Department of Neurobiology, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Curr Opin Neurobiol. 2010 Feb;20(1):14-21. doi: 10.1016/j.conb.2009.10.017. Epub 2009 Nov 26.
Neurons derived from the same progenitor may acquire different fates according to their birth timing/order. To reveal temporally guided cell fates, we must determine neuron types as well as their lineage relationships and times of birth. Recent advances in genetic lineage analysis and fate mapping are facilitating such studies. For example, high-resolution lineage analysis can identify each sequentially derived neuron of a lineage and has revealed abrupt temporal identity changes in diverse Drosophila neuronal lineages. In addition, fate mapping of mouse neurons made from the same pool of precursors shows production of specific neuron types in specific temporal patterns. The tools used in these analyses are helping to further our understanding of the genetics of neuronal temporal identity.
从同一祖细胞衍生而来的神经元可能会根据其出生的时间/顺序获得不同的命运。为了揭示时间引导的细胞命运,我们必须确定神经元类型及其谱系关系和出生时间。遗传谱系分析和命运映射的最新进展正在促进此类研究。例如,高分辨率谱系分析可以识别谱系中每个连续衍生的神经元,并揭示了不同果蝇神经元谱系中突然的时间身份变化。此外,来自同一前体细胞池的小鼠神经元的命运映射显示出特定时间模式下特定神经元类型的产生。这些分析中使用的工具有助于进一步了解神经元时间身份的遗传学。