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Low allelochemical concentrations detected in garlic mustard-invaded forest soils inhibit fungal growth and AMF spore germination

机译:在侵袭大蒜芥末的森林土壤中检测到的低化感物质浓度抑制真菌生长和AMF孢子萌发

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摘要

Garlic mustard’s (Alliaria petiolata, Brassicaceae) invasive success is attributed in part to its release of allyl isothiocyanate (AITC) into the soil. AITC can disrupt beneficial arbuscular mycorrhizal fungi (AMF) associated with native plant roots, which limits their soil resource uptake. However, AITC and its precursor, sinigrin, have never been detected in garlic mustard-invaded forest soils. Here, we use high performance liquid chromatography (HPLC) and gas chromatography-mass spectrometry (GC–MS) to assess the concentration and bioactivity of these putative allelochemicals in paired forest plots uninvaded or invaded by garlic mustard. Our methods detected AITC and sinigrin only where garlic mustard was present and our recovery of AITC/sinigrin coincided with adult senescence. A bioassay of in situ fungal hyphae abundance revealed significantly reduced hyphal abundance in the presence of garlicmustard relative to uninvaded soils. Finally, the lowest concentration of AITC measured in the field (~0.001 mM) is highly inhibitory to the spore germination of a forest AMF species, Glomus clarum. Together, our data provide the first direct evidence of garlic mustard-produced sinigrin and AITC in forest soils and demonstrate that even low levels of these chemicals have the potential to significantly suppress AMF growth and spore germination, strengthening their status as allelopathic novel weapons.
机译:大蒜芥末(蒜头蒜)(Alliaria petiolata,十字花科)的入侵成功部分归因于其将异硫氰酸烯丙酯(AITC)释放到土壤中。 AITC可以破坏与天然植物根相关的有益的丛枝菌根真菌(AMF),这限制了它们对土壤资源的吸收。但是,从未在大蒜芥末侵袭的森林土壤中发现AITC及其前体sinigrin。在这里,我们使用高效液相色谱(HPLC)和气相色谱-质谱(GC-MS)来评估未受大蒜芥子入侵的成对林地中这些假定的化感物质的浓度和生物活性。我们的方法仅在存在大蒜芥末的地方检测到AITC和芥子苷,而我们回收的AITC /芥子苷与成人衰老相吻合。原位真菌菌丝丰度的生物测定表明,相对于未侵染的土壤,在存在大蒜芥末的情况下菌丝丰度显着降低。最后,在田间测得的最低AITC浓度(约0.001 mM)对森林AMF物种Glomus clarum的孢子萌发具有高度抑制作用。总之,我们的数据提供了在森林土壤中大蒜芥末产生的芥子苷和AITC的第一个直接证据,并表明即使这些化学品的含量很少,也有可能显着抑制AMF的生长和孢子萌发,从而增强它们作为化感新武器的地位。

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