biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1231 to 1260 of 6170:

Genetic diversity assessment in Portugal accessions of Olea europaea by RAPD markers

A. I. Cordeiro, J. F. Sanchez-Sevilla, M. C. Alvarez-Tinaut, M. C. Gomez-Jimenez

Biologia plantarum 52:642-647, 2008 | DOI: 10.1007/s10535-008-0125-1

Eighty seven olive (Olea europaea ssp. sativa L.) cultivar accessions from Portugal were characterized by means of randomly amplified polymorphic DNA (RAPD) markers. Of the 11 arbitrary 10-mer primers tested a total of 92 polymorphic bands were obtained, representing 87.6 % of the total amplification products. Twenty nine different genotypes were clearly discriminated. Differences were not found among the amplification profiles from different individuals of the same cultivar. All the genotypes could be identified by the combination of three primers: OPR-1, OPK-14 and OPA-1, seven genotype-specific markers being detected. Genetic relationships were estimated by the unweighted pair-group method with arithmetic averaging (UPGMA). The genetic analysis of the results showed a gradual distance between the various cultivars, making it difficult to identify well-differentiated phylogenetic groups, although two clusters were distinguishable with 35 % similarity, in addition to three independent branches with lower similarity: Galega, Tentilheira and Redondal. The dendrogram reflect some relationships for most of the cultivars according to the use of the fruit and ecological adaptation.

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

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

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

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

The effect of irradiance and redox-modifying reagents on the 52 kDa protein disulfide isomerase of Arabidopsis chloroplasts

D.-P. Lu, D. A. Christopher

Biologia plantarum 52:42-48, 2008 | DOI: 10.1007/s10535-008-0006-7

Immunoblot analysis was used to assess the effects of light and redox-modifying chemicals on the 52 kDa protein disulfide isomerase (PDI) from chloroplasts of Arabidopsis thaliana. A monoclonal antiserum was used that preferentially cross-reacts with the 52 kDa relative to the 65 kDa isoform of PDI. The PDI-52 was most abundant in leaves, flowers, stems and seeds, but was undetected in roots. PDI-52 formed a ∼220 kDa protein complex on blue native gels, indicating that it associates with either itself or other proteins in chloroplasts. Light decreased the levels of PDI-52 by 80 %, relative to the control protein (the CF1 subunit of chloroplast ATP synthase). Treatment with dithiothreitol decreased the content of the 52 kDa protein by half. In contrast, when the reduction of plastoquinone is blocked by DCMU, or when the plants are treated with phosphate, PDI-52 contents increased by 1.5 to 2-fold relative to CF1. The effect of the chemical treatments coincided with the effect of the light/dark cycle and implied that light decreased PDI-52 protein content by way of the cellular redox environment.

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

J. Gloser

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

Trichloroacetic acid of different origin in Norway spruce needles and chloroplasts

S. T. Forczek, P. Schröder, L. Weissflog, G. Krüger, J. Rohlenová, M. Matucha

Biologia plantarum 52:177-180, 2008 | DOI: 10.1007/s10535-008-0039-y

Trichloroacetic acid (TCA), a secondary atmospheric pollutant, is also formed in forest soil and thus ranked among natural organohalogens. The observed biooxidation of atmospheric tetrachloroethene (PER) to TCA in chloroplasts has led to the investigation of the mode of action of TCA in spruce needles, since TCA is also accumulated in the needles after its rapid uptake from soil by roots. Being phytotoxic, TCA considerably influences conifers by affecting their photosynthetic apparatus. We examined the transport of TCA from soil into chloroplasts in order to compare the effects of TCA on conifers from both sources, i.e. endogenously produced within chloroplasts or taken up by roots. The influence of TCA formed in chloroplasts was found to be much more adverse than that of "soil" TCA.

Merchant, S., Briggs, W.R., Chandler, V.L. (ed.): Annual Review of Plant Biology. Vol. 58, 2007

Z. Šesták

Biologia plantarum 52:258,266, 2008 | DOI: 10.1007/s10535-008-0055-y

Expression of the ndhCKJ operon of barley and editing at the 13th base of the mRNA of the ndhC gene

P. H. Serrot, B. Sabater, M. Martín

Biologia plantarum 52:347-350, 2008 | DOI: 10.1007/s10535-008-0071-y

We have determined a 1778 base sequence which includes the complete ndhCKJ operon of barley plastid DNA. This operon contains the ndhC, ndhK and ndhJ genes encoding the polypeptides NDH-C, NDH-K and NDH-J, respectively, of the thylakoid Ndh complex. Poly-and mono-cistronic transcripts were identified, with an increase in the latter under oxidative stress induced by herbicide Paraquat. Complete sequencing of transcript cDNAs and of the corresponding regions of five additional monocots revealed that the 13th C (cytosine) base of ndhC is edited to U (uracil) converting the CAC codon (encoding histidine, H) to UAC (encoding tyrosine, Y). Dicots having the appropriate TAC codon at the genome sequence do not require editing. The new editing site can not be predicted by comparison with the Marchantia sequence (that has a C at the 13th position) because, in contrast to Angiosperms, the amino-terminal sequence in lower plants is highly variable in NDH-C.

Improved in vitro rooting of Prunus dulcis Mill. cultivars

S. Tereso, C. M. Miguel, M. Mascarenhas, A. Roque, H. Trindade, J. Maroco, M. M. Oliveira

Biologia plantarum 52:437-444, 2008 | DOI: 10.1007/s10535-008-0088-2

A highly reproducible system was developed for efficient rooting of cultivars Boa Casta (BC) and Peneda and a BC seedling-derived clone (BC VII) of almond (Prunus dulcis Mill.). Twenty-four accessions derived from the clone BC VII and subjected to various in vitro culture treatments were screened. The long induction pre-treatment (LIP, 5 d), the brief induction pre-treatment (BIP, 16 h) and the hormonal shock by short dipping in hormone solution (1 min), were tested. BIP was the only that allowed rooting of cultivars. In BC VII, it induced high rooting frequencies (47-100 %) when using a solution of 0.4 mM indole-3-butyric acid solidified with 2 g dm-3 gellam gum for 16-h. The response to the auxin type was variable depending on the cultivar and the root induction pre-treatment used. Root number was significantly different between the two cultivars and BC VII. Root length was significantly higher when using 0.005 mM IBA in LIP but this concentration induced apical necrosis. The improved acclimatization procedure for up to 4 weeks increased the survival to 45 %. The initiation and development of adventitious roots were proved to be asynchronous.

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

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

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

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

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

K. Kosová, I. T. Prášil, P. Vítámvás

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

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

In vitro cormlet development in Crocus sativus

K. D. Sharma, R. Rathour, R. Sharma, S. Goel, T. R. Sharma, B. M. Singh

Biologia plantarum 52:709-712, 2008 | DOI: 10.1007/s10535-008-0136-y

An improved protocol for generation of viable cormlets from tissue culture derived shoots of saffron has been developed. Multiple shoots were generated from apical buds, small corms and in vitro developed single shoots. Bunches of two to three shoots when cultured on half strength Murashige and Skoog (MS) medium containing 3 mg dm-3 benzyladenine (BA) and 80 g dm-3 sucrose developed 1.89 cormlets per shoot bunch with an average fresh mass of 1.18 g. It took nine months from culture of apical buds to the harvest of cormlets but under field conditions 22 months. Sucrose appeared to be essential for cormlet induction as no cormlets were developed in the medium devoid of sucrose and only 0.29 per shoot in medium containing mannitol. In vitro derived cormlets sprouted from apical and axillary buds on MS medium containing 12 mg dm-3 BA, 3 mg dm-3 indolebutyric acid and 30 g dm-3 sucrose. Daughter cormlet formation from in vitro derived cormlets was also observed.

Plant regeneration from callus culture of Curcuma aromatica and in vitro detection of somaclonal variation through cytophotometric analysis

S. Mohanty, M. K. Panda, E. Subudhi, S. Nayak

Biologia plantarum 52:783-786, 2008 | DOI: 10.1007/s10535-008-0153-x

Callus cultures initiated from shoot base explants of Curcuma aromatica Salisb. were maintained on Murashige and Skoog (MS) media supplemented with 2 mg dm-3 2,4-dichlorophenoxyacetic acid alone or with 0.5 mg dm-3 kinetin. Plantlets were regenerated from 60 and 180-d-old callus on MS media supplemented with 3 mg dm-3 benzyladenine and 0.5 mg dm-3 α-naphthalene acetic acid. Approximately 8-10 plantlets were produced after 30-40 d of culture per 50 mg of callus inoculated. Out of 113 regenerants analyzed 85 plants were exclusively diploid and 28 were predominantly diploid revealing presence of polyploid nuclei. Frequency of polyploid cells were more in regenerants obtained from 180-d-old callus then from 6-d-old callus which might be attributed to the ageing of callus.

Endogenous abscisic acid and protein contents during seed development of Araucaria angustifolia

V. Silveira, C. Santa-Catarina, T. S. Balbuena, F. M. S. Moraes, C. A. O. Ricart, M. V. Sousa, M. P. Guerra, W. Handro, E. I. S. Floh

Biologia plantarum 52:101-104, 2008 | DOI: 10.1007/s10535-008-0018-3

This paper describes a proteome analysis and changes in endogenous abscisic acid (ABA) contents during seed development of Araucaria angustifolia (Bert.) O. Ktze. Megagametophytes and embryonic axis tissues exhibited a similar ABA variation pattern during seed development, reaching maximum values at the pre-cotyledonary stage. The embryonic axis protein content increased until the cotyledonary stage with following stabilization at mature seed. The two-dimensional electrophoresis at the torpedo developmental stage showed approximately 230 polypeptides against 340 in the mature stage. Peptide mass fingerprinting analyses identified three polypeptides, corresponding to an AtSAC4, a late embryogenesis abundant (LEA) and a storage protein, respectively.

Effects of silicon on photosynthesis, water relations and nutrient uptake of Phaseolus vulgaris under NaCl stress

P. Zuccarini

Biologia plantarum 52:157-160, 2008 | DOI: 10.1007/s10535-008-0034-3

A greenhouse experiment was conducted to investigate the effects of silicon application on Phaseolus vulgaris L. under two levels of salt stress (30 and 60 mM NaCl in the irrigation water). Salinity significantly reduced growth, stomatal conductance and net photosynthetic rate, and increased Na+ and Cl- content mainly in roots. Silicon application enhanced growth of salt stressed plants, significantly reduced Na+ content especially in leaves and counterbalanced the effects of NaCl on gas exchange; the effect was more evident at 30 mM NaCl. Cl- content in shoots and roots was not significantly modified by silicon application; the drop in K+ content caused by salinity was partially counterbalanced by silicon, especially in roots.

Campbell, A., Anderson, W.W, Jones, E.W. (ed.): Annual Review of Genetics. Vol. 410

T. Gichner

Biologia plantarum 52:230, 2008 | DOI: 10.1007/s10535-008-0050-3

Induction of pathogenesis-related proteins in sugarcane leaves and cell-cultures by a glycoprotein elicitor isolated from Colletotrichum falcatum

A. Ramesh Sundar, R. Velazhahan, S. Nagarathinam, P. Vidhyasekaran

Biologia plantarum 52:321-328, 2008 | DOI: 10.1007/s10535-008-0066-8

The induction of pathogenesis-related (PR) proteins in sugarcane (Saccharum officinarum L.) leaves and suspension-cultured cells in response to treatment with a glycoprotein elicitor isolated from Colletotrichum falcatum (the red rot pathogen) was investigated. Treatment of leaves and cells with the elicitor resulted in a much marked increase in the activities of chitinase and β-1,3-glucanase in red rot resistant (BO 91) than susceptible (CoC 671) sugarcane cultivar. SDS-PAGE analysis revealed that C. falcatum elicitor induced the accumulation of several proteins in suspension-cultured cells of resistant cultivar (BO 91); among them the 35 kDa protein was predominant. Whereas, a 27 kDa protein was induced predominantly in the cells of susceptible cultivar upon treatment with the elicitor. When sugarcane leaves were treated with C. falcatum elicitor, two proteins with apparent molecular masses of 25 and 27 kDa were induced both in the resistant and susceptible cultivars. However, the induction was stronger in the resistant than the susceptible cultivar. Immunoblot analysis for chitinase indicated that a protein with an apparent molecular mass of 37 kDa cross-reacting with barley chitinase antiserum was strongly induced in the suspension cultured cells of both the cultivars. The induction of 37 kDa chitinase was more in the cells of resistant cultivar than in the susceptible cultivar. Western blot analysis revealed that a 25 kDa thaumatin-like protein (TLP) cross-reacting with bean TLP antiserum was strongly induced in leaves and cultured cells of both resistant and susceptible cultivars due to elicitor treatment.

Changes in activities of antioxidant enzymes during Chenopodium murale seed germination

J. Bogdanović, K. Radotić, A. Mitrović

Biologia plantarum 52:396-400, 2008 | DOI: 10.1007/s10535-008-0083-7

The activities and isoenzyme pattern of catalase (CAT), superoxide dismutase (SOD) and peroxidase (POD) have been studied during germination of Chenopodium murale seeds. CAT and SOD activities were similar in dry seeds and during first 2 d of imbibition. CAT activity increased during radicle protrusion and early seedling development. The maximum SOD activity was found at final stages of germination and early seedling development. POD activity was not detected until the 6th day of germination, indicating POD involvement not until early seedling development. Gibberellic acid (GA3, 160 µM) delayed and synchronized C. murale germination.

Stability of β-glucuronidase gene expression in transgenic Tricyrtis hirta plants after two years of cultivation

S. Mori, E. Oka, H. Umehara, H. Kobayashi, Y. Hoshi, M. Kondo, K. Ogata, M. Nakano

Biologia plantarum 52:513-516, 2008 | DOI: 10.1007/s10535-008-0099-z

Transgenic plants of Tricyrtis hirta carrying the intron-containing β-glucuronidase (GUS) gene under the control of the CaMV35S promoter have been cultivated for two years. Four independent transgenic plants produced flowers 1-2 years after acclimatization, and all of them contained one copy of the transgene as indicated by inverse polymerase chain reaction (PCR) analysis. All the four transgenic plants showed stable expression of the gus gene in leaves, stems, roots, tepals, stamens and pistils as indicated by histochemical and fluorometric GUS assays, although differences in the GUS activity were observed among different organs of each transgenic plant. No apparent gus gene silencing was observed in transgenic T. hirta plants even after two years of cultivation.

Stomatal and chlorophyll fluorescence characteristics in European beech cultivars during leaf development

I. Čaňová, J. Ďurkovič, D. Hladká

Biologia plantarum 52:577-581, 2008 | DOI: 10.1007/s10535-008-0115-3

Changes in stomatal and chlorophyll fluorescence characteristics were analyzed in the course of leaf expansion in European beech (Fagus sylvatica L.) cultivars Aurea Pendula, Cristata, Rohanii, Rotundifolia and Viridivariegata. Stomatal length increased gradually from the second to the fifth phenological stage. Rotundifolia reached the highest mean stomatal length whereas Aurea Pendula and Cristata had the lowest values. Stomatal density for all cultivars decreased from the second to the fifth stage. Aurea Pendula reached the highest stomatal density in all phenological stages. The highest values of variable to maximum fluorescence ratio (Fv/Fm) were recorded in Rotundifolia, Rohanii, and the wild type, whereas Viridivariegata showed the lowest Fv/Fm. Similar trend was found in maximum to initial fluorescence ratio (Fm/F0), but extremely low Fm/F0 values were recorded in Viridivariegata in the last phenological stage. The highest potential electron capacity was found in Rohanii, Viridivariegata and the wild type and lowest in Cristata. This parameter increased in the course of early leaf development.

Ascorbate and glutathione metabolism in embryo axes and cotyledons of germinating lupine seeds

M. Garnczarska, Ł. Wojtyla

Biologia plantarum 52:681-686, 2008 | DOI: 10.1007/s10535-008-0131-3

Changes in ascorbate and glutathione contents and the activities and isoenzyme patterns of enzymes of the ascorbate-glutathione cycle were investigated in embryo axes and cotyledons of germinating lupine (Lupinus luteus L.) seeds. Ascorbate content was not significantly affected over the initial 12 h of imbibition in embryo axes, but afterwards increased, with the most rapid accumulation coinciding with radicle emergence. A somewhat similar trend was observed for glutathione with significant increase in embryo axes shortly before radicle protrusion followed by decline in the next hours. In cotyledons the ascorbate pool rose gradually during germination but the amount of glutathione showed fluctuations during a whole germination period. The activity of ascorbate peroxidase (APX) rose progressively in embryo axes, while activities of dehydroascorbate reductase (DHAR) and glutathione reductase (GR) showed transient increase during germination. New isoforms of APX and GR were synthesized, suggesting that they play a relevant role during germination. All analyzed enzymes were already present in dry seeds which allowed them to be active immediately after imbibition.

Exploration on the vacuum infiltration transformation of pakchoi

H.-J. Xu, H. Zhao, X.-F. Wang, F. Liu

Biologia plantarum 52:763-766, 2008 | DOI: 10.1007/s10535-008-0148-7

Agrobacterium tumefaciens mediated vacuum infiltration transformation in planta has been established in pakchoi, a kind of Chinese cabbage, but the transformation frequency in harvested seeds has varied in the range of 0.5 to 3.0 × 10-4 over several years and is much lower than the transformation frequency in Arabidopsis thaliana. To understand that, the distribution and vitality changes of A. tumefaciens in plant tissues were examined. Results revealed that there was a majority of A. tumefaciens in the flower compared with that in the stem and in the leaf at all times after infiltration. As fact of transformants in the upper part of the treated plant (T0) stalk and fact of the survival of A. tumefaciens in the plant were proved, possibilities of optimizing the transformation conditions to increase the transformation frequency in pakchoi was discussed.

Schekman, R., Goldstein L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Vol. 23

T. Gichner

Biologia plantarum 52:86, 2008 | DOI: 10.1007/s10535-008-0013-8

In vitro plant regeneration in six cultivars of Capsicum spp. using different explants

K. Sanatombi, G. J. Sharma

Biologia plantarum 52:141-145, 2008 | DOI: 10.1007/s10535-008-0029-0

In vitro regeneration from leaf, cotyledon and hypocotyl explants of six cultivars belonging to three species of Capsicum was achieved by direct organogenesis. The cultivar Umorok showed the best response while Meiteimorok, Haomorok, Mashingkha and Uchithi showed intermediate response and the cultivar Chiengpi was the least responsive. Leaf and cotyledon explants regenerated more shoots than hypocotyl explants and the maximum number of shoots were produced on Murashige and Skoog (1962) medium containing 8.8 µM 6-benzylaminopurine (BAP) with 11.4 µM indole-3-acetic acid (IAA). Elongation of shoot buds derived from different explants was achieved on medium containing 2.8 µM IAA and the elongated shoots were rooted on medium containing 2.8 or 5.7 µM IAA and 2.4 or 4.9 µM indole-3-butyric acid (IBA). Four-week old rooted plantlets were hardened and transplanted to the soil. The plantlets showed 90 % survival during transplantation.

Stress-induced degradation of D1 protein and its photoprotection by DCPIP in isolated thylakoid membranes of barley leaf

D. M. Pandey, U. -D. Yeo

Biologia plantarum 52:291-298, 2008 | DOI: 10.1007/s10535-008-0061-0

Effects of various stress treatments such as NaCl, hydrogen peroxide, hydroxyl free radical, and high irradiance (HI, 1 000 µmol m-2 s-1) on the photosystem (PS) 2 mediated electron transport rate and the degradation of D1 protein in the thylakoid membranes of barley were studied. The applied stresses caused significant reduction in the PS 2-mediated electron transport and a degradation of D1 protein that was highest during the HI-treatment. Presence of 2,6-dichlorophenol indophenol (DCPIP), which is an artificial electron acceptor from water, significantly minimizes the HI-induced deleterious effect on the PS 2-mediated electron transport rate, disarrangement of PS machinery, and degradation of the D1 protein. HI in the absence of an acceptor resulted in production of reactive oxygen species due to electron transfer to oxygen.

Plant regeneration from mesophyll protoplasts of Agrobacterium rhizogenes-transformed Astragalus melilotoides

G. N. Zhang, J. F. Jia, J. G. Hao, X. R. Wang, T. He

Biologia plantarum 52:373-376, 2008 | DOI: 10.1007/s10535-008-0078-4

Plant regeneration from mesophyll protoplasts of Agrobacterium rhizogenes-transformed Astragalus melilotoides Pall. was here developed. The protoplasts were isolated directly from the leaves of the hairy root-induced plants. The highest yield of protoplasts was obtained from fully expanded leaves of young plants. Their viability was up to 72 ± 2.3 %. The highest division frequency (32.4 ± 0.13 %) and sustained divisions were obtained in Durand, Potrykus and Donn (DPD) medium supplemented with 2.0 mg dm-3 2,4-dichlorophenoxyacetic acid, 0.2 mg dm-3 6-benzylaminopurine, 0.3 M mannitol, 2 % sucrose and 500 mg dm-3 casein hydrolysate at the plating density of 3.0 × 105 cm-3. The frequency of shoot differentiation from protocalli reached to 91.75 ± 3.1 %. Opine synthesis and polymerase chain reaction analysis confirmed that T-DNA still existed in the protoplast regenerated plants.

Suppression subtractive hybridization identifies differentially expressed genes in Brassica napus chlorophyll-reduced mutant

H. Y. Wang, Y. H. Hu, Y. Liu, Y. T. Zhou, M. L. Wang, Y. Zhao

Biologia plantarum 52:486-492, 2008 | DOI: 10.1007/s10535-008-0094-4

Suppressive subtraction hybridization (SSH) was used to identify differentially expressed genes caused by a chlorophyll-reduced mutation in B. napus. The cDNA fragments, derived from SSH positive subtractive library (tester: normal wild type, driver: mutant) were cloned into pMD18-T vector. Two hundred SSH cDNA clones were screened by dot blot array, and 151 clones were identified as differentially expressed cDNA fragments in Cr3529 line. Thirty-six positive clones which showed marked expression differences were selected and sequenced. After redundant cDNAs were removed, 33 differentially expressed unique cDNA section clones were obtained. Among the 33 clones, two clones possess different parts of the cDNA sequence of the same gene coding geranylgeranyl reductase, four clones belong to unknown proteins, and the rest share homology to genes of diverse class. Sequence analysis showed that at least 12 genes were discovered to be related to the photosynthesis, seven of them coded the proteins which belong to the subunit of photosystem 2. RNA gel blot analysis showed that compared with 3529, the gene expression of the chlorophyll a/b-binding protein Lhcb2 in photosystem 2 declined markedly in the cotyledons and seedling leaves of Cr3529, indicating that the reduced light-harvesting complex 2 accumulation in thylakoid membrane of Cr3529 was due to the decrease of the related gene mRNA level for translation.

In vitro plant regeneration from leaf explants of Ophiorrhiza japonica

G.-Y. Kai, L.-M. Dai, X.-Y. Mei, J.-G. Zheng, W. Wang, Y. Lu, Z.-Y. Qian, G.-Y. Zhou

Biologia plantarum 52:557-560, 2008 | DOI: 10.1007/s10535-008-0110-8

An efficient in vitro plant regeneration system from leaves of Ophiorrhiza japonica Blume was established for the first time. Callus formation rate was more than 90.4 % from leaf segments on Murashige and Skoog (MS) supplemented with either α-naphthaleneacetic acid (NAA) alone or in combination with 6-benzyladenine (BA). The highest shoot regeneration (78.9 %) was achieved on MS medium containing 2.0 mg dm-3 BA and 0.2 mg dm-3 NAA, with an average of 9.4 shoots developed per leaf segment. Shoot regeneration was also improved when the leaf explants were cultured in MS basal medium supplemented with 0.5 % (m/v) polyvinylpyrrolidone (PVP). The leaf explants from seedlings with age of about 18-27 d showed the highest shoot regeneration. The regenerated shoots were rooted on half-strength basal MS medium supplemented with 0.5 mg dm-3 indole-3-butyric acid (IBA), which averagely produced 24.8 roots per shoot. The plantlets were transferred to soil, where 100 % survived after 1 month of acclimatization.

Assessment of genetic diversity of pigeonpea cultivars using RAPD analysis

P. Ray Choudhury, I. P. Singh, B. George, A. K. Verma, N. P. Singh

Biologia plantarum 52:648-653, 2008 | DOI: 10.1007/s10535-008-0126-0

In our present study assessment of genetic diversity and identification of pigeonpea cultivars has been done by employing 76 random amplified polymorphic DNA (RAPD) primers. Out of 796 amplified products, 587 showed polymorphism (73.7 %) and an average of 10.47 bands were amplified per primer. Cluster analysis based on Jaccard's similarity coefficient using UPGMA grouped all the cultivars into three clusters. The cluster I consists of 7 cultivars, cluster II of 11 cultivars in 4 sub-clusters and cluster III 4 cultivars. Two cultivars were not included in any cluster. The clustering was strongly supported by high bootstrap values. Furthermore, high values of the average heterozygosity (Hav) and marker index (MI) also indicated the efficiency of RAPD as a marker system.

Ca2+ reduces the effect of hypoxia in mosses Mnium undulatum and Polytrichum commune

A. Rzepka, J. Krupa

Biologia plantarum 52:740-742, 2008 | DOI: 10.1007/s10535-008-0143-z

Gametophores of mosses Mnium undulatum and Polytrichum commune were submerged in distilled water or in calcium chloride solution (0.9 mM Ca2+) to induce hypoxia. The net photosynthetic (PN) and dark respiration rate (RD) were measured in the air containing 300-400 µmol(CO2).mol-1(air) and 0.21 mol(O2).mol-1(air). PN of M. undulatum gametophores decreased to 58 % of the control after 1-h submersion in water, whereas to 80 % of the control in P. commune gametophores. A smaller decrease in PN was observed when the gametophores were immersed in CaCl2 solution. In hypoxia, RD in the tested mosses species was a little higher than in the control.

Effects of high night temperature on lipid and protein compositions in tonoplasts isolated from Ananas comosus and Kalanchoë pinnata leaves

Q. Lin, Y. M. Wang, A. Nose, H. T. K. Hong, S. Agarie

Biologia plantarum 52:59-65, 2008 | DOI: 10.1007/s10535-008-0008-5

Effects of high night temperature on the lipid and protein compositions in the tonoplasts isolated from the leaves of two Crassulacean acid metabolism (CAM) plants, Ananas comosus (pineapple) and Kalanchoë pinnata were studied. The results showed that the phospholipids/protein ratios in the tonoplasts isolated from pineapple and K. pinnata leaves decreased from 1.82 to 1.21 and 2.63 to 1.50, respectively, as the night temperature increased from 20 to 37 °C. Under high night temperature, relative amount of total unsaturated fatty acids in K. pinnata was increased by 6 %, which was mainly caused by increased C18:2 and C18:3, whereas unsaturated fatty acids, C18:2 and C18:3 in pineapple did not show significant change. The distribution patterns of tonoplast proteins in the two CAM species were different between normal and high night temperature and in K. pinnata, especially those with molecular mass ranging from 66.2 to 97.4 KDa. Compared with normal night temperature, more proteins were found in pineapple, but no difference was found in K. pinnata. Thus, above result indicated that the pineapple tonoplasts could keep higher rigidity under high night temperatures compared to the K. pinnata.

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