首页> 外文期刊>PLoS One >The influence of transpiration on foliar accumulation of salt and nutrients under salinity in poplar ( Populus × canescens )
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The influence of transpiration on foliar accumulation of salt and nutrients under salinity in poplar ( Populus × canescens )

机译:蒸气对杨树(Populus×Canescens)的盐和营养素叶和营养成分的影响

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Increasing salinity is one of the major drawbacks for plant growth. Besides the ion itself being toxic to plant cells, it greatly interferes with the supply of other macronutrients like potassium, calcium and magnesium. However, little is known about how sodium affects the translocation of these nutrients from the root to the shoot. The major driving force of this translocation process is thought to be the water flow through the xylem driven by transpiration. To dissect the effects of transpiration from those of salinity we compared salt stressed, ABA treated and combined salt- and ABA treated poplars with untreated controls. Salinity reduced the root content of major nutrients like K + , Ca 2+ and Mg 2+ . Less Ca 2+ and Mg 2+ in the roots resulted in reduced leaf Ca 2+ and leaf Mg 2+ levels due to reduced stomatal conductance and reduced transpiration. Interestingly, leaf K + levels were positively affected in leaves under salt stress although there was less K + in the roots under salt. In response to ABA, transpiration was also decreased and Mg 2+ and Ca 2+ levels decreased comparably to the salt stress treatment, while K + levels were not affected. Thus, our results suggest that loading and retention of leaf K + is enhanced under salt stress compared to merely transpiration driven cation supply.
机译:增加盐度是植物生长的主要缺点之一。除了离子本身对植物细胞有毒,它很大地干扰了其他MACRORRIELS,如钾,钙和镁。然而,关于钠如何影响这些营养素的易位从根部到射击的情况知之甚少。这种易位过程的主要驱动力被认为是通过蒸腾驱动的木质的水流。将蒸腾物与盐度的含量剖析,与未经处理的对照组合盐胁迫,ABA处理和组合的盐和ABA处理的杨树。盐度降低了像K +,Ca 2+和Mg 2+一样的主要营养素的根含量。根中较少的Ca 2+和Mg 2+导致由于气孔导率降低和减少蒸腾而导致的叶片Ca +和叶Mg 2+水平。有趣的是,叶k +水平在盐胁迫下的叶片中受到肯定的影响,尽管盐下的根部少于K +。响应于ABA,蒸腾也降低,与盐应激处理相比,Mg 2+和Ca 2+水平降低,而K +水平不受影响。因此,我们的结果表明,与仅蒸腾驱动的阳离子供应相比,在盐胁迫下,叶k +的装载和保留增强。

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