biologia plantarum

International journal on Plant Life established by Bohumil Nìmec in 1959

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Results 781 to 810 of 6171:

Modified alternative oxidase expression results in different reactive oxygen species content in Arabidopsis cell culture but not in whole plants

V. I. Tarasenko, E. Y. Garnik, V. N. Shmakov, Y. M. Konstantinov

Biologia plantarum 56:635-640, 2012 | DOI: 10.1007/s10535-012-0115-1

Alternative oxidase (AOX) transfers electrons from ubiquinone to oxygen in the respiratory chain of plant mitochondria. It is widely accepted that AOX functions as a mechanism decreasing the formation of reactive oxygen species (ROS) produced during respiratory electron transport. However, there are no experimental data to provide unambiguous proof of this hypothesis. We have studied growth characteristics, ROS content, and stress sensitivity in Arabidopsis transgenic lines with reduced or increased levels of AOX. We demonstrated that AOX-deficient plants grown in soil had an extended reproductive phase. Changes in AOX activity did not affect ROS content or stress sensitivity in the whole plants. However in the suspension culture, cells overexpressing AOX had significantly lower ROS content, whereas the AOX-deficient cells had higher ROS contents compared to the wild-type (WT) cells. Prooxidant treatment led to the increase in ROS content and to the reduction of viability more in the cells overexpressing AOX than in WT and AOX-deficient cells. Thus, we demonstrated that differences in the metabolism of whole plants and cultured cells might affect AOX functioning.

Visualisation of xylem sap flow direction in isolated fine lateral roots and estimation of the xylem sap osmotic potential

M. Fritz, R. Ehwald

Biologia plantarum 56:749-756, 2012 | DOI: 10.1007/s10535-012-0121-3

Xylem sap outflow from fine lateral roots (FLRs) isolated from hydroponically grown young maize (Zea mays L.) plants was visualized by local brightening of test solutions contrasted with purified Indian ink particles. Flow into the vessels was indicated by the adsorption of Evans Blue in their walls. The fraction of the FLRs able to exude xylem sap in a mineral medium with 30 mM mannitol decreased with increasing incubation time. This change was strongly retarded, when the FLRs were incubated in a medium containing glucose instead of mannitol. There was a broad range of variation of the osmotic potential of the test solutions (Ψso), wherein the fraction of the FLRs showing an initially reversed flow of the xylem sap varied between zero and unity. A median (M) of the osmotic potential of the xylem sap in FLRs (Ψsx) was estimated. It represents the value of Ψso that was lower than Ψsx in half of the roots of a sample before their transfer to the test solutions (Ψsxo). M was dependent on the osmotic potential of the medium used for growth or pre-incubation of the FLRs. Its value was not dependent on the molecular size of the osmolytes used to adjust Ψso, including dextran 8, which is excluded from cell walls. In all of the studied plants, M was lower than the osmotic potential of the xylem sap collected from the root before isolation of the FLRs. To explain this finding it is assumed that FLRs with Ψsxo > M had a higher hydraulic conductivity and a larger volume contributed to the exuded sap than those with Ψsx < M.

Aluminum-induced changes in reactive oxygen species accumulation, lipid peroxidation and antioxidant capacity in wheat root tips

F. J. Xu, G. Li, C. W. Jin, W. J. Liu, S. S. Zhang, Y. S. Zhang, X. Y. Lin

Biologia plantarum 56:89-96, 2012 | DOI: 10.1007/s10535-012-0021-6

The present study investigated the effects of aluminum on lipid peroxidation, accumulation of reactive oxygen species and antioxidative defense systems in root tips of wheat (Triticum aestivum L.) seedlings. Exposure to 30 μM Al increased contents of malondialdehyde, H2O2, suproxide radical and Evans blue uptake in both genotypes, with increases being greater in Al-sensitive genotype Yangmai-5 than in Al-tolerant genotype Jian-864. In addition, Al treatment increased the activity of superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), ascorbate peroxidase (APX), monodehydroascorbate reductase (MDHAR), glutathione reductase (GR) and glutathione peroxidase (GPX), as well as the contents of ascorbate (AsA) and glutathione (GSH) in both genotypes. The increased activities SOD and POD were greater in Yangmai-5 than in Jian-864, whereas the opposite was true for the activities of CAT, APX, MDHAR, GR and GPX and the contents of AsA and GSH. Consequently, the antioxidant capacity in terms of 2,2-diphenyl-1-picrylhydrazyl (DPPH)-radical scavenging activity and ferric reducing/antioxidant power (FRAP) was greater in Jian-864 than in Yangmai-5.

Partial oxidative protection by enzymatic and non-enzymatic components in cashew leaves under high salinity

S. L. Ferreira-Silva, E. L. Voigt, E. N. Silva, J. M. Maia, T. C. R. Aragão, J. A. G. Silveira

Biologia plantarum 56:172-176, 2012 | DOI: 10.1007/s10535-012-0037-y

The work evaluated the role of enzymatic and non-enzymatic antioxidants in cashew (Anacardium occidentale) leaves under 0, 50, 100, 150 and 200 mM NaCl. Salt stress increased protein oxidation and decreased the lipid peroxidation, indicating that lipids are less susceptible to oxidative damage. The superoxide dismutase (SOD) activity was not changed, ascorbate peroxidase (APX) activity steadily decreased while the catalase (CAT) activity strongly increased with the increasing NaCl concentration. High salinity also induced alterations in the ascorbate (AsA) and glutathione (GSH) redox state. The salt resistance in cashew may be associated with maintaining of SOD activity and upregulation of CAT activity in concert with the AsA and GSH antioxidants.

Na+/H+ antiport activity in plasma membrane and tonoplast vesicles isolated from NaCl-treated cucumber roots

K. Kaba³a, M. Janicka-Russak

Biologia plantarum 56:377-382, 2012 | DOI: 10.1007/s10535-012-0103-5

Sodium/proton antiporter activity in the plasma membrane and tonoplast of cucumber seedling roots treated with 200 mM NaCl for 24 h was determined. It was observed that plasma membrane and tonoplast antiporter activity was only present in membranes from salt-treated plants. In addition, the plasma membrane antiporter protein was present in membranes after induction with NaCl, whereas tonoplast antiporter protein was observed in control and at elevated level in NaCl-treated plants. Moreover, based on the affinity of studied antiporter proteins to sodium ions, it could be assumed that excess sodium ions are firstly translocated from the cytosol to the vacuole and then excluded to the apoplast through the plasma membrane.

Direct shoot regeneration from Arabidopsis thaliana shoot apical meristems

W. Xin, Z. Liu, Y. Song, T. Hou, F. Xiang

Biologia plantarum 56:601-606, 2012 | DOI: 10.1007/s10535-012-0127-x

In Arabidopsis thaliana in vitro culture, shoots were induced from the shoot apical meristem (SAM) of germinating seeds in the presence of 2,4-dichlorophenoxyacetic acid. Primary shoot primordia developed leaf-like structures, from which secondary shoot primordia were produced. Regenerated shoots were recovered when the material was transferred to a medium lacking auxin. Adventitious roots formed from a callusing basal region of the secondary shoots. The CUC1 transcription factor was expressed at the apex of the primary shoot primordium and at the boundary between the regenerated SAM and the developing leaf primordia. The DR5::GUS transgene was used to localize sites of maximum auxin occurrence. Auxin was firstly detected in the dividing cells beneath the SAM epidermis, which coincided with sites where primary shoot primordia were initiated. In the regenerated shoots, auxin response was not detected in the basal region of the stem, suggesting that the regenerating structures were shoots rather than somatic embryos. Direct shoot regeneration from the A. thaliana SAM requires a localized accumulation of auxin.

Nitrogen remobilization in shoots of Paris polyphylla is altered by gibberellic acid application during senescence

K. Yu, Q. L. Fan, J. R. Wei, D. Yu, J. R. Li

Biologia plantarum 56:717-723, 2012 | DOI: 10.1007/s10535-012-0116-0

Nitrogen remobilization during senescence has been studied in perennial herb Paris polyphylla. We analyzed changes in N content, amino acids, N-remobilization enzymes and effects of gibberellic acid (GA) during natural senescence. There was a gradual decrease in the contents of N, chlorophyll and soluble proteins and activities of glutamine synthetase (GS; EC 6.3.1.2) and glutamate dehydrogenase (GLDH; EC 1.4.1.2). Activity staining and Western blots showed that GS2 activity decreased, whereas GS1 activity was relatively stable over time. In contrast, the C/N ratio and total amino acid content increased. Among individual amino acids, the proportions of glutamine (Gln) and asparagine (Asn) increased, and proportions of arginine, aspartate and glycine decreased. Treatment with GA slowed the senescence and retarded decreases in the activities of GS and GLDH and the contents of N, chlorophyll and soluble proteins. Conversely, this treatment slowed increases in the C/N ratio, total free amino acid content, and proportions of Gln and Asn. We conclude that low N resorption efficiency during senescence of P. polyphylla results from a sharp decrease in N remobilization enzyme activity.

Book Review

N. Wilhelmová

Biologia plantarum 56:799, 2012 | DOI: 10.1007/s10535-012-0263-3

Molecular cloning and characterization of a novel stress responsive gene in alfalfa

R. Long, Q. Yang, J. Kang, Y. Chao, P. Wang, M. Wu, Z. Qin, Y. Sun

Biologia plantarum 56:43-49, 2012 | DOI: 10.1007/s10535-012-0014-5

A suppression subtraction hybridization (SSH) cDNA library of alfalfa (Medicago sativa L.) cv. Zhongmu NO.1 had been constructed to identify differentially expressed genes under stress. Based on the sequence of a 460 bp expressed sequence tags (ESTs), a cDNA of 1652 bp was cloned by rapid amplification of cDNA ends (RACE) method. This gene (MsPBL) was predicted to encode a 434-amino-acid protein, which contained a Phox and Bem1 (PB1) domain. PB1 domain is a functional domain comprising about 80 amino acid residues, which exists in many signal transduction proteins and mediates dimerization in the proteins. PB1 domain is mostly involved in two cell signal transduction pathways: MAPK and NF-KB. When fused to the green fluorescent protein, we found MsPBL localization in the nucleus of onion (Allium cepa L.) epidermal cells. The transcripts of MsPBL rose significantly when alfalfa was treated with 300 mM NaCl, 0.1 mM ABA, and 20 % polyethylene glycol (PEG-6000). These results indicated that MsPBL may be functional within the nucleus as a signal transduction protein to allow alfalfa to rapidly respond to the environmental stress signals.

Comparison of antioxidant responses to cadmium and lead in Bruguiera gymnorrhiza seedlings

Y. M. Tao, Y. Z. Chen, T. Tan, X. C. Liu, D. L. Yang, S. C. Liang

Biologia plantarum 56:149-152, 2012 | DOI: 10.1007/s10535-012-0032-3

Seedlings of mangrove plant Bruguiera gymnorrhiza cultured in sand with Hoagland's nutrient solution were treated with 1 to 30 mM Cd(NO3)2 or Pb(NO3)2 for 2 months. In all Cd/Pb treatments, the malondialdehyde content increased while the chlorophyll content declined. Peroxidase (POD) and superoxide dismutase (SOD) activities in roots increased at moderate Cd/Pb concentrations (1-10 mM), whereas decreased at higher concentrations (20-30 mM). Catalase (CAT) activity in roots was inhibited by 1-10 mM Cd but enhanced by 1-10 mM Pb. The activities of POD, SOD and CAT in leaves were less affected by Cd and Pb than in roots. A new SOD and three CAT isoenzymes were induced by Pb. In contrast, no additional SOD and CAT isoenzymes were induced by Cd.

Improved salt tolerance and delayed leaf senescence in transgenic cotton expressing the Agrobacterium IPT gene

Y. D. Liu, Z. J. Yin, J. W. Yu, J. LI, H. L. Wei, X. L. Han, F. F. Shen

Biologia plantarum 56:237-246, 2012 | DOI: 10.1007/s10535-012-0082-6

The manipulation of cytokinin contents via Agrobacterium-mediated transformation is an efficient tool for delaying leaf senescence and improving the resistance to environmental stresses. In the present study, cotton transformants harbouring the Agrobacterium tumefaciens isopentenyl transferase (IPT) gene under the control of the promoter of Gossypium hirsutum cysteine proteinase (Ghcysp) were generated. PCR and Southern blot analysis indicated that the foreign DNA fragment was successfully integrated into the cotton genome. The chlorophyll and cytokinin contents, and ROS-scavenging enzymatic activities were significantly increased in transgenic cotton lines, which resulted in a significant delay in leaf senescence. The growth characteristics of transgenic cotton lines resembled the non-transgenic lines except delaying premature senescence and the lint yield and fiber quality of transgenic lines were improved. In addition, the transgenic lines had higher biomasses, IPT transcripts, and endogenous cytokinin contents compared with those of non-transgenic lines under 200 mM NaCl stress.

Changes in antioxidative enzymes activities during Tacitus bellus direct shoot organogenesis

A. Mitroviĉ, D. Janoıeviĉ, S. Budimir, J. Bogdanoviĉ Pristov

Biologia plantarum 56:357-361, 2012 | DOI: 10.1007/s10535-012-0098-y

Changes in antioxidative enzymes activities during Tacitus bellus direct shoot organogenesis from leaf explants were examined. During the early stages of shoot organogenesis there was a decrease in superoxide dismutase (SOD) and an increase in catalase (CAT) activity, and later during organogenesis there was an increase in peroxidase (POD) and polyphenol oxidase (PPO) activity. Two highly regulated turning points may be distinguished regarding activities and isoforms of antioxidative enzymes: the initiation of shoot organogenesis and the shoot bud formation. Our data suggest the role of specific CAT, POD, SOD and PPO isoforms in separate processes during T. bellus direct shoot organogenesis.

The identification of flavonoids and the expression of genes of anthocyanin biosynthesis in the chrysanthemum flowers

S. -M. Chen, C. -H. Li, X. -R. Zhu, Y. -M. Deng, W. Sun, L. -S. Wang, F. -D. Chen, Z. Zhang

Biologia plantarum 56:458-464, 2012 | DOI: 10.1007/s10535-012-0069-3

In order to provide additional information on the coloration of chrysanthemum flowers, the flavonoid composition and the expression of six structural genes involved in anthocyanin pathway in the ray florets of a pink flowering (cv. H5) and two white flowering (cvs. Keikai and Jinba) Chrysanthemum grandiflorum cultivars were examined. HPLCDAD/ESI-MSn analysis showed that cyanidin 3-O-(6"-O-malonylglucoside) and cyanidin 3-O-(3",6"-O-dimalonylglucoside) were the two major flavonoids presented in H5, while white flowering cultivars contained flavones instead of anthocyanins. Nine flavone derivatives were detected in the three cultivars, the amount of each flavone varied upon cultivars, and seven of these were identified as luteolin 7-O-arabinosylglucuronide, apigenin 7-O-glucoside, luteolin 7-O-malonylglucoside, apigenin 7-O-malonylglucoside, chrysoeriol 7-O-malonylglucoside, acacetin 7-O-rutinoside and acacetin 7-O-malonylglucoside. The two white flowering cultivars showed similar total flavonoid content, which was about two fold higher than that in H5. A high expression of the genes encoding dihydroflavonol 4-reductase and 3-O-glucosyltransferase was detected only in H5 but not in Keikai or Jinba. Chalcone synthase, chalcone isomerase, flavanone 3-hydroxylase, and flavonoid 3'-hydroxylase were expressed in all flowers, suggesting that the lack of anthocyanin in white flowering cultivars cannot be due to any blockage of their expression.

Salinity affects indirectly nitrate acquisition associated with glutamine accumulation in cowpea roots

J. A. G. Silveira, A. R. B. Melo, M. O. Martins, S. L. Ferreira-Silva, R. M. Aragão, E. N. Silva, R. A. Viégas

Biologia plantarum 56:575-580, 2012 | DOI: 10.1007/s10535-012-0065-7

The aim of this study was to test the hypothesis that salinity can affect indirectly the nitrate acquisition by a negative modulation triggered by glutamine accumulation. Cowpea plants were exposed to a mild NaCl concentration (50 mM) in order to restrict growth and N-demand. After 21 d, pretreated plants and control plants were supplied with 0, 5 and 10 mM of Ca(NO3)2 for 3 d in absence of NaCl. Salt pretreated plants showed a great limitation in acquisition of NO3 -, indicated by decline in the nitrate uptake rate, NO3 - accumulation, nitrate reductase activity and protein content. The restriction of NO3 - utilization was positively associated with increased glutamine synthetase activity and glutamine accumulation, especially in roots.

Characterization of a drought inducible trithorax-like H3K4 methyltransferase from barley

D. Papaefthimiou, A. S. Tsaftaris

Biologia plantarum 56:683-692, 2012 | DOI: 10.1007/s10535-012-0125-z

Histone H3 lysine 4 methylations catalyzed by histone lysine methyltransferases (HKMTs), like the Arabidopsis thaliana ATX1 and ATX2, are important epigenetic modifications related to chromatin decondensation and gene activation. In order to study this epigenetic mechanism in monocot cereal plants, we performed homology searches of ATX1 and ATX2 against the Brachypodium distachyon L. Beauv and rice (Oryza sativa L. spp. japonica) genomes, discovering single homologues for each cereal crop representing both Arabidopsis sequences. Using this information, we employed the rolling circle amplification - rapid amplification of cDNA ends (RCA-RACE) method to isolate, clone and characterize HvTX1 from RNA extracted from barley (Hordeum vulgare L.) tissues and studied its expression during seed development and under drought stress. The cloned cDNA sequence contained a 3 093 bp ORF homologous to ATX1 and ATX2. Characterization of the translated HvTX1 transcript sequence revealed the multi-domain nature of the putative protein, including all conserved regions characteristic for ATX1 and ATX2. By comparative genomic analysis and homology searches in EST databases we located, with high probability, the gene coding for HvTX1 on the barley chromosome 5H. Constant elevation of HvTX1 expression was observed during seed development. Expression of HvTX1 after drought stress was analyzed by quantitative real-time polymerase chain reaction (qPCR) in two different barley cultivars with varying drought stress tolerance, revealing HvTX1 drought-induction in a tolerance-specific manner.

Pretreatment with 5-aminolevulinic acid mitigates heat stress of cucumber leaves

J. Zhang, D. -M. Li, Y. Gao, B. Yu, C. -X. Xia, J. -G. Bai

Biologia plantarum 56:780-784, 2012 | DOI: 10.1007/s10535-012-0136-9

Cucumber seedlings were pretreated with 3 μM 5-aminolevulinic acid (ALA) followed by cultivation at normal (25/18 °C) or high (42/38 °C) day/night temperature to investigate the protective effects of ALA on heat stress in plants. Heat elevated the contents of malondiadehyde (MDA), superoxide radical (O2 .-) and hydrogen peroxide (H2O2) in leaves of all plants but less in ALA-pretreated plants. Heat treatment resulted in higher antioxidant enzyme activities and proline and soluble sugar contents and weaker growth inhibition in ALA-pretreated plants than in those treated with heat alone. These results indicate that ALA pretreatment increased the tolerance of seedlings to heat stress.

In vitro regeneration of Anethum graveolens, antioxidative enzymes during organogenesis and RAPD analysis for clonal fidelity

S. Jana, G. S. Shekhawat

Biologia plantarum 56:9-14, 2012 | DOI: 10.1007/s10535-012-0009-2

An efficient in vitro regeneration protocol was developed for medicinally important aromatic plant Anethum graveolens. Nodal segments were cultured onto Murashige and Skoog (MS) basal medium supplemented with different auxins and cytokinins singly as well as in combinations. The optimum callus induction (93.33 %) was obtained on medium fortified with 2.2 μM N6-benzyladenine (BA) and 0.21 μM α-naphthaleneacetic acid. The best shoot regeneration (85.7 %) with 12.86 shoots per explant was achieved in two weeks when callus was subcultured on MS medium amended with 2.2 μM BA and 1.85 μM kinetin. The average length of regenerated shoots varied from 3.15 to 4.8 cm. The rooting of regenerated shoots was nearly 100 % on 1/4 MS augmented with 4.9 μM indolebutyric acid with a maximum root length of 5.1 cm. Plantlets were successfully acclimatized with 60 % survival rate. During organogenesis, catalase and ascorbate peroxidase activity increased while superoxid dismutase activity decreased. Clonal fidelity of in vitro raised plants has been checked by random amplified polymorphic DNA using 10 selected decamer primers. It has been found that regenerated plants are true to type plants.

Expression patterns of cotton chloroplast genes during development: implications for development of plastid transformation vectors

C. A. Chlan, K. Rajasekaran, J. W. Cary, T. E. Cleveland

Biologia plantarum 56:126-130, 2012 | DOI: 10.1007/s10535-012-0027-0

Although most plastid transformation studies have focused on chloroplast expression, plastid transformation can also be used to express genes in plastids of a wide variety of plant tissues by using appropriate plastid promoters. Based on the sequence of the Gossypium hirsutum chloroplast genome, we developed primers and amplified segments of 20 different plastid genes. The PCR products were labeled and used in filter dot blot hybridization studies to characterize their expression levels and patterns in total RNA isolated from light- and dark-grown cotton tissues at different developmental stages. A subset of 6 genes among these was further characterized by real time PCR. Highest expression levels were observed for rrn16 and psbA. Four genes were expressed in all samples at relatively constant levels: accD, atpA, matK and rrn16. Expression in root tissue was generally low. The results of our study can be used to predict which operons and promoters are most likely to be preferentially expressed in the plastids of tissues of interest at levels that would result in the desired phenotype, facilitating the development of plastid transformation vectors.

Sexual incompatibility in Rosaceae fruit tree species: molecular interactions and evolutionary dynamics

A. Hegedûs, J. Lénárt, J. Halász

Biologia plantarum 56:201-209, 2012 | DOI: 10.1007/s10535-012-0077-3

Fruit crops have a growing economic importance worldwide and molecular genetics might be useful in solving many problems that arise during commercial production. One of the fields that have attracted intense attention is the molecular basis of self-incompatibility that may result in low fruit set. In tree fruits of the Rosaceae family, the incompatibility reactions take place between the pistil S-ribonuclease (S-RNase) and the pollen-expressed S-haplotype specific F-box (SFB) proteins. In most cases, the loss of self-incompatibility was associated with mutations in the S-RNase or SFB genes. A total of 27 non-functional S-haplotypes have been identified and characterized, most (24) of which emerged as a consequence of natural mutations. In the Prunoideae, most haplotypes are pollen-part mutants (50 %), while 8 are stylar-part mutants (36 %), one haplotype shows both pollen- and stylar-part mutations, and molecular changes for two haplotypes still have not been clarified. In contrast, non-functional natural haplotypes in the Maloideae are all stylar-part mutants. The analysis of such mutants may shed light on underlying molecular mechanisms as was the case with the establishment of the general inhibitor model that describes interactions between pollen and pistil S-proteins. However, several other molecules were supposed to contribute to the molecular interactions, at least in Solanaceae, a family with a similar self-incompatibility system. This review also endeavours to delineate the evolutionary implications of the S-locus mutations and collect limited data on non-S-locus molecular interactions and signaling events after self- and cross-pollination of fruit tree species.

Hydrogen peroxide and nitric oxide promote reproductive growth in Litchi chinensis

B. Zhou, N. Li, Z. Zhang, X. Huang, H. Chen, Z. Hu, X. Pang, W. Liu, Y. Lu

Biologia plantarum 56:321-329, 2012 | DOI: 10.1007/s10535-012-0093-3

Vegetative growth and reproductive growth strongly competes with each other during panicle development in litchi (Litchi chinensis Sonn.). We herein investigated the roles of hydrogen peroxide and nitric oxide in the competition between growth of rudimentary leaves and panicle development. The results show that the chilling-induced flowering increased H2O2 and NO contents in the mixed buds. Treatments with sodium nitroprusside (SNP), the NO donor, and methyl viologen dichloride hydrate (MV), the superoxide generator, increased NO and H2O2 contents in the mixed buds. MV and SNP treatments promoted abscission of rudimentary leaves and encouraged panicle development before or at the stage of panicle emergence. The nitric oxide synthase inhibitor N ω -nitro-L-arginine methyl ester (L-NAME) and the H2O2 trapper dimethylthiourea (DMTU) inhibited a chilling-induced flowering. SNP promoted the expression of litchi LEAFY homolog (LcLFY). These promotive effects were suppressed by the NO scavenger, 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl3-oxide (PTIO) and the H2O2 trapper, DMTU. The results suggest that H2O2 and NO promote reproductive growth by inhibiting the growth of rudimentary leaves as well as by promoting the expression of the flower related gene, LcLFY.

Identification and characterization of transcripts differentially expressed during embryogenesis in Capsella bursa-pastoris

P. Tao, J. B. Wang

Biologia plantarum 56:415-421, 2012 | DOI: 10.1007/s10535-012-0058-6

Large-scale gene expression analyses were conducted during embryonic development of Capsella bursa-pastoris using the cDNA-AFLP technique, and 231 differentially expressed genes were identified. Most of the transcript-derived fragments (TDFs) were identified against Arabidopsis sequences and a minority against other plant sequences by searching in NCBI database. A total of 128 TDFs, homologous to genes with known functions, were classified into 13 functional categories, and many of them were involved in transcription, metabolism, disease defense and protein binding. Expression profiles of 90 C. bursa-pastoris genes were compared with those of the corresponding Arabidopsis genes and 64 genes showed similar expression profiles and the expression profiles of the rest 26 TDFs were different from those of the relevant Arabidopsis genes. Besides, some genes related to oxidative stress and ABA response were fiercely up-regulated during embryogenesis of C. bursa-pastoris according to RT-PCR.

Chalcone isomerase in grape vine: gene expression and localization in the developing fruit

W. Wang, H. -L. Wang, S. -B. Wan, J. -H. Zhang, P. Zhang, J. -C. Zhan, W. -D. Huang

Biologia plantarum 56:545-550, 2012 | DOI: 10.1007/s10535-011-0216-2

Chalcone isomerase (CHI, EC 5.5.1.6) is an entrance enzyme in the flavonoid biosynthesis, which catalyzes the conversion of chalcones to flavanones. In this study, the full-length CHI cDNA from grape vine (Vitis vinifera L.) was cloned, the recombinant protein was purified and the polyclonal antibody was prepared. Using these tools, the expression and tissue localization of CHI in developing grape berry was analyzed by RT-PCR, gel blot hybridization and immunohistochemical techniques. The expression of CHI was dependent on developmental stage, and CHI protein was mainly distributed in vascular bundles throughout all the stages of berry development, which suggested that flavonoids in the berry might have been partially synthesized in situ.

Identification and characterization of a novel gene encoding myb-box binding zinc finger protein in Gossypium arboreum

M. Zahur, A. Maqbool, M. Irfan, A. Jamal, N. Shahid, B. Aftab, T. Husnain

Biologia plantarum 56:641-647, 2012 | DOI: 10.1007/s10535-012-0255-3

Zinc finger proteins are encoded by the genes chiefly involved in stress resistance hormone signal transduction of plants. In this study, a cDNA encoding a zinc finger transcription factor was isolated by the yeast one-hybrid system from Gossypium arboreum using the MYB-box element of the universal stress gene (GUSP1) promoter as bait. The corresponding protein (named GaZnF) can bind specifically to a 13 bp MYB-box region. The GaZnF cDNA is 1093 bp in length, including a 510 bp open reading frame. The predicted GaZnF protein contains ANI-A20 motifs and shares a high sequence similarity with zinc finger proteins from other plants. Spatial expression pattern of GaZnF was studied under drought, heavy metals and salt stresses through real-time PCR. The gene showed enhanced expression under each stress treatment with maximum transcript abundance in root tissues. The results support the hypothesis that G. arboreum zinc finger proteins are involved in plant response to drought, salt and heavy metal stresses.

Putrescine modulates antioxidant defense response in wheat under high temperature stress

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

Biologia plantarum 56:757-761, 2012 | DOI: 10.1007/s10535-012-0209-1

Effects of putrescine (Put) on responses of wheat (Triticum aestivum) seedlings or detached tillers at mid-milky stage to high temperature (HT) stress were investigated. The heat tolerant cv. PBW 343 exhibited higher content of antioxidants and activities of antioxidative enzymes, while lower content of lipid peroxides as compared to the heat-sensitive cv. HD 2329. HT elevated peroxidase (POX) and superoxide dismutase (SOD) activities, while diamine oxidase (DAO) and polyamine oxidase (PAO) activities were reduced in roots, shoots and developing grains. Application of Put under HT further enhanced POX and SOD activities along with increased content of ascorbate and tocophereol in grains. Invariably POX and SOD revealed higher activities in roots while CAT, DAO and PAO activities were higher in shoots. The content of lipid peroxides was increased in roots and shoots of HT stressed seedlings but less in Put-treated cv. PBW 343.

Effect of aluminum on the in vitro activity of acid phosphatases of four potato clones grown in three growth systems

L. A. Tabaldi, D. Cargnelutti, G. Y. Castro, J. F. Gonçalves, R. Rauber, D. A. Bisognin, M. R. C. Schetinger, F. T. Nicoloso

Biologia plantarum 55:178-182, 2011 | DOI: 10.1007/s10535-011-0026-6

The aim of this study was to assess the effect of aluminum on the in vitro activity of acid phosphatases (APases) of four potato clones, Macaca and Dakota Rose (Al-sensitive), and SMIC148-A and Solanum microdontum (Al-tolerant), grown in vitro, in hydroponics or in a greenhouse. The enzyme was assayed in vitro in the presence of 0, 1.85, 3.70, 5.55 and 7.40 mM Al. In plantlets grown in vitro, root APases were inhibited by Al in all clones, while shoot APases were inhibited by Al in S. microdontum and Dakota Rose and increased in Macaca at all Al concentrations. In plantlets grown in hydroponics, root APases increased in Macaca at 1.85 mM Al, whereas decreased at all Al levels in S. microdontum. In greenhouse plantlets, root APases decreased at 7.40 mM Al in S. microdontum and SMIC148-A, and at 3.70, 5.55 and 7.40 mM Al in Dakota Rose. Shoot APases decreased in Macaca and SMIC148-A. Conversely, in Dakota Rose, APases increased at 1.85 and 3.70 mM Al. These results show that the effect of Al toxicity on in vitro APase activity depends not only on Al availability but also on the plant organ, genetic background, and the growth conditions. Therefore, it suggests that acid phosphatases activity assessed in vitro might not be a good parameter to validate the screening for adaptation of potato clones to Al toxicity.

Systemin-inducible defence against pests is costly in tomato

G. Corrado, D. Agrelli, M. Rocco, B. Basile, M. Marra, R. Rao

Biologia plantarum 55:305-311, 2011 | DOI: 10.1007/s10535-011-0043-5

The possible costs of inducible defences against pests were evaluated in tomato. To activate inducible resistance traits, we used transgenic plants that over-expressed the systemin precursor (prosystemin). The constitutive expression of the prosystemin, which is normally induced by herbivores in tomato, allowed the measurement of the impact of induced defences in a pest-free environment. The results showed that the continuous activation of traits that are normally induced by pests should be costly, affecting the growth, physiology and reproductive success of tomato plants.

Cadmium accumulation and tolerance in Populus nigra and Salix alba

M. Zacchini, V. Iori, G. Scarascia Mugnozza, F. Pietrini, A. Massacci

Biologia plantarum 55:383-386, 2011 | DOI: 10.1007/s10535-011-0060-4

Rooted cuttings of Populus nigra L. clone Poli and Salix alba L. clone SS5 were treated for three weeks with 50 μM CdSO4 in nutrient solution. The willow showed a far higher Cd tolerance, expressed as tolerance index (Ti), than the poplar in both roots and leaves. The root Cd content was higher in poplar than in willow, whereas in leaves the opposite was found. As a consequence, the translocation factor (Tf) revealed a greater ability of Cd transport in willow than in poplar. Cd treatment enhanced cysteine, γ-glutamylcysteine and reduced glutathione contents in roots of both species, whereas in leaves they were only enhanced in poplar. Furthermore, only poplar leaves showed an enhanced content of phytochelatins, whereas malic and citric acids rose in response to Cd only in the willow leaves. Cd treatment increased putrescine, spermidine and spermine contents in both roots and leaves of the willow, whereas in poplar only the putrescine content was enhanced in roots.

Ultrastructure changes of seedlings of Kosteletzkya virginica under waterlogging conditions

J. Zhou, S. W. Wan, G. Li, P. Qin

Biologia plantarum 55:493-498, 2011 | DOI: 10.1007/s10535-011-0115-6

The changes in ultrastructure of leaf cell in waterlogged Kosteletzkya virginica seedlings were observed by transmission electron microscope. During waterlogging, the chloroplasts turned into a round shape and their volume was gradually reduced. Furthermore, the lamellae of thylakoids swelled, and the inclusions in chloroplast decreased. The shape of starch grains slightly changed, but their number and volume decreased, and they even disappeared in the end. On the other hand, plastoglobules enlarged and their amount enhanced gradually. The membrane and inner cristea of mitochondria gradually became unclear, while the mitochondria firstly enlarged but disappeared at the end. Similar to chloroplast, cell nucleus dwindled gradually, concentrated and tended to a round shape. Additionally, the annulate lamellae and multivesicular body occurred on the 20th day of experiment, and the cell wall distorted and twisted at the late stage of waterlogging. Consequently, these changes of organelles are the typical characteristics of the complete cell disintegration or death for Kosteletzkya virginica under long-term waterlogging.

Development of thirty new polymorphic microsatellite primers for Paeonia suffruticosa

X. -G. Hou, D. -L. Guo, S. -P. Cheng, J. -Y. Zhang

Biologia plantarum 55:708, 2011 | DOI: 10.1007/s10535-011-0172-x

Four new microsatellite primer pairs were developed in tree peony (Paeonia suffruticosa) based on the database mining and other twenty-six primer pairs by fast isolation by AFLP of sequences containing repeats (FIASCO) method. The polymorphism of each locus was further evaluated in 40 individuals of one population plus 5 tree peony related species. The number of alleles per locus ranged from 3 to 7 and the expected (He) and observed (Ho) heterozygosity at each locus ranged from 0.42 to 0.78 and 0.28 to 0.59, respectively. These microsatellite markers will be useful for investigating genetic diversity and studies of population genetic structure of tree peony.

Effects of hypobaric growth conditions on morphogenic potential and antioxidative enzyme activities in Saussurea involucrata

B. Guo, B. H. Abbasi, Y. H. Wei

Biologia plantarum 55:783, 2011 | DOI: 10.1007/s10535-011-0188-2

Effects of reduced atmospheric pressure on morphogenic potential and antioxidative enzyme activities in regenerated tissues of Saussurea involucrata were evaluated. Leaf explants were cultured at atmospheric pressure 30, 60 or 101 kPa on Murashige and Skoog (MS) medium with several plant growth regulators (PGRs). Oxygen and carbon dioxide partial pressures were maintained at 21 and 0.038 kPa, respectively. At 60 kPa, 12 shoots per explant were recorded, which was 1.5 and 2.1-folds higher than at 101 and 30 kPa, respectively. A shooting frequency of 80 % was observed at 60 and 101 kPa. Rooted plantlets were obtained on MS medium with indoleacetic acid. At 30, 60 and 101 kPa, rooting of shoots was 49, 72 and 85.6 %, respectively. The rooted plantlets were successfully acclimatized to soil. Activities of all of antioxidative enzymes determined in present study were affected by hypobaric conditions.

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