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1.
Article in English | IMSEAR | ID: sea-114105

ABSTRACT

Teak leaves (Tectona grandis) abundantly available in India showed high sorption capacity for lead ions and were found efficient for the removal of lead ions from aqueous solutions. The extent of removal was found to be dependent on pH, temperature, concentration of metal ions and the dose of adsorbent. Thermodynamic parameters were calculated at different temperatures. The sorbent once used can be regenerated and recycled two - three times almost with the same capacity. However, regeneration by column operation gave better results than batch process.


Subject(s)
Adsorption , Asteraceae/metabolism , Biodegradation, Environmental , Biotechnology/methods , Hydrogen-Ion Concentration , Lead/analysis , Metals/analysis , Plant Leaves/metabolism , Protons , Temperature , Thermodynamics , Time Factors , Trees/metabolism , Water Pollutants, Chemical/analysis , Water Purification
2.
Indian J Exp Biol ; 2001 Jun; 39(6): 564-71
Article in English | IMSEAR | ID: sea-62853

ABSTRACT

Effect of addition of a permeabilizing agent dimethyl sulfoxide (DMSO) and a solid adsorbent, XAD -7, on growth and coumarin production in hairy root cultures of C. intybus was studied. Continuous permeabilization of the hairy root cultures of C. intybus with DMSO has been shown to be an effective strategy for enhanced release of coumarins while preserving the root viability. DMSO at 0.2% (v/v) level showed the maximum growth and coumarin production but was less as compared to control on day 28. Treatment of cells with increasing concentrations of DMSO (0.3 - 0.6 % v/v) to hairy root cultures of C. intybus, showed an inverse relationship with growth and coumarin production. Growth and production of coumarins increased with 1% media filtrate (MF) of cultures of Phytopthora parasitica var. nicotiana treatment. It was observed that treatment with DMSO (0.2% v/v) and 1% MF of P. parasitica showed the better growth and coumarin production with an increased release of coumarins as compared to the control and other treatments. It was observed that treatment of hairy root cultures with XAD-7 resulted in lesser growth and coumarin production as compared to control during the culture period. Addition of XAD-7 along with 1% MF of P. parasitica showed enhanced growth, coumarin production and increased adsorption as compared to control and lone XAD-7 treatment. Combined addition of DMSO/XAD-7 with fungal elicitor showed synergistic response in terms of biomass and coumarin production. Excretion of coumarins in both the cases was dependent on the presence of DMSO/XAD-7. These results showed that continuous permeabilization of hairy root cultures of C. intybus by using DMSO at 0.2% (v/v) level coupled with 1% MF of P. parasitica maintained viability of tissues and produced coumarins at higher level.


Subject(s)
Adsorption , Asteraceae/metabolism , Coumarins/metabolism , Culture Techniques , Permeability , Plant Roots/metabolism
3.
Braz. j. med. biol. res ; 32(4): 435-42, Apr. 1999. ilus, graf
Article in English | LILACS | ID: lil-231735

ABSTRACT

Sucrose:sucrose fructosyltransferase (SST) and fructan:fructan fructosyl-transferase (FFT) activities from crude extracts of tuberous roots of Viguiera discolor growing in a preserved area of cerrado were analyzed in 1995-1996. SST activity was characterized by the synthesis of 1-kestose from sucrose and FFT activity by the production of nystose from 1-kestose. The highest fructan-synthesizing activity was observed during early dormancy (autumn), when both (SST and FFT) activities were high. The increase in synthetic activity seemed to start during the fruiting phase in the summer, when SST activity was higher than in spring. During winter and at the beginning of sprouting, both activities declined. The in vitro synthesis of high molecular mass fructans from sucrose by enzymatic preparations from tuberous roots collected in summer showed that long incubations of up to 288 h produced consistently longer polymers which resembled those found in vivo with respect to chromatographic profiles.


Subject(s)
Asteraceae/metabolism , Fructans/chemical synthesis , Hexosyltransferases/metabolism , Fructans/analysis , Sucrose
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