首页> 外文期刊>Biology and Fertility of Soils >Mycorrhizal phosphorus enhancement of plants in undisturbed soil differs from phosphorus uptake stimulation by arbuscular mycorrhizae over non-mycorrhizal controls
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Mycorrhizal phosphorus enhancement of plants in undisturbed soil differs from phosphorus uptake stimulation by arbuscular mycorrhizae over non-mycorrhizal controls

机译:与非菌根对照相比,原状土壤中植物的菌根磷强化与丛枝菌根对磷的吸收不同

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摘要

Previous greenhouse and field studies have shown arbuscular mycorrhizal (AM) plants usually have greater P uptake and growth when raised in undisturbed soil compared to soil disturbed between plantings, such as by tillage. We report here for the first time that AM fungi able to stimulate shoot P uptake in experimental comparisons to non-mycorrhizal plants differ in their ability to bring about similar responses in undisturbed soil compared to disturbed soil. This outcome indicates a difference in functional character between the two stimulation processes. Three isolates of AM fungi were tested for growth promotion of maize (Zea mays L.) in pots in a soil disturbance experiment that included non-mycorrhizal controls. All three fungi colonized roots well and promoted shoot P uptake compared to non-inoculated controls, but only Glomus mosseae was able to stimulate growth in undisturbed soil compared to disturbed soil. This effect was seen when Glomus mosseae was alone or in combination with Gigaspora margarita. However, the presence of Glomus aggregatum in combination with Glomus mosseae prevented any stimulation, presumably due to domination by Glomus aggregatum. The ability of AM fungi to be beneficial to plants in comparison to non-mycorrhizal situations likely relates to the spread of mycelium in the soil and the capacity for nutrient transfer to the root. The ability of an AM fungus to promote growth in undisturbed soil appears to be related to these features and, in addition, a capacity for persistence and retention of functional capacity of the extraradical mycelium from one plant generation to the next.
机译:以前的温室和田间研究表明,与种植间(例如耕作)造成干扰的土壤相比,在不受干扰的土壤中生长时,丛枝菌根(AM)植物通常具有更高的P吸收和生长。我们在此首次报道,与无菌根植物相比,AM真菌在与非菌根植物的实验比较中能够刺激芽P吸收的能力与受干扰土壤相比,在未扰动土壤中产生相似响应的能力不同。该结果表明两个刺激过程之间功能特征的差异。在包括非菌根对照在内的土壤扰动实验中,测试了三种分离的AM真菌在盆中促进玉米(Zea mays L.)生长的方法。与未接种的对照相比,所有三种真菌均能很好地定植在根部并促进茎中P的吸收,但与受干扰的土壤相比,只有Glomus mosseae能够刺激未受干扰的土壤中的生长。当Glomus mosseae单独使用或与玛格丽塔酒(Gigaspora margarita)组合使用时,可以看到这种效果。然而,Glomus aaggregatum结合Glomus mosseae的存在阻止了任何刺激,大概是由于Glomus aggregatum的控制。与非菌根相比,AM真菌对植物有益的能力可能与菌丝体在土壤中的扩散以及养分向根部转移的能力有关。 AM真菌促进未受干扰的土壤中生长的能力似乎与这些特征有关,此外,还存在一种植物世代到下一世代的自由基外菌丝体的持久性和功能保持能力。

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