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拟南芥 ABCG13 转运蛋白是花表皮角质层分泌和花瓣表皮模式形成所必需的。

The Arabidopsis ABCG13 transporter is required for flower cuticle secretion and patterning of the petal epidermis.

机构信息

Department of Plant Sciences, Weizmann Institute of Science, PO Box 26, Rehovot 76100, Israel.

Institute of Cellular and Molecular Botany (IZMB), Department of Ecophysiology, University of Bonn, Kirschallee 1, D-53115 Bonn, Germany.

出版信息

New Phytol. 2011 Apr;190(1):113-124. doi: 10.1111/j.1469-8137.2010.03608.x. Epub 2011 Jan 14.

Abstract

Previous studies showed that ABCG11 and ABCG12, two ATP-binding-cassette (ABC) transporters, are required for cuticular lipids extracellular secretion. Here, we characterized ABCG13, a third clade member, to widen our limited knowledge regarding assembly of the plant's cuticle. We isolated an abcg13 knockout mutant and used RNAi and artificial microRNA approaches to study the effect of ABCG13 loss-of-function. These plants were subsequently used to conduct a detailed analysis of cuticular lipids composition and cytological observations. ABCG13 loss-of-function resulted in cuticle-related phenotypes that were restricted to flowers, including inter-organ post-genital fusions. Apart from a significant reduction in flower cutin monomers, the macromorphology and micromorphology of abcg13 petal epidermis was strongly affected. We also found that ABCG13 is highly expressed in flowers, predominantly in petals and carpels. The results suggest that ABCG13 is required for the transport of flower cuticular lipids. This work introduces a new component to the recently emerging genetic network that makes the archetypal exterior of Arabidopsis flowers. While the question regarding the substrate specificity of the ABCG12-clade members remains open, these findings will facilitate future investigations regarding the interaction between the half-size ABCG-type transporters that likely take part in cuticle assembly.

摘要

先前的研究表明,ABCG11 和 ABCG12 这两种 ATP 结合盒(ABC)转运蛋白对于角质层脂质的细胞外分泌是必需的。在这里,我们对 ABCG13 进行了表征,这是第三个分支成员,以拓宽我们对植物角质层组装的有限认识。我们分离出了 abcg13 敲除突变体,并使用 RNAi 和人工 microRNA 方法研究了 ABCG13 功能丧失的影响。这些植物随后被用于对角质层脂质组成和细胞学观察进行详细分析。ABCG13 功能丧失导致了仅限于花朵的角质层相关表型,包括器官间的后生殖融合。除了花角质单体的显著减少外,abcg13 花瓣表皮的宏观和微观形态也受到强烈影响。我们还发现 ABCG13 在花朵中高度表达,主要在花瓣和心皮中表达。这些结果表明 ABCG13 是花角质层脂质运输所必需的。这项工作为最近出现的遗传网络引入了一个新的组成部分,该网络构成了拟南芥花朵的典型外观。虽然 ABCG12 分支成员的底物特异性问题仍然存在,但这些发现将有助于未来对可能参与角质层组装的半尺寸 ABCG 型转运蛋白之间相互作用的研究。

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