Université de Toulouse, INP-ENSA Toulouse, Génomique et Biotechnologie des Fruits, Avenue de l'Agrobiopole, Castanet-Tolosan, France.
Plant Cell Physiol. 2012 Apr;53(4):659-72. doi: 10.1093/pcp/pcs022. Epub 2012 Feb 24.
Auxin is a central hormone that exerts pleiotropic effects on plant growth including the development of roots, shoots, flowers and fruit. The perception and signaling of the plant hormone auxin rely on the cooperative action of several components, among which auxin/indole-3-acetic acid (Aux/IAA) proteins play a pivotal role. In this study, we identified and comprehensively analyzed the entire Aux/IAA gene family in tomato (Solanum lycopersicum), a reference species for Solanaceae plants, and the model plant for fleshy fruit development. Functional characterization using a dedicated single cell system revealed that tomato Aux/IAA proteins function as active repressors of auxin-dependent gene transcription, with, however, different Aux/IAA members displaying varying levels of repression. Phylogenetic analysis indicated that the Aux/IAA gene family is slightly contracted in tomato compared with Arabidopsis, with a lower representation of non-canonical proteins. Sl-IAA genes display distinctive expression pattern in different tomato organs and tissues, and some of them display differential responses to auxin and ethylene, suggesting that Aux/IAAs may play a role in linking both hormone signaling pathways. The data presented here shed more light on Sl-IAA genes and provides new leads towards the elucidation of their function during plant development and in mediating hormone cross-talk.
生长素是一种中央激素,对植物生长具有多种影响,包括根、茎、花和果实的发育。植物激素生长素的感知和信号依赖于几个成分的协同作用,其中生长素/吲哚-3-乙酸(Aux/IAA)蛋白起着关键作用。在这项研究中,我们鉴定并全面分析了番茄(Solanum lycopersicum),茄科植物的参考物种和肉质果实发育的模式植物,中的整个 Aux/IAA 基因家族。使用专用单细胞系统进行的功能表征表明,番茄 Aux/IAA 蛋白作为生长素依赖性基因转录的活性抑制剂发挥作用,但不同的 Aux/IAA 成员显示出不同的抑制水平。系统发育分析表明,与拟南芥相比,番茄中的 Aux/IAA 基因家族略有收缩,非典型蛋白的代表性较低。Sl-IAA 基因在不同的番茄器官和组织中显示出独特的表达模式,其中一些基因对生长素和乙烯表现出不同的反应,这表明 Aux/IAAs 可能在连接两种激素信号通路方面发挥作用。这里提供的数据进一步阐明了 Sl-IAA 基因,并为阐明它们在植物发育过程中的功能以及在介导激素交叉对话中的作用提供了新的线索。