首页> 美国卫生研究院文献>Plants >Improved Root Growth by Liming Aluminum-Sensitive Rice Cultivar or Cultivating an Aluminum-Tolerant One Does Not Enhance Fertilizer Nitrogen Recovery Efficiency in an Acid Paddy Soil
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Improved Root Growth by Liming Aluminum-Sensitive Rice Cultivar or Cultivating an Aluminum-Tolerant One Does Not Enhance Fertilizer Nitrogen Recovery Efficiency in an Acid Paddy Soil

机译:通过对铝敏感的水稻品种撒石灰或种植耐铝的水稻来改善根系生长不会提高酸性稻田中肥料的氮素回收效率。

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摘要

The root is the main site of nitrogen (N) acquisition and aluminum (Al) toxicity. The objective of this study is to investigate whether liming and cultivation of an Al-tolerant rice ( L.) cultivar can improve root growth, thereby increasing N acquisition by rice plants in acid paddy soil. Two rice cultivars (‘B690’, Al-sensitive, and ‘Yugeng5’, Al-tolerant) were cultivated with N-labeled urea, and with or without lime in an acid paddy soil (pH 4.9) in pots. We examined root and shoot growth, soil pH, soil exchangeable Al, N uptake, N distribution in plant-soil system, and fertilizer N recovery efficiency. Results showed that liming improved the root growth of ‘B690’ by decreasing soil exchangeable Al concentrations, in both N-limited and N-fertilized soils. Liming enhanced the N uptake of ‘B690’ only in the absence of N fertilizer. The root weight of ‘Yugeng5’ was greater than that of ‘B690’ without lime, but the two cultivars showed similar N uptake. The fertilizer N recovery efficiency and N loss did not differ significantly between limed and non-limed conditions, or between the two rice cultivars. Thus, liming an Al-sensitive rice cultivar and cultivating an Al-tolerant one improves root growth, but does not enhance fertilizer N recovery efficiency in the present acid paddy soil.
机译:根是氮(N)吸收和铝(Al)毒性的主要部位。这项研究的目的是研究耐盐水稻(L.)品种的石灰分期和栽培能否改善根系生长,从而增加酸性稻田中水稻植物对氮的吸收。将两个水稻品种(对铝敏感的'B690'和对铝敏感的'Yugeng5')分别在N标记的尿素中和有或没有石灰的酸性水稻土(pH 4.9)的盆中种植。我们研究了根和芽的生长,土壤的pH值,土壤可交换的Al,N的吸收,N在植物-土壤系统中的分布以及氮素的回收效率。结果表明,在氮有限和氮肥的土壤中,石灰添加可以通过降低土壤中可交换的铝含量来改善“ B690”的根系生长。只有在不施用氮肥的情况下,黎明才能提高'B690'的氮素吸收能力。 'Yugeng5'的根重大于不含石灰的'B690'的根重,但是两个品种的氮吸收相似。在石灰和非石灰条件下,或在两个水稻品种之间,肥料的氮素回收效率和氮素损失均无显着差异。因此,给铝敏感的水稻品种加碱并种植耐铝的水稻品种可以改善根系生长,但不能提高目前酸性水稻土中肥料氮的回收效率。

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