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首页> 外文期刊>PLoS Genetics >Root Suberin Forms an Extracellular Barrier That Affects Water Relations and Mineral Nutrition in Arabidopsis
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Root Suberin Forms an Extracellular Barrier That Affects Water Relations and Mineral Nutrition in Arabidopsis

机译:根Suberin形成一种细胞外障碍,影响拟南芥的水关系和矿物质营养

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Though central to our understanding of how roots perform their vital function of scavenging water and solutes from the soil, no direct genetic evidence currently exists to support the foundational model that suberin acts to form a chemical barrier limiting the extracellular, or apoplastic, transport of water and solutes in plant roots. Using the newly characterized enhanced suberin1 (esb1) mutant, we established a connection in Arabidopsis thaliana between suberin in the root and both water movement through the plant and solute accumulation in the shoot. Esb1 mutants, characterized by increased root suberin, were found to have reduced day time transpiration rates and increased water-use efficiency during their vegetative growth period. Furthermore, these changes in suberin and water transport were associated with decreases in the accumulation of Ca, Mn, and Zn and increases in the accumulation of Na, S, K, As, Se, and Mo in the shoot. Here, we present direct genetic evidence establishing that suberin in the roots plays a critical role in controlling both water and mineral ion uptake and transport to the leaves. The changes observed in the elemental accumulation in leaves are also interpreted as evidence that a significant component of the radial root transport of Ca, Mn, and Zn occurs in the apoplast.
机译:虽然我们理解根源如何对清除水和从土壤中溶解的重要作用,但目前没有直接的遗传证据支持Suberin以改性细胞外或妊娠者的化学障碍,或妊娠障碍的基本障碍在植物根系中溶质。使用新特征的增强型Suberin1(ESB1)突变体,我们在Suberin之间的拟南芥拟南芥中建立了一系列的Suberin,通过植物和植物溶质积聚。 ESB1突变体,其特征在于根Suberin增加,发现在营养生长期期间具有降低的日时间蒸腾率和增加的水利用效率。此外,Suberin和水运输的这些变化与Ca,Mn和Zn的积累的降低有关,并且在芽中Na,S,K,As,Se和Mo的积累增加。在这里,我们提出了直接遗传证据,即确定的Suberin在控制水和矿物离子吸收和运输到叶子中起着关键作用。在叶子中的元素积累中观察到的变化也被解释为证据,即Ca,Mn和Zn的径向根传输的显着成分发生在术中。

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