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植物干细胞研究正在揭示长寿和持续生长的秘密。

Plant stem cell research is uncovering the secrets of longevity and persistent growth.

机构信息

Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, 630-0192, Japan.

Department of Biology, Faculty of Science, Niigata University, Niigata, 950-2181, Japan.

出版信息

Plant J. 2021 Apr;106(2):326-335. doi: 10.1111/tpj.15184. Epub 2021 Mar 25.

Abstract

Plant stem cells have several extraordinary features: they are generated de novo during development and regeneration, maintain their pluripotency, and produce another stem cell niche in an orderly manner. This enables plants to survive for an extended period and to continuously make new organs, representing a clear difference in their developmental program from animals. To uncover regulatory principles governing plant stem cell characteristics, our research project 'Principles of pluripotent stem cells underlying plant vitality' was launched in 2017, supported by a Grant-in-Aid for Scientific Research on Innovative Areas from the Japanese government. Through a collaboration involving 28 research groups, we aim to identify key factors that trigger epigenetic reprogramming and global changes in gene networks, and thereby contribute to stem cell generation. Pluripotent stem cells in the shoot apical meristem are controlled by cytokinin and auxin, which also play a crucial role in terminating stem cell activity in the floral meristem; therefore, we are focusing on biosynthesis, metabolism, transport, perception, and signaling of these hormones. Besides, we are uncovering the mechanisms of asymmetric cell division and of stem cell death and replenishment under DNA stress, which will illuminate plant-specific features in preserving stemness. Our technology support groups expand single-cell omics to describe stem cell behavior in a spatiotemporal context, and provide correlative light and electron microscopic technology to enable live imaging of cell and subcellular dynamics at high spatiotemporal resolution. In this perspective, we discuss future directions of our ongoing projects and related research fields.

摘要

植物干细胞具有几个非凡的特征

它们在发育和再生过程中从头产生,保持其多能性,并有序地产生另一个干细胞生态位。这使植物能够长时间存活,并不断产生新的器官,这与动物的发育程序有明显的区别。为了揭示调控植物干细胞特性的调控原则,我们的研究项目“植物活力多能干细胞的原则”于 2017 年启动,得到了日本政府创新领域科学研究资助计划的支持。通过涉及 28 个研究小组的合作,我们旨在确定触发表观遗传重编程和基因网络全局变化的关键因素,从而促进干细胞的产生。茎尖分生组织中的多能干细胞受细胞分裂素和生长素的控制,生长素在终止花分生组织中干细胞活性方面也起着至关重要的作用;因此,我们专注于这些激素的生物合成、代谢、运输、感知和信号转导。此外,我们正在揭示不对称细胞分裂和 DNA 应激下干细胞死亡和补充的机制,这将阐明植物在保持干细胞特性方面的特有特征。我们的技术支持小组将单细胞组学扩展到描述时空背景下的干细胞行为,并提供相关的光和电子显微镜技术,以实现细胞和亚细胞动力学的高时空分辨率实时成像。在此视角下,我们讨论了我们正在进行的项目和相关研究领域的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d3c/8252613/8c37a2ae39e3/TPJ-106-326-g001.jpg

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