94
Kumar M, Kumari P, Gupta V et al (2010a) Biochemical responses of red alga Gracilaria corticata (Gracilariales, Rhodophyta) to salinity induced oxidative stress. J Exp Mar Biol Ecol
391:27–34
Kumar M, Kumari P, Gupta V et al (2010b) Oxidative stress induced biomarkers in marine macroalgae Ulva lactuca (Ulvales, Chlorophyta) under cadmium stress. Biometals 23:315–325
Kumar M, Gupta V, Trivedi N et al (2011) Desiccation induced oxidative stress and its biochemical
responses in intertidal red alga Gracilaria corticata (Gracilariales, Rhodophyta). Environ Exp
Bot 72:194–201
Kumar M, Kuzhiumparambil U, Pernice M et al (2016) Metabolomics: an emerging frontier of
systems biology in marine macrophytes. Algal Res 16:76–92
Kumari P, Kumar M, Gupta V et al (2010) Tropical marine macroalgae as potential sources of
nutritionally important PUFAs. Food Chem 120:749–757
Kumari P, Reddy CRK, Jha B (2011) Comparative evaluation and selection of a method for lipid
and fatty acid extraction from macroalgae. Anal Biochem 415:134–144
Kumari P, Kumar M, Reddy CRK et al (2013a) Algal lipids, fatty acids and sterols. In: Domínguez
H (ed) Functional ingredients from algae for food and nutraceuticals. Woodhead Publishing
Ltd, Cambridge, UK, pp 87–134
Kumari P, Bijo AJ, Mantri VA et al (2013b) Fatty acid profiling of tropical marine macroalgae: an
analysis from chemotaxonomic and nutritional perspectives. Phytochemistry 86:44–56
Kumari P, Reddy CRK, Jha B (2014a) Quantification of select endogenous hydroxy-oxylipins
from tropical marine macroalgae. Mar Biotechnol 16:74–87
Kumari P, Reddy CRK, Jha B (2014b) Nitrate and phosphate regimes induced lipidomic and biochemical alterations in the intertidal macroalga Ulva lactuca (Ulvophyceae, Chlorophyta).
Plant Cell Physiol 55:52–63
Kumari P, Reddy CRK, Jha B (2015) Methyl jasmonate-induced lipidomic and biochemical alterations in the intertidal macroalga Gracilaria dura (Gracilariaceae, Rhodophyta). Plant Cell
Physiol 56:1877–1889
Künzler K, Eichenberger W (1997) Betaine lipids and zwitterionic phospholipids in plants and
fungi. Phytochemistry 46:883–892
Küpper FC, Gaquerel E, Boneberg E et al (2006) Early events in the perception of lipopolysaccharides in the brown alga Laminaria digitata include an oxidative burst and activation of fatty
acid oxidation cascades. J Exp Bot 57:1991–1999
Küpper FC, Gaquerel E, Cosse A et al (2009) Free fatty acids and methyl jasmonate trigger defense
reactions in Laminaria digitata. Plant Cell Physiol 50:789–800
Leavell MD, Leary JA (2006) Fatty acid analysis tool (FAAT): an FT-ICR MS lipid analysis algorithm. Anal Chem 78:5497–5503
Li X, Fan X, Han L et al (2002) Fatty acids of some algae from the Bohai Sea. Phytochemistry
59:157–161
Li M, Yang L, Bai Y et al (2014) Analytical methods in lipidomics and their applications. Anal
Chem 86:161–175
Lion U, Wiesemeier T, Weinberger F et al (2006) Phospholipases and galactolipases trigger
oxylipin- mediated wound activated defence in the red alga Gracilaria chilensis against epiphytes. Chem Bio Chem 7:457–462
Liu QY, Reith ME (1994) Isolation of a gametophyte-specific cDNA encoding a lipoxygenase
from the red alga Porphyra purpurea. Mol Mar Biol Biotechnol 3:206–209
Lo JM, Wang WL, Chiang YM et al (2001) Ceramides from the Taiwan red alga Ceratodictyon
spongiosum and symbiotic sponge Sigmadocia symbiotica. J Chinese Chem Soc (Taipei,
Taiwan) 48:821–826
Loizides-Mangold U (2013) On the future of mass-spectrometry-based lipidomics. FEBS
J 280:2817–2829
Ma AC, Chen Z, Wang T et al (2014) Isolation of the molecular species of monogalactosyldiacylglycerols from brown edible seaweed Sargassum horneri and their inhibitory effects on triglyceride accumulation in 3T3-L1 adipocytes. J Agric Food Chem 62:11157–11162
P. Kumari
Kumar M, Kumari P, Gupta V et al (2010a) Biochemical responses of red alga Gracilaria corticata (Gracilariales, Rhodophyta) to salinity induced oxidative stress. J Exp Mar Biol Ecol
391:27–34
Kumar M, Kumari P, Gupta V et al (2010b) Oxidative stress induced biomarkers in marine macroalgae Ulva lactuca (Ulvales, Chlorophyta) under cadmium stress. Biometals 23:315–325
Kumar M, Gupta V, Trivedi N et al (2011) Desiccation induced oxidative stress and its biochemical
responses in intertidal red alga Gracilaria corticata (Gracilariales, Rhodophyta). Environ Exp
Bot 72:194–201
Kumar M, Kuzhiumparambil U, Pernice M et al (2016) Metabolomics: an emerging frontier of
systems biology in marine macrophytes. Algal Res 16:76–92
Kumari P, Kumar M, Gupta V et al (2010) Tropical marine macroalgae as potential sources of
nutritionally important PUFAs. Food Chem 120:749–757
Kumari P, Reddy CRK, Jha B (2011) Comparative evaluation and selection of a method for lipid
and fatty acid extraction from macroalgae. Anal Biochem 415:134–144
Kumari P, Kumar M, Reddy CRK et al (2013a) Algal lipids, fatty acids and sterols. In: Domínguez
H (ed) Functional ingredients from algae for food and nutraceuticals. Woodhead Publishing
Ltd, Cambridge, UK, pp 87–134
Kumari P, Bijo AJ, Mantri VA et al (2013b) Fatty acid profiling of tropical marine macroalgae: an
analysis from chemotaxonomic and nutritional perspectives. Phytochemistry 86:44–56
Kumari P, Reddy CRK, Jha B (2014a) Quantification of select endogenous hydroxy-oxylipins
from tropical marine macroalgae. Mar Biotechnol 16:74–87
Kumari P, Reddy CRK, Jha B (2014b) Nitrate and phosphate regimes induced lipidomic and biochemical alterations in the intertidal macroalga Ulva lactuca (Ulvophyceae, Chlorophyta).
Plant Cell Physiol 55:52–63
Kumari P, Reddy CRK, Jha B (2015) Methyl jasmonate-induced lipidomic and biochemical alterations in the intertidal macroalga Gracilaria dura (Gracilariaceae, Rhodophyta). Plant Cell
Physiol 56:1877–1889
Künzler K, Eichenberger W (1997) Betaine lipids and zwitterionic phospholipids in plants and
fungi. Phytochemistry 46:883–892
Küpper FC, Gaquerel E, Boneberg E et al (2006) Early events in the perception of lipopolysaccharides in the brown alga Laminaria digitata include an oxidative burst and activation of fatty
acid oxidation cascades. J Exp Bot 57:1991–1999
Küpper FC, Gaquerel E, Cosse A et al (2009) Free fatty acids and methyl jasmonate trigger defense
reactions in Laminaria digitata. Plant Cell Physiol 50:789–800
Leavell MD, Leary JA (2006) Fatty acid analysis tool (FAAT): an FT-ICR MS lipid analysis algorithm. Anal Chem 78:5497–5503
Li X, Fan X, Han L et al (2002) Fatty acids of some algae from the Bohai Sea. Phytochemistry
59:157–161
Li M, Yang L, Bai Y et al (2014) Analytical methods in lipidomics and their applications. Anal
Chem 86:161–175
Lion U, Wiesemeier T, Weinberger F et al (2006) Phospholipases and galactolipases trigger
oxylipin- mediated wound activated defence in the red alga Gracilaria chilensis against epiphytes. Chem Bio Chem 7:457–462
Liu QY, Reith ME (1994) Isolation of a gametophyte-specific cDNA encoding a lipoxygenase
from the red alga Porphyra purpurea. Mol Mar Biol Biotechnol 3:206–209
Lo JM, Wang WL, Chiang YM et al (2001) Ceramides from the Taiwan red alga Ceratodictyon
spongiosum and symbiotic sponge Sigmadocia symbiotica. J Chinese Chem Soc (Taipei,
Taiwan) 48:821–826
Loizides-Mangold U (2013) On the future of mass-spectrometry-based lipidomics. FEBS
J 280:2817–2829
Ma AC, Chen Z, Wang T et al (2014) Isolation of the molecular species of monogalactosyldiacylglycerols from brown edible seaweed Sargassum horneri and their inhibitory effects on triglyceride accumulation in 3T3-L1 adipocytes. J Agric Food Chem 62:11157–11162
P. Kumari
