Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent 9052, Belgium.
VIB-UGent Center for Plant Systems Biology, Ghent 9052, Belgium.
Plant Physiol. 2021 Nov 3;187(3):1104-1116. doi: 10.1093/plphys/kiab145.
Lateral roots are important to forage for nutrients due to their ability to increase the uptake area of a root system. Hence, it comes as no surprise that lateral root formation is affected by nutrients or nutrient starvation, and as such contributes to the root system plasticity. Understanding the molecular mechanisms regulating root adaptation dynamics toward nutrient availability is useful to optimize plant nutrient use efficiency. There is at present a profound, though still evolving, knowledge on lateral root pathways. Here, we aimed to review the intersection with nutrient signaling pathways to give an update on the regulation of lateral root development by nutrients, with a particular focus on nitrogen. Remarkably, it is for most nutrients not clear how lateral root formation is controlled. Only for nitrogen, one of the most dominant nutrients in the control of lateral root formation, the crosstalk with multiple key signals determining lateral root development is clearly shown. In this update, we first present a general overview of the current knowledge of how nutrients affect lateral root formation, followed by a deeper discussion on how nitrogen signaling pathways act on different lateral root-mediating mechanisms for which multiple recent studies yield insights.
侧根对于寻找养分很重要,因为它们能够增加根系的吸收面积。因此,侧根的形成受到养分或养分饥饿的影响也就不足为奇了,这也有助于根系的可塑性。了解调控根系对养分供应适应性的分子机制有助于优化植物的养分利用效率。目前,人们对侧根途径有了深刻的理解,尽管这一理解仍在不断发展。在这里,我们旨在综述与养分信号通路的交点,以更新养分对侧根发育的调控,特别关注氮素。值得注意的是,对于大多数养分,侧根的形成是如何被调控的还不清楚。只有氮素作为控制侧根形成的最重要的养分之一,其与多个决定侧根发育的关键信号的交叉对话得到了明确的展示。在这篇综述中,我们首先介绍了养分如何影响侧根形成的最新知识概述,然后更深入地讨论了氮素信号通路如何作用于不同的侧根介导机制,最近的多项研究为此提供了新的见解。