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Glutamine: A Suitable Nitrogen Source for Enhanced Shoot Multiplication in Cucumis sativus L.A. Vasudevan, N. Selvaraj, A. Ganapathi, S. Kasthurirengan, V. Ramesh Anbazhagan, M. ManickavasagamBiologia plantarum 48:125-128, 2004 | DOI: 10.1023/B:BIOP.0000024288.82679.50 Shoot tip explants of cucumber (Cucumis sativus L. cv. Poinsett 76) were cultured in vitro on Murashige-Skoog medium with L-glutamine, ammonium nitrate, adenine sulphate, asparagine, ammonium succinate, potassium nitrate and sodium nitrate as the nitrogen sources along with optimal concentration of 0.044 mM benzyladenine to study their effects on in vitro morphogenesis. The explants grown with 0.068 mM L-glutamine displayed the highest culture response (74.6 %) and greatest shoot number per explant (13.6) at the end of two subcultures. The explants cultured with other nitrogen sources resulted in low culture frequency and low number of shoots per explant accompanied by basal callusing and necrosis. |
Sequence Comparison of Plant Ornithine Decarboxylases Reveals High Homology and Lack of IntronsJ.F. Jiménez-Bremont, Y.M. Camacho-Villasana, J.L. Cabrera-Ponce, A.P. Barba de la Rosa, N. Ochoa-AlejoBiologia plantarum 48:193-198, 2004 | DOI: 10.1023/B:BIOP.0000033444.17603.f2 We have designed and constructed four oligonucleotides corresponding to the most conserved regions of ornithine decarboxylases (ODC; EC 4.1.1.17) of plant origin. These oligonucleotides were used for the amplification of homologous fragments from several plants (Zea mays, Capsicum annuum, Sorghum bicolor, Phaseolus vulgaris, Carica papaya and Daucus carota). The amplified fragments were cloned and sequenced, revealing high homology to other ODCs. Peptide sequences coded by these fragments were compared by Clustal analyses. These analyses identified the location of the conserved sequences corresponding to the binding sites of substrate and cofactor. Data demonstrated that the plant ODCs fragments lacked intron sequences and were extremely homologous (over 80 %), constituting a compact group separated from other eukaryotic ODCs. |
Changes in the Leaf Polypeptide Patterns of Barley Plants Exposed to Soil FloodingR.Y. Yordanova, K.G. Kolev, Zh.G. Stoinova, L.P. PopovaBiologia plantarum 48:301-304, 2004 | DOI: 10.1023/B:BIOP.0000033461.68221.5f Exposure of barley plants (Hordeum vulgare L.) to soil flooding for 72 - 120 h led to decrease in the content of the both subunits of ribulose-1,5-bisphosphate carboxylase/oxygenase. The effect was more pronounced on the small subunit. Further, the changes in protein pattern were observed, mainly proteins with molecular masses 30 - 85 kD were down-regulated. |
Heat Shock Induces Programmed Cell Death in Wheat LeavesT. Fan, T. XingBiologia plantarum 48:389-394, 2004 | DOI: 10.1023/B:BIOP.0000041091.03068.ee Programmed cell death (PCD) was triggered in wheat leaves by a heat treatment (42 °C). This treatment caused DNA fragmentation as shown in DNA laddering analysis and in terminal deoxynucleotidyl transferase-mediated deoxyuridine-5'-triphosphate (dUTP) nick end labeling (TUNEL) analysis. Methanol and acetone treatment of leaves significantly blocked PCD. Western analysis indicated that a 65 kDa poly(ADP-ribose) polymerase-like protein was degraded during the treatment. However, high temperature (80 °C) treatment caused necrosis but not PCD. |
Responses of Vigna radiata to Foliar Application of 28-Homobrassinolide and KinetinQ. Fariduddin, A. Ahmad, S. HayatBiologia plantarum 48:465-468, 2004 | DOI: 10.1023/B:BIOP.0000041106.77930.d6 Effects of 28-homobrassinolide (HBR) and kinetin (KIN) on photosynthesis, nitrogen metabolism, and the seed yield were studied. The leaves of 25-d-old plants of Vigna radiata (L.) Wilczek were sprayed with 0.01, 1.0 or 100 μM aqueous solution of KIN, or 0.0001, 0.01 or 1.0 μM that of HBR. KIN and especially HBR increased the activities of nitrate reductase and carbonic anhydrase, chlorophyll and total protein contents and net photosynthetic rate in the leaves, and pod number and seed yield, at harvest. |
Purification and Characterization of S-Adenosyl-L-Methionine Nicotinic Acid-N-Methyltransferase from Leaves of Glycine maxX. Chen, A.J. WoodBiologia plantarum 48:531-535, 2004 | DOI: 10.1023/B:BIOP.0000047148.20309.88 Trigonelline (TRG), which act as a cell cycle regulator and a compatible solute in response to salinity and water-stress, is the N-methyl conjugate of nicotinic acid the formation of which is catalyzed by S-adenosyl-L-methionine nicotinic acid-N-methyltransferase. The enzyme was purified 2650-fold from soybean (Glycine max L.) leaves with a recovery of 4 %. The purification procedure included ammonium sulfate (45 - 60 %) precipitation, linear gradient DEAE-Sepharose chromatography, adenosine-agarose affinity chromatography, hydroxyapatite chromatography and gel filtration (Sephacryl-S-200). The purified enzyme preparation showed a major band with a molecular mass of 41.5 kDa in sodium dodecyl sulfate-polyacrylamide gel electrophoresis that is related to the enzyme activity. The native enzyme had a molecular mass of about 85 kDa as estimated by gel filtration. The Km values for S-adenosyl-L-methionine and nicotinic acid were 31 and 12.5 μM, respectively. The purified enzyme showed optimum activity at pH 6.5 and temperature of 40 - 45 °C. High concentration of dithiothreitol (10 mM) and glycerol (20 %) stabilize the enzyme during purification and storage. Hg2+ strongly inhibits enzyme activity. |
Effect of NaCl on Biomass and Contents of Sugars, Proline and Proteins in Seedlings and Leaf Explants of Nicotiana tabacum Grown in vitroV. Niknam, M. Bagherzadeh, H. Ebrahimzadeh, A. SokhansanjBiologia plantarum 48:613-615, 2004 | DOI: 10.1023/B:BIOP.0000047163.70240.69 Effects of NaCl on growth in vitro and contents of sugars, free proline and proteins in the seedlings and leaf explants of Nicotiana tabacum cv. Virginia were investigated. The fresh and dry mass of the seedlings decreased under salinity. These growth parameters in leaf explants decreased at 50 mM NaCl and increased up to 150 mM NaCl and then decreased at higher level of salinity. Free proline content in both seedlings and leaf explants increased and polysaccharide content decreased continuously with increasing of NaCl concentration. Reducing sugars, oligosaccharides, soluble sugars and total sugars contents in both seedlings and leaf explants decreased up to 150 mM NaCl and then increased at higher concentrations of NaCl. |
Rapid in vitro Regeneration of Sesbania drummondiiS.B. Cheepala, N.C. Sharma, S.V. SahiBiologia plantarum 48:13-18, 2004 | DOI: 10.1023/B:BIOP.0000024269.72171.42 This paper describes rapid propagation of Sesbania drummondii using nodal explants isolated from seedlings and young plants. The nodal segments proliferated into multiple shoots on Murashige and Skoog's (MS) medium supplemented with 22.2 μM benzyladenine. MS medium containing 2.2 and 4.5 μM thidiazuron induced 5 - 6 shoots per stem node from 3-month-old plants. Nodal explants when cultured on MS medium containing combinations of benzyladenine (8.8 and 11.1 μM) and indole-3-butyric acid (0.24 - 2.46 μM) or indole-3-acetic acid (0.28 - 2.85 μM) gave lesser number of shoots. Callus induced on cotyledonary explants when subcultured on 2.2 μM thidiazuron containing medium resulted in its mass proliferation having numerous embryoid-like structures. Indole-3-butyric acid (0.24 - 2.46 μM) was found suitable for root induction. In vitro regenerated plants were acclimatized in greenhouse conditions. |
Growth, Water Content, and Proline Accumulation in Drought-Stressed Callus of Date PalmJ.M. Al-Khayri, A.M. Al-BahranyBiologia plantarum 48:105-108, 2004 | DOI: 10.1023/B:BIOP.0000024283.74919.4c This study was conducted to examine the response of date palm (Phoenix dactylifera L., cvs. Barhee and Hillali) calli to water stress. Callus derived from shoot tip explants was inoculated in liquid Murashige and Skoog medium containing 10 mg dm-3α-naphthaleneacetic acid, 1.5 mg dm-3 2-isopentenyladenine, and 0 to 30 % (m/v) polyethylene glycol (PEG 8000) to examine the effect of water stress. After 2 weeks, callus growth, water content, and proline accumulation were assessed. Increasing water stress caused a progressive reduction in growth as expressed in callus fresh mass, relative growth rate, and index of tolerance. Both genotypes tested followed this general trend, however, cv. Barhee was more tolerant to drought stress than cv. Hillali. Increasing PEG concentration was also associated with a progressive reduction in water content and increased content of endogenous free proline. |
Mutagenesis of Embryogenic Cultures of Soybean and Detecting Polymorphisms Using RAPD MarkersN.E. Hofmann, R. Raja, R.L. Nelson, S.S. KorbanBiologia plantarum 48:173-177, 2004 | DOI: 10.1023/B:BIOP.0000033441.46242.94 Embryogenic suspension cultures of soybean (Glycine max L. cv. Iroquois) were subjected to mutagenesis using varying concentrations (1, 3, 10, and 30 mM) of ethyl methanesulfonate (EMS). Depending on the concentration of EMS used, the mean survival rate of embryogenic cultures decreased from 74 % (1 mM EMS) to 43 % after 30 mM EMS treatment. Random amplified polymorphic DNA (RAPD) analysis was used to determine whether induction of genetic variability in embryogenic cultures in response to the different EMS treatments may result in identification of polymorphic markers. Two of 35 'core' primers tested revealed polymorphisms. One of the primers, OPO-01/1150, revealed polymorphism in tissue treated with 10 mM EMS, while the other primer, OPO-05/1200, revealed polymorphism in tissue treated with either 1 or 30 mM EMS. These results suggest that RAPD markers are useful in detecting mutations in embryogenic cultures of soybean. |
Methyl Jasmonate is a Potent Elicitor of Multiple Defense Responses in Grapevine Leaves and Cell-Suspension CulturesV. Repka, I. Fischerová, K. ŠilhárováBiologia plantarum 48:273-283, 2004 | DOI: 10.1023/B:BIOP.0000033456.27521.e5 Treatment with methyl jasmonate (MeJA) stimulates a multicomponent defense response in leaves and suspension-cultured cells of grapevine (Vitis vinifera L. cv. Limberger). MeJA induces development of necrotic lesions, similar to that normally associated with resistance to avirulent pathogens. Sustained exposure of both leaves and cell-suspension cultures to 50 μM MeJA provoked hypersensitive cell death, stimulated medium alkalinization accompanied by massive callose deposition, but did not induce accumulation of hydrogen peroxide from the oxidative burst. Transcripts of genes encoding diverse families of the pathogenesis-related proteins accumulated rapidly after MeJA application, followed by salicylic acid production. After several days systemic accumulation of a large number of defense-associated proteins, including pathogenesis-related proteins, peroxidase, cell wall extensin and enzymes involved in the phenylpropanoid biosynthetic pathway was induced. These cumulative results suggest that grapevine cells that perceived MeJA generated a cascade of events acting at both local and long distances, and causing the sequential and coordinated expression of specific defense responses with a timing and magnitude similar to the typical hypersensitive response against pathogens. |
Khush, G.S., Brar, D.S., Hardy, B. (ed.): Rice Genetics IVJ. DoleželBiologia plantarum 48:360, 2004 | DOI: 10.1023/B:BIOP.0000041123.29979.b7 |
In vitro Crown Galls Induced by Agrobacterium tumefaciens Strain A281 (pTiBo542) in Trigonella foenum-graecumK.M. Khawar, S. Gulbitti-Onarici, S. Çöçü, S. Erisen, C. Sancak, S. ÖzcanBiologia plantarum 48:441-444, 2004 | DOI: 10.1023/B:BIOP.0000041100.94688.2d Transformation of fenugreek (Trigonella foenumgraecum) was carried out with A281 oncogenic strain of Agrobacterium tumefaciens using root, cotyledon and hypocotyl explants excised from 1-week-old seedlings, which showed that the plant was highly susceptible to transformation. Tumors (calli) were selected on 50 mg dm-3 kanamycin. They were analyzed for β-glucuronidase (GUS) expression. Presence of uidA (gus) gene, was confirmed by polymerase chain reaction (PCR) amplification. |
Expression of a Novel Antiporter Gene from Brassica napus Resulted in Enhanced Salt Tolerance in Transgenic Tobacco PlantsJ. Wang, K. Zuo, W. Wu, J. Song, X. Sun, J. Lin, X. Li, K. TangBiologia plantarum 48:509-515, 2004 | DOI: 10.1023/B:BIOP.0000047145.18014.a3 Tobacco leaf discs were transformed with a plasmid pBIBnNHX1, containing the selectable marker neomycin phosphotransferase gene (nptII) and Na+/H+ vacuolar antiporter gene from Brassica napus (BnNHX1), via Agrobacterium tumefaciens-mediated transformation. Thirty-two independent transgenic plants were regenerated. Polymerase chain reaction (PCR) and Southern blot analyses confirmed that the BnNHX1 gene had integrated into plant genome and Northern blot analysis revealed the transgene expression at various levels in transgenic plants. Transgenic plants expressing BnNHX1 had enhanced salt tolerance and could grow and produce seeds normally in the presence of 200 mM NaCl. Analysis for the T1 progenies derived from seven independent transgenic primary transformants expressing BnNHX1 showed that the transgenes in most tested independent T1 lines were inherited at Mendelian 3:1 segregation ratios. Transgenic T1 progenies could express BnNHX1 and had salt tolerance at levels comparable to their T0 parental lines. This study implicates that the BnNHX1 gene represents a promising candidate in the development of crops for enhanced salt tolerance by genetic engineering. |
Effect of Ethylene and its Antagonist 1-MCP on the Senescence of Detached Leaves of Arabidopsis thalianaV.S. Alexieva, I.G. Sergiev, D.A. Todorova, E.N. Karanov, A.R. Smith, M.A. HallBiologia plantarum 48:593-595, 2004 | DOI: 10.1023/B:BIOP.0000047162.32603.d0 1-Methylcyclopropene (1-MCP) applied alone did not influence significantly the chlorophyll and carotenoid content of the older leaves of Arabidopsis thaliana (L.) Heynh., but retarded the senescence of the younger ones (6th and 7th leaf nodes). However, 1-MCP effectively blocks the ethylene induced senescence of excised rosette leaves. The preliminary application of 1-MCP (3 h in advance to the treatment by Ethrel) almost totally eliminated the ethylene action. Similar trend was also observed after simultaneous application of Ethrel and 1-MCP, and the effects of both treatments on the chlorophyll and carotenoid destruction are comparable. |
Pavel Šiffel - † 12th July 2003J. ŠantrůčekBiologia plantarum 48:I, 2004 | DOI: 10.1023/B:BIOP.0000024316.17713.ce |
Effect of High Temperature on Protein Expression in Strawberry PlantsN.A. Ledesma, S. Kawabata, N. SugiyamaBiologia plantarum 48:73-79, 2004 | DOI: 10.1023/B:BIOP.0000024278.62419.ee Strawberry plants (Fragaria×ananassa Duch.) cvs. Nyoho and Toyonoka were exposed to temperatures of 20, 33, and 42 °C for 4 h, and protein patterns in leaves and flowers was analyzed by 2-dimensional polyacrylamide gel electrophoresis and immunoblotting. In leaves and flowers of both cultivars, the content of most proteins decreased, but a few new proteins appeared in response to heat stress. These heat shock proteins (Hsps) were detected in the range of 19 - 29 kDa in leaves, and 16 - 26 kDa in flowers. The intensity of a 43 kDa protein spot increased in response to heat stress in Nyoho flowers, but not in Toyonoka flowers. The peaHsp17.7 antibody recognized one band at approximately 26 kDa in leaves, and two bands at approximately 16 and 17 kDa in flowers of both cultivars. These results show that the effects of heat stress on Hsp synthesis in strawberry plants differ between plant organs and between cultivars. |
Photosynthetic Responses for Vitis vinifera Plants Grown at Different Photon Flux Densities Under Field ConditionsM. Bertamini, N. NedunchezhianBiologia plantarum 48:149-152, 2004 | DOI: 10.1023/B:BIOP.0000024294.75496.a6 In grapevine (Vitis vinifera L.) leaf chlorophyll (Chl) a and Chl b and carotenoid contents were higher in plants grown at low photon flux densities (PFD) than in those grown at medium and high PFD. The highest Chl a variable to maximum fluorescence ratio Fv/Fm was observed in plants grown at medium PFD while the minimum fluorescence F0 was highest in those at high PFD. In isolated thylakoids, both high and low PFD caused marked inhibition of whole chain and photosystem 2 (PS2) activities. The artificial exogenous electron donor diphenyl carbazide significantly restored the loss of PS2 activity in low PFD leaves. |
Diurnal and Seasonal Modulation of Sucrose Phosphate Synthase Activity in Leaves of Prosopis julifloraU.V. Pathre, A.K. Sinha, P.A. Shirke, S.A. RanadeBiologia plantarum 48:227-235, 2004 | DOI: 10.1023/B:BIOP.0000033449.19251.8a Diurnal changes of sucrose-phosphate synthase (SPS) activity in different seasons were measured in Prosopis juliflora (Swartz) DC. leaves. SPS activity showed large variations with two distinct peaks, one around 09:00 and another at 21:00. The diurnal pattern was apparently not due to circadian rhythm since the activities were directly related to the changes in environmental parameters (irradiance, temperature, and leaf to air vapour pressure deficit) in different seasons. During the day, the enzyme showed changes in kinetic properties, differential sensitivity to allosteric modulators, differential response to ATP concentration, to concentration of endogenous sucrose, and to protein phosphatase inhibitors. These results taken together indicate the modulation of SPS in synchrony with photosynthesis and suggest the existence of multiple levels of modulation, presumably as an adaptive response to changing environmental extremes. |
Imaging of Calcium Channels During Polarity Induction in Plant CellsS.C. Bhatla, G. KalraBiologia plantarum 48:327-332, 2004 | DOI: 10.1023/B:BIOP.0000041082.37723.c7 Understanding the molecular basis of polarity induction in plant cells is a research aspect that extends from signal perception and transduction to morphogenesis. A gradient of cytoplasmic ion fluxes generated through ion channels plays a crucial role in subsequent events leading to polar growth. Convincing evidence is now available implicating temporal and spatial distribution of Ca2+ in cytoplasm, generated by localized activity of calcium channels, as the early biochemical events associated with polarity induction. Ion channel antagonists are common tools for studying ion channel structure and function. Coupled with a fluorescent dyes, calcium channel antagonists (phenylalkylamine and dihydropyridine), have been used to localize L-type calcium channels. Additionally, the advent of Confocal Laser Scanning Microscopy has made possible the visualization of Ca2+ channels in plant cells. Persisting problems of dye loading and their cellular compartmentation have been addressed by developing a variety of experimental protocols. Present article highlights the current state of our understanding of these concepts, methodologies and their applications in different aspects of plant development. |
Effects of Cadmium on the Metabolic Activity of Avena sativa Plants Grown in Soil or Hydroponic CultureS. Astolfi, S. Zuchi, C. PasseraBiologia plantarum 48:413-418, 2004 | DOI: 10.1023/B:BIOP.0000041095.50979.b0 Oat (Avena sativa L.) plants cultured in soil and hydroponic culture were treated with cadmium [0.154 mg g-1 (dry soil) and 100 μM CdSO4, respectively] for 21 d and growth rate and various biochemical processes were studied. Applied cadmium reduced plant growth and chlorophyll content. Changes in activity of enzymes involved in C, N and S metabolism and in guaiacol peroxidase activity were observed. In particular, O-acetylserine sulphydrylase (OASS; EC 4.2.99.8) activity was increased by Cd exposure in both growth conditions, probably as a resistance mechanism to cadmium based on the production of phytochelatins. Results show that both field and hydroponic conditions represent suitable systems for investigating Cd effects on plant growth and metabolism. |
Response to Chilling of Zea mays, Tripsacum dactyloides and their HybridJ.R. Jatimliansky, M.D. García, M.C. MolinaBiologia plantarum 48:561-567, 2004 | DOI: 10.1023/B:BIOP.0000047153.23537.26 Maize (Zea mays ssp. mays) and eastern gamagrass (Tripsacum dactyloides) are known for their susceptibility to chilling injuries. Their hybrid (Z. mays × T. dactyloides) showed higher tolerance to low temperatures (-2 °C) in the field than its parents. Exposure to 5 °C for 2 or 3 d reduced the variable to maximal chlorophyll fluorescence ratio (FV/FM), an indicator of the maximum photochemical efficiency of the photosystem 2, and the variable to minimal fluorescence ratio (FV/F0) more in maize and eastern gamagrass than in hybrid plants. Chlorophyll contents for rewarming plants (25 °C for 3 d) were lower than before chilling in both parents while values for hybrid plants were similar. Electrolyte leakage was higher in chilled than control plants but it did not show significant differences among genotypes. Our data suggest that hybrid plants have higher capacity to recover from chilling injury in controlled conditions than their parents. |
The Effect of Various Lipids on Flowering of Pharbitis nil in in vitro CultureE.G. Groenewald, A.J. Van Der WesthuizenBiologia plantarum 48:637-639, 2004 | DOI: 10.1023/B:BIOP.0000047168.78207.21 The effect of applied arachidonic acid, prostaglandin (PGE1) and various sterols and combinations of arachidonic acid + sterols, on flowering of Pharbitis nil were ascertained by using a tissue culture technique. It was found that arachidonic acid, PGE1 stigmasterol, testosterone, cholesterol, stigmasterol + arachidonic acid, β-sitosterol + arachidonic acid and cholesterol + arachidonic acid all caused earlier flowering. Four inhibitors of prostaglandin biosynthesis (gentisic acid, acetylsalicylic acid, salicylic acid and oleic acid), inhibited flowering completely. The results confirm that the compounds tested could possibly play a role in the flowering of P. nil. |
Effect of Kinetin on Starch and Sucrose Metabolising Enzymes in Salt Stressed Chickpea SeedlingsS. Kaur, A.K. Gupta, N. KaurBiologia plantarum 46:67-72, 2003 | DOI: 10.1023/A:1022310100557 Higher amylase activity in cotyledons of kinetin treated salt stressed (75 mM NaCl) chickpea (Cicer arietinum L. cv. PBG-1) seedlings, as compared to salt stressed seedlings was observed during a growth period of 7 d. The activities of acid and alkaline invertases were maximum in shoots and minimum in cotyledons under all conditions. The reduced shoot invertase activities under salt stress were enhanced by kinetin with a simultaneous increase in reducing sugar content. Kinetin increased the activities of sucrose synthase (SS) and sucrose phosphate synthase (SPS) in both the cotyledons and shoots of stressed seedlings. Kinetin appears to increase the turnover of sucrose in the shoots of stressed seedlings. |
Soil Pollution Alters ATP and Chlorophyll Contents in Pisum sativum SeedlingsA.E.A. PäivökeBiologia plantarum 46:145-148, 2003 | DOI: 10.1023/A:1022311902355 Pisum sativum L. cv. Phenomen plants were grown in pots in greenhouse and their growth, and ATP and chlorophyll (Chl) a and b contents were assessed after 9-d exposure to sodium arsenate [0.04 and 0.07 mmol kg-1(soil)], or to lead acetate [2.0 and 4.0 mmol kg-1(soil)], or zinc acetate [5.3 and 9.3 mmol kg-1(soil)]. The luciferin-luciferase method was used for ATP analyses. Soil pollution reduced significantly the growth, but the low toxicant concentrations elevated the cotyledon and shoot ATP concentrations per fresh matter content. The ATP/Chl ratio was increased in the zinc-treated seedlings as compared with the respective controls. The ATP concentration and a number of growth parameters were negatively correlated, and thus the high ATP content might contribute to the significantly reduced growth of seedlings. |
Phenetic Relationship of Rubber Tree ClonesK.O. Omokhafe, J.E. AlikaBiologia plantarum 46:217-222, 2003 | DOI: 10.1023/A:1022898510317 Twenty clones of the breeding population of Hevea brasiliensis were evaluated for phenetic diversity. The test-clones included six clones developed in Nigeria, ten Malaysian clones, two clones from Indonesia and a clone from each of Brazil and Sri Lanka. Data collected on fifteen seed characters in 1998 and 1999 were utilized for multivariate analysis. Cluster analysis of data matrix of clonal mean seed characters was conducted to produce principal component axes, dendrograms and Tocher's clusters in 1998, 1999 and the combined data. There was taxonomic isolation of the recent collection from Brazil (IAN 710) from the other clones that are either members or descendants of the Wickham collection of 1876. There was a continuum of phenetic diversity from the highly divergent to the closely related pairs of clones. The highly divergent clones are expected to produce heterotic progenies in crosses while crosses among clones with close phenetic similarity should be avoided. This will guide against inbreeding depression and genetic erosion. |
Stress-Induced Proteins in Parthenium argentatum LeavesD. Sundar, K.V. Chaitanya, A. Ramachandra ReddyBiologia plantarum 46:313-316, 2003 | DOI: 10.1023/A:1022883501656 We have analyzed the stress-associated proteins in a high-rubber-yielding guayule (Parthenium argentatum Gray cv. 11591) leaves. Protein profiles in leaf fractions, resolved by SDS-PAGE and visualized by Coomassie Brilliant Blue staining, were different under various stresses. Changes in 25, 34 and 74 kDa polypeptides were noticed in response to low night temperature treatment while 24, 40, 47 and 81 kDa proteins responded to low irradiance. 23, 50, 75 and 82 kDa proteins were altered in response to drought stress. Certain proteins may play a significant role in the acquisition of tolerance in parenchyma cells of guayule leaves and might be useful markers to study adaptation in guayule plants. |
Valerophenone synthase-like chalcone synthase homologues in Humulus lupulusP. Novák, J. Matoušek, J. BřízaBiologia plantarum 46:375-381, 2003 | DOI: 10.1023/A:1024326102694 Valerophenone synthase homologue of chalcone synthase (CHS) is the first key enzyme described to be involved in the biosynthesis of bitter acids, the compounds produced in hop lupulin glands valuable for the taste of beer. The complete sequence of a novel homologue of CHS chs 4 was isolated from hop. Protein predicted from chs 4 cDNA has 43.45 kDa and length 395 amino acids. It was found by the analysis of chs 4 flanking sequences that this gene is in the cluster with other CHS homologues - chs 3 and vps. The intron identified in chs 4 has been found to be homological to vps and chs 3 introns. Expression of chs 4 was partially characterized using reverse transcription polymerase chain reaction and it was found that chs 4 is specifically expressed in the glandular tissue of hop cones likewise vps. The predicted protein sequence CHS 4 was compared with other CHS-like proteins. |
Micropropagation of Tectona grandis: Assessment of Genetic FidelityG. Gangopadhyay, S. Basu Gangopadhyay, R. Poddar, S. Gupta, K.K. MukherjeeBiologia plantarum 46:459-461, 2003 | DOI: 10.1023/A:1024359126802 Random amplified polymorphic DNA (RAPD) markers were used to analyze genetic fidelity of micropropagated teak (Tectona grandis L.) clones with respect to subcultural passage. Of the twenty primers screened, no variation in RAPD profiles was noticed in the in vitro clones of fifth, tenth, fifteenth and twentieth passage in comparison to the in vivo mother plants. Only one micropropagated plant of twenty-fifth subcultural passage, however, differed from the in vivo ones. It revealed the appearance of a new polymorphic DNA fragment (molecular mass 379 kb) in case of primer OPB-08. This primer, manifesting detectable variation, may be utilized as a diagnostic marker for assessing genetic fidelity of micropropagted teak plants. |


