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首页> 外文期刊>Plant and Soil >Aluminum resistance in two cultivars of Zea mays L.: Root exudation of organic acids and influence of phosphorus nutrition
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Aluminum resistance in two cultivars of Zea mays L.: Root exudation of organic acids and influence of phosphorus nutrition

机译:玉米(Zea mays L.)两个品种的耐铝性:有机酸的根系分泌和磷营养的影响

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Root exudation of organic acids as Al-chelating compounds and P nutrition have been suggested to play a major role in Al-resistance in higher plants. Effects of Al exposure on maize plant growth, and organic acid root content and root exudation under various levels of P nutrition were examined. Sikuani, a Colombian maize cultivar tolerant to acid soils with high Al saturation, and Corso, a Swiss cultivar, were grown in sterile hydroponic conditions for 21 days. Al-caused inhibition of root growth was lower in Sikuani than in Corso. Al effect on plant growth was decreased with increasing P content in roots. Al content in roots increased with increasing P content and was higher in Sikuani than in Corso. When exposed to Al, the contents in root apices as well as the root exudation of citric and malic acids in Corso and citric, malic and succinic acids in Sikuani increased, and were higher in Sikuani than in Corso. Increased PEP carboxylase (PEPC) activity in root apices after Al exposure partially explained the variations of organic acid content in the roots. These Al-induced changes in PEPC activity, organic acid content and exudation were reduced in plants supplied with higher P concentrations during the 21 days prior to treatment. Increased secretion of organic acids after exposure to Al appeared to be specific to Al and was not totally explained by increased root content in organic acids.
机译:有人提出有机酸的根系渗出作为铝螯合化合物和磷营养在高等植物的耐铝性中起主要作用。研究了铝暴露对不同磷素营养水平下玉米植株生长,有机酸根含量和根系渗出的影响。在无菌的水耕条件下,哥伦比亚玉米品种Sikuani可以耐受高铝饱和度的酸性土壤,而瑞士品种Corso则可以在无菌水培条件下生长21天。 Al引起的根生长抑制作用在Sikuani中低于在Corso中。铝对植物生长的影响随根系中磷含量的增加而降低。根中的铝含量随磷含量的增加而增加,而锡库阿尼的铝含量高于科尔索。当暴露于Al时,Corso的根尖含量以及柠檬酸和苹果酸的根分泌以及Sikuani的柠檬酸,苹果酸和琥珀酸的含量增加,而Sikuani中的柠檬酸,苹果酸和琥珀酸高于Corso。铝暴露后根尖中PEP羧化酶(PEPC)活性的增加部分地解释了根中有机酸含量的变化。在处理前的21天内,铝诱导的PEPC活性,有机酸含量和渗出的变化在供应较高P浓度的植物中减少了。暴露于Al后有机酸分泌增加似乎是Al特有的,不能完全由有机酸根含量的增加完全解释。

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