Centre for Organismal Studies (COS), Heidelberg University, Im Neuenheimer Feld 230, 69120 Heidelberg, Germany.
Centre for Organismal Studies (COS), Heidelberg University, Im Neuenheimer Feld 230, 69120 Heidelberg, Germany.
Curr Biol. 2019 Mar 4;29(5):R173-R181. doi: 10.1016/j.cub.2019.01.015.
Developmental plasticity, defined as the capacity to respond to changing environmental conditions, is an inherent feature of plant growth. Recent studies have brought the phloem tissue, the quintessential conduit for energy metabolites and inter-organ communication, into focus as an instructive developmental system. Those studies have clarified long-standing questions about essential aspects of phloem development and function, such as the pressure flow hypothesis, mechanisms of phloem unloading, and source-sink relationships. Interestingly, plants with impaired phloem development show characteristic changes in body architecture, thereby highlighting the capacity of the phloem to integrate environmental cues and to fine-tune plant development. Therefore, understanding the plasticity of phloem development provides scenarios of how environmental stimuli are translated into differential plant growth. In this Review, we summarize novel insights into how phloem identity is established and how phloem cells fulfil their core function as transport units. Moreover, we discuss possible interfaces between phloem physiology and development as sites for mediating the plastic growth mode of plants.
发育可塑性是指植物应对环境变化的能力,是植物生长的固有特征。最近的研究将韧皮部组织作为能量代谢物和器官间通讯的典型途径,聚焦为一个有指导意义的发育系统。这些研究澄清了关于韧皮部发育和功能的一些基本问题,如压力流假说、韧皮部卸荷的机制以及源库关系。有趣的是,发育不良的韧皮部植物表现出明显的体型结构变化,从而突出了韧皮部整合环境线索和微调植物发育的能力。因此,了解韧皮部发育的可塑性提供了环境刺激如何转化为植物生长差异的情景。在这篇综述中,我们总结了关于韧皮部特性是如何建立的以及韧皮部细胞如何履行其作为运输单元的核心功能的新见解。此外,我们还讨论了韧皮部生理学和发育之间的可能界面,作为介导植物可塑性生长模式的位点。