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In vitro cultivation of donor quince shoots affects subsequent morphogenesis in leaf explantsM. Mingozzi, S. MoriniBiologia plantarum 53:141-144, 2009 | DOI: 10.1007/s10535-009-0021-3 The effect of in vitro cultivation of donor shoots on subsequent morphogenesis in leaf explants of quince (Cydonia oblonga Mill.) clone BA29 was investigated. Proliferating donor shoots were cultured in ventilated or closed vessels under different photosynthetic photon flux densities (PPFD; 200 and 100 µmol m-2 s-1) with 0, 15, 30 g dm-3 sucrose. Shoots grown in ventilated vessels, especially with sucrose at 15 or 30 g dm-3, were better developed with fully expanded leaves compared to those in standard closed vessels. Leaves collected from pre-treated donor shoots were used to assess regeneration capacity. Somatic embryo production was highest in leaves harvested from shoots cultured in closed vessels with 30 g dm-3 sucrose and in ventilated vessels with 15 and 30 g dm-3 sucrose and under high PPFD which was, in comparison with the control treatment (closed vessel, 30 g dm-3 sucrose and low PPFD), about 2 to 2.5 times higher. A similar response was observed for root regeneration. |
Anthocyanin accumulation and expression pattern of anthocyanin biosynthesis genes in developing wheat coleoptilesN. Ahmed, M. Maekawa, K. NodaBiologia plantarum 53:223-228, 2009 | DOI: 10.1007/s10535-009-0043-x Anthocyanin accumulation and expression pattern of anthocyanin biosynthesis genes were investigated in developing coleoptiles of wheat (Triticum aestivum L.). In epidermal cell layers of the growing coleoptiles of cv. Hope, anthocyanins started to accumulate between day 2 and 3 after germination, reached their maximum on day 6 and then decreased while another cultivar, Chinese Spring (CS) did not accumulate anthocyanin pigments. None of the six anthocyanin biosynthesis genes was upregulated in coleoptiles of both cvs. grown in the dark, whereas all genes were activated by light in coleoptiles of cv. Hope. Transcript levels of all the six genes were relatively low on day 2, increased from days 3 to 5 and then declined to almost non-detectable levels on day 6. In coleoptiles of CS grown in the light, the early biosynthesis genes (EBGs) were expressed, but the three late biosynthesis genes (LBGs) were not. |
In vitro direct organogenesis and regeneration of Medicago sativaJ. J. Li, Y.M. Wu, T. Wang, J. X. LiuBiologia plantarum 53:325-328, 2009 | DOI: 10.1007/s10535-009-0059-2 A rapid and efficient plant regeneration protocol for a wide range of alfalfa genotypes was developed via direct organogenesis. Through a successive excision of the newly developed apical and axillary shoots, a lot of adventitious buds were directly induced from the cotyledonary nodes when hypocotyl of explants were vertically inserted into modified Murashige and Skoog (MS) medium supplemented with 0.025 mg dm-3 thidiazuron (TDZ) and 3 mg dm-3 AgNO3. When the lower part of shoots excised from explants were immersed into the liquid medium with 1.0 mg dm-3 α-naphthaleneacetic acid (NAA) for 2 min, and then transferred to hormone free half-strength MS medium, over 83.3 % of the shoots developed roots, and all plantlets could acclimatize and establish in soil. The protocol has been successfully applied to eight genotypes, with regeneration frequencies ranging from 63.8 to 82.5 %. |
Photosynthetic and anatomic responses of peanut leaves to zinc stressG. R. Shi, Q. S. CaiBiologia plantarum 53:391-394, 2009 | DOI: 10.1007/s10535-009-0074-3 In this study, photosynthetic performance, pigment content, chlorophyll a fluorescence, and leaf anatomy in peanut (Arachis hypogaea) subjected to zinc (Zn) stress were investigated. Zn stress resulted in reduction of photosynthetic and transpiration rates, pigment contents and root biomass. Zn-induced xerophyte structure in peanut leaves (i.e. thick lamina, upper epidermis, and palisade mesophyll, as well as abundant and small stomata) also contributed to decreased transpiration rate and stomatal conductance. This in turn, partially contributed to the limitation of photosynthesis. |
Water deficit-induced oxidative stress and the activation of antioxidant enzymes in white clover leavesB. R. Lee, L. S. Li, W. J. Jung, Y. L. Jin, J. C. Avice, A. Ourry, T. H. KimBiologia plantarum 53:505-510, 2009 | DOI: 10.1007/s10535-009-0091-2 The objective of this study was to determine the development of the antioxidant enzymes induced by drought stress in white clover (Trifolium repens L.) leaves. Water stress was imposed during 28 d by decreasing the daily irrigation. Leaf water potential (Φw) gradually decreased from -0.46 to -2.33 MPa. For the first 7 d, dry mass (DM), H2O2 and lipid peroxidation were not significantly affected by water deficit. From 14 d of treatment, water stress decreased dry mass and increased content of reactive oxygen species (O2 .- and H2O2) and oxidative stress (malondialdehyde content). The ascorbate peroxidase (APOD) was activated most rapidly, already during the first week of water stress, but then its activity slowly decreased. Activation of superoxide dismutase (SOD) and catalase (CAT) by water deficit continued during the 14 d (Φw ≥ -1.65 MPa) and then their activities remain on the similar level. The activity of guaiacol-peroxidase (GPOD) increased mostly under progressive water stress and was correlated with increase in lipid peroxidation and growth restriction. |
Leaf morphological and physiological responses to drought and shade in two Populus cathayana populationsX. Huang, X. Xiao, S. Zhang, H. Korpelainen, C. LiBiologia plantarum 53:588-592, 2009 | DOI: 10.1007/s10535-009-0107-y Cuttings from two contrasting Populus cathayana Rehder populations originating from Hanyuan (wet climate) and Ledu (dry climate) in western China were grown in a greenhouse to determine the effects of drought, shade and their interaction on the morphological and physiological traits of leaves. The dry climate population was more droughttolerant than the wet climate population, as indicated by smaller decreases in the leaf relative water content (RWC) and net photosynthetic rate (PN), as well as by greater increases in antioxidative enzyme activities and free proline content under drought. On the other hand, the negative effects of shade on leaf traits were more pronounced in the dry climate population, which suggested that the dry climate population was more light-demanding. In addition, moderate shade alleviated the drought stress of P. cathayana not only by improving the leaf RWC but also by maintaining the positive carbon balance. In contrast, severe shade aggravated drought stress as indicated by a pronounced decrease in leaf size, carbon and nitrogen contents, maximum PN, free proline content and antioxidative enzyme activities. |
Comparison of drought-induced polypeptides and ion leakage in three tomato cultivarsR. Roy, V. Agrawal, S. C. GuptaBiologia plantarum 53:685-690, 2009 | DOI: 10.1007/s10535-009-0123-y An attempt has been made to determine if drought-induced proteins could be used as a selection marker to differentiate between tolerant and sensitive cultivars. Three Indian tomato (Lycopersicon esculentum Mill.) cultivars (Pusa Ruby, Arka Vikas and Pusa Early Dwarf) were subjected to drought stress in vivo as well as in vitro and the pattern of polypeptide expression was determined using one-dimensional SDS-PAGE. In all the three cultivars, a new 29 kDa polypeptide accumulated in leaves, in response to gradual drought stress and its accumulation was fastest in Pusa Ruby. Drought stress also resulted in an increase in ion leakage from leaf discs of all the three cultivars but the rate was lower in Pusa Ruby than in other two. Therefore, it was concluded that Pusa Ruby is most tolerant to drought stress among the three tomato cultivars investigated. |
Different maternal genome donor to Kengyilia species inferred from chloroplast trnL-F sequencesC. Zhang, X. Fan, H. Q. Yu, L. Zhang, X. L. Wang, Y. H. ZhouBiologia plantarum 53:759-763, 2009 | DOI: 10.1007/s10535-009-0139-3 To reveal the maternal donor of species in genus Kengyilia, the chloroplast trnL-F sequences of 14 Kengyilia species and several related diploid species were analyzed by using Maximum Parsimony (MP) and Bayesian Inference (BI) methods. The species in Kengyilia were clustered in different clades, which indicated that Agropyron (P) is the likely maternal genome donor to Kengyilia melanthera, K. mutica and K. thoroldiana, while the maternal donor to Kengyilia batalinii, K. nana, K. kokonorica, K. kaschgarica, K. hirsuta, K. alatavica, K. gobicola, K. zhaosuensis, K. rigidula, K. longiglumis and K. grandiglumis was St or Y Roegneria genome. |
Changes of pH of solutions during perfusion through stem segments: further evidence for hydrogel regulation of xylem hydraulic properties?A. Gascó, E. Gortan, S. Salleo, A. NardiniBiologia plantarum 52:502-506, 2008 | DOI: 10.1007/s10535-008-0097-1 Changes in hydraulic conductivity (Kh) and pH were measured in stem segments of laurel (Laurus nobilis L.) during perfusion with iso-osmotic solutions of KCl, NaCl and sucrose. Sucrose had no effect on Kh while 100 mM NaCl or KCl induced up to 22 and 35 % increase of Kh with respect to deionized water, respectively. Increases in Kh were accompanied by a sharp drop in pH from 6.0 (inlet solution) to 5.0 (outlet solution). The same effect was observed with both KCl and NaCl solutions but not in the case of sucrose. Also, similar changes of Kh and pH were observed for stems killed after immersion in hot water. Our results might provide further evidence for ion-mediated regulation of xylem hydraulic conductivity based on the hydrogel properties of pectins at the pit membrane level. |
Organization of a dispersed repeated DNA element in the Zamia genomeD. Cafasso, S. Cozzolino, N. J. Vereecken, P. De Luca, G. ChinaliBiologia plantarum 53:28-36, 2009 | DOI: 10.1007/s10535-009-0005-3 Occurrence and genomic organization of dispersed elements containing ZpS1 satellite repeats have been investigated in a wide representation of species of the old plant genus Zamia (Zamiaceae, Cycadales). In Z. paucijuga, the ZpS1 repeat is organized as long satellite DNA arrays and as short arrays inserted into AT-rich dispersed elements. A comparative study by Southern analysis shows that these unusual dispersed elements containing the ZpS1 repeat are present with different organizations in all investigated Zamia species. In some species these elements are present with a low copy number, while in other species secondary amplification events, involving specific sequence clusters, appear to have generated characteristic dispersed elements in a high copy number. Among Zamia species, several groups share similar restriction patterns, as the Zamia loddigesii complex and the Caribbean species suggesting a general correlation between organization and genomic representation of the dispersed repeated sequence and the pattern of phyletic relationships in the genus. However, the finding of different patterns also among closely related species suggests a complex history of amplifications and losses of these dispersed repetitive elements that cannot be always easily traced through the phylogenetic reconstruction of this ancient plant group. |
Effect of boron supply on nitrate concentration and its reduction in roots and leaves of tobacco plantsM. A. Matas, A. González-Fontes, J. J. Camacho-CristóbalBiologia plantarum 53:120-124, 2009 | DOI: 10.1007/s10535-009-0016-0 Shoot and root mass of tobacco plants treated with only 0.05 µM boron was decreased by 25 and 50 %, respectively, when compared to plants sufficiently supplied with B (2 and 5 µM). Leaf B content of 0.05 µM B-treated plants decreased (about 80-90 %) when compared to 2 µM B treated plants; this drop of B content were not as marked (about 25-45 %) in roots. Leaf and root nitrate contents in B-deficient plants were 45-60 % and 35-45 % lower, respectively, than those from 2 and 5 µM B treated plants. It is suggested that B deficiency might decrease nitrate uptake rather than nitrate reductase activity in tobacco plants. |
Responses of tiller growth and related genes expression in rice to red and blue radiationN. Ying, Y. Tachiiri, H. Tsuchiya, Y. HuaBiologia plantarum 53:188-190, 2009 | DOI: 10.1007/s10535-009-0032-0 In the present study, we investigated tiller formation in rice cultivated under red radiation (R), red supplemented with 10 % of blue radiation (RB), and white radiation (W). In addition, expression of three genes related to tiller formation, OSH1, MOC1, and OsTB1, was analyzed at both vegetative and reproductive stages. RB promoted the outgrowth of tiller buds and increased tiller numbers significantly. Transcription of MOC1 and OsTB1 in RB was higher than in R, whereas OSH1 expression was independent on radiation quality. |
Phenylalanine ammonia lyase genes in red clover: Expression in whole plants and in response to yeast fungal elicitorM. L. SullivanBiologia plantarum 53:301-306, 2009 | DOI: 10.1007/s10535-009-0054-7 In red clover (Trifolium pratense L.) four unique cDNAs encoding phenylalanine ammonia lyase (PAL, EC 4.3.1.5) were identified (PAL1-4). PAL2-4 encode nearly identical proteins (> 97 %) that are only 89 % identical to that encoded by PAL1. Under normal growing conditions, in young leaves and flowers PAL1 mRNA accumulates to higher levels than that of PAL2-4 whereas in mature leaves and stems, mRNA levels are similar for PAL1 and PAL2-4. Treatment of red clover seedlings with yeast elicitor preparation results in an approximately six-fold induction of PAL2-4 transcripts within 1 h of treatment but only a modest induction of PAL1 transcripts. These results suggest that while both classes of enzymes play a role in biosynthesis of phenylpropanoid compounds under normal growing conditions, PAL2-4 enzymes are also involved in pathogen defense responses. |
Frowine, S.A.: Moth orchid. The complete guide to PhalaenopsisI. BabůrekBiologia plantarum 53:372, 2009 | DOI: 10.1007/s10535-009-0040-0 |
A mutation affecting symbiosis in the pea line Risnod27 changes the ion selectivity filter of the DMI1 homologK. Novák, J. Felsberg, E. Biedermannová, J. VondrysBiologia plantarum 53:451-460, 2009 | DOI: 10.1007/s10535-009-0085-0 After identifying regions of cDNA conserved between the symbiotic gene DMI1 of the model species Medicago truncatula and the homologous genomic region of Arabidopsis thaliana, universal primers were designed from 8 of 12 exons to allow the routine amplification of plant homologs. As an example, the complete homologous sequence from the pea (Pisum sativum L.) was amplified and sequenced, although the poorly conserved 5'-end and 5'-flanking region of the gene had to be amplified using a modified TAIL-PCR strategy. The identity of this amplified homolog with the SYM8 gene was independently confirmed by the presence of a single nucleotide change in the coding sequence of the mutant line Risnod27 (sym8) that cosegregated with the asymbiotic phenotype. Five insertions in pea introns responsible for increasing the total length of SYM8 by 1443 bp, compared to the M. truncatula homolog DMI1, belong to known transposon and retrotransposon families of pea and legumes in general. In view of the predicted function of SYM8 as an ion channel, the Risnod27 mutation (His309Tyr) appears to be localized in the selectivity filter domain. This finding confirms the essential role of histidine 309 in the symbiotic function of SYM8 and provides a guide to its ionic specificity. In view of the Risnod27 symbiotic phenotype, we hypothesize that SYM8 does not have identical functions in the transduction of rhizobial and mycorrhizal signals. The variability of the N-proximal region of the known legume homologs of DMI1 suggests an interaction with a variable ligand. |
Effect of esculetin on activities of pumpkin glutathione S-transferases and growth of pumpkin seedlingsM. D. Hossain, M. FujitaBiologia plantarum 53:565-568, 2009 | DOI: 10.1007/s10535-009-0102-3 The effect of esculetin and some related coumarins (coumarin, 7-hydroxycoumarin and scopoletin) on growth of pumpkin (Cucurbita maxima Duch.) seedlings and the activities of pumpkin glutathione S-transferases (GSTs) were investigated. Coumarin and esculetin affected the growth of seedlings. The hypocotyls of affected seedlings became weak and bent at the mid region, roots became very soft with brownish discoloration, and finally seedlings died. Among the compounds tested, only esculetin inhibited CmGSTU3 and CmGSTU2 activities measured with 1-chloro-2,4-dinitrobenzene (CDNB) and at a concentration of 22 µM, it inhibited the activity of CmGSTU3 by 50 %. |
The effect of yeast extract and methyl jasmonate on rosmarinic acid accumulation in Coleus blumei hairy rootsN. Bauer, D. Kiseljak, S. JelaskaBiologia plantarum 53:650-656, 2009 | DOI: 10.1007/s10535-009-0118-8 The leaves of axenically grown Coleus blumei were inoculated with Agrobacterium rhizogenes strain A4 and hairy root were established. PCR and Southern hybridization analysis confirmed transgenic nature of hairy root clones. Cultures of normal roots, induced by α-naphthaleneacetic acid on leaf explants, and hairy roots were evaluated for growth and rosmarinic acid content. Significantly better growth and up to 2.8 higher amount of rosmarinic acid was detected by HPLC analysis in hairy root clones. Methyl jasmonate stimulated rosmarinic acid accumulation in 6 out of 11 tested clones, while yeast extract induced RA accumulation in two and diminished it in 5 out of 11 tested hairy root clones. |
Responses of Camellia sinensis cultivars to Cu and Al stressS. K. Yadav, P. MohanpuriaBiologia plantarum 53:737-740, 2009 | DOI: 10.1007/s10535-009-0134-8 The response of Camellia sinensis (L.) O. Kuntze cultivars Chinary and Assamica to Cu and Al stresses was investigated. Exposure to 100 µM CuSO4 or 100 µM AlCl3 led to accumulation of reactive oxygen species (ROS) more in Assamica than in Chinary. Proline content was higher in Chinary compared to Assamica, while chlorophyll and protein contents decreased upon Cu and Al exposure in both the cultivars. Expression of glutathione biosynthetic enzymes γ-glutamylcysteinyl synthetase (γ-ECS) and glutathione synthetase (GSHS) was elevated. Phytochelatin synthase (PCS), an enzyme involved in phytochelatins synthesis by using glutathione as a substrate was up-regulated at its transcript level more in Chinary than in Assamica. These results suggest that Chinary could be more tolerant than Assamica. |
Koopowitz, H.: Tropical slipper orchids. Paphiopedilum and phragmipedium species and hybridsI. TicháBiologia plantarum 53:104, 2009 | DOI: 10.1007/s10535-009-0037-8 |
Diurnal changes in chlorophyll fluorescence and light utilization in Colocasia esculenta leaves grown in marshy waterlogged areaS. Roy Chowdhury, Ashwani Kumar, N. SahooBiologia plantarum 53:167-170, 2009 | DOI: 10.1007/s10535-009-0027-x Diurnal cycle of chlorophyll fluorescence parameters was done in Colocasia esculenta L. (swamp taro) grown in marshy land under sun or under shade. The sun leaves maintained higher electron transport rate (ETR) and steady state to initial fluorescence ratio (Fs/F0) than shade leaves. In spite of lower ETR, higher photochemical quenching (PQ), and effective quantum yield of photosystem 2 (ΦPS2) was evident in shade plants compared to plants exposed to higher irradiance. ETR increased linearly with increase in irradiance more under low irradiance (r 2 = 0.84) compared to higher irradiance (r 2 = 0.62). The maximum quantum yield of PS 2 (Fv/Fm) did not differ much in sun and shade leaves with the exception of midday when excess of light energy absorbed by plants under sun was thermally dissipated. Hence swamp taro plants adopted different strategies to utilize radiation under different irradiances. At higher irradiance, there was faster decline in proportion of open PS 2 centers (PQ) and excess light energy was dissipated through non-photochemical quenching (NPQ). Under shade, absorbed energy was effectively utilized resulting in higher ΦPS2. |
Aerenchyma formation in maize rootsZ. Lenochová, A. Soukup, O. VotrubováBiologia plantarum 53:263-270, 2009 | DOI: 10.1007/s10535-009-0049-4 Maize (Zea mays L.) is generally considered to be a plant with aerenchyma formation inducible by environmental conditions. In our study, young maize plants, cultivated in various ways in order to minimise the stressing effect of hypoxia, flooding, mechanical impedance or nutrient starvation, were examined for the presence of aerenchyma in their primary roots. The area of aerenchyma in the root cortex was correlated with the root length. Although 12 different maize accessions were used, no plants without aerenchyma were acquired until an ethylene synthesis inhibitor was employed. Using an ACC-synthase inhibitor, it was confirmed that the aerenchyma formation is ethylene-regulated and dependent on irradiance. The presence of TUNEL-positive nuclei and ultrastructural changes in cortical cells suggest a connection between ethylene-dependent aerenchyma formation and programmed cell death. Position of cells with TUNEL-positive nuclei in relation to aerenchyma-channels was described. |
Increase in isoprene and monoterpene emissions after re-watering of droughted Quercus ilex seedlingsJ. Peñuelas, I. Filella, R. Seco, J. LlusiàBiologia plantarum 53:351-354, 2009 | DOI: 10.1007/s10535-009-0065-4 We followed the diurnal cycles of isoprenoid emissions from Quercus ilex seedlings under drought and after re-watering. We found that Quercus ilex, generally considered a non-isoprene emitter, also emitted isoprene although at low rates. The emission rates of isoprene reached 0.37 ± 0.02 nmol m-2 s-1 in controls, 0.15 ± 0.03 nmol m-2 s-1 under drought and 0.35 ± 0.04 nmol m-2 s-1 after re-watering, while emission rates of monoterpenes reached 11.0 ± 3.0, 7.0 ± 1.0 and 23.0 ± 5.0 nmol m-2 s-1, respectively. Emission rates recovered faster after re-watering than photosynthetic rate and followed diurnal changes in irradiance in controls and under drought, but in leaf temperature after re-watering. |
Effect of sucrose application, minerals, and irradiance on the in vitro growth of Cistus incanus seedlings and plantletsD. MillsBiologia plantarum 53:415-421, 2009 | DOI: 10.1007/s10535-009-0080-5 To study the effect of sucrose on the sink-source relationship in in vitro-grown plants, Cistus incanus seedlings and plantlets were grown horizontally in a two-compartment Petri dish (split dish), with the root system in one compartment and the shoot in the other. Shoots and roots were exposed to different sucrose concentrations (0-30 g dm-3), two irradiance levels (25 and 160 µmol m-2s-1) and the presence or absence of a minimum medium containing minerals and vitamins (M medium). Root and shoot biomass of the seedlings was enhanced by an increase in irradiance when the growth medium was not supplemented with sucrose indicating the role of photosynthesis in biomass production. When sucrose was added to either organ growth was enhanced as well. In the presence of sucrose in the root compartment, sucrose applied to the shoot compartment enhanced growth of both organs under low irradiance, while under high irradiance, sucrose had no further additive effect. In the absence of sucrose in the root compartment, the enhancement of root biomass by sucrose added to the shoot compartment was lower under high irradiance than under low irradiance. The response of Cistus plantlets to sucrose and irradiance differed from that of seedlings, probably reflecting a greater susceptibility of the plantlets to sucrose feedback inhibition on photosynthesis and biomass accumulation. The decrease in root and shoot growth when M medium was added to the shoot compartment and the relatively better growth of these organs when the roots were supplied with minerals and the shoot with sucrose, indicate that growth of the two organs in our experimental set-up was regulated by opposing fluxes of C and nutrients. |
Sulfur Metabolism in Phototrophic OrganismsD. SofrováBiologia plantarum 53:538, 2009 | DOI: 10.1007/s10535-009-0097-9 |
Improvement of ex vitro transfer of tobacco plantlets by addition of abscisic acid to the last subcultureJ. Pospíšilová, D. Haisel, H. Synková, P. Baťková-SpoustováBiologia plantarum 53:617-624, 2009 | DOI: 10.1007/s10535-009-0113-0 Tobacco (Nicotiana tabacum L.) plantlets were grown on Murashige and Skoog medium in ventilated Magenta boxes and for the last subculture 10 µM ABA was added to the medium. After three weeks plantlets were transferred into pots with Perlite moistened with water and grown in controlled conditions (16-h photoperiod, day/night temperature 25/20 °C, air humidity about 45 %) either under low or high irradiance of 150 (LI) and 700 (HI) µmol m-2 s-1, respectively. Content of endogenous ABA was 271.7 pmol g-1(f.m.) in ABA treated plantlets, while in control plantlets it was only 53.3 pmol g-1(f.m.). After ex vitro transfer, stomatal conductance and transpiration rate decreased considerably in comparison with in vitro grown plantlets and remained lower also 7 d after ex vitro transfer, especially in ABA-treated plants and so wilting of plants was practically eliminated. Net photosynthetic rate also decreased 1 d after ex vitro transfer but after 7 d it was mostly higher than that of in vitro grown plantlets. Water use efficiency significantly increased in ABA-treated plants. Chlorophyll a+b content did not change immediately after ex vitro transfer, nevertheless, after 7 d chlorophyll content was higher in ABA-treated plants. Pool of xanthophyll cycle pigments (XCP) and the degree of their deepoxidation (DEPS), which are connected with harmless dissipation of light energy, increased under high irradiance. Contents of XCP and ABA precursors (neoxanthin and violaxanthin) were lower in ABA-treated plants than in control plants indicating less stress in these plants. Most chlorophyll a fluorescence parameters did not change considerably after ex vitro transfer and so the photoinhibition was not observed even under HI. Slight increase in non-photochemical quenching under HI in ABA-treated plants suggested their better photoprotection. Thus application of ABA to the last subculture can improve acclimatization of in vitro grown plants to ex vitro conditions |
Adventitious rooting performance in micropropagated Cornus masJ. Ďurkovič, J. BukovskáBiologia plantarum 53:715-718, 2009 | DOI: 10.1007/s10535-009-0129-5 Axillary buds sampled from a mature 27-year-old Cornus mas cv. Macrocarpa were grown in vitro on modified woody plant medium (WPM). Adventitious rooting performance of microshoots was assayed on half-strength WPM supplemented with 1-naphthaleneacetic acid (NAA) or indole-3-butyric acid (IBA) under various pH. NAA induced significantly higher rooting frequencies than IBA. The pH of 6.8 inhibited rooting, and differentiated roots were extremely thick and fragile. The highest rooting frequency was recorded on half-strength WPM supplemented with 5.37 µM NAA at the pH value adjusted to 6.2 (73 % of rooted shoots). In the presence of IBA, the formation of adventitious roots was observed only in the basal part of the microshoot dipped into rooting medium. In the case of NAA, however, adventitious roots arose also from the parts of microshoots that were not in contact with medium. The growth of aerial roots was always positively gravitropic. The nuclear microsatellite Cf-G17 gave a monomorphic fingerprinting pattern across the mother shrub and micropropagated plantlets. Acclimatized plants did not show any visually detectable morphological variation and the aerial adventitious root formation was no longer observed. |
Evaluation of zinc accumulation potential of Hydrilla verticillataS. Srivastava, S. Mishra, S. Dwivedi, R. D. Tripathi, P. K. Tandon, D. K. GuptaBiologia plantarum 53:789-792, 2009 | DOI: 10.1007/s10535-009-0145-5 Biofortification of foods with essential micronutrients and phytoremediation of the contaminated sites are the two sides of the same coin for metals like zinc. In the present study, Zn accumulation potential, growth and antioxidant status of Hydrilla verticillata (L.f.) Royle plants were studied upon supplementation of Zn (0-5 000 µM) for 2 and 7 d. At 5000 µM Zn, plants accumulated about 7.60 and 18.07 mg(Zn) g-1(d.m.) after 2 and 7 d, respectively. Plants exposed to Zn concentrations up to 500 µM showed significantly increased contents of low molecular mass antioxidants and activities of antioxidant enzymes in comparison with controls. Only upon exposure of plants to 5 000 µM Zn, toxicity was observed after 7 d. Therefore, owing to their high Zn accumulation capacity, Hydrilla plants may be used both as a Zn source (via culturing in ca. 100 µM Zn supplemented nutrient medium) or as a phytoremediator. |
Schekman, R., Goldstein L., Rossant, J. (ed.): Annual review of cell and developmental biologyT. GichnerBiologia plantarum 53:74, 2009 | DOI: 10.1007/s10535-009-0035-x |
Differential expression of LEA proteins in two genotypes of mulberry under salinityG. Jyothsnakumari, M. Thippeswamy, G. Veeranagamallaiah, C. SudhakarBiologia plantarum 53:145-150, 2009 | DOI: 10.1007/s10535-009-0022-2 The relative water content (RWC), cell membrane integrity, protein pattern and the expression of late embryogenesis abundant proteins (LEA; group 1, 2, 3 and 4) under different levels of salt stress (0, 1.0, 1.5 and 2.0 % NaCl) were investigated in mulberry (Morus alba L.) cultivars (S1 and ATP) with contrasting salt tolerance. RWC and membrane integrity decreased with increase in NaCl concentration more in cv. ATP than in cv. S1. SDS-PAGE protein profile of mulberry leaves after the NaCl treatments showed a significant increase in 35, 41, 45 and 70 kDa proteins and significant decrease in 14.3, 18, 23, 28, 30, 42, 47 and 65 kDa proteins. Exposure of plants to NaCl resulted in higher accumulation of LEA proteins in S1 than ATP. The maximum content of LEA (group 3 and 4) was detected in S1 at 2.0 % NaCl, which correlates with its salt tolerance. |
Photosynthetic parameters and leaf water potential of five common bean genotypes under mild water deficitM. G. Santos, R. V. Ribeiro, E. C. Machado, C. PimentelBiologia plantarum 53:229-236, 2009 | DOI: 10.1007/s10535-009-0044-9 The leaf water potential, gas exchange and chlorophyll fluorescence were evaluated in five common bean (Phaseolus vulgaris) genotypes A222, A320, BAT477, Carioca and Ouro Negro subjected to moderate water deficit. At the maximum water deficit (10 d of water withholding), the leaf water potential of genotypes A320 and A222 was higher (-0.35 and -0.50 MPa) when compared to the other genotypes (-0.67 to -0.77 MPa). The stomatal conductance and net photosynthetic rate were significantly reduced in all genotypes due to the water deficit. The greater reduction in stomatal conductance of A320 under drought resulted in high intrinsic water use efficiency. Mild water deficit affected the photochemical apparatus in bean genotypes probably by down-regulation since plants did not show photoinhibition. The photochemical apparatus of A222 and A320 genotypes was more sensitive to drought stress, showing reduced apparent electron transport even after the recovery of plant water status. On the other hand, even after 10 d of water withholding, the maximum efficiency of photosystem 2 was not affected, what suggest efficiency of the photoprotection mechanisms. |


