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A contribution to identification of novel regulators of plant response to sulfur deficiency: characteristics of a tobacco gene UP9C, its protein product and the effects of UP9C silencing.

机译:对鉴定植物对硫缺乏反应的新型调节剂的贡献:烟草基因 UP9C 的特性,其蛋白质产物以及 UP9C 沉默的影响。

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Extensive changes in plant transcriptome and metabolome have been observed by numerous research groups after transferring plants from optimal conditions to sulfur (S) deficiency. Despite intensive studies and recent important achievements, like identification of SLIM1/EIL3 as a major transcriptional regulator of the response to S-deficiency, many questions concerning other elements of the regulatory network remain unanswered. Investigations of genes with expression regulated by S-deficiency stress encoding proteins of unknown function might help to clarify these problems. This study is focused on the UP9C gene and the UP9-like family in tobacco. Homologs of these genes exist in other plant species, including a family of four genes of unknown function in Arabidopsis thaliana (LSU1-4), of which two were reported as strongly induced by S-deficit and to a lesser extent by salt stress and nitrate limitation. Conservation of the predicted structural features, such as coiled coil region or nuclear localization signal, suggests that these proteins might have important functions possibly mediated by interactions with other proteins. Analysis of transgenic tobacco plants with silenced expression of UP9-like genes strongly argues for their significant role in regulation of plant response to S-deficit. Although our study shows that the UP9-like proteins are important components of such response and they might be also required during other stresses, their molecular functions remain a mystery.
机译:在将植物从最佳条件转化为硫(S)缺乏症后,许多研究小组都观察到了植物转录组和代谢组的广泛变化。尽管进行了深入的研究并取得了重要的近期成就,例如将SLIM1 / EIL3鉴定为对S缺乏症应答的主要转录调节因子,但有关该调节网络其他成分的许多问题仍未得到解答。对表达受S缺陷应激编码功能未知蛋白调控的基因的研究可能有助于阐明这些问题。这项研究的重点是烟草中的 UP9C 基因和 UP9 样家族。这些基因的同源物存在于其他植物物种中,包括在拟南芥中四个功能未知的基因家族(LSU1-4),其中两个据报道被强烈诱导。 S亏缺,在较小程度上受盐胁迫和硝酸盐限制。预测的结构特征(例如卷曲螺旋区域或核定位信号)的保守性表明,这些蛋白质可能具有重要的功能,可能是由与其他蛋白质的相互作用介导的。分析具有 UP9 类基因沉默表达的转基因烟草植物,强烈证明了其在调节植物对S亏缺反应中的重要作用。尽管我们的研究表明UP9样蛋白是这种反应的重要组成部分,并且在其他压力下也可能需要它们,但其分子功能仍然是个谜。

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