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Identification of transcription factors involved in root apex responses to salt stress in Medicago truncatula

机译:鉴定紫花苜蓿根尖对盐胁迫响应的转录因子

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The root apex contains meristematic cells that determine root growth and architecture in the soil. Specific transcription factor (TF) genes in this region may integrate endogenous signals and external cues to achieve this. Early changes in transcriptional responses involving TF genes after a salt stress in Medicago truncatula (Mt) roots were analysed using two complementary transcriptomic approaches. Forty-six salt-regulated TF genes were identified using massive quantitative real-time RT-PCR TF profiling in whole roots. In parallel, Mt16K+ microarray analysis revealed 824 genes (including 84 TF sequences) showing significant changes (p < 0.001) in their expression in root apexes after a salt stress. Analysis of salt-stress regulation in root apexes versus whole roots showed that several TF genes have more than 30-fold expression differences including specific members of AP2/EREBP, HD-ZIP, and MYB TF families. Several salt-induced TF genes also respond to other abiotic stresses as osmotic stress, cold and heat, suggesting that they participate in a general stress response. Our work suggests that spatial differences of TF gene regulation by environmental stresses in various root regions may be crucial for the adaptation of their growth to specific soil environments.
机译:根尖包含分生细胞,这些分生细胞决定土壤中根的生长和结构。该区域中的特定转录因子(TF)基因可能整合内源信号和外部提示以实现此目的。使用两种互补的转录组学方法分析了紫花苜蓿(Mt)根中盐胁迫后涉及TF基因的转录应答的早期变化。在整个根中使用大量实时定量RT-PCR TF分析,鉴定了46种盐调节的TF基因。同时,Mt16K +微阵列分析揭示了824个基因(包括84个TF序列),显示盐胁迫后根尖中它们的表达发生了显着变化(p <0.001)。根尖与全根的盐胁迫调控分析表明,几个TF基因的表达差异超过30倍,包括AP2 / EREBP,HD-ZIP和MYB TF家族的特定成员。几个盐诱导的TF基因还对其他非生物胁迫产生响应,例如渗透胁迫,冷热,表明它们参与了一般胁迫应答。我们的工作表明,不同根系环境胁迫对TF基因调控的空间差异可能对于其生长适应特定土壤环境至关重要。

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