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A Simple and Efficient RNA Extraction Method from Deep-Sea Hydrothermal Vent Chimney Structures

机译:一种从深海热液通风口烟囱结构中提取RNA的简单高效方法

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摘要

RNA-based microbiological analyses, e.g., transcriptome and reverse transcription-quantitative PCR, require a relatively large amount of high quality RNA. RNA-based analyses on microbial communities in deep-sea hydrothermal environments often encounter methodological difficulties with RNA extraction due to the presence of unique minerals in and the low biomass of samples. In the present study, we assessed RNA extraction methods for deep-sea vent chimneys that had complex mineral compositions. Mineral-RNA adsorption experiments were conducted using mock chimney minerals and Escherichia coli total RNA solution, and showed that detectable RNA significantly decreased possibly due to adsorption onto minerals. This decrease in RNA was prevented by the addition of sodium tripolyphosphate (STPP), deoxynucleotide triphosphates (dNTPs), salmon sperm DNA, and NaOH. The addition of STPP was also effective for RNA extraction from the mixture of E. coli cells and mock chimney minerals when TRIzol reagent and the RNeasy column were used, but not when the RNeasy PowerSoil total RNA kit was used. A combination of STPP, TRIzol reagent, the RNeasy column, and sonication resulted in the highest RNA yield from a natural chimney. This indirect extraction procedure is simple, rapid, inexpensive, and may be used for large-scale RNA extraction.
机译:基于RNA的微生物分析,例如转录组和逆转录定量PCR,需要相对大量的高质量RNA。在深海热液环境中对微生物群落进行基于RNA的分析时,由于样品中存在独特的矿物质且样品的生物量较低,因此在RNA提取中经常遇到方法上的困难。在本研究中,我们评估了具有复杂矿物成分的深海通风烟囱的RNA提取方法。使用模拟烟囱矿物和大肠杆菌总RNA溶液进行了矿物RNA吸附实验,结果表明可检测的RNA可能由于吸附到矿物上而显着减少。通过添加三聚磷酸钠(STPP),脱氧核苷酸三磷酸(dNTPs),鲑鱼精子DNA和NaOH可以防止RNA下降。当使用TRIzol试剂和RNeasy色谱柱时,添加STPP对从大肠杆菌细胞和模拟烟囱矿物质的混合物中提取RNA也是有效的,但是当使用RNeasy PowerSoil总RNA试剂盒时则无效。 STPP,TRIzol试剂,RNeasy色谱柱和超声处理的组合可从天然烟囱中获得最高的RNA产量。该间接提取过程简单,快速,廉价,可用于大规模RNA提取。

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