By I. Hillig, M. Leipelt, P. Sperling, P. Ternes, D. Warnecke, U. Zähringer, E. Heinz (auth.), N. Murata, M. Yamada, I. Nishida, H. Okuyama, J. Sekiya, W. Hajime (eds.)
The fifteenth foreign Symposium on Plant Lipids was once held in Okazaki, Japan, in may well twelfth to seventeenth, 2002, on the Okazaki convention heart. The Symposium used to be prepared via the japanese Organizing Committee with the cooperation of the japanese organization of Plant Lipid Researchers. The foreign Symposium used to be profitable with 225 members from 29 international locations. We recognize plenty of members from Asian nations, particularly, from China, Korea, Malaysia, Taiwan, Thailand and the Philippines, possibly simply because this used to be the 1st time that the overseas Symposium on Plant Lipids used to be held in Asia. We additionally recognize a few scientists from Canada, France, Germany, united kingdom and united states, the place plant lipid study is generally very lively. The Symposium supplied a chance for presentation and dialogue of sixty eight lectures and ninety three posters in eleven clinical periods, which jointly lined all facets of plant lipid researches, resembling the constitution, research, biosynthesis, legislation, physiological functionality, environmental features, and the biotechnology of plant lipids. In reminiscence of the founding father of this sequence of symposia, the Terry Galliard Lecture used to be added through Professor Ernst Heinz from Universitat: Hamburg, Germany. furthermore, distinctive lectures got through extraordinary scientists from animal lipid fields, Professor James Ntambi from collage of Wisconsin, united states, and Dr. Masahiro Nishijima from the nationwide Institute for Infectious ailments, Japan. To our nice honor and delight, the consultation of Lipid Biosynthesis was once chaired through Dr.
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Extra info for Advanced Research on Plant Lipids: Proceedings of the 15th International Symposium on Plant Lipids
2001) Glycosphingolipids are required for sorting melanosomal proteins in the Golgi complex. 1. Cell BioI. 155,369-380. G. and Valent, B. (1998) Magnaporthe grisea pathogenicity genes obtained through insertional mutagenesis. Mol. Plant Microbe. Interact. 11, 404-412. , Hara-Nishimura, I. and Imai, H. (2001) Characterization of an Arabidopsis cDNA encoding a subunit of serine palmitoyltransferase, the initial enzyme in sphingolipid biosynthesis. Plant Cell Physiol. 42, 1274-1281. , Sperling, P.
1 A). Analysis of the radioactivity in 21 DGCC molecule obtained after the pulse period showed that more than 90% of the radioactivity was localized in the polar group (data not shown). No 14C-DGTS was detected during the experiment. The obtained result demonstrated that methionine was a precursor to DGCC. lB , C) . 2A,B). The present study clearly demonstrated that methyl groups of SAM which was synthesized from methionine were incorporated into DGCC. Choline was reported to be synthesized from ethanolamine and SAM Figure I Changes in distribution of the radioactivity from [methyl-'''Clmethionine(A), [methyl-'''Clcholine chloride(B) and [1 ,2-'''Clcholine chloride in various lipid concentrated cl asses.
2002) Identification and characterization ofa sphingolipid delta4-desaturase family. 1. BioI. Chern. in press. , Straus, AH. K. (2001) Characterization of monoclonal antibody MEST-2 specific to glucosylceramide of fungi and plants. Glycobiology 11, 105112. , Wittern, KP. and Brade, H. (2001) Mouse anti-ceramide antiserum: a specific tool for the detection of endogenous ceramide. Glycobiology 11,451-457. ihringer, U. and Heinz, E. (1999) Cloning and functional expression of UGT genes encoding sterol glucosyltransferases from Saccharomyces cerevisiae, Candida albicans, Pichia pastoris, and Dictyostelium discoideum.
Advanced Research on Plant Lipids: Proceedings of the 15th International Symposium on Plant Lipids by I. Hillig, M. Leipelt, P. Sperling, P. Ternes, D. Warnecke, U. Zähringer, E. Heinz (auth.), N. Murata, M. Yamada, I. Nishida, H. Okuyama, J. Sekiya, W. Hajime (eds.)