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Soil-mediated impacts of an invasive thistle inhibit the recruitment of certain native plants

机译:侵袭性蓟的土壤介导的影响抑制某些原生植物的招募

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摘要

Invasive plants may outcompete and replace native plant species through a variety of mechanisms. Recent evidence indicates that soil microbial pathways such as pathogen accumulation may have a considerable role in facilitating competition between native and invasive plants. To assess microbe-mediated pathways of invasion, we tested the impacts of invaded and non-invaded field soils on plant establishment using naturally occurring populations of the common Eurasian invader Cirsium arvense (Canada thistle) in Southern Ontario, Canada. Linked field and greenhouse experiments were used to quantify differences in the germinability and early growth rates of native plant species, depending on exposure to the microbial community in invaded or non-invaded soils. The invaded microbial community significantly reduced early growth rates for two of the seven native species surveyed, and decreased seed germination for another. In contrast, the germination and growth of invasive Cirsium were not affected by its own soil microbial community. These results demonstrate that the invasion of C. arvense can reduce the performance of some native plant species through changes to the soil microbial community. Different effects on different species suggest that this invader may also change the relative importance of certain natives in the invaded community. If these effects influence plant abundance in the field, microbially mediated interactions in the soil may aid the invasion of C. arvense and facilitate the disruption of invaded communities.
机译:侵入性植物可以通过各种机制来实现和更换天然植物物种。最近的证据表明,土壤微生物途径如病原体积累可能在促进本地和侵入性植物之间的竞争方面具有相当大的作用。为了评估侵袭的微生物介导的途径,我们使用加拿大安大略省南部的欧亚入侵者Cirsium Arvense(加拿大蓟)的天然存在的群体对植物建立的侵袭和非入侵的现场土壤的影响。连接领域和温室实验用于量化原生植物物种的发芽性和早期生长率的差异,具体取决于侵入或非侵入土壤中的微生物群落的暴露。侵袭性微生物群落显着降低了调查的七种本地物种中的两种的早期增长率,并降低了另一种种子萌发。相比之下,侵袭性柳的萌发和生长不受其自身土壤微生物群落的影响。这些结果表明,C.Arvense的侵袭可以通过对土壤微生物群落的变化来降低某些原生植物物种的性能。对不同物种的不同效果表明,此入侵者也可能改变侵入社区中某些当地人的相对重要性。如果这些效果影响植物丰度在该领域,土壤中的微生物介导的相互作用可能有助于侵袭C. Arvense并促进入侵社区的破坏。

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