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拟南芥对氮素限制的响应转录组的全基因组分析及其受泛素连接酶基因NLA的调控

Genome-wide analysis of Arabidopsis responsive transcriptome to nitrogen limitation and its regulation by the ubiquitin ligase gene NLA.

作者信息

Peng Mingsheng, Bi Yong-Mei, Zhu Tong, Rothstein Steven J

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

Plant Mol Biol. 2007 Dec;65(6):775-97. doi: 10.1007/s11103-007-9241-0. Epub 2007 Sep 21.

Abstract

Nitrogen is an essential mineral nutrient and is required in great abundance for plant growth and development. Insufficient nitrogen triggers extensive physiological and biochemical changes in plants which constitute a set of adaptive responses to nitrogen limitation. In this study, to determine the genome-wide transcriptome response to nitrogen limitation, Arabidopsis plants were grown with limiting (3 mM) and sufficient (10 mM) nitrate, respectively, and their gene expression profiles were analyzed using Affymetrix GeneChip arrays. In addition to inducing the adaptive responses in Arabidopsis, nitrogen limitation altered the expression levels of 629 genes with 340 up-regulated and 289 down-regulated. The up-regulated group included the genes involved in protein degradation and the biosynthesis of anthocyanin and phenylpropanoids. The down-regulated group contained the genes functioning in photosynthesis and in the synthesis of nitrogenous macromolecules such as chlorophyll, proteins, amino acids and nucleotides. Numerous nitrogen limitation responsive genes encode transcription factors, signal transduction components, and proteins required for hormone synthesis and response. The Arabidopsis nitrogen limitation adaptation mutant (nla) is defective in developing the nitrogen limitation adaptive responses. The microarray analysis revealed that the absence of the functional NLA in the nla mutant extensively altered its responsive transcriptome to nitrogen limitation. In this mutant 1122 genes were up-regulated and 622 repressed. It was also found that the nla mutant phenotype was associated with the early induction of senescence-associated genes. This study presents a genome-wide view of Arabidopsis transcriptome response to nitrogen limitation and its regulation by NLA, and provides information to probe the molecular mechanism controlling plant adaptability to nitrogen limitation.

摘要

氮是一种必需的矿质营养元素,植物生长发育需要大量的氮。氮素不足会引发植物广泛的生理和生化变化,这些变化构成了对氮素限制的一系列适应性反应。在本研究中,为了确定全基因组转录组对氮素限制的反应,分别用限量(3 mM)和足量(10 mM)硝酸盐培养拟南芥植株,并使用Affymetrix基因芯片阵列分析其基因表达谱。除了诱导拟南芥的适应性反应外,氮素限制还改变了629个基因的表达水平,其中340个上调,289个下调。上调的基因包括参与蛋白质降解以及花青素和苯丙烷类生物合成的基因。下调的基因包括在光合作用以及叶绿素、蛋白质、氨基酸和核苷酸等含氮大分子合成中起作用的基因。许多氮素限制响应基因编码转录因子、信号转导成分以及激素合成和反应所需的蛋白质。拟南芥氮素限制适应突变体(nla)在形成氮素限制适应性反应方面存在缺陷。微阵列分析表明,nla突变体中功能性NLA的缺失广泛改变了其对氮素限制的响应转录组。在该突变体中,1122个基因上调,622个基因被抑制。还发现nla突变体表型与衰老相关基因的早期诱导有关。本研究展示了拟南芥转录组对氮素限制的全基因组视图及其受NLA的调控,并为探究控制植物对氮素限制适应性的分子机制提供了信息。

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