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Polymorphic responses of Medicago truncatula accessions to potassium deprivation

机译:Medicago Truncatula accations对钾剥夺的多态性反应

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摘要

Potassium (K~+) is an essential macronutrient for plants and the most abundant cation in cells. Due to variable K~+ availability in the environment, plants must be able to adjust their developmental, physiological and transcriptional responses. The plant development to K+ deprivation was not well studied in legumes thus far. We recently described the first adaptation mechanisms of the model legume Medicago truncatula Jemalong A17 to long-term K+ deprivation and analyzed these responses in the contextof arbuscular mycorrhizal symbiosis. Here we report polymorphic growth variations of two genetically very different accessions of M. truncatula to K+-limiting conditions, Jemalong A17, and the Tunisian accession Tn11.1. The faster adaptation of Tn11.1 than A17 to K+ shortage might be due to its greater adaptation to saline soils. Examining in a more systematic way the developmental adaptation of various M. truncatula accessions to K+ deprivation will provide a better understanding of how legume evolvedto cope with this stressful condition.
机译:钾(K~+)是植物必需的大量营养素,也是细胞中含量最丰富的阳离子。由于环境中K~+的可利用性不同,植物必须能够调节其发育、生理和转录反应。迄今为止,豆科植物对缺钾的植物发育还没有很好的研究。我们最近描述了豆科模式苜蓿Jemalong A17对长期K+剥夺的首次适应机制,并在丛枝菌根共生的背景下分析了这些反应。在这里,我们报告了两个在K+限制条件下遗传上非常不同的M.truncatula品系Jemalong A17和突尼斯品系Tn11的多态性生长变异。1.Tn11的快速适应。与A17相比,K+缺乏可能是因为其对盐渍土的适应性更强。以一种更系统的方式研究各种截形豆科植物对K+剥夺的发育适应,将有助于更好地理解豆类植物如何进化来应对这种压力条件。

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