon, and the decreased MI around the first and third quarter. |
Variation in Osmoregulation in Differentially Drought-Sensitive Wheat Genotypes Involves CalciumH. NayyarBiologia plantarum 46:541-547, 2003 | DOI: 10.1023/B:BIOP.0000041059.10703.11 Two wheat (Triticum aestivum L.) genotypes differing in their sensitivity to water deficit (stress tolerant - C306 and stress susceptible - HD2329) were subjected to osmotic stress for 7 d using polyethylene glycol (PEG-6000; osmotic potential -1.0 MPa), at initial vegetative growth. The plants were either supplemented with 1 mM CaCl2 (Ca2+) alone or along with verapamil (VP; calcium channel blocker) to investigate the involvement of calcium in governing osmoregulation. Relative elongation rate (RER), dry matter (DM) production, water potential (Ψw), electrolyte leakage (EL), contents of proline (Pro) and glycine betaine (GB) and activities of γ-glutamyl kinase (GK) and proline oxidase (PO) in shoots and roots were examined during stress period. C306 showed relatively higher accumulation of Pro while HD2329 accumulated more GB under stress. RER, DM and Ψw were relatively higher in C306 than HD2329. Roots compared to shoots showed lower content of osmolytes but had faster rate of their accumulation. Presence of Ca2+ in the medium increased the activity of GK and decreased that of PO while in the presence of its inhibitor, decrease in activity of both the enzymes was observed. Ca2+ appeared to reduce the damaging effect of stress by elevating the content of Pro and GB, improving the water status and growth of seedlings and minimizing the injury to membranes. The protective effect of Ca2+ was observed to be more in HD2329 than C306. |
Direct Regeneration of Shoots from Hairy Root Cultures of Centaurium erythraea Inoculated with Agrobacterium rhizogenesA. Subotić, S. Budimir, D. Grubišić, I. MomčilovićBiologia plantarum 46:617-619, 2003 | DOI: 10.1023/B:BIOP.0000041074.81033.3a Stable transformation and expression of transgenes was achieved in Centaurium erythraea Gillib. using Agrobacterium rhizogenes-mediated system. Five hairy root clones exhibited the transformed phenotype. Shoot regeneration, with green organized structures, was apparent in 4 clones, after the first subculture on Murashige and Skoog (MS) half strength medium. The integration of Ri-plasmid T-DNA was confirmed by polymerase chain reaction (PCR) analyses. |
Rehydration of Sugar Beet Plants after Water Stress: Effect of CytokininsL. Vomáčka, J. PospíšilováBiologia plantarum 46:57-62, 2003 | DOI: 10.1023/A:1022306032416 The possibility to improve the recovery of sugar beet plants after water stress by application of synthetic cytokinins N6-benzyladenine (BA) or N6-(m-hydroxybenzyl)adenosine (HBA) was tested. Relative water content (RWC), net photosynthetic rate (PN), transpiration rate (E), stomatal conductance (gs), chlorophyll (Chl) a and Chl b contents, and photosystem 2 efficiency characterized by variable to maximal fluorescence ratio (Fv/Fm) were measured in control plants, in water-stressed plants, and after rehydration (4, 8, 24, and 48 h). Water stress markedly decreased parameters of gas exchange, but they started to recover soon after irrigation. Application of BA or HBA to the substrate or sprayed on leaves only slightly stimulated recovery of PN, E, and gs in rehydrated plants, especially during the first phases of recovery. Chl contents decreased only under severe water stress and Fv/Fm ratio was not significantly affected by water stress applied. Positive effects of BA or HBA application on Chl content and Fv/Fm ratio were mostly not observed. |
Osmotically Active Compounds and their Localization in the Marine Halophyte EelgrassC.J. Ye, K.F. ZhaoBiologia plantarum 46:137-140, 2003 | DOI: 10.1023/A:1022380824938 Contents of various organic and inorganic osmotica in the leaves, shoots and roots of Zostera marina L. were determined and their contributions to the osmotic adjustment to seawater were calculated. The inorganic ions, especially Na+, were the main osmotica. X-ray microanalysis indicated that vacuoles in the parenchymatous cells are the main sites in leaves accumulating toxic ions. |
Cryopreservation of Embryogenic Culture of Pinus roxburghiiG. Mathur, V.A. Alkutkar, R.S. NadgaudaBiologia plantarum 46:205-210, 2003 | DOI: 10.1023/A:1022894409408 Embryogenic cultures of chir pine (Pinus roxburghii Sarg.) were cryopreserved successfully in liquid nitrogen. It was found that using sorbitol and dimethyl sulfoxide (DMSO) as cryoprotectants was essential for the survival of the tissue. Among the different concentrations of the cryoprotectants used, the most effective treatment was observed to be 0.3 M sorbitol and 5 % DMSO. On staining the cryopreserved tissue with fluorescein diacetate, it was observed that only a few meristematic embryo heads survived and resumed growth after a very short initial lag phase. The recovered cultures showed normal regrowth on proliferation medium and, it was also observed that washing off the cryoprotectants was necessary for the cultures to survive. The results indicate that cryopreservation can be used for conserving the germplasm, and in maintaining the embryogenic capacity of the tissue. |
Plant Micropropagation and Callus Induction of Some Annual Salsola SpeciesB. Stefaniak, A. Woźny, V. LiBiologia plantarum 46:305-308, 2003 | DOI: 10.1023/A:1022879400747 Micropropagated plants of two annual haloxerophytic Asiatic Salsola species (S. pestifer and S. lanata) were obtained from zygotic embryos cultured on Murashige and Skoog (MS) agar medium supplemented with 0.5 µM benzylamino-purine (BAP) and 0.3 µM indole-3-acetic acid (IAA) or with 0.5 µM 6 γ, γ-dimethylallylaminopurine and 0.3 μM IAA. The callus induction from shoot and leaf explants derived from plants propagated in vitro were obtained on MS agar medium with various concentration of auxins and cytokinins. The best medium for growth and proliferation of calluses of both studied species was MS medium containing 9.0 µM 2,4-dichlorophenoxyacetic acid. It was also determined that beginning of plant regeneration from callus of S. lanata was induced by 8.8 µM BAP. |
Preparation of HMW DNA from Plant Nuclei and Chromosomes Isolated from Root TipsH. Šimková, J. Číhalíková, J. Vrána, M.A Lysák, J. DoleželBiologia plantarum 46:369-373, 2003 | DOI: 10.1023/A:1024322001786 Simple, fast and cost-effective method for preparation of DNA with high molecular weight (HMW DNA) from plant nuclei and mitotic chromosomes has been developed. The technique involves mechanical homogenization of formaldehyde-fixed root tips, purification of nuclei and/or chromosomes on sucrose gradient, embedding in low-melting-point agarose, and DNA isolation in agarose plugs. Alternatively, nuclei and chromosomes may be purified using flow cytometry. Majority of DNA obtained is megabase-sized and well digestible by restriction endonucleases. The method is highly efficient as microgram amounts of DNA can be obtained from only several milligrams of plant tissue. Handling negligible amounts of plant material reduces the consumption of chemicals. Furthermore, the use of root tips makes it possible to obtain high-quality DNA even from plant species with leaves that are rigid or rich in secondary metabolites such as polyphenols. It is expected that preparation of HMW DNA from root tip nuclei will facilitate long-range mapping and construction of large-insert DNA libraries also in these species. Successful isolation of HMW DNA from flow-sorted chromosomes opens a way for construction of chromosome-specific large-insert libraries in plants. |
Differential Expression of Peroxidase Isoenzymes in Soybean Roots Treated with the BenzothiadiazoleL.V. Hoffmann, M.T.V. Carvalho, E.J.B. Nogueira CardosoBiologia plantarum 46:451-453, 2003 | DOI: 10.1023/A:1024354909055 The protection compound benzo-(1,2,3)-thiadiazole-7-carbothioic acid S-methyl ester (BTH) was applied to soybean roots or leaves in a dose of 20 cm3 of a solution containing 25 μg g-1 of the active ingredient. Electrophoretic profiles of chitinase and superoxide dismutase were not altered by the product. Increased activity of two root anionic peroxidases and three differential isoforms of these enzymes were observed in plants with roots treated by BTH, which can be used as biochemical markers of the BTH effect. |
Sopory, S.K., Oelmüller, R., Maheshwari, S.C. (ed.): Signal Transduction in Plants. Current AdvancesJ. MartinecBiologia plantarum 46:534, 2003 | DOI: 10.1023/A:1024859410661 |
The Effects of Electric Current on Flowering of Grafted Scions of Non-Vernalized Winter RapeM. Filek, J. Biesaga-Koścelniak, I. Marcińska, J. Krekule, I. Macháčková, F. DubertBiologia plantarum 46:625-628, 2003 | DOI: 10.1023/A:1024892317930 Non-vernalized scions were grafted onto vernalized stocks in winter rape (Brassica napus L. var. oleifera, cv. Górczański). The grafted plants were subjected to electric current (30 V for 30 s or 6 V for 24 h) and the percentage of flowering scions was recorded. The negative polarity with cathode (-) attached to the scion and anode (+) left close to the roots inhibited greatly the percentage of flowering. The reverse polarity enhanced flowering markedly under short days and only slightly promoted flowering under long days. Attachment of electrodes without passing a current had no effect on flowering. |


