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镉胁迫下豌豆植株中S-亚硝基谷胱甘肽的定位及S-亚硝基谷胱甘肽还原酶的表达

Localization of S-nitrosoglutathione and expression of S-nitrosoglutathione reductase in pea plants under cadmium stress.

作者信息

Barroso Juan B, Corpas Francisco J, Carreras Alfonso, Rodríguez-Serrano María, Esteban Francisco J, Fernández-Ocaña Ana, Chaki Mounira, Romero-Puertas María C, Valderrama Raquel, Sandalio Luisa M, del Río Luis A

机构信息

Grupo de Señalización Molecular y Sistemas Antioxidantes en Plantas, Unidad Asociada al CSIC (Estación Experimental del Zaidín), Area de Bioquímica y Biología Molecular, Universidad de Jaén, E- 23071 Jaén, Spain.

出版信息

J Exp Bot. 2006;57(8):1785-93. doi: 10.1093/jxb/erj175. Epub 2006 Apr 4.

Abstract

S-nitrosoglutathione (GSNO) is considered a natural nitric oxide (NO.) reservoir and a reactive nitrogen intermediate in animal cells, but little is known about this molecule and its metabolism in plant systems. In this work, using pea plants as a model system, the presence of GSNO in collenchyma cells was demonstrated by an immunohistochemical method. When pea plants were grown with a toxic Cd concentration (50 microM) the content of GSNO in collenchyma cells was drastically reduced. Determination of the nitric oxide (NO.) and gluthathione contents in leaves by confocal laser scanning microscopy and HPLC, respectively, showed a marked decrease of both compounds in plants treated with cadmium. The analysis of the S-nitrosoglutathione reductase (GSNOR) activity and its transcript expression in leaves showed a reduction of 31% by cadmium. These results indicate that GSNO is associated with a specific plant cell type, and this metabolite and its related catabolic activity, GSNOR, are both down-regulated under Cd stress.

摘要

S-亚硝基谷胱甘肽(GSNO)被认为是动物细胞中的一种天然一氧化氮(NO·)储存库和活性氮中间体,但对于该分子及其在植物系统中的代谢却知之甚少。在这项研究中,以豌豆植株作为模型系统,采用免疫组织化学方法证实了厚角组织细胞中存在GSNO。当豌豆植株在有毒的镉浓度(50微摩尔)下生长时,厚角组织细胞中GSNO的含量急剧降低。分别通过共聚焦激光扫描显微镜和高效液相色谱法测定叶片中的一氧化氮(NO·)和谷胱甘肽含量,结果显示镉处理的植株中这两种化合物的含量均显著下降。对叶片中S-亚硝基谷胱甘肽还原酶(GSNOR)活性及其转录本表达的分析表明,镉使其降低了31%。这些结果表明,GSNO与特定的植物细胞类型相关,并且这种代谢产物及其相关的分解代谢活性GSNOR在镉胁迫下均被下调。

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