Geography, Faculty of Environment, Science and Economy, Amory Building, Rennes Drive, Exeter, Devon, EX4 4RJ, UK.
Shell International Exploration and Production Inc., Shell Technology Centre Houston, Houston, TX, 77082, USA.
Microb Genom. 2024 Sep;10(9). doi: 10.1099/mgen.0.001298.
Metatranscriptomic analysis of the soil microbiome has the potential to reveal molecular mechanisms that drive soil processes regulated by the microbial community. Therefore, RNA samples must be of sufficient yield and quality to robustly quantify differential gene expression. While short-read sequencing technology is often favoured for metatranscriptomics, long-read sequencing has the potential to provide several benefits over short-read technologies. The ability to resolve complete transcripts on a portable sequencing platform for a relatively low capital expenditure makes Oxford Nanopore Technology an attractive prospect for addressing many of the challenges of soil metatranscriptomics. To fully enable long-read metatranscriptomic analysis of the functional molecular pathways expressed in these diverse habitats, RNA purification methods from soil must be optimised for long-read sequencing. Here we compare RNA samples purified using five commercially available extraction kits designed for use with soil. We found that the Qiagen RNeasy PowerSoil Total RNA Kit performed the best across RNA yield, quality and purity and was robust across different soil types. We found that sufficient sequencing depth can be achieved to characterise the active community for total RNA samples using Oxford Nanopore Technology, and discuss its current limitations for differential gene expression analysis in soil studies.
土壤宏转录组分析有潜力揭示驱动受微生物群落调控的土壤过程的分子机制。因此,RNA 样品必须具有足够的产量和质量,以稳健地定量差异基因表达。虽然短读测序技术常用于宏转录组学,但长读测序有可能提供优于短读技术的几个优势。在便携式测序平台上解析完整转录本的能力,以及相对较低的资本支出,使得 Oxford Nanopore Technology 成为解决土壤宏转录组学诸多挑战的一个有吸引力的选择。为了充分实现对这些不同生境中表达的功能分子途径的长读宏转录组分析,必须针对长读测序对土壤 RNA 纯化方法进行优化。在这里,我们比较了五种市售的用于土壤的提取试剂盒纯化的 RNA 样本。我们发现,Qiagen RNeasy PowerSoil Total RNA 试剂盒在 RNA 产量、质量和纯度方面表现最佳,并且在不同土壤类型中表现稳健。我们发现,使用 Oxford Nanopore Technology 可以为总 RNA 样本获得足够的测序深度来描述活性群落,并讨论其在土壤研究中进行差异基因表达分析的当前限制。