Department of Biology, University of Washington, Seattle, WA, USA.
Engineering Biology, Earlham Institute, Norwich, UK.
Nat Commun. 2024 Oct 30;15(1):9362. doi: 10.1038/s41467-024-53716-1.
During development, most cells experience a progressive restriction of fate that ultimately results in a fully differentiated mature state. Understanding more about the gene expression patterns that underlie developmental programs can inform engineering efforts for new or optimized forms. Here, we present a four-state integrase-based recorder of gene expression history and demonstrate its use in tracking gene expression events in Arabidopsis thaliana in two developmental contexts: lateral root initiation and stomatal differentiation. The recorder uses two serine integrases to mediate sequential DNA recombination events, resulting in step-wise, history-dependent switching between expression of fluorescent reporters. By using promoters that express at different times along each of the two differentiation pathways to drive integrase expression, we tie fluorescent status to an ordered progression of gene expression along the developmental trajectory. In one snapshot of a mature tissue, our recorder is able to reveal past gene expression with single cell resolution. In this way, we are able to capture heterogeneity in stomatal development, confirming the existence of two alternate paths of differentiation.
在发育过程中,大多数细胞经历命运的逐渐限制,最终导致完全分化的成熟状态。了解更多潜在的基因表达模式可以为新的或优化的形式提供工程设计的依据。在这里,我们提出了一个基于整合酶的四状态记录器,用于记录基因表达历史,并展示了它在两个发育背景下追踪拟南芥中基因表达事件的用途:侧根起始和气孔分化。该记录器使用两个丝氨酸整合酶来介导顺序 DNA 重组事件,从而在荧光报告基因的表达之间逐步、历史依赖性地进行切换。通过使用在两个分化途径中的每一个中以不同时间表达的启动子来驱动整合酶表达,我们将荧光状态与沿着发育轨迹的基因表达的有序进展联系起来。在成熟组织的一个快照中,我们的记录器能够以单细胞分辨率揭示过去的基因表达。通过这种方式,我们能够捕捉到气孔发育的异质性,证实了两种分化的替代途径的存在。