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Development of a cDNA microarray to identify gene expression of Puccinellia tenuiflora under saline-alkali stress

机译:鉴定盐碱胁迫下小叶楠(Puccinellia tenuiflora)基因表达的cDNA芯片的开发

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Puccinellia tenuiflora is the main grass species growing in the saline-alkali soil of the Songnen plain in northeastern China, suggesting it has a high tolerance to saline stress. In this study, cDNA microarrays containing 1067 clones of P. tenuiflora were constructed to investigate gene expression patterns resulting from saline-alkali (NaHCO(3)) stress. RNA was extracted from P. tenuiflora treated with 400mmol L(-1) NaHCO(3) for 6, 12, 24 and 48h. Untreated (no saline-alkali stress) samples were used as control. A total of 95 transcripts were differentially regulated under the conditions studied, and 38, 35, 25 and 49 genes were differentially expressed with NaHCO(3) stress for 6, 12, 24 and 48h, respectively. Among these, approximately 40% were putative novel or functionally unknown genes, and the remainder function in photosynthesis, cell rescue, defense, transport, metabolism, transcription regulation and protein destination, etc. Analysis of the P. tenuiflora genes demonstrated the complexity of, and differences in, gene expression patterns resulting from different NaHCO(3) stress times. The genetic relationship between P. tenuiflora and other plants was investigated by BlastN analysis. The results showed nearly 20% of the expressed sequence tags from P. tenuiflora shared significant similarities with rice Oryza sativa, an important food crop. The close genetic relationship between these two species suggests that P. tenuiflora may be a good plant model for studying saline-alkali tolerance mechanisms in O. sativa.
机译:太子参(Puccinellia tenuiflora)是生长在中国东北松嫩平原盐碱地上的主要草种,表明其对盐胁迫具有较高的耐受性。在这项研究中,构建了包含1067个假单胞菌克隆的cDNA微阵列,以研究盐碱(NaHCO(3))胁迫导致的基因表达模式。从用400mmol L(-1)NaHCO(3)处理的藤黄假单胞菌提取RNA 6、12、24和48h。未经处理(无盐碱胁迫)的样品用作对照。在所研究的条件下,总共有95个转录物受到差异调节,并且分别在6、12、24和48h的NaHCO(3)胁迫下差异表达38、35、25和49个基因。其中大约40%是推定的新基因或功能未知的基因,其余的功能则在光合作用,细胞拯救,防御,运输,代谢,转录调节和蛋白质定位等方面发挥作用。对tenusflora基因的分析表明,和不同的NaHCO(3)应激时间导致的基因表达模式的差异。利用BlastN分析研究了tenuiflora和其他植物之间的遗传关系。结果表明,近20%的来自P. tenuiflora的表达序列标签与重要的粮食作物水稻Oryza sativa具有显着相似性。这两个物种之间的密切遗传关系表明,P。tenuiflora可能是研究水稻中盐碱耐受机制的良好植物模型。

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