biologia plantarum

International journal on Plant Life established by Bohumil Nìmec in 1959

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Results 1741 to 1770 of 6170:

Effect of γ-radiation on development, yield and quality of microtubers in vitro in Solanum tuberosum L.

H. Z. Li, W. J. Zhou, Z. J. Zhang, H. H. Gu, Y. Takeuchi, K. Yoneyama

Biologia plantarum 49:625-628, 2005 | DOI: 10.1007/s10535-005-0062-1

Explants obtained from in vitro-propagated plantlets of two potato cultivars, Shepody and Atlantic, were treated with five doses of γ-radiation (0, 2, 4, 6 and 8 Gy) to investigate the stimulating effects of low irradiation on the production and quality of microtubers in vitro. Microtubers of both cultivars treated with γ-radiation initiated 5 d earlier than in the non-irradiated control. The whole period of microtuberization was prolonged by 10 - 15 d with 4, 6 and 8 Gy irradiation treatment for cv. Atlantic. Irradiation of the plantlets (4 Gy) led to a significant increase not only in the microtuber number (116.7 and 34.5 % over the control) but also in the fresh mass (77.6 and 23.2 % in Shepody and Atlantic, respectively). Low dose irradiation (2 - 4 Gy) increased the starch content of microtubers. High doses (6 - 8 Gy) enhanced ascorbic acid and reducing sugar contents. 4 - 6 Gy doses also effectively increased the protein contents of microtubers.

High irradiance can minimize the negative effect of exogenous sucrose on the photosynthetic capacity of in vitro grown coconut plantlets

G. Fuentes, C. Talavera, Y. Desjardins, J. M. Santamaria

Biologia plantarum 49:7-15, 2005 | DOI: 10.1007/s10535-005-7015-6

There is increasing evidence that the sucrose normally added to the culture medium affects negatively the photosynthetic capacity of plantlets. At the same time, however, sucrose cannot be eliminated from the medium, as it is required for normal in vitro growth. We argue that this is true only under the conventional light conditions of growth-rooms. In the present paper irradiance of growth-rooms was increased 10 times and although the sucrose-inhibitory effect was found at high sucrose concentrations, it was possible to grow coconut (Cocos nucifera L.) plantlets without sucrose. Those plantlets showed both high photosynthetic capacity and comparable in vitro growth to those grown with sucrose in the medium under conventional growth-room irradiance. Nevertheless, the best growth was achieved under mixotrophic conditions where at high irradiance and moderate sucrose concentrations plantlets accumulated 27 % more biomass than plantlets grown without sucrose under high irradiance and 43 and 73 % more biomass than their counterparts at low irradiance with or without sucrose, respectively.

Responses of antioxidative system to chilling stress in two rice cultivars differing in sensitivity

M. Huang, Z. Guo

Biologia plantarum 49:81-84, 2005 | DOI: 10.1007/s00000-005-1084-3

The responses of antioxidative system of rice to chilling were investigated in a tolerant cultivar, Xiangnuo-1, and a susceptible cultivar, IR-50. The electrolyte leakage and malondialdehyde content of Xiangnuo-1 were little affected by chilling treatment but those of IR-50 increased. Activities of suoperoxide dismutase, catalase, ascorbate peroxidase and glutathione reductase, and ascorbic acid content of Xiangnuo-1 were remained high, while those of IR-50 decreased under chilling. The results indicated that higher activities of defense enzymes and higher content of antioxidant under stress were associated with tolerance to chilling.

Salt tolerance of two aquatic macrophytes, Pistia stratiotes and Salvinia molesta

R. K. Upadhyay, S. K. Panda

Biologia plantarum 49:157-159, 2005 | DOI: 10.1007/s10535-005-7159-4

The physiological responses to NaCl salinity were investigated in two floating aquatic macrophytes, Pistia stratiotes L. and Salvinia molesta L. With the increasing NaCl concentration a decrease in chlorophyll and carotenoid contents was recorded in Salvinia as compared to Pistia. Also a greater increase in H2O2 accumulation and lipid peroxidation was observed in the shoot and root tissues of Salvinia as compared to Pistia. The superoxide dismutase, glutathione reductase, catalase and guaiacol peroxidase activities, and ascorbate and glutathione contents increased in Salvinia and Pistia shoot and root tissues in response to NaCl.

Schekman, R., Goldstein L., Rossant, J. (ed.): Annual Review of Cell and Developmental Biology. Volume 20. - Annual Reviews Inc., Palo Alto 2004, 961 pp. ISBN 0-8243-3120-6

T. Gichner

Biologia plantarum 49:246, 2005 | DOI: 10.1007/s10535-005-6246-x

Effects of short-term soil flooding on stomata behaviour and leaf gas exchange in barley plants

R. Y. Yordanova, A. N. Uzunova, L. P. Popova

Biologia plantarum 49:317-319, 2005 | DOI: 10.1007/s10535-005-7319-6

Exposure of barley plants (Hordeum vulgare L.) to soil flooding for 2 to 24 h reduced the net photosynthetic rate and transpiration rate. Stomatal conductance also decreased in flooded plants. Stomatal closure started within 2 - 6 h and stomata remained closed up to 24 h of treatment.

Plant regeneration in vitro directly from cotyledon and hypocotyl explants of Perilla frutescens and their morphological aspects

T. Zhang, X. Y. Wang, Z. Y. Cao

Biologia plantarum 49:423-426, 2005 | DOI: 10.1007/s10535-005-0020-y

A rapid plantlet regeneration system for Perilla frutescens was established from cotyledon and hypocotyl explants. A maximum of 91.06 % cotyledon and 76.4 % hypocotyl explants could directly produce shoots (3.09 ± 0.18 shoots per explants) on Murashige and Skoog (MS) medium. The optimum hormone combinations were 4.44 μM 6-benzylaminopurine (BA) for cotyledon and 2.22 μM BA + 2.85 μM indole-3-acetic acid (IAA) for hypocotyls. Rooting was induced on half-strength hormone-free MS medium. After transplantation to soil, approximate 80 % of the regenerated plantlets could survive, flower and fruit. Moreover, some morphological abnormalities were found among the regenerated plants.

Genetic transformation of Coffea canephora by particle bombardment

A. F. Ribas, A. K. Kobayashi, L. F. P. Pereira, L. G. E. Vieira

Biologia plantarum 49:493-497, 2005 | DOI: 10.1007/s10535-005-0038-1

Stable transformation of Coffea canephora P. was obtained by particle bombardment of embryogenic tissue. Leaf explants were cultured on medium supplemented with 5 µM isopentenyl-adenosine to induce direct embryogenesis. Explants with somatic embryos were transferred to half strength MS medium with 9 µM 2,4 dichlorophenoxyacetic acid. After 2 weeks, the explants with somatic embryos and embryogenic tissue were bombarded with tungsten particles (M-25) carrying the plasmid pCambia3301 (containing the bar and uidA genes) using a high pressure helium microprojectile device. The bombarded explants were submitted to selection on medium containing 5 µM ammonium glufosinate herbicide as selective agent. After 6 months, putative transgenic embryos were transferred to a growth regulator-free medium for germination. The regenerated plantlets were β-glucuronidase (GUS) positive whereas no GUS activity was observed in non-transgenic controls. Incorporation of the bar gene into the genome was confirmed by PCR and Southern blot analysis of the regenerated transformed plants. Greenhouse grown transgenic coffee plants were found to withstand the recommended level of the herbicide Finale™ for weed control.

Effects of salicylic acid on ethylene induction and antioxidant activity in peach rootstock regenerants

A. Molassiotis, G. Diamantidis, I. Therios, K. Dimassi

Biologia plantarum 49:609-612, 2005 | DOI: 10.1007/s10535-005-0057-y

Ethylene concentration in the culture tubes of peach rootstock regenerants of three genotypes (Cadaman, GF-677, Myrobalan 29C) was increased by the inclusion of 20 µM salicylic acid (SA), methionine (METH) and ethephon (ETH) in the MS medium whereas it was decreased in regenerants exposed up to 20 µM AgNO3. In leaves of the regenerants the increase of ethylene concentration was accompanied with an increase of non-enzymatic antioxidant activity while remarkable genotype-depended changes in the activities of catalase, peroxidase and their isoenzymes were recorded suggesting that ethylene accumulation imposes oxidative stress responses. However, the results showed that some differences could be observed in the activity of isoenzymes in regenerants exposed to SA in respect to METH and ETH-treated ones.

Novel methods

Biologia plantarum 49(Suppl.1):S34-S36, 2005 | DOI: 10.1007/s10535-006-0042-0

Phylogenetic relationships among annual and perennial species of the genus Cicer as inferred from ITS sequences of nuclear ribosomal DNA

M. Frediani, P. Caputo

Biologia plantarum 49:47-52, 2005 | DOI: 10.1007/s10535-005-7052-1

The cladistic analysis of the DNA sequences of the internal transcribed spacers of ribosomal cistrons (ITS1 and ITS2) for 20 species of Cicer L. (among which all the annuals), shows that various sections of the genus are not monophyletic. Annual species do not form a clade: C. arietinum, in fact, is closely related to both C. echinospermum and C. reticulatum, whereas C. bijugum, C. judaicum, and C. pinnatifidum form a separate clade. The annual C. cuneatum is sister group to the perennial C. canariense and both are archaic species within the genus. C. yamashitae is, on the contrary, the only annual species belonging to a group of perennials, within which close relationships are evident between C. graecum and C. montbretii as well as among a group of mainly Asian species.

Induction of a novel boiling stable protein in response to desiccation and ABA treatments in Sesbania sesban var. bicolor leaves

R. S. Purty, V. Agrawal, S. C. Gupta

Biologia plantarum 49:137-140, 2005 | DOI: 10.1007/s00000-005-7140-1

Several polypeptides were induced in leaves of Sesbania sesban var. bicolor under water stress (desiccation). Among them, the SDS-PAGE resolved a few high molecular mass polypeptides along with one major of 66 kDa. After boiling the total protein fraction, some low molecular mass polypeptides (10 - 30 kDa) as well as the one of 66 kDa remained stable. The latter (66 kDa) polypeptide is also regulated by exogenous application of ABA, indicating its significant role in adaptation of sesban to drought.

Ultrastructural changes in rhizome parenchyma of Polypodium vulgare during dehydration with or without abscisic acid pretreatment

E. Zenkteler, A. Bagniewska-Zadworna

Biologia plantarum 49:209-214, 2005 | DOI: 10.1007/s10535-005-0214-3

Common polypody (Polypodium vulgare L.) belongs to desiccation-tolerant ferns. The structure of storage parenchyma of their rhizome was examined by transmission electron microscopy after dehydration and subsequent rewetting. Analysis revealed that treatment with supplemental abscisic acid resulted in protection of cells against ultrastructural damage compared to untreated ones. Dehydration rate appears to modify the ability of rhizome parenchyma to stand water stress.

Effects of different N-sources on growth, nutritional status, chlorophyll content, and photosynthetic parameters of shoots of the apple rootstock MM 106 cultured in vitro

T. E. Sotiropoulos, G. N. Mouhtaridou, T. Thomidis, V. Tsirakoglou, K. N. Dimassi, I. N. Therios

Biologia plantarum 49:297-299, 2005 | DOI: 10.1007/s10535-005-7299-6

The effects of five different N-sources (KNO3 + NH4NO3 = control, KNO3, NH4NO3, NH4H2PO4, L-alanine) on growth, nutritional status, chlorophyll (Chl) content, and photosynthetic parameters of the apple rootstock MM 106 shoots cultured in vitro were investigated. In comparison to all the other treatments, control explants grown on a MS medium containing KNO3 + NH4NO3 had the highest fresh mass, Chl content, net photosynthetic rate, transpiration rate, and stomatal conductance.

Effect of aluminium on endosperm reserve mobilization in germinating rice grains

J.-W. Wang, C. H. Kao

Biologia plantarum 49:405-409, 2005 | DOI: 10.1007/s10535-005-0015-8

The effect of AlCl3 on endosperm reserve mobilization of rice grains or dehulled rice grains during germination was investigated. AlCl3 had no effect on grain fresh and dry masses, protein and starch contents, and α-amylase and protease activities in endosperm of germinating rice grains. However, when dehulled rice grains were treated with AlCl3, AlCl3 inhibited the decrease in fresh mass, dry mass, and starch and protein contents, and the increase in α-amylase and protease activities in endosperm. Evidence is provided to show that the hull is a barrier against influx of Al to endosperm.

Effects of elevated CO2 and nitrogen on wheat growth and photosynthesis

M. Pal, L. S. Rao, V. Jain, A. C. Srivastava, R. Pandey, A. Raj, K. P. Singh

Biologia plantarum 49:467-470, 2005 | DOI: 10.1007/s10535-005-0031-8

The effects of nitrogen [75 and 150 kg (N) ha-1] and elevated CO2 on growth, photosynthetic rate, contents of soluble leaf proteins and activities of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) and nitrate reductase (NR) were studied on wheat (Triticum aestivum L. cv. HD-2285) grown in open top chambers under either ambient (AC) or elevated (EC) CO2 concentration (350 ± 50, 600 ± 50 μmol mol-1) and analyzed at 40, 60 and 90 d after sowing. Plants grown under EC showed greater photosynthetic rate and were taller and attained greater leaf area along with higher total plant dry mass at all growth stages than those grown under AC. Total soluble and Rubisco protein contents decreased under EC but the activation of Rubisco was higher at EC with higher N supply. Nitrogen increased the NR activity whereas EC reduced it. Thus, EC causes increased growth and PN ability per unit uptake of N in wheat plants, even if N is limiting.

Cannabis sativa L. growing on heavy metal contaminated soil: growth, cadmium uptake and photosynthesis

P. Linger, A. Ostwald, J. Haensler

Biologia plantarum 49:567-576, 2005 | DOI: 10.1007/s10535-005-0051-4

The effects of different cadmium concentrations [17 mg(Cd) kg-1(soil) and 72 mg(Cd) kg- 1(soil)] on Cannabis sativa L. growth and photosynthesis were examined. Hemp roots showed a high tolerance to Cd, i.e. more than 800 mg(Cd) kg-1(d.m.) in roots had no major effect on hemp growth, whereas in leaves and stems concentrations of 50 - 100 mg(Cd) kg-1(d.m.) had a strong effect on plant viability and vitality. For control of heavy metal uptake and xylem loading in hemp roots, the soil pH plays a central role. Photosynthetic performance and regulation of light energy consumption were analysed using chlorophyll fluorescence analysis. Seasonal changes in photosynthetic performance were visible in control plants and plants growing on soil with 17 mg(Cd) kg-1(soil). Energy distribution in photosystem 2 is regulated in low and high energy phases that allow optimal use of light and protect photosystem 2 from overexcitation, respectively. Photosynthesis and energy dissipation were negatively influenced by 72 mg(Cd) kg-1(soil). Cd had detrimental effects on chlorophyll synthesis, water splitting apparatus, reaction centre, antenna and energy distribution of PS 2. Under moderate cadmium concentrations, i.e. 17 mg(Cd) kg-1(soil), hemp could preserve growth as well as the photosynthesis apparatus, and long-term acclimation to chronically Cd stress occurred.

Transport

Biologia plantarum 49(Suppl.1):S9-S13, 2005 | DOI: 10.1007/s10535-006-0037-x

Book review

I. Prá¹il

Biologia plantarum 49:34, 2005 | DOI: 10.1007/s10535-005-4034-2

Inhibitory effects of flavonoids on alternative respiration of plant mitochondria

H. Shimoji, H. Yamasaki

Biologia plantarum 49:117-119, 2005 | DOI: 10.1007/s10535-005-7119-z

Inhibitory effects of flavonoids on plant alternative respiration were investigated using isolated mitochondria of Vigna radiata seedlings. The antioxidant flavonoids quercetin and myricetin effectively inhibited alternative respiration. We suggest that radical scavenging activity is involved in the inhibitory mechanism.

The use of mutagens to increase the efficiency of the androgenic progeny production in Solanum nigrum

D. Kopecký, J. Vagera

Biologia plantarum 49:181-186, 2005 | DOI: 10.1007/s10535-005-1186-z

Pollen embryogenesis was successfully induced in Solanum nigrum L. (2n=6×=72). Stimulation of androgenesis expressed as the frequency of androgenic responsive anthers was observed after 10 and 20 mM ethyl methanesulphonate (EMS), 10 and 20 mM sodium azide (NaN3) and 0.2 mM N-nitroso-N-methylurea (MNU) treatment applied on seeds for 24 h. The frequency of androgenesis on the medium with sucrose was higher than on the medium with maltose. Androgenic regenerants originated also in the anthers collected from donor plants where survival after mutagenic treatment was lower than 50 %. Green haploid (3x), aneuploid (to 8x) and dihaploid (6x) plants were obtained. The high frequency of aneuploids among androgenic plants is explained by cell division irregularities in microsporial calli.

Alleviation of salt stress by low dose γ-irradiation in rice

M.-H. Baek, J.-H. Kim, B. Y. Chung, J.-S. Kim, I. S. Lee

Biologia plantarum 49:273-276, 2005 | DOI: 10.1007/s10535-005-3276-3

The effects of salt stress on the growth, photosynthesis, and antioxidative ability of the rice (Oryza sativa L.) plants raising from γ-irradiated seeds were investigated using two cultivars, Ilpumbyeo and Sanghaehyanghyella. The 50 and 100 mM NaCl solutions caused a remarkable decrease of the early germination rate and seedling growth. However, the salt stress-induced inhibition of the growth was significantly alleviated in the γ -irradiated plants. The chlorophyll contents and the effective quantum yield of photosystem 2 (Φ PS 2) were lower in the NaCl-treated plants than in the control ones, while the non-photochemical quenching was higher in the former ones. Activities of the antioxidant enzymes such as superoxide dismutase (SOD) and ascorbate peroxidase (APX) increased with increasing NaCl concentrations, and the irradiated groups had even higher SOD and APX activities than the non-irradiated ones. These alleviation effects were observed similarly in both the cultivars tested.

Photoperiod affects the growth and development of yam plantlets obtained by in vitro propagation

V. Vaillant, P. Bade, C. Constant

Biologia plantarum 49:355-359, 2005 | DOI: 10.1007/s10535-005-0007-8

The effects of photoperiod on the development of in vitro grown plantlets of yam (Dioscorea alata L.), were investigated. Plantlets were transplanted into pots, acclimatizated until they reached vegetative stages V1 (3 leaves) or V2 (8 leaves), and then grown under 12-h or 16-h photoperiod. The formation and development of underground tubers was only induced under 12-h photoperiod. Tuber initiation was not related to the initial vegetative stage of plants, and the tubers were visible at about 18 - 24 d. On the contrary, a 16-h photoperiod inhibited tuber formation and stimulated vine and leaf growth. The total dry matter production and the number of leaves per plant of V1 stage plants were 50 and 30 % lower respectively, after 44 d under 12-h compared to 16-h photoperiod. These parameters were not influenced by photoperiod in V2 stage plants. Consequently, the effect of 12-h photoperiod on dry matter of V1 plants was attributed to a source limitation related to the early initiation of tuberization. The transfer of plants grown under 12-h to 16-h photoperiod stopped tuber growth and starch accumulation. On the other hand, it stimulated the shoots and the roots to grow.

Effect of jasmonic acid on endogenous gibberellins and abscisic acid in rice under NaCl stress

H. S. Seo, S. K. Kim, S. W. Jang, Y. S. Choo, E. Y. Sohn, I. J. Lee

Biologia plantarum 49:447-450, 2005 | DOI: 10.1007/s10535-005-0026-5

Content of endogenous abscisic acid (ABA) increased in rice plants under salt stress. Pre- or post-treatment by jasmonic acid (JA) mostly further increased ABA content. In the presence of salt stress also content of gibberellins (GAs) mostly increased more after treatment by JA. Endogenous content of bioactive GA1 was higher in post-treatment by JA than in pre-treatment by JA.

Heat stress effects on ribulose-1,5-bisphosphate carboxylase/oxygenase, Rubisco binding protein and Rubisco activase in wheat leaves

K. Demirevska-Kepova, R. Holzer, L. Simova-Stoilova, U. Feller

Biologia plantarum 49:521-525, 2005 | DOI: 10.1007/s10535-005-0045-2

Changes in chlorophyll content, ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) binding protein (RBP), Rubisco activase (RA), Rubisco large (LS) and small (SS) subunits, and electrolyte leakage were investigated in wheat leaf segments during heat stress (HS) for 1 h and for 24 h at 40 °C in darkness or in light, as well as after recovery from heat stress (HSR) for 24 h at 25 °C in light. The 24-h HS treatment in darkness decreased irreversibly photosynthetic pigments, soluble proteins, RBP, RA, Rubisco LS and SS. An increase in RA and RBP protein contents was observed under 24-h HS and HSR in light. This increase was in accordance with their role as chaperones and the function of RBP as a heat shock protein.

In vitro regeneration and bulblet growth from lily bulbscale explants as affected by retardants, sucrose and irradiance

S. Kumar, M. Kashyap, D. R. Sharma

Biologia plantarum 49:629-632, 2005 | DOI: 10.1007/s10535-005-0064-z

Bulbscales of oriental lily hybrid Star Gazer were used as the explants. Bulblets were formed on the basal portion of the excised bulbscales on MS medium supplemented with growth retardants, different sucrose concentrations and exposed to continuous light or dark. Alar, Cycocel and Paclobutrazol in concentration 1 mg dm-3 produced higher number of bulblets as compared to the control. The number of bulblets, however, decreased with the increase in concentration of the growth retardants. The number of bulblets was higher at 90 than at 60 g dm-3 sucrose and when the bulbscales were exposed to continuous light than to darkness. The growth retardants, higher sucrose concentration and continuous dark stimulated fresh mass of bulblets. The number of bulblets having roots and leaves decreased in medium with Alar, Cycocel and Paclobutrazol as compared to the control. A few bulblets produced roots and leaves in medium with 90 g dm-3 sucrose and none of the regenerated bulblets produced leaves under continuous dark.

Book review

M. Ondøej

Biologia plantarum 49:16, 2005 | DOI: 10.1007/s10535-005-6016-9

Differences in antioxidant activity in response to salinity stress in tolerant and susceptible wheat genotypes

R. K. Sairam, G. C. Srivastava, S. Agarwal, R. C. Meena

Biologia plantarum 49:85-91, 2005 | DOI: 10.1007/s10535-005-5091-2

Effects of long-term sodium chloride salinity (100 and 200 mM NaCl; ECe = 6.85 and 12.3 dS m-1) were studied in tolerant (Kharchia 65, KRL 19) and susceptible (HD 2009, HD 2687) wheat genotypes. NaCl decreased relative water content (RWC), chlorophyll content (Chl), membrane stability index (MSI) and ascorbic acid (AA) content, and increased the contents of hydrogen peroxide, thiobarbituric acid reactive substances (TBARS), and activities of superoxide dismutase (SOD), ascorbate peroxidase (APOX) and glutathione reductase (GR). Kharchia 65 showed lowest decline in RWC, Chl, MSI and AA content, lowest increase in H2O2 and TBARS contents and higher increase in SOD and its isozymes, APOX and GR, while HD2687 showed the highest decrease in AA content, highest increase in H2O2 and TBARS contents and smallest increase in activities of antioxidant enzymes. KRL 19 and HD 2009 showed intermediate response both in terms of oxidative stress and antioxidant activity.

Effects of CO2 concentration on acclimatization and physiological responses of two cultivars of carob tree

M. L. Osório, S. Gonçalves, J. Osório, A. Romano

Biologia plantarum 49:161-167, 2005 | DOI: 10.1007/s10535-005-1167-2

This study reports survival and physiological responses of micropropagated Ceratonia siliqua L. cvs. Galhosa and Mulata plants during ex vitro acclimatization under ambient (AC; 330 μmol mol-1) or elevated (EC; 810 μmol mol-1) CO2 concentration and a photosynthetic photon flux density of 125 μmol m-2 s-1. CO2 enrichment during acclimatization did not improve survival rate that was around 80 % for both treatments. Eight weeks after ex vitro transplantation, photosynthetic capacity and apparent quantum yield in acclimatized leaves were higher in comparison with those in in vitro-grown leaves, without any significant difference between CO2 treatments. Chlorophyll content increased after acclimatization. However, EC led to a decrease in the total amount of chlorophyll in new leaves of both cultivars, compared to those grown at AC. Soluble sugars and starch contents were not markedly affected by growth EC, although starch had significantly increased after transfer to ex vitro conditions. EC induced an increase in the stem elongation and in the effective life of leaves, and a decrease in the number of new leaves.

Ecophysiological characterization of carnivorous plant roots: Oxygen fluxes, respiration, and water exudation

L. Adamec

Biologia plantarum 49:247-255, 2005 | DOI: 10.1007/s10535-005-7255-5

Various ecophysiological investigations on carnivorous plants in wet soils are presented. Radial oxygen loss from roots of Droseraceae to an anoxic medium was relatively low 0.02 - 0.07 μmol(O2) m- 2 s-1 in the apical zone, while values of about one order of magnitude greater were found in both Sarracenia rubra roots and Genlisea violacea traps. Aerobic respiration rates were in the range of 1.6 - 5.6 μmol kg-1 (f.m.) s-1 for apical root segments of seven carnivorous plant species and 0.4 - 1.1 μmol kg-1 (f.m.) s-1 for Genlisea traps. The rate of anaerobic fermentation in roots of two Drosera species was only 5 - 14 % of the aerobic respiration. Neither 0.2 mM NaN3 nor 0.5 mM KCN influenced respiration rate of roots and traps. In all species, the proportion of cyanide-resistant respiration was high and amounted to 65 - 89 % of the total value. Mean rates of water exudation from excised roots of 12 species ranged between 0.4 - 336 mm 3 kg-1 (f.m.) s-1 with the highest values being found in the Droseraceae. Exudation from roots was insensitive to respiration inhibitors. No significant difference was found between exudation rates from roots growing in situ in anoxic soil and those kept in an aerated aquatic medium. Carnivorous plant roots appear to be physiologically very active and well adapted to endure permanent soil anoxia.

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