Department of Plant Biology, College of Biological Sciences, University of California, Davis, CA 95616, USA.
J Integr Plant Biol. 2013 Apr;55(4):294-388. doi: 10.1111/jipb.12041.
The emergence of the tracheophyte-based vascular system of land plants had major impacts on the evolution of terrestrial biology, in general, through its role in facilitating the development of plants with increased stature, photosynthetic output, and ability to colonize a greatly expanded range of environmental habitats. Recently, considerable progress has been made in terms of our understanding of the developmental and physiological programs involved in the formation and function of the plant vascular system. In this review, we first examine the evolutionary events that gave rise to the tracheophytes, followed by analysis of the genetic and hormonal networks that cooperate to orchestrate vascular development in the gymnosperms and angiosperms. The two essential functions performed by the vascular system, namely the delivery of resources (water, essential mineral nutrients, sugars and amino acids) to the various plant organs and provision of mechanical support are next discussed. Here, we focus on critical questions relating to structural and physiological properties controlling the delivery of material through the xylem and phloem. Recent discoveries into the role of the vascular system as an effective long-distance communication system are next assessed in terms of the coordination of developmental, physiological and defense-related processes, at the whole-plant level. A concerted effort has been made to integrate all these new findings into a comprehensive picture of the state-of-the-art in the area of plant vascular biology. Finally, areas important for future research are highlighted in terms of their likely contribution both to basic knowledge and applications to primary industry.
维管植物的出现对陆地生物学的进化产生了重大影响,这主要是通过其促进具有更高体型、更高光合作用产量和更大范围环境栖息地殖民能力的植物的发展来实现的。最近,我们在理解植物维管系统形成和功能所涉及的发育和生理程序方面取得了相当大的进展。在这篇综述中,我们首先考察了导致维管植物出现的进化事件,然后分析了协同调控裸子植物和被子植物维管发育的遗传和激素网络。接下来,我们讨论了维管系统执行的两个基本功能,即向各种植物器官输送资源(水、必需矿质养分、糖和氨基酸)和提供机械支持。在这里,我们重点关注控制木质部和韧皮部物质输送的结构和生理特性的关键问题。接下来,我们根据维管系统作为一种有效的长距离通讯系统的作用,评估其在协调发育、生理和防御相关过程方面的作用,从整个植物的水平来看。我们努力将所有这些新发现整合到植物血管生物学领域的最新状态的综合图景中。最后,我们根据它们对基础知识和对主要工业应用的可能贡献,突出了未来研究的重要领域。