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淡水微藻索氏小球藻和海洋微藻四爿藻生产虾青素的研究

Astaxanthin production by freshwater microalgae Chlorella sorokiniana and marine microalgae Tetraselmis sp.

作者信息

Raman Rinugah, Mohamad Shaza Eva

机构信息

Faculty of Biosciences and Medical Engineering, Universiti Teknologi Malaysia, Johor Bahru, Malaysia.

出版信息

Pak J Biol Sci. 2012 Dec 15;15(24):1182-6. doi: 10.3923/pjbs.2012.1182.1186.

Abstract

There are numerous commercial applications of microalgae nowadays owing to their vast biotechnological and economical potential. Indisputably, astaxanthin is one of the high value product synthesized by microalgae and is achieving commercial success. Astaxanthin is a keto-carotenoid pigment found in many aquatic animals including microalgae. Astaxanthin cannot be synthesized by animals and provided in the diet is compulsory. In this study, the production of astaxanthin by the freshwater microalgae Chlorella sorokiniana and marine microalgae Tetraselmis sp. were studied. The relationship between growth and astaxanthin production by marine and freshwater microalgae cultivated under various carbon sources and concentrations, environmental conditions and nitrate concentrations was investigated in this study. Inorganic carbon source and low nitrate concentration favored the growth and production of astaxanthin by the marine microalgae Tetraselmis sp. and the freshwater microalgae Chlorella sorokiniana. Outdoor cultivation enhanced the growth of microalgae, while indoor cultivation promoted the formation of astaxanthin. The results indicated that supplementation of light, inorganic carbon and nitrate could be effectively manipulated to enhance the production of astaxanthin by both microalgae studied.

摘要

由于微藻具有巨大的生物技术和经济潜力,如今有许多微藻的商业应用。无可争议的是,虾青素是微藻合成的高价值产品之一,并正在取得商业成功。虾青素是一种酮类胡萝卜素色素,存在于包括微藻在内的许多水生动物中。动物无法合成虾青素,必须通过饮食提供。在本研究中,对淡水微藻索氏小球藻和海洋微藻四爿藻生产虾青素的情况进行了研究。本研究调查了在各种碳源和浓度、环境条件以及硝酸盐浓度下培养的海洋和淡水微藻的生长与虾青素生产之间的关系。无机碳源和低硝酸盐浓度有利于海洋微藻四爿藻和淡水微藻索氏小球藻的生长以及虾青素的生产。室外培养促进了微藻的生长,而室内培养则促进了虾青素的形成。结果表明,通过有效控制光照、无机碳和硝酸盐的添加量,可以提高所研究的两种微藻的虾青素产量。

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