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首页> 外文期刊>Biology and Fertility of Soils >Growth, P uptake in grain legumes and changes in rhizosphere soil P pools
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Growth, P uptake in grain legumes and changes in rhizosphere soil P pools

机译:谷物中豆类的生长,磷吸收及根际土壤磷库的变化

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In soils with low P availability, several legumes have been shown to mobilise less labile P pools and a greater capacity to take up P than cereals. But there is little information about the size of various soil P pools in the rhizosphere of legumes in soil fertilised with P although P fertiliser is often added to legumes to improve N2 fixation. The aim of this study was to compare the growth, P uptake and the changes in rhizosphere soil P pools in five grain legumes in a soil with added P. Nodulated chickpea (Cicer arietinum L.), faba bean (Vicia faba L.), white lupin (Lupinus albus L.), yellow lupin (Lupinus luteus L.) and narrow-leafed lupin (Lupinus angustifolius L.) were grown in a loamy sand soil low in available P to which 80 mg P kg−1 was added and harvested at flowering and maturity. At maturity, growth and P uptake decreased in the following order: faba bean > chickpea > narrow-leafed lupin > yellow lupin > white lupin. Compared to the unplanted soil, the depletion of labile P pools (resin P and NaHCO3-P inorganic) was greatest in the rhizosphere of faba bean (54% and 39%). Of the less labile P pools, NaOH-P inorganic was depleted in the rhizosphere of faba bean while NaOH-P organic and residual P were most strongly depleted in the rhizosphere of white lupin. The results suggest that even in the presence of labile P, less labile P pools may be depleted in the rhizosphere of some legumes.
机译:在低磷可利用性的土壤中,几种谷物被证明能比谷物吸收更少的不稳定磷和更大的吸收磷的能力。但是,尽管经常向豆类中添加磷肥以改善N 2 的固着性,但豆类根际土壤中各种土壤P库的大小信息很少。这项研究的目的是比较添加了P.结瘤鹰嘴豆(Cicer arietinum L.),蚕豆(Vicia faba L.)的土壤中5种豆类植物的生长,P吸收和根际土壤P库的变化,白色羽扇豆(Lupinus albus L.),黄色羽扇豆(Lupinus luteus L.)和窄叶羽扇豆(Lupinus angustifolius L.)生长在一块低磷的壤土中,土壤中的有效磷低至80 mg P kg sup-1 被添加并在开花和成熟时收获。成熟时,生长和磷吸收按以下顺序降低:蚕豆>鹰嘴豆>阔叶羽扇豆>黄羽扇豆>白羽扇豆。与未种植的土壤相比,在蚕豆的根际中,不稳定的P库(树脂P和NaHCO 3 -P无机盐)的消耗最大(分别为54%和39%)。在不稳定程度较低的P库中,蚕豆的根际中的NaOH-P无机盐耗竭,而白色羽扇豆的根际中的NaOH-P有机物和残留P含量最高。结果表明,即使存在不稳定的P,某些豆类的根际中的不稳定P池也可能被耗尽。

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