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拟南芥根中PIN1生长素转运蛋白的详细表达图谱。

A detailed expression map of the PIN1 auxin transporter in Arabidopsis thaliana root.

作者信息

Omelyanchuk N A, Kovrizhnykh V V, Oshchepkova E A, Pasternak T, Palme K, Mironova V V

机构信息

Institute of Cytology and Genetics SB RAS, Novosibirsk, 630090, Russia.

Novosibirsk State University, Novosibirsk, 630090, Russia.

出版信息

BMC Plant Biol. 2016 Jan 27;16 Suppl 1(Suppl 1):5. doi: 10.1186/s12870-015-0685-0.

Abstract

BACKGROUND

Theauxin efflux carrier PIN1 is a key mediator of polar auxin transport in developing plant tissues. This is why factors that are supposed to be involved in auxin distribution are frequently tested in the regulation of PIN1 expression. As a result, diverse aspects of PIN1 expression are dispersed across dozens of papers entirely devoted to other specific topics related to the auxin pathway. Integration of these puzzle pieces about PIN1 expression revealed that, along with a recurring pattern, some features of PIN1 expression varied from article to article. To determine if this uncertainty is related to the specific foci of articles or has a basis in the variability of PIN1 gene activity, we performed a comprehensive 3D analysis of PIN1 expression patterns in Arabidopsis thaliana roots.

RESULTS

We provide here a detailed map of PIN1 expression in the primary root, in the lateral root primordia and at the root-shoot junction. The variability in PIN1 expression pattern observed in individual roots may occur due to differences in auxin distribution between plants. To simulate this effect, we analysed PIN1 expression in the roots from wild type seedlings treated with different IAA concentrations and pin mutants. Most changes in PIN1 expression after exogenous IAA treatment and in pin mutants were also recorded in wild type but with lower frequency and intensity. Comparative studies of exogenous auxin effects on PIN1pro:GUS and PIN1pro:PIN1-GFP plants indicated that a positive auxin effect is explicit at the level of PIN1 promoter activity, whereas the inhibitory effect relates to post-transcriptional regulation.

CONCLUSIONS

Our results suggest that the PIN1 expression pattern in the root meristem accurately reflects changes in auxin content. This explains the variability of PIN1 expression in the individual roots and makes PIN1 a good marker for studying root meristem activity.

摘要

背景

生长素输出载体PIN1是植物发育组织中极性生长素运输的关键调节因子。这就是为什么那些被认为参与生长素分布的因素经常在PIN1表达调控方面进行测试。结果,PIN1表达的各个方面分散在几十篇完全致力于生长素途径其他特定主题的论文中。整合这些关于PIN1表达的拼图碎片发现,除了反复出现的模式外,PIN1表达的一些特征在不同文章中也有所不同。为了确定这种不确定性是与文章的特定焦点有关,还是基于PIN1基因活性的变异性,我们对拟南芥根中PIN1表达模式进行了全面的三维分析。

结果

我们在此提供了PIN1在主根、侧根原基和根茎连接处表达的详细图谱。在单个根中观察到的PIN1表达模式的变异性可能是由于不同植物之间生长素分布的差异所致。为了模拟这种效应,我们分析了用不同浓度吲哚乙酸(IAA)处理的野生型幼苗和pin突变体根中的PIN1表达。外源性IAA处理后和pin突变体中PIN1表达的大多数变化在野生型中也有记录,但频率和强度较低。对外源生长素对PIN1pro:GUS和PIN1pro:PIN1-GFP植物影响的比较研究表明,生长素的正向作用在PIN1启动子活性水平上是明确的,而抑制作用则与转录后调控有关。

结论

我们的结果表明,根分生组织中PIN1的表达模式准确反映了生长素含量的变化。这解释了单个根中PIN1表达的变异性,并使PIN1成为研究根分生组织活性的良好标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3880/4895256/ffccd5d80cbf/12870_2015_685_Fig1_HTML.jpg

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