Biology of Spirochetes Unit, Institut Pasteur, 28 Rue Du Docteur Roux, 75724, Paris Cedex 15, France.
Curr Top Microbiol Immunol. 2018;415:141-162. doi: 10.1007/82_2017_45.
This chapter covers the progress made in the Leptospira field since the application of mutagenesis techniques and how they have allowed the study of virulence factors and, more generally, the biology of Leptospira. The last decade has seen advances in our ability to perform molecular genetic analysis of Leptospira. Major achievements include the generation of large collections of mutant strains and the construction of replicative plasmids, enabling complementation of mutations. However, there are still no practical tools for routine genetic manipulation of pathogenic Leptospira strains, slowing down advances in pathogenesis research. This review summarizes the status of the molecular genetic toolbox for Leptospira species and highlights new challenges in the nascent field of Leptospira genetics.
这一章涵盖了自诱变技术应用以来在钩端螺旋体领域取得的进展,以及这些进展如何使我们能够研究毒力因子,更广泛地研究钩端螺旋体的生物学。过去十年中,我们在对钩端螺旋体进行分子遗传学分析的能力方面取得了进展。主要成就包括产生了大量的突变株集和构建了复制质粒,从而能够对突变进行互补。然而,对于致病性钩端螺旋体菌株的常规遗传操作仍然没有实用工具,这减缓了发病机制研究的进展。本文综述了钩端螺旋体种的分子遗传工具包的现状,并强调了新兴的钩端螺旋体遗传学领域的新挑战。