263
Table 13.3 Summary of selected studies on biofuel potential of microalgae under oxidative stress
conditions
Stress
Microalgae
Experimental
condition
Stress
parameters
References
Temperature
Acutodesmus
dimorphus
25, 35 and 38°C
H 2 O 2 , MDA,
APX, CAT
Chokshi et al.
(2015)
Scenedesmus sp.
10–30°C
ROS level
Xin et al.
(2011)
Nutrients
Chlamydomonas
reinhardtii
Nitrogen, sulphur,
phosphorus and
magnesium
deprivation;
nitrogen and zinc
supplementation
Carotenoids,
H 2 O 2 , SOD,
CAT, APX,
GR, Proline
Çakmak et al.
(2015)
Coccomyxa
onubensis
Nitrogen, sulphur
and phosphorus
starvation
CAT, APX,
GR
RuizDomínguez
et al. (2015)
Dunaliella salina
0.05, 0.5 and 5 mM
NaNO 3
MDA, SOD,
CAT, APX
Yilancioglu
et al. (2014)
Chlorella
sorokiniana
Nitrogen starvation ROS, MDA,
SOD, POD,
CAT
Zhang et al.
(2013)
Chlorella vulgaris
Combination of
nutrient excess and
nitrogen starvation
O 2
•− , OH
•
Menon et al.
(2013)
Nitzschia closterium
932, 712, 491, 270
and 159 μM
nitrogen
ROS level
Liu et al.
(2012)
Salt
Chlorella
protothecoides
10–50 g/L NaCl
ROS level,
MDA, SOD,
CAT, POX
Wang et al.
(2016a, b)
Scenedesmus sp.
0–400 mM NaCl
H 2 O 2 , APX,
MDA, Proline
Pancha et al.
(2015a)
Light
Monoraphidium
dybowskii Chlorella
sp.
40, 200 and
400 μmol m
−2  s
−1
SOD, POD,
CAT
He et al.
(2015)
Haematococcus
pluvialis
20 and 400 μmol
m
−2  s
−1
GR, GPX,
APX
Gwak et al.
(2014)
Addition of
chemicals
Monoraphidium sp.
5 mM glycine
betaine
ROS level
Zhao et al.
(2016)
Dunaliella salina
0–150 mg/L phenol MDA, SOD,
CAT
Cho et al.
(2016)
Wastewater
Chlamydomonas
debaryana
Hindakia
tetrachotoma
Desmodesmus
subspicatus
Chlorella luteoviridis
Parachlorella hussii
Raw municipal
wastewater
secondary effluent;
addition of
5–25 mol/m
3 H 2 O 2
ROS level,
APX
Osundeko
et al. (2013)
Osundeko
et al. (2014)
13 Oxidative Stress-Induced Bioprospecting of Microalgae
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