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OsERF2 controls rice root growth and hormone responses through tuning expression of key genes involved in hormone signaling and sucrose metabolism

机译:OsERF2通过调节参与激素信号传导和蔗糖代谢的关键基因的表达来控制水稻根系生长和激素反应

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摘要

Root determines plant distribution, development progresses, stress response, as well as crop qualities and yields, which is under the tight control of genetic programs and environmental stimuli. Ethylene responsive factor proteins (ERFs) play important roles in plant growth and development. Here, the regulatory function of OsERF2 involved in root growth was investigated using the gain-function mutant of OsERF2 (nsf2857) and the artificial microRNA-mediated silenced lines of OsERF2 (Ami-OsERF2). nsf2857 showed short primary roots compared with the wild type (WT), while the primary roots of Ami-OsERF2 lines were longer than those of WT. Consistent with this phenotype, several auxin/cytokinin responsive genes involved in root growth were downregulated in nsf2857, but upregulated in Ami-OsERF2. Then, we found that nsf2857 seedlings exhibited decreased ABA accumulation and sensitivity to ABA and reduced ethylene-mediated root inhibition, while those were the opposite in Ami-ERF2 plants. Moreover, several key genes involved in ABA synthesis were downregulated in nsf2857, but unregulated in Ami-ERF2 lines. In addition, OsERF2 affected the accumulation of sucrose and UDPG by mediating expression of key genes involved in sucrose metabolism. These results indicate that OsERF2 is required for the control of root architecture and ABA- and ethylene-response by tuning expression of series genes involved in sugar metabolism and hormone signaling pathways.
机译:根系决定了植物的分布,发育进程,胁迫响应以及作物的质量和产量,这在遗传程序和环境刺激的严格控制下。乙烯反应因子蛋白(ERF)在植物生长和发育中起重要作用。在这里,使用OsERF2的增益功能突变体(nsf2857)和人工microRNA介导的OsERF2沉默株(Ami-OsERF2)研究了OsERF2参与根生长的调节功能。 nsf2857与野生型(WT)相比显示出较短的初生根,而Ami-OsERF2系的初生根长于WT。与该表型一致,nsf2857下调了一些参与根生长的生长素/细胞分裂素反应基因,但在Ami-OsERF2中上调了基因。然后,我们发现nsf2857幼苗显示出降低的ABA积累和对ABA的敏感性,并减少了乙烯介导的根抑制,而在Ami-ERF2植物中则相反。此外,与ABA合成有关的几个关键基因在nsf2857中被下调,而在Ami-ERF2品系中则未被调节。此外,OsERF2通过介导参与蔗糖代谢的关键基因的表达来影响蔗糖和UDPG的积累。这些结果表明,通过调节参与糖代谢和激素信号通路的一系列基因的表达,OsERF2是控制根系结构以及ABA和乙烯反应所必需的。

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