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分析拟南芥茎的次生生长揭示了茉莉酸信号在形成形成层中的积极作用。

Analysis of secondary growth in the Arabidopsis shoot reveals a positive role of jasmonate signalling in cambium formation.

机构信息

Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, Dr Bohr-Gasse 3, Vienna, Austria.

出版信息

Plant J. 2010 Sep;63(5):811-22. doi: 10.1111/j.1365-313X.2010.04283.x.

Abstract

After primary growth, most dicotyledonous plants undergo secondary growth. Secondary growth involves an increase in the diameter of shoots and roots through formation of secondary vascular tissue. A hallmark of secondary growth initiation in shoots of dicotyledonous plants is the initiation of meristematic activity between primary vascular bundles, i.e. in the interfascicular regions. This results in establishment of a cylindrical meristem, namely the vascular cambium. Surprisingly, despite its major implications for plant growth and the accumulation of biomass, the molecular regulation of secondary growth is only poorly understood. Here, we combine histological, molecular and genetic approaches to characterize interfascicular cambium initiation in the Arabidopsis thaliana inflorescence shoot. Using genome-wide transcriptional profiling, we show that stress-related and touch-inducible genes are up-regulated in stem regions where secondary growth takes place. Furthermore, we show that the products of COI1, MYC2, JAZ7 and the touch-inducible gene JAZ10, which are components of the JA signalling pathway, are cambium regulators. The positive effect of JA application on cambium activity confirmed a stimulatory role of JA in secondary growth, and suggests that JA signalling triggers cell divisions in this particular context.

摘要

初生生长之后,大多数双子叶植物经历次生生长。次生生长通过次生维管组织的形成来增加茎和根的直径。双子叶植物茎次生生长启动的一个标志是初生维管束之间的分生组织活动的启动,即在束间区域。这导致了圆柱形分生组织即维管形成层的建立。令人惊讶的是,尽管次生生长对植物生长和生物量积累有重大影响,但对次生生长的分子调控的了解还很差。在这里,我们结合组织学、分子和遗传方法来描述拟南芥花序茎次生生长中束间形成层的启动。使用全基因组转录谱分析,我们表明与应激相关和触摸诱导的基因在发生次生生长的茎区域上调。此外,我们表明 COI1、MYC2、JAZ7 和触诱导基因 JAZ10 的产物,它们是 JA 信号通路的组成部分,是形成层的调节剂。JA 处理对形成层活性的积极影响证实了 JA 在次生生长中的刺激作用,并表明 JA 信号在这种特定情况下触发细胞分裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d48/2988407/61cf2e8c7d3b/tpj0063-0811-f1.jpg

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