首页> 外文期刊>International Journal on algae >Phytohormones of Microalgae: Biological Role and Involvement in the Regulation of Physiological Processes. Pt II. Cytokinins and Gibberellins
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Phytohormones of Microalgae: Biological Role and Involvement in the Regulation of Physiological Processes. Pt II. Cytokinins and Gibberellins

机译:微藻植物激素:生理过程中的生物学作用和参与。铂II。细胞分裂素和赤霉素

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摘要

Literature data on biosynthesis, qualitative and quantitative diversity, involvement in the regulation of physiological and biochemical processes, prospects for use of microalgae cytokinins (CKs) and gibberellins (GA) in biotechnological developmentshave been analyzed and summarized. Forty-five (45) microalgae species, belonging to 5 divisions, have 37 forms of CKs. The qualitative composition and quantitative content of microalgae CKs are shown to be strongly affected by light conditions and by thepresence of an energy source in the culture medium. The main biological functions of microalgae CKs include stimulation of cell division, activation of growth processes, and increased photosynthetic activity. Microalgae cytokinin protective properties that provide protection for cell divisions and the photosynthetic apparatus under stress conditions are revealed. The problem of microalgae cytokinins biosynthesis is still controversial, and their interactions with other phytohormone classes need furtherinvestigation. Gibberellins were discovered in 31 microalgae species: 20 hormone isoforms were identified. Microalgae GA physiological effects are similar to those of higher plants, and in a lag phase exhibit reduction and stimulation of cell growth anddivision, increase in biomass, accumulation of proteins and pigments, and reduction of heavy metal effects.
机译:分析和总结了有关生物合成,质和量多样性,参与生理和生化过程调控,微藻细胞分裂素(CKs)和赤霉素(GA)在生物技术发展中的应用前景的文献数据。属于5个科的四十五(45)个微藻种具有37种形式的CK。结果表明,微藻CK的定性组成和定量含量受光照条件和培养基中能量源的强烈影响。微藻CKs的主要生物学功能包括刺激细胞分裂,激活生长过程和增加光合作用。揭示了在胁迫条件下为细胞分裂和光合作用提供保护的微藻细胞激肽保护特性。微藻细胞分裂素生物合成的问题仍存在争议,它们与其他植物激素的相互作用尚需进一步研究。在31个微藻物种中发现了赤霉素:鉴定出20种激素同工型。微藻GA的生理效应与高等植物的生理效应相似,并且在滞后阶段表现出细胞生长和分裂的减少和刺激,生物量增加,蛋白质和色素的积累以及重金属效应的减少。

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