96
Sanina NM, Goncharova SN, Kostetsky EY (2004) Fatty acid composition of individual polar lipid
classes from marine macrophytes. Phytochemistry 65:721–730
Sanina NM, Goncharova SN, Kostetsky EY (2008) Seasonal changes of fatty acid composition and thermotropic behavior of polar lipids from marine macrophytes. Phytochemistry
69:1517–1527
Schreiner M (2006) Optimization of solvent extraction and direct transmethylation methods for the
analysis of egg yolk. Lipids Int J Food Prop 9:573–581
Schwudke DJ, Oegema L, Burton E et al (2005) Lipid profiling by multiple precursor and neutral
loss scanning driven by the data-dependent acquisition. Anal Chem 78:585–595
Schwudke D, Hannich JT, Surendranath V et al (2007a) Top-down lipidomic screens by multivariate analysis of high-resolution survey mass spectra. Anal Chem 79: 4083–4093
Schwudke D, Liebisch G, Herzog R et al (2007b) Shotgun lipidomics by tandem mass spectrometry under data-dependent acquisition control. Methods Enzymol 433:175–91
Seo HS, Song JT, Cheong JJ et al (2001) Jasmonic acid carboxyl methyltransferase: a key enzyme
for jasmonate-regulated plant responses. Proc Natl Acad Sci U S A 98:4788–4793
Sreenivasaiah PK, Rani S, Cayetano J et al (2012) IPAVS: integrated pathway resources, analysis
and visualization system. Nucleic Acids Res 40:D803–D808
Todd JS, Proteau PJ, Gerwick WH (1993) Egregiachlorides A-C: new chlorinated oxylipins from
the marine brown alga Egregia menziesii. Tetrahedron Lett 34:7689–7692
Todd JS, Proteau PJ, Gerwick WH (1994) The absolute configuration of ecklonialactones a, B,
and E, novel oxylipins from brown algae of the genera Ecklonia and Egregia. J  Nat Prod
57:171–174
Tonon T, Eveillard D, Prigent S et al (2011) Towards systems biology in brown algae to explore
acclimation and adaptation to the shore environment. OMICS 12:883–892
Tremolieres A, Siegenthaler PA (1998) Role of acyl lipids in the function of photosynthetic membranes in higher plants. In: Siegenthaler PA, Murata N (eds) Lipids in photosynthesis: structure, function and genetics. Kluwer, Dordrecht, pp 145–173
Van Meer G (2005) Cellular lipidomics. The EMBO J 24:3159–3165
Vaśkovsky VE, Khotimchenko SV, Xia B et al (1996) Polar lipids and fatty acids of some marine
macrophytes from the Yellow Sea. Phytochemistry 42:1347–1356
Vaz FM, Pras-Raves M, Bootsma AH et al (2015) Principles and practice of lipidomics. J Inherit
Metab Dis 38:41–52
Vegiopoulos A, Muller-Decker K, Strzoda D et  al (2010) Cyclooxygenase-2 controls energy
homeostasis in mice by de novo recruitment of brown adipocytes. Science 328:1158–1161
Wang M, Wang C, Han RH et al (2016) Novel advances in shotgun lipidomics for biology and
medicine. Prog Lipid Res 61:83–108
Wasternack C, Forner S, Strnad M et  al (2012) Jasmonates in flower and seed development.
Biochimie 95(1):79–85
Weinberger F, Lion U, Delage L et al (2011) Up-regulation of lipoxygenase, phospholipase, and
oxylipin-production in the induced chemical defense of the red alga Gracilaria chilensis
against epiphytes. J Chem Ecol 37:677–686
Wenk MR (2010) Lipidomics: new tools and applications. Cell 143:888–895
Wiesemeier T, Jahn K, Pohnert G (2008) No evidence for the induction of brown algal chemical defense by the phytohormones jasmonic acid and methyl jasmonate. J  Chem Ecol
34:1523–1531
Williams DE, Sturgeon CM, Roberge M et al (2007) Nigricanosides a and B, antimitotic glycolipids isolated from the green alga Avrainvillea nigricans collected in Dominica. J Am Chem
Soc 129:5822–5823
Xia J, Wishart DS (2011) Web-based inference of biological patterns, functions and pathways from
metabolomic data using Metabo analyst. Nat Protoc 6:743–760
Yan X, Chen D, Xu J  et  al (2011) Profiles of photosynthetic glycerolipids in three strains of
Skeletonema determined by UPLC-Q-TOF-MS. J Appl Phycol 23:271–282
P. Kumari
Précédent

- 110/355

Suivant