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Carotenoids and lipid production from Rhodosporidium toruloides cultured in tea waste hydrolysate

机译:胡萝卜素和脂质生产来自茶叶垃圾水解产物中的罗达孢子脒葡萄渣

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In this study, renewable tea waste hydrolysate was used as a sole carbon source for carotenoids and lipid production. A novel Rhodosporidium toruloides mutant strain, RM18, was isolated through atmospheric and room-temperature plasma mutagenesis and continuous domestication in tea waste hydrolysate from R. toruloides ACCC20341. RM18 produced a larger biomass and more carotenoids and α-linolenic acid compared with the control strain cultured in tea waste hydrolysate. The highest yields of torularhodin (481.92?μg/g DCW) and torulene (501?μg/g DCW) from RM18 cultured in tea waste hydrolysate were 12.86- and 1.5-fold higher, respectively, than that of the control strain. In addition, α-linolenic acid production from RM18 in TWH accounted for 5.5% of total lipids, which was 1.58 times more than that of the control strain. Transcriptomic profiling indicated that enhanced central metabolism and terpene biosynthesis led to improved carotenoids production, whereas aromatic amino acid synthesis and DNA damage checkpoint and sensing were probably relevant to tea waste hydrolysate tolerance. Tea waste is suitable for the hydrolysis of microbial cell culture mediums. The R. toruloides mutant RM18 showed considerable carotenoids and lipid production cultured in tea waste hydrolysate, which makes it viable for industrial applications.
机译:在该研究中,可再生茶废液水解产物用作类胡萝卜素和脂质生产的唯一碳源。通过大气和室温等级诱变突变体菌株,RM18,通过大气和室温等离子体诱变和来自R. Toruloides ACCC20341的茶废物水解产物的连续驯化,分离出一种新的Rhodosporidium突变菌株。与茶废物水解产物中培养的对照菌株相比,RM18产生了更大的生物量和更多的类胡萝卜素和α-亚麻酸。从茶废液水解产物中培养的RM18的圆角的最高产量(481.92×μg/ g dcw)和环烯(501μg/ g dcw)分别比对照菌株的培养物培养的12.86-1.5倍。此外,来自TWH的RM18的α-亚麻酸产生占总脂质的5.5%,比对照菌株的1.58倍。转录组分布表明,增强的中央代谢和萜烯生物合成导致提高类胡萝卜素的产生,而芳族氨基酸合成和DNA损伤检查点和感测可能与茶废液水解耐受性相关。茶废物适用于微生物细胞培养基的水解。 R. Toruloides突变体RM18显示了茶叶水解产物中培养的相当大的类胡萝卜素和脂质生产,这使得工业应用可行。

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