Institute of Plant Biology, Hungarian Academy of Sciences, Biological Research Centre, 6726 Szeged, Hungary.
Faculty of Water Sciences, National University of Public Service, 6500 Baja, Hungary.
Cells. 2019 Dec 17;8(12):1657. doi: 10.3390/cells8121657.
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 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.
高盐度是生物体需要克服的具有挑战性的环境压力。单细胞光合微藻尤其脆弱,因为它们不仅要应对离子失衡和渗透胁迫,还要应对干扰光合作用的活性氧(ROS)。本综述试图比较和对比藻类(特别是真核微藻)表现出的机制,以便立即应对高盐度引起的恶劣条件。本综述还整理了淡水藻类菌株在持续高盐条件下的适应机制。了解藻类对高盐度的短期和长期反应对于藻类生物学和生物技术的进一步基础研究至关重要。