Dastidar Mouli Ghosh, Jouannet Virginie, Maizel Alexis
Department of Stem Cell Biology, Center for Organismal Studies, Heidelberg University, Heidelberg, Germany.
Wiley Interdiscip Rev Dev Biol. 2012 May-Jun;1(3):329-43. doi: 10.1002/wdev.17. Epub 2011 Dec 8.
Plants are sessile organisms that must efficiently exploit their habitat for water and nutrients. The degree of root branching impacts the efficiency of water uptake, acquisition of nutrients, and anchorage. The root system of plants is a dynamic structure whose architecture is determined by modulation of primary root growth and root branching. This plasticity relies on the continuous integration of environmental inputs and endogenous developmental programs controlling root branching. This review focuses on the cellular and molecular mechanisms involved in the regulation of lateral root distribution, initiation, and organogenesis with the main focus on the root system of Arabidopsis thaliana. We also examine the mechanisms linking environmental changes to the developmental pathways controlling root branching. Recent progress that emphasizes the parallels to the formation of root branches in other species is discussed.
植物是固着生物,必须有效地从其栖息地获取水分和养分。根系分支程度会影响水分吸收效率、养分获取及固定能力。植物的根系是一个动态结构,其结构由主根生长和根系分支的调控决定。这种可塑性依赖于环境输入与控制根系分支的内源发育程序的持续整合。本综述聚焦于拟南芥根系中参与侧根分布、起始和器官发生调控的细胞与分子机制。我们还研究了将环境变化与控制根系分支的发育途径相联系的机制。文中讨论了强调与其他物种根分支形成相似之处的最新进展。