García-Gómez Mónica L, Garay-Arroyo Adriana, García-Ponce Berenice, Sánchez María de la Paz, Álvarez-Buylla Elena R
Laboratorio de Genética Molecular, Desarrollo y Evolución de Plantas, Departamento de Ecología Funcional, Instituto de Ecología, Universidad Nacional Autónoma de México, Ciudad de México, Mexico.
Centro de Ciencias de la Complejidad, Universidad Nacional Autónoma de México, Ciudad de México, Mexico.
Front Plant Sci. 2021 Mar 3;12:628491. doi: 10.3389/fpls.2021.628491. eCollection 2021.
The root stem cell niche (SCN) of consists of the quiescent center (QC) cells and the surrounding initial stem cells that produce progeny to replenish all the tissues of the root. The QC cells divide rather slowly relative to the initials, yet most root tissues can be formed from these cells, depending on the requirements of the plant. Hormones are fundamental cues that link such needs with the cell proliferation and differentiation dynamics at the root SCN. Nonetheless, the crosstalk between hormone signaling and the mechanisms that regulate developmental adjustments is still not fully understood. Developmental transcriptional regulatory networks modulate hormone biosynthesis, metabolism, and signaling, and conversely, hormonal responses can affect the expression of transcription factors involved in the spatiotemporal patterning at the root SCN. Hence, a complex genetic-hormonal regulatory network underlies root patterning, growth, and plasticity in response to changing environmental conditions. In this review, we summarize the scientific literature regarding the role of hormones in the regulation of QC cell proliferation and discuss how hormonal signaling pathways may be integrated with the gene regulatory network that underlies cell fate in the root SCN. The conceptual framework we present aims to contribute to the understanding of the mechanisms by which hormonal pathways act as integrators of environmental cues to impact on SCN activity.
根干细胞微环境(SCN)由静止中心(QC)细胞和周围的原始干细胞组成,这些原始干细胞产生后代以补充根的所有组织。与原始细胞相比,QC细胞分裂相对缓慢,但根据植物的需求,大多数根组织都可以由这些细胞形成。激素是将此类需求与根SCN处的细胞增殖和分化动态联系起来的基本线索。尽管如此,激素信号传导与调节发育调整的机制之间的相互作用仍未完全了解。发育转录调控网络调节激素的生物合成、代谢和信号传导,相反,激素反应可以影响参与根SCN时空模式形成的转录因子的表达。因此,一个复杂的遗传 - 激素调控网络是根模式形成、生长以及对不断变化的环境条件作出可塑性反应的基础。在本综述中,我们总结了关于激素在调节QC细胞增殖中的作用的科学文献,并讨论了激素信号通路如何与根SCN中细胞命运所依赖的基因调控网络整合。我们提出的概念框架旨在促进对激素途径作为环境线索整合者影响SCN活性的机制的理解。