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拟南芥四跨膜蛋白基因家族在植物生长发育中的功能分析

Functional Analysis of the Arabidopsis TETRASPANIN Gene Family in Plant Growth and Development.

作者信息

Wang Feng, Muto Antonella, Van de Velde Jan, Neyt Pia, Himanen Kristiina, Vandepoele Klaas, Van Lijsebettens Mieke

机构信息

Department of Plant Systems Biology, VIB, B-9052 Ghent, Belgium (F.W, A.M., J.V.d.V., P.N., K.H., K.V., M.V.L.);Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (F.W, A.M., J.V.d.V., P.N., K.H., K.V., M.V.L.); andDepartment of Biology, Ecology and Earth Sciences, University of Calabria, 87036 Arcavacata of Rende, Italy (A.M.).

Department of Plant Systems Biology, VIB, B-9052 Ghent, Belgium (F.W, A.M., J.V.d.V., P.N., K.H., K.V., M.V.L.);Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (F.W, A.M., J.V.d.V., P.N., K.H., K.V., M.V.L.); andDepartment of Biology, Ecology and Earth Sciences, University of Calabria, 87036 Arcavacata of Rende, Italy (A.M.)

出版信息

Plant Physiol. 2015 Nov;169(3):2200-14. doi: 10.1104/pp.15.01310. Epub 2015 Sep 28.

Abstract

TETRASPANIN (TET) genes encode conserved integral membrane proteins that are known in animals to function in cellular communication during gamete fusion, immunity reaction, and pathogen recognition. In plants, functional information is limited to one of the 17 members of the Arabidopsis (Arabidopsis thaliana) TET gene family and to expression data in reproductive stages. Here, the promoter activity of all 17 Arabidopsis TET genes was investigated by pAtTET::NUCLEAR LOCALIZATION SIGNAL-GREEN FLUORESCENT PROTEIN/β-GLUCURONIDASE reporter lines throughout the life cycle, which predicted functional divergence in the paralogous genes per clade. However, partial overlap was observed for many TET genes across the clades, correlating with few phenotypes in single mutants and, therefore, requiring double mutant combinations for functional investigation. Mutational analysis showed a role for TET13 in primary root growth and lateral root development and redundant roles for TET5 and TET6 in leaf and root growth through negative regulation of cell proliferation. Strikingly, a number of TET genes were expressed in embryonic and seedling progenitor cells and remained expressed until the differentiation state in the mature plant, suggesting a dynamic function over developmental stages. The cis-regulatory elements together with transcription factor-binding data provided molecular insight into the sites, conditions, and perturbations that affect TET gene expression and positioned the TET genes in different molecular pathways; the data represent a hypothesis-generating resource for further functional analyses.

摘要

四跨膜蛋白(TET)基因编码保守的整合膜蛋白,在动物中,已知其在配子融合、免疫反应和病原体识别过程中的细胞通讯中发挥作用。在植物中,功能信息仅限于拟南芥(Arabidopsis thaliana)TET基因家族17个成员中的一个,以及生殖阶段的表达数据。在这里,通过pAtTET::核定位信号-绿色荧光蛋白/β-葡萄糖醛酸酶报告株系,在整个生命周期中研究了所有17个拟南芥TET基因的启动子活性,这预测了每个进化枝中旁系同源基因的功能差异。然而,在不同进化枝的许多TET基因中观察到部分重叠,这与单个突变体中很少的表型相关,因此,需要双突变体组合来进行功能研究。突变分析表明,TET13在主根生长和侧根发育中起作用,而TET5和TET6通过对细胞增殖的负调控在叶片和根系生长中起冗余作用。引人注目的是,许多TET基因在胚胎和幼苗祖细胞中表达,并一直持续到成熟植物的分化状态,这表明其在发育阶段具有动态功能。顺式调控元件与转录因子结合数据为影响TET基因表达的位点、条件和干扰提供了分子见解,并将TET基因定位在不同的分子途径中;这些数据为进一步的功能分析提供了一个产生假设的资源。

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