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拟南芥ICE2基因:系统发育、结构演变及与ICE1的功能分化

Arabidopsis thaliana ICE2 gene: phylogeny, structural evolution and functional diversification from ICE1.

作者信息

Kurbidaeva Amina, Ezhova Tatiana, Novokreshchenova Maria

机构信息

Department of Genetics, Faculty of Biology, Lomonosov Moscow State University, 1-12 Leninskie Gory, 119991 Moscow, Russia.

出版信息

Plant Sci. 2014 Dec;229:10-22. doi: 10.1016/j.plantsci.2014.08.011. Epub 2014 Aug 28.

Abstract

The ability to tolerate environmental stresses is crucial for all living organisms, and gene duplication is one of the sources for evolutionary novelties. Arabidopsis thaliana INDUCER OF CBF EXPRESSION1 and 2 (ICE1 and ICE2) encode MYC-type bHLH (basic helix-loop-helix) transcription factors. They confer cold stress tolerance by induction of the CBF/DREB1 regulon and regulate stomata formation. Although ICE2 is closely related to ICE1, its origin and role in cold response remains uncertain. Here, we used a bioinformatics/phylogenetic approach to uncover the ICE2 evolutionary history, structural evolution and functional divergence from the putative ancestral gene. Sequence diversification from ICE1 included the gain of cis-acting elements in ICE2 promoter sequence that may provide meristem-specific and defense-related gene expression. By analyzing transgenic Arabidopsis lines with ICE2 over-expression we showed that it contributes to stomata formation, flowering time regulation and cold response. Constitutive ICE2 expression led to induced meristem freezing tolerance, resulting from activation of CBF1 and CBF3 genes and ABA biosynthesis by NCED3 induction. We presume that ICE2 gene has originated from a duplication event about 17.9MYA followed by sub- and neofunctionalization of the ancestral ICE1 gene. Moreover, we predict its role in pathogen resistance and flowering time regulation.

摘要

耐受环境胁迫的能力对所有生物都至关重要,而基因复制是进化新特性的来源之一。拟南芥CBF表达诱导因子1和2(ICE1和ICE2)编码MYC型bHLH(碱性螺旋-环-螺旋)转录因子。它们通过诱导CBF/DREB1调控子赋予植物耐冷胁迫能力,并调节气孔形成。尽管ICE2与ICE1密切相关,但其起源及在冷响应中的作用仍不明确。在此,我们采用生物信息学/系统发育方法揭示ICE2的进化历史、结构演变以及与假定祖先基因的功能差异。ICE2与ICE1的序列差异包括ICE2启动子序列中顺式作用元件的获得,这些元件可能提供分生组织特异性和防御相关基因的表达。通过分析ICE2过表达的转基因拟南芥株系,我们发现它有助于气孔形成、开花时间调控和冷响应。ICE2的组成型表达导致分生组织耐冻性增强,这是由CBF1和CBF3基因的激活以及NCED3诱导的ABA生物合成所致。我们推测ICE2基因起源于约1790万年前的一次复制事件,随后祖先ICE1基因发生了亚功能化和新功能化。此外,我们预测了它在病原体抗性和开花时间调控中的作用。

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