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Salinity Stress Responses and Adaptation Mechanisms in Eukaryotic Green Microalgae

Cells · 2019 · Vol. 8(12) · pp. 1657–1657
Prateek ShettyMargaret Mukami GitauGergely Maróti

Abstract

High salinity is a challenging environmental stress for organisms to overcome. Unicellular photosynthetic microalgae are especially vulnerable as they have to grapple not only with ionic imbalance and osmotic stress but also with the generated reactive oxygen species (ROS) interfering with photosynthesis. This review attempts to compare and contrast mechanisms that algae, particularly the eukaryotic <i>Chlamydomonas</i> microalgae, exhibit in order to immediately respond to harsh conditions caused by high salinity. The review also collates adaptation mechanisms of freshwater algae strains under persistent high salt conditions. Understanding both short-term and long-term algal responses to high salinity is integral to further fundamental research in algal biology and biotechnology.

Algal biology and biofuel productionMarine and coastal ecosystemsAquatic Ecosystems and Phytoplankton DynamicsSalinityChlamydomonasPhotosynthesisAlgaeAdaptation (eye)BiologyGreen algaeEcologyBotanyBiochemistry

MeSH terms

Salt StressAdaptation, BiologicalChlamydomonasPhotosynthesisStress, PhysiologicalSalinityEukaryotaMicroalgae

Funding

  • National Kidney Foundation of Illinois
Citations
317
FWCI
5.24
field-weighted impact
References
94
Percentile
97%
vs. same field & year
Citations per year
References
Matrix metalloproteinases (MMPs): Chemical–biological functions and (Q)SARs
Bioorganic & Medicinal Chemistry · 2007 · 766 citations
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