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Effect of aluminum stress on the absorption and transportation of aluminum and macronutrients in roots and leaves of Aleurites montana

机译:铝胁迫对亚列德蒙大拿州铝和叶片铝和叶片饲料的吸收和运输的影响

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Aluminum toxicity is common in subtropical acidic soils, and the effect of Al stress on Aleurites montana is unknown. This study determined the growth and Al and macronutrient contents (C, N, P, K, Ca, and Mg) in leaves and roots of 1-year-old A. montana seedings to reveal the effects of Al stress on growth and elements of A. montana seedings and the difference of growth and content of elements in potted seedlings and hydroponic seedlings under AI addition. The content of Al in the leaves of potted A. montana seedlings was greater than 1000 mg kg(-1) under Al stress, so it can be judged that A. montana is likely an Al accumulator and has a high Al tolerance in potted soil. The changes of macronutrient contents in the seedlings varied with Al concentration. For potted seedlings, Al stress had a significant effect on Mg and K contents in roots and Mg and C contents in leaves, but it had no effect on other macronutrients, such as N, P and Ca. For hydroponic seedlings, Al content in roots and N, P, and K contents in roots and leaves increased significantly, and C and Ca contents in roots decreased significantly when the Al concentration exceeded 0.290 mmol L-1. The Al stress affected the distribution and transportation of macronutrients between roots and leaves. The Al and K contents in the roots were higher than those in leaves in both cultivation methods, while the C, N, and Ca contents were smaller than those in leaves. The transportation of N, P and Ca from root to leaf in potted seedlings changed with the increase of Al concentration. There were major differences in the growth and the absorption and transportation of elements between potted and hydroponic seedlings under Al stress. In this study, Al promoted or had no significant effect on the growth of potted seedlings, while the growth of hydroponic seedlings was significantly inhibited when the Al concentration was relatively high. Moreover, the effect of Al concentration on Al and macronutrients of potted seedlings was less than that of hydroponic seedlings. Therefore, the effects of the primary environment should be considered in future stress experiments. This study revealed the effect of Al concentration on A. montana seedlings from the perspective of growth and nutrition, which are crucial in ecological restoration function of mixed tree species in acid rain area. Comparison of the effects of Al concentration on A. montana seedlings under two cultivation methods provides new perspectives for future stress test research.
机译:铝毒性在亚热带酸性污染中常见,Al胁迫对山脉蒙大拿的影响是未知的。该研究确定了1岁A.蒙大拿州播种机的叶子和根部的生长和Al和Macronutient含量(C,N,P,K,Ca和Mg),以揭示Al压力对生长和元素的影响A. Montana Singings和AI添加下盆栽幼苗和水培幼苗的成长和含量的差异。盆栽A.蒙大拿幼苗叶片中的Al含量大于1000mg kg(-1),所以可以判断A.蒙大拿州的累积器,并且在盆栽土壤中具有高的Al耐受性。幼苗中Macronurient内容物的变化随浓度而变化。对于盆栽幼苗,Al胁迫对叶片和Mg和叶片中的Mg和K含量具有显着影响,但它对其他MACRORRIERS没有影响,例如N,P和CA。对于水培幼苗,根部和N,P和K含量中的Al含量明显增加,并且当Al浓度超过0.290mmol L-1时,根部的C和Ca含量显着降低。 Al压力影响了根和叶之间的Macronurivers的分布和运输。根部中的Al和K含量高于培养方法中的叶片中的含量,而C,N和Ca含量小于叶子中的叶片。在盆栽幼苗中,从根到叶片的N,P和Ca的运输随着Al浓度的增加而变化。在Al胁迫下盆栽和水培幼苗之间的增长和对植物之间的元素产生重大差异。在本研究中,Al促进或对盆栽幼苗的生长没有显着影响,而当Al浓度相对较高时,水培幼苗的生长显着抑制。此外,Al浓度对盆栽幼苗的Al和Macronrients的影响小于水培幼苗。因此,在未来的应力实验中应考虑主要环境的影响。本研究揭示了从生长和营养的角度施用Al浓度对蒙大拿幼苗的影响,这对酸雨区域混合树种生态恢复功能至关重要。两种栽培方法中Al浓度对蒙大拿幼苗的影响的比较为未来的压力测试研究提供了新的视角。

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