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Lemna minor

Mekenyan OG, Bonchev DG, Enchev VG. Modeling the interaction of small organic molecules with biomacromolecules (the Oasis approach). V. Toxicity of phenols to algae Lemna minor . Quant Struct-Act Relat 1988 7 240-4. [Pg.493]

Isomers of D-apiofuranosyl 1-phosphate have been prepared by treating a mixture of jS-o-apio-D-furanosyl and /3-D-apio-L-furanosyl tetra-acetates with crystalline phosphoric acid. a-o-Apio-o- (59) and a-o-apio-L-furanosyl-1-phosphate (60) and their cyclic phosphates were separated by chromatography and identified by H n.m.r. o-Apiose is metabolized in parsley and Lemna minor with the possible formation of UDP-D-apiose. L. minor will convert UDP-a-glucuronic acid into a-o-apio-D-furanosyl-1,2-cyclic phosphate (61) but no evidence of UDP-o-apiose was found, although it is possible that (61) arose from the rapid hydrolysis of UDP-o-apiose. [Pg.141]

Hart, D.A. and Kindel, P.K. (1970) Isolation and partial characterization of apiogalacturonans from the cell wall of Lemna minor. BiochemJ. 116 569-579. [Pg.123]

Other kinds of bloassays have been used to detect the presence of specific allelochemical effects (8), effects on N2 fIxatlon (9), the presence of volatile compounds (10) and of Inhibitory substances produced by marine microalgae (11). Putnam and Duke (12) have summarized the extraction techniques and bioassay methods used In allelopathy research. Recent developments In high performance liquid chromatography (HPLC) separation of allelochemlcals from plant extracts dictates the need for bloassays with sensitivity to low concentrations of compounds contained In small volumes of eluent. Einhellig at al. (13) described a bloassay using Lemna minor L. growing In tissue culture cluster dish wells that maximizes sensitivity and minimizes sample requirements. [Pg.198]

TABLE VII. Effect of Catechln on the Growth and Chlorophyll Content of Lemna minor L. Growing In 24-well Tissue Culture Cluster Dishes... [Pg.203]

Hurd, N.A. and Sternberg, S.P.K., Bioremoval of aqueous lead using Lemna minor, International Journal of Phytoremediation, 10 (4), 278-288, 2008. [Pg.404]

Rakhshaee, R., Giahi, M., and Pourahmad, A., Studying effect of cell wall s carboxyl-carboxylate ratio change of Lemna minor to remove heavy metals from aqueous solution, Journal of Hazardous Materials, 163 (1), 165-173, 2009. [Pg.406]

Simple plants Physcomitrella patens Chlamydomonas reinhardtii Lemna minor Containment, clonal propagation, batch consistency, secretion of proteins into medium, regulatory compliance, homologous recombination in Physcomitrella Scalability... [Pg.193]

Beaumont, G., A. Lord, and G. Grenier. 1980. Effets physiologiques de 1 atrazine a doses subletales sur Lemna minor. V. Influence sur 1 ultrastructure des chloroplastes. Canad. Jour. Bot. 58 1571-1577. [Pg.797]

Grenier, G., L. Protean, J.P. Marier, and G. Beaumont. 1987. Effects of a sublethal concentration of atrazine on the chlorophyll and lipid composition of chlorophyll-protein complexes of Lemna minor. Plant Physiol. Biochem. 25 409-413. [Pg.798]

Huber, W., V. Schubert, and C. Sautter. 1982. Effects of pentachlorophenol on the metabolism of the aquatic macrophyte Lemna minor L. Environ. Pollut. 29A 215-223. [Pg.1229]

Craker, L. E. Influence of ozone on RNA and protein content of Lemna minor L. Environ. Pollut. 3 319-323, 1972. [Pg.563]

Lesser duckweed, Lemna minor Submerged weeds 4 species 3 species... [Pg.1170]

Frick, H. 1985. Boron tolerance and accumulation in the duckweed, Lemna minor. Jour. Plant Nutr. 8 1123-1129. [Pg.1584]


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