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A rapid and high-quality method for total RNA isolation from Haematococcus pluvialis

机译:一种快速高效的方法从雨生红球菌中分离总RNA

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Haematococcus pluvialis, as the most potential natural source of astaxanthin, which is a powerful antioxidant with high economic value, has attracted more and more scientific attention in recent years. An in-depth understanding of the mechanism for how H. pluvialis produces astaxanthin requires the intensive investigations on its genetic information. In particular, many reported studies were based on a variety of RNA analyses. However, it is difficult to extract RNA with high quality and quantity from H. pluvialis, because of the blockage from its thick cell wall and contamination by a large quantity of pigments, polysaccharides, and lipids. Therefore, we proposed an optimized Trizol-based RNA extraction method for H. pluvialis by investigating the effect of cell wall broken ways, algal strains, and cell growth status on total RNA isolation. Using this rapid, convenient, and cost-saving method, isolated H. pluvialis RNA had high quantity and quality (with an RNA integrity number of 7.0 and a concentration of 1604.1 ng/μL) equivalent to that isolated by commercial kit, enabling its applications into downstream RNA analyses.
机译:虾青球菌是虾青素最有潜力的天然来源,它是一种具有高经济价值的强效抗氧化剂,近年来受到越来越多的科学关注。要深入了解幽门螺杆菌如何产生虾青素的机理,需要对其遗传信息进行深入研究。特别是,许多报道的研究都是基于各种RNA分析。然而,由于其厚壁细胞壁的堵塞和大量色素,多糖和脂质的污染,很难从幽门螺杆菌中提取高质量和高含量的RNA。因此,我们通过研究细胞壁破碎方式,藻类菌株和细胞生长状态对总RNA分离的影响,提出了一种优化的基于黄曲霉菌的基于Trizol的RNA提取方法。使用这种快速,方便且节省成本的方法,分离出的幽门螺杆菌RNA的数量和质量都很高(RNA完整性数为7.0,浓度为1604.1 ng /μL),与商业试剂盒分离的结果相当,从而使其可以应用进入下游RNA分析。

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