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首页> 外文期刊>Plant and Soil >No evidence for allelopathic effects of arbuscular mycorrhizal fungi on the non-host plant Stellaria media
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No evidence for allelopathic effects of arbuscular mycorrhizal fungi on the non-host plant Stellaria media

机译:尚无证据证明丛枝菌根真菌对非寄主植物恒星属细菌的化感作用

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Background and aims: Increasing evidence suggests that several plants, particularly non-mycorrhizal species, are negatively affected by the presence of arbuscular mycorrhizal fungi (AMF). Mechanisms explaining suppressive effects of AMF are, however, still poorly understood. Here we test whether growth suppression of the non-host weed Stellaria media in the presence of AMF can be explained by mycorrhizal alellopathy. Methods: We grew S. media in microcosms where an active AM mycelium was supported by neighboring wheat (Triticum aestivum) plants. To test for allelopathy, we added activated carbon (AC) to the soil substrate. In addition, we performed two complementary experiments where extracts from roots extensively colonized by AMF (AM exudates) were directly applied to S. media seeds and seedlings. Results: Stellaria media plants grown in microcosms with AM mycelium showed an 8-fold biomass reduction compared to microcosms where AMF were absent. The addition of AC, which is thought to reduce allelopathic effects by binding organic compounds, did not greatly mitigate the negative effect of AM mycelium on S. media growth. Moreover, AM exudates did not significantly reduce S. media germination and growth. Conclusions: Results from this study confirm that non-hosts like S. media can be highly suppressed in the presence of AMF. However, we found no evidence that mycorrhizal allelopathy was a major mechanism responsible for growth suppression of S. media in the presence of AMF. Other mechanisms might therefore be more significant in explaining suppressive effects of AMF on non-host plant species.
机译:背景和目的:越来越多的证据表明,丛枝菌根真菌(AMF)的存在对几种植物,特别是非菌根物种产生了负面影响。然而,对于AMF抑制作用的机制了解甚少。在这里我们测试是否存在AMF可以解释非寄主杂草恒星培养基的生长抑制是否可以由菌根性ellellopathy解释。方法:我们在S. medias的微观世界中生长,其中活跃的AM菌丝体由邻近的小麦(Triticum aestivum)植物支持。为了测试化感作用,我们向土壤基质中添加了活性炭(AC)。此外,我们进行了两个补充实验,其中将由AMF广泛定植的根的提取物(AM渗出液)直接应用于中型链球菌的种子和幼苗。结果:与没有AMF的微观世界相比,在带有AM菌丝体的微观世界中生长的恒星培养基植物的生物量减少了8倍。被认为可以通过结合有机化合物来减少化感作用的AC的添加,并不能大大减轻AM菌丝体对S.media的生长的负面影响。此外,AM渗出液并没有显着减少链球菌的萌发和生长。结论:这项研究的结果证实,在AMF的存在下,非宿主菌如S. media可被高度抑制。但是,我们没有发现证据表明菌根化感作用是AMF存在下抑制链球菌生长的主要机制。因此,在解释AMF对非寄主植物物种的抑制作用时,其他机制可能更重要。

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