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Identification and Analysis of microRNAs in

机译:MicroRNA的识别与分析

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摘要

Chlorella is a popular microalga with robust physiological and biochemical characteristics, which can be cultured under various conditions. The exploration of the small RNA content of Chlorella could improve strategies for the enhancement of metabolite production from this microalga. In this study, stress was introduced to the Chlorella sorokiniana culture to produce high-value metabolites such as carotenoids and phenolic content. The small RNA transcriptome of C. sorokiniana was sequenced, focusing on microRNA (miRNA) content. From the analysis, 98 miRNAs were identified in cultures subjected to normal and stress conditions. The functional analysis result showed that the miRNA targets found were most often involved in the biosynthesis of secondary metabolites, followed by protein metabolism, cell cycle, and porphyrin and chlorophyll metabolism. Furthermore, the biosynthesis of secondary metabolites such as carotenoids, terpenoids, and lipids was found mostly in stress conditions. These results may help to improve our understanding of regulatory mechanisms of miRNA in the biological and metabolic process of Chlorella species. It is important and timely to determine the true potential of this microalga species and to support the potential for genetic engineering of microalgae as they receive increasing focus for their development as an alternative source of biofuel, food, and health supplements.
机译:小球藻是一种流行的微藻,具有稳健的生理和生化特性,可以在各种条件下培养。小球藻的小RNA含量的探索可以改善来自该微藻的代谢产物产生的策略。在这项研究中,将压力引入小球藻氏菌培养物中以产生高价代谢产物,例如类胡萝卜素和酚醛含量。测序C.Sorokiniana的小RNA转录组,重点介于MicroRNA(miRNA)含量。从分析中,在经常和胁迫条件的培养物中鉴定出98个miRNA。功能分析结果表明,发现的miRNA靶靶通常涉及次级代谢物的生物合成,其次是蛋白质代谢,细胞周期和卟啉和叶绿素代谢。此外,次级代谢产物如类胡萝卜素,三萜类化合物和脂质的生物合成主要是在应激条件下发现。这些结果可能有助于改善我们对小球藻生物和代谢过程中miRNA调节机制的理解。重要的是要确定这种微藻物种的真正潜力,并支持微藻基因工程的潜力,因为他们接受其发展的越来越关注,作为生物燃料,食品和健康补充的替代来源。

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