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首页> 外文期刊>Biology and Fertility of Soils >Interactions between crop residues application and mycorrhizal developments and some soil-root interface properties and mineral acquisition by plants in an acidic soil
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Interactions between crop residues application and mycorrhizal developments and some soil-root interface properties and mineral acquisition by plants in an acidic soil

机译:在酸性土壤中作物残留施用与菌根发育以及某些土壤-根界面特性和植物获得的矿物质之间的相互作用

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摘要

The addition of plant residues and the appropriate management of arbuscular mycorrhizal (AM) symbioses have been tested in an acidic soil, an Andisol from Southern Chile, to ascertain whether these agro-technologies help plants to withstand potential mineral deficiency and the toxicities inherent to the low pH conditions. Firstly, the effects of legume (lupine) and non-legume (wheat) crop residues on some key root-soil interface activities (including AM development), on mineral acquisition by the plants, and on the yield of wheat growing in the test Andisol were investigated in a pot experiment under greenhouse conditions. Both lupine and wheat residues were added at a rate equivalent to 300 g m–2 to the natural soil. These organic amendments increased soil pH (wheat more than lupine), P availability and AM development (lupine more than wheat), plant performance and mineral acquisition (wheat more than lupine). Because of an increase in mycorrhizal activity, which appeared to be involved in the effect of the added crop (particularly lupine) residues, the role of the AM symbiosis was further investigated in a tailored inoculation assay, using a selected AM fungus (Glomus etunicatum), in interaction with lupine and wheat residues. A significant effect of AM inoculation on the reduction of Zn and Cu, and Mn and Al acquisition was demonstrated, which could be of interest in acid soils with regard to potential toxicity problems.
机译:已经在来自智利南部的Andisol的酸性土壤中测试了植物残留物的添加和丛枝菌根(AM)共生的适当管理,以确定这些农业技术是否能帮助植物抵抗潜在的矿物质缺乏以及该植物固有的毒性。低pH条件。首先,在Andisol试验中,豆科植物(羽扇豆)和非豆科植物(小麦)残留物对一些关键的根-土界面活动(包括增AM发育),植物获取矿物质以及小麦产量的影响在温室条件下的盆栽实验中进行了调查。羽扇豆和小麦残留物的添加量均等价于300 g m–2 到天然土壤中。这些有机改良剂提高了土壤的pH值(小麦比羽扇豆更多),磷的利用率和AM的发育(羽扇豆比小麦更多),植物性能和矿物质获取(小麦比羽扇豆更多)。由于菌根活性的增加似乎与增加的农作物(特别是羽扇豆)残留有关,因此,在选定的接种试验中,使用选定的AM真菌(Glomus etunicatum)进一步研究了AM共生的作用。与羽扇豆和小麦残留物相互作用。已证明AM接种对减少Zn和Cu以及Mn和Al的吸收有显着影响,这在酸性土壤中可能引起潜在的毒性问题。

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  • 来源
    《Biology and Fertility of Soils》 |2002年第2期|151-160|共10页
  • 作者单位

    Departamento de Ciencias Químicas Universidad de La Frontera Casilla 54-D Temuco Chile;

    Departamento de Ciencias Químicas Universidad de La Frontera Casilla 54-D Temuco Chile;

    Departamento de Ciencias Químicas Universidad de La Frontera Casilla 54-D Temuco Chile;

    Departamento de Ciencias Químicas Universidad de La Frontera Casilla 54-D Temuco Chile;

    Departamento de Microbiologia del Suelo y Sistemas Simbióticos Estación Experimental del Zaidín CSIC Profesor Albareda 1 18008 Granada Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Low soil pH AM fungi Crop residues Nutrient availability Alleviation of toxic minerals;

    机译:土壤pH较低的AM真菌作物残渣营养可利用性减轻有毒矿物质;降低土壤中磷的含量。;

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