Chair of Tree Physiology, Institute of Forest Sciences, University of Freiburg, Freiburg, Germany.
Plant Biol (Stuttg). 2013 Sep;15(5):785-8. doi: 10.1111/plb.12078. Epub 2013 Jul 31.
Phosphorus (P) acquisition, cycling and use efficiency has been investigated intensively with herbaceous plants. It is known that local as well as systemic signalling contributes to the control of P acquisition. Woody plants are long-lived organisms that adapt their life cycle to the changing environment during their annual growth cycle. Little is known about P acquisition and P cycling in perennial plants, especially regarding storage and mobilisation, its control by systemic and environmental factors, and its interaction with the largely closed ecosystem-level P cycle. The present report presents a view on open questions on plant internal P cycling in woody plants.
人们对草本植物的磷(P)获取、循环和利用效率进行了深入研究。已知局部和系统信号都有助于控制磷的获取。木本植物是长寿生物,它们会根据年度生长周期中环境的变化来调整生命周期。目前对于多年生植物(特别是关于其存储和动员、受系统和环境因素的控制,以及与基本封闭的生态系统级磷循环的相互作用)的磷获取和磷循环知之甚少。本报告提出了关于木本植物内部磷循环的一些开放性问题的观点。