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A simple and effective method for high quality co-extraction of genomic DNA and total RNA from low biomass Ectocarpus siliculosus, the model brown alga.

机译:一种简单有效的方法,可以从低生物量的赤藻(模型褐藻)高质量共提取基因组DNA和总RNA。

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摘要

The brown seaweed Ectocarpus siliculosus is an emerging model species distributed worldwide in temperate coastal ecosystems. Over 1500 strains of E. siliculosus are available in culture from a broad range of geographic locations and ecological niches. To elucidate the molecular mechanisms underlying its capacity to cope with different environmental and biotic stressors, genomic and transcriptomic studies are necessary; this requires the co-isolation of genomic DNA and total RNA. In brown algae, extraction of nucleic acids is hindered by high concentrations of secondary metabolites that co-precipitate with nucleic acids. Here, we propose a reliable, rapid and cost-effective procedure for the co-isolation of high-quality nucleic acids using small quantities of biomass (25-, 50- and 100 mg) from strains of E. siliculosus (RHO12; LIA4A; EC524 and REP10-11) isolated from sites with different environmental conditions. The procedure employs a high pH extraction buffer (pH 9.5) which contains 100 mM Tris-HCl and 150 mM NaCl, with the addition of 5 mM DTT and 1% sarkosyl to ensure maximum solubility of nucleic acids, effective inhibition of nuclease activity and removal of interfering contaminants (e.g. polysaccharides, polyphenols). The use of sodium acetate together with isopropanol shortened precipitation time and enhanced the yields of DNA/RNA. A phenol:chlorophorm:isoamyl alcohol step was subsequently used to purify the nucleic acids. The present protocol produces high yields of nucleic acids from only 25 mg of fresh algal biomass (0.195 and 0.284 µg mg(-1) fresh weigh of RNA and DNA, respectively) and the high quality of the extracted nucleic acids was confirmed through spectrophotometric and electrophoretic analyses. The isolated RNA can be used directly in downstream applications such as RT-PCR and the genomic DNA was suitable for PCR, producing reliable restriction enzyme digestion patterns. Co-isolation of DNA/RNA from different strains indicates that this method is likely to have wider applications for intra- and inter-specific studies on other brown algae.
机译:褐藻海藻Ectocarpus siliculosus是分布在全球温带沿海生态系统中的新兴模式物种。可从广泛的地理位置和生态位中获得超过1500株大肠杆菌。为了阐明其应对不同环境和生物应激源的能力的分子机制,需要进行基因组和转录组研究。这需要基因组DNA和总RNA的共分离。在棕藻中,与核酸共沉淀的高浓度次生代谢物阻碍了核酸的提取。在这里,我们提出了一种可靠,快速且具有成本效益的方法,用于利用少量大肠杆菌(RHO12; LIA4A;大肠杆菌)产生的少量生物质(25、50和100 mg)共分离高质量核酸。 EC524和REP10-11)与环境条件不同的地方隔离。该程序使用高pH提取缓冲液(pH 9.5),该缓冲液包含100 mM Tris-HCl和150 mM NaCl,并添加5 mM DTT和1%的鲨烷糖基,以确保核酸的最大溶解度,有效抑制核酸酶活性和去除干扰污染物(例如多糖,多酚)的含量。乙酸钠与异丙醇一起使用可缩短沉淀时间并提高DNA / RNA的产量。随后,使用苯酚:氯霉素:异戊醇步骤纯化核酸。本协议仅从25 mg的新鲜藻类生物质(分别为0.195和0.284 µg mg(-1)的RNA和DNA鲜重)中产生高产量的核酸,并且通过分光光度法和分光光度法确定了提取核酸的高质量。电泳分析。分离的RNA可以直接用于下游应用,例如RT-PCR,而基因组DNA适合PCR,产生可靠的限制酶消化模式。从不同菌株中共分离DNA / RNA表明,该方法可能在其他褐藻的种内和种间研究中具有更广泛的应用。

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