biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 961 to 990 of 6171:

Genetic diversity in important members of Cucurbitaceae using isozyme, RAPD and ISSR markers

B. Sikdar, M. Bhattacharya, A. Mukherjee, A. Banerjee, E. Ghosh, B. Ghosh, S. C. Roy

Biologia plantarum 54:135-140, 2010 | DOI: 10.1007/s10535-010-0021-3

Biochemical and molecular markers have been used on eleven species of Cucurbitaceae collected from lower Gangetic plains. Six enzyme systems were selected. Among 40 primers examined, 14 random amplified polymorphic DNA (RAPD) and 10 inter-simple sequence repeat (ISSR) primers were selected for the analysis. Generated RAPD (100) and ISSR (100) fragments showed high variations among the species. Jaccard similarity coefficients were used for the evaluation of pairwise genetic divergence; cluster analysis of the similarity matrices was performed to estimate interspecific diversity. Further, principal coordinate analysis was performed to evaluate the resolving power of the three marker systems to differenciate among the species.

Multifunctional genes: the cross-talk among the regulation networks of abiotic stress responses

X. J. Hu, Z. B. Zhang, P. Xu, Z. Y. Fu, S. B. Hu, W. Y. Song

Biologia plantarum 54:213-223, 2010 | DOI: 10.1007/s10535-010-0039-6

Unfavourable environment brings many kinds of stresses to plants. To survive such stresses, efficient resistance is required for the plants. Multifunctional genes enable the cross-talk among the various abiotic stress resistance systems. This paper reviews the action mechanisms of multifunctional genes. These genes can be classified into three groups: genes encoding diverse proteins through mRNA splicing (e.g. AOX in rice); genes like BADH, P5CS and HAV that control drought, salinity, osmotic and heat stress resistance; and a gene family, for example AQP, controlling transport of many compounds including water and nutrients. These genes participate in signal sensing and transduction, transcriptional regulation and functional gene activation during stress resistance induction. Furthermore, it should be noted that, under abiotic stresses, the regulation cascades are mutually interdependent and there also exists a close correlation between those cascades and normal plant growth and development.

Somatic embryogenesis from rhizome explants of Cymbopogon winterianus

T. Dey, S. Bhattacharya, P. D. Ghosh

Biologia plantarum 54:325-328, 2010 | DOI: 10.1007/s10535-010-0056-5

Plantlet regeneration through indirect somatic embryogenesis was attempted from rhizome derived callus of Cymbopogon winterianus Jowitt (cv. Jorlab2). Optimum callus was induced on Murashige and Skoog (MS) basal medium supplemented with 4 mg dm-3 2,4-dichlorophenoxyacetic acid (2,4-D). Initially the callus was friable, shiny white and watery in nature. After subculturing on MS medium containing 2,4-D and kinetin (Kn), callus was transferred onto the MS medium supplemented with 2,4 -D, Kn and coconut water to induce somatic embryogenesis. Optimum somatic embryogenesis (78.33 %) was achieved on MS medium containing 3.0 mg dm-3 2,4-D and 0.5 mg dm-3 Kn. High frequency (65 %) plantlet conversion from embryos was achieved in MS medium supplemented with 2 mg dm-3 N6-benzyladenine (BA), 0.5 mg dm-3 Kn, 0.2 mg dm-3 calcium pantothenate and 0.2 mg dm-3 biotin.

Gibberellin retards chlorophyll degradation during senescence of Paris polyphylla

J. R. Li, K. Yu, J. R. Wei, Q. Ma, B. Q. Wang, D. Yu

Biologia plantarum 54:395-399, 2010 | DOI: 10.1007/s10535-010-0072-5

Chlorophyll (Chl) degradation was found to be related to the endogenous gibberellin (GA) content in shoots during senescence in the perennial plant Paris polyphylla var. yunnanensis (Franch.). Treatment with gibberellic acid (GA3) significantly increased the content of endogenous GAs (GA4 + GA7), retarded the senescence of shoots, and the degradation of proteins and Chl. Chlorophyllase, Mg-dechelation and peroxidase activities increased more in control plants than in those treated with GA3. GA3 treatment also protected lipoxygenase activity, which decreased significantly in control plants.

Leaf structural modifications in Populus × euramericana subjected to Zn excess

D. Di Baccio, A. Minnocci, L. Sebastiani

Biologia plantarum 54:502-508, 2010 | DOI: 10.1007/s10535-010-0088-x

In previous experiments elevated but sub-symptomatic applications of Zn (0.1 mM and 1 mM) caused impairments in growth parameters and photosynthetic performance of Populus × euramericana (Dode) Guinier clone I-214. The aim of this work was to evaluate leaf morphological and anatomical traits in this clone in response to the same Zn concentrations. The results showed that Zn treatments induced variations in leaf dry mass, area, mesophyll thickness, intercellular spaces, stomatal density and size. Stronger modifications, especially concerning stomata characteristics induced by 1 mM Zn, were consistent with physiological impairments while those induced by 0.1 mM Zn suggested a compensatory strategy for maintaining functional integrity.

Changes in biomass and photosynthetic parameters of tomato plants exposed to trivalent and hexavalent chromium

F. S. Henriques

Biologia plantarum 54:583-586, 2010 | DOI: 10.1007/s10535-010-0105-0

Tomato plants were treated for two weeks with different concentrations of Cr(III) or Cr(VI) compounds to compare their toxic effects. The concentration of total Cr in plant tissues increased linearly with its concentration in the growth medium and Cr accumulated largely in the roots, regardless of the form in which it was supplied to the plant. All measured plant growth parameters were negatively affected by Cr, but Cr(VI) showed much more pronounced toxic effects. Leaf net photosynthetic rate (PN) was decreased by both Cr forms, and the decrease was also greater for Cr(VI). Cr(III) caused no significant effect on leaf stomatal conductance, whereas Cr(VI) reduced it. Cr(VI) also markedly reduced the variable to maximum chlorophyll a fluorescence ratio, measured in dark-adapted leaves.

An EST-SSR marker linked with yellow rust resistance in wheat

S. Ercan, F. Ertugrul, Y. Aydin, F. S. Akfirat, S. Hasancebi, K. Akan, Z. Mert, N. Bolat, O. Yorgancilar, A. Altinkut-Uncuoglu

Biologia plantarum 54:691-696, 2010 | DOI: 10.1007/s10535-010-0122-z

Expressed sequenced tags containing simple sequence repeats (EST-SSRs) were used to identify molecular markers associated with yellow rust resistance in wheat (Triticum aestivum L.). A cross between yellow rust resistant (PI178383) and susceptible (Harmankaya99) wheat genotypes was performed and respective DNA pools from the resistant and susceptible F2 seedlings were constructed. 78 EST-SSR primers were used for bulked segregant analysis and one EST-SSR marker (Pk54), identified as 200 bp fragment, was present in the resistant parent and resistant F2 hybrids but not in the susceptible ones. 108 wheat genotypes differing in yellow rust resistance were screened with Pk54 and 68 % of the wheat genotypes, known to be yellow rust resistant, had the Pk54 marker, further suggesting that the presence of this marker correlates with yellow rust resistance.

Is heterosis noticeable in the callus response of winter durum wheat F1 hybrids?

A. Ozbay, M. Özgen

Biologia plantarum 54:769-772, 2010 | DOI: 10.1007/s10535-010-0139-3

The effect of heterosis on callus induction, callus mass and number of regenerated plants from mature embryo cultures of winter durum wheat (Triticum durum Desf.) hybrids was studied. A total of 14 F1 hybrids and their parents were used for mature embryo culture. The statistical analysis of the results revealed that positive heterosis in callus mass was determined in only one F1 hybrid and in number of regenerated plants in two F1 hybrids. Plants regenerated in vitro were successfully established in soil. Hybrid genotypes may be used to obtain callus and regenerated plants with vigour comparable to their parents.

Organogenesis and Agrobacterium tumefaciens-mediated transformation of Eucalyptus saligna with P5CS gene

R. Dibax, C. Deschamps, J. C. Bespalhok Filho, L. G. E. Vieira, H. B. C. Molinari, M. K. F. De Campos, M. Quoirin

Biologia plantarum 54:6-12, 2010 | DOI: 10.1007/s10535-010-0002-6

The purpose of this research was Eucalyptus saligna in vitro regeneration and transformation with P5CSF129A gene, which encodes Δ1-pyrroline-5-carboxylate synthetase (P5CS), the key enzyme in proline biosynthesis. After selection of the most responsive genotype, shoot organogenesis was induced on leaf explants cultured on a callus induction medium (CI) followed by subculture on a shoot induction medium (SI). Shoots were subsequently cultured on an elongation medium (BE), then transferred to a rooting medium and finally transplanted to pots and acclimatized in a greenhouse. For genetic transformation, a binary vector carrying P5CSF129A and uidA genes, both under control of the 35SCaMV promoter, was used. Leaves were co-cultured with Agrobacterium tumefaciens in the dark on CI medium for 5 d. The explants were transferred to the selective callogenesis inducing medium (SCI) containing kanamycin and cefotaxime. Calli developed shoots that were cultured on an elongation medium for 14 d and finally multiplied. The presence of the transgene in the plant genome was demonstrated by PCR and confirmed by Southern blot analysis. Proline content in the leaves was four times higher in transformed than in untransformed plants while the proline content in the roots was similar in both types of plants.

Changes in AFLP and SSR DNA polymorphisms induced by short-term space flight of rice seeds

J. Y. Lu, W. L. Zhang, H. Xue, Y. Pan, C. H. Zhang, X. H. He, M. Liu

Biologia plantarum 54:112-116, 2010 | DOI: 10.1007/s10535-010-0016-0

Differences of both amplified fragment length polymorphism (AFLP) and simple sequence repeat (SSR) polymorphisms were compared between the 60-d-old rice (Oryza sativa L. cv. DH7) and F3 rice plants (SP3) derived from seed, which endured a 7-d-space flight in March 2002. Total leaf AFLP DNA bands amplified from 22 primer pairs were 537 in DH7, whereas 562 in SP3. From the total 267 SSR DNA bands generated by 267 primer pairs, 39 were polymorphic with 22 larger (56 %) or 17 smaller (44 %) fragment size bands. The greatest numbers of AFLP DNA bands were amplified by primer E1M1 in DH7 (33) and E3M1 in SP3 (35), whilst the least by E4M3 in DH7 (14) and E5M2 in SP3 (16).

A low-noise multi-channel device for the monitoring of systemic electrical signal propagation in plants

P. Ilík, V. Hlaváčková, P. Krchňák, J. Nauą

Biologia plantarum 54:185-190, 2010 | DOI: 10.1007/s10535-010-0032-0

Long-distance electrical signals generated in locally stimulated plants are linked with systemic physiological responses. The propagation of electrical signal through a plant can be measured by multiple electrodes attached to different sites of a plant body. As this signal has to be measured with the sensitivity of tens of microvolts, it can be easily disturbed by power-line hums or external electromagnetic fields. These disturbances can mimic the action potentials generated by a plant. In this work, we present a brief summary of various experimental approaches to the measurement of surface electrical potential (SEP) on a plant and a description of our multi-channel device for the SEP measurement. The main advantages of our measuring system are galvanic separation of the measuring unit, resulting in the elimination of power-line disturbances, and simple and stable contact of Ag/AgCl-peletted electrodes with the plant surface, facilitated by an ordinary gel used in human electrocardiography. These improvements enabled us to detect unperturbed variation (slow) and action (fast) potentials on a plant, as demonstrated by the four-electrode measurement of the electrical signal propagation in a locally wounded tomato plant.

Cold tolerance, water relations and accumulation of osmolytes in Bituminaria bituminosa

D. J. Walker, P. Romero, E. Correal

Biologia plantarum 54:293-298, 2010 | DOI: 10.1007/s10535-010-0051-x

We determined the cold (freezing) tolerance of five Spanish populations of the perennial shrub Bituminaria bituminosa (L.) C.H. Stirton (Fabaceae), as the temperature at which 50 % of leaf electrolytes are released (LT50) using leaves of field-grown plants, obtained in two winters and one spring. The freezing tolerance was greater in winter and reflected the minimum temperatures at the original sites from which the populations were obtained. Tolerance in vitro was related to osmotic adjustment in the leaves; more negative osmotic potential values and more positive pressure potential values (MPa) were associated with greater tolerance. Tolerance and osmotic potential were not related to leaf cation contents but to leaf amino acids, soluble sugar and proline contents.

Cytological studies on meiosis and male gametophyte development in autotetraploid cucumber

W. -P. Diao, S. -Y. Bao, B. Jiang, L. Cui, C. -T. Qian, J. -F. Chen

Biologia plantarum 54:373-376, 2010 | DOI: 10.1007/s10535-010-0067-2

With improved staining and chromosome preparation techniques, meiosis of pollen mother cells (PMCs) and male gametophyte development in autotetraploid cucumber (Cucumis sativus L.) was studied to understand the correlation between chromosomes behaviour and fertility. Various chromosome configurations, e.g. multivalent, quadrivalents, trivalents, bivalents and univalents were observed in most PMCs at metaphase I. Lagging chromosomes were frequently observed at anaphase in both meiotic divisions. In addition, chromosomes segregations were not synchronous and equal in some PMCs during anaphase II and telophase II. Dyads, triads, tetrads with micronuclei and polyads were observed at tetrad stage, and the frequencies of normal tetrad with four microcytes were only 55.4 %. The frequency of abnormal behaviour in each stage of meiosis was counted, and the average value was 37.2 %. The normal meiotic process could be accomplished to form the microspore tetrads via simultaneous cytokinesis. Most microspores could develop into fertile gametophytes with 2 cells and 3 germ pores through the following stages: single-nucleus early stage, single-nucleus late stage and 2-celled stage. The frequency of abnormalities was low during the process of male gametophyte development. The germination rate of pollen grains was 46.9 %. These results suggested that abnormal meiosis in PMCs was the reason for low pollen fertility in the autotetraploid cucumber.

Role of calcium in nitric oxide-induced programmed cell death in tobacco protoplasts

Y. Wang, J. S. Lin, G. X. Wang

Biologia plantarum 54:471-476, 2010 | DOI: 10.1007/s10535-010-0083-2

We tried to determine the mechanisms by which Ca2+ mediated NO-induced programmed cell death (PCD) in tobacco protoplasts. Treatment of tobacco protoplasts with the NO donor sodium nitroprusside (SNP) resulted in a rapid [Ca2+]cyt accumulation and decrease in mitochondrial membrane potential (ΔΨm) before the appearance of PCD. NO-induced PCD could be largely prevented not only by NO scavenger c-PTIO, but also by EGTA (Ca2+ chelator), LaCl3 (Ca2+-channel blocker) or CsA (a specific mitochondrial permeability transition pore inhibitor, which also inhibit Ca2+ cycling by mitochondria). All results suggested that NO-induced PCD is mediated through mitochondrial pathway and regulated by Ca2+.

Fluoride affects distribution of absorbed excitation energy more in favour of photosystem 1

P. Singh-Rawal, A. Jajoo, S. Bharti

Biologia plantarum 54:556-560, 2010 | DOI: 10.1007/s10535-010-0099-7

The effects of fluoride on the photosynthetic electron transport chain have been studied in spinach thylakoid membranes. Inhibition in photosystem (PS) 2 electron transport rates and a subsequent increase in PS 1 electron transport rate indicated a possibility of state transitions being a mechanism of fluoride action. This hypothesis was further confirmed by the increase in fluorescence emission F735/685 at 77 K, a decrease in variable to maximum fluorescence ratio (Fv/Fm) at room temperature and increase in the absorption cross section of PS 1 suggesting that fluoride affects distribution of the excitation energy in favour of PS 1 at the expense of PS 2.

Genetic diversity of elite sweet sorghum genotypes assessed by SSR markers

Z. Pei, J. Gao, Q. Chen, J. Wei, Z. Li, F. Luo, L. Shi, B. Ding, S. Sun

Biologia plantarum 54:653-658, 2010 | DOI: 10.1007/s10535-010-0116-x

To determine genetic diversity among 47 elite sweet sorghum (Sorghum bicolor ssp. bicolor L.) genotypes, 46 simple sequence repeat (SSR) markers evenly distributed on all 10 chromosomes were selected. All SSR markers used were polymorphic among the genotypes studied. A total of 228 alleles were identified with an average of 4.96 alleles per marker. Furthermore, the genotypes studied showed medium genetic diversity. Clustering analysis grouped the 47 genotypes into 5 distinct clusters.

Hydrogen sulfide alleviated chromium toxicity in wheat

H. Zhang, L. -Y. Hu, P. Li, K. -D. Hu, C. -X. Jiang, J. -P. Luo

Biologia plantarum 54:743-747, 2010 | DOI: 10.1007/s10535-010-0133-9

Effects of H2S on seed germination under chromium (Cr) stress were investigated in wheat (Triticum aestivum L.). Under Cr stress, the percentage of germination of wheat seeds decreased, but this decrease could be alleviated by pretreatment with NaHS, an H2S donor, in a dose-dependent manner. Furthermore, NaHS significantly enhanced the activities of amylase, esterase, superoxide dismutase, catalase, ascorbate peroxidase, and guaiacol peroxidase in Cr-stressed germinating seeds, whereas reduced the Cr-induced increase in lipoxygenase activity and over-production of malondialdehyde (MDA) and H2O2, and sustained slightly higher content of endogenous H2S.

Characterization of the antioxidant system during the vegetative development of pea plants

P. Díaz-Vivancos, G. Barba-Espín, M. J. Clemente-Moreno, J. A. Hernández

Biologia plantarum 54:76-82, 2010 | DOI: 10.1007/s10535-010-0011-5

The antioxidative system was studied during the development of pea plants. The reduced glutathione (GSH) content was higher in shoots than in roots, but a greater redox state of glutathione existed in roots compared with shoots, at least after 7 d of growth. The 3-d-old seedlings showed the highest content of oxidised ascorbate (DHA), which correlated with the ascorbate oxidase (AAO) activity. Also, the roots exhibited higher DHA content than shoots, correlated with their higher AAO activity. The activities of antioxidant enzymes were much higher in shoots than in roots. Ascorbate peroxidase (APX) activity decreased during the progression of growth in both shoots and roots, whereas peroxidase (POX) activity strongly increased in roots, reflecting a correlation between POX activity and the enhancement of growth. Catalase activity from shoots reached values nearly 3 or 4-fold higher than in roots. The monodehydroascorbate reductase (MDHAR) activity was higher in young seedlings than in more mature tissues, and in roots a decrease in MDHAR was noticed at the 11th day. No dehydroascorbate reductase (DHAR) was detected in roots from the pea plants and DHAR values detected in seedlings and in shoots were much lower than those of MDHAR. In shoots, GR decreased with the progression of growth, whereas in roots an increase was seen on the 9th and 11th days. Finally, superoxide dismutase (SOD) activity increased in shoots during the progression of growth, but specific SOD activity was higher in roots than in shoots.

Characteristics of chlorophyll fluorescence and antioxidative system in super-hybrid rice and its parental cultivars under chilling stress

Y. H. Zhang, L. J. Chen, J. L. He, L. S. Qian, L. Q. Wu, R. F. Wang

Biologia plantarum 54:164-168, 2010 | DOI: 10.1007/s10535-010-0027-x

Characteristics of chlorophyll fluorescence and antioxidative system were investigated in rice (Oryza sativa L.) super-hybrid Liangyoupeijiu (LYPJ), maternal cultivar Peiai64s, and paternal cultivar indica rice 9311 under chilling stress. During 6-d chilling treatment, chlorophyll content of all three genotypes was gradually declined. However, the decrease in photosystem 2 (PS 2) maximum photochemical efficiency (Fv/Fm) and quantum yield of PS 2 (ΦPS2) was less expressive in LYPJ than in parental cultivars The electrolyte leakage and malondialdehyde content in all cultivars increased after chilling treatment, but LYPJ exhibited the least increasing tendency. Activities of superoxide dismutase (SOD), ascorbate peroxidase (APX) and glutathione reductase (GR) were higher in LYPJ than in parental cultivars. The results demonstrated that tolerance to chilling stress in LYPJ might be adopted mostly from its maternal cultivar.

Production and selection of marker-free transgenic plants of Petunia hybrida using site-specific recombination

R. S. Khan, I. Nakamura, M. Mii

Biologia plantarum 54:265-271, 2010 | DOI: 10.1007/s10535-010-0046-7

MAT (multi-auto-transformation) vector system has been one of the strategies to excise the selection marker gene from transgenic plants. Agrobacterium tumefaciens strain EHA105 harboring an ipt-type MAT vector, pNPI132, was used to produce morphologically normal transgenic Petunia hybrida 'Dainty Lady' employing isopentenyl transferase (ipt) gene as the selection marker gene. β-glucuronidase (GUS) gene was used as model gene of interest. Infected explants were cultured on Murashige and Skoog (MS) medium without plant growth regulators (PGR) and antibiotics. Shoots showing extreme shooty phenotype (ESP) were produced from the adventitious shoots separated from the explants. Visual selection was carried out until production of morphologically normal shoots (approximately 4 months after infection). Histochemical GUS assay detected GUS gene in both ESP and normal shoots. PCR analysis confirmed the presence of model gene (GUS gene) and excision of the selection marker (ipt) gene in the normal transgenic plants. The insertion sites (1-3 for ipt gene and 1-2 for GUS gene) were detected by Southern blot analysis using DIG-labeled probes of both genes. These results show that ipt-type MAT vector can be used successfully to produce marker-free transgenic Petunia hybrida plants on PGR- and antibiotic-free MS medium.

2D random walk representation of Begonia × tuberhybrida multiallelic loci used for germplasm identification

I. Wiesner, D. Wiesnerová

Biologia plantarum 54:353-356, 2010 | DOI: 10.1007/s10535-010-0062-7

In this study, we wanted to inspect whether the evolutionary driven differences in primary sequences could correlate, and thus predict the genetic diversity of related marker loci, which is an important criterion to assess the quality of any DNA marker. We adopted new approach of quantitative symbolic DNA sequence analysis called DNA random walk representation to study multiallelic marker loci from Begonia × tuberhybrida Voss. We described significant correlation of random walk-derived digital invariants to genetic diversity of the marker loci. Specifically, on the 3D-contour plot of multivariate principal component analysis (PCA), we revealed statistical correlation between the first two PCA factors and the number of alleles per marker locus. Based on that correlation, we suggest that DNA walk representation may predict allele-rich loci solely from their primary sequences, which improves current design of new DNA germplasm identificators.

Induction of capsaicinoid synthesis in Capsicum chinense cell cultures by salicylic acid or methyl jasmonate

M. G. Gutiérrez-Carbajal, M. Monforte-González, M.de L. Miranda-Ham, G. Godoy-Hernández, F. Vázquez-Flota

Biologia plantarum 54:430-434, 2010 | DOI: 10.1007/s10535-010-0078-z

Suspension cultures of Habanero pepper (Capsicum chinense Jacq.) were exposed to salicylic acid or methyl jasmonate to change secondary metabolism. Both treatments led to the accumulation of capsaicinoids and their late biosynthetic intermediate, vanillin. Both elicitors had a positive effect on the activities of phenylalanine ammonia lyase and coumarate O-methyltransferase, but none of them represented the main limiting step for capsaicinoid accumulation since vanillin contents were two orders of magnitude higher than those of capsaicinoids.

Genetic diversity in Passiflora species determined by morphological and molecular characteristics

A. J. C. Viana, M. M. Souza, I. S. Araújo, R. X. Corrêa, D. Ahnert

Biologia plantarum 54:535-538, 2010 | DOI: 10.1007/s10535-010-0094-z

Morphological and molecular characteristics were studied in six wild species of Passiflora. There were statistically significant differences among these six species for all characteristics studied. Intra-specific variability was observed for number of flowers, number of fruits, number of seeds, fruit length, fruit width and leaf area. Cluster analysis using morphological data showed three groups: 1) P. palmeri var. sublanceolata, P. morifolia and P. foetida var. foetida, 2) P. coriacea and P. micropetala, and 3) P. suberosa. The dendrogram constructed using randomly amplified polymorphic DNA (RAPD) data showed six different groups for each species. The genetic distances among the 24 accessions ranged from 0.05 (between P. morifolia accessions P1 and P3) to 0.95 (P. coriacea accession 31 and P. palmeri var. sublanceolata accession 49). The species showed high morphological and molecular inter- and intraspecific variability.

Overexpression of tomato tAPX gene in tobacco improves tolerance to high or low temperature stress

W. -H. Sun, M. Duan, F. Li, D. -F. Shu, S. Yang, Q. -W. Meng

Biologia plantarum 54:614-620, 2010 | DOI: 10.1007/s10535-010-0111-2

In order to investigate the function of chloroplast ascorbate peroxidase under temperature stress, the thylakoid-bound ascorbate peroxidase gene from tomato leaf (TtAPX) was introduced into tobacco. Transformants were selected for their ability to grow on medium containing kanamycin. RNA gel blot analysis confirmed that TtAPX in tomato was induced by chilling or heat stress. Over-expression of TtAPX in tobacco improved seed germination under temperature stress. Two transgenic tobacco lines showed higher ascorbate peroxidase activity, accumulated less hydrogen peroxide and malondialdehyde than wild type plants under stress condition. The photochemical efficiency of photosystem 2 in the transgenic lines was distinctly higher than that of wild type plants under chilling and heat stresses. Results indicated that the over-expression of TtAPX enhanced tolerance to temperature stress in transgenic tobacco plants.

Expression of hepatitis B small surface antigen in Santalum album embryogenic cell suspension cultures

U. K. S. Shekhawat, T. R. Ganapathi, L. Srinivas

Biologia plantarum 54:720-724, 2010 | DOI: 10.1007/s10535-010-0128-6

Embryogenic cell suspension cultures of Santalum album were transformed with Agrobacterium tumefaciens harboring pD35SHER plant expression vector having hepatitis B small surface antigen (HBsAg) with a C-terminal ER retention signal. The transformed colonies were selected on culture medium supplemented with kanamycin and subsequently the transgenic nature of these colonies was confirmed by PCR analysis. The expression of HBsAg was confirmed by RT-PCR analysis and Western blot analysis and the expression was quantified using monoclonal antibody-based ELISA. Cell suspension cultures were initiated from the colony with expression of 11.09 μg(HBsAg) g-1(f.m.). To further increase the expression of HBsAg, transgenic S. album suspensions were cultured on media with various medium additives and cells growing in medium with 30 mM trehalose showed the expression of 19.95 μg(HBsAg) g-1(f.m.).

Clonal propagation of Zephyranthes grandiflora using bulbs as explants

M. Gangopadhyay, D. Chakraborty, S. Dewanjee, S. Bhattacharya

Biologia plantarum 54:793-797, 2010 | DOI: 10.1007/s10535-010-0145-5

Zephyr lily (Zephyranthes grandiflora), an important ornamental plant has been micropropagated in vitro after controlling microbial contamination by a pretreatment with 0.2 % Bavistin and 0.1 % Pantomycin for 4 h before final sterilization with 0.1 % mercuric chloride. In 67 % of the sterile cultures, 11 shoots on average were regenerated directly from basal half of bulb scales in Murashige and Skoog (MS) medium containing 3 % sucrose and 2 mg dm-3 benzylaminopurine (BAP). Shoots emerged in bunches on a basal achlorophyllous bulbous part. Combination of 2 mg dm-3 BAP with 1 mg dm-3 gibberellic acid (GA3) enhanced shoot growth. Stout roots (maximum of 5-6 per shoot) were developed in presence of 1 mg dm-3 indole-3-butyric acid (IBA). Micro-bulbs showed potential of regeneration and could be used as secondary explants. The morphologically identical plants derived by in vitro propagation were genetically identical as shown by PCR based ISSR marker analysis of genomic DNA.

Molecular characterization of ginseng farnesyl diphosphate synthase gene and its up-regulation by methyl jasmonate

O. T. Kim, K. H. Bang, S. J. Jung, Y. C. Kim, D. Y. Hyun, S. H. Kim, S. W. Cha

Biologia plantarum 54:47-53, 2010 | DOI: 10.1007/s10535-010-0007-1

We isolated a gene encoding for farnesyl diphosphate synthase (FPS) from Panax ginseng, a species that produces a large quantity of triterpene saponins such as ginsenosides. The deduced amino acid sequence of PgFPS was 77, 84 and 95 % identical to those of Arabidopsis, Hevea, and Centella. Southern blot analysis indicated that P. ginseng contained more than two genes encoding for FPS. When the cDNA of PgFPS was expressed in Escherichia coli, the recombinant enzyme, purified with a His-tag column, was found to possess FPS activity. When cultures of ginseng hairy root were treated with 0.1 mM methyl jasmonate (MJ), PgFPS mRNA was detected within 12 h of the treatment, and achieved maximum after 24 h. Also FPS activity in the hairy root cultures after 12 h of MJ treatment was higher than that of the control.

Transformation of potato via Agrobacterium coated microparticle bombardment

T. T. Nguyen, P. J. Dix, G. D. Nugent

Biologia plantarum 54:141-144, 2010 | DOI: 10.1007/s10535-010-0022-2

The transformation of potato (Solanum tuberosum L. cv. Désirée) was extended by the Agrobacterium-mediated biolistic method. Using this approach transgenic shoots could be obtained at a similar frequency to that achieved through conventional biolistics. Leaves from shoot cultures were bombarded with gold particles coated in Agrobacterium tumefaciens cells harboring a binary plasmid encoding three genes of interest in the T-DNA. Nine shoots were obtained from 20 shots, with selection of transgenic shoots on a series of media containing progressively increasing concentrations of hygromycin from 5 to 20 mg dm-3.

High efficiency organogenesis and analysis of genetic stability of the regenerants in Solanum melongena

Y. Xing, Y. Yu, X. Luo, J. -N. Zhang, B. Zhao, Y. -D. Guo

Biologia plantarum 54:231-236, 2010 | DOI: 10.1007/s10535-010-0041-z

A novel protocol for plant regeneration from cotyledon explants of eggplant (Solanum melongena) reducing concentration of sucrose was established. The most efficient bud induction medium consisted of Murashige and Skoog (MS) medium supplemented with 2.0 mg dm-3 zeatin, 0.1 mg dm-3 indoleacetic acid and 10 g dm-3 sucrose. After 15 d, the shoot buds were fragmented and transferred to the shoot elongation MS supplemented with 1.0-2.0 mg dm-3 gibberellic acid and 4.0-8.0 mg dm-3 AgNO3, which promoted shoots elongation. The genetic stability of the regenerated plants was analyzed by flow cytometry, RAPD and SSR molecular markers. The results indicated that almost no somaclonal variation was detected among the regenerants.

Stimulation of antioxidative enzymes and polyamines during stripe rust disease of wheat

B. Asthir, A. Koundal, N. S. Bains, S. K. Mann

Biologia plantarum 54:329-333, 2010 | DOI: 10.1007/s10535-010-0057-4

Content of polyamines and activities of antioxidative enzymes in response to stripe rust disease caused by Puccinia striiformis have been studied in two wheat (Triticum aestivum L.) cultivars PBW 343 (resistant) and HD 2329 (susceptible). Various infection stages ranging from traces to 100 % were collected. Infection leads to stimulation of peroxidase (POD), superoxide dismutase (SOD), catalase, diamine oxidase and polyamine oxidase activities along with increase in putrescine, spermidine and spermine content while ascorbate, tocopherol and chlorophyll content decreased in HD 2329 and no visible symptoms appeared in PBW 343. Histochemical localization pattern of POD and SOD activities revealed correlation with lignin deposition in cell walls.

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