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矮牵牛红色和白色花冠瓣的蛋白质组学揭示了花青素调节因子ANTHOCYANIN1在决定花朵寿命方面的新功能。

Proteomics of red and white corolla limbs in petunia reveals a novel function of the anthocyanin regulator ANTHOCYANIN1 in determining flower longevity.

作者信息

Prinsi Bhakti, Negri Alfredo S, Quattrocchio Francesca M, Koes Ronald E, Espen Luca

机构信息

Dipartimento di Scienze Agrarie e Ambientali, Produzione, Territorio, Agroenergia (DISAA), Università degli Studi di Milano, via Celoria 2, 20133, Milano, Italy.

Dipartimento di Scienze Agrarie e Ambientali, Produzione, Territorio, Agroenergia (DISAA), Università degli Studi di Milano, via Celoria 2, 20133, Milano, Italy.

出版信息

J Proteomics. 2016 Jan 10;131:38-47. doi: 10.1016/j.jprot.2015.10.008. Epub 2015 Oct 13.

Abstract

The Petunia hybrida ANTHOCYANIN1 (AN1) gene encodes a transcription factor that regulates both the expression of genes involved in anthocyanin synthesis and the acidification of the vacuolar lumen in corolla epidermal cells. In this work, the comparison between the red flowers of the R27 line with the white flowers of the isogenic an1 mutant line W225 showed that the AN1 gene has further pleiotropic effects on flavonoid biosynthesis as well as on distant physiological traits. The proteomic profiling showed that the an1 mutation was associated to changes in accumulation of several proteins, affecting both anthocyanin synthesis and primary metabolism. The flavonoid composition study confirmed that the an1 mutation provoked a broad attenuation of the entire flavonoid pathway, probably by indirect biochemical events. Moreover, proteomic changes and variation of biochemical parameters revealed that the an1 mutation induced a delay in the onset of flower senescence in W225, as supported by the enhanced longevity of the W225 flowers in planta and the loss of sensitivity of cut flowers to sugar. This study suggests that AN1 is possibly involved in the perception and/or transduction of ethylene signal during flower senescence.

摘要

矮牵牛花青素1(AN1)基因编码一种转录因子,该转录因子既调控参与花青素合成的基因的表达,也调控花冠表皮细胞液泡腔的酸化。在这项研究中,R27品系的红色花朵与同基因an1突变体品系W225的白色花朵之间的比较表明,AN1基因对类黄酮生物合成以及远距离生理性状具有进一步的多效性作用。蛋白质组学分析表明,an1突变与几种蛋白质积累的变化有关,影响花青素合成和初级代谢。类黄酮组成研究证实,an1突变可能通过间接生化事件导致整个类黄酮途径广泛减弱。此外,蛋白质组学变化和生化参数的变化表明,an1突变导致W225花朵衰老起始延迟,这在W225植株上花朵寿命延长以及切花对糖的敏感性丧失中得到了支持。这项研究表明,AN1可能参与了花朵衰老过程中乙烯信号的感知和/或转导。

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