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首页> 外文期刊>Plant physiology >Upstream Open Reading Frame and Phosphate-Regulated Expression of Rice OsNLA1 Controls Phosphate Transport and Reproduction
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Upstream Open Reading Frame and Phosphate-Regulated Expression of Rice OsNLA1 Controls Phosphate Transport and Reproduction

机译:水稻OSNLA1的上游开放阅读框架和磷酸盐调节表达控制磷酸盐运输和繁殖

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摘要

yy Rice (Oryza sativa) OsNLA1 has been proposed to play a crucial role in regulating phosphate (Pi) acquisition in roots, similar to that of Arabidopsis (Arabidopsis thaliana) AtNLA. However, unlike AtNLA, OsNLA1 is not a target of miR827, a Pi starvation-induced microRNA. It is, therefore, of interest to know whether the expression of OsNLA1 depends on Pi supply and how it is regulated. In this study, we provide evidence that OsNLA1 controls Pi acquisition by directing the degradation of several OsPHT1 Pi transporters (i.e. OsPT1/2/4/7/8/12). We further show that OsNLA1 has an additional function in reproduction and uncover the mechanism of its expression regulation. Analysis of mRNA levels, promoter-GUS activity, and protoplast transient expression showed that the expression of OsNLA1.1, the most abundant transcript variant, is up-regulated in response to increasing Pi supply. The OsNLA1 promoter region was found to contain an upstream open reading frame that is required for Pi-responsive expression regulation. OsNLA1 promoter activity was observed in roots, ligules, leaves, sheaths, pollen grains, and surrounding the vascular tissues of anthers, suggesting that OsNLA1 is important throughout the development of rice. Disruption of OsNLA1 resulted in increased Pi uptake from roots as well as impaired pollen development and reduced grain production. In summary, our study reveals that Pi-induced OsNLA1 expression regulated by a unique mechanism functions in Pi acquisition, Pi translocation, and reproductive success.
机译:yy米(Oryza sativa)OSNLA1已经提出在规范根系中调节磷酸盐(PI)收购方面发挥至关重要的作用,类似于拟南芥(拟南芥)ATNLA。然而,与ATNLA不同,OSNLA1不是MIR827的目标,PI饥饿诱导的MicroRNA。因此,有兴趣了解OSNLA1的表达是否取决于PI供应以及其如何调节。在这项研究中,我们提供了通过引导几个灰质1 PI转运蛋白的降解来控制PI采集的证据(即OSPT1 / 2/4 / 7/8/12)。我们进一步表明,OSNLA1在再现和揭示其表达调节机制方面具有额外的功能。 MRNA水平,启动子 - GUS活性和原生质体瞬态表达的分析表明,尤其是浓度最丰富的转录变体的表达是响应于增加PI供应而上调。发现OSNLA1启动子区域含有对PI响应表达调节所需的上游开放阅读框。在根,叶片,叶子,鞘,花粉颗粒,花粉颗粒和围绕花药组织的血管组织中观察到OSNLA1启动子活性,表明OSNLA1在整个水稻的发展中都很重要。 OSNLA1的破坏导致了从根源的PI增加增加,并且花粉发育受损和降低粮食生产。总之,我们的研究表明,PI诱导的OSNLA1表达通过PI采集,PI易位和生殖成功的独特机制功能调节。

著录项

  • 来源
    《Plant physiology》 |2020年第1期|共15页
  • 作者单位

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

    Acad Sinica Agr Biotechnol Res Ctr Taipei 115 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;
  • 关键词

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