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ABA 和糖信号之间的串扰是由 OsTIP3;1 启动子中的 ACGT 核心和 CE1 元件相互介导的。

Cross-talk between ABA and sugar signaling is mediated by the ACGT core and CE1 element reciprocally in OsTIP3;1 promoter.

机构信息

Department of Systems Biotechnology, Konkuk University, Seoul 143-701, Republic of Korea.

Division of Biological Science and Technology, Yonsei University, Wonju, 220-710, Republic of Korea.

出版信息

J Plant Physiol. 2018 May-Jun;224-225:103-111. doi: 10.1016/j.jplph.2018.03.010. Epub 2018 Mar 21.

Abstract

Recently, much effort has been made to determine the molecular links and cross-talk between sugar and abscisic acid (ABA) signaling pathways. ABA-inducible expression of OsTIP3;1, encoding a rice tonoplast intrinsic protein, was enhanced by sugar depletion. Such a stimulatory increase in OsTIP3;1 expression under sugar-starvation is possibly not owing to changes in endogenous ABA content. The transient expression assay indicated that the 5' flanking region of OsTIP3;1 delivered similar collaborative responsiveness to starvation and ABA, suggesting that this gene promoter could be a good molecular probe to examine the interaction between sugar and ABA signaling pathways. Targeted mutagenesis demonstrated that disruption of ACGT cores decreased the induction of OsTIP3;1 promoter activity under either starvation or ABA, whereas mutation of coupling element 1 (CE1), which is an ABI4 binding site, reversely increased it, suggesting that those two distinct cis-regulatory elements reciprocally regulate the responsiveness of this promoter to both sugar and ABA. Consistent with this result, antisense inhibition of ABI4 increased the OsTIP3;1 promoter activity. ABI4 expression was also enhanced by sugars and repressed by ABA, suggesting that reduced ABI4 binding to CE1 in the absence of sugar and presence of ABA could increase ABA-induction of the OsTIP3;1 promoter activity.

摘要

最近,人们付出了很大努力来确定糖和脱落酸(ABA)信号通路之间的分子联系和串扰。糖耗竭增强了ABA 诱导的 OsTIP3;1 的表达,OsTIP3;1 编码一种水稻液泡膜内在蛋白。在糖饥饿下,这种对 OsTIP3;1 表达的刺激增加可能不是由于内源性 ABA 含量的变化。瞬时表达分析表明,OsTIP3;1 的 5'侧翼区对饥饿和 ABA 具有相似的协同反应性,表明该基因启动子可以作为研究糖和 ABA 信号通路之间相互作用的良好分子探针。靶向诱变表明,破坏 ACGT 核心会降低 OsTIP3;1 启动子活性在饥饿或 ABA 下的诱导,而偶联元件 1(CE1)的突变,这是一个 ABI4 结合位点,反而增加了它,表明这两个不同的顺式调控元件相互调节该启动子对糖和 ABA 的反应性。与这一结果一致的是,ABI4 的反义抑制增加了 OsTIP3;1 启动子活性。糖也增强了 ABI4 的表达,而 ABA 则抑制了它,这表明在没有糖和存在 ABA 的情况下,ABI4 与 CE1 的结合减少可能会增加 ABA 诱导 OsTIP3;1 启动子活性。

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