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Accumulation of phytoene and astaxanthin and related genes expression in Haematococcus pluvialis under sodium acetate stress

雨生红球菌 虾青素 植物烯 八氢番茄红素脱氢酶 雨生植物 类胡萝卜素 生物 生物化学 食品科学 生物合成 番茄红素
作者
Xiao Cong,Xiaonan Zang,Manman Dong,Zhendong Wang,Bian He,Lulu Hou,Xuehong Wei,Zhang Feng,Menghui Shang,Zhaxi Yangzong,Rui Li,Xuecheng Zhang
出处
期刊:Aquatic Biology [Inter-Research]
卷期号:29: 155-164 被引量:6
标识
DOI:10.3354/ab00733
摘要

Phytoene and astaxanthin are 2 important carotenoids in the green alga Haematococcus pluvialis . Under environmental stress, the synthesis of phytoene in H. pluvialis increases significantly, and phytoene is converted to astaxanthin through enzymatic catalysis. This paper analyzes the relationship between astaxanthin and phytoene accumulation in carotenoid synthesis pathways under different concentrations of sodium acetate (NaAc) by high-performance liquid chromatography. The highest concentrations of phytoene and astaxanthin were observed at the NaAc concentration of 6 g l -1 on the 12 th day of induction. The highest astaxanthin concentration achieved was 2.26 ± 0.28%. Therefore, we concluded that 6 g l -1 NaAc and induction for 12 d provided the optimal inducing conditions for astaxanthin accumulation in H. pluvialis . psy , pds , lcyB , β-carotene ketolase crtw , and crtz , which are genes related to phytoene and astaxanthin synthesis, were cloned and studied at the transcriptional level. crtw and crtz were continuously up-regulated since the first day of induction, while psy , pds , and lcyB were continuously up-regulated starting on the 3 rd day of induction. These findings are important for enhancing our understanding of the mechanism of accumulation of phytoene and astaxanthin in H. pluvialis and provide a foundation for identifying the induction conditions necessary for optimizing astaxanthin production and increasing astaxanthin yields.

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