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杨树中LIM基因家族的表达分析,迈向更新的系统发育分类

Expression analysis of LIM gene family in poplar, toward an updated phylogenetic classification.

作者信息

Arnaud Dominique, Déjardin Annabelle, Leplé Jean-Charles, Lesage-Descauses Marie-Claude, Boizot Nathalie, Villar Marc, Bénédetti Hélène, Pilate Gilles

机构信息

INRA, UR0588 Amélioration, Génétique et Physiologie Forestières, CS 40001 Ardon, F-45075 Orléans Cedex 2, France.

出版信息

BMC Res Notes. 2012 Feb 17;5:102. doi: 10.1186/1756-0500-5-102.

Abstract

BACKGROUND

Plant LIM domain proteins may act as transcriptional activators of lignin biosynthesis and/or as actin binding and bundling proteins. Plant LIM genes have evolved in phylogenetic subgroups differing in their expression profiles: in the whole plant or specifically in pollen. However, several poplar PtLIM genes belong to uncharacterized monophyletic subgroups and the expression patterns of the LIM gene family in a woody plant have not been studied.

FINDINGS

In this work, the expression pattern of the twelve duplicated poplar PtLIM genes has been investigated by semi quantitative RT-PCR in different vegetative and reproductive tissues. As in other plant species, poplar PtLIM genes were widely expressed in the tree or in particular tissues. Especially, PtXLIM1a, PtXLIM1b and PtWLIM1b genes were preferentially expressed in the secondary xylem, suggesting a specific function in wood formation. Moreover, the expression of these genes and of the PtPLIM2a gene was increased in tension wood. Western-blot analysis confirmed the preferential expression of PtXLIM1a protein during xylem differentiation and tension wood formation. Genes classified within the pollen specific PLIM2 and PLIM2-like subgroups were all strongly expressed in pollen but also in cottony hairs. Interestingly, pairs of duplicated PtLIM genes exhibited different expression patterns indicating subfunctionalisations in specific tissues.

CONCLUSIONS

The strong expression of several LIM genes in cottony hairs and germinating pollen, as well as in xylem fibers suggests an involvement of plant LIM domain proteins in the control of cell expansion. Comparisons of expression profiles of poplar LIM genes with the published functions of closely related plant LIM genes suggest conserved functions in the areas of lignin biosynthesis, pollen tube growth and mechanical stress response. Based on these results, we propose a novel nomenclature of poplar LIM domain proteins.

摘要

背景

植物LIM结构域蛋白可能作为木质素生物合成的转录激活因子和/或作为肌动蛋白结合及成束蛋白发挥作用。植物LIM基因在系统发育亚组中进化,这些亚组的表达谱不同:在整个植物中或特定地在花粉中。然而,几个杨树PtLIM基因属于未表征的单系亚组,并且尚未研究木本植物中LIM基因家族的表达模式。

研究结果

在这项工作中,通过半定量RT-PCR研究了12个重复的杨树PtLIM基因在不同营养和生殖组织中的表达模式。与其他植物物种一样,杨树PtLIM基因在树体或特定组织中广泛表达。特别是,PtXLIM1a、PtXLIM1b和PtWLIM1b基因在次生木质部中优先表达,表明在木材形成中具有特定功能。此外,这些基因和PtPLIM2a基因的表达在张力木中增加。蛋白质免疫印迹分析证实了PtXLIM1a蛋白在木质部分化和张力木形成过程中的优先表达。归类于花粉特异性PLIM2和PLIM2样亚组的基因在花粉中以及在棉毛中均强烈表达。有趣的是,成对的重复PtLIM基因表现出不同的表达模式,表明在特定组织中存在亚功能化。

结论

几个LIM基因在棉毛、萌发花粉以及木质部纤维中的强烈表达表明植物LIM结构域蛋白参与细胞扩张的控制。将杨树LIM基因的表达谱与已发表的密切相关植物LIM基因的功能进行比较,表明在木质素生物合成、花粉管生长和机械应激反应方面具有保守功能。基于这些结果,我们提出了杨树LIM结构域蛋白的新命名法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bad/3392731/d9c8bdaedcdb/1756-0500-5-102-1.jpg

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