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首页> 外文期刊>Plant Physiology >Differential Expression of the TFIIIA Regulatory Pathway in Response to Salt Stress between Medicago truncatula Genotypes
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Differential Expression of the TFIIIA Regulatory Pathway in Response to Salt Stress between Medicago truncatula Genotypes

机译:截短苜蓿基因型之间的盐胁迫响应中的TFIIIA调节途径的差异表达。

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Soil salinity is one of the most significant abiotic stresses for crop plants, including legumes. These plants can establish root symbioses with nitrogen-fixing soil bacteria and are able to grow in nitrogen-poor soils. Medicago truncatula varieties show diverse adaptive responses to environmental conditions, such as saline soils. We have compared the differential root growth of two genotypes of M. truncatula (108-R and Jemalong A17) in response to salt stress. Jemalong A17 is more tolerant to salt stress than 108-R, regarding both root and nodulation responses independently of the nitrogen status of the media. A dedicated macroarray containing 384 genes linked to stress responses was used to compare root gene expression during salt stress in these genotypes. Several genes potentially associated with the contrasting cellular responses of these plants to salt stress were identified as expressed in the more tolerant genotype even in the absence of stress. Among them, a homolog of the abiotic stress-related COLD-REGULATEDA1 gene and a TFIIIA-related transcription factor (TF), MtZpt2-1, known to regulate the former gene. Two MtZpt2 TFs (MtZpt2-1 and MtZpt2-2) were found in Jemalong A17 plants and showed increased expression in roots when compared to 108-R. Overexpression of these TFs in the sensitive genotype 108-R, but not in Jemalong A17, led to increased root growth under salt stress, suggesting a role for this pathway in the adaptive response to salt stress of these M. truncatula genotypes.
机译:土壤盐分是包括豆类在内的农作物最重要的非生物胁迫之一。这些植物可以与固氮土壤细菌建立根部共生关系,并能够在贫氮土壤中生长。 ca藜苜蓿品种显示出对环境条件(例如盐渍土)的多种适应性响应。我们已经比较了M. truncatula(108-R和Jemalong A17)两种基因型对盐胁迫的差异根生长。关于根和结瘤响应,与介质的氮素状况无关,Jemalong A17比108-R更耐盐胁迫。包含384个与胁迫反应相关的基因的专用宏芯片用于比较这些基因型在盐胁迫期间根基因的表达。甚至在不存在胁迫的情况下,已鉴定出以更耐受的基因型表达的与这些植物对盐胁迫的相反细胞应答相关的几个基因。其中,非生物胁迫相关的COLD-REGULATEDA1基因的同系物和TFIIIA相关的转录因子(TF)MtZpt2-1,已知其调控前一个基因。在Jemalong A17植物中发现了两个MtZpt2 TF(MtZpt2-1和MtZpt2-2),与108-R相比,它们在根中的表达增加。这些TFs在敏感基因型108-R中过表达,但在Jemalong A17中没有表达,导致盐胁迫下根系生长增加,这表明该途径在这些run形支原体基因型对盐胁迫的适应性反应中具有作用。

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