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雨生红球藻用于工业生产虾青素。

Xanthophyllomyces dendrorhous for the industrial production of astaxanthin.

机构信息

R&D Biology, Antibióticos S.A., Avenida de Antibióticos 59-61, 24009 León, Spain.

出版信息

Appl Microbiol Biotechnol. 2010 Oct;88(3):645-58. doi: 10.1007/s00253-010-2814-x. Epub 2010 Aug 14.

DOI:10.1007/s00253-010-2814-x
PMID:20711573
Abstract

Astaxanthin is a red xanthophyll (oxygenated carotenoid) with large importance in the aquaculture, pharmaceutical, and food industries. The green alga Haematococcus pluvialis and the heterobasidiomycetous yeast Xanthophyllomyces dendrorhous are currently known as the main microorganisms useful for astaxanthin production at the industrial scale. The improvement of astaxanthin titer by microbial fermentation is a requirement to be competitive with the synthetic manufacture by chemical procedures, which at present is the major source in the market. In this review, we show how the isolation of new strains of X. dendrorhous from the environment, the selection of mutants by the classical methods of random mutation and screening, and the rational metabolic engineering, have provided improved strains with higher astaxanthin productivity. To reduce production costs and enhance competitiveness from an industrial point of view, low-cost raw materials from industrial and agricultural origin have been adopted to get the maximal astaxanthin productivity. Finally, fermentation parameters have been studied in depth, both at flask and fermenter scales, to get maximal astaxanthin titers of 4.7 mg/g dry cell matter (420 mg/l) when X. dendrorhous was fermented under continuous white light. The industrial scale-up of this biotechnological process will provide a cost-effective method, alternative to synthetic astaxanthin, for the commercial exploitation of the expensive astaxanthin (about $2,500 per kilogram of pure astaxanthin).

摘要

虾青素是一种红色类胡萝卜素(含氧类胡萝卜素),在水产养殖、制药和食品工业中具有重要意义。绿藻雨生红球藻和异担子菌酵母红发夫酵母目前被认为是工业规模生产虾青素的主要微生物。通过微生物发酵提高虾青素的产量是与化学方法合成制造竞争的要求,目前化学方法是市场上的主要来源。在这篇综述中,我们展示了如何从环境中分离新的红发夫酵母菌株,通过随机突变和筛选等经典方法选择突变体,以及合理的代谢工程,为提高虾青素生产力提供了改良菌株。为了降低生产成本并从工业角度提高竞争力,采用了来自工业和农业的低成本原料,以获得最高的虾青素生产力。最后,在摇瓶和发酵罐规模上深入研究了发酵参数,当红发夫酵母在连续白光下发酵时,虾青素的最高产量达到 4.7mg/g 干物质(420mg/l)。这种生物技术过程的工业化规模将提供一种具有成本效益的方法,替代昂贵的合成虾青素,用于商业开发昂贵的虾青素(每公斤纯虾青素约 2500 美元)。

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