Rodriguez-Villalon Antia
Department of Biology, Swiss Federal Institute of Technology (ETH-Z), CH-8092, Zurich, Switzerland.
New Phytol. 2016 Apr;210(1):45-50. doi: 10.1111/nph.13527. Epub 2015 Jul 14.
In plants, phloem conduits form a specialized vascular network mediating the exchange of nutrients and signaling molecules between distantly separated organs. To become effective transport elements, protophloem cells undergo a rather unique, differentiation program that involves nucleus degradation, organelle rearrangement and cell wall thickening. Yet, protophloem sieve elements remain alive because their essential metabolic functions are supported by their neighboring companion cells. In spite of the importance of the phloem, the molecular mechanisms orchestrating protophloem specification and differentiation remain still poorly understood. In this review, I provide a summary of recent discoveries regarding morphogenetic events that determine phloem formation, and also a discussion of the systemic effects on root architecture derived from impaired protophloem differentiation programs.
在植物中,韧皮部导管形成一个专门的维管网络,介导远距离器官之间营养物质和信号分子的交换。为了成为有效的运输元件,原生韧皮部细胞经历了一个相当独特的分化程序,其中包括细胞核降解、细胞器重排和细胞壁增厚。然而,原生韧皮部筛管分子仍然存活,因为它们的基本代谢功能由相邻的伴胞提供支持。尽管韧皮部很重要,但协调原生韧皮部分化和特化的分子机制仍知之甚少。在这篇综述中,我总结了关于决定韧皮部形成的形态发生事件的最新发现,并讨论了原生韧皮部分化程序受损对根系结构产生的系统性影响。