Maceda-López Luis F, Villalpando-Aguilar José L, García-Hernández Eleazar, Ávila de Dios Emmanuel, Andrade-Canto Silvia B, Morán-Velázquez Dalia C, Rodríguez-López Lorena, Hernández-Díaz Demetrio, Chablé-Vega Manuel A, Trejo Laura, Góngora-Castillo Elsa, López-Rosas Itzel, Simpson June, Alatorre-Cobos Fulgencio
Colegio de Postgraduados Campus Campeche, Carretera Haltunchen-Edzna km 17.5, Sihochac, 24450 Campeche, Mexico.
Tecnológico Nacional de México, Instituto Tecnológico de Chiná, Calle 11entre 22 y 28, 24050 Chiná, Mexico.
3 Biotech. 2021 Feb;11(2):75. doi: 10.1007/s13205-020-02620-8. Epub 2021 Jan 15.
Together with their undeniable role in the ecology of arid and semiarid ecosystems, Agave species are emerging as a model to dissect the relationships between crassulacean acid metabolism and high efficiency of light and water use, and as an energy crop for bioethanol production. Transcriptome resources from economically valuable Agaves species, such as and , as well as hybrids for fibers, are now available, and multiple gene expression landscape analyses have been reported. Key components in molecular mechanisms underlying drought tolerance could be uncovered by analyzing gene expression patterns of roots. This study describes an efficient protocol for high-quality total RNA isolation from phenolic compounds-rich Agave roots. Our methodology involves suitable root handling and collecting in the field and using saving-time commercial kits available. RNA isolated from roots free of lignified out-layers and clean cortex showed high values of quality and integrity according to electrophoresis and microfluidics-based platform. Synthesis of long full-length cDNAs and PCR amplification tested the suitability for downstream applications of extracted RNA. The protocol was applied successfully to roots but can be used for other Agave species that also develop lignified epidermis/exodermis in roots.
龙舌兰属植物在干旱和半干旱生态系统的生态中发挥着不可否认的作用,同时正逐渐成为剖析景天酸代谢与高光能和水分利用效率之间关系的模型,以及作为用于生物乙醇生产的能源作物。现在已有来自经济价值较高的龙舌兰属物种(如 和 )以及纤维用杂交种的转录组资源,并且已有多项基因表达图谱分析的报道。通过分析根的基因表达模式,有望揭示耐旱性分子机制中的关键成分。本研究描述了一种从富含酚类化合物的龙舌兰根中高效分离高质量总RNA的方法。我们的方法包括在田间对根进行适当处理和采集,并使用省时的商用试剂盒。根据电泳和基于微流控的平台检测,从无木质化外层且皮层干净的根中分离出的RNA显示出高质量和完整性。长全长cDNA的合成和PCR扩增测试了提取的RNA用于下游应用的适用性。该方法已成功应用于 根,但也可用于其他在根中也会形成木质化表皮/外皮层的龙舌兰属物种。