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Direct somatic embryogenesis from leaves, cotyledons and hypocotyls of Hippophae rhamnoidesC. Q. Liu, X. L. Xia, W. L. Yin, J. H. Zhou, H. R. TangBiologia plantarum 51:635-640, 2007 | DOI: 10.1007/s10535-007-0135-4 Plant regeneration via direct somatic embryogenesis from cotyledons, hypocotyls and leaves in seabuckthorn (Hippophae rhamnoides L.) was achieved. The influences of basal media, carbon sources, plant growth regulators (PGRs) with different concentrations and combinations on embryogenesis capacity of explants were studied. The highest frequency of somatic embryos production and germination was obtained on Schenk and Hildebrandt medium (SH) supplemented with 1.0 mg dm-3 kinetin and 0.2, 0.5 mg dm-3 indole-3-acetic acid. Granulated sugar was the optimal carbon source. The embryo-derived plantlets with well-developed roots and shoots were transferred successfully to the greenhouse with a maximum survival rate of 55 %. Histological observation revealed that the somatic embryos were similar to those of zygotic embryos. |
Chlorophyll fluorescence parameters of three Mediterranean shrubs in a summer-autumn period in central PortugalJ. Marques da SilvaBiologia plantarum 51:741-745, 2007 | DOI: 10.1007/s10535-007-0151-4 The photosynthetic performance of Cistus crispus, Centaurea africana and Thymus villosus, three shrubs of the Mediterranean-type maquis vegetation of Central Portugal, were studied between July and December 2003 by means of in vivo chlorophyll a fluorescence measurements. In C. africana total leaf decay occurred between August and October, in T. villosus no clear pattern of variation of the basal fluorescence (Fo) was observed, and in C. crispus an increase of this parameter was observed in late autumn. In all species, the limitation to photosynthesis by photoinhibition and the contribution of non-reversible processes to total photoinhibition were more pronounced in the summer than in the autumn. However, a pronounced decrease of the effective quantum yield of photosystem 2 (ΦPS2) was found in late autumn, probably due to a decrease of the carboxylation efficiency of the Calvin-Benson cycle, which was also supported by a parallel decrease of the photochemical quenching coefficient (qP). |
Superoxide dismutase activity in C3 and C3/CAM intermediate species of ClusiaZ. Miszalski, A. Kornas, K. Gawronska, I. ¦lesak, E. Niewiadomska, J. Kruk, A. L. Christian, E. Fischer-Schliebs, R. Krisch, U. LüttgeBiologia plantarum 51:86-92, 2007 | DOI: 10.1007/s10535-007-0018-8 The C3-CAM intermediate Clusia minor L. and the C3 obligate Clusia multiflora H.B.K. plants were exposed for 7 d to a combination of drought stress and high irradiance of about 1200 µmol m-2 s-1 for 12 h per day. In both species under these conditions a strong decrease in stomatal conductance was observed at dawn and dusk. Changes in stomatal behaviour of C. minor were accompanied by only a low nocturnal accumulation of malate and citrate. Thus, in C. minor drought stress applied in combination with high irradiance limited CAM expression, and possibly this is the main reason why C. minor prefers semi-shaded sites in the field. The mitochondrial MnSOD, in both well watered and stressed plants of two species showed strong diurnal oscillations with maximum activity at dusk. These oscillations can be explained by the engagement of mitochondria in dissipation of an excess of reducing equivalents. In plants which are able to carry out CAM metabolism tricarboxylic acid cycle is expected to be down regulated in the dark period to prevent breakdown of the entire malate and citrate. |
Agar/galactomannan gels applied to shoot regeneration from tobacco leavesN. Lucyszyn, M. Quoirin, M. M. Homma, M.-R. SierakowskiBiologia plantarum 51:173-176, 2007 | DOI: 10.1007/s10535-007-0034-8 This study concerns the efficacy of partial agar substitution by galactomannans as support in plant regeneration media for Nicotiana tabacum. The production of multiple shoots from leaf-derived callus and their rooting were evaluated. The galactomannans applied were obtained from Cassia fastuosa (cassia) and Cyamopsis tetragonolobus (guar gum - a commercial galactomannan) seeds. The results obtained on media solidified with mixtures of agar/galactomannan (3 g dm-3 each) gels were compared with those on media gelled with a standard concentration of agar (6 g dm-3). The in vitro performance allowed to conclude that the use of galactomannans raised the number of shoots and improved their quality. Furthermore, the length of roots and the size of leaves were significantly higher in the media solidified with agar/guar galactomannan mixtures. |
Resistance of transgenic papaya plants to Papaya ringspot virusS. Kertbundit, N. Pongtanom, P. Ruanjan, D. Chantasingh, A. Tanwanchai, S. Panyim, M. JuříčekBiologia plantarum 51:333-339, 2007 The coat protein gene isolated from Papaya ringspot virus, Thai isolate, was used to generate transgenic papayas. A binary vector containing the coat protein gene under the control of a 35S promoter, was constructed and transformed into somatic embryos of papaya cultivar Khak Dum by microprojectile bombardment. Eight transgenic lines were identified from 1980 bombarded calli of papaya somatic embryos under kanamycin selection. Integration of the transferred genes into kanamycin resistant papaya calli was verified by PCR amplification of the coat protein gene, GUS assays and Southern blot hybridization. Although the coat protein gene was detected in all transgenic lines, only line G2 was found to be highly resistant to virus. This resistant line showed high degree of rearrangement of the inserted coat protein expression cassette while the coat protein gene itself had a deletion of 166 bp on the 3' end of its sequence. Although the transcription of the coat protein gene was detected in all transgenic lines by RT-PCR, only two transgenic papayas expressed the intact coat protein. Moreover, in the resistant line G2 the amount of the truncated coat protein mRNA was significantly decreased. These results point to an RNA mediated mechanism of coat protein mediated resistance in papaya, probably based on post-transcriptional gene silencing. |
Hepatitis B surface antigen expression in NT-1 cells of tobacco using different expression cassettesG. B. Sunil Kumar, T. R. Ganapathi, L. Srinivas, C. J. Revathi, V. A. BapatBiologia plantarum 51:467-471, 2007 | DOI: 10.1007/s10535-007-0098-5 Nicotiana tabacum 1 (NT-1) cells were transformed with four different expression cassettes of hepatitis B surface antigen (HBsAg). The transformed nature of the cells was confirmed by polymerase chain reaction (PCR). The expression levels were assayed by enzyme linked immunosorbent assay (ELISA). The expressivities varied among the different cassettes and the maximum expression of 16.6 ng g-1(f.m.) of cells was noted in pEFEHER transformed cells. Salicylic acid (100 µM) treatment resulted in 1.8 fold increase of expression in pEFEHBS transformed cells. The effect of different concentrations of kanamycin and geneticin was studied on the growth of transformed cells and HBsAg expression. The cell growth was optimum at lower concentrations of the antibiotics, and the maximum expression was noted at 200 mg dm-3 of kanamycin. |
Changes in free polyamines and gene expression during peach flower developmentJ. H. Liu, T. MoriguchiBiologia plantarum 51:530-532, 2007 | DOI: 10.1007/s10535-007-0114-9 Free polyamine contents and expressions of five genes encoding for polyamine biosynthetic enzymes were investigated at four different stages during peach (Prunus persica L. Batsch cv. Akatsuki) flower development. Fresh mass of peach flowers increased, accompanied by reduction in contents of total polyamines and putrescine/spermidine ratio due to decrease in putrescine content. Spermidine, the largest fraction, and spermine, the least part, underwent minor change. Expressions of the five key genes involved in polyamine biosynthesis during flower development did not parallel the changes in free polyamines. |
Photosynthetic gene expression in black willow under various soil moisture regimesS. Li, S. Goodwin, S. R. PezeshkiBiologia plantarum 51:593-596, 2007 | DOI: 10.1007/s10535-007-0130-9 This study was the first attempt to extract RNA from black willow (Salix nigra Marshall) that contains numerous secondary products and to examine the photosynthetic gene expression of black willow under a wide range of soil moisture regimes. Black willow cuttings were grown under control, continuous flooding, periodic flooding and periodic drought for 42 d. A modified lithium chloride precipitation method was used for RNA extraction. Results of real-time polymerase chain reaction showed reduced gene expression of oxygen evolving complex, large subunit of ribulose-1,5-bisphosphate carboxylase/oxygenasse and ferredoxin on day 7 as well as the latter two on day 14 in response to flooding. Therefore, decreased expression of these three genes may have contributed to the observed reduced photosynthetic capacity in response to flooding. |
Moderate water stress affects tomato leaf water relations in dependence on the nitrogen supplyA. L. García, L. Marcelis, F. Garcia-Sanchez, N. Nicolas, V. MartínezBiologia plantarum 51:707-712, 2007 | DOI: 10.1007/s10535-007-0146-1 The responses of water relations, stomatal conductance (gs) and growth parameters of tomato (Lycopersicon esculentum Mill. cv. Royesta) plants to nitrogen fertilisation and drought were studied. The plants were subjected to a long-term, moderate and progressive water stress by adding 80 % of the water evapotranspirated by the plant the preceding day. Well-watered plants received 100 % of the water evapotranspirated. Two weeks before starting the drought period, the plants were fertilised with Hoagland's solution with 14, 60 and 110 mM NO3 - (N14, N60 and N110, respectively). Plants of the N110 treatment had the highest leaf area. However, gs was higher for N60 plants and lower for N110 plants. At the end of the drought period, N60 plants showed the lowest values of water potential (Ψw) and osmotic potential (Ψs), and the highest values of pressure potential (Ψp). N60 plants showed the highest Ψs at maximum Ψp and the highest bulk modulus of elasticity. |
Root morphology and cadmium uptake kinetics of the cadmium-sensitive rice mutantJ. Y. He, C. Zhu, Y. F. Ren, D. A. Jiang, Z. X. SunBiologia plantarum 51:791-794, 2007 | DOI: 10.1007/s10535-007-0162-1 To understand the physiological mechanism that confers Cd sensitivity, root morphology and Cd uptake kinetics of the Cd-sensitive mutant and wild type rice were investigated. The root length, root surface area, and root number of mutant rice decreased more significantly with increasing Cd concentration in growth media compared with the wild type rice. The uptake kinetics for 109Cd2+ in roots of both the mutant and wild type rice were characterized by a rapid linear phase during the first 6 h and a slower linear phase during the subsequent period. Concentration-dependent Cd2+ influx in both species could be characterized by the Michaelis-Menten equation, with similar apparent Km values for mutant and wild type rice (2.54 and 2.37 µM, respectively). However, the Vmax for Cd2+ influx in mutant root cells was nearly 2-fold higher than that for wild type rice, indicating that enhanced absorption into the root is one of the mechanisms involved in Cd sensitivity in mutant rice. |
Huang, B. (ed.): Plant-Environment Interactions. 3rd EditionJ. PospíąilováBiologia plantarum 51:68, 2007 | DOI: 10.1007/s10535-007-0013-0 |
Geophytoelectrical current in trees of a subtropical rainforest in MexicoL. Yáñez-Espinosa, T. Terrazas, L. López-Mata, L. FucikovskyBiologia plantarum 51:153-156, 2007 | DOI: 10.1007/s10535-007-0029-5 The geophytoelectrical current of three evergreen tropical tree species is studied as an indirect measure of their relative water content. Two intermediate shade-tolerant species (Aphananthe monoica and Pleuranthodendron lindenii), distributed in the middle and upper canopy strata, and an understory shade-tolerant species (Psychotria costivenia) were examined. The annual rhythm of geophytoelectrical currents per cm of diameter (DBH) is seasonal, with the highest occurrence in the winter and summer. There is a significant association between maximum temperature, moisture in the environment, and geophytoelectrical current per cm of DBH in the three species, as shown by multiple regression analysis. This finding suggests the existence of various geophytoelectrical current patterns which differs from that reported for temperate species. |
Effects of benzylaminopurine and irradiance on cytokinin contents, α-tubulin gene expression and cucumber cotyledon expansionY. L. Li, Q. H. MaBiologia plantarum 51:217-222, 2007 The fluctuation of endogenous cytokinins was determined in the excised cucumber (Cucumis sativa L.) cotyledons incubated with benzylaminopurine (BA) under irradiance or in darkness. The data indicated that light stimulated the cotyledon expansion compared with dark and BA further enhanced the expansion of cotyledons. However, only BA treatment markedly increased the contents of endogenous cytokinins and induced α-tubulin gene expression. Actinomycin D, a well-known inhibitor of gene transcription, strongly inhibited both light-and BA-induced cotyledon expansions and increase of endogenous cytokinin contents and α-tubulin gene expression. Colchicine, an antimicrotubular reagent, partially inhibited the cotyledon expansion without affecting the cytokinin contents. |
Organ-dependent responses of the african rice to short-term iron toxicity: Ferritin regulation and antioxidative responsesV. Majerus, P. Bertin, V. Swenden, A. Fortemps, S. Lobréaux, S. LuttsBiologia plantarum 51:303-312, 2007 Hydroponically grown African rice (Oryza glaberrima) was exposed for 72 h to a high Fe2+ concentration (500 mg dm-3) to identify the first steps of iron toxicity response in various organs. Iron accumulated in all plant parts analysed and had only a limited impact on absorption and translocation of other nutrients. The content of the iron-storage protein ferritin increased as a consequence of transcription stimulation or increase in mRNA stability and culminated after 48 h of treatment in laminae and to a lesser extent in sheaths but was not detected in roots. Although endogenous iron concentrations were similar in sheaths and laminae, superoxide dismutase activity was stimulated only in sheaths while ascorbate peroxidase activity increased mainly in laminae. It is concluded that both ferritin synthesis and antioxidative response may play a key role in the resistance of Oryza glaberrima to iron toxicity but that their relative importance are not the same in all organs. |
Schekman, R., Goldstein, L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Volume 22T. GichnerBiologia plantarum 51:366, 2007 |
Identification of two phenotypes of Arabidopsis thaliana under in vitro salt stress conditionsK. B. Ruiz Carrasco, R. Baroni Fornasiero, A. Tassoni, N. BagniBiologia plantarum 51:436-442, 2007 | DOI: 10.1007/s10535-007-0093-x This study describes two phenotypes of Arabidopsis thaliana (ecotype Columbia) developed in vitro under salt stress (75 mM NaCl). The phenotypes 01 and 02 appeared visibly distinguishable by rosette morphology and competence to produce flowers. Phenotype 01, sensible to salt stress, accumulated high quantities of Na+, showed a slight reduction in dry mass, and high protein and chlorophyll contents. Moreover, its anatomy exhibited some xeromorphic traits. Phenotype 02, clearly salt tolerant, showed a morphology similar to control plants, displaying typical phyllotactic rosette and flowering stalk production. Accumulation of Na+, protein and chlorophyll contents were close to control plants. Reversion experiments on NaCl free MS medium, showed a partially recovered phenotype 01. A threshold salt stress concentration that permits the simultaneous development of two phenotypes, was found. |
Histological analysis of somatic embryogenesis and adventitious shoot formation from root explants of Centaurium erythreae GillibA. Subotić, D. GrubiąićBiologia plantarum 51:514-516, 2007 | DOI: 10.1007/s10535-007-0109-6 Direct somatic embryogenesis and adventitious shoot formation were successfully achieved from root explants of Centaurium erythrea Gillib. cultured on Murashige and Skoog medium with half-strength macronutrients, full-strength micronutrients and vitamins, 3 % sucrose, 0.7 % agar, 100 mg dm-3 myo-inositol and without growth regulators. Histological studies revealed that somatic embryos were formed directly from epidermal cells and adventitious buds were developed from meristematic cells in root cortex tissues. Somatic embryos as well as adventitious shoots developed into whole plantlets. |
Silicon increases boron tolerance and reduces oxidative damage of wheat grown in soil with excess boronA. Gunes, A. Inal, E. G. Bagci, S. Coban, O. SahinBiologia plantarum 51:571-574, 2007 | DOI: 10.1007/s10535-007-0125-6 The effect of silicon on the growth, boron concentrations, malondialdehyde (MDA) content, lipoxygenase (LOX) activity, proline (PRO) and H2O2 accumulation, and the activities of major antioxidant enzymes [superoxide dismutase (SOD), catalase (CAT), and ascorbate peroxidase (APX)] and non-enzymatic antioxidants (AA) of wheat grown in soil originally with toxic B concentrations were investigated. Applied of 5.0 and 10.0 mM Si to the B toxic soil significantly increased Si concentration of the wheat and counteracted the deleterious effects of B on shoot growth. The contents of PRO, H2O2, MDA, and LOX activity of wheat grown in B toxic soil were significantly reduced by Si treatments. Compared with control plants, the activities of SOD, CAT, APX and content of AA were decreased by applied Si. Based on the present work, it can be concluded that Si alleviates B toxicity of wheat by preventing oxidative membrane damage and also translocation of B from root to shoot and/or soil to plant. |
Functional expression and purification of cytokinin dehydrogenase from Arabidopsis thaliana (AtCKX2) in Saccharomyces cerevisiaeJ. Frébortová, P. Galuszka, T. Werner, T. Schmülling, I. FrébortBiologia plantarum 51:673-682, 2007 | DOI: 10.1007/s10535-007-0141-6 Cytokinin dehydrogenase (CKX) is responsible for regulating the endogenous cytokinin content by oxidative removal of the side chain and seven distinct genes, AtCKX1 to AtCKX7, code for the enzyme in Arabidopsis thaliana. The recombinant enzyme AtCKX2 was produced in Saccharomyces cerevisiae after expressing the corresponding gene from a plasmid (pDR197) or following chromosomal integration, under either the constitutive promoter PMA1 or the inducible promoter GAL1. The recombinant protein was purified from yeast culture media using a sequence of chromatographic steps. The purified enzyme had a molecular mass of 61 kDa and a typical flavoprotein spectrum. The specific activity of the enzyme was 87.8 µkat g-1, with isopentenyladenine as a substrate and 2,3-dimethoxy-5-methyl-p-benzoquinone as an electron acceptor. The pH optimum lay between 7.0 and 8.0, depending on the electron acceptor used. AtCKX2 reacts both with isoprenoid and aromatic cytokinins, the activity with isoprenoid cytokinins being two to three orders of magnitude higher. AtCKX2 prefers p-quinones and the synthetic dye 2,6-dichlorophenol indophenol as electron acceptors, although low reactivity with oxygen can also be observed. This study presents the first purification and characterization of the enzyme from Arabidopsis thaliana. |
In vitro propagation of Ophiorrhiza prostrata through somatic embryogenesisK. P. Martin, A. Shahanaz Beegum, C.-L. Zhang, A. Slater, P. V. MadhusoodananBiologia plantarum 51:769-772, 2007 | DOI: 10.1007/s10535-007-0157-y In vitro propagation of an anticancerous drug synthesizing plant, Ophiorrhiza prostrata D. Don, was established through indirect somatic embryogenesis. Friable embryogenic calluses were initiated from O. prostrata leaf and internode explants on Murashige and Skoog (MS) media supplemented with 2,4-dichlorophenoxyacetic acid (2,4-D) either alone or in combination with N6-benzyladenine (BA) or kinetin (KIN). Somatic embryos were developed after subculture of the friable calluses onto half strength MS media containing 0.45 or 2.26 µM 2,4-D alone or in combination with BA or KIN. Medium supplemented with 2.26 µM 2,4-D and 2.22 µM BA was optimal, supporting the production of a mean of 5.8 globular embryos. Subculture of globular embryo-bearing calluses on half strength MS medium without growth regulators produced the highest embryo frequency, and the majority of them developing to early torpedo stage. Somatic embryos underwent maturation and converted to plantlets at high frequency (90 %) on half strength MS medium supplemented with 0.44 µM BA. Somatic embryo-derived plantlets with well-developed roots were established in field conditions with a 90 % survival rate. |
Production of asiaticoside and madecassoside in Centella asiatica in vitro and in vivoZ. A. Aziz, M. R. Davey, J. B. Power, P. Anthony, R. M. Smith, K. C. LoweBiologia plantarum 51:34-42, 2007 | DOI: 10.1007/s10535-007-0008-x The localization was determined of the triterpenoids, asiaticoside and madecassoside, in different organs of glasshouse-grown plants and cultured material, including transformed roots, of two phenotypes of Centella asiatica (L.) Urban of Malaysian origin. Methanolic extracts of asiaticoside and madecassoside were prepared for gradient HPLC analysis. The two phenotypes of C. asiatica exhibited differences in terpenoid content that were tissue specific and varied between glasshouse-grown plants and tissue culture-derived material. Terpenoid content was highest in leaves, with asiaticoside (0.79 ± 0.03 and 1.15 ± 0.10 % of dry mass) and madecassoside [0.97 ± 0.06 and 1.65 ± 0.01 %(d.m.)] in the fringed (F) and smooth leaf (S) phenotypes, respectively. Roots of the F-phenotype contained the lowest content of asiaticoside [0.12 ± 0.01 %(d.m.)], whereas petioles of S-phenotype plants contained the lowest content of asiaticoside [0.16 ± 0.01 %(d.m.)] and madecassoside [0.18 ± 0.14 %(d.m.)]. Transformed roots were induced using Agrobacterium rhizogens and their growth was maximal on Murashige and Skoog basal medium supplemented with 60 g dm-3 sucrose. However, asiaticoside and madecassoside were undetectable in transformed roots and undifferentiated callus. |
Lead-induced oxidative stress and metabolic alterations in Cassia angustifolia Vahl.M. I. Qureshi, M. Z. Abdin, S. Qadir, M. IqbalBiologia plantarum 51:121-128, 2007 | DOI: 10.1007/s10535-007-0024-x Forty-five-days old plants of Indian senna (Cassia angustifolia Vahl.) were subjected to 0-500 µM lead acetate (Pb-Ac) in pot culture. Changes in contents of thiobarbituric acid reactive substances (TBARS), ascorbate, glutathione, proline, sennosides (a+b), and activities of superoxide dismutase (SOD), ascorbate peroxidase (APX), glutathione reductase (GR), and catalase (CAT) were studied at pre-flowering (60 d after sawing, DAS), flowering (90 DAS) and post-flowering (120 DAS) stages of plant development. Compared with the controls, the Pb-Ac treated plants showed an increase in contents of TBARS, dehydroascorbate, oxidized and total glutathione at all stages of growth. However, sennoside yield and contents of ascorbate and reduced form of glutathione declined. Proline content increased at 60 DAS but declined thereafter. Activities of SOD, APX, GR and CAT were markedly increased. Sennoside content was higher at 60 and 90 DAS but lower at 120 DAS, compared to the control. |
Developmental stage as a possible factor affecting cytokinin content and cytokinin dehydrogenase activity in Pinus sylvestrisA. E. Valdés, P. Galuszka, B. Fernández, M. L. Centeno, I. FrébortBiologia plantarum 51:193-197, 2007 | DOI: 10.1007/s10535-007-0039-3 In the present study cytokinin dehydrogenase (CKX) activity was for the first time found in a conifer species, Pinus sylvestris. The activities were correlated with the endogenous cytokinin contents. Several enzyme substrates and two different electron acceptors were used to search for the enzyme activity in the extract from seeds, seedlings and plantlets. The highest specific activity was found in one-year-old plantlets with isopentenyladenine as the substrate and 2,6-dichlorophenolindophenol as the electron acceptor, at pH 8. An enhancement in the CKX specific activity corresponded to increasing contents of cytokinins, mainly isopentenyladenine and isopentenyladenosine, indicating that the enzyme activity is affected by the endogenous supply of cytokinins. CKX affinity for the ribosylated form of isopentenyladenine was dependent on the developmental stage, being higher in seeds than in seedlings, and not detectable in plantlets. The results are indicative of the presence of different isoenzymes throughout the development. |
Improvement of protein quality in transgenic soybean plantsH. A. El-Shemy, M. M. Khalafalla, K. Fujita, M. IshimotoBiologia plantarum 51:277-284, 2007 Glycinin is one of the abundant storage proteins in soybean seeds. A modified Gy1 (A1aB1b) proglycinin gene with a synthetic DNA encoding four continuous methionines (V3-1) was connected between the hpt gene and the modified green fluorescent protein sGFP(S65T) gene, and a resultant plasmid was introduced into soybean by particle bombardment in order to improve nutritional value of its seeds. After the selection with hygromycin, the efficiency of gene introduction was evaluated. More than 60 % of the regenerated plants tolerant to hygromycin yielded the hpt and V3-1 fragment by polymerase chain reaction (PCR) analysis, and the expression of sGFP was detected in about 50 % of putative transgenic soybeans. Southern hybridization confirmed the presence of transgenes in T0 plants and the transgenic soybeans hybridized with the hpt and V3-1 genes were analyzed showed different banding patterns. Most of the transgenic plants were growing, flowering normally and produced seeds. Analysis of seed obtained from transgenic soybean plants expressing hpt and V3-1 genes showed higher accumulation of glycinin compared with non-transgenic plants. In addition, protein expression in transgenic soybean plants was observed by using 2D-electrophoresis. |
Proline accumulation induced by excess nickel in detached rice leavesY. C. Lin, C. H. KaoBiologia plantarum 51:351-354, 2007 The regulation of proline accumulation in detached rice leaves exposed to excess NiSO4 was investigated. NiSO4 treatment increased proline and Ni contents but had no effect on relative water content, indicating that proline accumulation in Ni-exposed detached rice leaves was due to Ni uptake per se, rather than to water stress. Proline accumulation caused by NiSO4 was related to protein hydrolysis, a decrease in proline dehydrogenase activity, and a decrease in proline utilization. It seems that an increase in the content of ammonia and an increase in the activities of Δ1-pyrroline-5-carboxylate reductase and ornithine-δ-aminotransferase play minor if any role in Ni-induced proline accumulation in detached rice leaves. |
Leaf senescence and activities of the antioxidant enzymesD. Procházková, N. WilhelmováBiologia plantarum 51:401-406, 2007 | DOI: 10.1007/s10535-007-0088-7 Senescence is a genetically regulated process that involves decomposition of cellular structures and distribution of the products of this degradation to other plant parts. Reactions involving reactive oxygen species are the intrinsic features of these processes and their role in senescence is suggested. The malfunction of protection against destruction induced by reactive oxygen species could be the starting point of senescence. This article reviews biochemical changes during senescence in relation to reactive oxygen species and changes in antioxidant protection. |
Protective effect of ascorbic acid and glutathione on AlCl3-inhibited growth of rice rootsJ.-W. Wang, C. H. KaoBiologia plantarum 51:493-500, 2007 | DOI: 10.1007/s10535-007-0104-y The effect of AlCl3 on the antioxidant system of rice roots and the role of applied antioxidants ascorbic acid (AsA) and glutathione (GSH) in AlCl3-inhibited growth of rice roots were investigated. AlCl3 treatment resulted in a rapid inhibition of root growth but had no effect on lipid peroxidation and antioxidative enzyme activities in rice roots. AlCl3 treatment resulted in lower content of H2O2, AsA, and GSH than in controls. Exogenous AsA or GSH counteracted growth inhibition of rice roots induced by AlCl3. AlCl3 treatment increased syringaldazine peroxidase (SPOX) activities and lignin content in rice roots. Exogenous AsA or GSH prevented the decrease in H2O2 content and the increase in SPOX activities and lignin content in rice roots caused by AlCl3. Results suggest that lignification induced by low AsA or GSH content may explain the mechanism of Al-inhibited growth of rice roots. |
Van Alfen, N.K., Bruening, G., Dawson, W.O. (ed.): Annual Review of Phytopathology. Vol. 44M. ©indelářováBiologia plantarum 51:555, 2007 | DOI: 10.1007/s10535-007-0120-y |


