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一种保卫细胞特异性MYB转录因子调控气孔运动和植物耐旱性。

A guard-cell-specific MYB transcription factor regulates stomatal movements and plant drought tolerance.

作者信息

Cominelli Eleonora, Galbiati Massimo, Vavasseur Alain, Conti Lucio, Sala Tea, Vuylsteke Marnik, Leonhardt Nathalie, Dellaporta Stephen L, Tonelli Chiara

机构信息

Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Via Celoria 26, 20133 Milano, Italy.

出版信息

Curr Biol. 2005 Jul 12;15(13):1196-200. doi: 10.1016/j.cub.2005.05.048.

Abstract

Stomatal pores located on the plant epidermis regulate CO(2) uptake for photosynthesis and the loss of water by transpiration. The opening and closing of the pore is mediated by turgor-driven volume changes of two surrounding guard cells. These highly specialized cells integrate internal signals and environmental stimuli to modulate stomatal aperture for plant survival under diverse conditions. Modulation of transcription and mRNA processing play important roles in controlling guard-cell activity, although the details of these levels of regulation remain mostly unknown. Here we report the characterization of AtMYB60, a R2R3-MYB gene of Arabidopsis, as the first transcription factor involved in the regulation of stomatal movements. AtMYB60 is specifically expressed in guard cells, and its expression is negatively modulated during drought. A null mutation in AtMYB60 results in the constitutive reduction of stomatal opening and in decreased wilting under water stress conditions. Transcript levels of a limited number of genes are altered in the mutant, and many of these genes are involved in the plant response to stress. Our data indicate that AtMYB60 is a transcriptional modulator of physiological responses in guard cells and open new possibilities to engineering stomatal activity to help plants survive desiccation.

摘要

位于植物表皮的气孔调节光合作用中二氧化碳的吸收以及蒸腾作用导致的水分流失。气孔的开闭由两个周围保卫细胞的膨压驱动的体积变化介导。这些高度特化的细胞整合内部信号和环境刺激,以调节气孔孔径,使植物在不同条件下得以生存。转录和mRNA加工的调节在控制保卫细胞活性中起重要作用,尽管这些调节水平的细节大多仍不清楚。在这里,我们报道了拟南芥的一个R2R3-MYB基因AtMYB60的特性,它是第一个参与气孔运动调节的转录因子。AtMYB60在保卫细胞中特异性表达,并且在干旱期间其表达受到负调控。AtMYB60的无效突变导致气孔开放的组成性减少以及水分胁迫条件下萎蔫减少。突变体中有限数量基因的转录水平发生改变,其中许多基因参与植物对胁迫的反应。我们的数据表明,AtMYB60是保卫细胞生理反应的转录调节因子,并为改造气孔活性以帮助植物在干燥环境中生存开辟了新的可能性。

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