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Phenotypes Associated with Down-Regulation of Sl-IAA27 Support Functional Diversity Among Aux/IAA Family Members in Tomato

机译:与Sl-IAA27下调相关的表型支持番茄Aux / IAA家族成员之间的功能多样性

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The phytohormone auxin is known to regulate several aspects of plant development, and Aux/IAA transcription factors play a pivotal role in auxin signaling. To extend our understanding of the multiple functions of Aux/IAAs further, the present study describes the functional characterization of Sl-IAA27, a member of the tomato Aux/IAA gene family. Sl-IAA27 displays a distinct behavior compared with most Aux/IAA genes regarding the regulation of its expression by auxin, and the Sl-IAA27-encoded protein harbors a unique motif of unknown function also present in Sl-IAA9 and remarkably conserved in monocot and dicot species. Tomato transgenic plants underexpressing the Sl-IAA27 gene revealed multiple phenotypes related to vegetative and reproductive growth. Silencing of Sl-IAA27 results in higher auxin sensitivity, altered root development and reduced Chl content in leaves. Both ovule and pollen display a dramatic loss of fertility in Sl-IAA27 down-regulated lines, and the internal anatomy of the flower and the fruit are modified, with an enlarged placenta in smaller fruits. In line with the reduced Chl content in Sl-IAA27 RNA interference (RNAi) leaves, genes involved in Chl synthesis display lower expression at the level of transcript accumulation. Even though Sl-IAA27 is closely related to Sl-IAA9 in terms of sequence homology and the encoded proteins share common structural features, the data indicate that the two genes regulate tomato fruit initiation and development in a distinct manner.
机译:已知植物激素生长素调节植物发育的多个方面,并且Aux / IAA转录因子在生长素信号传导中起关键作用。为了进一步扩展我们对Aux / IAA多种功能的理解,本研究描述了番茄Aux / IAA基因家族成员S1-IAA27的功能特性。与大多数Aux / IAA基因相比,Sl-IAA27在生长素调节其表达方面表现出独特的行为,Sl-IAA27编码的蛋白具有独特的未知功能基序,也存在于Sl-IAA9中,并且在单子叶植物和双子叶植物。番茄S1-IAA27基因低表达的转基因植物显示出与营养生长和生殖生长有关的多种表型。 S1-IAA27的沉默导致较高的植物生长素敏感性,改变的根发育和降低的叶中Chl含量。胚珠和花粉在S1-IAA27下调的系中均显示出明显的育性丧失,并且花和果实的内部解剖结构发生了变化,较小果实中的胎盘增大。与S1-IAA27 RNA干扰(RNAi)叶中Chl含量降低相一致,参与Ch1合成的基因在转录本积累水平上显示出较低的表达。尽管就序列同源性而言S1-IAA27与S1-IAA9密切相关,并且编码的蛋白质具有共同的结构特征,但数据表明这两个基因以不同的方式调节番茄果实的起始和发育。

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