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Boron-Dependent Degradation of NIP5;1 mRNA for Acclimation to Excess Boron Conditions in Arabidopsis

机译:NIP5; 1 mRNA的硼依赖性降解,以适应拟南芥中过量的硼条件

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摘要

Boron (B) is an essential plant micronutrient that is toxic at higher levels. NIP5;1 is a boric acid channel required for B uptake and growth under B deficiency. Accumulation of the NIP5;1 transcript is upregulated under B deficiency in Arabidopsis thaliana roots. To elucidate the mechanism of regulation, the 5' untranslated region (UTR) of NIP5;1 was tested for its ability to confer B-dependent regulation using beta-glucuronidase and green fluorescent protein as reporters. This analysis showed that the 5' UTR was involved in NIP5;1 transcript accumulation in response to B conditions. We also found that high-B conditions trigger NIP5;1 mRNA degradation and that the sequence from +182 to +200 bp in the 5' UTR is required for this mRNA destabilization. In the nip5;1-1 mutant background, a NIP5;1 complementation construct without the 5' UTR produced high levels of mRNA accumulation, increased B concentrations in tissues, and reduced growth under high-B conditions. These data suggest that the 5' UTR controls B-dependent NIP5;1 mRNA degradation and that NIP5;1 mRNA degradation is important for plant acclimation to high-B conditions.
机译:硼(B)是一种必需的植物微量营养素,在较高水平下有毒。 NIP5; 1是硼缺乏时硼摄取和生长所需的硼酸通道。在拟南芥根中B缺乏下,NIP5; 1转录物的积累被上调。为了阐明调节机制,使用β-葡糖醛酸糖苷酶和绿色荧光蛋白作为报告基因,测试了NIP5; 1的5'非翻译区(UTR)赋予B依赖性调节的能力。该分析表明,响应于B条件,5'UTR参与了NIP5; 1转录本的积累。我们还发现,高B条件会触发NIP5; 1 mRNA降解,并且5'UTR中+182至+200 bp的序列对于该mRNA不稳定是必需的。在nip5; 1-1突变体背景下,没有5'UTR的NIP5; 1互补构建体产生高水平的mRNA积累,组织中B浓度升高以及在高B条件下生长减少。这些数据表明5'UTR控制B依赖性NIP5; 1 mRNA的降解,而NIP5; 1 mRNA的降解对于植物适应高B条件很重要。

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