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Cation Amelioration of Aluminum Toxicity in Wheat

机译:小麦铝毒的阳离子改良

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摘要

Aluminum is a major constituent of most soils and limits crop productivity in many regions. Amelioration is of theoretical as well as practical interest because understanding amelioration may contribute to an understanding of the mechanisms of toxicity. In the experiments reported here 2-day-old wheat (Triticum aestivum L. cv Tyler) seedlings with 15-millimeter roots were transferred to solutions containing 0.4 millimolar CaCl2 at pH 4.3 variously supplemented with AlCl3 and additional amounts of a chloride salt. Root lengths, measured after 2 days in the test solutions, were a function of both Al activity and the cation activity of the added salt. Percent inhibition = 100 {Al3+}/({Al3+} + Km + α{C}β) where {Al3+} is the activity of Al3+ expressed in micromolar, {C} is the activity of the added cation expressed in millimolar, and Km (= 1.2 micromolar) is the {Al3+} required for 50% inhibition in the absence of added salt. For Ca2+, Mg2+, and Na+ the values of α were 2.4, 1.6, and 0.011, respectively, and the values for β were 1.5, 1.5, and 1.8, respectively. With regard to relative ameliorative effectiveness, Ca2+ > Mg2+ ≈ Sr2+ ≫ K+ ≈ Na+. Other cations were tested, but La3+, Sc3+, Li+, Rb+, and Cs+ were toxic at potentially ameliorative levels. The salt amelioration is not solely attributable to reductions in {Al3+} caused by increases in ionic strength. Competition between the cation and Al for external binding sites may account for most of the amelioration.
机译:铝是大多数土壤的主要成分,并在许多地区限制了作物的生产力。改善具有理论和实践意义,因为了解改善可能有助于理解毒性机理。在这里报道的实验中,将具有15毫米根的2日龄小麦(Triticum aestivum L. cv Tyler)幼苗转移到含有0.4毫摩尔CaCl2,pH 4.3的溶液中,溶液中分别添加AlCl3和额外量的氯化物盐。在测试溶液中两天后测得的根长是Al活性和所添加盐的阳离子活性的函数。抑制百分比= 100 {Al 3 + } /({{Al 3 + } + Km +α{C} β))其中{Al < sup> 3 + }是以微摩尔表示的Al 3 + 的活性,{C}是以毫摩尔表示的添加阳离子的活性,Km(= 1.2微摩尔)为在不添加盐的情况下,抑制50%所需的{Al 3 + }。对于Ca 2 + ,Mg 2 + 和Na + ,α值分别为2.4、1.6和0.011,并且值分别为β分别为1.5、1.5和1.8。关于相对改善效果,Ca 2 + 2 + ≈Sr 2 + ≫ K + ≈ Na + 。测试了其他阳离子,但La 3 + ,Sc 3 + ,Li + ,Rb + 和Cs + 在潜在改善水平上是有毒的。盐的改善不仅仅归因于离子强度的增加导致{Al 3 + }的减少。阳离子和Al之间对外部结合位点的竞争可能是大部分改善的原因。

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