biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

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Results 1201 to 1230 of 6239:

High frequency plant regeneration from the cotyledonary node of common bean

W. Dang, Z. M. Wei

Biologia plantarum 53:312-316, 2009 | DOI: 10.1007/s10535-009-0056-5

An efficient regeneration system for Phaseolus vulgaris was developed from mature seeds germinated on Murashige and Skoog (MS) medium supplemented with thidiazuron or N6-benzylaminopurine (BA) for 6 d. Using cotyledonary nodes, multiple buds were induced on the MS medium supplemented with 5.0 mg dm-3 BA with the induction frequency 71.9 % after 4-week culture. The buds were then transferred onto shoot formation medium containing 1.0 mg dm-3 BA, 0.1 mg dm-3 gibberellic acid and 2.0 mg dm-3 silver nitrate. The addition of AgNO3 enhanced the frequency of the shoot formation from 61.3 to 87.6 %. Root induction medium was half-strength MS medium with 0.75 mg dm-3 indolebutyric acid and 0.02 mg dm-3 BA. The average root frequency was 84.3 %. The regenerated plantlets with healthy roots grew successfully when transferred to soil. Using this system we obtained over 10 regenerated plantlets from one explant.

Effects of phosphorus and chilling under low irradiance on photosynthesis and growth of tomato plants

Y. H. Zhou, J. X. Wu, L. J. Zhu, K. Shi, J. Q. Yu

Biologia plantarum 53:378-382, 2009 | DOI: 10.1007/s10535-009-0071-6

To determine the effects of phosphorus nutrition on chilling tolerance of photosynthetic apparatus, tomato (Lycopersicon esculentum Mill. cv. Kenfengxin 2002) plants were raised under different P contents and subjected to 7 d of chilling at 9/7 °C. After chilling (2 h or 7 d) plant growth, P content in tissue, gas exchange and chlorophyll fluorescence were measured. Decreasing P concentration [P] in the nutrient solution markedly reduced plant growth and the chilled plants exhibiting higher optimum [P] than the unchilled plants. Decreasing [P] significantly decreased light saturated net photosynthetic rate (PNsat), maximum carboxylation velocity of Rubisco (Vcmax), maximum potential rate of electron transport contributed to Rubisco regeneration (Jmax), quantum efficiency of photosystem (PS) 2 (ΠPS2) and O2 sensitivity of PNsat (PSO2) and this trend was especially apparent in chilled plants.

The influence of low-temperature on the photochemical activity of chloroplasts and activity of antioxidant enzymes in maize leaves

M. Kočová, D. Holá, N. Wilhelmová, O. Rothová

Biologia plantarum 53:475-483, 2009 | DOI: 10.1007/s10535-009-0088-x

The effects of low growth temperature on the activities of photosystems (PS) 1 and 2 and antioxidant enzymes superoxide dismutase (SOD), ascorbate peroxidase (APX), glutathione reductase (GR) and catalase (CAT) in leaves of various maize inbred and hybrid genotypes (parental lines, F1 hybrids, F2 and backcross generations) were investigated. Considerable decrease of the PS 2 activity (contrary to the activity of PS 1) due to low-temperature stress was observed in the majority of genotypes/generations examined. The GR, APX and SOD activities markedly increased due to chilling, whereas the activity of CAT showed lesser changes which depended on the genotype/generation analysed. The higher susceptibility of the inbred line 2013 to low temperature was transmitted to further generations in case this line was used as the maternal parent. The intraspecific variability in photosynthetic and antioxidant parameters was caused particularly by the dominance (negative or positive), however, the level of the expression of this effect often changed after low-temperature stress and was probably the cause of the increase in the positive F1 heterosis observed in this case. Other genetic effects (e.g. the additivity, and particularly the additive or dominant maternal effects) were also found to contribute to the intraspecific variability in parameters analyzed. The dominant maternal effects possibly played an important role in maintaining positive heterosis in F2 generation.

Secondary embryogenesis and transient expression of the β-glucuronidase gene in hypocotyls of rapeseed microspore-derived embryos

M. R. Abdollahi, A. Moieni, A. H. Salmanian, A. Mousavi

Biologia plantarum 53:573-577, 2009 | DOI: 10.1007/s10535-009-0104-1

Secondary embryogenesis from rapeseed microspore-derived embryos (MDEs) was studied in three Brassica napus L. cultivars Global, PF704 and Option. The best results in terms of secondary embryogenesis percentage obtained in cultures of Global and PF704 MDEs (75.88 and 65.97 %, respectively) and PF704 produced the highest number of secondary embryos per each primary embryo (14.91 ± 2.18). After optimization of physical parameters, rapeseed hypocotyls of MDEs were bombarded with microcarriers coated with a plasmid containing GUS reporter gene. The highest levels of transient GUS expression were obtained using bombardment with gold particles of 1.6 µm, at helium pressure of 9.3 MPa, a bombardment distance of 9 cm, chamber vacuum pressure of 7.1 × 10-6 kPa and single bombardment in bombardment medium containing 0.4 M mannitol.

Effects of salicylic acid on the photosystem 2 of barley seedlings under osmotic stress

M. -H. Luo, S. Yuan, Y. -E. Chen, W. -J. Liu, J. -B. Du, T. Lei, M. -B. Wang, H. -H. Lin

Biologia plantarum 53:663-669, 2009 | DOI: 10.1007/s10535-009-0120-1

The effects of exogenous salicylic acid (SA) on photosystem 2 (PS 2) in barley (Hordeum vulgare L.) seedlings were investigated. SA pretreatment provided protection against subsequent osmotic stress. The highest protective effect of 0.25 mM SA was confirmed by determination of chlorophyll fluorescence, electrolyte leakage, malonyldialdehyde contents, PS 2 mRNAs and proteins. SA pretreatment increased reactive oxygen species (ROS), decreased net photosynthetic rate and stomatal conductance immediately, but prevented ROS accumulation during subsequent osmotic stress by activating antioxidant enzymes. Elimination of H2O2 during SA pretreatment inhibited almost all above mentioned SA effects. Therefore, SA pretreatment enhanced osmotic stress tolerance in barley seedlings mainly through ROS signals, rather than SA itself. The only SA-dependent and ROS-independent effect of exogenous SA on PS 2 was reduction of non-photochemical quenching.

Improved shoot regeneration system through leaf derived callus and nodule culture of Sansevieria cylindrica

A. Shahzad, N. Ahmad, M. A. Rather, M. K. Husain, M. Anis

Biologia plantarum 53:745-749, 2009 | DOI: 10.1007/s10535-009-0136-6

Long-term culture establishment and efficient in vitro regeneration protocol for Sansevieria cylindrica Bojer ex Hook was developed using leaf derived callus and nodule culture. Profuse callus induction on leaf discs was achieved on Murashige and Skoog (MS) medium supplemented with 10 µM indole-3-butyric acid (IBA), while a high frequency of nodulation was induced on 2,4-dichlorophenoxyacetic acid (2,4-D) and 2,4,5-trichlorophenoxyacetic acid (2,4,5-T) containing media. Shoot regeneration ability from cultured tissues occurred at varying degrees on all media. Through callus culture a maximum of 17.6 ± 0.14 shoots per culture was formed on medium containing 5µM 6-benzyladenine (BA) and 2 µM α-naphthaleneacetic acid (NAA). Among nodule cultures, the 2,4-D generated nodules were more proliferative and regenerative as compared to 2,4,5-T induced nodules and a maximum of 25 ± 0.16 shoots per culture was produced on a medium containing 5 µM BA plus 1 µM NAA. The regenerated shoots were successfully rooted on a semi-solid half strength MS medium containing 5 µM IBA with an average root number 3.5 ± 0.18 and root length 6.5 ± 0.14 cm. The regenerative ability of callus tissues was steady upto one year, while the nodules retained the totipotency to regenerate on optimal medium even after 3 years of subculturing. The histological sections of nodules confirm the typical anatomy exhibiting the vascular elements in bundles with well demarcated cortex and epidermal covering.

Jiří Velemínský

J. Krekule

Biologia plantarum 52:199-200, 2008 | DOI: 10.1007/s10535-008-0045-0

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.

In vitro organogenesis and antioxidant enzymes activity in Acanthophyllum sordidum

A. A. Meratan, S. M. Ghaffari, V. Niknam

Biologia plantarum 53:5-10, 2009 | DOI: 10.1007/s10535-009-0002-6

The effect of various hormonal combinations on callus formation and regeneration of shoot and root from leaf derived callus of Acanthophyllum sordidum Bunge ex Boiss. has been studied. Proteins and activity of antioxidant enzymes were also evaluated during shoot and root organogenesis from callus. Calli were induced from leaf explants excised from 30-d-old seedlings grown on Murashige and Skoog medium containing 4.52 µM 2,4-dichlorophenoxyacetic acid + 4.65 µM kinetin. Maximum growth of calli and the most efficient regeneration of shoots and roots occurred with 2.69 µM 1-naphthalene acetic acid (NAA), 2.69 µM NAA + 4.54 µM thidiazuron and 2.46 µM indole-3-butyric acid. Protein content decreased in calli and increased significantly during regeneration of shoots from callus. Superoxide dismutase activity decreased in calli comparing to that of seedlings, then increased in regenerated shoots and roots. High catalase activity was detected in seedlings and regenerated shoots, whereas high peroxidase activity was observed in calli and regenerated roots.

La Croix, I.F.: The new encyclopedia of orchids. 1500 species in cultivation

I. Tichá

Biologia plantarum 53:111, 2009 | DOI: 10.1007/s10535-009-0038-7

In vitro organogenesis and plant regeneration from unpollinated ovary cultures of Azadirachta indica

P. Srivastava, M. Singh, P. Mathur, R. Chaturvedi

Biologia plantarum 53:360-364, 2009 | DOI: 10.1007/s10535-009-0067-2

A novel method of organogenesis in neem (Azadirachta indica A. Juss.) from unfertilized ovaries is described. The Murashige and Skoog's (MS) medium with 9 % sucrose, 1 µM 2,4-dichlorophenoxyacetic acid (2,4-D) and 5 µM 6-benzylaminopurine (BAP) was the best for callus induction from unfertilized ovaries. However, further proliferation of callus occurred better on MS medium supplemented with 0.5 µM 2,4-D either alone or in combination with 4.5 µM kinetin. Maximum shoot regeneration (78 %) was observed when calli, induced from ovaries of 4 mm size flower buds and proliferating on MS + 0.5 µM 2,4-D, were subcultured to MS medium containing 5 µM BAP. Histological analysis revealed that 4 mm sized flower bud corresponds to a 2-nucleate stage of embryo sac. The shoots were then multiplied by forced axillary branching on MS medium supplemented with 1.0 µM BAP and 250 mg dm-3 casein hydrolysate. The shoots could be rooted on 1/4 strength MS medium supplemented with 0.5 µM indole-3-butyric acid (IBA) at a frequency of 79 %. Cytological analysis by root tip squash preparations revealed that all the plantlets were diploids. These plants were subsequently hardened and established in soil with transplantation rate of 81.8 %.

The involvement of an expansin geneTaEXPB23 from wheat in regulating plant cell growth

S. -C. Xing, F. Li, Q. -F. Guo, D. -R. Liu, X. -X. Zhao, W. Wang

Biologia plantarum 53:429-434, 2009 | DOI: 10.1007/s10535-009-0082-3

Expansins, found in the cell wall, have the unique ability to induce immediate cell wall extension. In this study, a β-expansin gene (TaEXPB23) isolated from wheat (Triticum aestivum L.) coleoptiles was transformed to tobacco (Nicotiana tabacum) to investigate its role in plant growth and development. TaEXPB23 was preferentially expressed in wheat coleoptile and a close correlation between TaEXPB23 expression and coleoptile growth was observed. The over-expression of TaEXPB23 in tobacco also resulted in accelerating growth of leaves and internodes at earlier developmental stages, and it was involved in regulating plant development.

The role of salicylic acid in response of two rice cultivars to chilling stress

D. H. Wang, X. X. Li, Z. K. Su, H. X. Ren

Biologia plantarum 53:545-552, 2009 | DOI: 10.1007/s10535-009-0099-7

Two rice (Oryza sativa L.) cultivars differing in chilling sensitivity, Changbaijiu (chilling-tolerant) and Zhongjian (chilling-sensitive) were pre-treated with 0.5, 1.0 and 2.0 mM salicylic acid (SA) for 24 h before chilling at 5°C for 1 d. Chilling induced SA accumulation, particularly conjugated SA in both leaves and roots of the two rice cultivars. After SA administration, SA accumulated in the roots of both cultivars at a concentration-dependent manner, whereas only a slight increase was observed in their leaves. Conjugated SA accounted for most of the increase. The beneficial effect of SA treatment on protecting rice seedlings from chilling injury was not observed at any concentration in either cultivar. Pre-treatment with SA even decreased their chilling tolerance confirmed by increased electrolyte leakage and lipid peroxidation. Further, most of the activities of antioxidant enzymes decreased or remained unchanged in leaves and roots of SA pre-treated seedlings after chilling. These results implied that down-regulation of antioxidant defence might be involved in the reduction of chilling tolerance in SA-pre-treated plants.

Overexpression of the γ-TMT gene in Codonopsis lanceolata

E. S. Seong, B. K. Ghimire, E. J. Goh, J. D. Lim, M. J. Kim, I. M. Chung, C. Y. Yu

Biologia plantarum 53:631-636, 2009 | DOI: 10.1007/s10535-009-0115-y

A cDNA-encoding γ-tocopherol methyltransferase (γ-TMT) from Arabidopsis thaliana was overexpressed in deoduck (Codonopsis lanceolata L.) to improve the tocopherol composition. Deoduck (T2) containing the γ-TMT transgene was produced by Agrobacterium-mediated transformation. Transgene expression was confirmed by polymerase chain reaction and RNA gel blot analysis. The transgenic plants produced more leaves than control plants. In addition, the transgenic plants showed higher levels of the CSOD, CTRX, CAPX, CNADP +-IDCH, and CSO transcripts and higher SOD-like activity compared with the control plants.

Impairment in reproductive development is a major factor limiting yield of black gram under zinc deficiency

N. Pandey, G. C. Pathak, C. P. Sharma

Biologia plantarum 53:723-727, 2009 | DOI: 10.1007/s10535-009-0131-y

Black gram [Vigna mungo (L.) Hepper] cv. IPU 94 plants grown in sand culture with deficient zinc (0.1 µM Zn) nutrition and those deprived of normal (1 µM) Zn supply at the initiation of flowering, showed decrease in dry matter production and especially seed yield. These plants showed a decrease in the size of anthers and stigmatic heads, pollen producing capacity of the anthers and stigmatic exudations. Zn deficiency caused structural alterations in exine and retarded germination of pollen grains and tube growth. The pollen extracts and stigmatic exudates of the Zn-deficient plants showed increase in activity of acid phosphatase isoforms and inhibition of esterase isoforms. Zn deficiency led to decrease in number of pods, seeds per pod and seed mass, altered seed coat topography and reduced seeds germinability. Low seed yield under Zn deficiency is attributed to a role of Zn in pollen function, as also in pollen-pistil interaction conducive to fertilization and development of seeds.

The influence of thidiazuron on shoot regeneration from leaf explants of fifteen cultivars of Rhododendron

D. Pavingerová

Biologia plantarum 53:797-799, 2009 | DOI: 10.1007/s10535-009-0147-3

The influence of cytokinin thidiazuron (TDZ) and auxin indole-3-acetic acid (IAA) on in vitro shoot organogenesis of fifteen Rhododendron genotypes was investigated and a protocol for high frequency adventitious shoot regeneration from leaf explants was developed. High genotypic variation was observed and regeneration frequencies ranged from 0 to 100 %. Genotype Ovation had the highest number of shoots (26.4 per explant) after 12 weeks on medium with 0.57 µM IAA and 1.20 µM TDZ, but only 65 % of explants regenerated. Catawbiense Grandiflorum had 17.7 shoots per explant and 75 % regeneration on medium with 5.70 µM IAA and 0.45 µM TDZ and Van Werden Poelman had 14.3 shoots per explant and 100 % regeneration on medium with 0 57 µM IAA and 0.45 µM TDZ.

Campbell, A., Jones, E.W., Schupbach, G. (ed.): Annual review of genetics

T. Gichner

Biologia plantarum 53:84, 2009 | DOI: 10.1007/s10535-009-0036-9

Phylogenetic relationship of China Dendrobium species based on the sequence of the internal transcribed spacer of ribosomal DNA

Z.-Q. Yuan, J.-Y. Zhang, T. Liu

Biologia plantarum 53:155-158, 2009 | DOI: 10.1007/s10535-009-0024-0

The genetic relationship of 36 Dendrobium species in China was determined based on sequence analysis of the internal transcribed spacer (ITS) region of ribosomal DNA. Aligned sequences of the complete ITS region obtained from the 36 Dendrobium species and 2 outgroup species (Epigeneium amplum and Epigeneium nakaharaei) by using PCR amplification and direct DNA sequencing. The nrDNA ITS1 of Dendrobium was 225-234 bp and ITS2 was 239-248 bp. Phylogenetic tree was constructed, and seven main clusters were generated among the 36 Dendrobium species. From the results, D. moulmeinense was not grouped in the classification of Dendrobium and E. amplum and E. nakaharaei were shown to be divergent from Dendrobium species. The phylogenetic relationships revealed by ITS DNA analysis partially supported previously published morphological data.

Salt stress effects on growth, pigments, proteins and lipid peroxidation in Salicornia persica and S. europaea

M. Aghaleh, V. Niknam, H. Ebrahimzadeh, K. Razavi

Biologia plantarum 53:243-248, 2009 | DOI: 10.1007/s10535-009-0046-7

The effects of NaCl stress on growth, water status, contents of protein, proline, malondialdehyde (MDA), various sugars and photosynthetic pigments were investigated in seedlings of Salicornia persica and S. europaea grown in vitro. Seeds were germinated under NaCl (0, 100, 200, 300, 400, 500 and 600 mM) on Murashige and Skoog medium for 45 d. The shoot growth of both species increased under low NaCl concentration (100 mM) and then decreased with increasing NaCl concentrations. In contrast to S. persica, root length in S. europaea reduced steadily with an increase in salinity. Proline content in S. persica was higher than in S. europaea at most NaCl concentrations. Proline, reducing saccharide, oligosaccharide and soluble saccharide contents increased under salinity in both species. In contrast, contents of proteins and polysaccharides reduced in both species under salt stress. MDA content remained close to control at moderate NaCl concentrations (100 and 200 mM) and increased at higher salinities. MDA content in S. europaea was significantly higher than S. persica at higher salinities. Salt treatments decreased K+ and P contents in seedlings of both species. Significant reduction in contents of chlorophylls and carotenoids due to NaCl stress was also observed in seedlings of both species. Some differences appeared between S. persica and S. europaea concerning proteins profile. On the basis of the data obtained, S. persica is more salt-tolerant than S. europaea.

Influence of elevated CO2 and O3 on IAA, IAA oxidase and peroxidase in the leaves of ginkgo trees

X.-M. Li, X.-Y. He, L.-H. Zhang, W. Chen, Q. Chen

Biologia plantarum 53:339-342, 2009 | DOI: 10.1007/s10535-009-0062-7

This study examined the impacts of elevated CO2 or O3 on indole-3-acetic acid (IAA) content, activities of IAA oxidase (IAAO) and peroxidase (POD) in Ginkgo biloba leaves. Plants grown in open-top chambers were exposed to ambient atmosphere (control; C), elevated CO2 and elevated O3 from 1 June to 30 September. An increase in IAA content and decrease in IAAO and POD activities were observed in plants exposed to elevated CO2 compared with C. Elevated O3 had no significant effect on IAA content and IAAO activity, but increased POD activity during the early days. When trees pre-exposed to elevated CO2 were transferred to elevated O3 or C, the increase in IAAO activity resulted in the decrease in IAA content. When trees pre-exposed to elevated O3 were transferred to elevated CO2 or C, IAA content, IAAO and POD activities showed no significant changes. The influence of POD activity on the IAA activity was low.

Romano, A. (ed.): Proceedings of the Third International Symposium on Acclimatization and Establishment of Micropropagated Plants (Acta Horticulturae 812)

J. Pospíšilová

Biologia plantarum 53:400, 2009 | DOI: 10.1007/s10535-009-0077-0

Understanding Bioinformatics

R. Podlipná

Biologia plantarum 53:522, 2009 | DOI: 10.1007/s10535-009-0094-z

Biologia Plantarum founded 50 years ago

J. Krekule

Biologia plantarum 53:601-602, 2009 | DOI: 10.1007/s10535-009-0110-3

Chitinases of Coffea arabica genotypes resistant to orange rust Hemileia vastatrix

L. Guerra-Guimarães, M. C. Silva, C. Struck, A. Loureiro, M. Nicole, C. J. Rodrigues Jr., C. P. P. Ricardo

Biologia plantarum 53:702-706, 2009 | DOI: 10.1007/s10535-009-0126-8

Two Coffea arabica - Hemileia vastatrix incompatible interactions (I1: coffee cv. Caturra - rust race VI and I2: coffee cv S4 Agaro - rust race II) and a compatible interaction (coffee cv. Caturra - rust race II) were compared in relation to the infection process and chitinase activity. In the two incompatible interactions the fungus ceased growth in the early infection stages, while in the compatible interaction no fungus growth inhibition was observed. A high constitutive level of chitinase activity was detected in the intercellular fluid of healthy leaves. Upon infection, chitinase isoforms were more abundant in incompatible interactions than in the compatible interaction. Immunodetection showed that class I chitinases are particularly relevant in the incompatible interactions and might participate in the defence response of the coffee plants.

Micropropagation and conservation of endangered species Plantago algarbiensis and P. almogravensis

S. Gonçalves, N. Martins, A. Romano

Biologia plantarum 53:774-778, 2009 | DOI: 10.1007/s10535-009-0142-8

Plantago algarbiensis and P. almogravensis are endemic Al tolerant species from the Western-centre of the Algarve region (South of Portugal) and Portuguese Southwest coast, respectively, which are in risk of global extinction. The aim of this work was to establish an efficient protocol to in vitro propagate these species using shoots obtained from in vitro germinated seeds. The best results in terms of multiplication response were afforded in Murashige and Skoog's (MS) medium supplemented with 6-benzyladenine (8.5 and 9.2 shoots per explant in P. algarbiensis and P. almogravensis, respectively). Shoots of both species showed a great rooting capacity (100 and 80 % for P. algarbiensis and P. almogravensis, respectively) that was not significantly influenced by the concentration of MS macronutrients or auxins. Plants were acclimatized to ex vitro conditions, exhibited normal development (survival rate of 95 and 80 % in P. algarbiensis and P. almogravensis, respectively), and were successfully reintroduced in their natural habitat.

Pepper morphological traits related with resistance to Phytophthora capsici

C. Egea-Gilabert, G. Bilotti, M. E. Requena, M. Ezziyyani, J. M. Vivo-Molina, M. E. Candela

Biologia plantarum 52:105-109, 2008 | DOI: 10.1007/s10535-008-0019-2

Inheritance of 10 morphological and quantitative traits related to plant and fruit development and resistance to the pathogen Phytophthora capsici was studied in an intraspecific cross between a non-pungent, susceptible Capsicum annuum parent (cv. Americano) and a wild, pungent and resistant line (Serrano Criollo de Morelos-334). Data were obtained from the segregation of 166 F2 plants and 50 F3 plants in four years. Three of the traits analyzed (necrosis length, leaf width and leaf length) exhibited a transgressive segregation. A multiple linear regression analysis was applied in order to establish a relationship between necrosis length and some of the morphological traits measured such as length and width of leaf, length, diameter and mass of fruit, capsaicin content in fruits, and presence of hair on leaves and stems. The results identified a linear dependence between necrosis length (as an inverse measurement of resistance) and leaf width, fruit diameter and hair presence in the stem. Pungency was not related with resistance.

Physiology and biochemistry of waterlogging tolerance in plants

R. K. Sairam, D. Kumutha, K. Ezhilmathi, P. S. Deshmukh, G. C. Srivastava

Biologia plantarum 52:401-412, 2008 | DOI: 10.1007/s10535-008-0084-6

Waterlogging is a serious problem, which affects crop growth and yield in low lying rainfed areas. The main cause of damage under waterlogging is oxygen deprivation, which affect nutrient and water uptake, so the plants show wilting even when surrounded by excess of water. Lack of oxygen shift the energy metabolism from aerobic mode to anaerobic mode. Plants adapted to waterlogged conditions, have mechanisms to cope with this stress such as aerenchyma formation, increased availability of soluble sugars, greater activity of glycolytic pathway and fermentation enzymes and involvement of antioxidant defence mechanism to cope with the post hypoxia/anoxia oxidative stress. Gaseous plant hormone ethylene plays an important role in modifying plant response to oxygen deficiency. It has been reported to induce genes of enzymes associated with aerenchyma formation, glycolysis and fermentation pathway. Besides, nonsymbiotic-haemoglobins and nitric oxide have also been suggested as an alternative to fermentation for maintaining lower redox potential (low NADH/NAD ratio), and thereby playing an important role in anaerobic stress tolerance and signaling.

Stomatal and non-stomatal limitations to photosynthesis in field-grown grapevine cultivars

D. J. Yu, S. J. Kim, H. J. Lee

Biologia plantarum 53:133-137, 2009 | DOI: 10.1007/s10535-009-0019-x

Diurnal changes of photosynthesis in the leaves of grapevine (Vitis vinifera × V. labrusca) cultivars Campbell Early and Kyoho grown in the field were compared with respect to gas exchanges and actual quantum yield of photosystem 2 (ΦPS2) in late May. Net photosynthetic rate (PN) of the two cultivars rapidly increased in the morning, saturated at photosynthetic photon flux density (PPFD) from 1200 to 1500 µmol m-2 s-1 between 10:00 and 12:00 and slowly decreased after midday. Maximum PN was 13.7 and 12.5 µmol m-2 s-1 in Campbell Early and Kyoho, respectively. The stomatal conductance (gs) and transpiration rate changed in parallel with PN, indicating that PN was greatly affected by gs. However, the decrease in PN after midday under saturating PPFD was also associated with the observed depression of ΦPS2 at high PPFD. The substantial increase in the leaf to air vapour pressure deficit after midday might also contribute to decline of gs and PN.

Agrobacterium-mediated genetic transformation of plants: The role of host

O. Karami, M. Esna-Ashari, G. Karimi Kurdistani, B. Aghavaisi

Biologia plantarum 53:201-212, 2009 | DOI: 10.1007/s10535-009-0041-z

Agrobacterium-mediated genetic transformation is the most widely used technology to obtain overexpression of recombinant proteins in plants. Molecular events that occur within Agrobacterium during interactions with host plants have been studied extensively, and now we have a reasonable understanding the key factors involved in the regulation of T-DNA nuclear import and genomic integration. By contrast, very little is known about the events that take place in the host cells during genetic transformation by Agrobacterium. Here, we describe the plant-related factors including genotype, genes, proteins, competency of target tissues and phenolic compounds that participate in Agrobacterium-mediated genetic transformation and discuss their possible roles in this process. Because Agrobacterium probably adapts existing cellular processes for its life cycle, identifying the processes in host cells during Agrobacterium infection might contribute to better understanding of basic biological processes as cell communication, intracellular transport and DNA repair and recombination as well as to expanding the host range of Agrobacterium as a genetic engineering tool.

Genetic variability in the endemic Leucojum valentinum

A. Jordán-Pla, E. Estrelles, M. Boscaiu, P. Soriano, O. Vicente, I. Mateu-Andrés

Biologia plantarum 53:317-320, 2009 | DOI: 10.1007/s10535-009-0057-4

The genetic variability of Leucojum valentinum Pau (Amaryllidaceae), a vulnerable endemic species restricted to a small area in the region of Valencia (Eastern Spain), has been studied using random amplified polymorphic DNA (RAPD) markers. A total of 197 individuals from eleven populations were studied using 13 RAPD primers. Our results show high variability for the species, low differentiation among populations and uncorrelated levels of genetic variability and population size. Four groups in which three populations (SAG, PUG and COL) are separated from all the others were found, but without connection to geographical location.

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