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首页> 外文期刊>BMC Plant Biology >Global transcriptome profiling of wild soybean (Glycine soja) roots under NaHCO3 treatment
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Global transcriptome profiling of wild soybean (Glycine soja) roots under NaHCO3 treatment

机译:NaHCO3处理下的野生大豆(大豆大豆)根的全局转录组图谱

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Background Plant roots are the primary site of perception and injury for saline-alkaline stress. The current knowledge of saline-alkaline stress transcriptome is mostly focused on saline (NaCl) stress and only limited information on alkaline (NaHCO3) stress is available. Results Using Affymetrix? Soybean GeneChip?, we conducted transcriptional profiling on Glycine soja roots subjected to 50 mmol/L NaHCO3 treatment. In a total of 7088 probe sets, 3307 were up-regulated and 5720 were down-regulated at various time points. The number of significantly stress regulated genes increased dramatically after 3 h stress treatment and peaked at 6 h. GO enrichment test revealed that most of the differentially expressed genes were involved in signal transduction, energy, transcription, secondary metabolism, transporter, disease and defence response. We also detected 11 microRNAs regulated by NaHCO3 stress. Conclusions This is the first comprehensive wild soybean root transcriptome analysis under alkaline stress. These analyses have identified an inventory of genes with altered expression regulated by alkaline stress. The data extend the current understanding of wild soybean alkali stress response by providing a set of robustly selected, differentially expressed genes for further investigation.
机译:背景技术植物根是盐碱胁迫的感知和伤害的主要部位。目前对盐碱胁迫转录组的了解主要集中在盐胁迫(NaCl)上,而关于碱胁迫(NaHCO 3 )的信息很少。使用Affymetrix 的结果? Soybean GeneChip ?,我们对经过50 mmol / L NaHCO 3 处理的大豆大豆根进行了转录分析。在总共7088个探针集中,在不同时间点上调了3307个探针,在下调了5720个探针。应激处理3 h​​后,显着调控应激的基因数量急剧增加,并在6 h达到峰值。 GO富集试验表明,大多数差异表达基因都参与信号转导,能量,转录,次级代谢,转运蛋白,疾病和防御反应。我们还检测到11种受NaHCO 3 胁迫调节的microRNA。结论这是碱性胁迫下首次进行的野生大豆根转录组综合分析。这些分析已经鉴定了具有受碱性胁迫调节的表达改变的基因的库存。数据通过提供一组可靠选择的差异表达基因进行进一步研究,扩展了对野生大豆碱胁迫反应的当前理解。

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