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首页> 外文期刊>FEMS Microbiology Ecology >Growth and symbiotic effectiveness of an arbuscular mycorrhizal fungus in organic matter in competition with soil bacteria
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Growth and symbiotic effectiveness of an arbuscular mycorrhizal fungus in organic matter in competition with soil bacteria

机译:丛枝菌根真菌与土壤细菌竞争中有机质的生长和共生有效性

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Arbuscular mycorrhizal (AM) fungi can enhance the rate of decomposition of organic material, and can acquire nitrogen (N) from organic sources, although they are not saprotrophs. These fungi may instead indirectly influence decomposition through interactions with other soil microorganisms. We investigated the impact of both AM hyphae and a bacterial filtrate on N capture by a host plant from sterilized organic material (Lolium perenne shoots dual labelled with ~(15)N and ~(13)C), using compartmented microcosms. The addition of a bacterial filtrate considerably suppressed AM hyphal growth in the patch and reduced the root phosphorus content, demonstrating that bacterial populations can reduce symbiotic effectiveness. In contrast, AM hyphae had only a limited impact on bacterial community structure. Uptake of ~(15)N greatly exceeded that of ~(13)C, demonstrating that fungi acquired N in an inorganic form. We also examined the ability of AM fungi in gnotobiotic hairy root culture to acquire N directly from organic materials of varying complexities (glutamic acid, urea, bacterial lysate and L. perenne shoots). AM colonization did not enhance root N capture from these materials, although the bacterial lysate reduced both total AM colonization and arbuscule frequency. Collectively, these data demonstrate antagonistic interactions between AM fungi and bacteria that reflect resource competition for decomposition products.
机译:丛枝菌根(AM)真菌可以提高有机物质的分解速率,并且可以从有机源获取氮(N),尽管它们不是腐生菌。相反,这些真菌可通过与其他土壤微生物的相互作用间接影响分解。我们调查了AM菌丝和细菌滤液对宿主植物从灭菌有机物(黑麦草芽双标记有〜(15)N和〜(13)C双重标记)中的N捕获的影响,使用分隔的微观世界。细菌滤液的添加大大抑制了斑块中AM菌丝的生长,并降低了根磷含量,表明细菌种群可以降低共生功效。相反,AM菌丝对细菌群落结构的影响有限。 〜(15)N的吸收大大超过了〜(13)C的吸收,表明真菌以无机形式获得了N。我们还研究了生真菌毛状根培养物中AM真菌直接从具有不同复杂性的有机材料(谷氨酸,尿素,细菌裂解液和紫苏枝)中获取N的能力。尽管细菌裂解物降低了总AM定植和丛枝频率,但AM定植并未增强从这些材料中吸收根N的能力。总体而言,这些数据表明AM真菌与细菌之间的拮抗作用反映了资源对分解产物的竞争。

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