Improved method for isolation of high-quality total RNA from Agave tequilana Weber roots

被引:0
作者
Luis F. Maceda-López
José L. Villalpando-Aguilar
Eleazar García-Hernández
Emmanuel Ávila de Dios
Silvia B. Andrade-Canto
Dalia C. Morán-Velázquez
Lorena Rodríguez-López
Demetrio Hernández-Díaz
Manuel A. Chablé-Vega
Laura Trejo
Elsa Góngora-Castillo
Itzel López-Rosas
June Simpson
Fulgencio Alatorre-Cobos
机构
[1] Colegio de Postgraduados Campus Campeche,Departmento de Ingeniería Genetica
[2] Tecnológico Nacional de México,CONACYT Research Fellow, Laboratorio de Biodiversidad y Cultivo de Tejidos Vegetales
[3] Instituto Tecnológico de Chiná,CONACYT Research Fellow
[4] Centro de Investigación y Estudios Avanzados,CONACYT Research Fellow
[5] Centro de Investigacion Cientifica de Yucatan,Departmento de Ingeniería Genetica
[6] A.C.,undefined
[7] Instituto de Biología,undefined
[8] UNAM,undefined
[9] Centro de Investigacion Cientifica de Yucatan,undefined
[10] A.C.,undefined
[11] Colegio de Postgraduados Campus Campeche,undefined
[12] Centro de Investigación y Estudios Avanzados,undefined
来源
3 Biotech | 2021年 / 11卷
关键词
Agave; Full-length cDNA; Lignin; RNA extraction; Roots;
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摘要
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 Agave tequilana and A. salmiana, 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 A. tequilana roots but can be used for other Agave species that also develop lignified epidermis/exodermis in roots.
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