Abraham Obrador-Sánchez José, Miguel Tzec-Sima, Inocencio Higuera-Ciapara, Blondy Canto-Canché
Unidad de Biotecnología, Centro de Investigación Científica de Yucatán, A.C., Calle 43 No. 130 x 32 y 34, Col. Chuburná de Hidalgo, 97205, Mérida, Yucatán, Mexico.
Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco, A.C., Av. Normalistas 800, Colinas de La Normal, 44270, Guadalajara, Jalisco, Mexico.
3 Biotech. 2017 Jul;7(3):180. doi: 10.1007/s13205-017-0851-1. Epub 2017 Jun 29.
Sequencing of DNA fragments (e.g., ITS, 16S, 18S, particular genes, and molecular markers) is increasingly required in studies on microbial diversity, microbial genetic population and phylogeny, sequencing of alleles, and searching for SNPs, among others. The cost of obtaining these DNAs, in quantity and quality for sequencing, is high as it involves special kits to recover DNA from gel after PCR, or the cloning and purification of plasmids with commercial kits. Genetic population and other studies require the analyses of many samples, and therefore, the high cost represents an obstacle for carrying out such projects in countries where there is great biodiversity, such as the tropical and subtropical developing countries, where funds are limited. Modifying an already known method for DNA recovery from gel, the first in-house protocol of DNA recovery suitable for direct use in sequencing is presented herein. This protocol is broadly applicable on DNAs from all different living beings, e.g., bacteria, fungi, and plants. Its simplicity, speed, and low cost make this procedure amenable for high-throughput DNA sequencings as required in microbial population studies, development of molecular markers, molecular identification of strains in microbial collections, and others. Recovery of DNA fragments from agarose gel is one of the most common tasks in molecular biology laboratories. Therefore, its potential of applicability of the protocol presented here is enormous.
在微生物多样性、微生物遗传群体与系统发育、等位基因测序以及单核苷酸多态性(SNP)搜索等研究中,对DNA片段(如ITS、16S、18S、特定基因和分子标记)进行测序的需求日益增加。获取用于测序的具有一定数量和质量的这些DNA的成本很高,因为这涉及到使用特殊试剂盒在PCR后从凝胶中回收DNA,或者使用商业试剂盒进行质粒的克隆和纯化。遗传群体及其他研究需要分析大量样本,因此,高昂的成本对于在生物多样性丰富的国家(如热带和亚热带发展中国家,这些国家资金有限)开展此类项目而言是一个障碍。本文提出了一种修改后的从凝胶中回收DNA的已知方法,这是首个适用于直接用于测序的DNA回收内部方案。该方案广泛适用于来自所有不同生物(如细菌、真菌和植物)的DNA。其简单性、快速性和低成本使得该程序适用于微生物群体研究、分子标记开发、微生物保藏菌株的分子鉴定等所需的高通量DNA测序。从琼脂糖凝胶中回收DNA片段是分子生物学实验室最常见的任务之一。因此,本文所提出方案的潜在适用性非常巨大。