Norton Gareth J, Lou-Hing Daniel E, Meharg Andrew A, Price Adam H
Department of Plant and Soil Science, Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen AB24 3UU, UK.
J Exp Bot. 2008;59(8):2267-76. doi: 10.1093/jxb/ern097. Epub 2008 May 2.
Rice (Oryza sativa) varieties that are arsenate-tolerant (Bala) and -sensitive (Azucena) were used to conduct a transcriptome analysis of the response of rice seedlings to sodium arsenate (AsV) in hydroponic solution. RNA extracted from the roots of three replicate experiments of plants grown for 1 week in phosphate-free nutrient with or without 13.3 muM AsV was used to challenge the Affymetrix (52K) GeneChip Rice Genome array. A total of 576 probe sets were significantly up-regulated at least 2-fold in both varieties, whereas 622 were down-regulated. Ontological classification is presented. As expected, a large number of transcription factors, stress proteins, and transporters demonstrated differential expression. Striking is the lack of response of classic oxidative stress-responsive genes or phytochelatin synthases/synthatases. However, the large number of responses from genes involved in glutathione synthesis, metabolism, and transport suggests that glutathione conjugation and arsenate methylation may be important biochemical responses to arsenate challenge. In this report, no attempt is made to dissect differences in the response of the tolerant and sensitive variety, but analysis in a companion article will link gene expression to the known tolerance loci available in the BalaxAzucena mapping population.
利用耐砷酸盐(品种Bala)和对砷酸盐敏感(品种Azucena)的水稻(Oryza sativa)品种,对水培溶液中水稻幼苗对砷酸钠(AsV)的反应进行转录组分析。从在含或不含13.3 μM AsV的无磷营养液中生长1周的植株的三个重复实验的根部提取RNA,用于检测Affymetrix(52K)基因芯片水稻基因组阵列。两个品种中共有576个探针集至少上调了2倍,而622个探针集下调。给出了本体分类。正如预期的那样,大量转录因子、应激蛋白和转运蛋白表现出差异表达。值得注意的是,经典的氧化应激反应基因或植物螯合素合成酶没有反应。然而,参与谷胱甘肽合成、代谢和转运的基因有大量反应,这表明谷胱甘肽结合和砷酸盐甲基化可能是对砷酸盐挑战的重要生化反应。在本报告中,没有尝试剖析耐砷品种和敏感品种反应的差异,但在一篇配套文章中的分析将把基因表达与BalaxAzucena作图群体中已知的耐砷位点联系起来。