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提高雨生红球藻虾青素产量:植物激素的现状趋势和潜力。

Enhancing astaxanthin yield in Phaffia rhodozyma: current trends and potential of phytohormones.

机构信息

Department of Applied Chemistry and Biochemistry, C. K. Tedam University of Technology and Applied Sciences, P. O. Box 24, Navrongo, Ghana.

Institute of Chemical Engineering, Ural Federal University Named After the First President of Russia B.N. Yeltsin, Mira Street 28, 620002, Ekaterinburg, Russia.

出版信息

Appl Microbiol Biotechnol. 2022 May;106(9-10):3531-3538. doi: 10.1007/s00253-022-11972-5. Epub 2022 May 17.

Abstract

Astaxanthin is an important ketocarotenoid with remarkable biological activities and high economic value. In recent times, natural astaxanthin production by microorganisms has attracted much attention particularly in pharmaceuticals, nutraceuticals, cosmetics, and food and feed industries. Though, currently, productivity is still low and has restricted scale-up application in the commercial market, microbial production of astaxanthin has enormous prospects as it is a greener alternative to the predominating chemical synthesis. Over the years, Phaffia rhodozyma has attracted immense interest particularly in the field of biovalorization and sustainable production of natural nutraceuticals as a promising source of natural astaxanthin since it is able to use agro-food waste as inexpensive nutrient source. Many research works have, thus, been devoted to improving the astaxanthin yield from this yeast. Considering that the yeast was first isolated from tree exudates, the use of phytohormones and plant growth stimulators as prospective stimulants of astaxanthin production in the yeast is promising. Besides, it has been shown in several studies that phytohormones could improve cell growth and astaxanthin production of algae. Nevertheless, this option is less explored for P. rhodozyma. The few studies that have examined the effect of phytohormones on the yeast and its astaxanthin productivity reported positive results, with phytohormones such as 6-benzylaminopurin and gibberellic acid resulting in increased expression of carotenogenesis genes. Although the evidence available is scanty, the results are promising. KEY POINTS: • Phaffia rhodozyma is a promising source of natural astaxanthin • For industrialization, astaxanthin productivity of P. rhodozyma still needs optimization • Phytohormones could potentially augment astaxanthin yield of P. rhodozyma.

摘要

虾青素是一种具有显著生物活性和高经济价值的重要酮类胡萝卜素。近年来,微生物法生产天然虾青素受到了广泛关注,特别是在制药、营养保健品、化妆品、食品和饲料行业。尽管目前的生产力仍然较低,限制了其在商业市场上的规模化应用,但微生物生产虾青素具有巨大的前景,因为它是一种替代主导化学合成的更环保的方法。多年来,红球藻因其能够利用农业食品废物作为廉价的营养源,作为天然营养保健品生物增值和可持续生产的有前途的来源,在生物价值化和可持续生产天然营养保健品领域引起了极大的兴趣。因此,许多研究工作致力于提高该酵母的虾青素产量。考虑到该酵母最初是从树液中分离出来的,因此,植物激素和植物生长调节剂作为该酵母中虾青素生产的潜在刺激物具有广阔的应用前景。此外,多项研究表明,植物激素可以促进藻类的细胞生长和虾青素的生产。然而,这种选择在红球藻中应用较少。少数研究了植物激素对该酵母及其虾青素生产力的影响,报告了积极的结果,表明植物激素如 6-苄基氨基嘌呤和赤霉素导致类胡萝卜素生物合成基因的表达增加。尽管现有证据有限,但结果很有前景。要点: • 红球藻是天然虾青素的有前途的来源 • 为实现工业化,仍需优化红球藻的虾青素生产力 • 植物激素可能会增加红球藻的虾青素产量。

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