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A novel manual pooling system for preparing three-dimensional pools of a deep coverage soybean bacterial artificial chromosome library

机译:一种用于准备深覆盖大豆细菌人工染色体文库的三维库的新型人工池系统

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Compared with hybridization-based techniques, polymerase chain reaction-based screening of large insert libraries has been used widely as it is fast, easy and sensitive. However, various pooling strategies are needed to ensure efficient screening. It is time-consuming and labourious to prepare three-dimensional pools for a deep coverage bacterial artificial chromosome (BAC) library of soybean (1.12 x 10(9) bp) in the absence of robotic facility. In the present study, we describe a novel manual pooling system for preparing three-dimensional pools of a soybean BAC library. This simple technique enables a single researcher to construct three-dimensional pools for a deep-coverage (12 haploid genome equivalents) BAC library of soybean in less than 2 months without any robotic manipulation. When the prepared three-dimensional pools were screened with 29 polymerase chain reaction-based markers, an average of 9.2 clones per marker were identified. These identified clones will be useful either in quantitative trait loci gene isolation or in synteny study between soybean and other legumes including Lotus japonicus. This efficient pooling system could be applied to any other BAC libraries without the need for robotic manipulation.
机译:与基于杂交的技术相比,基于聚合酶链反应的大型插入文库筛选方法已被广泛使用,因为它快速,简便且灵敏。但是,需要各种合并策略来确保有效筛选。在没有机器人设备的情况下为大豆的深覆盖细菌人工染色体(BAC)库(1.12 x 10(9)bp)准备三维库的过程既费时又费力。在本研究中,我们描述了一种用于准备大豆BAC库的三维池的新型手动池系统。这项简单的技术使单个研究人员能够在不到2个月的时间内,无需任何机器人操作的情况下,为大豆的深覆盖(12个单倍体基因组当量)BAC库构建三维库。当使用29种基于聚合酶链反应的标记筛选制备的三维库时,每个标记平均可鉴定9.2个克隆。这些鉴定出的克隆将可用于定量性状基因座基因分离或大豆与其他豆科植物(包括莲花)之间的同调研究。这种有效的合并系统可以应用于任何其他BAC库,而无需进行机械手操作。

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