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利用新型 LED 波长移位策略提高雨生红球藻虾青素的产量。

Enhancement of astaxanthin production using Haematococcus pluvialis with novel LED wavelength shift strategy.

机构信息

Department of Bioactive Material Sciences, Chonbuk National University, 567 Baekje-daero, deokjin-gu, Jeonju-si, Jeollabuk-do, 561-756, Republic of Korea.

Department of Bioprocess Engineering, Chonbuk National University, 567 Baekje-daero, deokjin-gu, Jeonju-si, Jeollabuk-do, 561-756, Republic of Korea.

出版信息

Appl Microbiol Biotechnol. 2016 Jul;100(14):6231-6238. doi: 10.1007/s00253-016-7301-6. Epub 2016 Feb 10.

Abstract

Haematococcus pluvialis is a green microalga of particular interest, since it is considered the best potential natural source of astaxanthin, which is widely used as an additive for natural pigmentation. In addition, astaxanthin has recently garnered commercial interest as a nutraceutical, cosmetic, and pharmaceutical. However, producing astaxanthin from H. pluvialis necessitates separation with distinctive culture conditions, dividing between the microalgae growth and the astaxanthin production stages. Light-emitting diodes (LEDs) have emerged as a replacement for traditional light sources, and LED applications are now rapidly expanding to multiple areas in fields such as biotechnology. However, further detail application into microalgae biotechnology remains limited. In this study, we have attempted to establish new protocols based on the specific wavelength of LEDs for the cultivation and production of astaxanthin using H. pluvialis. Specifically, we applied red LEDs for microalgae cell growth and then switched to blue LEDs to induce astaxanthin biosynthesis. The result showed that astaxanthin productions based on a wavelength shift from red to blue were significantly increased, compared to those with continuous illumination using red LEDs. Furthermore, additional increase of astaxanthin production was achieved with simultaneous application of exogenous carbon with blue LED illumination. Our approach based on the proper manipulation of LED wavelengths upon H. pluvialis cell stages will enable the improvement of biomass and enhance astaxanthin production using H. pluvialis.

摘要

雨生红球藻是一种特别引人关注的绿色微藻,因为它被认为是虾青素的最佳天然潜在来源,虾青素广泛用作天然着色剂。此外,虾青素最近作为营养保健品、化妆品和药物引起了商业关注。然而,从雨生红球藻中生产虾青素需要独特的培养条件进行分离,分为微藻生长和虾青素生产阶段。发光二极管(LED)已经取代了传统光源,并且 LED 的应用现在正在迅速扩展到生物技术等多个领域。然而,进一步详细的应用于微藻生物技术仍然有限。在这项研究中,我们试图根据 LED 的特定波长为基础,为使用雨生红球藻培养和生产虾青素建立新的方案。具体来说,我们应用红色 LED 促进微藻细胞生长,然后切换到蓝色 LED 诱导虾青素生物合成。结果表明,与连续使用红色 LED 照明相比,基于从红色到蓝色波长转换的虾青素生产显著增加。此外,同时应用外源碳和蓝色 LED 光照可进一步提高虾青素的产量。我们基于对雨生红球藻细胞阶段的 LED 波长进行适当操作的方法,将能够提高生物量并增强虾青素的生产。

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