biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

Fulltext search in archive



« advanced mode »

 previous    ...   77   78   79   80   81  82   83   84   85   86   ...    next 

Results 2401 to 2430 of 6171:

Pessarakli, M. (ed.): Handbook of Plant and Crop Stress

J. Šantrůček

Biologia plantarum 44:304, 2001

Influence of Temperature and Methyl Jasmonate on Scenedesmus Incrassulatus

C. Christov, I. Pouneva, M. Bozhkova, T. Toncheva, S. Fournadzieva, T. Zafirova

Biologia plantarum 44:367-371, 2001 | DOI: 10.1023/A:1012490610127

The effect of the methyl ester of jasmonic acid (MeJA) in 10 μM concentration was studied on the development of the bacterial contaminants and on the content of some metabolites in Scenedesmus incrassulatus cultivated at temperatures 15, 20, 25, 30, and 36 °C. The number of bacteria on algae cells increased with the rise in temperature. Application of MeJA into nutrient medium inhibited the development of bacterial pathogens more than 3 times at 20 °C, 2.3 times at 30 °C, and 2.6 times at 36 °C without changing the species composition. MeJA caused an increase of the protein content in algae cells. The contents of palmitic and linoleic acids increased with the rise of temperature from 15 to 36 °C. At the same time the contents of linolenic and oleic acid decreased. At low temperatures, cultivation with MeJA induced more significant changes in the composition of C18 acids while at high temperature the changes were more pronounced in C16 acids. Treatment with MeJA decreased the activity of glutamate dehydrogenase at optimal and suboptimal temperatures and increased it at superoptimal temperature. Hence MeJA jasmonate had a positive effect on the tolerance of S. incrassulatus to stress temperatures, which was also demonstrated by better growth.

Hydraulic Properties of a Mangrove Avicennia Germinans as Affected by NaCl

M.A. Sobrado

Biologia plantarum 44:435-438, 2001 | DOI: 10.1023/A:1012479718305

Water transport was assessed in seedlings of the mangrove Avicennia germinans L. grown at 171 and 684 mol m-3 NaCl. Leaf specific conductivity declined by 25 % at high salinity. This was related to low specific conductivity, because Huber values remained similar. Leaves of A. germinans featured low internal conductance to water transport. This was lowered further under high salinity. Water transport constrains imposed by whole shoot and leaf blade at high salinity were balanced by stomatal regulation of water loss, which possibly maintain stem water potentials above embolisms levels.

Keen, N.T., Mayama, S., Leach, J.E., Tsuyumu, S. (ed.): Delivery and Perception of Pathogen Signals in Plants

L. Šindelář

Biologia plantarum 44:496, 2001 | DOI: 10.1023/A:1013735929853

Elicitor-Stimulated Induction of Defense Mechanisms and Defense Gene Activation in Grapevine Cell Suspension Cultures

V. Repka

Biologia plantarum 44:555-565, 2001 | DOI: 10.1023/A:1013742703929

A cell culture system has been developed to examine a multicomponent defense response induced in grapevine (Vitis vinifera L. cv. Limberger) tissues by both biotic and abiotic elicitors. H2O2 from the oxidative burst, cell death, extracellular alkalinization, and defense responses such as the accumulation of defense-related proteins and expression of corresponding genes were analyzed in grapevine suspension cultures. Cultured cells responded differentially to a set of 14 elicitors. The most effective group of elicitors was represented by salicylic acid, chitosan, methyl jasmonate, and elicitor released from cell walls of phytopathogen Botrytis cinerea. These four representative elicitors highly stimulated accumulation of pathogenesis-related proteins and key enzymes of the phenylpropanoid pathway. Further, fungal elicitor caused rapid transcriptional activation of genes encoding diverse defense-related products. The expression kinetics of four defense-related genes (PR-1, PR-9, PAL, and CHI) were different and strongly dependent on the nature of elicitor used.

Vymazal, J., Brix, H., Cooper, P.F., Green, M.B., Haberl, R. (ed.): Constructed Wetlands for Wastewater Treatment in Europe

J. Květ

Biologia plantarum 44:639-640, 2001 | DOI: 10.1023/A:1013700416649

Hadidi, A., Khetarpal, R.K., Koganezawa, H. (ed.): Plant Virus Disease Control

L. Burketová

Biologia plantarum 44:40, 2001 | DOI: 10.1023/A:1017919715671

Clebsch, B.: A Book of Salvias: Sages for Every Garden

J. Štěpánková

Biologia plantarum 44:88, 2001 | DOI: 10.1023/A:1017936219305

Effect of Nitrogen and Water Stress on Photosynthesis and Nitrogen Content in Wheat

A. Arora, V.P. Singh, J. Mohan

Biologia plantarum 44:153-155, 2001 | DOI: 10.1023/A:1017911513854

The relationships between photosynthesis, leaf nitrogen content and water stress were studied in ten genotypes of wheat differing in the presence of dwarfing genes. Net photosynthetic rate (PN) was mostly higher at ear emergence stage than at anthesis stage. PN decreased with water stress (leaf water potential from -2.0 to -2.5 MPa), and with reduced leaf N content in all genotypes studied. Among the various genotypes, single dwarf and wild types showed higher PN rate and maintained higher leaf N content under different N doses and water supply as compared to the other types studied.

Effects of Salicylic Acid on the Structure of Second Leaves of Hordeum Vulgare L.

D. Stoyanova, A. Uzunova

Biologia plantarum 44:219-224, 2001

The structure and ultrastructure of the second leaves of 10-d-old barley plants (Hordeum vulgare L. cv. Alfa) was investigated after long-term treatment with salicylic acid (SA) in concentrations of 0.1, 0.5 and 1.0 mM. The treatment induced: 1) suppressed bulliform cells formation in the adaxial epidermis (1.0 mM SA); 2) reduction of apoplast in the mesophyll (0.5 and 1.0 mM SA); 3) formation of invaginations (0.1 and 0.5 mM SA) and proliferations (0.5 mM SA); and 4) thylakoid destruction and coagulation of the stroma (1.0 mM SA).

Influence of Water Stress on Water Relations, Photosynthetic Parameters and Nitrogen Metabolism of Moth Bean Genotypes

B.K. Garg, S. Kathju, U. Burman

Biologia plantarum 44:289-292, 2001

Effects of water stress at pre-flowering stage were studied in three genotypes (RMO-40, Maru moth and CZM-32 E) of moth bean [Vigna aconitifolia (Jacq.) Marechal]. Increasing water stress progressively decreased plant water potential, leaf area, net photosynthetic rate, starch and soluble protein contents and nitrate reductase activity while contents of reducing sugars, total soluble sugar, free amino acids and free proline progressively increased. Significant genotypic differences were observed and genotype CZM-32-E displayed a better drought tolerance than other genotypes.

Assessment of Age-Related Polyploidy in Quercus Robur L. Somatic Embryos and Regenerated Plants Using DNA Flow Cytometry

M. Endemann, K. Hristoforoglu, T. Stauber, E. Wilhelm

Biologia plantarum 44:339-345, 2001 | DOI: 10.1023/A:1012426306493

Flow cytometric analysis with 4,6-diamidino-2-phenylindole (DAPI) staining was used to screen for chromosomal changes in Quercus robur during in vitro culture. The initiated cell lines (1992 until 1999) were maintained via secondary embryogenesis on P24 medium with 0.9 μM 6-benzylaminopurine (BAP) in regular subculture intervals of 6 weeks. Regenerated plants established in the greenhouse and in vitro plantlets derived from encapsulated somatic embryos were screened. The embryogenic cell lines were characterized as individual clones by isoenzyme analysis. Flow cytometric relative DNA content analysis of the first screening period revealed that somaclonal variation in form of tetraploidy occurred in two out of 26 tested somatic embryo clones (Alt and Jung). These two clones lost their ability to convert into plantlets. Intraspecific relative DNA content variation including technical variation was below 3 %. In the second screening period, however, 3 out of 37 clones (Alt, E4.31H9 and P3.27H) contained tetraploid cells leading to the assumption that the frequency of tetraploidy seems to be correlated with the duration of in vitro culture. No chromosomal differences were detected in regenerated plants. However, tetraploidy occurred in 8 % of the tested clones over a culture period of 7 years.

Physiological Responses of Chrysanthemum Petals during Senescence

R. Elanchezhian, G.C. Srivastava

Biologia plantarum 44:411-415, 2001 | DOI: 10.1023/A:1012411330600

Flower senescence was studied in three cultivars of Chrysanthemum coronarium L.: Snowball White, Yellow Chandrama (standard type flowers) and Spray Button (spray type flowers). Spray button flowers exhibited least respiration rate, less efflux of ions, minimum protease activity and less decline in fresh mass, relative water content and total soluble protein content with the progression of senescence. The Snowball White flowers showed highest respiration rate, great efflux of ions, maximum protease activity, high activity of hydrolytic as well as proteolytic enzymes, and high decline in fresh mass, relative water content, and total soluble protein content. Yellow Chandrama flowers showed responses similar to Snowball White flowers.

Author Index

Biologia plantarum 44:1-2, 2001 | DOI: 10.1023/A:1017497300720

Purification and Kinetic Characterisation of Lactate Dehydrogenase from Dioscorea cayenensis Tuber

U. Oluoha

Biologia plantarum 44:535-539, 2001 | DOI: 10.1023/A:1013786518950

Lactate dehydrogenase from yellow yam tuber (Dioscorea cayenensis Lam.) was isolated and purified using various chromatographic methods and electrophoresis. Only one form of the enzyme obtained, which obeyed Michaelis-Menten kinetics, was activated by Mg2+ and Ca2+ and inhibited by nucleotides and PEP. AMP, which activated the enzyme in the direction of pyruvate reduction, inhibited it in the direction of lactate oxidation. The enzyme is specific for pyruvate L-lactate and uses only NADH and NAD+ as the electron carriers. Polyacrylamide gel electrophoresis showed single band of lactate dehydrogenase activity. The average molecular mass obtained for the enzyme was 160 ± 1.2 kDa, while SDS gel electrophoresis indicated a dimer for the enzyme protein. The enzyme is very stable when frozen but its activity was hardly detectable when the tubers were stored in a well aerated place.

Utility of Trigonelline as a Biochemical Market for Interspecific Competition between Soybean and the Weed Common Waterhemp

T.L. Pfeiffer, Y. Cho, D.J. Gibson, B.G. Young, A.J. Wood

Biologia plantarum 44:619-622, 2001 | DOI: 10.1023/A:1013723627127

Interspecific competition between four soybean cultivars (PI471938, Stressland, Essex and Forrest) and the weed, common waterhemp was investigated under increasing weed densities (i.e. 0, 1, 4 and 16 plants per pot). Soybean height and leaflet number were measured over a 45-d period and used to calculate relative growth rates (RGR). Trigonelline (TRG) concentration was determined within the V1 leaf of 45-d-old soybean plants. Soybean leaflet number (P[lt ]0.05), soybean height (P[lt ]0.05) and soybean RGRh (expressed in terms of height) differed significantly (P[lt ]0.05) according to waterhemp density. At each waterhemp density Stressland matured at a significantly faster rate whereas the maturation rate of Essex decreased in the presence of waterhemp. Final TRG concentrations were affected by the interaction between soybean cultivar and waterhemp density. Under no competition, TRG concentration was significantly lower in Forrest relative to PI471938, Stressland and Essex. TRG concentrations in Essex declined in higher waterhemp densities.

Role of Amino Acids in Evolution of Ethylene and Methane, and Development of Microshoots in Cajanus Cajan

G.V. Sudarsana, R. Chandra, R. Polisetty

Biologia plantarum 44:13-18, 2001 | DOI: 10.1023/A:1017953801133

In pigeonpea (Cajanus cajan L.) shoot buds were induced when cotyledonary node explants were supplemented with benzylaminopurine (BAP; 2 mg dm-3). When 0.1 mg dm-3 BAP and 0.01 mg dm-3 naphtahalene acetic acid were supplemented to the medium, the 34 - 35 % of induced buds developed to microshoots. By supplementing amino acids like proline, glutamine, asparagine and L-cysteine, shoot bud development to microshoots was enhanced at least by two fold. Amongst the amino acids proline gave maximum number of microshoots per explant. With increase in concentration of amino acids, fresh mass increased but microshoot number decreased. Also methane evolution was increased by addition of amino acids, and also in medium containing more of its nitrogen in the form of ammonia. Increased evolution of methane was accompanied by reduction in evolution of ethylene, and enhancement of efficiency of microshoot development.

Effect of Nitrate and Aminoethoxyvinylglycine on Cicer Arietinum L. Nodules

A. Mann, A.S. Nandwal, B.S. Kundu, S. Sheokand, B. Kumar, D. Datta, A. Sheoran

Biologia plantarum 44:131-135, 2001 | DOI: 10.1023/A:1017999127966

The chickpea (Cicer arietinum L.) cv. HC-1 was raised in earthen pots filled with dune sand in screenhouse. At vegetative stage, i.e. 40 - 45 d after sowing, 10, 20 and 40 mM NO3- was applied through rooting medium. After 24 h of NO3- treatments an ethylene biosynthesis inhibitor, aminoethoxyvinylglycine (AVG) in concentration 5 μM was given. A conspicuous increase in (5 - 9 fold) ethylene evolution in nodules was noticed after NO3- treatments. This rise was parallel to the increase in 1-aminocyclopropane-1-carboxylic acid (ACC) content and ACC oxidase activity. On the contrary, a sharp decline in ACC content, ACC oxidase activity and ethylene evolution was observed when AVG was given. A decrease of in acetylene reduction assay (ARA) with NO3- treatments was associated with decline in cytosolic pH (from 6.12 to 5.45), leghemoglobin (Lb) content, accumulation of H2O2 and with the loss of membrane integrity. The lipid peroxidation, followed as MDA production and electrolyte leakage increased with NO3- treatments, however, the level of MDA was brought down in AVG-treated nodules. Results confirm that ethylene might be involved in mechanism by which the functioning of nodules is adversely affected by NO3-.

Use of Random Amplified Polymorphic DNA Markers for Mapping the Chickpea Genome

H. Banerjee, R.A. Pai, J.P. Moss, R.P. Sharma

Biologia plantarum 44:195-202, 2001

Three interspecific crosses were developed using Cicer arietinum (ICC 4918) as the female parent and wild Cicer species [C. reticulatum - JM 2100, JM 2106 and C. echinospermum - ICCW 44] as the male parent. Cicer arietinum (ICC 4918) × C. reticulatum (JM 2100) cross produced the largest number of F2 plants and was chosen for linkage mapping using Random Amplified Polymorphic DNA (RAPD) primers. A partial linkage map was constructed based upon the segregation of 36 RAPD markers obtained by amplification using 35 primers. The linkage map consists of two linkage groups with 17 linked markers covering a total of 464.9 cM. Analyses also revealed association of three morphological traits with linked RAPD markers. Out of seven morphological traits tested for association with linked markers in the segregating plants, four Quantitative trait loci (QTL) were detected for the trait leaf length and three QTLs each for the traits leaf width and erect plant habit.

Allelopathic Effects of Tree Species on Some Soil Microbial Populations and Herbaceous Plants

X.C. Souto, J.C. Bolaño, L. González, M.J. Reigosa

Biologia plantarum 44:269-275, 2001

The allelopathic potential of four tree species on soil microbial populations and some herbaceous plants (two understory species and one general biotest species) was investigated. Effects of three nonindigenous tree species, Eucalyptus globulus Labill, Pinus radiata D.Don and Acacia melanoxylon R.Br., on microorganisms participating in the cycle of nitrogen were evaluated, comparing them with those produced by the autochthonous Quercus robur L. Influence of the trees on Lactuca sativa L., Dactylis glomerata L. and Trifolium repens L. was also checked in bioassays. Cell numbers of Nitrosomonas sp. were negatively affected by Acacia and Eucalyptus stands, mainly during spring, when flowers are especially abundant on the ground. Proteolytic microorganisms were also negatively affected by Eucalyptus and Pinus stands, whilst Quercus stand did not show any toxicity. Soil bioassays showed clear inhibitory effects on germination and growth of understory plants, particularly soils from Eucalyptus and Acacia stands. The greatest effects had the soil from Acacia stand, which was phytotoxic during the whole period of germination and growth of understory plants. Allelopathic phenomena could be, at least partially, responsible of the low species diversity in the understory of the nonindigenous tree stands.

Ex Vitro Phenotype Stability is Affected by In Vitro Cultivation

D. Haisel, P. Hofman, M. Vágner, H. Lipavská, I. Tichá, C. Schäfer, V. Čapková

Biologia plantarum 44:321-324, 2001 | DOI: 10.1023/A:1012415004676

Plant phenotype stability during ex vitro growth, one of the main requirements of plant micropropagation, was tested on tobacco. Plants cultivated in vitro in the presence of 3 % sucrose under photon flux density (PFD) of 200 μmol m-2 s-1 (3 % HL plants) showed the best growth and photosynthetic parameters in the course of 7-day acclimation. However, significant change in phenotype of these plants appeared under a decrease in PFD to 50 μmol m-2 s-1 during further ex vitro growth (in the period of 7th - 17th day). Much higher internodia elongation was found in 3 % HL plants in comparison with plants grown in vitro on sucrose media under PFD of 50 μmol m-2 s-1 (3 % LL) or without sucrose either under PFD of 50 μmol m-2 s-1 or 200 μmol m-2 s-1 (0 % LL, 0 % HL). It can be presumed that 3 % HL plants show permanent demand for high PFD. Neither ABA or chlorophyll contents nor de novo thylakoid membrane synthesis were related to the morphogenic effect of low PFD. Changeable contents of hexoses in leaves of 3 % HL and 3 % LL plants were in no direct correlation to the elongated growth.

Establishment of Salt Stress Tolerant Rice Plants Through Step Up NaCl Treatment In Vitro

Y. Miki, M. Hashiba, S. Hisajima

Biologia plantarum 44:391-395, 2001 | DOI: 10.1023/A:1012403128783

Establishment of salt tolerant rice plants was examined by single step or step up NaCl treatments of shoot bud clumps in vitro, and variation among in vitro salt tolerant plants were examined by rapid amplified polymorphic DNA (RAPD). Shoot bud clumps were necrotic, stubbed or dead when subjected to single step treatment with 1.5 or 2.0 % NaCl. Conversely all the clumps could grow vigorously when subjected to step up salt treatment with 0.5, 1.0, 1.5 and 2.0 % NaCl at 3 week intervals and 2 % NaCl tolerant plants were established. RAPD revealed shoot bud clumps with and without different NaCl treatments, seedlings from field and grown in vitro, and regenerants from callus were genetically close to one another. Conversely, callus cultures were genetically isolated. Growth under different salt stress conditions was not correlated with the genetic variation, suggesting that 2.0 % NaCl tolerant plants might not result from genetic mutation but were due to adaptation of plants by step up NaCl treatment in vitro.

Influence of Nitrogen Supply and Water Stress on Growth and Nitrogen, Phosphorus, Potassium and Calcium Contents in Pearl Millet

M. Ashraf, M. Shabaz, M.Y. Ashraf

Biologia plantarum 44:459-462, 2001 | DOI: 10.1023/A:1012400422848

Influence of supra-optimal concentrations of N on growth and accumulation of N, K, P and Ca in the shoots and roots in Pennisetum glaucum (L.) R.Br. under water stress was assessed in a pot experiment under glasshouse conditions. Thirty four-day-old plants of two lines, ICMV94133 and WCA-78, were subjected to 224, 336, or 448 mg(N) kg-1(soil) and soil moisture 100 or 30 % of field capacity for 30 d. Increasing soil N supply decreased growth of both lines under water deficit. Nitrogen content in the shoots of both lines was not affected by supra-optimal levels of N or different watering regimes, but in contrast, the root N content was increased consistently in WCA-78 with increase in soil N content. Shoot P content increased considerably in WCA-78 at the two higher N contents, but it was significantly lower at drought stress than at well-watered treatment. In contrast, shoot or root P content in ICMV94133 did not differ under both watering regimes. Potassium content in the shoots of WCA-78 was considerably increased at the two higher N contents under drought conditions. Root K content was increased in WCA-78 at the highest N content under well-watered conditions, whereas the reverse was true in ICMV94133. Calcium content in the shoots of ICMV94133 was higher under drought stress compared with that at well-watered conditions, but such pattern was not observed in WCA-78. However, root Ca content increased in both lines with increase in N supply.

Apoplastic Transport of 14C-Photosynthates Measured under Drought and Nitrogen Supply

V.I. Chikov, N.Y. Avvakumova, G.G. Bakirova, L.A. Belova, L.M. Zaripova

Biologia plantarum 44:517-521, 2001 | DOI: 10.1023/A:1013778201203

Using water infiltration of the plant and individual shoots with the subsequent intercellular liquid extraction by the pressure chamber, dynamics of the movement 14C-photosynthates from cell to apoplast, and 14C distribution among photosynthetic products in mesophyll cells and apoplast were studied. The relative quantity of 14C-photosynthetes in leaf apoplast depended on growing conditions; drought increased, and nitrate supply decreased it. When the middle leaves absorbed 14CO2, photosynthates moving down in stem phloem appeared in intercellular space, where they were transported up by transpiration stream. 14C-photosynthates entering to the apex and young leaves were utilized a accumulated, and photosynthates transported to the mature leaves were reloaded into the phloem and reexported. Thus, photosynthates circulated through the plant and were redistributed to the plant organs according to their transpiration. In leaf apoplast photosynthetic sucrose was partly hydrolyzed to glucose and fructose. This increased under high nitrogen supply. The result indicate that apoplast sucrose hydrolysis is the basic cause of the reduction of photosynthate flux from leaves when the nitrate concentration in soil increases.

The Effect of Different Salts of Sodium and Potassium on the Accumulation of Glycinebetaine in Atriplex Prostrata

T.P. Egan, H.D. Dewald, I.A. Ungar

Biologia plantarum 44:595-597, 2001 | DOI: 10.1023/A:1013755007563

Atriplex prostrata was grown for one month in nutrient solutions with NaCl, KCl, Na2SO4, and K2SO4 (at osmotic potentials of 0, -0.75, -1.00, and -1.50 MPa). Plants treated with K2SO4 had less glycinebetaine at -1.0 and -1.50 MPa than those treated with Na+ salts, probably due to the inhibitory effects of K+ on glycinebetaine accumulation.

Hydraulic Conductance and Stomatal Sensitivity to Changes of Leaf Water Status in Six Deciduous Tree Species

K. Aasamaa, A. Sõber

Biologia plantarum 44:65-73, 2001 | DOI: 10.1023/A:1017970304768

The relationship between shoot hydraulic conductance (L) and stomatal sensitivity to changes in leaf water status was studied in the saplings of six deciduous tree species. L increased significantly in sequence: Acer platanoides < Tilia Cordata < Padus avium = Quercus robur < Salix caprea = Populus tremula. L was higher in the trees grown in soil with a higher nitrogen content and lower in the trees grown under mild water stress or kept in darkness for several days. L was higher in July than in September in all the species. L correlated positively with maximum photosynthesis, stomatal conductance and stomatal sensitivity to an increase in leaf water potential, but negatively with stomatal sensitivity to a decrease in leaf water potential. The correlations between L and any other parameter were approximated by three different curves: data for water-stressed plants fit to the first, data for plants kept in darkness fit to the second and all the other data fit to the third curve. The reasons of the differences of shoot hydraulic conductance in the different experimental sets and the mechanisms which may cause the correlation between L and the other characteristics are discussed.

Sukopp, H., Numata, M., Huber, A. (ed.): Urban Ecology as the Basis of Urban Planning

J. Štěpánek

Biologia plantarum 44:110, 2001 | DOI: 10.1023/A:1017940320214

Schekman, R., Goldstein, L., McKnight, S.L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Vol. 16

T. Gichner

Biologia plantarum 44:180, 2001

Effect of Water Deficit and Membrane Destruction on Water Diffusion in the Tissues of Maize Seedlings

I.F. Ionenko, A.V. Anisimov

Biologia plantarum 44:247-252, 2001

We investigated diffusion of water in maize seedlings (Zea mays L. cv. Dnepropetrovskaya) following addition of polyethylene glycol (PEG) 6000 (osmotic potential -0.1 and -0.3 MPa) to the root medium by NMR method with pulsed gradient of magnetic field. Diffusion coefficients of different water phases in plant tissues (water of apoplast and vacuoles, water transported through the membranes) have been estimated from multicomponent decays of echo amplitude. Different signs of changes of water diffusion coefficients of fast and slow components of diffusional echo decay in roots and leaves under the influence of PEG-induced water deficits were shown. It has been supposed that under water deficit a sharing of water flows takes places through the different pathways (apoplastic, symplastic and transmembrane). In roots, 1-h water deficit increased the rate of fast diffusing water (water of apoplasm, vacuoles and, perhaps, water contained in intercellular endoplasm system), and decreased the rate of slowly diffusing water (water passing across the membranes). A long-term water deficit increased to a small extent the rate of water transmembrane transfer in root tissue. Leaf response to water stress was in the intensification of rate of transmembrane water transport that could be connected with the expression of water channels, and in the decrease of apoplastic water flow and flow along endoplasm. The possibility of estimation of plant tissue (membrane) integrity on the basis of diffusional data has been demonstrated.

Culture Conditions Affect Colonization of Watermelon by Colletotrichum Orbiculare

V.M. Russo, B.M. Russo, B. Cartwright

Biologia plantarum 44:305-307, 2001

Area of lesions produced by Colletotrichum orbiculare on watermelon (Citrullus lanatus) seedlings was not affected by amount of culture medium on which the fungus was grown, and decreased as length of time the fungus was in culture increased. Internal integrity of C. orbiculare spores appeared degraded, and this was coincident with decreases in lesion area.

 previous    ...   77   78   79   80   81  82   83   84   85   86   ...    next