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Comparative Transcriptomic Analysis of Salt Adaptation in Roots of Contrasting Medicago truncatula Genotypes

机译:截短苜蓿基因型不同根系盐分适应性的转录组学分析。

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Evolutionary diversity can be driven by the interaction of plants with different environments. Molecular bases involved in ecological adaptations to abiotic constraints can be explored using genomic tools. Legumes are major crops worldwide and soil salinity is a main stress affecting yield in these plants. We analyzed in the Medicago truncatula legume the root transcriptome of two genotypes having contrasting responses to salt stress: TN1.11, sampled in a salty Tunisian soil, and the reference Jemalong A17 genotype. TN1.11 plants show increased root growth under salt stress as well as a differential accumulation of sodium ions when compared to A17. Transcriptomic analysis revealed specific gene clusters preferentially regulated by salt in root apices of TN1.11, notably those related to the auxin pathway and to changes in histone variant isoforms. Many genes encoding transcription factors (TFs) were also differentially regulated between the two genotypes in response to salt. Among those selected for functional studies, overexpression in roots of the A17 genotype of the bHLH-type TF most differentially regulated between genotypes improved significantly root growth under salt stress. Despite the global complexity of the differential transcriptional responses, we propose that an increase in this bHLH TF expression may be linked to the adaptation of M. truncatula to saline soil environments.
机译:植物与不同环境的相互作用可以驱动进化多样性。可以使用基因组学工具探索涉及生态适应非生物限制的分子基础。豆类是世界范围内的主要农作物,土壤盐分是影响这些植物产量的主要压力。我们在run藜苜蓿豆科植物中分析了两种对盐胁迫具有相反响应的基因型的根转录组:TN1.11(在突尼斯咸土中取样)和参考吉马隆A17基因型。与A17相比,TN1.11植物在盐胁迫下表现出增加的根系生长以及钠离子的差异积累。转录组学分析显示,TN1.11根尖中的盐优先调控特定的基因簇,特别是那些与生长素途径和组蛋白变异亚型变化有关的簇。响应于盐,两种基因型之间的编码转录因子(TFs)的许多基因也受到差异调节。在选择用于功能研究的那些基因中,在基因型之间差异最大的bHLH型TF的A17基因型根的过表达显着改善了盐胁迫下的根生长。尽管差异转录反应的全球复杂性,我们建议这种bHLH TF表达的增加可能与截叶分枝杆菌对盐碱土环境的适应性有关。

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