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利用高通量平行测序技术测定问号钩端螺旋体转座子插入突变体在金黄仓鼠感染过程中的适应性

High-throughput Parallel Sequencing to Measure Fitness of Leptospira interrogans Transposon Insertion Mutants During Golden Syrian Hamster Infection.

作者信息

Lourdault Kristel, Matsunaga James, Evangelista Karen V, Haake David A

机构信息

Veterans Affairs Greater Los Angeles Healthcare System; Departments of Medicine, David Geffen School of Medicine at University of California Los Angeles;

Veterans Affairs Greater Los Angeles Healthcare System; Departments of Medicine, David Geffen School of Medicine at University of California Los Angeles.

出版信息

J Vis Exp. 2017 Dec 18(130):56442. doi: 10.3791/56442.

Abstract

In this manuscript, we describe a transposon sequencing (Tn-Seq) technique to identify and quantify Leptospira interrogans mutants altered in fitness during infection of Golden Syrian hamsters. Tn-Seq combines random transposon mutagenesis with the power of high-throughput sequencing technology. Animals are challenged with a pool of transposon mutants (input pool), followed by harvesting of blood and tissues a few days later to identify and quantify the number of mutants in each organ (output pools). The output pools are compared to the input pool to evaluate the in vivo fitness of each mutant. This approach enables screening of a large pool of mutants in a limited number of animals. With minor modifications, this protocol can be performed with any animal model of leptospirosis, reservoir host models such as rats and acute infection models such as hamsters, as well as in vitro studies. Tn-Seq provides a powerful tool to screen for mutants with in vivo and in vitro fitness defects.

摘要

在本论文中,我们描述了一种转座子测序(Tn-Seq)技术,用于鉴定和定量在金色叙利亚仓鼠感染期间适应性发生改变的问号钩端螺旋体突变体。Tn-Seq将随机转座子诱变与高通量测序技术的强大功能相结合。用一组转座子突变体(输入文库)感染动物,几天后采集血液和组织,以鉴定和定量每个器官中突变体的数量(输出文库)。将输出文库与输入文库进行比较,以评估每个突变体的体内适应性。这种方法能够在有限数量的动物中筛选大量的突变体。经过微小修改,该方案可用于任何钩端螺旋体病动物模型、大鼠等储存宿主模型以及仓鼠等急性感染模型,也可用于体外研究。Tn-Seq为筛选具有体内和体外适应性缺陷的突变体提供了一个强大的工具。

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