biologia plantarum

International journal on Plant Life established by Bohumil Nìmec in 1959

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Results 1171 to 1200 of 6239:

Rapid in vitro propagation of Holarrhena antidysenterica using seedling cotyledonary nodes

K. Mallikarjuna, G. Rajendrudu

Biologia plantarum 53:569-572, 2009 | DOI: 10.1007/s10535-009-0103-2

A rapid in vitro propagation of Holarrhena antidysenterica has been developed. Seedling cotyledonary nodes on Murashige and Skoog medium (MS) containing 2 mg dm-3 N6-benzyladenine (BA) produced highest number of multiple shoots. The shoot numbers were increased further upon subculture on MS medium supplemented with 0.5 mg dm-3 BA. By repeated subculture of derived shoots, a high multiplication rate was established. The excised shoots were rooted on MS basal medium without growth regulators. The in vitro formed shoots were also rooted ex vitro by dipping them in 2 mg dm-3 of indole-3-butyric acid (IBA) solution for 2 min before transferring them onto the hardening medium. Successful hardening and further establishment (survival 90 %) of micropropagated plants under natural conditions was observed.

QTLs mapping of physiological traits related to salt tolerance in young rice seedlings

H. Sabouri, A. M. Rezai, A. Moumeni, A. Kavousi, M. Katouzi, A. Sabouri

Biologia plantarum 53:657-662, 2009 | DOI: 10.1007/s10535-009-0119-7

Oryza sativa L. F2 population and F2:3 derived from a cross between salt tolerance cv. Tarommahali and salt sensitive cv. Khazar were used in this study. A linkage map based on F2 population was constructed (74 SSR markers on 192 individuals), which covered a total of 1231.50 cM with an average two locus interval of 19.83 cM. Two QTLs related to Na+/K+ ratio were found on chromosome 3 and 6. qDM-3 and qDM-8 (for dry mass of shoot) are major QTLs with very large effects explained 20.90 and 17.72 % of the total phenotypic variance, respectively. Major locus for DM (qDM-3) was bracketed by RM1022 - RM6283 spread over 13.6 cM on chromosome 3. Major part of the variability for standard tolerance ranking (STR) was explained by the qSTR-6 flanked by RM3727 - RM340 on chromosome 6, which exhibited phenotypic variance of 17.25 % and peak likelihood ratio (LR) of 17.51. The length of this QTL is 8.8 cM and identification of any tightly linked markers in this region will serve as a candidate gene for fine-mapping. qSTR-3 overlapped with qNA-3 and qNAK-3. The qSTR-3 may contain a new major gene for salt stress tolerance at seedling stage in rice. Major QTLs identified in this paper, after fine-mapping, could be used for marker assisted selection.

AFLP analysis of somaclonal variations in Eucalyptus globulus

X. Y. Mo, T. Long, Z. Liu, H. Lin, X. Z. Liu, Y. M. Yang, H. Y. Zhang

Biologia plantarum 53:741-744, 2009 | DOI: 10.1007/s10535-009-0135-7

DNA variations of forty-eight Eucalyptus globulus plants, regenerated by successive culture from seven different explants were assessed by AFLP analysis using 18 primer combinations. At least one variation showed 66.7 % of the analyzed plants, and the numbers of polymorphic bands per plant ranged from 1 to 22. The proportion of polymorphic fragments did not correlate with the numbers of the regenerated plants. However, the more times of successive culture were done the more of polymorphic bands were found within the groups. On average, between 97.39 and 99.88 % of all fragments were shared within the same group. AMOVA analysis showed 39.33 % of the variation was found among the accessions that originated from different calli while 60.67 % was from same calli.

Effect of Pb ions on superoxide dismutase and catalase activities in leaves of pea plants grown in high and low irradiance

E. Romanowska, B. Wróblewska, A. Dro¿ak, M. Zienkiewicz, M. Siedlecka

Biologia plantarum 52:80-86, 2008 | DOI: 10.1007/s10535-008-0012-9

The role of irradiance on the activity of antioxidant enzymes: superoxide dismutase (SOD) and catalase (CAT) was examined in the leaves of Pisum sativum L. plants grown under low (LL) or high (HL) irradiance (PPFD 50 or 600 µmol m-2 s-1) and exposed after detachment to 5 mM Pb (NO3)2 for 24 h. The activities of both enzymes increased in response to LL compared with HL and no effect of Pb ions was observed. Photosystem (PS) 1 and PS 2 activities were also investigated in chloroplasts isolated from these leaves. LL lowered PS 1 electron transport rate and changes in photochemical activity of PS 1 induced by Pb2+ were visible only in the chloroplasts isolated from leaves of LL grown plants. PS 2 activity was influenced similarly by Pb ions at both PPFD. This study demonstrates that leaves of HL grown plants were less sensitive to lead toxicity than those from LL grown plants. Changes in electron transport rates were the main factors responsible for the generation of reactive oxygen species in the chloroplasts and as a consequence, in induction of antioxidant enzymes.

Influences of cefotaxime and carbenicillin on plant regeneration from wheat mature embryos

Y. Yu, Z.-M. Wei

Biologia plantarum 52:553-556, 2008 | DOI: 10.1007/s10535-008-0109-1

The influences of cefotaxime and carbenicillin on regeneration potential of wheat (Triticum aestivum L.) mature embryos were investigated. Filter-sterilized cefotaxime enhanced regeneration capacity although it did not affect the average number of shoots per explant. The highest regeneration capacity of 55.4 % was obtained on regeneration medium supplemented with 100 mg dm-3 cefotaxime. Filter-sterilized carbenicillin did not stimulate plant regeneration. However, higher concentration (100 mg dm-3) accelerated callus browning and inhibited the following regeneration. Autoclaved antibiotics at all tested concentrations showed detrimental effects on callus morphogenesis and plant regeneration.

Dynamics analyses of nutrients consumption and flavonoids accumulation in cell suspension culture of Glycyrrhiza inflata

Y. Yang, F. He, L. J. Yu

Biologia plantarum 52:732-734, 2008 | DOI: 10.1007/s10535-008-0141-1

The dynamics of biomass accumulation, production of flavonoids and consumption of carbon, nitrogen and phosphate were investigated in Glycyrrhiza inflata Batal cell suspensions cultivated in flasks. Biomass accumulation exhibited a "S"-shape curve in each culture cycle, with the greatest values obtained on day 21 (16.4 and 232.4 g dm-3 of dry and fresh mass, respectively). Similarly, flavonoids production also got to a peak of 95.7 mg dm-3 on day 21. Sucrose was decomposed to reducing sugars which were almost used up on day 22. Nitrate and phosphate in the medium were almost exhausted on day 18 and 10, respectively, while ammonium still maintained at concentration 100 mg dm-3 when the cells were harvested. Consequently, the proportion of ammonium to nitrate in the medium should be optimized for higher flavonoid production.

Protect and regulate: Recent findings on plant POT1-like proteins

G. Rotková, E. Sýkorová, J. Fajkus

Biologia plantarum 53:1-4, 2009 | DOI: 10.1007/s10535-009-0001-7

Single-stranded DNA-binding proteins form protective caps at the chromosome ends and their binding is important in the regulation of telomerase access to telomeres. This group of proteins is represented by POT1 proteins described in yeast, humans and other model organisms. Here we review recent findings obtained in Arabidopsis POT1-like paralogs, namely the observed diversity in their interaction features and corresponding functions.

Physiological responses of Lupinus luteus to different copper concentrations

M. P. Mourato, L. L. Martins, M. P. Campos-Andrada

Biologia plantarum 53:105-111, 2009 | DOI: 10.1007/s10535-009-0014-2

Yellow lupin (Lupinus luteus L.) plants were grown in hydroponic solution for 15 d under different copper concentrations (0.1, 0.5, 1.0, 10, 25 and 50 µM). With increasing Cu concentration total biomass was not affected, leaf area slightly decreased, while chlorophyll content decreased considerably. Cu content increased significantly both in roots and in leaves, but the contents of other ions were only slightly affected at the highest Cu concentration (Mn content decreased both in roots and in leaves, P content decreased only in leaves and Zn content increased in roots). Superoxide dismutase (SOD) activity increased up to day 7 after copper application. Peroxidase (GPOD) and polyphenol oxidase (PPO) activities also increased, while catalase (CAT) activity remained constant.

Nitrate reduction in ramets of a clonal plant Eichhornia crassipes responding to nitrate availability during clonal growth stage

W. G. Li, J. L. Wang, J. J. Shen, J. B. Wang

Biologia plantarum 53:171-174, 2009 | DOI: 10.1007/s10535-009-0028-9

Effect of nitrate availability on nitrate reduction was examined in inter-connected ramets of invasive clonal plant Eichhornia crassipes grown with two nitrate supply regimes during different clonal growth stage. Increase of nitrate availability accelerated nitrate reductase activity (NRA) in parent and offspring ramets of E. crassipes, and there was greatly different pattern in inter-connected ramets during clonal growth stage. Leaf NRA was lower in offspring than that in parent ramets in phase 1, while significantly higher leaf NRA in offspring ramets was detected during phase 2. The results indicated NRA in inter-connected ramets of E. crassipes was highly dependent on nitrate availability and growth stage.

A new tip homolog, ShTIP, from Salicornia shows a different involvement in salt stress compared to that of TIP from Arabidopsis

N. Ermawati, Y. S. Liang, J.-Y. Cha, D. Shin, M. H. Jung, J. J. Lee, B.-H. Lee, C.-D. Han, K. H. Lee, D. Son

Biologia plantarum 53:271-277, 2009 | DOI: 10.1007/s10535-009-0050-y

To obtain an insight into the comprehensive molecular characteristics of the salt tolerance mechanism, we performed a screening for salt inducible genes in a halophytic plant, Salicornia herbacea, using mRNA differential display. A comparative analysis of gene expression in Salicornia grown in control and salt-stressed conditions led to the detection of a gene that was induced by salt. Both sequence analysis and a subsequent database search revealed that this gene was highly homologous to tonoplast intrinsic proteins (TIPs) from a variety of plant species. This gene, designated as ShTIP, is 1014 bp in size and contains a coding region of 762 nucleotides, which encodes a protein of 254 amino acids. Northern blot analysis revealed that ShTIP was predominantly expressed in shoots under normal conditions. However, salt stress induced high expression of ShTIP in both the shoots and roots. The expression of ShTIP in a salt-sensitive calcineurin-deficient yeast mutant (cnbΔ) resulted in a resistance to the high salt conditions. In addition, we compared the expression of a TIP gene in Arabidopsis with that of ShTIP under different conditions and found that the Salicornia TIP has a different regulatory mechanism for adapting to salt stress conditions compared with the glycophyte Arabidopsis TIP. These results indicate that ShTIP plays an important role in salt tolerance.

Expression of Rhizobium pydA-pydB fusion gene in Nicotiana tabacum confers resistance to the toxic aromatic compound 3-hydroxy-4-pyridone

S. Jube, J. Awaya, D. Borthakur

Biologia plantarum 53:355-359, 2009 | DOI: 10.1007/s10535-009-0066-3

The toxic aromatic compound 3-hydroxy-4-pyridone (HP) is an intermediate in both synthesis and degradation of mimosine, which is produced by the tree legume Leucaena leucocephala. The L. leucocephala root-nodule symbiont Rhizobium TAL1145 contains a dioxygenase (pydA) and a hydrolase (pydB) gene that produce enzymes necessary for the degradation of HP. In order to coordinately express both genes in plant tissues under a single promoter, three different pydA-pydB fusion constructs (G0, G3, and G7) with varying glycine linkers between the two genes were developed. Prior to transferring the fusion constructs into L. leucocephala, which is highly recalcitrant to genetic transformation, we tested the expression and activity of the hybrid proteins in Nicotiana tabacum, a model plant system that can be easily transformed and analyzed. Seven independent transgenic tobacco lines were generated by Agrobacterium-mediated transformation, and stable integration and expression of pydA-pydB in these transgenic lines were confirmed by polymerase chain reaction (PCR), reverse transcriptase PCR (RT-PCR) and Western analysis. Only one of the fusion constructs, G3, containing a 9-nucleotide linker between pydA and pydB, provided significant levels of resistance to 3 mM HP, indicating that the hybrid protein produced by this fusion construct could degrade HP.

Characterization of β-tubulin 4 regulated by gibberellins in rice leaf sheath

G. Yang, A. Jan, S. Komatsu

Biologia plantarum 53:422-428, 2009 | DOI: 10.1007/s10535-009-0081-4

Tubulins are basic components of microtubules and are encoded by a multigene family in eukaryotes. The expression of OsTUB4, one of eight β-tubulin isotypes identified in the rice genome, was characterized. OsTUB4 was expressed in root primodia and the shoot apical meristem in basal parts of the leaf sheath in rice seedlings. OsTUB4 transcript abundance in leaf sheath increased by treatment with gibberellic acid (GA3) in a dose- and time-dependent manner. OsTUB4 transcript levels in gibberellin (GA)-deficient mutants were less than those of wild type rice. An OsTUB4 promoter::GUS assay also confirmed the responsiveness of OsTUB4 to exogenous GA3, suggesting that OsTUB4 expression was regulated by GA and may be involved in GA-regulated leaf sheath growth. In addition, OsTUB4 could interact with different specific proteins in vitro as assayed by a yeast two-hybrid system, indicating that OsTUB4 may have diverse functions through interaction with different proteins.

Effects of chilling on the root cell ultrastructure of two soybean cultivars

S. Gliñska, M. Gapiñska, B. Gabara, A. Mikiciñski, K. Szafrañska

Biologia plantarum 53:539-544, 2009 | DOI: 10.1007/s10535-009-0098-8

Two soybean [Glycine max (L.) Merr.] cultivars: Aldana (more resistant) and Essor (less resistant to low temperature) were subjected to chilling at 5°C for 24 h, and then the ultrastructure of the root meristem cells was investigated. The ultrastructure of control root cells of the tested cultivars differed in the number of condensed mitochondria, plastids with phytoferritin, deformed vacuoles, as well as multivesicular bodies (MB) in cytoplasm and vacuoles. Chilling induced concentric endoplasmic reticulum (ER) arrangement in both soybean cultivars, while the circular Golgi apparatus (GA) occurred only in cv. Essor and MB in the cytoplasm of cv. Aldana cells. Additionally, in cv. Aldana chilling increased the number of condensed mitochondria, MB in vacuoles and multilamellar structures (MS) in cytoplasm whereas in cv. Essor it enlarged the population of plastids with phytoferritin and the number of MB in cytoplasm. After chilling treatment the population of deformed vacuoles with phenolic compounds in the form of electron dense granules increased but the number of multilamellar structures (MS) in the vacuoles of both cultivars decreased. The ultrastructural changes induced by the chilling stress were not lethal but rather adaptive, especially in more resistant cv. Aldana.

cDNA cloning and expression analysis of a Poncirus trifoliata CBF gene

H. L. Wang, J. J. Tao, L. G. He, Y. J. Zhao, M. Xu, D. C. Liu, Z. H. Sun

Biologia plantarum 53:625-630, 2009 | DOI: 10.1007/s10535-009-0114-z

The transcription factors CBF/DREB play an important role during low temperature, drought and high-salt stress in higher plants. A new CBF (CRT/DRE binding factor) gene was cloned from trifoliate orange [Poncirus trifoliata (L.) Raf.] by RT-PCR with degenerate primers and rapid amplification of cDNA ends (RACE) techniques. The full-length cDNA of CBF gene from trifoliate orange (designated as Ptcbfb) was 847 bp containing a 732 bp open reading frame (ORF), encoding a 243 amino acid protein. The predicted protein (designated as PtCBFb) had over 60 % identity to CBFs from some other plant species. Bioinformatical analysis showed that PtCBFb contained N-terminal bipartite nuclear targeting sequence, potential C-terminal acid domain and high conserved AP2 domain. Some other loci such as phosphorylation sites of several protein kinases, N-myristoylation site, tyrosine sulfation site and amidation site were also conserved in PtCBFb. Predicted three-dimentional structure of PtCBFb was similar to CBF from Arabidopsis thaliana. Expression pattern analysis revealed Ptcbfb expression in every tested organ, and Ptcbfb was cold induced.

In vitro production of solasodine from Solanum trilobatum

K. Anirudhan, A. S. Nair

Biologia plantarum 53:719-722, 2009 | DOI: 10.1007/s10535-009-0130-z

Sucrose concentration in the culture medium affected chlorophyll content, trichome development and amount of solasodine in regenerated plantlets of Solanum trilobatum. High chlorophyll content and glandular trichomes were observed in the plants grown on Murashige and Skoog basal medium supplemented with 131.85 mM sucrose. The solasodine was quantified using reverse phase high performance liquid chromatography. The plantlets cultivated on this medium yielded 35.97 mg g-1 (d.m.) solasodine whereas the field plants used as control yielded only 2.32 mg g-1 (d.m.) of solasodine.

Development of novel chloroplast microsatellite markers for Cucumis from sequence database

J. -B. Hu, X. -Y. Zhou, J. -W. Li

Biologia plantarum 53:793-796, 2009 | DOI: 10.1007/s10535-009-0146-4

The development of chloroplast microsatellite (cpSSR) markers in Cucumis species and analysis of their polymorphism and transferability were reported. Fifteen microsatellite markers, represented by mononucleotide repeats, were developed from the complete sequence of Cucumis sativus chloroplast genome. Intraspecific variation was successfully detected in C. sativus and C. melo and revealed mean 1.6 and 1.9 alleles per cpSSR locus, respectively. With the exception of two exon region-located cpSSR markers being monomorphic, each of the others amplified polymorphic fragments in C. sativus or C. melo. A total of 34 polymorphic loci were detected with these cpSSR markers in the two species. Transferability of the newly developed cpSSR markers was checked on an additional set of 41 Cucurbitaceae accessions (belonging to 12 different species), and except for two markers with no amplification in Cucurbita maxima, the others could be transferable to all the accessions tested. Of the 15 cpSSR markers, 14 markers generated fragments with expected band sizes and 13 markers detected interspecific polymorphism among the accessions. Intraspecific polymorphism was also observed within four Cucurbitaceae species excluding C. sativus and C. melo.

Pugnaire, F.I., Valladares, F. (ed.): Functional Plant Ecology

J. Gloser

Biologia plantarum 52:120, 2008 | DOI: 10.1007/s10535-008-0023-6

Hairy root culture of Plumbago indica as a potential source for plumbagin

M. Gangopadhyay, D. Sircar, A. Mitra, S. Bhattacharya

Biologia plantarum 52:533-537, 2008 | DOI: 10.1007/s10535-008-0104-6

Hairy roots of Plumbago indica were established at high frequency (90 %) by infecting leaf explants with Agrobacterium rhizogenes strain ATCC 15834. The axenic root cultures were established under darkness in hormone-free liquid Murashige and Skoog medium containing 3 % sucrose. The highest plumbagin content was found to accumulate in roots at their exponential phase of growth. A low pH (4.6) and a low concentration of sucrose (1 %) were beneficial for root growth in darkness, while pH 5.6 and 3 % sucrose under continuous irradiance enhanced plumbagin accumulation in roots up to 7.8 mg g-1(d.m.). Direct shoot regeneration from hairy root culture was also achieved under continuous irradiance, thus indicated an easy way of obtaining transformed P. indica plants.

The relationship between vernalization-and photoperiodically-regulated genes and the development of frost tolerance in wheat and barley

K. Kosová, I. T. Prá¹il, P. Vítámvás

Biologia plantarum 52:601-615, 2008 | DOI: 10.1007/s10535-008-0120-6

The review summarizes the level of current knowledge of impacts of vernalization and photoperiod on the induction and maintenance of frost tolerance (FrT) in wheat and barley. The phenomenon of vernalization is briefly described and the major vernalization (VRN) loci are characterised. Vernalization requirement and the three major growth habits of Triticeae (facultative, winter and spring) are defined on the basis of the two-locus VRN-2/VRN-1 epistatic model. Major photoperiodically regulated genes, which influence the transition to flowering, are characterised and their interactions with VRN genes are briefly discussed. The phenomenon of induction of FrT during the process of cold acclimation (CA) is described and the major cold-induced Cor/Lea genes are listed. Important regulatory mechanisms, i.e., CBF pathway, controlling the expression of Cor/Lea genes under cold, are discussed. The major loci affecting the development of FrT in Triticeae, the Fr loci, are characterised. In conclusion, current progress in this research field is summarized and new questions arising in the area are formulated.

Waterlogging induced oxidative stress and antioxidant activity in pigeonpea genotypes

D. Kumutha, K. Ezhilmathi, R. K. Sairam, G. C. Srivastava, P. S. Deshmukh, R. C. Meena

Biologia plantarum 53:75-84, 2009 | DOI: 10.1007/s10535-009-0011-5

The objective of this study was to examine the role of antioxidant enzymes in waterlogging tolerance of pigeonpea (Cajanus cajan L. Halls) genotypes ICP 301 (tolerant) and Pusa 207 (susceptible). Waterlogging resulted in visible yellowing and senescence of leaves, decrease in leaf area, dry matter, relative water content and chlorophyll content in leaves, and membrane stability index in roots and leaves. The decline in all parameters was greater in Pusa 207 than ICP 301. Oxidative stress in the form of superoxide radical, hydrogen peroxide and thiobarbituric acid reactive substances (TBARS) contents initially decreased, however at 4 and 6 d of waterlogging it increased over control plants, probably due to activation of DPI-sensitive NADPH-oxidase. Antioxidant enzymes such as superoxide dismutase, ascorbate peroxidase, glutathione reductase and catalase also increased under waterlogging. The comparatively greater antioxidant enzyme activities resulting in less oxidative stress in ICP 301 could be one of the factor determining its higher tolerance to flooding as compared to Pusa 207. This study is the first to conclusively prove that waterlogging induced increase in ROS is via NADPH oxidase.

Cadmium-induced oxidative damage and antioxidant responses in Brassica juncea plants

Y. K. Markovska, N. I. Gorinova, M. P. Nedkovska, K. M. Miteva

Biologia plantarum 53:151-154, 2009 | DOI: 10.1007/s10535-009-0023-1

Indian mustard (Brassica juncea L. cv. Vitasso) plants exposed to 10, 30, 50 and 100 µM of Cd for 5 d in hydroponic culture were analysed with reference to the distribution of Cd2+, the accumulation of biomass and antioxidants and antioxidative enzymes in leaves. Cd induced a decrease in plant biomass. The maximum accumulation of Cd occurred in roots followed by stems and leaves. Cd induced a decrease in catalase (CAT) and guiacol peroxidase (GPX) activities but an increase in ascorbate peroxidase (APX) and monodehydroascorbate reductase (MDHAR) activities. Enhancement in dehydroascorbate reductase (DHAR) activity was also at 10 µM Cd. Glutathione reductase (GR) activity showed pronounced stimulation after all treatments, but glutathione S-transferase (GST) and glutathione peroxidase (GPOX) activities decreased. The effectiveness of ascorbate-glutathione cycle (AGC) was determined by the ratio of ascorbate to H2O2. This ratio decreased in the Cd-treated leaves which indicated that the cycle was disordered.

Growth, lipid peroxidation and photosynthesis in two tall fescue cultivars differing in heat tolerance

J. Z. Wang, L. J. Cui, Y. Wang, J. L. Li

Biologia plantarum 53:237-242, 2009 | DOI: 10.1007/s10535-009-0045-8

Seedlings (70-d-old) of two tall fescue (Festuca arundinacea Schreb.) genotypes, heat-tolerant Jaguar 3 and heat-sensitive TF 66, were exposed to a high temperature stress of 35/30 °C (day/night) for 20 d and both light-saturated and CO2-saturated leaf stomatal conductance decreased, especially in TF 66. Higher reductions of quantum efficiency, carboxylation efficiency and maximum photochemical efficiency of photosystem 2 in dark adapted leaves (measured as Fv/Fm) occurred in TF 66 than in Jaguar 3. High temperature stress increased photorespiration in the two plants, but more in TF 66. Moreover, high temperature stress also reduced the growth, chlorophyll content and caused cell membrane injuries in the two cultivars, the changes were again more pronounced in TF 66 than in Jaguar 3.

Effects of salicylic acid and salinity on apoplastic antioxidant enzymes in two wheat cultivars differing in salt tolerance

S. Mutlu, Ö. Atici, B. Nalbantoglu

Biologia plantarum 53:334-338, 2009 | DOI: 10.1007/s10535-009-0061-8

The effects of salicylic acid (SA) and salinity on the activity of apoplastic antioxidant enzymes were studied in the leaves of two wheat (Triticum aestivam L.) cultivars: salt-tolerant (Gerek-79) and salt-sensitive (Bezostaya). The leaves of 10-d-old seedlings grown at nutrient solution with 0 (control), 250 or 500 mM NaCl were sprayed with 0.01 or 0.1 mM SA. Then, the activities of catalase (CAT), peroxidase (POX) and superoxide dismutase (SOD) were determined in the fresh leaves obtained from 15-d-old seedlings. The NaCl applications increased CAT and SOD activities in both cultivars, compared to those of untreated control plants. In addition, the NaCl increased POX activity in the salt-tolerant while decreased in the salt-sensitive cultivar. In control plants of the both cultivars, 0.1 mM SA increased CAT activity, while 0.01 mM SA slightly decreased it. SA treatments also stimulated SOD and POX activity in the salt-tolerant cultivar but significantly decreased POX activity and had no effect on SOD activity in the saltsensitive cultivar. Under salinity, the SA treatments significantly inhibited CAT activity, whereas increased POX activity. The increases in POX activity caused by SA were more pronounced in the salt-tolerant than in the salt-sensitive cultivar. SOD activity was increased by 0.01 mM SA in the salt-tolerant while increased by 0.1 mM SA treatment in the salt-sensitive cultivar.

Bowsher, C., Steer, M., Tobin, A.: Plant Biochemistry

J. Pospí¹ilová

Biologia plantarum 53:400, 2009 | DOI: 10.1007/s10535-009-0076-1

Responses of photosynthetic parameters of Mikania micrantha and Chromolaena odorata to contrasting irradiance and soil moisture

L. L. Zhang, D. Z. Wen, S. L. Fu

Biologia plantarum 53:517-522, 2009 | DOI: 10.1007/s10535-009-0093-0

Photosynthetic parameters were measured in two invasive weeds, Mikania micrantha and Chromolaena odorata, grown in soil under full, medium, and low irradiance and full, medium, and low water supply. Both species showed significantly higher net photosynthetic rate, quantum yield of PS 2 photochemistry and photochemical quenching coefficient under high than low irradiance. For M. micrantha, low irradiance caused decreased chlorophyll content (Chl), Chl a/b ratio and maximum photochemical efficiency of PS 2 (Fv/Fm), while drought decreased Chl content and Fv/Fm and increased nonphotochemical quenching (NPQ). However, these parameters were much less affected in C. odorata except that Chl content and NPQ slightly increased under drought and high irradiance. High irradiance increased xanthophyll pools in both species, especially M. micrantha under combination with drought.

Effect of increased alkalinity on Na+ and K+ contents, lipid peroxidation and antioxidative enzymes in two populations of Populus cathayana

S. Lu, S. Zhang, X. Xu, H. Korpelainen, C. Li

Biologia plantarum 53:597-600, 2009 | DOI: 10.1007/s10535-009-0109-9

We compared two populations of Populus cathayana Rehder, originating from altitudes 2 840 m and 1 450 m, to determine whether trees from different altitudes exhibit different tolerance to alkalinity. The tree cuttings were exposed to nutrient solutions with pH 7.9, 8.8, 9.8 and 10.4 and the salt concentration 200 mM. Na+ and K+ contents, and Na+/K+ ratios in leaves and roots were greatly affected by pH values. At pH 10.4, the Na+/K+ ratios in both leaves and roots sharply dropped in the higher altitude population but were maintained at higher levels in the lower altitude population. The patterns of pH-induced changes in contents of malondialdehyde and free proline, and antioxidative enzyme activities indicated that the higher altitude population exhibits greater tolerance to alkalinity stress than does the lower altitude population.

Leaf morphology and anatomy of transgenic cucumber lines tolerant to downy mildew

M. Szwacka, T. Tykarska, A. Wisniewska, M. Kuras, H. Bilski, S. Malepszy

Biologia plantarum 53:697-701, 2009 | DOI: 10.1007/s10535-009-0125-9

The objective of the present paper was to investigate the reason of increased tolerance to the pathogenic fungus Pseudoperonospora cubensis found in transgenic cucumber (Cucumis sativus L.) lines 210 and 212 bearing 35S:cDNA preprothaumatin II gene construct. The tolerance investigation was accomplished by comparing the morphological and anatomical structure of plant leaves. The results obtained demonstrate that leaves of both lines exhibited some anatomical and morphological characteristics (e.g. wax load and composition, cuticle ultrastructure, ultrastructure of secondary wall, arrangement of mesophylll cells) which may be responsible for enhanced tolerance.

High frequency plant regeneration from cotyledon and hypocotyl explants of ornamental kale

X. G. Dai, X. P. Shi, Y. M. Ye, Q. Fu, M. Z. Bao

Biologia plantarum 53:769-773, 2009 | DOI: 10.1007/s10535-009-0141-9

A high frequency shoot regeneration system for ornamental kale [Brassica oleracea L. var. acephala (D.C.) Alef.] was firstly established from seedling cotyledon and hypocotyl explants. The ability of cotyledon and hypocotyl to produce adventitious shoots varied depending upon genotype, seedling age and culture medium. The maximum shoot regeneration frequency was obtained when the explants from cv. Nagoya 4-d-old seedlings were cultured on Murashige and Skoog (MS) medium supplemented with 3 mg dm-3 6-benzylaminopurine (BA) and 0.1 mg dm-3 naphthaleneacetic acid (NAA). The frequency of shoot regeneration was 65.0 % for cotyledons, 76.1 % for hypocotyls; and the number of shoots per explant was 4.3 for cotyledons, 8.2 for hypocotyls. Hypocotyl explants were found to be more responsive for regeneration when compared with cotyledons. Among the 4 cultivars tested, Nagoya showed the best shoot regeneration response. The addition of 3.0 mg dm-3 AgNO3 was beneficial to shoot regeneration. Roots were formed on the base of the shoots when cultured on half-strength MS medium.

Determination of oxalate in plant tissues with oxalate oxidase prepared from wheat

E.-E. Liu, W. Luo, H. Zhou, X.-X. Peng

Biologia plantarum 53:129-132, 2009 | DOI: 10.1007/s10535-009-0018-y

A method for determination of oxalate with oxalate oxidase (OxO, EC 1.2.3.4) prepared from wheat bran, is based on specific oxidation of oxalate to produce H2O2. The H2O2 formed was colorimetrically determined using horseradish peroxidase-catalyzed oxidation of 4-aminoantipyrine and N,N-dimethylaniline by H2O2. The new method was tested on rice, buckwheat, soybean and oxalis leaves, showing it is precise, sensitive, inexpensive, highly reproducible and simple to perform. Good agreement could be obtained between this method and the HPLC.

Multiple hormone analysis indicates involvement of jasmonate signalling in the early defence of potato to potato virus YNTN

M. Kovaè, A. Müller, D. Milovanoviè Jarh, M. Milavec, P. Düchting, M. Ravnikar

Biologia plantarum 53:195-199, 2009 | DOI: 10.1007/s10535-009-0034-y

The involvement of plant hormones in the very early response of plants to virus infection was studied in potato plants (Solanum tuberosum L.) infected with potato virus YNTN (PVYNTN). Endogenous plant hormones and compounds mediating a stress response (JA-jasmonic acid, OPDA-12-oxo phytodienoic acid, SA-salicylic acid, IAA-indole-3-acetic acid, ABA-abscisic acid) were simultaneously quantified in susceptible cv. Désirée and resistant cv. Santé, one and three hours after inoculation. Of the hormones analysed, only the contents of endogenous JA and its precursor OPDA changed in a way that could be clearly connected with the early resistant response. In comparison to susceptible cultivar, a much more pronounced increase of JA was detected in virus-inoculated leaves of resistant cultivar at both time points. The same trend of changes was also observed with OPDA. However, there were no significant changes of JA and its precursor in upper intact systemic leaves and roots, at either time point. These findings implicate the jasmonate signalling pathway in a very early local but not systemic resistant defence of potato to PVYNTN.

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