Shah Md Mahfuzur R, Liang Yuanmei, Cheng Jay J, Daroch Maurycy
School of Environment and Energy, Peking University, Shenzhen Graduate School Shenzhen, China.
School of Environment and Energy, Peking University, Shenzhen Graduate SchoolShenzhen, China; Department of Biological and Agricultural Engineering, North Carolina State UniversityRaleigh, NC, USA.
Front Plant Sci. 2016 Apr 28;7:531. doi: 10.3389/fpls.2016.00531. eCollection 2016.
Many species of microalgae have been used as source of nutrient rich food, feed, and health promoting compounds. Among the commercially important microalgae, Haematococcus pluvialis is the richest source of natural astaxanthin which is considered as "super anti-oxidant." Natural astaxanthin produced by H. pluvialis has significantly greater antioxidant capacity than the synthetic one. Astaxanthin has important applications in the nutraceuticals, cosmetics, food, and aquaculture industries. It is now evident that, astaxanthin can significantly reduce free radicals and oxidative stress and help human body maintain a healthy state. With extraordinary potency and increase in demand, astaxanthin is one of the high-value microalgal products of the future.This comprehensive review summarizes the most important aspects of the biology, biochemical composition, biosynthesis, and astaxanthin accumulation in the cells of H. pluvialis and its wide range of applications for humans and animals. In this paper, important and recent developments ranging from cultivation, harvest and postharvest bio-processing technologies to metabolic control and genetic engineering are reviewed in detail, focusing on biomass and astaxanthin production from this biotechnologically important microalga. Simultaneously, critical bottlenecks and major challenges in commercial scale production; current and prospective global market of H. pluvialis derived astaxanthin are also presented in a critical manner. A new biorefinery concept for H. pluvialis has been also suggested to guide toward economically sustainable approach for microalgae cultivation and processing. This report could serve as a useful guide to present current status of knowledge in the field and highlight key areas for future development of H. pluvialis astaxanthin technology and its large scale commercial implementation.
许多微藻物种已被用作营养丰富的食物、饲料和促进健康化合物的来源。在具有商业重要性的微藻中,雨生红球藻是天然虾青素最丰富的来源,天然虾青素被视为“超级抗氧化剂”。雨生红球藻产生的天然虾青素的抗氧化能力明显高于合成虾青素。虾青素在营养保健品、化妆品、食品和水产养殖行业有着重要应用。现在很明显,虾青素可以显著减少自由基和氧化应激,帮助人体保持健康状态。由于其非凡的功效和需求的增加,虾青素是未来高价值微藻产品之一。这篇综述总结了雨生红球藻细胞生物学、生化组成、生物合成和虾青素积累的最重要方面,以及其在人类和动物中的广泛应用。本文详细综述了从培养、收获和收获后生物加工技术到代谢控制和基因工程等重要的最新进展,重点是这种具有生物技术重要性的微藻的生物质和虾青素生产。同时,也批判性地介绍了商业规模生产中的关键瓶颈和主要挑战;雨生红球藻衍生虾青素的当前和潜在全球市场。还提出了一种新的雨生红球藻生物炼制概念,以指导微藻培养和加工的经济可持续方法。本报告可作为介绍该领域当前知识状况的有用指南,并突出雨生红球藻虾青素技术未来发展及其大规模商业实施的关键领域。