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Comparison of salt-responsive gene regulation in rice and in the salt-tolerant Festuca rubra ssp. litoralis

机译:水稻和耐盐Festuca rubra ssp中盐响应基因调控的比较。滨海

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摘要

To identify novel elements of plant salt stress adaptation, salt-induced transcript accumulation was compared in the model crop plant rice and in the halotolerant grass Festuca rubra ssp. litoralis by cDNA-array hybridizations. Results of the study show major differences in transcript expression profiles between the salt sensitive rice and the naturally halotolerant grass species. The data indicate that the salt tolerance strategy of F. rubra ssp. litoralis involves activated expression of genes with functions in osmotic and ion homeostasis, in metabolism, and general stress defense that is missing in rice. In addition, transcripts with a function in regulation of transcription, translation, signal transduction and protein turnover showed different transcriptional responses. Among other signaling elements that were regulated by salt in the halotolerant F. rubra ssp. litoralis but not in rice, the putative serine/threonine protein kinase SnRK1b (sucrose non-fermenting-1-related kinase 1) was identified. It is hypothesized that modification of signal transduction pathways and transcriptional control in salt-sensitive species according to regulatory mechanisms identified in related halophytes can activate the complex network of molecular processes that lead to an improved tolerance of salinity.
机译:为了确定植物盐胁迫适应的新元素,比较了模型农作物水稻和耐盐草Festuca rubra ssp中盐诱导的转录本积累。 litoralis通过cDNA阵列杂交。研究结果表明,盐敏感性水稻和天然卤虫草物种之间的转录表达谱存在重大差异。数据表明,F。rubra ssp的耐盐性策略。 litoralis涉及激活基因的表达,该基因具有渗透和离子稳态,代谢以及水稻缺少的一般胁迫防御功能。另外,具有调节转录,翻译,信号转导和蛋白质更新的功能的转录物显示出不同的转录反应。在盐中,卤代人红F. ssp中受盐调节。在水稻中,但没有发现水稻中的丝氨酸/苏氨酸蛋白激酶SnRK1b(蔗糖非发酵-1相关激酶1)。据推测,根据在相关盐生植物中鉴定的调节机制,对盐敏感物种的信号转导途径的修饰和转录控制可以激活分子过程的复杂网络,从而提高盐度的耐受性。

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