Plant Biology Laboratory, The Salk Institute for Biological Studies, 10010 N Torrey Pines Rd, La Jolla, CA, 92037, USA.
Department of Plant and Microbial Biology, University of Minnesota, St Paul, MN, 55108, USA.
Plant J. 2022 Feb;109(4):764-778. doi: 10.1111/tpj.15589. Epub 2021 Dec 6.
As sessile organisms, plants are finely tuned to respond dynamically to developmental, circadian and environmental cues. Genome-wide studies investigating these types of cues have uncovered the intrinsically different ways they can impact gene expression over time. Recent advances in single-cell sequencing and time-based bioinformatic algorithms are now beginning to reveal the dynamics of these time-based responses within individual cells and plant tissues. Here, we review what these techniques have revealed about the spatiotemporal nature of gene regulation, paying particular attention to the three distinct ways in which plant tissues are time sensitive. (i) First, we discuss how studying plant cell identity can reveal developmental trajectories hidden in pseudotime. (ii) Next, we present evidence that indicates that plant cell types keep their own local time through tissue-specific regulation of the circadian clock. (iii) Finally, we review what determines the speed of environmental signaling responses, and how they can be contingent on developmental and circadian time. By these means, this review sheds light on how these different scales of time-based responses can act with tissue and cell-type specificity to elicit changes in whole plant systems.
作为固着生物,植物能够对发育、昼夜节律和环境线索做出动态响应,这是经过精细调整的。对这些类型的线索进行的全基因组研究揭示了它们在不同时间影响基因表达的固有方式。单细胞测序和基于时间的生物信息学算法的最新进展现在开始揭示单个细胞和植物组织内这些基于时间的响应的动态。在这里,我们回顾了这些技术揭示的基因调控的时空性质,特别关注植物组织对时间敏感的三种不同方式。(i)首先,我们讨论了研究植物细胞身份如何揭示隐藏在拟时间中的发育轨迹。(ii)其次,我们提出的证据表明,植物细胞类型通过生物钟的组织特异性调节来保持自己的局部时间。(iii)最后,我们回顾了决定环境信号响应速度的因素,以及它们如何依赖于发育和昼夜节律时间。通过这些手段,本综述阐明了这些不同时间尺度的响应如何与组织和细胞类型特异性一起作用,从而引起整个植物系统的变化。