首页> 外文期刊>Plant, Cell & Environment >Expression of an apoplast-localized BURP-domain protein from soybean (GmRD22) enhances tolerance towards abiotic stress. (Virtual special issue on whole-plant water transport.)
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Expression of an apoplast-localized BURP-domain protein from soybean (GmRD22) enhances tolerance towards abiotic stress. (Virtual special issue on whole-plant water transport.)

机译:来自大豆的质外体定位的BURP结构域蛋白(GmRD22)的表达增强了对非生物胁迫的耐受性。 (有关全厂水运输的虚拟特刊。)

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摘要

The BURP-domain protein family comprises a diverse group of plant-specific proteins that share a conserved BURP domain at the C terminus. However, there have been only limited studies on the functions and subcellular localization of these proteins. Members of the RD22-like subfamily are postulated to associate with stress responses due to the stress-inducible nature of some RD22-like genes. In this report, we used different transgenic systems (cells and in planta) to show that the expression of a stress-inducible RD22-like protein from soybean (GmRD22) can alleviate salinity and osmotic stress. We also performed detailed microscopic studies using both fusion proteins and immuno-electron microscopic techniques to demonstrate the apoplast localization of GmRD22, for which the BURP domain is a critical determinant of the subcellular localization. The apoplastic GmRD22 interacts with a cell wall peroxidase and the ectopic expression of GmRD22 in both transgenic Arabidopsis thaliana and transgenic rice resulted in increased lignin production when subjected to salinity stress. It is possible that GmRD22 regulates cell wall peroxidases and hence strengthens cell wall integrity under such stress conditions.
机译:BURP结构域蛋白家族包含一组不同的植物特异性蛋白,它们在C末端共享一个保守的BURP结构域。然而,关于这些蛋白质的功能和亚细胞定位的研究仅有限。由于某些RD22样基因的应激诱导性质,假定RD22样亚家族的成员与应激反应相关。在本报告中,我们使用了不同的转基因系统(细胞和植物中)来表明大豆中胁迫诱导的RD22样蛋白(GmRD22)的表达可以减轻盐分和渗透胁迫。我们还使用融合蛋白和免疫电子显微镜技术进行了详细的显微镜研究,以证明GmRD22的质外体定位,而BURP结构域是亚细胞定位的关键决定因素。质外性GmRD22与细胞壁过氧化物酶相互作用,并且在盐分胁迫下,转基因拟南芥和转基因水稻中GmRD22的异位表达导致木质素产生增加。在这种应激条件下,GmRD22可能调节细胞壁过氧化物酶,从而增强细胞壁完整性。

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