冬小麦的铝毒性

A. Szabo, E. Gyimes, A. Véha
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引用次数: 6

摘要

铝是地壳中最常见的金属;它主要以无生物活性、不溶性沉积物的形式存在。环境问题、工业污染和酸雨增加了土壤的酸度,导致铝的动员。世界上一半的潜在可耕地是酸性的;因此,铝毒性降低了作物产量。小麦是世界35%人口的主食。研究了0.1 mM铝胁迫对冬小麦生长的影响;幼苗在酸性ph下水培。两周后,根重下降;磷、钙含量差异显著。茎重和元素含量变化不大;根中的铝含量比茎高一个数量级,但铝的转运受到限制。根质膜H+- atp酶在吸收过程中起中心作用;铝胁迫增加微粒体部分Mg2+- atp酶活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aluminium toxicity in winter wheat
Abstract Aluminium is the most frequent metal of the earth crust; it occurs mainly as biologically inactive, insoluble deposit. Environmental problems, industrial contaminations and acid rains increase the soil acidity, leading to the mobilization of Al. Half of the world’s potential arable lands are acidic; therefore, Al-toxicity decreases crop productivity. Wheat is a staple food for 35% of the world population. The effects of Al-stress (0.1 mM) were studied on winter wheat; seedlings were grown hydroponically, at acidic pH. After two weeks, the root weight was decreased; a significant difference was found in the P- and Ca-content. The shoot weight and element content changed slightly; Al-content in the root was one magnitude higher than in the shoot, while Al-translocation was limited. The root plasma membrane H+-ATPase has central role in the uptake processes; Al-stress increased the Mg2+-ATPase activity of the microsomal fraction.
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