biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 931 to 960 of 6171:

Salicylic acid increased aldose reductase activity and sorbitol accumulation in tomato plants under salt stress

I. Tari, G. Kiss, A. K. Deér, J. Csiszár, L. Erdei, Á. Gallé, K. Gémes, F. Horváth, P. Poór, Á. Szepesi, L. M. Simon

Biologia plantarum 54:677-683, 2010 | DOI: 10.1007/s10535-010-0120-1

Increased aldose reductase (ALR) activities were detected in the leaf tissues of tomato plants grown for 3 weeks in culture medium containing 10-7 or 10-4 M salicylic acid (SA), and in the roots after the 10-4 M SA pretreatment. The ALR activity changed in parallel with the sorbitol content in the leaves of the SA-treated plants. Salt stress elicited by 100 mM NaCl enhanced the accumulation of sorbitol in the leaves of control plants and as compared with the untreated control the sorbitol content in the SA-pretreated leaves remained elevated under salt stress. DEAE cellulose anionexchange column purification of the protein precipitated with 80 % (NH4)2SO4 revealed two enzyme fractions with ALR activity in both the leaf and the root tissues. The fraction of the leaf extract that was not bound to the column reacted with glucose and glucose-6-P as substrates, whereas glucose was not a substrate for the bound fraction or for root isoenzymes. The root enzyme was less sensitive to salt treatment: 50 mM NaCl caused 30 % inhibition in the leaf extract, whereas the enzyme activity of the root extract was not affected. It is suggested that increased ALR activity and sorbitol synthesis in the leaves of SA-treated tomato plants may result in an improved salt stress tolerance.

Citrate transporters play an important role in regulating aluminum-induced citrate secretion in Glycine max

J. F. You, N. N. Hou, M. Y. Xu, H. M. Zhang, Z. M. Yang

Biologia plantarum 54:766-768, 2010 | DOI: 10.1007/s10535-010-0138-4

To further understand the process of Al-induced citrate secretion from soybean roots, the effect of protein synthesis inhibitor, anion channel blockers, and citrate carrier inhibitors on Al-induced citrate exudation was investigated in Al-resistant soybean cultivar PI 416937. Citrate exudation from roots increased with the increase of Al concentration from 10 to 50 μM and initiated after 4 h of Al exposure. Protein synthesis inhibitor, cycloheximide (CHM; 25 μM) completely inhibited Al-induced citrate secretion during 12-h exposure, suggesting that novel protein synthesis was necessary in Al-induced citrate efflux. Also both anion channel blocker anthracene-9-carboxylic acid (A-9-C) and citrate carrier inhibitor mersalyl acid (Mersalyl) significantly reduced citrate secretion, suggesting that both anion channels in plasma membrane and citrate carriers in mitochondria membrane were the rate limiting factors of Al dependent citrate release. However, Al-induced citrate secretion was insensitive to anion channel blockers phenylglyoxal (PG), 4,4'-diisothiocyanostibene-2,2'-disulfonat (DIDS) and citrate carrier inhibitor pyridoxal 5'-P (PP).

Morphogenetic routes of long-term embryogenic callus culture of Areca catechu

H. C. Wang, J. T. Chen, W. C. Chang

Biologia plantarum 54:1-5, 2010 | DOI: 10.1007/s10535-010-0001-7

Early morphogenetic events and repetitive embryogenesis from callus culture of betel nut palm (Areca catechu L.) were studied using scanning electron microscopy. On Murashige and Skoog (MS) medium supplemented with 2 mg dm-3 dicamba, callus culture has capacity to form plantlets via somatic embryogenesis and to form secondary embryos for about 4 years. However, various abnormal embryos without differentiation of the leaf sheath and shoot apical meristem were observed, which showed bell-shaped and then cup-shaped or mushroom-shaped structures. These abnormal embryos contained distinctive structures, including a disk-shape interior region, surfaces with grooves and a stalk-like posterior region. During subculture, these abnormal embryos enlarged, became deformed and gradually lose their shape and then converted into nodular, compact embryogenic callus. It was also found that secondary embryos originated from interior surfaces or posterior regions of abnormal embryos, and gave rise to the next cycle of normal and abnormal embryos.

Over-expression of heat shock protein gene hsp26 in Arabidopsis thaliana enhances heat tolerance

Y. Xue, R. Peng, A. Xiong, X. Li, D. Zha, Q. Yao

Biologia plantarum 54:105-111, 2010 | DOI: 10.1007/s10535-010-0015-1

In the yeast Saccharomyces cerevisiae, the molecular chaperone HSP26 has the remarkable ability to sense increases in temperature directly and can switch from an inactive to a chaperone-active state. In this report, we analyzed the effect of expression of HSP26 in Arabidopsis thaliana plants and their response to high temperature stress. The hsp26 transgenic plants exhibited stronger growth than wild type plants at 45 °C for 16 h. The chlorophyll content and chlorophyll fluorescence decreased much more in wild type than in transgenic plants. Moreover, the transgenic plants had higher proline and soluble sugar contents, and lower relative electrical conductivity and malondialdehyde contents after high temperature stress. Furthermore, we found that over-expression of HSP26 in Arabidopsis increased the amount of free proline, elevated the expression of proline biosynthetic pathway genes and therefore enhanced Arabidopsis tolerance to heat stress.

Cytomixis and associated meiotic abnormalities affecting pollen fertility in Clematis orientalis

P. Kumar, V. K. Singhal, D. Kaur, S. Kaur

Biologia plantarum 54:181-184, 2010 | DOI: 10.1007/s10535-010-0031-1

Present cytological investigations from the cold desert regions of Lahaul-Spiti and Kinnaur (India) record the first ever tetraploid (2n=32) chromosome count and cytomixis in Clematis orientalis L. var. acutifolia Hook. f. et Thoms. The phenomenon of cytomixis (9.33-29.80 %) involving chromatin transfer among 2-3 proximate pollen mother cells (PMCs) during male meiosis occurs through narrow and broad cytoplasmic channels from early prophase to tetrad stage. However, frequency of its occurrence during the later meiotic stages is rather low. Chromatin transfer results into the formation of hypo-, hyperploid and enucleated PMCs. Various meiotic abnormalities associated with cytomixis such as chromatin stickiness, pycnotic chromatin, interbivalent connections, out of plate bivalents, late disjunction of bivalents, and laggards and bridges resulted into some pollen sterility (16.33-49.30 %) and heterogeneous pollen grains size.

Influence of water stress on photosynthetic characteristics in barley plants under ambient and elevated CO2 concentrations

A. Robredo, U. Pérez-López, M. Lacuesta, A. Mena-Petite, A. Muñoz-Rueda

Biologia plantarum 54:285-292, 2010 | DOI: 10.1007/s10535-010-0050-y

We evaluated the combined effects of elevated CO2 and water availability on photosynthesis in barley. Soil and plant water content decreased with water stress, but less under elevated CO2 concentration (EC) compared with ambient CO2 concentration (AC). During water stress, stomatal conductance, carboxylation rate, RuBP regeneration, and the rate of triose phosphate utilisation (TPU) were decreased but less when plants grew under EC. Drought treatments caused only a slight effect on maximum photochemical efficiency (variable to maximum fluorescence ratio, Fv/Fm), whereas the actual quantum yield (ΦPS2), maximum electron transport rate (Jmax) and photochemical quenching (qP) were decreased and the non photochemical quenching (NPQ) was enhanced. Under water deficit, the allocation of electrons to CO2 assimilation was diminished by 49 % at AC and by 26 % at EC while the allocation to O2 reduction was increased by 15 % at AC and by 12 % at EC.

Direct shoot regeneration from leaf explants of Jatropha curcas in response to thidiazuron and high copper contents in the medium

V. Khurana-Kaul, S. Kachhwaha, S. L. Kothari

Biologia plantarum 54:369-372, 2010 | DOI: 10.1007/s10535-010-0066-3

Leaf explants of Jatropha curcas cultured on Murashige and Skoog's (MS) medium supplemented with thidiazuron (TDZ; 0.90 μM) in combination with indole-3-butyric acid (IBA; 0.98μM) produced adventitious shoot buds directly on the surface of the explants without formation of intervening callus while shoot bud formation was accompanied with callus formation on medium supplemented with 6-benzylaminopurine (BAP; 13.3 μM) and IBA (2.46 μM). TDZ treatment resulted in more than twice higher rate of shoot bud induction than BAP. Shoot buds were multiplied and elongated following repeated transfers to medium containing BAP (2.22 μM) and gibberellic acid (GA3; 1.44 μM). The effect of copper sulphate on differentiation of shoot buds from leaf segments was also investigated. Both shoot induction and multiplication media were supplemented with different levels of CuSO4 (0-5 μM). Significant improvement in shoot bud induction was observed when the concentration of CuSO4 was increased to 10 times the normal MS level. Healthy elongated shoots were rooted on half strength MS medium supplemented with IBA (2.46 μM). Rooted plantlets were transferred to field and survived. Histological analysis revealed direct formation of shoot buds from leaf explants.

Effect of abiotic stresses on the activity of antioxidative enzymes and contents of phytohormones in wild type and AtCKX2 transgenic tobacco plants

Z. Mýtinová, V. Motyka, D. Haisel, A. Gaudinová, Z. Lubovská, N. Wilhelmová

Biologia plantarum 54:461-470, 2010 | DOI: 10.1007/s10535-010-0082-3

The responses of antioxidant enzymes (AOE) ascorbate peroxidase (APX), glutathione reductase (GR), superoxide dismutase (SOD), and catalase (CAT) in soluble protein extracts from leaves and roots of tobacco (Nicotiana tabacum L. cv. Samsun NN) plants to the drought stress, salinity and enhanced zinc concentration were investigated. The studied tobacco included wild-type (WT) and transgenic plants (AtCKX2) harbouring the cytokinin oxidase/dehydrogenase gene under control of 35S promoter from Arabidopsis thaliana (AtCKX2). The transgenic plants exhibited highly enhanced CKX activity and decreased contents of cytokinins and abscisic acid in both leaves and roots, altered phenotype, retarded growth, and postponed senescence onset. Under control conditions, the AtCKX2 plants exhibited noticeably higher activity of GR in leaves and APX and SOD in roots. CAT activity in leaves always decreased upon stresses in WT while increased in AtCKX2 plants. On the contrary, the SOD activity was enhanced in WT but declined in AtCKX2 leaves. In roots, the APX activity prevailingly increased in WT while mainly decreased in AtCKX2 in response to the stresses. Both WT and AtCKX2 leaves as well as roots exhibited elevated abscisic acid content and increased CKX activity under all stresses while endogenous CKs and IAA contents were not much affected by stress treatments in either WT or transgenic plants.

Isolation of resistance gene analogues to powdery mildew resistance sequences in hexaploid wheat

D. S. Feng, X. Ma, A. L. Lin, H. G. Wang, J. C. Tian

Biologia plantarum 54:551-555, 2010 | DOI: 10.1007/s10535-010-0098-8

This paper reports the characterization of the powdery mildew resistance homologous genes family of Triticum aestivum. Using degenerate primer pair for wheat resistance genes, we have cloned seven 3' truncated powdery mildew resistance gene homologous fragments Tpc5a, Tp25a, Tp25b, Tp3a5a, Tp3a5b, Tp4b5a and Tp4b5b. These fragments were sequenced. The deduced amino acid sequences showed that six of them have premature stop codons. All these sequences had a very high level of similarity to known Pm resistance genes such as Pm3a, Pm3b, Pm3d and pm3f in hexaploid wheat. By ignoring the stop codons in the sequences, their deduced protein sequences were of coiled-coil (CC)-nucleotide binding site (NBS)-leucine repeat rich (LRR) structure. These results suggest that there are many powdery mildew resistance gene analogues in both resistant and susceptible wheat. Among them, small insertion/deletion events and point mutations can result in the diversity of wheat Pm resistance homologous genes.

Metabolic engineering using mtlD gene enhances tolerance to water deficit and salinity in sorghum

M. Maheswari, Y. Varalaxmi, A. Vijayalakshmi, S. K. Yadav, P. Sharmila, B. Venkateswarlu, M. Vanaja, P. Pardha Saradhi

Biologia plantarum 54:647-652, 2010 | DOI: 10.1007/s10535-010-0115-y

Sorghum bicolor L. Moench cv. SPV462 was transformed with the mtlD gene encoding for mannitol-1-phosphate dehydrogenase from E. coli with an aim to enhance tolerance to water deficit and NaCl stress. Transgene (pCAM mtlD) integration and expression were successfully confirmed by PCR, Southern, RT-PCR and Western analysis. Segregation analysis based on germination of T0 seed on hygromycin-supplemented medium revealed an expected Mendelian ratio 3:1 in lines 5, 72 and 75. Retention of leaf water content was remarkably higher in transgenic leaf segments when exposed to polyethylene glycol 8000 (-2.0 MPa), as compared to the untransformed controls. Another significant finding is that the transgenics maintained a 1.7 to 2.8 fold higher shoot and root growth, respectively, under NaCl stress (200 mM) when compared to untransformed controls. These results demonstrate that engineering mannitol biosynthetic pathway into sorghum can impart enhanced tolerance to water deficit and salinity.

Effect of gibberellic acid combined with saponin on shoot elongation of Asparagus officinalis

V. Saharan

Biologia plantarum 54:740-742, 2010 | DOI: 10.1007/s10535-010-0132-x

Effect of gibberellic acid (GA3) combined with saponin on shoot elongation of Asparagus officinalis was evaluated in tissue culture. Addition of saponin to GA3 supplemented Murashige and Skoog (MS) basal medium showed a dose depended effect on shoot length of Asparagus officinalis. However, increasing concentration of saponin above 3.0 mg dm-3 decreased shoot length and showed yellowing and thinning of shoots. Saponin (3.0 mg dm-3) + GA3 (0.2 mg dm-3) mixture treated by variable duration of sonication (0, 1, 3, 5, 7, 9, 11, 13 and 15 min) were evaluated for shoot elongation on MS basal medium. The highest shoot lengths (14.4 ± 0.3 and 15.1 ± 0.1 cm) were found after 5 and 7 min sonication.

Giles W.: Encyclopedia of Exotic Plants for Temperate Climate

I. Bouąová

Biologia plantarum 54:75, 2010 | DOI: 10.1007/s10535-010-0037-8

Antioxidative enzymatic protection in leaves of two contrasting cowpea cultivars under salinity

J. M. Maia, C. E. Costa de Macedo, E. L. Voigt, J. B. S. Freitas, J. A. G. Silveira

Biologia plantarum 54:159-163, 2010 | DOI: 10.1007/s10535-010-0026-y

The aim of this work was to investigate the role of the antioxidant enzymes in salt tolerance comparing the salt-sensitive (Pérola) and a salt-tolerant (Pitiúba) cultivar of cowpea [Vigna unguiculata (L.) Walp.]. Salt stress (100 mM NaCl for 8 d) reduced the leaf growth rate more in the sensitive cultivar. The salt-induced decrease in the relative water content, Na+ accumulation and increase in leaf electrolyte leakage was similar in both cultivars. Salt stress induced a higher increase in the activities of superoxide dismutase (SOD), ascorbate peroxidase (APX) and phenol peroxidase (POX) in the tolerant cultivar than in sensitive one.

GISH reveals different levels of meiotic pairing with wheat for individual Aegilops biuncialis chromosomes

I. Molnár, M. Molnár-Láng

Biologia plantarum 54:259-264, 2010 | DOI: 10.1007/s10535-010-0045-8

The Triticum aestivum - Aegilops biuncialis (2n=4x=28; UbUbMbMb) disomic addition lines 2Mb, 3Mb, 7Mb and 3Ub were crossed with the wheat cv. Chinese Spring ph1b mutant genotype in order to induce homoeologous pairing, with the final goal of introgressing Ae. biuncialis chromatin into cultivated wheat. Wheat-Aegilops homoeologous chromosome pairing was studied in metaphase I of meiosis in the F1 hybrid lines. Using U and M genomic probes, genomic in situ hybridization (GISH) demonstrated the occurrence of wheat-Aegilops homoeologous pairing in the case of chromosomes 2Mb, 3Mb and 3Ub, but not in the case of 7Mb. The wheat-Aegilops pairing frequency decreased in the following order: 2Mb > 3Mb > 3Ub > 7Mb, which may reflect differences in the wheat-Aegilops homoeologous relationships between the examined Aegilops chromosomes. The selection of wheat-Aegilops homoeologous recombinations could be successful in later generations.

Activities of antioxidant enzymes during strawberry fruit development and ripening

A. P. López, M. T. N. Gochicoa, A. R. Franco

Biologia plantarum 54:349-352, 2010 | DOI: 10.1007/s10535-010-0061-8

The analyses of some antioxidant enzyme activities were carried out in the course of strawberry fruits development and ripening. The catalase activity was maximum in small-sized green fruits, it decreased in middle-sized green fruits and increased again during the ripening stages. The highest superoxide dismutase and peroxidase activities were observed in white fruits.

Plant regeneration in Curcuma species and assessment of genetic stability of regenerated plants

A. Das, V. Kesari, L. Rangan

Biologia plantarum 54:423-429, 2010 | DOI: 10.1007/s10535-010-0077-0

An efficient plant regeneration protocol was developed from rhizomes of two Curcuma species C. longa and C. amada. Response was highly dependent on the season, with above 69 % of culture developing adventitious shoots during spring. Greatest regeneration and multiplication was observed in modified Murashige and Skoog (MS) medium supplemented with 13.31 μM benzyladenine and 2.68 μM α-naphthalene acetic acid (NAA) in C. longa or 2.46 μM indolebutyric acid in C. amada. Effect of sugars and agar at different concentrations were also studied and 2 % maltose and 0.7 % agar were found optimum for shoot multiplication and regeneration. Most plantlets developed roots simultaneously but others formed roots when subcultured in 1/2 MS medium supplemented with 2.68 μM NAA. Plants were successfully hardened in greenhouse with 80 % survival. The genetic purity of micropropagated plantlets was analyzed using RAPD and protein profiles.

Antioxidative system in maize roots as affected by osmotic stress and different nitrogen sources

M. Vuletić, V. Hadľi-Taąković ©ukalović, K. Marković, J. Dragiąić Maksimović

Biologia plantarum 54:530-534, 2010 | DOI: 10.1007/s10535-010-0093-0

The activities of antioxidative enzymes and contents of proline and total phenolics were assayed in roots of two maize (Zea mays L.) genotypes grown in a medium containing nitrate (NO3 -) or both nitrogen forms, nitrate and ammonium (NH4 +/NO3 -). An increase in the activities of class III peroxidases (POD), superoxide dismutase (SOD), ascorbate peroxidase (APX), ascorbate oxidase (AO) and proline content, and decrease in phenolic content were observed in NH4 +/NO3 - in comparison with NO3 - grown plants. When polyethylene glycol (PEG) was added to both nitrogen treatments, the content of total phenolics and proline was increased, especially in NH4 +/NO3 - treatment. The PEG treatment decreased enzyme activities in NH4 +/NO3 - grown plants, but in NO3 - grown plants activities of POD and SOD were increased, opposite to decreased APX and AO. Isoelectric focusing demonstrated increased activities of acidic POD isoforms in PEG treated NO3 - grown plants, and lower activities of both, acidic and basic isoforms in NH4 +/NO3 -grown plants.

Effect of abscisic acid on heat stress tolerance in the calli from two ecotypes of Phragmites communis

W. Ding, L. Song, X. Wang, Y. Bi

Biologia plantarum 54:607-613, 2010 | DOI: 10.1007/s10535-010-0110-3

Dune reed (DR) and swamp reed (SR) are two ecotypes of reed (Phragmites communis Trin.) that displayed differences in stress tolerance. To uncover the molecular basis for such difference, the effects of heat stress were studied using the calli derived from the two ecotypes. Heat stress caused increased ion leakage, inhibited growth, decreased cell viability, and elevated hydrogen peroxide (H2O2) and malondialdehyde (MDA) contents in the calli of both ecotypes, but DR callus showed better heat tolerance than SR callus. In DR callus, heat stress caused significant increase in the endogenous ABA content but not in SR callus. Application of fluridone (an ABA synthesis inhibitor) aggravated the heat stress damages on the DR callus whereas it had only minimal impact on the SR callus. Exogenous application of ABA alleviated the heat stress symptoms in the calli of both ecotypes. ABA treatment increased the activities of superoxide dismutase, catalase, ascorbate peroxidase and peroxidase, and also decreased H2O2 and MDA contents. These results indicate that the ability of ABA synthesis under heat stress is a key factor attributing to the higher heat tolerance of DR than SR.

Analysis of the role of mitochondrial and endoplasmic reticulum localized small heat shock proteins in tomato

P. C. Nautiyal, M. Shono

Biologia plantarum 54:715-719, 2010 | DOI: 10.1007/s10535-010-0127-7

This communication examines the role of small heat shock proteins (sHsps) targeted to mitochondria (Mt) and endoplasmic reticulum (ER) in tomato plants (Lycopersicon esculentum Mill.) under heat stress. Genetic response of transgenic and wild type plants varied under optimum, moderately elevated and elevated temperature. In optimum temperature higher biomass was recorded in wild type than the transgenic lines, whereas in moderately elevated temperature biomass increased in Mt-sHsp line. Also, net photosynthetic rate (PN) increased in Mt-sHsp line in both the elevated temperatures, though higher in moderately elevated. Cell membrane stability (CMS) improved in all the lines after exposure to elevated temperatures, but always remained higher in transgenic lines. Transgenic lines expressed sHsps in different temperature regimes in both vegetative and reproductive parts, while wild type expressed such proteins only after 1 h of heat shock.

Two enzymatic sources of nitric oxide in different organs of apple plant

H. J. Gao, H. Q. Yang, J. Y. Wang, J. X. Wang

Biologia plantarum 54:789-792, 2010 | DOI: 10.1007/s10535-010-0144-6

Nitric oxide production, nitric oxide synthase (NOS) and mitochondrial nitrite-reducing activities in roots, leaves and stems of different developmental stages were investigated, using potted 3-year-old apple (Malus domestica Borkh.) trees. The arginine-dependent NOS activity is sensitive to NOS inhibitor L-NAME and aminoguanidine (AG), with L-NAME being more effective than AG. Endogenous NO production, NOS and mitochondrial nitrite-reducing activities are predominately presented in young leaves and especially in young white roots and young stems. Root and stem mitochondria can reduce nitrite to nitric oxide at the expense of NADH, however, this mitochondrial nitrite-reducing activity is absent in leaves.

Schekman, R., Goldstein L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Vol. 25

T. Gichner

Biologia plantarum 54:46, 2010 | DOI: 10.1007/s10535-010-0036-9

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.

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