Pittman D L, Schimenti J C
Jackson Laboratory, Bar Harbor, Maine 04609, USA.
Curr Top Dev Biol. 1998;37:1-35. doi: 10.1016/s0070-2153(08)60170-2.
Elucidation of meiotic recombination mechanisms in mammals faces many obstacles. Much of our understanding has been built upon studies in the fungi, which have served to guide experimental design in mammalian cells and mice. A clearer picture is now emerging which reveals that many of the general principles of recombination are conserved across this evolutionary divide. A number of genes critical to meiotic recombination in yeast also exist in mammals. Transgenic technologies, in addition to advances in molecular biology, now provide several strategies to investigate the properties and regulation of mammalian recombination. This chapter reviews the current state of knowledge regarding recombination in the mammalian germ line, covering topics such as gene conversion, recombination mechanics, recombination-based genetic mutation, crossing over, and genes involved in meiotic recombination.
阐明哺乳动物减数分裂重组机制面临诸多障碍。我们的许多理解是基于对真菌的研究,这些研究为哺乳动物细胞和小鼠的实验设计提供了指导。现在一幅更清晰的图景正在浮现,揭示出重组的许多一般原则在这种进化差异中是保守的。酵母中对减数分裂重组至关重要的一些基因在哺乳动物中也存在。除了分子生物学的进展外,转基因技术现在提供了几种策略来研究哺乳动物重组的特性和调控。本章综述了关于哺乳动物生殖系重组的当前知识状态,涵盖了诸如基因转换、重组机制、基于重组的基因突变、交叉以及参与减数分裂重组的基因等主题。