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拟南芥生命周期的单细胞空间转录组图谱。

A single-cell, spatial transcriptomic atlas of the Arabidopsis life cycle.

作者信息

Lee Travis A, Illouz-Eliaz Natanella, Nobori Tatsuya, Xu Jiaying, Jow Bruce, Nery Joseph R, Ecker Joseph R

机构信息

Plant Biology Laboratory, Salk Institute for Biological Studies, La Jolla, CA, USA.

Genomic Analysis Laboratory, Salk Institute for Biological Studies, La Jolla, CA, USA.

出版信息

Nat Plants. 2025 Aug 19. doi: 10.1038/s41477-025-02072-z.

Abstract

Arabidopsis has been pivotal in uncovering fundamental principles of plant biology, yet a comprehensive, high-resolution understanding of its cellular identities throughout the entire life cycle remains incomplete. Here we present a single-nucleus and spatial transcriptomic atlas spanning ten developmental stages, encompassing over 400,000 nuclei from all organ systems and tissues-from seeds to developing siliques. Leveraging paired single-nucleus and spatial transcriptomic datasets, we annotate 75% of identified cell clusters, revealing striking molecular diversity in cell types and states across development. Our integrated approach identified conserved transcriptional signatures among recurrent cell types, organ-specific heterogeneity and previously uncharacterized cell-type-specific markers validated spatially. Moreover, we uncover dynamic transcriptional programs governing secondary metabolite production and differential growth patterns, exemplified by detailed spatial profiling of the compact yet complex apical hook structure; this profiling revealed transient cellular states linked to developmental progression and hormonal regulation, highlighting the hidden complexity underlying plant morphogenesis. Functional validation of genes uniquely expressed within specific cell contexts confirmed their essential developmental roles, underscoring the predictive power of our atlas. Collectively, this comprehensive resource provides an invaluable foundation for exploring cellular differentiation, environmental responses and genetic perturbations at high resolution, advancing our understanding of plant biology.

摘要

拟南芥在揭示植物生物学的基本原理方面发挥了关键作用,然而,对于其整个生命周期中细胞身份的全面、高分辨率理解仍不完整。在此,我们展示了一个跨越十个发育阶段的单核和空间转录组图谱,涵盖了所有器官系统和组织(从种子到发育中的角果)的40多万个细胞核。利用配对的单核和空间转录组数据集,我们注释了75%已识别的细胞簇,揭示了发育过程中细胞类型和状态的显著分子多样性。我们的综合方法确定了反复出现的细胞类型之间保守的转录特征、器官特异性异质性以及先前未表征的经空间验证的细胞类型特异性标记。此外,我们发现了控制次生代谢产物产生和差异生长模式的动态转录程序,紧凑而复杂的顶端弯钩结构的详细空间分析就是例证;这种分析揭示了与发育进程和激素调节相关的瞬时细胞状态,突出了植物形态发生背后隐藏的复杂性。在特定细胞环境中独特表达的基因的功能验证证实了它们在发育中的重要作用,强调了我们图谱的预测能力。总体而言,这一全面的资源为高分辨率探索细胞分化、环境反应和基因扰动提供了宝贵的基础,推动了我们对植物生物学的理解。

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