Metabolic responses to desalination brine discharges in field-transplanted Posidonia oceanica: Advances for the development of specific early warning biomarkers

被引:3
|
作者
Blanco-Murillo, Fabio [1 ,2 ,4 ]
Marin-Guirao, Lazaro [3 ]
Sola, Ivan [1 ,4 ]
Carbonell-Garzon, Estela [1 ]
Rodriguez-Rojas, Fernanda [4 ,6 ]
Sanchez-Lizaso, Jose Luis [1 ,5 ]
Saez, Claudio A. [1 ,4 ,6 ]
机构
[1] Univ Alicante, Dept Ciencias Mar & Biol Aplicada, Alicante, Spain
[2] Univ Playa Ancha, Fac Ciencias Nat & Exactas, Programa Doctorado Interdisciplinario Ciencias Amb, Valparaiso, Chile
[3] CSIC, Inst Espanol Oceanog IEO, Ctr Oceanog Murcia, Seagrass Ecol Grp, Murcia, Spain
[4] Univ Playa Ancha, Lab Aquat Environm Res, HUB AMBIENTAL UPLA, Valparaiso, Chile
[5] Univ Alicante, Unidad Asociada, Ciencias Mar, CSIC,IEO, Alicante, Spain
[6] Univ Playa Ancha, Fac Ciencias Nat & Exactas, Dept Ciencias & Geog, Valparaiso, Chile
关键词
Seagrass; Desalination; Oxidative stress; Gene expression; Biomonitoring; CYMODOCEA-NODOSA; ANTIOXIDANT RESPONSE; OXIDATIVE STRESS; WATER RELATIONS; SALINITY; PLANT; GROWTH; PHOTOSYNTHESIS; HOMEOSTASIS; ASCORBATE;
D O I
10.1016/j.desal.2024.117395
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Water desalination has become an important process to cope with water scarcity in the Mediterranean basin; however, the endemic seagrass Posidonia oceanica may be susceptible to high -salinity brines derived from this industry. To understand how brine affects metabolic processes in P. oceanica, transplantation experiments were performed in two sites exposed to a brine dilution plume derived from a desalination plant in Alicante (Spain). P. oceanica individuals were transplanted in three locations, i.e., a control site (-37 psu), an intermediate influence site (IB, -39.5 psu), and a high -influence site (HB, -42 psu), and were monitored for 6 days. The metabolic endpoints of reactive oxygen species (i.e., H2O2, lipid peroxidation, and ascorbate cycle) and the regulation of genes involved in antioxidant and osmoregulation responses [please complete sentence]. The concentration of H2O2 and thiobarbituric acid reactive substances (TBARS) increased, while that of ascorbate (ASC) decreased in HB, indicating excessive ROS production, lipid peroxidation, and antioxidant consumption. Genes related to osmoregulation (SOS1, SOS3, AKT2/3) and antioxidant response (GR, APX, FeSOD, MnSOD, and STRK1) were upregulated in brine -exposed plants, especially at the early stages of the experiment. This novel approach has provided a battery of biomarkers that may serve as early warning tools for rapid action mitigation to avoid the negative effects of salinity on P. oceanica at the population and community levels. This approach can be also globally applied to relevant macrophytes in environmental monitoring programs to address other stressors and their isolated or combined contribution to marine pollution.
引用
收藏
页数:10
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  • [1] Desalination brine effects beyond excess salinity: Unravelling specific stress signaling and tolerance responses in the seagrass Posidonia oceanica.
    Blanco-Murillo F.
    Marín-Guirao L.
    Sola I.
    Rodríguez-Rojas F.
    Ruiz J.M.
    Sánchez-Lizaso J.L.
    Sáez C.A.
    Chemosphere, 2023, 341