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缺氧水稻胚芽鞘的转录谱分析。

Transcript profiling of the anoxic rice coleoptile.

作者信息

Lasanthi-Kudahettige Rasika, Magneschi Leonardo, Loreti Elena, Gonzali Silvia, Licausi Francesco, Novi Giacomo, Beretta Ottavio, Vitulli Federico, Alpi Amedeo, Perata Pierdomenico

机构信息

Plant and Crop Physiology Laboratory, Scuola Superiore Sant'Anna, 56124 Pisa, Italy.

出版信息

Plant Physiol. 2007 May;144(1):218-31. doi: 10.1104/pp.106.093997. Epub 2007 Mar 16.

Abstract

Rice (Oryza sativa) seeds can germinate in the complete absence of oxygen. Under anoxia, the rice coleoptile elongates, reaching a length greater than that of the aerobic one. In this article, we compared and investigated the transcriptome of rice coleoptiles grown under aerobic and anaerobic conditions. The results allow drawing a detailed picture of the modulation of the transcripts involved in anaerobic carbohydrate metabolism, suggesting up-regulation of the steps required to produce and metabolize pyruvate and its derivatives. Sugars appear to play a signaling role under anoxia, with several genes indirectly up-regulated by anoxia-driven sugar starvation. Analysis of the effects of anoxia on the expansin gene families revealed that EXPA7 and EXPB12 are likely to be involved in rice coleoptile elongation under anoxia. Genes coding for ethylene response factors and heat shock proteins are among the genes modulated by anoxia in both rice and Arabidopsis (Arabidopsis thaliana). Identification of anoxia-induced ethylene response factors is suggestive because genes belonging to this gene family play a crucial role in rice tolerance to submergence, a process closely related to, but independent from, the ability to germinate under anoxia. Genes coding for some enzymes requiring oxygen for their activity are dramatically down-regulated under anoxia, suggesting the existence of an energy-saving strategy in the regulation of gene expression.

摘要

水稻(Oryza sativa)种子在完全无氧的情况下也能发芽。在缺氧条件下,水稻胚芽鞘会伸长,其长度超过有氧条件下生长的胚芽鞘。在本文中,我们比较并研究了在有氧和无氧条件下生长的水稻胚芽鞘的转录组。这些结果使我们能够详细描绘出参与无氧碳水化合物代谢的转录本的调控情况,表明丙酮酸及其衍生物的产生和代谢所需步骤被上调。糖类在缺氧条件下似乎发挥着信号作用,一些基因因缺氧导致的糖饥饿而间接上调。对缺氧对伸展蛋白基因家族影响的分析表明,EXPA7和EXPB12可能参与了缺氧条件下水稻胚芽鞘的伸长。编码乙烯反应因子和热休克蛋白的基因是水稻和拟南芥(Arabidopsis thaliana)中受缺氧调控的基因之一。缺氧诱导的乙烯反应因子的鉴定具有重要意义,因为属于该基因家族的基因在水稻耐淹性中起着关键作用,而耐淹性与在缺氧条件下发芽的能力密切相关但又相互独立。编码一些其活性需要氧气的酶的基因在缺氧条件下显著下调,这表明在基因表达调控中存在一种节能策略。

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