95
Maciel E, Leal MC, Lillebo AI et  al (2016) Biopropspecting of marine macrophytes using
MS-based lipidomics as a new approach. Mar Drugs 14:49–76
Makewicz A, Gribi C, Eichenberger W (1997) Lipids of Ectocarpus fasciculatus (Phaeophyceae).
Incorporation of [l14 C] Oleate and the role of TAG and MGDG in lipid metabolism. Plant Cell
Physiol 38:952–960
Matyash V, Liebisch G, Kurzchalia TV et al (2008) Lipid extraction by methyl-tert-butyl ether for
high-throughput lipidomics. J Lipid Res 49:1137–1146
Melo T, Alves E, Azevedo V et al (2015) Lipidomics as a new approach for the bioprospecting of
marine macroalgae-unraveling the polar lipid and fatty acid composition of Chondrus crispus.
Algal Res 8:181–191
Michalik L, Auwerx J, Berger JP et  al (2006) Peroxisome proliferator-activated receptors.
International Union of Pharmacology, LXI. Pharmacol Rev 58:726–741
Mizusawa N, Wada H (2012) The role of lipids in photosystem II.  Biochim Biophys Acta
1817:194–208
Muller DG, Eichenberger W (1994) Betaine lipid content and species delimitation in Ectocarpus,
Feldmannia and Hincksia (Ectocarpales, Phaeophyceae). Eur J Phycol 29:219–225
Nagle DG, Gerwick WH (1990) Constanolactones a and B, novel cyclopropyl hydroxyl eicosanoids from the temperate red alga Constantinea simplex. Tetrahed Lett 31:2995–2998
Nakamura Y, Sasaki N, Kobayashi M et  al (2013) The first symbiont-free genome sequence of
marine red alga, Susabi-nori (Pyropia yezoensis). PLoS One 8(3):e57122
Nishitsuji K, Arimoto A, Iwai K et al (2016) A draft genome of the brown alga, Cladosiphon
okamuranus, S-strain: a platform for future studies of ‘mozuku’ biolgy. DNA Res
23:561–570
Nylund GM, Weinberger F, Rempt M et  al (2011) Metabolomic assessment of induced and
activated chemical defence in the invasive red alga Gracilaria vermiculophylla. PLoS One
6(12):e29359
Ohlrogge J, Browse J (1995) Lipid biosynthesis. Plant Cell 7:957–970
Pati S, Nie B, Arnold RD et al (2016) Extraction, chromatographic and mass spectrometric methods for lipid analysis. Biomed Chromatogr 30:695–709
Pilar G, Olegario B, Rafael RR (2016) Occurrence of jasmonates during cystocarp development in
the red alga Grateloupia imbricata. J Phycol 52(6):1085–1093
Proteau PJ, Gerwick WH (1993) Divinyl ethers and hydroxy fatty acids from three species of
Laminaria (brown algae). Lipids 28:783–787
Ragonese C, Tedone L, Beccaria M et al (2014) Characterisation of lipid fraction of marine macroalgae by means of chromatography techniques coupled to mass spectrometry. Food Chem
145:932–940
Rempt M, Weinberger F, Grosser K et al (2012) Conserved and species-specific oxylipin pathways
in the wound-activated chemical defense of the noninvasive red alga Gracilaria chilensis and
the invasive Gracilaria vermiculophylla. Beilstein J Org Chem 8:283–289
Ritter A, Goulitquer S, Salaün J et al (2008) Copper stress induces biosynthesis of octadecanoid
and eicosanoid oxygenated derivatives in the brown algal kelp Laminaria digitata. New Phytol
180:809–821
Ritter A, Dittami SM, Goulitquer S et al (2014) Transcriptomic and metabolomic analysis of copper stress acclimation in Ectocarpus siliculosus highlights signaling and tolerance mechanisms
in brown algae. BMC Plant Biol 14:116
Roche SA, Leblond JD (2010) Betaine lipids in chlorarachniophytes. Phycol Res 58 (4):298–305
Rolim AEH, Henrique-Araújo R, Ferraz EG et al (2015) Lipidomics in the study of lipid metabolism: current perspectives in the omic sciences. Gene 554:131–139
Rousvoal S, Groisillier A, Dittami SM et  al (2011) Mannitol-1-phosphate dehydrogenase
activity in Ectocarpus siliculosus, a key role for mannitol synthesis in brown algae. Planta
233:261–273
Rozentsvet OA, Dembitsky VM, Zuhikova VS (1995) Lipids from macrophytes of the middle
Volga. Phytochemistry 38:1209–1213
4 Seaweed Lipidomics in the Era of ‘Omics’ Biology: A Contemporary Perspective
Précédent

- 109/355

Suivant