Gujas Bojan, Rodriguez-Villalon Antia
Vascular Development Group, Department of Biology, Institute of Agricultural Science, Swiss Federal Institute of Technology in Zürich Zürich, Switzerland.
Front Plant Sci. 2016 Feb 12;7:103. doi: 10.3389/fpls.2016.00103. eCollection 2016.
In higher plants, the plant vascular system has evolved as an inter-organ communication network essential to deliver a wide range of signaling factors among distantly separated organs. To become conductive elements, phloem and xylem cells undergo a drastic differentiation program that involves the degradation of the majority of their organelles. While the molecular mechanisms regulating such complex process remain poorly understood, it is nowadays clear that phosphoglycerolipids display a pivotal role in the regulation of vascular tissue formation. In animal cells, this class of lipids is known to mediate acute responses as signal transducers and also act as constitutive signals that help defining organelle identity. Their rapid turnover, asymmetrical distribution across subcellular compartments as well as their ability to rearrange cytoskeleton fibers make phosphoglycerolipids excellent candidates to regulate complex morphogenetic processes such as vascular differentiation. Therefore, in this review we aim to summarize, emphasize and connect our current understanding about the involvement of phosphoglycerolipids in phloem and xylem differentiation.
在高等植物中,植物维管系统已经进化成为一种器官间的通讯网络,对于在远距离分隔的器官之间传递多种信号因子至关重要。为了成为传导元件,韧皮部和木质部细胞经历了剧烈的分化程序,其中涉及大多数细胞器的降解。虽然调节这种复杂过程的分子机制仍知之甚少,但如今很明显,磷酸甘油脂在维管组织形成的调节中起着关键作用。在动物细胞中,这类脂质作为信号转导分子介导急性反应,并且还作为有助于定义细胞器身份的组成信号发挥作用。它们的快速周转、跨亚细胞区室的不对称分布以及它们重排细胞骨架纤维的能力,使磷酸甘油脂成为调节诸如维管分化等复杂形态发生过程的极佳候选者。因此,在本综述中,我们旨在总结、强调并联系我们目前对磷酸甘油脂参与韧皮部和木质部分化的理解。