biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1501 to 1530 of 6239:

The effect of elevated CO2 concentration on leaf chlorophyll and nitrogen contents in rice during post-flowering phases

M. Moynul Haque, A. Hamid, M. Khanam, D. K. Biswas, M. A. Karim, Q. A. Khaliq, M. A. Hossain, D. C. Uprety

Biologia plantarum 50:69-73, 2006 | DOI: 10.1007/s10535-005-0076-8

The effect of elevated CO2 concentration (CE) on leaf chlorophyll (Chl) and nitrogen (N) contents and photosynthetic rate (PN) was evaluated during the post-flowering stages of rice grown at CE (570 ± 50 µmol mol-1) in open top chamber (OTC), at ambient CO2 concentration (∼ 365 µmol mol-1) in OTC and at open field. Thirty-five day old seedlings were transplanted in OTCs or in field and allowed to grow till maturity. Chl and N contents were highest at the time of flowering and thereafter it started to decline. The rate of decline in Chl and N contents was faster in plants grown under CE mostly in later part of growth. Irrespective of treatment difference, flag leaf contained the highest amount of Chl and N than penultimate and third leaf. The higher PN was observed in leaves under CE than in the leaves in other two growing conditions. Considering growth stage, PN was the highest at flowering which reduced at the later part of growth due to degradation of Chl and N content of the leaf. Under CE it was 40.02 µmol m-2 s-1 at flowering and it reduced to only 14.77 µmol m-2 s-1 at maturity stage. The beneficial effect of CE in increasing leaf PN may be maintained by applying extra dose of nitrogen at the later stages of plant growth.

Peroxidase, catalase, amine oxidase and acid phosphatase activities in Pisum sativum during infection with Fusarium oxysporum and F. solani

L. Luhová, A. Lebeda, E. Kutrová, D. Hedererová, P. Peč

Biologia plantarum 50:675-682, 2006 | DOI: 10.1007/s10535-006-0105-2

Two genotypes (cv. Smaragd and line DP1059) of Pisum sativum with different susceptibility to Fusarium oxysporum and F. solani and influence of pathogenesis on enzyme activities were studied. The increase of activity of studied enzymes was mostly observed in both roots and shoots during pathogenesis. Only activity of acid phosphatase decreased in the root and increased in shoots. The correlation between enzyme activity change and susceptibility of pea cultivars to F. oxysporum or F. solani was observed.

Huang, B. (ed.): Plant-Environment Interactions. 3rd Edition

J. Pospíąilová

Biologia plantarum 51:68, 2007 | DOI: 10.1007/s10535-007-0013-0

Proline accumulation induced by excess nickel in detached rice leaves

Y. C. Lin, C. H. Kao

Biologia 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 enzymes

D. Procházková, N. Wilhelmová

Biologia 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 roots

J.-W. Wang, C. H. Kao

Biologia 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. 44

M. ©indelářová

Biologia plantarum 51:555, 2007 | DOI: 10.1007/s10535-007-0120-y

Somatic embryogenesis and plant regeneration in Catharanthus roseus

A. Junaid, A. Mujib, M. A. Bhat, M. P. Sharma, J. ©amaj

Biologia plantarum 51:641-646, 2007 | DOI: 10.1007/s10535-007-0136-3

Embryogenic callus in Catharanthus roseus was initiated from hypocotyl on Murashige and Skoog's (MS) medium supplemented with 1.0-2.0 mg dm-3 of 2,4-dichlorophenoxyacetic acid (2,4-D) or chlorophenoxyacetic acid (CPA). Calli from other sources were non-embryogenic. Numerous somatic embryos were induced from primary callus on MS medium suplemented with naphthalene acetic acid (NAA) within two weeks of culture. Embryo proliferation was much faster on medium supplemented with 6-benzylaminopurine (BAP). After transfer to medium with gibberellic acid (GA3, 1.0 mg dm- 3) mature green embryos were developed and germinated well into plantlets on MS liquid medium supplemented with 0.5 mg dm-3 BAP. Later, embryos with cotyledonary leaves were subjected to different auxins treatments for the development of roots. Before transfer ex vitro, plantlets were cultivated on half strength MS medium containing 3 % sucrose and 0.5 mg dm-3 BAP for additional 2 weeks. Additionally, the effect of liquid medium has been evaluated at different morphogenetic stages.

Transgenic tobacco plants containing Bt and GNA genes

H. Y. Zhang, X. Z. Liu, L. Wei, L. Y. Zhou, Y. M. Yang

Biologia plantarum 51:746-748, 2007 | DOI: 10.1007/s10535-007-0152-3

A new plant expression vector (pBSbtCry1Ac-GNA) containing two insect resistant genes, a synthetic chimeric gene SbtCry1Ac encoding the insecticidal protein CrylAc and a gene GNA encoding snowdrop lectin (Galanthus nivalis agglutinin) was constructed. Transgenic tobacco plants containing these two genes were obtained through Agrobacterium-mediated transformation of tobacco leaf discs. Results from PCR detection and genomic DNA Southern blot analysis indicated that both SbtCrylAc gene and GNA gene were integrated into the genome of these plants. Results of Western blot analysis indicated that these two proteins were expressed in the analyzed plants. Bioassays of Myzus persicae and Helicoverpa assulta on detached leaves of transformed tobacco plants were carried out. The average aphid inhibition rate of these plants tested at 12 d post-infestation was 71.9 %. The average H. assulta mortality of these plants tested at 6 d post-infestation was up to 89.8 %. The kanamycin resistance of the T1 progeny of these transgenic plants was analyzed and a typical 3:1 segregation was observed.

Extent of ipt gene expression and resulting amount of cytokinins affect activities of carboxylation enzymes in transgenic plants

J. Kveton

Biologia plantarum 50:21-30, 2006 | DOI: 10.1007/s10535-005-0070-1

Three types of transgenic plants of Solanum tuberosum cvs. Kamyk and Oreb, and Nicotiana tabacum cvs. Maryland Mammoth and Trapezond were selected according to intensity of introduced ipt gene expression and resulting amount of synthesised cytokinins (CKs). In comparison with controls, original transgenic regenerants grown in vitro showed a massive increase of CK contents, in tobacco by 379 % and in potato by 159 % (MAS). Potato grown in soil from tubers of transgenic plants demonstrated a moderate increase (44 %) of CK contents (MOD). Transgenic tobacco grown from seeds in vitro did not show any significant change in CK contents (NOT). Initial (RuBPCi and RuBPOi) and total (RuBPCt) activities of ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBPCO), and the activity of phosphoenolpyruvate carboxylase (PEPC) were not significantly affected by the transformation in the NOT plants. In the MOD plants, the RuBPCO activities were stimulated by up to 34 % whereas the PEPC activity was decreased by 17 %. On the other hand, all the measured enzyme activities were 32 - 91 % lower in the MAS. Leaf area, fresh and dry masses, and chlorophyll and soluble protein contents also went down with increasing CK amounts in the transformants. Dependence of RuBPCi/RuBPOi and RuBPCt/PEPC ratios on the relative CK amounts in transgenic plants revealed that the individual enzyme activities were not affected uniformly. Endogenous CK contents in the MAS thus apparently exceeded an optimum needed for positive effects on many physiological traits and became a stress factor for such plants.

Comparison of induction frequency, maturation capacity and germination of Abies numidica during secondary somatic embryogenesis

B. Vooková, A. Kormu»ák

Biologia plantarum 50:785-788, 2006 | DOI: 10.1007/s10535-006-0132-z

Efficiency of the method for improving repetitive somatic embryogenesis and plant recovery of Algerian fir (Abies numidica De Lann.) was investigated by evaluating of induction frequency, maturation capacity and germination. Individual zygotic embryos differed only slightly in induction frequencies (6.8 %) from somatic embryos of the first (5.7 %) and second cycle (5.5-9.0 %). The yield of mature embryos differed significantly among the cell lines of the same cycle and among cell lines of the different cycles. Percentage of abnormalities was lowest in the first cycle of somatic embryos, whereas the second and the third cycles of somatic embryos were branded by a higher frequency of abnormalities. The differences in germination of well developed somatic embryos depended on cell lines rather than on cycle of somatic embryos.

Production of asiaticoside and madecassoside in Centella asiatica in vitro and in vivo

Z. A. Aziz, M. R. Davey, J. B. Power, P. Anthony, R. M. Smith, K. C. Lowe

Biologia 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. Iqbal

Biologia 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.

Effect of NaCl and CaCl2 on growth and contents of minerals, chlorophyll, proline and sugars in the apple rootstock M 4 cultured in vitro

T. E. Sotiropoulos

Biologia plantarum 51:177-180, 2007 | DOI: 10.1007/s10535-007-0035-7

The apple (Malus domestica Borkh) rootstock M 4 shoots were grown in vitro for 4 weeks on Murashige and Skoog (MS) medium containing three NaCl concentrations (35, 100 and 200 mM) in combination with two CaCl2 concentrations (5 and 10 mM). Inclusion of 10 mM CaCl2 in the medium, in the presence of 35 mM NaCl, significantly increased the number of shoots and the fresh mass compared to 5 mM CaCl2. The number of shoots, length of shoots, and the fresh mass of cultures were very low in the presence of 100 and 200 mM NaCl, independently of CaCl2 concentration of the medium. By increasing NaCl and CaCl2 concentrations in the culture medium, contents of N, Na, Cl, proline and soluble sugars in plantlets increased, whereas K, Mg, B, Zn and chlorophyll content decreased in comparison to the control.

Identification and sequence analysis of cDNA fragments relative to ovary development of Cymbidium hybridium after pollination

X. Q. Chen, C. G. Wang, Y. Zhang, W. Q. Song, R. Y. Chen

Biologia plantarum 51:249-256, 2007

In this study, seven cDNA fragments of genes, differentially expressed in ovaries after pollination in Cymbidium hybridium, were identified and characterized by mRNA differential display reverse transcription polymerase chain reaction (DDRT-PCR). Four (CDD-313, CDD-272, CDD-265, CDD-243) among these seven cDNA fragments showed no significant homology with ESTs or genes in the databases of NCBI; another three (CDD-193, CDD-218, CDD-470) showed significant homologies with sequences encoding components of an ABC-type transporter, a GTPase and 40S ribosomal S3 proteins (RPS3), respectively. The differential expression patterns of them were confirmed by reverse Northern dot blot analysis. More interestingly, CDD-470 appeared to be present and highly expressed in the pollinated ovaries and encoded a new factor of RPS3 participating in cell growth and proliferation. We deduced that this 40s ribosomal S3 like protein was involved in ovary development of orchids.

Loyola-Vargas, V.M., Vázquez-Flota, F.: Plant Cell Culture Protocols (Second Edition)

R. Podlipná

Biologia plantarum 51:339, 2007

Effect of osmotic stress and sodium nitroprusside pretreatment on proline metabolism of wheat seedlings

Y. Lei, C. Yin, J. Ren, C. Li

Biologia plantarum 51:386-390, 2007

Effect of osmotic stress and sodium nitroprusside (SNP, NO donor) pretreatment on growth and proline metabolism of wheat seedlings was investigated. Polyethylene glycol 6000 treatment for 2, 4 and 6 d could be termed as mild, moderate and severe stress, respectively, according to decrease in the relative water content. Severe osmotic stress significantly decreased the growth and photochemical efficiency, and increased proline content due to activation of its synthesis. 0.2 mM SNP pretreatment enhanced growth of wheat seedlings, increased variable to maximum fluorescence ratio (Fv/Fm) and fluorescence yield, while decreased proline content. However, 2 mM SNP retarded the seedlings growth and chlorophyll a fluorescence, and increased proline accumulation. Our results showed that NO might be involved in the regulation of osmotic stress in a concentration-dependent manner.

Cell death induced by sodium nitroprusside and hydrogen peroxide in tobacco BY-2 cell suspension

J. Víteček, A. Wünschová, J. Petřek, V. Adam, R. Kizek, L. Havel

Biologia plantarum 51:472-479, 2007 | DOI: 10.1007/s10535-007-0099-4

The interplay between nitric oxide (NO) and reactive oxygen species can lead to an induction of cell death in plants. The aim of our work was to find out if cyanide released from sodium nitroprusside (SNP; a donor of NO) could be involved in the cell death induction, which is triggered by SNP and H2O2. Cell suspension of Nicotiana tabacum L. (line BY-2) was treated with 0.5 mM SNP, 0.5 mM potassium ferricyanide (PFC; analogue of sodium nitroprusside which can not release NO) and/or by 0.5 mM glucose with 0.5 U cm-3 glucose oxidase (GGO; a donor system of H2O2). The cell death was induced only by combination of SNP and GGO. Thus cyanide released was not involved in the induction of cell death. However, SNP showed toxic effect because of decrease in activities of intracellular oxidoreductases and esterases. The cell death caused by SNP and GGO occurred within 12 h. During cell death either length or width of the cell increased. Central vacuole was formed in 20 to 40 % of cells. Most of the dead cells showed a condensed cytoplasm. Two hallmarks of programmed cell death (PCD), chromatin condensation and blebbing of nuclear periphery, were observed. However, oligonucleosomal fragmentation of DNA, another hallmark of PCD, was not detected.

Plant regeneration from Gossypium davidsonii protoplasts via somatic embryogenesis

X. Yang, X. Guo, X. Zhang, Y. Nie, S. Jin

Biologia plantarum 51:533-537, 2007 | DOI: 10.1007/s10535-007-0115-8

Protoplasts isolated from wild cotton Gossypium davidsonii were cultured in KM8P medium supplemented with different phytohormones. The most effective combination was 0.45 µM 2,4-dichlorophenoxyacetic acid, 2.68 µM α-naphthaleneacetic acid and 0.93 µM kinetin and the division percentage at the 8th day was 30.78 ± 3.04 %. The density of protoplasts at 2-10 × 105 cm-3 was suitable for protoplast division and calli formation, with a division percentage of 32.21 ± 3.64 % and a plating efficiency of 9.12 ± 2.61 % at the 40th day. The optimal osmotic potential was achieved using 0.5 M glucose or 0.1 M glucose plus 0.5 M mannitol. Protoplasts were cultured in three ways, a double-layer culture system, with liquid over solid medium was proved to be the best way. Embryo induction was further increased by addition of 0.14 µM gibberellic acid.

Wojtkowski, P.A.: Introduction to Agroecology: Principles and Practices

J. Pulkrábek, I. Capouchová

Biologia plantarum 51:596, 2007 | DOI: 10.1007/s10535-007-0131-8

Effect of cadmium on growth, proton extrusion and membrane potential in maize coleoptile segments

W. Karcz, R. Kurtyka

Biologia plantarum 51:713-719, 2007 | DOI: 10.1007/s10535-007-0147-0

Cd accumulation, its effects on elongation growth of maize coleoptile segments, pH changes of their incubation medium and the membrane potential of parenchymal cells were studied. The Cd content increased significantly with exposure to increasing cadmium concentrations. Coleoptile segments accumulated the metal more efficiently in the range 10-100 µM Cd, than in the range 100-1000 µM Cd. Cd at concentrations higher than 1.0 µM produced a significant inhibition of both growth and proton extrusion. 100 µM Cd caused depolarization of the plasma membrane (PM) potential in parenchymal cells. The simultaneous treatment of maize coleoptile segments by indole-3-acetic acid (IAA) and Cd, counteracted the toxic effect of Cd on growth. Moreover, our data also showed that 100 µM Cd suppressed the characteristic IAA-induced hyperpolarization of the membrane potential, causing membrane depolarization. These results indicate that the toxic effect of Cd on growth of maize coleoptile segments might be, at least in part, caused via reduced PM H+-ATPase activity.

In vitro minimum growth for conservation of Drosophyllum lusitanicum

S. Gonçalves, A. Romano

Biologia plantarum 51:795-798, 2007 | DOI: 10.1007/s10535-007-0163-0

The present paper reports a protocol for minimum growth conservation of Drosophyllum lusitanicum (L.) Link. in vitro. Double-node cuttings were maintained for 4, 8 and 12 months at 5 or 25 °C in the dark. The effects of sucrose either alone at 5, 20, 30, 40 and 60 g dm-3 or at 20, 40 and 60 g dm-3 in combination with 20 g dm-3 mannitol, on survival and post-storage shoot multiplication efficiency were investigated. The cultures could effectively be conserved under minimum growth at 5 °C for 8 months on Murashige and Skoog's medium supplemented with 60 g dm-3 sucrose, 20 g dm-3 mannitol and 0.91 µM zeatin. Following extended conservation, the cultures could be successfully regenerated into new shoots, and they were morphologically similar to those of non-stored controls.

Stomatal characteristics during micropropagation of Wrightia tomentosa

P. Joshi, N. Joshi, S. D. Purohit

Biologia plantarum 50:275-278, 2006 | DOI: 10.1007/s10535-006-0019-z

A deviation from usually found characteristics of stomata in Wrightia tomentosa was noted during in vitro propagation. Increase in stomatal frequency in leaves of plants grown in vitro was observed with 29.4 % malformed stomata. The stomata were spherical, wide open, did not close in detached leaves even after 3 h. The leaves exhibited 93.4 % total water loss during 3-h period. Stomatal frequency, percentage of malformed stomata and rate of water loss declined in subsequent rooting phase. Nevertheless, for high survival rate plantlets were hardened under gradually decreasing air humidity either in partially opened glass bottles containing Soilrite™ moistened with 1/4 Murashige and Skoog nutrients or in pots covered with polyethylene bags. The stomatal characteristics of hardened plants were comparable to seedlings. Survival rate was more than 95 %.

Influence of CCC, putrescine and gellam gum concentration on gynogenic embryo induction in Allium cepa

M. Ponce, L. Martinez, C. Galmarini

Biologia plantarum 50:425-428, 2006 | DOI: 10.1007/s10535-006-0061-x

The induction of haploid plants by in vitro gynogenesis is a promising practice in onion breeding. In order to increase the frequency of embryo regeneration and haploid plant production in Valcatorce INTA, Cobriza INTA and Navidena INTA cultivars, putrescine and CCC were used, either as a component of the culture media or by spraying or injecting them to the umbels. Additionally, two concentration of gellam gum were tested. A higher number of gynogenic embryos was achieved by using 7 g dm-3 gellam gum, and this number was not affected by the addition of putrescine to the media. CCC sprayed at the umbels significantly increased the gynogenic embryo rate, which was more than three times higher than the control. Cobriza INTA showed the highest induced embryo rate (4.76 %).

Micropropagation of Juniperus phoenicea from adult plant explants and analysis of ploidy stability using flow cytometry

J. Loureiro, A. Capelo, G. Brito, E. Rodriguez, S. Silva, G. Pinto, C. Santos

Biologia plantarum 51:7-14, 2007 | DOI: 10.1007/s10535-007-0003-2

We report here the successful micropropagation of adult Juniperus phoenicea L. with respective ploidy stability studies. Microcuttings with axillary buds were grown on five media supplemented with different growth regulator combinations. Best elongation rates were achieved on Driver and Kuniyuki (DKW) medium supplemented with kinetin alone or with naphthaleneacetic acid (NAA), while Rugini olive (OM) medium stimulated the development of new branches. Shoots growing on Murashige and Skoog (MS) medium browned and showed necrotic zones. Shoots of second to fourth subcultures usually had higher elongation rates than those of the first culture. For rooting assays, half strength DKW and OM media, different concentrations of growth regulators, auxin continuous exposure vs. dipping and the type of solid matrix were assessed. During rooting assays, two morphotypes were observed with one type having well developed internodes and the other showing hyperhydratation and no internode development. High rooting rates (40 %) were only obtained in the first morphotype shoots exposed for 5 min to 2.4 µM IBA and then transferred to OM medium without growth regulators. Plants were acclimatized in pots containing a mixture of peat and Perlite (3:2) in greenhouse with progressive reduction of relative humidity. A flow cytometric screening for major ploidy changes revealed no differences among the morphotypes and between them and the mother plant. Also the nuclear DNA content of this species was estimated for the first time using flow cytometry (2C = 24.71 pg).

Effect of seed soaking with thiols on the antioxidant enzymes and photosystem activities in wheat subjected to water stress

N. S. Nathawat, J. S. Nair, S. M. Kumawat, N. S. Yadava, G. Singh, N. K. Ramaswamy, M. P. Sahu, S. F. D'Souza

Biologia plantarum 51:93-97, 2007 | DOI: 10.1007/s10535-007-0019-7

Photosystem 1 and 2 and antioxidant enzyme activities were determined in wheat (Triticum aestivum L. cv. Sonalika) leaves. Seedlings from both control seeds and seeds soaked in solutions like dithiothreitol, thioglycollic acid and thiourea were subjected to water stress induced by polyethylene glycol. Photosystem 1 and 2 activities were less inhibited by water stress due to seed soaking with sulphydryl compounds. The changes in activities of antioxidant enzymes induced by water stress were higher in seedlings from thiol-pretreated seeds than from water-soaked seeds.

Increased antioxidant activity in Cassia seedlings under UV-B radiation

S. Agarwal

Biologia plantarum 51:157-160, 2007 | DOI: 10.1007/s10535-007-0030-z

Cassia auriculata L. seedlings were irradiated with ultraviolet B (UV-B) in an environment-control chamber. The two doses assayed (7.5 and 15.0 kJ m-2) induced oxidative damage with an increase in lipid peroxidation and hydrogen peroxide and a decrease in chlorophyll and total phenol contents. The ascorbate and dehydroascorbate content as well as the reduced glutathione/oxidized glutathione content and ratio were significantly increased. The UV-B stress led to significant increases of the activity of superoxide dismutase, catalase, peroxidase and polyphenol oxidase. It is suggested that Cassia seedlings try to counteract high concentrations of oxygen species produced under UV-B stress through a co-ordinated increase in the contents and activities of antioxidants involved in their detoxification.

Embryogenesis and plant regeneration from unpollinated ovary culture of Psoralea corylifolia

S. Chand, A. K. Sahrawat

Biologia plantarum 51:223-228, 2007

Embryogenesis and plant regeneration was achieved from callus cultures derived from unpollinated ovaries of Psoralea corylifolia L. Callus was initiated from unpollinated ovaries on Murashige and Skoog (MS) medium supplemented with 2.2 µM N 6-benzyladenine (BA) and various concentrations of α-naphthaleneacetic acid (NAA (2.7 to 10.7 µM) or 2,4-dichlorophenoxyacetic acid (2,4-D (2.3 to 9 µM) alone or in combination. Highly organized embryogenic callus induction, embryo development, proliferation and maturation were achieved on transfer of callus clumps to MS medium supplemented with NAA (0.27 µM) or 2,4-D (0.23 µM) alone or in combination with BA (2.2 to 8.8 µM). Addition of abscisic acid (ABA) (0.95 to 5.8 µM) to the medium enhanced average numbers of cotyledonary stage embryos, the maximum number (34.6 ± 0.7) being obtained on MS medium containing 0.27 µM NAA, 2.2 µM BA and 3.8 µM ABA. Embryos germinated on MS medium supplemented with BA (0 to 8.8 µM). MS medium containing gibberellic acid (GA3 (0.29 to 5.8 µM) enhanced embryo germination frequency, the highest frequency (66.7 %) occurring on MS medium containing 2.2 µM BA and 4.3 µM GA3. Effect of several concentrations (3.0 to 6.0 %) of sucrose or maltose was also observed on germination of embryos. MS medium enriched with maltose supported high frequency of embryo germination.

Effects of elevated ozone on chlorophyll a fluorescence in symptomatic and asymptomatic leaves of two tomato genotypes

E. Degl'Innocenti, L. Guidi, G. F. Soldatini

Biologia plantarum 51:313-321, 2007

Two different genotypes of Lycopersicon esculentum Mill. (cv. Cuor di Bue, O3-sensitive and line 93.1033/1, O3-resistant) were treated with a single dose of ozone (150 mm3 m-3 for 3 h). The PS 2 activity was examined by measurements of chlorophyll a fluorescence on symptomatic and asymptomatic leaves. Symptoms were evident on the 4th leaves from the bottom, in both genotypes, while the 2nd leaves of the line 93.1033/1 were asymptomatic. In these leaves, the net photosynthetic rate (PN) did not change even if the Fv/Fm ratio significantly decreased. A strong reduction in PN, mostly due to the stomatal closure, was observed in Cuor di Bue. The non photochemical quenching coefficient (qNP) and the degree of PS 2 reaction centres closure (1-qP) were higher, while the quantum efficiency of PS 2 photochemistry (ΦPS2) and quantum efficiency of excitation energy capture (Φexc.) were lower in O3 treated leaves of both genotypes. The limitation of photosynthesis was shown also by a decrease in the parameter %P, which diminished compared to controls in both genotypes. The response of the two genotypes for the energy fraction dissipated as thermal energy in the PS 2 antennae (%D) was similar. The fraction of %P remained lower during the recovery in symptomatic leaves of the resistant line as compared to the controls, whereas %X, which represents the amount of light energy that is not utilized in photochemistry or dissipated in the PS 2 antennae, significantly rose in the asymptomatic leaves of this line and in both the leaves of Cuor di Bue. From data obtained we concluded that ozone affected the plants independently on the appearance of visible symptoms of injury because the leaves without visible symptoms of both the genotypes were negatively influenced.

Soapwort oxidoreductase is involved in trinitrotoluene detoxification

R. Podlipná, A. Nepovím, P. Soudek, M. Vágner, T. Vaněk

Biologia plantarum 51:367-371, 2007

Plant enzymes participating in degradation of nitroaromatic compounds have not been biochemically characterized in details so far. From suspension culture of soapwort (Saponaria officinalis L.) we isolated a novel plant oxidoreductase involved in degradation of trinitrotoluene (TNT). The enzyme catalyses first steps of reduction of TNT nitro groups in the presence of NAD(P)H under anaerobic conditions. The enzyme is monomeric with molecular mass 29 kDa, its two isoforms have pI 4.8 and 5.1. According to the spectral and activation analysis the enzyme contains flavinmono-nucleotide as a prosthetic group. The structure properties suggest an evolutional relationship to oxophytodienoate reductase. The N-terminal amino acid sequence shows homology to family of Old Yellow Enzyme (E.C. 1.6.99.1).

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