Arabidopsis thaliana - OPUS - Universität Würzburg

Arabidopsis thaliana - OPUS - Universität Würzburg Arabidopsis thaliana - OPUS - Universität Würzburg

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Literaturverzeichnis Adham A. R., Zolman B. K., Millius A., Bartel B. 2005. Mutations in Arabidopsis acyl-CoA oxidase genes reveal distinct and overlapping roles in beta-oxidation. The Plant Journal (41): 859-874. Andersson M. X., Kjellberg J. M., Sandelius A. S. 2001. Chloroplast biogenesis. Regulation of lipid transport to the thylakoid in chloroplasts isolated from expanding and fully expanded leaves of pea. Plant Physiology (127): 184-193. Andersson M. X., Hamberg M., Kourtchenko O., Brunnstrom A., McPhail K. L., Gerwick W. H., Gobel C., Feussner I., Ellerstrom M. 2006. Oxylipin profiling of the hypersensitive response in Arabidopsis thaliana. Formation of a novel oxo- phytodienoic acid-containing galactolipid, arabidopside E. The Journal of Biological Chemistry (281): 31528-31537. Balbi V., Devoto A. 2008. Jasmonate signalling network in Arabidopsis thaliana: crucial regulatory nodes and new physiological scenarios. New Phytologist (177): 301-318. Benning C. 2004. Genetic mutant screening by direct metabolite analysis. Analytical Biochemistry (332): 1-9. Blee E. 1998. Phytooxylipins and plant defense reactions. Progress in Lipid Research (37): 33-72. —. 2002. Impact of phyto-oxylipins in plant defense. Trends in Plant Science (7): 315-322. Bohlmann H., Vignutelli A., Hilpert B., Miersch O., Wasternack C., Apel K. 1998. Wounding and chemicals induce expression of the Arabidopsis thaliana gene Thi2.1, encoding a fungal defense thionin, via the octadecanoid pathway. FEBS Letters (437): 281-286. 130

Bonaventure G., Salas J. J., Pollard M. R., Ohlrogge J. B. 2003. Disruption of the FATB gene in Arabidopsis demonstrates an essential role of saturated fatty acids in plant growth. The Plant Cell (15): 1020-1033. Böttcher C., Weiler E. W. 2007. cyclo-Oxylipin-galactolipids in plants: occurrence and dynamics. Planta (226): 629-637. Böttcher C., Pollmann S. 2009. Plant oxylipins: Plant responses to 12-oxo- phytodienoic acid are governed by its specific structural and functional properties. FEBS Journal (276):4693-4704. Brash A. R., Baertschi S. W., Ingram C. D., Harris T. M. 1988. Isolation and characterization of natural allene oxides: unstable intermediates in the metabolism of lipid hydroperoxides. Proceedings of the National Academy of Sciences of the United States of America (85): 3382-3386. Browse J., Warwick N., Somerville C. R., Slack C. R. 1986. Fluxes through the prokaryotic and eukaryotic pathways of lipid synthesis in the '16:3' plant Arabidopsis thaliana. Biochemical Journal (235): 25-31. Browse J., McConn M., James D., Jr., Miquel M. 1993. Mutants of Arabidopsis deficient in the synthesis of alpha-linolenate. Biochemical and genetic characterization of the endoplasmic reticulum linoleoyl desaturase. The Journal of Biological Chemistry (268): 16345-16351. Browse J. A., Somerville C. R. 1994. Glycerolipids. In Meyerowitz, E.M. & Somerville, S.R. eds, Arabidopsis. Cold Spring Harbor Laboratory Press: 881- 912. Buseman C. M., et al. 2006. Wounding stimulates the accumulation of glycerolipids containing oxophytodienoic acid and dinor-oxophytodienoic acid in Arabidopsis leaves. Plant Physiology (142): 28-39. 131

Bonaventure G., Salas J. J., Pollard M. R., Ohlrogge J. B. 2003. Disruption of<br />

the FATB gene in <strong>Arabidopsis</strong> demonstrates an essential role of saturated fatty<br />

acids in plant growth. The Plant Cell (15): 1020-1033.<br />

Böttcher C., Weiler E. W. 2007. cyclo-Oxylipin-galactolipids in plants:<br />

occurrence and dynamics. Planta (226): 629-637.<br />

Böttcher C., Pollmann S. 2009. Plant oxylipins: Plant responses to 12-oxo-<br />

phytodienoic acid are governed by its specific structural and functional<br />

properties. FEBS Journal (276):4693-4704.<br />

Brash A. R., Baertschi S. W., Ingram C. D., Harris T. M. 1988. Isolation and<br />

characterization of natural allene oxides: unstable intermediates in the<br />

metabolism of lipid hydroperoxides. Proceedings of the National Academy of<br />

Sciences of the United States of America (85): 3382-3386.<br />

Browse J., Warwick N., Somerville C. R., Slack C. R. 1986. Fluxes through the<br />

prokaryotic and eukaryotic pathways of lipid synthesis in the '16:3' plant<br />

<strong>Arabidopsis</strong> <strong>thaliana</strong>. Biochemical Journal (235): 25-31.<br />

Browse J., McConn M., James D., Jr., Miquel M. 1993. Mutants of <strong>Arabidopsis</strong><br />

deficient in the synthesis of alpha-linolenate. Biochemical and genetic<br />

characterization of the endoplasmic reticulum linoleoyl desaturase. The<br />

Journal of Biological Chemistry (268): 16345-16351.<br />

Browse J. A., Somerville C. R. 1994. Glycerolipids. In Meyerowitz, E.M. &<br />

Somerville, S.R. eds, <strong>Arabidopsis</strong>. Cold Spring Harbor Laboratory Press: 881-<br />

912.<br />

Buseman C. M., et al. 2006. Wounding stimulates the accumulation of<br />

glycerolipids containing oxophytodienoic acid and dinor-oxophytodienoic acid<br />

in <strong>Arabidopsis</strong> leaves. Plant Physiology (142): 28-39.<br />

131

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