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首页> 外文期刊>Agricultural Water Management >Combined effects of high relative humidity and K+ supply mitigates damage caused by salt stress on growth, photosynthesis and ion homeostasis in J. curcas plants
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Combined effects of high relative humidity and K+ supply mitigates damage caused by salt stress on growth, photosynthesis and ion homeostasis in J. curcas plants

机译:高相对湿度和钾离子供应的共同作用减轻了盐胁迫对麻疯树植物生长,光合作用和离子稳态的破坏

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This study evaluated the capacity of high relative humidity associated with K+ supply in mitigating harmful effects caused by salt stress on physiological parameters of Jatropha curcas plants. The plants were subjected to four different treatments (K0Na0, K0Na1, K1Na0 and K1Na1) and two different levels of humidity, low (40%) and high (80%), in chamber growth conditions. The plants' growth was higher under conditions of high relative humidity when compared to low humidity in all the treatments studied. The CO2 assimilation rate, transpiration and stomatal conductance were stimulated by high humidity independently of treatments of K+ and Na+. The Na+ concentration in the shoots was more elevated in plants treated with NaCl when compared to NaCl-free plants. On the other hand, the shoots' K+ concentration was highly stimulated in the presence of K+ ions, especially in combination with high relative humidity (RH). The shoots' Na+ transport rate was strongly stimulated by a combination of 50 mM NaCl+40% RH when compared to high humidity. Conversely, the shoots' K+ transport was significantly higher in plants when they were supplied with K+ and exposed to high relative humidity. In the roots, the transport rate of Na+ presented a similar pattern to that found in the shoot. However, surprisingly, K+ transport rate was increased in plants supplied with K+ and 40% RH in NaCl absence. The plants exposed to low relative humidity showed lower K+/Na+ ratios than plants exposed to 80% RH both in shoots and roots. In addition, the shoots and roots selectivity ((K,Na)) was strongly stimulated in plants exposed to high humidity when compared to low humidity. In conclusion, the combined effects of high relative humidity and a supply of K+ were able to improve the growth, the leaf gas exchange and ionic homeostasis of J. curcas plants. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究评估了与钾离子供应相关的高相对湿度在缓解盐胁迫对麻疯树植物生理参数造成的有害影响方面的能力。在室内生长条件下,对植物进行了四种不同的处理(K0Na0,K0Na1,K1Na0和K1Na1)和两种不同的湿度水平,即低(40%)和高(80%)。在所有研究处理中,与低湿度相比,植物在高相对湿度条件下的生长更高。高湿度刺激了CO2同化率,蒸腾作用和气孔导度,而与K +和Na +的处理无关。与不含NaCl的植物相比,用NaCl处理的植物的芽中Na +浓度更高。另一方面,在有K +离子的情况下,尤其是与高相对湿度(RH)结合使用时,可高度刺激枝条的K +浓度。与高湿度相比,50 mM NaCl + 40%RH的结合强烈刺激了芽的Na +转运速率。相反,当植物的芽被提供钾离子并暴露在高相对湿度下时,它们的钾离子转运在植物中明显更高。在根部,Na +的转运速率呈现出与芽中相似的模式。但是,令人惊讶的是,在缺少NaCl的情况下,提供有K +和40%RH的植物中K +的转运速率增加了。暴露于低相对湿度的植物在芽和根中均显示出比暴露于80%RH的植物更低的K + / Na +比。另外,与低湿度相比,暴露于高湿度的植物强烈刺激了芽和根的选择性((K,Na))。总之,高相对湿度和钾离子供应的共同作用能够改善麻疯树的生长,叶片气体交换和离子稳态。 (C)2015 Elsevier B.V.保留所有权利。

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