Song Yaling, Wang Lei, Xiong Lizhong
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, 430070, Wuhan, China.
Planta. 2009 Feb;229(3):577-91. doi: 10.1007/s00425-008-0853-7. Epub 2008 Nov 26.
Auxin is one of the most important phytohormones and exerts pleiotropic effects on plant growth and development. Aux/IAA and auxin response factor (ARF) are two important protein families that are well recognized for their roles in auxin-mediated responses. Aux/IAA proteins are short-lived transcriptional regulators that mediate auxin responses through interaction with ARF transcription factors. Here, we systematically compared the genomic organization of the two families in rice. The expression profiles of both families were compared to show possible association of the two gene families at expression level, which would help reveal their synergistic relationships and functions. The expression profile analysis of Aux/IAA and ARF genes in 30 organs/tissues (collected from an entire life cycle of rice) suggested that Aux/IAA and ARF genes are expressed in very diverse patterns. In general, the genes showing similar expression patterns tended to be in the same phylogenetic subgroup even though their expression patterns were not always the same. Hierarchical cluster analysis revealed that there are eight pairs of IAA and ARF genes, with each pair showing highly correlated expression. The expression levels of the IAA gene family were also checked under various hormone treatments including abscisic acid, kinetin, gibberellin, jasmonic acid, auxin and brassinolide. The results indicated that most of the IAA genes respond to at least one of the treatments. Furthermore, DNA chip and real-time PCR results show that many genes in these families were responsive to various abiotic stresses, indicating an interaction between plant growth and abiotic stress. The effect of abiotic stress on plant growth and auxin distribution was further confirmed with the root growth of DR5-GUS transgenic rice under mannitol treatment, in which a close association between mannitol-induced changes of auxin distribution and root growth was observed.
生长素是最重要的植物激素之一,对植物生长发育具有多效性作用。Aux/IAA和生长素响应因子(ARF)是两个重要的蛋白质家族,它们在生长素介导的反应中的作用已得到充分认可。Aux/IAA蛋白是寿命较短的转录调节因子,通过与ARF转录因子相互作用来介导生长素反应。在此,我们系统地比较了水稻中这两个家族的基因组结构。比较了这两个家族的表达谱,以显示这两个基因家族在表达水平上可能的关联,这将有助于揭示它们的协同关系和功能。对水稻整个生命周期收集的30个器官/组织中Aux/IAA和ARF基因的表达谱分析表明,Aux/IAA和ARF基因以非常多样的模式表达。一般来说,表达模式相似的基因往往属于同一个系统发育亚组,尽管它们的表达模式并不总是相同。层次聚类分析表明,有八对IAA和ARF基因,每对基因的表达高度相关。还检测了IAA基因家族在包括脱落酸、激动素、赤霉素、茉莉酸、生长素和油菜素内酯在内的各种激素处理下的表达水平。结果表明,大多数IAA基因对至少一种处理有反应。此外,DNA芯片和实时PCR结果表明,这些家族中的许多基因对各种非生物胁迫有反应,表明植物生长与非生物胁迫之间存在相互作用。用甘露醇处理DR5-GUS转基因水稻的根生长进一步证实了非生物胁迫对植物生长和生长素分布的影响,其中观察到甘露醇诱导的生长素分布变化与根生长之间存在密切关联。