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拟南芥AtGRDP1基因表达的改变影响角果和种子发育。

Modification of AtGRDP1 gene expression affects silique and seed development in Arabidopsis thaliana.

作者信息

Rodríguez-Hernández Aída Araceli, Muro-Medina Carlos Vladimir, Ramírez-Alonso Jocelin Itzel, Jiménez-Bremont Juan Francisco

机构信息

División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica AC, Camino a la Presa de San José 2055, C.P. 78216, San Luis Potosí, SLP, Mexico.

División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica AC, Camino a la Presa de San José 2055, C.P. 78216, San Luis Potosí, SLP, Mexico.

出版信息

Biochem Biophys Res Commun. 2017 Apr 29;486(2):252-256. doi: 10.1016/j.bbrc.2017.03.015. Epub 2017 Mar 8.

Abstract

Glycine Rich Proteins (GRPs) are induced at different developmental stages and in specific plant tissues. Recently, we described a novel Arabidopsis gene encoding a short glycine-rich domain protein (AtGRDP1). This gene is involved in abiotic stress responsiveness; the Atgrdp1-null mutant seeds were more sensitive to stress, while the opposite phenotype was achieved by AtGRDP1 overexpression. In this study, we analyzed the phenotype of the fruits produced by Arabidopsis Atgrdp1 mutants and 35S::AtGRDP1 overexpression lines. Our analyses revealed important changes in silique length, seed number, seed weight and morphology in the analyzed lines. In particular, Atgrdp1 mutant lines exhibited several defects including short siliques, a diminished number of seeds per silique, and a reduction in seed size and weight as compared to Col-0. The overexpression of the AtGRDP1 gene also generated phenotypes with alterations in size of silique, number of seeds per silique, and size and weight of the seed. In addition, the expression analysis of AtGRDP1 gene showed that it was expressed in floral and fruit organs, with the highest expression level in mature siliques. The alterations in the siliques and seeds traits in the Atgrdp1 mutant line, as well as the phenotypes observed in AtGRDP1 overexpression lines, suggest a role of the AtGRDP1 gene in the Arabidopsis fruit development.

摘要

富含甘氨酸的蛋白质(GRPs)在不同的发育阶段和特定的植物组织中被诱导表达。最近,我们描述了一个编码短的富含甘氨酸结构域蛋白的拟南芥新基因(AtGRDP1)。该基因参与非生物胁迫响应;Atgrdp1基因缺失突变体种子对胁迫更敏感,而AtGRDP1过表达则产生相反的表型。在本研究中,我们分析了拟南芥Atgrdp1突变体和35S::AtGRDP1过表达株系所产生果实的表型。我们的分析揭示了所分析株系在角果长度、种子数量、种子重量和形态方面的重要变化。特别是,与Col-0相比,Atgrdp1突变株系表现出几个缺陷,包括角果短、每个角果的种子数量减少以及种子大小和重量降低。AtGRDP1基因的过表达也产生了角果大小、每个角果的种子数量以及种子大小和重量发生改变的表型。此外,AtGRDP1基因的表达分析表明它在花和果实器官中表达,在成熟角果中的表达水平最高。Atgrdp1突变株系中角果和种子性状的改变,以及AtGRDP1过表达株系中观察到的表型,表明AtGRDP1基因在拟南芥果实发育中起作用。

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