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一个新的、半显性的 MONOPTEROS 等位基因为叶片起始和叶脉模式形成提供了新的见解。

A novel, semi-dominant allele of MONOPTEROS provides insight into leaf initiation and vein pattern formation.

机构信息

Department of Biological Sciences, University of Lethbridge, Lethbridge, AB, TIK 3M4, Canada.

出版信息

Planta. 2012 Jul;236(1):297-312. doi: 10.1007/s00425-012-1607-0. Epub 2012 Feb 21.

Abstract

Leaf vein pattern is proposed to be specified by directional auxin transport through presumptive vein cells. Activation of auxin response, which induces downstream genes that entrain auxin transport and lead to vascular differentiation, occurs through a set of transcription factors, the auxin response factors. In the absence of auxin, auxin response factors are inactive because they interact with repressor proteins, the Aux/IAA proteins. One member of the auxin response factor protein family, Auxin Response Factor 5/MONOPTEROS (MP), is critical to vein formation as indicated by reduced vein formation in loss-of-function MP alleles. We have identified a semi-dominant, gain-of-function allele of MP, autobahn or mp ( abn ), which results in vein proliferation in leaves and cotyledons. mp ( abn ) is predicted to encode a truncated product that lacks domain IV required for interaction with its Aux/IAA repressor BODENLOS (BDL). We show that the truncated product fails to interact with BDL in yeast two-hybrid assays. Ectopic expression of MP targets including the auxin efflux protein PINFORMED1 (PIN1) further supports the irrepressible nature of mp ( abn ). Asymmetric PIN1:GFP cellular localization does not occur within the enlarged PIN1:GFP expression domains, suggesting the asymmetry requires differential auxin response in neighbouring cells. Organ initiation from mp ( abn ) meristems is altered, consistent with disruption to source/sink relationships within the meristem and possible changes in gene expression. Finally, mp ( abn ) anthers fail to dehisce and their indehiscence can be relieved by jasmonic acid treatment, suggesting a specific role for MP in late anther development.

摘要

叶片脉序被认为是由假定的叶脉细胞中定向生长素运输所决定的。生长素反应的激活诱导下游基因,这些基因使生长素运输和血管分化,通过一组转录因子,即生长素反应因子。在没有生长素的情况下,生长素反应因子因为与抑制蛋白,Aux/IAA 蛋白相互作用而处于非活性状态。生长素反应因子蛋白家族的一个成员,Auxin Response Factor 5/MONOPTEROS(MP),在叶脉形成中至关重要,因为功能丧失的 MP 等位基因导致叶脉形成减少。我们已经鉴定出一个半显性、功能获得性的 MP 等位基因,即 autobahn 或 mp(abn),它导致叶片和子叶中的叶脉增殖。mp(abn)预计编码一个截断的产物,缺乏与其 Aux/IAA 抑制剂 BODENLOS(BDL)相互作用所需的结构域 IV。我们在酵母双杂交试验中表明,截断的产物未能与 BDL 相互作用。MP 靶基因的异位表达,包括生长素外排蛋白 PINFORMED1(PIN1),进一步支持了 mp(abn)的不可抑制性。不对称的 PIN1:GFP 细胞定位不会在扩大的 PIN1:GFP 表达域内发生,这表明不对称性需要相邻细胞中不同的生长素反应。从 mp(abn)分生组织起始的器官发生发生改变,与分生组织内源/汇关系的破坏一致,并可能导致基因表达的变化。最后,mp(abn)花药不能开裂,其不开裂可以通过茉莉酸处理得到缓解,这表明 MP 在晚期花药发育中具有特定的作用。

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