biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1561 to 1590 of 6171:

Nitric oxide treatment alleviates drought stress in wheat seedlings

X. Tian, Y. Lei

Biologia plantarum 50:775-778, 2006 | DOI: 10.1007/s10535-006-0129-7

The effects of sodium nitroprusside (SNP; nitric oxide donor) treatment on drought stress induced by PEG for different periods of time in wheat seedlings were investigated. Our results suggested that treatment for 2, 4 and 6 d with 15 % PEG could be termed as mild, moderate and severe stress, respectively. Drought stress induced accumulation of hydrogen peroxide and resulted in lipid peroxidation. On the other hand, activities of SOD, CAT and PAL increased under mild stress to counteract the oxidative injury and then decreased when the stress became severe (6 d). As the effect of SNP treatment, 0.2 mM enhanced wheat seedlings growth and kept high relative water content and alleviated the oxidative damage. However, 2 mM SNP aggravated the stress as a result of uncontrolled generation of reactive oxygen species and ineffectiveness of antioxidant systems.

Early defence responses induced by two distinct elicitors derived from a Botrytis cinerea in grapevine leaves and cell suspensions

V. Repka

Biologia plantarum 50:94-106, 2006 | DOI: 10.1007/s10535-005-0080-z

Two elicitors, termed herein as the botrycin and the cinerein, have been isolated from the crude mycelial cell wall and from culture filtrate preparations, respectively, of a fungal necrotrophic pathogen Botrytis cinerea (Pers. et Fries). In grapevine (Vitis vinifera L. cv. Limberger) both elicitors caused the formation of necrotic lesions that mimic a typical hypersensitive response and apoptosis-related events including protoplast condensation and DNA laddering. Infiltration of minute amounts of the respective elicitors into leaves stimulated a rapid transcriptional activation of genes encoding enzymes of the phenylpropanoid pathway. Cultured grapevine cells respond differentially to respective elicitors. Significant differences were demonstrated in the ability of botrycin and cinerein to induce ion fluxes across the plasma membrane and the production of reactive oxygen species. As demonstrated by immunokinase assays, both botrycin and cinerein activated specific and distinct MAP kinases indicating that grapevine cells that perceived elicitors generated a cascade of signals acting at local, short, and long distances. Using a highly parallel antibody microarray profiling approach, the timing, dynamics, and regulation of the expression of 97 specific genes in elicitor-treated cells of grapevine was analysed.

Book Review

V. Hejnak

Biologia plantarum 50:160, 2006 | DOI: 10.1007/s10535-005-0096-4

Photosynthesis of lichen symbiotic alga Trebouxia erici as affected by irradiance and osmotic stress

P. Vaczi, M. Bartak

Biologia plantarum 50:257-264, 2006 | DOI: 10.1007/s10535-006-0016-2

The relation between oxygen evolution rate (OER) and quantum yield of photochemical reactions in photosystem 2 (ΦPS2) was examined in lichen symbiotic alga Trebouxia erici Ahmadjian (strain UTEX 911) exposed to different irradiances and osmotic stress (2 M sucrose for 60 h). Linear relationship was found between OER and ΦPS2 in control cell suspension within irradiance range of 0 - 500 μmol m-2 s-1. Under osmotic stress, OER and ΦPS2 were significantly reduced. Relation between OER and ΦPS2 was curvilinear due to strong osmotically-induced inhibition of OER at high irradiance. The highest used irradiance (500 μmol m-2 s-1) was photoinhibitory for osmotically-stressed T. erici because non-photochemical quenching (NPQ) increased substantially. Energy-dependent quenching represented major part of NPQ increase. Osmotic stress led also to the reduction of capacity of photochemical processes in PS 2 (FV/FM) and increase in F0/FM. These changes indicated negative effects of osmoticum on structure and function of photosynthetic apparatus.

Book Review

J. Pospíšilová

Biologia plantarum 50:319, 2006 | DOI: 10.1007/s10535-006-0032-2

Effects of ion channel inhibitors on cold- and electrically-induced action potentials in Dionaea muscipula

E. Krol, H. Dziubinska, M. Stolarz, K. Trebacz

Biologia plantarum 50:411-416, 2006 | DOI: 10.1007/s10535-006-0058-5

Glass microelectrodes were inserted into Dionaea muscipula (Venus flytrap) lobes and the action potentials (APs) were recorded in response to a sudden temperature drop or a direct current (DC) application. The effect of potassium channel inhibitor, tetraethylammonium ion, was the lengthening of the depolarization phase of AP. APs were also affected by the anion channel inhibitor, anthracene-9-carboxylic acid, that made them slower and smaller. Neomycin, which disturbs inositol triphosphate-dependent Ca2+ release, caused the visible inhibition of AP, too. Ruthenium red, which blocks cyclic ADP-ribose-dependent Ca2+ release, totally inhibited DC-triggered APs and induced the decrease in the amplitudes of cold-evoked APs. Lanthanum ions significantly inhibited both cold- and DC-induced membrane potential changes. It was concluded that during excitation Dionaea muscipula relied upon the calcium influxes from both the extra- and intracellular compartments.

Responses of two Prunus rootstocks to KCl induced salinity in vitro

T. E. Sotiropoulos, K. N. Dimassi, V. Tsirakoglou, I. N. Therios

Biologia plantarum 50:477-480, 2006 | DOI: 10.1007/s10535-006-0075-4

The in vitro response of two Prunus rootstocks: GF 677 (Prunus persica × Prunus amygdalus), and Nemared (Prunus persica) to increasing concentrations of KCl of the culture medium was studied. Shoots were grown in vitro for 8 weeks on an Murashige and Skoog medium supplemented with 0, 5, 10, 15, 20, 40 or 80 mM KCl. By increasing KCl concentration from 0 to 40 mM, the number of shoots per explant was not significantly affected for both rootstocks. However, Nemared rootstock formed more shoots per explant than GF 677 under respective KCl concentrations of the medium. Inclusion of 80 mM KCl in the medium resulted in a reduction of growth of both rootstocks. Sodium, Fe, Mn, and Zn concentration in tissues of Nemared rootstock were significantly higher than the respective values of GF 677.

Changes in abscisic acid and flower pigments during floral senescence of petunia

A. Ferrante, P. Vernieri, F. Tognoni, G. Serra

Biologia plantarum 50:581-585, 2006 | DOI: 10.1007/s10535-006-0091-4

The present work was focused on abscisic acid (ABA) changes in three differently coloured petunias during flower development and senescence. The ABA content was studied in correlation with changes of flower pigments and other phytohormones. The variations of anthocyanins and endogenous hormones were induced by treatments with 1 or 2 mM amino-oxyacetic acid (AOA), 50, 100 μM thidiazuron (TDZ) and 50 μM 6-benzyladenine (BA). ABA content decreased during bud development and increased during senescence. The AOA reduced the anthocyanins content and avoided ABA increase, while the cytokinins (BA and TDZ) did not significantly affected anthocyanin contents but increased ABA content. TDZ doubled the ABA content compared to the control. However, the treatments did not affected flower life, confirming the secondary role of ABA during flower senescence.

In vitro regeneration of Trifolium glomeratum

P. Kaushal, A. Tiwari, A. K. Roy, D. R. Malaviya, B. Kumar

Biologia plantarum 50:693-696, 2006 | DOI: 10.1007/s10535-006-0108-z

In vitro regeneration of Trifolium glomeratum, a leguminous forage species, was attempted through leaf, petiole, cotyledon, hypocotyl, collar and root explants and two media combinations. Root and collar explants showed no callus induction. Medium with 0.05 mg dm-3 α-naphthaleneacetic acid (NAA) and 0.10 mg dm-3 N6-benzyladenine (BA) was more effective for hypocotyl explant whereas cotyledon and petiole explant were more responsive to 5.0 mg dm-3 NAA and 1.0 mg dm-3 BA. Friable, green calli obtained from petiole explant on this medium showed organogenetic potential. Modified root-inducing medium having 0.21 mg dm-3 indole-3-acetic acid and 2.5 % sucrose was successful for root induction and plantlets were successfully transferred to field after hardening and Rhizobium inoculation.

Identification of RAPD markers linked to the karnal bunt resistance genes in wheat

M. Kumar, O. P. Luthra, V. Chawla, L. Chaudhary, N. Saini, A. Poonia, R. Kumar, A. P. Singh

Biologia plantarum 50:755-758, 2006 | DOI: 10.1007/s10535-006-0124-z

A set of 104 wheat recombinant inbred lines (RILs) obtained from a cross between parents resistant (HD 29) and susceptible (WH 542) to karnal bunt (KB) (caused by Neovossia indica) were screened and used to identify random amplified polymorphic DNA (RAPD) markers linked with resistance to karnal bunt as these would allow indirect marker assisted selection of KB resistant genotypes. The two parents were analysed with 92 RAPD primers. A total of 65 primers proved functional by giving scorable polymerase chain reaction (PCR) products. Of these, 21 (32 %) primers detected polymorphism between the two parental genotypes. Using these primers, bulked segregant analysis was carried out on two bulk DNAs, one obtained by pooling DNA from 10 KB resistant RILs and the other similarly derived by pooling 10 KB susceptible RILs. One marker, OPM-20 showed apparent association with resistance to KB. This was confirmed following selective genotyping of individual RILs included in the bulks.

The effect of soil drought and rehydration on growth and antioxidative activity in flag leaves of triticale

R. Baczek-Kwinta, W. Filek, S. Grzesiak, T. Hura

Biologia plantarum 50:55-60, 2006 | DOI: 10.1007/s10535-005-0074-x

Changes in the activity of catalase and superoxide dismutase, together with growth parameters were investigated in flag leaves of four winter triticale cultivars. Water stress was applied during shooting (Ds) or heading (Dh) stage. Dry matter of the main shoot and tillers was similarly restricted by both drought periods. The length of the main shoot was more constrained by Ds, in contrast to the number of tillers, restricted strongly by Dh. The resumption of growth after rehydration was clearer in cvs. Bogo and Tewo, and hence these two cultivars were considered more drought-resistant than Presto and Ugo. Neither catalase nor superoxide dismutase activity was influenced by the term of the drought and the genotype.

Radiation as a tool to remove selective marker genes from transgenic soybean plants

M. L. Tinoco, G. R. Vianna, S. Abud, P. I. M. Souza, E. L. Rech, F. J. L. Aragao

Biologia plantarum 50:146-148, 2006 | DOI: 10.1007/s10535-005-0091-9

The present study evaluated the use of γ-radiation to physically remove selective marker genes previously introduced into the soybean genome. Homozygous seeds from a transgenic soybean line carrying the gus and ahas transgenes were irradiated with γ-rays. Six plants presenting a deleted gus gene were analyzed by Southern blot to confirm removal of both ahas and gus genes. Line 1A presented an absence of the gus gene cassette and presence of the ahas gene cassette.

Antioxidant defense mechanism under salt stress in wheat seedlings

S. Mandhania, S. Madan, V. Sawhney

Biologia plantarum 50:227-231, 2006 | DOI: 10.1007/s10535-006-0011-7

The present study was carried out to study the effect of salt stress on cell membrane damage, ion content and antioxidant enzymes in wheat (Triticum aestivum) seedlings of two cultivars salt-tolerant KRL-19 and salt-sensitive WH-542. Seedlings (4-d-old) were irrigated with 0, 50 and 100 mM NaCl. Observations were recorded on the 3rd and 6th day after salt treatment and 2nd day after salt removal. The relative water content declined with induction of salt stress, more in WH-542 than in cv. KRL-19. K+/Na+ ratio in KRL-19 was higher than in WH-542. WH-542 suffered greater damage to cellular membranes due to lipid peroxidation as indicated by higher accumulation of H2O2, MDA and greater leakage of electrolytes than KRL-19. The activities of catalase, peroxidase and ascorbate peroxidase and glutathione reductase increased with increase in salt stress in both the cultivars, however, superoxide dismutase activity declined. Upon desalanization, partial recovery in the activities of these enzymes was observed in KRL-19 and very slow recovery in WH-542.

Phytotoxic effects of Cu, Zn, Cd and Pb on in vitro regeneration and concomitant protein changes in Holarrhena antidysenterica

V. Agrawal, K. Sharma

Biologia plantarum 50:307-310, 2006 | DOI: 10.1007/s10535-006-0027-z

The nodal explants of in vitro shoots of Holarrhena antidysenterica L. were cultured on Murashige and Skoog's (MS) medium augmented with 15 μM N6-benzyladenine (BA) alone (control) or supplemented with different concentrations (1, 5, 10 and 20 mg dm-3) of CdCl2, CuSO4, Pb(NO3)2 and ZnSO4. The maximum morphogenic response in terms of average shoot number (4.95 ± 0.17) was seen in control. ZnSO4 proved to be less inhibitory in comparison to CuSO4, Pb(NO3)2 and CdCl2. None of the explants cultured on CdCl2 containing medium induced multiple shoots. Maximum protein content [3.80 ± 0.04 mg g-1(f.m.)] was observed in control and slightly less [3.50 ± 0.02 mg g-1(f.m.)] in tissues exposed to 1 mg dm-3 of CuSO4 and minimum [1.00 ± 0.02 mg g-1(f.m.)] in Zn treated (20 mg dm-3) explants. SDS-PAGE analysis of the treated tissues revealed that two new polypeptides (29 and 20 kDa) in response to Cu and Zn treatment, respectively, have been synthesized.

Differential antioxidant responses in catalase-deficient maize mutants exposed to norflurazon

S. Jung, S. U. Chon, Y. I. Kuk

Biologia plantarum 50:383-388, 2006 | DOI: 10.1007/s10535-006-0053-x

Maize catalase (CAT) mutants lacking in CAT isozymes were used to investigate the response of CAT and superoxide dismutase (SOD) to norflurazon (NF) caused oxidative stress in 18-d post-pollination scutella. NF treatment caused an increase in malonyldialdehyde content, which is an indicator of oxidative stress, and a decrease in a content of photoprotectant carotenoids in the scutella. CAT activity decreased greatly with increasing NF concentration in standard maize line (W64A) and CAT-2 null mutant (WA10C), however, it remained relatively constant in CAT-2/CAT-3 double null mutant (WDN10). Cat1 transcript increased in the NF-treated scutella of W64A and WDN10, with a greater Cat1 transcript in WDN10, whereas Cat2 transcript decreased in the NF-treated scutella of all lines examined. In all lines, SOD activities were not changed noticeably at various NF concentrations. In the scutella of W64A, Sod4A decreased in response to NF but the other Sod transcript contents were unchanged. The CAT-deficient mutants reacted with raised transcripts of Sod1, Sod3, Sod4 or Sod4A.

Effect of jasmonic acid on in vitro explant growth and microtuberization in potato

Z. J. Zhang, W. J. Zhou, H. Z. Li, G. Q. Zhang, K. Subrahmaniyan, J. Q. Yu

Biologia plantarum 50:453-456, 2006 | DOI: 10.1007/s10535-006-0069-2

The shoot fresh mass, root length and root numbers of two potato (Solanum tuberosum L.) cultivars Favorita and Helanwuhua were increased significantly by the application of 0.2 - 2 mg dm-3 jasmonic acid (JA) in the Murashige and Skoog medium. However, the growth of potato explants was inhibited by JA at high concentrations (20 - 50 mg dm-3). Chlorophyll content in explant leaves decreased with an increase in the concentration of JA. In leaves treated with 0.2 mg dm-3 JA acid peroxidase activity increased, while in the leaves treated with more than 2 mg dm-3 JA peroxidase activity decreased. Under the dark, the microtuber numbers, fresh mass and percentage of big microtubers of two potato cultivars were not promoted by the application of 0.2 - 50 mg dm-3 JA.

Characterization of 5-enolpyruvylshikimate 3-phosphate synthase gene from Camptotheca acuminata

Y. Gong, Z. Liao, M. Chen, B. Guo, H. Jin, X. Sun, K. Tang

Biologia plantarum 50:542-550, 2006 | DOI: 10.1007/s10535-006-0086-1

5-enolpyruvylshikimate 3-phosphate synthase (EPSPS; 3-phosphoshikimate 1-carboxyvinyl-transferase; EC 2.5.1.19) is a critical enzyme in the shikimate pathway. The full-length EPSPS cDNA sequence (CaEPSPS, GenBank accession number: AY639815) was cloned and characterized for the first time from woody plant, Camptotheca acuminata, using rapid amplification of cDNA ends (RACE) technique. The full-length cDNA of CaEPSPS was 1778 bp containing a 1557 bp ORF (open reading frame) encoding a polypeptide of 519 amino acids with a calculated molecular mass of 55.6 kDa and an isoelectric point of 8.22. Comparative and bioinformatic analyses revealed that CaEPSPS showed extensive homology with EPSPSs from other plant species. CaEPSPS contained two highly conserved motifs owned by plant and most bacteria EPSPSs in its N-terminal region. Phylogenetic analysis revealed that CaEPSPS belonged to dicotyledonous plant EPSPS group. Tissue expression pattern analysis indicated that CaEPSPS was constitutively expressed in leaves, stems and roots, with the lower expression being found in roots. The coding sequence of CaEPSPS gene was successfully subcloned in a plasmid-Escherichia coli system (pET-32a), and the cells containing the plasmid carrying the CaEPSPS gene exhibited enhanced tolerance to herbicide glyphosate, compared to the control.

Variability in sequence of Strawberry vein banding virus

D. Hanzliková Vašková*, J. Špak, K. Petrzik

Biologia plantarum 50:660-666, 2006 | DOI: 10.1007/s10535-006-0103-4

The variability of the Strawberry vein banding virus (SVBV) isolates was investigated. In total 267 strawberry plants from 6 European countries and North America were tested for the presence of SVBV. Only 4 plants were positive. Partial genomic sequences of the capsid protein gene of three North American SVBV isolates were determined. Only minor sequence variability (0.7 %) was observed during a comparison with existing nucleotide data of the European and the North American isolates (9 isolates). No variability at all could be found in the annealing regions of primers and probes used for molecular detection of SVBV for these isolates. However, a comparison to a sequence of a Chinese isolate published recently revealed a much higher DNA sequence difference (9.5 %) of this isolate.

Photosynthetic characteristics and growth of Mosla hangchowensis and M. dianthera under different irradiances

J. -X. Liao, Y. Ge, B. -H. Guan, Y. -P. Jiang, J. Chang

Biologia plantarum 50:737-740, 2006 | DOI: 10.1007/s10535-006-0119-9

The photosynthetic and growth characteristics of Mosla hangchowensis, an endangered species and M. dianthera, a weed, were compared under three irradiances (PPFD) similar to shaded forest understory, forest edge and open land. Both species grown at lower PPFD had lower PPFD-saturated photosynthetic rate (Pmax), saturation PPFD, compensation PPFD, apparent quantum yield, total mass and root/shoot ratio and higher specific leaf area, leaf area ratio and height ratio. At the same PPFD treatment, however, specific leaf area and leaf area ratio of M. hangchowensis were higher than those of M. dianthera, other above parameters were lower than those of M. dianthera. Water use efficiency did not differ between M. hangchowensis and M. dianthera, but it reached its maximum at 70 % of full PPFD. These results suggested the optimum habitat of M. hangchowensis is the forest edge.

Merchant, S., Briggs, W.R., Chander, V.L. (ed.): Annual Review of Plant Biology. Volume 56 (2005).-Annual Reviews

Z. Šesták

Biologia plantarum 50:797, 2006 | DOI: 10.1007/s10535-006-0135-9

Role of phytohormones in organogenic ability of elm multiplicated shoots

J. Mala, A. Gaudinova, P. Dobrev, J. Eder, M. Cvikrova

Biologia plantarum 50:8-14, 2006 | DOI: 10.1007/s10535-005-0068-8

The study presents the comparative analyses of endogenous contents of auxin (IAA), cytokinins (CKs), polyamines (PAs), and phenolic acids (PhAs) in apical and basal parts of elm multiplicated shoots with regard to the organogenic potential. The shoot-forming capacity was higher in the apical part than in the basal part. However, the timing of root formation was in the apical type of explant significantly delayed (compared with the organogenic potential of basal part). Significantly higher contents of free bases, ribosides and ribotides of isopentenyl adenine, zeatin and dihydrozeatin that were found in the apical segments, might be considered as the most important factor affecting in vitro shoot formation. The content of endogenous free IAA was approximately three times higher in the basal shoot parts than in the apical parts. The amounts of putrescine and spermidine were higher in the apical part which generally contains less differentiated tissues than the basal part of shoot. The predominant PhA in both types of explants was caffeic acid, and concentrations of other PhAs decreased in the following order: p-coumaric, ferulic, sinapic, vanillic, chlorogenic, p-hydroxybenzoic and gallic acids. The contents of all determined PhAs in their free forms and higher contents of glycoside-bound p-coumaric, ferulic and sinapic acids, precursors for lignin biosynthesis, were found in the basal parts.

Evaluation of genetic relationship in Typhonium species through random amplified polymorphic DNA markers

G. R. Rout

Biologia plantarum 50:127-130, 2006 | DOI: 10.1007/s10535-005-0086-6

Studies were undertaken to identify genetic relationships in three species of Typhonium and to evaluate the genetic variance within populations of Typhonium trilobatum, Typhonium roxburghii and Typhonium flagelliforme by using random amplified polymorphic DNA (RAPD) markers. A total of 193 distinct DNA fragments ranging from 0.2 to 3.2 kb, were amplified using 22 selected random decamer primers. The cluster analysis indicated that the three species of Typhonium formed two clusters: the first one consisted of T. trilobatum and T. roxburghii, the second one was represented by T. flagelliforme. A maximum similarity of 63 % was observed in T. trilobatum and T. roxburghii. T. flagelliforme shared up to 43 % similarity with T. trilobatum and T. roxburghii. The closest genetic distance was obtained within populations of different Typhonium species.

Shoot apical meristem structure and STM expression in has mutant of Arabidopsis thaliana

D. Janosevic, S. Budimir

Biologia plantarum 50:193-197, 2006 | DOI: 10.1007/s10535-006-0006-4

Wild-type and the handshake (has) mutants in Arabidopsis thaliana were analyzed. Compared to the wild-type, has mutants display a number of morphological alterations, which can largely be traced back to altered meristem function. Analyses of apical meristem of mutant plants showed that mutation affected meristem structure and patterns of STM expression.

Circumnutation of Arabidopsis thaliana inflorescence stems

N. Someya, K. Niinuma, M. Kimura, I. Yamaguchi, H. Hamamoto

Biologia plantarum 50:287-290, 2006 | DOI: 10.1007/s10535-006-0022-4

Time-lapse monitoring using infrared imaging revealed a distinct change in circumnutatory behaviour of Arabidopsis inflorescence stems by dark treatment, which drastically increased curvature and decreased nutation frequency. Re-irradiation during dark treatment had different effect on the nutation frequency and the curvature, suggesting that radiation condition controls them through different mechanism.

Effects of storage temperature and sucrose on bulblet growth, starch and protein contents in in vitro cultures of Hyacinthus orientalis

C. H. Chung, Y. M. Chung, S. J. Yang, E. K. Ko, S. J. Jeong, J. S. Nam, G. T. Kim, Y. B. Yi

Biologia plantarum 50:346-351, 2006 | DOI: 10.1007/s10535-006-0048-7

The scale segments of the bulblets of Hyacinthus orientalis L. cv. Anna Marie were examined to improve their growth and development with cold-pretreatment and sucrose. The cold-pretreated (4 °C for 4 months) segments showed higher growth and better development of the bulblets on medium without sucrose than ones stored at 20 °C. A rapid decrease in starch content of bulb pieces was found during the first 2 weeks in all cultures and thereafter the content decreased gradually. A scanning electron microscopic observation during the bulblet growth and development showed a gradual decreasing trend of the starch granules from 2 to 16 weeks of the cultures. SDS-PAGE electrophoresis revealed the presence of a characteristic polypeptide of approximately 45 kD, which is assumed to be a major storage protein in the bulblets.

Thidiazuron induced high frequency axillary shoot multiplication in Psoralea corylifolia

M. Faisal, M. Anis

Biologia plantarum 50:437-440, 2006 | DOI: 10.1007/s10535-006-0064-7

The effect of thidiazuron (TDZ) was studied on in vitro axillary shoot proliferation from nodal explant of Psoralea corylifolia - an endangered medicinal plant. Proliferation of shoots was achieved on Murashige and Skoog (MS) medium supplemented with 0.5, 1, 2, 3, 4 and 5 μM TDZ. The maximum number (13.6 ± 1.4) of shoots per explant were obtained from nodal segment cultured on 2 μM TDZ for 4 weeks and this increased to 29.7 ± 2.1 on hormone free MS medium after 8 weeks. The in vitro proliferated and elongated shoots were transferred individually on a root induction medium containing 0.5 μM indole-3-butyric acid (IBA) and within 4 weeks 4.5 ± 0.5 roots per shoot were produced. The regenerated plantlets were transferred to 1:1 soil and vermiculite mixture and acclimatized with 80 % survival rate. Fully acclimatized plants were grown in garden soil in greenhouse and their morphological and physiological parameters were comparable with seedlings.

Genetic transformation of Rhamnus fallax and hairy roots as a source of anthraquinones

N. Rosić, I. Momčilović, N. Kovačević, D. Grubišić

Biologia plantarum 50:514-518, 2006 | DOI: 10.1007/s10535-006-0081-6

Hairy roots of Rhamnus fallax Boiss. were induced using Agrobacterium rhizogenes strain A4M70GUS. The culture established on Woody plant media (WPM) showed a typical hairy root phenotype: rapid growth, reduced apical dominance and root plagiotropism. Seven clones of R. fallax were selected on the basis of their differences in colour and the root branching. The growth of hairy root culture, measured through gain in fresh mass, was done under 16-h photoperiod or in the dark. An increase in anthraquinone (AQ) content was obtained in clones with yellow and less branched roots, like clone 1 [16.43 mg g-1(d.m.)] and clone 7 [14.21 mg g-1(d.m.)], compared with other analysed transformed and non-transformed tissue. This study presents the first report of successful transformation of any species from family Rhamnaceae by A. rhizogenes and analysis of AQ production in transformed tissue.

Inhibition of photosynthetic processes in foliose lichens induced by temperature and osmotic stress

J. Hájek, M. Barták, J. Dubová

Biologia plantarum 50:624-634, 2006 | DOI: 10.1007/s10535-006-0098-x

Negative effects of osmotically-induced dehydration of two foliose lichen species, Lasallia pustulata and Umbilicaria hirsuta, was studied at physiological (22 °C), low (5 °C) and freezing temperature (-10 °C), using chlorophyll (Chl) fluorescence. In both species, exposure to increasing sucrose concentrations led to a pronounced decrease in potential (FV/FM), and actual (Φ2) quantum yields of photochemical processes in photosystem 2. L. pustulata was more sensitive to osmotic stress, because comparable osmotic dehydration inhibited FV/FM and Φ2 more than in U. hirsuta. Critical concentration of sucrose that fully inhibited photochemical processes of photosynthesis was 2.5 M, which represented water potential (Ψw) of -18.8 MPa. Decrease in background Chl fluorescence (F0) and increase in non-photochemical quenching (qN) revealed two phases of osmotic stress in lichens: phase I with no change (Ψw 0 to -6.6 MPa) and phase II (Ψw -11.3 to -18.8 MPa) typical by substantial change in Chl fluorescence parameters. Effects of thallus anatomy on species-specific response to osmotic dehydration is discussed and attributed to the results obtained by optical microscopy and Chl fluorescence imaging technique.

Influence of salinity and abscisic acid on the O2 uptake by N2-fixing nodules of common bean

M. Jebara, S. Harzalli-Jebara, H. Payré, M. E. Aouani, J. J. Drevon

Biologia plantarum 50:717-721, 2006 | DOI: 10.1007/s10535-006-0114-1

The effects of NaCl and ABA on the respiration of N2-fixing nodules were analysed in common bean (Phaseolus vulgaris) inoculated with Rhizobium tropici the reference strain CIAT899. Shoot and nodule growth was more inhibited by NaCl than root growth. The O2 uptake by nodulated roots at 21 kPa O2 was significantly inhibited by salinity. Raising pO2 stimulated nodule respiration more under NaCl treatment than for the control, although it did not compensate totally for the inhibitory effect of NaCl. Short NaCl application was less destructive than long term application. Also, the external application of ABA inhibited nodule respiration, and this inhibition was partly compensated by raising pO2.

Response of the pear rootstock to boron and salinity in vitro

T. E. Sotiropoulos, S. Fotopoulos, K. N. Dimassi, V. Tsirakoglou, I. N. Therios

Biologia plantarum 50:779-781, 2006 | DOI: 10.1007/s10535-006-0130-1

The effects of boron and NaCl induced salinity on growth and mineral composition of the pear (Pyrus communis L.) rootstock OH × F 333 shoots cultured in vitro were investigated. Shoots were grown in vitro for seven weeks on a Murashige and Skoog medium containing two B concentrations (0.1 and 2 mM) combined with five NaCl concentrations (0, 10, 20, 40, and 80 mM). The longest shoots were produced at 0.1 mM B and 80 mM NaCl, but highest number of shoots were produced at 0.1 mM B and 0-20 mM NaCl. Inclusion of 20 and 40 mM NaCl in the culture medium significantly increased fresh mass of cultures compared to 0 mM NaCl for all B concentrations tested. The concentrations of P, K, Ca, Mg, Na, Fe, Mn and Zn of plants were affected by B and NaCl concentration of the medium.

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