275
Nguyen AV, Thomas-Hall SR, Malnoë A et al (2008) Transcriptome for photobiological hydrogen production induced by sulfur deprivation in the green alga Chlamydomonas reinhardtii.
Eukaryot Cell 7:1965–1979
Olmstead ILD, Hill DRA, Dias DA et al (2013) A quantitative analysis of microalgal lipids for
optimization of biodiesel and omega-3 production. Biotechnol Bioeng 110:2096–2104
Osundeko O, Davies H, Pittman JK (2013) Oxidative stress-tolerant microalgae strains are highly
efficient for biofuel feedstock production on wastewater. Biomass Bioenergy 56:284–294
Osundeko O, Dean AP, Davies H, Pittman JK (2014) Acclimation of microalgae to wastewater environments involves increased oxidative stress tolerance activity. Plant Cell Physiol
55:1848–1857
Paliwal C, Ghosh T, George B et al (2016) Microalgal carotenoids: potential nutraceutical compounds with chemotaxonomic importance. Algal Res 15:24–31
Pancha I, Chokshi K, George B et al (2014) Nitrogen stress triggered biochemical and morphological changes in the microalgae Scenedesmus sp. CCNM 1077. Bioresour Technol 156:146–154
Pancha I, Chokshi K, Ghosh T et al (2015a) Bicarbonate supplementation enhanced biofuel production potential as well as nutritional stress mitigation in the microalgae Scenedesmus sp.
CCNM 1077. Bioresour Technol 193:315–323
Pancha I, Chokshi K, Maurya R et al (2015b) Salinity induced oxidative stress enhanced biofuel production potential of microalgae Scenedesmus sp. CCNM 1077. Bioresour Technol
189:341–348
Parida AK, Jha B (2013) Inductive responses of some organic metabolites for osmotic homeostasis
in peanut (Arachis hypogaea L.) seedlings during salt stress. Acta Physiol Plant 35:2821–2832
Qin S, Liu G-X, Hu Z-Y (2008) The accumulation and metabolism of astaxanthin in Scenedesmus
obliquus (Chlorophyceae). Process Biochem 43:795–802
Raamsdonk LM, Teusink B, Broadhurst D et al (2001) A functional genomics strategy that uses
metabolome data to reveal the phenotype of silent mutations. Nat Biotechnol 19:45–50
Rai UN, Singh NK, Upadhyay AK, Verma S (2013) Chromate tolerance and accumulation in
Chlorella vulgaris L.: role of antioxidant enzymes and biochemical changes in detoxification
of metals. Bioresour Technol 136:604–609
Ratha SK, Prasanna R (2012) Bioprospecting microalgae as potential sources of “green energy”challenges and perspectives (review). Appl Biochem Microbiol 48:109–125
Rismani-Yazdi H, Haznedaroglu BZ, Bibby K, Peccia J (2011) Transcriptome sequencing and
annotation of the microalgae Dunaliella tertiolecta: pathway description and gene discovery
for production of next-generation biofuels. BMC Genomics 12:148
Ruiz-Domínguez MC, Vaquero I, Obregón V et al (2015) Lipid accumulation and antioxidant
activity in the eukaryotic acidophilic microalga Coccomyxa sp. (strain onubensis) under nutrient starvation. J Appl Phycol 27:1099–1108
Sabatini SE, Juárez AB, Eppis MR et al (2009) Oxidative stress and antioxidant defenses in two
green microalgae exposed to copper. Ecotoxicol Environ Saf 72:1200–1206
Saenz ME, Bisova K, Touloupakis E et al (2015) Evidences of oxidative stress during hydrogen photoproduction in sulfur-deprived cultures of Chlamydomonas reinhardtii. Int J Hydrog
Energy 40:10410–10417
Saha SK, Moane S, Murray P (2013) Effect of macro- and micro-nutrient limitation on superoxide dismutase activities and carotenoid levels in microalga Dunaliella salina CCAP 19/18.
Bioresour Technol 147:23–28
Scherz-Shouval R, Shvets E, Fass E et al (2007) Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4. EMBO J 26:1749–1760
Shaish A, Avron M, Pick U, Ben-Amotz A (1993) Are active oxygen species involved in induction
of β-carotene in Dunaliella bardawil? Planta 190:363–368
Singh P, Kumari S, Guldhe A et al (2016) Trends and novel strategies for enhancing lipid accumulation and quality in microalgae. Renew Sust Energ Rev 55:1–16
13 Oxidative Stress-Induced Bioprospecting of Microalgae
Nguyen AV, Thomas-Hall SR, Malnoë A et al (2008) Transcriptome for photobiological hydrogen production induced by sulfur deprivation in the green alga Chlamydomonas reinhardtii.
Eukaryot Cell 7:1965–1979
Olmstead ILD, Hill DRA, Dias DA et al (2013) A quantitative analysis of microalgal lipids for
optimization of biodiesel and omega-3 production. Biotechnol Bioeng 110:2096–2104
Osundeko O, Davies H, Pittman JK (2013) Oxidative stress-tolerant microalgae strains are highly
efficient for biofuel feedstock production on wastewater. Biomass Bioenergy 56:284–294
Osundeko O, Dean AP, Davies H, Pittman JK (2014) Acclimation of microalgae to wastewater environments involves increased oxidative stress tolerance activity. Plant Cell Physiol
55:1848–1857
Paliwal C, Ghosh T, George B et al (2016) Microalgal carotenoids: potential nutraceutical compounds with chemotaxonomic importance. Algal Res 15:24–31
Pancha I, Chokshi K, George B et al (2014) Nitrogen stress triggered biochemical and morphological changes in the microalgae Scenedesmus sp. CCNM 1077. Bioresour Technol 156:146–154
Pancha I, Chokshi K, Ghosh T et al (2015a) Bicarbonate supplementation enhanced biofuel production potential as well as nutritional stress mitigation in the microalgae Scenedesmus sp.
CCNM 1077. Bioresour Technol 193:315–323
Pancha I, Chokshi K, Maurya R et al (2015b) Salinity induced oxidative stress enhanced biofuel production potential of microalgae Scenedesmus sp. CCNM 1077. Bioresour Technol
189:341–348
Parida AK, Jha B (2013) Inductive responses of some organic metabolites for osmotic homeostasis
in peanut (Arachis hypogaea L.) seedlings during salt stress. Acta Physiol Plant 35:2821–2832
Qin S, Liu G-X, Hu Z-Y (2008) The accumulation and metabolism of astaxanthin in Scenedesmus
obliquus (Chlorophyceae). Process Biochem 43:795–802
Raamsdonk LM, Teusink B, Broadhurst D et al (2001) A functional genomics strategy that uses
metabolome data to reveal the phenotype of silent mutations. Nat Biotechnol 19:45–50
Rai UN, Singh NK, Upadhyay AK, Verma S (2013) Chromate tolerance and accumulation in
Chlorella vulgaris L.: role of antioxidant enzymes and biochemical changes in detoxification
of metals. Bioresour Technol 136:604–609
Ratha SK, Prasanna R (2012) Bioprospecting microalgae as potential sources of “green energy”challenges and perspectives (review). Appl Biochem Microbiol 48:109–125
Rismani-Yazdi H, Haznedaroglu BZ, Bibby K, Peccia J (2011) Transcriptome sequencing and
annotation of the microalgae Dunaliella tertiolecta: pathway description and gene discovery
for production of next-generation biofuels. BMC Genomics 12:148
Ruiz-Domínguez MC, Vaquero I, Obregón V et al (2015) Lipid accumulation and antioxidant
activity in the eukaryotic acidophilic microalga Coccomyxa sp. (strain onubensis) under nutrient starvation. J Appl Phycol 27:1099–1108
Sabatini SE, Juárez AB, Eppis MR et al (2009) Oxidative stress and antioxidant defenses in two
green microalgae exposed to copper. Ecotoxicol Environ Saf 72:1200–1206
Saenz ME, Bisova K, Touloupakis E et al (2015) Evidences of oxidative stress during hydrogen photoproduction in sulfur-deprived cultures of Chlamydomonas reinhardtii. Int J Hydrog
Energy 40:10410–10417
Saha SK, Moane S, Murray P (2013) Effect of macro- and micro-nutrient limitation on superoxide dismutase activities and carotenoid levels in microalga Dunaliella salina CCAP 19/18.
Bioresour Technol 147:23–28
Scherz-Shouval R, Shvets E, Fass E et al (2007) Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4. EMBO J 26:1749–1760
Shaish A, Avron M, Pick U, Ben-Amotz A (1993) Are active oxygen species involved in induction
of β-carotene in Dunaliella bardawil? Planta 190:363–368
Singh P, Kumari S, Guldhe A et al (2016) Trends and novel strategies for enhancing lipid accumulation and quality in microalgae. Renew Sust Energ Rev 55:1–16
13 Oxidative Stress-Induced Bioprospecting of Microalgae
