Mattsson Jim, Ckurshumova Wenzislava, Berleth Thomas
Department of Botany, University of Toronto, 25 Willcocks Street, Toronto, Canada M5S 3B2.
Plant Physiol. 2003 Mar;131(3):1327-39. doi: 10.1104/pp.013623.
A number of observations have implicated auxin in the formation of vascular tissues in plant organs. These include vascular strand formation in response to local auxin application, the effects of impaired auxin transport on vascular patterns and suggestive phenotypes of Arabidopsis auxin response mutants. In this study, we have used molecular markers to visualize auxin response patterns in developing Arabidopsis leaves as well as Arabidopsis mutants and transgenic plants to trace pathways of auxin signal transduction controlling the expression of early procambial genes. We show that in young Arabidopsis leaf primordia, molecular auxin response patterns presage sites of procambial differentiation. This is the case not only in normal development but also upon experimental manipulation of auxin transport suggesting that local auxin signals are instrumental in patterning Arabidopsis leaf vasculature. We further found that the activity of the Arabidopsis gene MONOPTEROS, which is required for proper vascular differentiation, is also essential in a spectrum of auxin responses, which include the regulation of rapidly auxin-inducible AUX/IAA genes, and discovered the tissue-specific vascular expression profile of the class I homeodomain-leucine zipper gene, AtHB20. Interestingly, MONOPTEROS activity is a limiting factor in the expression of AtHB8 and AtHB20, two genes encoding transcriptional regulators expressed early in procambial development. Our observations connect general auxin signaling with early controls of vascular differentiation and suggest molecular mechanisms for auxin signaling in patterned cell differentiation.
一些观察结果表明生长素与植物器官中维管组织的形成有关。这些观察结果包括对局部施加生长素的维管束形成反应、生长素运输受损对维管模式的影响以及拟南芥生长素反应突变体的提示性表型。在本研究中,我们使用分子标记来可视化拟南芥发育叶片中的生长素反应模式,以及使用拟南芥突变体和转基因植物来追踪控制早期原形成层基因表达的生长素信号转导途径。我们表明,在拟南芥幼叶原基中,分子生长素反应模式预示着原形成层分化的位点。不仅在正常发育中如此,在对生长素运输进行实验操作时也是如此,这表明局部生长素信号在拟南芥叶片维管系统的模式形成中起作用。我们进一步发现,拟南芥基因MONOPTEROS的活性对于正常的维管分化是必需的,在一系列生长素反应中也至关重要,这些反应包括对快速生长素诱导的AUX/IAA基因的调控,并且发现了I类同源域-亮氨酸拉链基因AtHB20的组织特异性维管表达谱。有趣的是,MONOPTEROS活性是AtHB8和AtHB20表达的限制因素,这两个基因编码在原形成层发育早期表达的转录调节因子。我们的观察结果将一般的生长素信号传导与维管分化的早期控制联系起来,并提出了生长素信号在模式化细胞分化中的分子机制。