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在不同铝敏感性水稻品种中鉴定铝响应基因。

Identification of aluminium-responsive genes in rice cultivars with different aluminium sensitivities.

作者信息

Zhang Jianjun, He Zhenghui, Tian Hua, Zhu Guohui, Peng Xinxiang

机构信息

Laboratory of Molecular Plant Physiology, College of Life Sciences, South China Agricultural University, Guangzhou 510642, PR China.

出版信息

J Exp Bot. 2007;58(8):2269-78. doi: 10.1093/jxb/erm110. Epub 2007 May 24.

Abstract

Aluminium (Al) toxicity is a worldwide problem in agricultural practice. Based on evidence that Al resistance may be an inducible process and that rice is one of the most Al-resistant crops, the gene transcriptional responses to Al were investigated in two contrasting rice cultivars (resistant XN1 versus sensitive XX2) using differential display reverse transcription-PCR (DDRT-PCR) in combination with northern blotting analysis. A total of 37 genes were identified as differentially expressed, of which five have been previously known as Al regulated while the others are novel genes. Among the up-regulated genes, four encode ion transporters, two are involved in signal transduction, and five in the synthesis of cysteine and metallothionein. These could be members that are potentially involved in Al adaptation or resistance. On the other hand, the transcription of 17 genes was strongly inhibited under Al stress. These genes are associated with cytoskeletal dynamics and metabolism, and could be possible targets associated with Al toxicity. All of these differentially expressed genes may represent candidates that function in Al responses. The results suggest, at the transcriptional level, that cytoskeletal disruption may be associated with Al toxicity, whereas ion transport and sulphur metabolism could play major roles in Al adaptation or tolerance in rice.

摘要

铝(Al)毒性是农业生产中一个全球性的问题。基于铝抗性可能是一个可诱导过程的证据,以及水稻是最耐铝的作物之一,利用差异显示逆转录聚合酶链反应(DDRT-PCR)结合Northern印迹分析,研究了两个对比鲜明的水稻品种(抗性品种XN1与敏感品种XX2)对铝的基因转录反应。总共鉴定出37个差异表达基因,其中5个先前已知受铝调控,其他则是新基因。在上调基因中,4个编码离子转运蛋白,2个参与信号转导,5个参与半胱氨酸和金属硫蛋白的合成。这些可能是潜在参与铝适应或抗性的成员。另一方面,17个基因的转录在铝胁迫下受到强烈抑制。这些基因与细胞骨架动态和代谢相关,可能是与铝毒性相关的潜在靶点。所有这些差异表达基因可能代表在铝反应中起作用的候选基因。结果表明,在转录水平上,细胞骨架破坏可能与铝毒性相关,而离子转运和硫代谢可能在水稻对铝的适应或耐受中起主要作用。

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