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A Novel Platform for Bioupgrading of Lignin to Valuable Nutraceuticals and Pharmaceuticals

机译:一种新颖的木质素生物生长平台,以宝贵的营养保健品和药品

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To enhance the economics of lignocellulosic biomass utilization, lignin has been extensively studied as a promising feedstock for biofuels and bioproducts. This study aimed at lignin bioupgrading by a strain of marine protists, Thraustochytrium striatum, to high-value nutraceuticals/pharmaceuticals. It was found that this strain was able to transform various types of lignin compounds into polyunsaturated long-chain fatty acids (EPA and DHA) and carotenoids (e.g., P-carotene and astaxanthin). In screening of 14 lignin model compounds as carbon sources, T. striatum can grow in most compounds at different concentrations, while achieving the best growth in 3, 4-dihydroxybenzoic acid (3, 4-DHBA) and 4-hydroxybenzoic acid (4-HBA). The maximum biomass yield reached 2-3 g/L under 5 g/L of 3, 4-DHBA or 2 g/L of 4-HBA even without optimization. In both batch and fed-batch cultivation modes, T. striatum can accumulate decent amount of long-chain fatty acids (15% cell dry weight) and carotenoids (0.1 mg/g biomass). T. striatum was also proven to utilize polymeric lignin. Significant cell mass growth was observed with Kraft pine lignin as sole carbon source, as well as accumulation of fatty acids and carotenoids. A preliminary investigation on lignin degradation mechanism indicated that T. striatum utilized 4-HBA as central intermediate. The monomer released from lignin depolymerization was firstly converted into 4-HBA and then catabolized by microorganisms. The capability ofT. striatum to digest a wide rangeof lignin materials makes it a novel and attractive platform for lignin utilization and upgrading.
机译:为了增强木质纤维素生物质利用的经济学,Lignin已被广泛地研究了生物燃料和生物制品的有希望的原料。本研究旨在通过海洋保护菌株Thaustochytrium纹状体的Lignin Bioupgrading,以高价值的营养素/药物。发现该菌株能够将各种类型的木质素化合物转化为多不饱和的长链脂肪酸(EPA和DHA)和类胡萝卜素(例如,对癌烯和虾青素)。在筛选14种木质素模型化合物作为碳源时,纹状体可以在不同浓度的大多数化合物中生长,同时实现3,4-二羟基苯甲酸(3,4-DHBA)和4-羟基苯甲酸的最佳生长(4- HBA)。即使没有优化,最高生物质产率在5克/升3,4 -DHBA或2g / L的4-HBA中达到2-3克/升。在两种批次和氟化批培养模式中,T.Striatum可以积累的长链脂肪酸(15%细胞干重)和类胡萝卜素(0.1mg / g生物量)的体积。纹状体也被证明是利用聚合物木质素。用牛皮松树素作为唯一碳源观察到显着细胞质量生长,以及脂肪酸和类胡萝卜素的积累。木质素降解机制的初步调查表明,T.Striatum利用4-HBA作为中间体。从木质素脱聚的单体首先转化为4-HBA,然后通过微生物分解代谢。能力的。纹状体消化宽范围的木质素材料使其成为木质素利用和升级的新颖而有吸引力的平台。

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