Hadjantonakis Anna-Katerina, Dickinson Mary E, Fraser Scott E, Papaioannou Virginia E
Department of Genetics and Development, College of Physicians and Surgeons of Columbia University, New York 10032, USA.
Nat Rev Genet. 2003 Aug;4(8):613-25. doi: 10.1038/nrg1126.
Over the past decade, a battery of powerful tools that encompass forward and reverse genetic approaches have been developed to dissect the molecular and cellular processes that regulate development and disease. The advent of genetically-encoded fluorescent proteins that are expressed in wild type and mutant mice, together with advances in imaging technology, make it possible to study these biological processes in many dimensions. Importantly, these technologies allow direct visual access to complex events as they happen in their native environment, which provides greater insights into mammalian biology than ever before.
在过去十年中,已经开发出一系列强大的工具,涵盖正向和反向遗传学方法,以剖析调节发育和疾病的分子和细胞过程。在野生型和突变小鼠中表达的基因编码荧光蛋白的出现,以及成像技术的进步,使得从多个维度研究这些生物学过程成为可能。重要的是,这些技术允许直接可视化在其天然环境中发生的复杂事件,这比以往任何时候都能更深入地了解哺乳动物生物学。