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Development of a Dunaliella tertiolecta Strain with Increased Zeaxanthin Content Using Random Mutagenesis

机译:利用随机诱变开发玉米黄质含量增加的杜氏杜氏藻菌株

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摘要

Zeaxanthin is a xanthophyll pigment that is regarded as one of the best carotenoids for the prevention and treatment of degenerative diseases. In the worldwide natural products market, consumers prefer pigments that have been produced from biological sources. In this study, a Dunaliella tertiolecta strain that has 10–15% higher cellular zeaxanthin content than the parent strain (zea1), was obtained by random mutagenesis using ethyl methanesulfonate (EMS) as a mutagen. This mutant, mp3, was grown under various salinities and light intensities to optimize culture conditions for zeaxanthin production. The highest cellular zeaxanthin content was observed at 1.5 M NaCl and 65–85 μmol photons·m−2·s−1, and the highest daily zeaxanthin productivity was observed at 0.6 M NaCl and 140–160 μmol photons·m−2·s−1. The maximal yield of zeaxanthin from mp3 in fed-batch culture was 8 mg·L−1, which was obtained at 0.6 M NaCl and 140–160 μmol photons·m−2·s−1. These results suggest that random mutagenesis with EMS is useful for generating D. tertiolecta strains with increased zeaxanthin content, and also suggest optimal culture conditions for the enhancement of biomass and zeaxanthin production by the zeaxanthin accumulating mutant strains.
机译:玉米黄质是一种叶黄素色素,被认为是预防和治疗退行性疾病的最佳类胡萝卜素之一。在全球天然产品市场上,消费者更喜欢从生物来源生产的颜料。在这项研究中,使用甲磺酸乙酯(EMS)作为诱变剂,通过随机诱变获得了比亲本菌株(zea1)高出10-15%的细胞玉米黄质含量的杜氏杜氏藻。该突变体mp3在各种盐度和光照强度下生长,以优化玉米黄质生产的培养条件。在1.5 M NaCl和65–85μmol光子·m −2 ·s −1 下观察到最高的玉米黄质含量,在0.6下观察到最高的玉米黄质生产率。 M NaCl和140–160μmol光子·m −2 ·s -1 。分批补料培养中mp3玉米黄质的最大产量为8 mg·L -1 ,这是在0.6 M NaCl和140–160μmol光子·m −2 ·s -1 。这些结果表明,利用EMS的随机诱变可用于产生玉米黄质含量增加的D. tertiolecta菌株,并且还提出了通过玉米黄质积累突变菌株增强生物量和玉米黄质生产的最佳培养条件。

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