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Salt-responsive genes in rice revealed by cDNA microarray analysis

机译:cDNA基因芯片分析揭示水稻中的盐响应基因

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We used cDNA microarrays containing -9,000 unigenes to identify 486 salt responsive expressed sequence tags (ESTs) (representing -450 unigenes) in shoots of the highly salt-tolerant rice variety, Nona Bokra (Oryza sativa L. ssp. Indica pv. Nona). Someof the genes identified in this study had previously been associated with salt stress. However the majority were novel, indicating that there is a great number of genes that are induced by salt exposure. Analysis of the salt stress expression profile data of Nona provided clues regarding some putative cellular and molecular processes that are undertaken by this tolerant rice variety in response to salt stress. Namely, we found that multiple transcription factors were induced during the initial salt response of shoots. Many genes whose encoded proteins are implicated in detoxification, protectant and transport were rapidly induced. Genes supporting photosynthesis were repressed and those supporting carbohydrate metabolism were altered. Commonality among the genes induced by salt exposure with those induced during senescence and biotic stress responses suggests that there are shared signaling pathways among these processes. We further compared the transcriptome changes of the salt-sensitive cultivar, IR28, with that of Nona rice. Many genes that are salt responsive in Nona were found to be differentially regulated in IR28. This study identified a large number of candidate functional genes that appear to be involved in salt tolerance and further examination of these genes may enable the molecular basis of salt tolerance to be elucidated.
机译:我们使用包含-9,000个单基因的cDNA微阵列,在高度耐盐的水稻品种Nona Bokra(Oryza sativa L. ssp。Indica pv。Nona)的芽中鉴定了486个盐反应性表达序列标签(EST)(代表-450个单基因)。 。该研究中鉴定出的某些基因以前与盐胁迫有关。然而,大多数是新颖的,表明有大量的盐暴露诱导基因。对Nona盐胁迫表达谱数据的分析提供了有关该耐性水稻品种响应盐胁迫而进行的一些推测的细胞和分子过程的线索。即,我们发现在芽的初始盐反应期间诱导了多种转录因子。迅速诱导了许多其编码蛋白质与排毒,保护和运输有关的基因。支持光合作用的基因被抑制,而支持碳水化合物代谢的基因被改变。盐暴露诱导的基因与衰老和生物应激反应中诱导的基因之间的共同性表明,这些过程之间存在共享的信号传导途径。我们进一步比较了盐敏感品种IR28和Nona水稻的转录组变化。发现在Nona中对盐有反应的许多基因在IR28中受到差异调节。这项研究鉴定了似乎与耐盐性有关的大量候选功能基因,对这些基因的进一步检查可能使阐明耐盐性的分子基础成为可能。

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