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首页> 外文期刊>BMC Plant Biology >Transcriptional profiling of Medicago truncatula under salt stress identified a novel CBF transcription factor MtCBF4 that plays an important role in abiotic stress responses
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Transcriptional profiling of Medicago truncatula under salt stress identified a novel CBF transcription factor MtCBF4 that plays an important role in abiotic stress responses

机译:盐胁迫下run藜苜蓿的转录谱分析表明,一种新型的CBF转录因子MtCBF4在非生物胁迫响应中起着重要作用

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Background Salt stress hinders the growth of plants and reduces crop production worldwide. However, different plant species might possess different adaptive mechanisms to mitigate salt stress. We conducted a detailed pathway analysis of transcriptional dynamics in the roots of Medicago truncatula seedlings under salt stress and selected a transcription factor gene, MtCBF4, for experimental validation. Results A microarray experiment was conducted using root samples collected 6, 24, and 48 h after application of 180 mM NaCl. Analysis of 11 statistically significant expression profiles revealed different behaviors between primary and secondary metabolism pathways in response to external stress. Secondary metabolism that helps to maintain osmotic balance was induced. One of the highly induced transcription factor genes was successfully cloned, and was named MtCBF4. Phylogenetic analysis revealed that MtCBF4, which belongs to the AP2-EREBP transcription factor family, is a novel member of the CBF transcription factor in M. truncatula. MtCBF4 is shown to be a nuclear-localized protein. Expression of MtCBF4 in M. truncatula was induced by most of the abiotic stresses, including salt, drought, cold, and abscisic acid, suggesting crosstalk between these abiotic stresses. Transgenic Arabidopsis over-expressing MtCBF4 enhanced tolerance to drought and salt stress, and activated expression of downstream genes that contain DRE elements. Over-expression of MtCBF4 in M. truncatula also enhanced salt tolerance and induced expression level of corresponding downstream genes. Conclusion Comprehensive transcriptomic analysis revealed complex mechanisms exist in plants in response to salt stress. The novel transcription factor gene MtCBF4 identified here played an important role in response to abiotic stresses, indicating that it might be a good candidate gene for genetic improvement to produce stress-tolerant plants.
机译:背景技术盐胁迫阻碍了植物的生长并降低了全世界的农作物产量。但是,不同的植物物种可能具有不同的适应机制来缓解盐胁迫。我们对盐胁迫下的紫花苜蓿幼苗根部的转录动力学进行了详细的途径分析,并选择了转录因子基因MtCBF4进行实验验证。结果使用在施用180 mM NaCl后6、24和48 h收集的根样品进行了微阵列实验。对11种具有统计学意义的表达谱的分析显示,在响应外部压力时,一级和二级代谢途径之间的行为不同。诱导了有助于维持渗透平衡的次级代谢。已成功克隆了一种高度诱导的转录因子基因,并将其命名为MtCBF4。系统发育分析表明,属于AP2-EREBP转录因子家族的MtCBF4是截叶分枝杆菌CBF转录因子的新成员。 MtCBF4显示为核定位蛋白。大部分非生物胁迫(包括盐,干旱,寒冷和脱落酸)诱导了截叶分枝杆菌中MtCBF4的表达,表明这些非生物胁迫之间存在串扰。过表达MtCBF4的转基因拟南芥提高了对干旱和盐胁迫的耐受性,并激活了含有DRE元件的下游基因的表达。在truncatula中MtCBF4的过表达也增强了耐盐性并诱导了相应下游基因的表达水平。结论全面的转录组分析表明,植物对盐胁迫的响应机制复杂。在此鉴定出的新型转录因子基因MtCBF4在应对非生物胁迫方面起着重要作用,表明它可能是遗传改良产生抗逆植物的良好候选基因。

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