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单细胞 RNA 测序与空间转录组分析相结合,揭示了树木初生和次生生长中形成层分化的动态分子图谱。

Combining single-cell RNA sequencing with spatial transcriptome analysis reveals dynamic molecular maps of cambium differentiation in the primary and secondary growth of trees.

机构信息

National Key Laboratory of Plant Molecular Genetics and CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai 200032, China; University of the Chinese Academy of Sciences, Beijing 100049, China.

National Key Laboratory of Plant Molecular Genetics and CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Plant Commun. 2023 Sep 11;4(5):100665. doi: 10.1016/j.xplc.2023.100665. Epub 2023 Jul 24.

Abstract

Primary and secondary growth of the tree stem are responsible for corresponding increases in trunk height and diameter. However, our molecular understanding of the biological processes that underlie these two types of growth is incomplete. In this study, we used single-cell RNA sequencing and spatial transcriptome sequencing to reveal the transcriptional landscapes of primary and secondary growth tissues in the Populus stem. Comparison between the cell atlas and differentiation trajectory of primary and secondary growth revealed different regulatory networks involved in cell differentiation from cambium to xylem precursors and phloem precursors. These regulatory networks may be controlled by auxin accumulation and distribution. Analysis of cell differentiation trajectories suggested that vessel and fiber development followed a sequential pattern of progressive transcriptional regulation. This research provides new insights into the processes of cell identity and differentiation that occur throughout primary and secondary growth of tree stems, increasing our understanding of the cellular differentiation dynamics that occur during stem growth in trees.

摘要

树木茎干的初生生长和次生生长分别导致树干高度和直径的相应增加。然而,我们对这两种生长类型所依赖的生物学过程的分子理解还不完整。在这项研究中,我们使用单细胞 RNA 测序和空间转录组测序来揭示杨树茎干初生生长和次生生长组织的转录图谱。初生和次生生长的细胞图谱和分化轨迹的比较揭示了不同的调控网络,这些网络可能涉及从形成层到木质部前体细胞和韧皮部前体细胞的细胞分化。这些调控网络可能受到生长素的积累和分布的控制。细胞分化轨迹的分析表明,导管和纤维的发育遵循渐进式转录调控的顺序模式。这项研究为树木茎干初生生长和次生生长过程中的细胞身份和分化过程提供了新的见解,增加了我们对树木茎干生长过程中细胞分化动力学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1935/10504605/1811a36d10ba/gr1.jpg

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