Van Hoewyk Douglas, Garifullina Gulnara F, Ackley Ashley R, Abdel-Ghany Salah E, Marcus Matthew A, Fakra Sirine, Ishiyama Keiki, Inoue Eri, Pilon Marinus, Takahashi Hideki, Pilon-Smits Elizabeth A H
Biology Department, Colorado State University, Fort Collins, CO 80523, USA.
Plant Physiol. 2005 Nov;139(3):1518-28. doi: 10.1104/pp.105.068684. Epub 2005 Oct 21.
Selenium (Se) is an essential element for many organisms but is toxic at higher levels. CpNifS is a chloroplastic NifS-like protein in Arabidopsis (Arabidopsis thaliana) that can catalyze the conversion of cysteine into alanine and elemental sulfur (S0) and of selenocysteine into alanine and elemental Se (Se0). We overexpressed CpNifS to investigate the effects on Se metabolism in plants. CpNifS overexpression significantly enhanced selenate tolerance (1.9-fold) and Se accumulation (2.2-fold). CpNifS overexpressors showed significantly reduced Se incorporation into protein, which may explain their higher Se tolerance. Also, sulfur accumulation was enhanced by approximately 30% in CpNifS overexpressors, both on media with and without selenate. Root transcriptome changes in response to selenate mimicked the effects observed under sulfur starvation. There were only a few transcriptome differences between CpNifS-overexpressing plants and wild type, besides the 25- to 40-fold increase in CpNifS levels. Judged from x-ray analysis of near edge spectrum, both CpNifS overexpressors and wild type accumulated mostly selenate (Se(VI)). In conclusion, overexpression of this plant NifS-like protein had a pronounced effect on plant Se metabolism. The observed enhanced Se accumulation and tolerance of CpNifS overexpressors show promise for use in phytoremediation.
硒(Se)是许多生物体必需的元素,但在较高水平时具有毒性。CpNifS是拟南芥中的一种叶绿体类NifS蛋白,它可以催化半胱氨酸转化为丙氨酸和元素硫(S0),以及硒代半胱氨酸转化为丙氨酸和元素硒(Se0)。我们过表达CpNifS以研究其对植物硒代谢的影响。CpNifS的过表达显著增强了植物对硒酸盐的耐受性(提高了1.9倍)和硒积累量(提高了2.2倍)。CpNifS过表达植株中硒掺入蛋白质的量显著减少,这可能解释了它们对硒具有更高耐受性的原因。此外,无论培养基中是否含有硒酸盐,CpNifS过表达植株中的硫积累量均增加了约30%。根系转录组对硒酸盐的响应变化类似于在硫饥饿条件下观察到的效应。除了CpNifS水平提高了25至40倍外,CpNifS过表达植株与野生型之间的转录组差异很小。从近边光谱的X射线分析判断,CpNifS过表达植株和野生型积累的主要是硒酸盐(Se(VI))。总之,这种植物类NifS蛋白的过表达对植物硒代谢有显著影响。观察到的CpNifS过表达植株中硒积累量增加和耐受性增强,表明其在植物修复中有应用前景。