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拟南芥和玉米侧根的诱导系统。

Inducible system for lateral roots in Arabidopsis thaliana and maize.

作者信息

Jansen Leen, Parizot Boris, Beeckman Tom

机构信息

Department of Plant Systems Biology, VIB, Ghent, Belgium.

出版信息

Methods Mol Biol. 2013;959:149-58. doi: 10.1007/978-1-62703-221-6_9.

Abstract

The study of biological processes contributing to plant growth can be complicated by the small number of cells involved and by the brief and sudden appearance of some crucial developmental steps. Given such troublesome circumstances, methods to monitor the timing or to increase the number of concerned cells can be of great advantage to researchers. Lateral root initiation is a process taking place endogenously in a discrete number of cells of the parent root. It represents the onset of the formation of a new meristem and provides the below ground part of the plant the ability to react on environmental conditions such as nutrient and water availability. Insights into the underlying mechanisms of this developmental event can be of major importance to provide means of improving tolerance to nutrient and water deficient conditions. The exact timing and site of lateral root initiation are, however, impossible to predict, hampering exhaustive studies of the sequence of events directing this process. Here, we present a method to synchronize the induction of lateral roots in Arabidopsis thaliana and maize. By initially preventing the formation of laterals in young seedlings and subsequently inducing lateral root initiation, this method not only allows controlling the process in time but also enlarges significantly the population of cells involved, opening up the way to systems biology approaches.

摘要

对促进植物生长的生物学过程的研究可能会因涉及的细胞数量少以及一些关键发育步骤的短暂和突然出现而变得复杂。在这种麻烦的情况下,监测时间或增加相关细胞数量的方法对研究人员可能非常有利。侧根起始是在母根中离散数量的细胞内发生的一个过程。它代表新分生组织形成的开始,并为植物的地下部分提供了对诸如养分和水分可用性等环境条件作出反应的能力。深入了解这一发育事件的潜在机制对于提供提高对养分和水分缺乏条件耐受性的方法可能至关重要。然而,侧根起始的确切时间和位置是无法预测的,这阻碍了对指导这一过程的事件序列进行详尽的研究。在这里,我们提出了一种使拟南芥和玉米侧根诱导同步的方法。通过最初阻止幼苗中侧根的形成,随后诱导侧根起始,这种方法不仅允许及时控制这一过程,而且还显著扩大了所涉及的细胞群体,为系统生物学方法开辟了道路。

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