Salinity-Induced Palmella Formation Mechanism in Halotolerant Algae Dunaliella salina Revealed by Quantitative Proteomics and Phosphoproteomics
نویسندگان
چکیده
Palmella stage is critical for some unicellular algae to survive in extreme environments. The halotolerant algae Dunaliella salina is a good single-cell model for studying plant adaptation to high salinity. To investigate the molecular adaptation mechanism in salinity shock-induced palmella formation, we performed a comprehensive physiological, proteomics and phosphoproteomics study upon palmella formation of D. salina using dimethyl labeling and Ti4+-immobilized metal ion affinity chromatography (IMAC) proteomic approaches. We found that 151 salinity-responsive proteins and 35 salinity-responsive phosphoproteins were involved in multiple signaling and metabolic pathways upon palmella formation. Taken together with photosynthetic parameters and enzyme activity analyses, the patterns of protein accumulation and phosphorylation level exhibited the mechanisms upon palmella formation, including dynamics of cytoskeleton and cell membrane curvature, accumulation and transport of exopolysaccharides, photosynthesis and energy supplying (i.e., photosystem II stability and activity, cyclic electron transport, and C4 pathway), nuclear/chloroplastic gene expression regulation and protein processing, reactive oxygen species homeostasis, and salt signaling transduction. The salinity-responsive protein-protein interaction (PPI) networks implied that signaling and protein synthesis and fate are crucial for modulation of these processes. Importantly, the 3D structure of phosphoprotein clearly indicated that the phosphorylation sites of eight proteins were localized in the region of function domain.
منابع مشابه
Salt-induced changes in the plasma membrane proteome of the halotolerant alga Dunaliella salina as revealed by blue native gel electrophoresis and nano-LC-MS/MS analysis.
The halotolerant alga Dunaliella salina is a recognized model photosynthetic organism for studying plant adaptation to high salinity. The adaptation mechanisms involve major changes in the proteome composition associated with energy metabolism and carbon and iron acquisition. To clarify the molecular basis for the remarkable resistance to high salt, we performed a comprehensive proteomics analy...
متن کاملSalt-induced Changes in the Plasma Membrane Proteome of the Halotolerant Alga Dunaliella salina as Revealed by Blue Native Gel Electrophoresis and Nano-LC-MS/MS Analysis*□S
The halotolerant alga Dunaliella salina is a recognized model photosynthetic organism for studying plant adaptation to high salinity. The adaptation mechanisms involve major changes in the proteome composition associated with energy metabolism and carbon and iron acquisition. To clarify the molecular basis for the remarkable resistance to high salt, we performed a comprehensive proteomics analy...
متن کاملEnhanced photosynthesis and redox energy production contribute to salinity tolerance in Dunaliella as revealed by homology-based proteomics.
Salinity is a major limiting factor for the proliferation of plants and inhibits central metabolic activities such as photosynthesis. The halotolerant green alga Dunaliella can adapt to hypersaline environments and is considered a model photosynthetic organism for salinity tolerance. To clarify the molecular basis for salinity tolerance, a proteomic approach has been applied for identification ...
متن کاملJelan Mofeed EFFECTS OF SALINITY AND L IGHT INTENSITY ON PRODUCTION OF ß- CAROTENE AND GLYCEROL FROM THE HALOTOLERANT ALGA DUNALIELLA SALINA (CHLOROPHYTA) ISOLATED FROM ZAR ANIK NATURE
The halotolerant green alga Dunaliella salina (isolate SEA003) recently isolated from salt march at Zaranik nature reserve, North Sinai , (Egypt) was cultivated in the arti ficial seawater medium (ASW) with di fferent sal ini ty levels (0.5, 1, 2, 3, and 4 M), under continuous i llumination of two dif ferent li ght intensities: 50 and 200 μmol m 2s , during 30 day of incubation. The maximum gro...
متن کاملبررسی بیان ژن های کلیدی مسیر بیوسنتز بتا کاروتن در Dunaliella salina تحت شرایط متفاوت نور و شوری
Dunaliella salina, a unicellular green microalga with ability of large quantity β-carotene accumulation, was used as a proper model for analysis of expression of the pds and lyc genes, involved in β-carotene biosynthesis pathway, under different light intensities and salinity concentrations. For this purpose, an experiment with two factors, light intensities (200 and 1000 µmol m-2s-1) and salin...
متن کامل