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丛枝菌根真菌保护本地植物免受外来入侵植物的化感作用影响。

Arbuscular mycorrhizal fungi protect a native plant from allelopathic effects of an invader.

机构信息

Department of Biological Sciences, Wright State University, Dayton, OH 45435, USA.

出版信息

J Chem Ecol. 2010 Apr;36(4):351-60. doi: 10.1007/s10886-010-9768-4. Epub 2010 Mar 13.

Abstract

The allelopathic potential of the Eurasian invasive plant Alliaria petiolata has been well documented, with the bulk of the effects believed to be mediated by arbuscular mycorrhizal fungi (AMF). We exposed the herbaceous annual Impatiens pallida, which is native to North America, to fractionated A. petiolata extracts at four developmental stages (germination, presymbiosis growth, symbiosis formation, and symbiosis growth) by using exposure levels expected to be similar to field levels. Surprisingly, we found strong direct effects on I. pallida germination and growth, but no indirect effects on I. pallida growth mediated by AMF. We also observed strong synergistic effects with a complete A. petiolata extract that inhibited I. pallida germination and presymbiosis root growth more than either a glucosinolate or flavonoid enriched fraction alone. In fact, the flavonoid enriched fraction tended to stimulate germination and presymbiosis root growth. In contrast to these strong direct effects, I. pallida plant growth during both the symbiosis formation and symbiosis growth phases was unaffected by A. petiolata extracts. We also found no inhibition of AMF colonization of roots or soils by A. petiolata extracts. We show that AMF can actually ameliorate allelopathic effects of an invasive plant, and suggest that previously observed allelopathic effects of A. petiolata may be due to direct inhibition of plant and fungal growth before symbiosis formation.

摘要

欧亚入侵植物大蒜芥的化感潜力已得到充分证实,其大部分作用被认为是由丛枝菌根真菌(AMF)介导的。我们用预期与田间水平相似的暴露水平,将原产于北美的草本一年生植物延龄草暴露于大蒜芥的分馏提取物中,分四个发育阶段(萌发、共生前生长、共生形成和共生生长)。令人惊讶的是,我们发现了对延龄草萌发和生长的强烈直接影响,但 AMF 介导的对延龄草生长没有间接影响。我们还观察到与完整的大蒜芥提取物具有强烈的协同作用,该提取物抑制延龄草的萌发和共生前根生长的效果比单独的硫代葡萄糖苷或类黄酮富集部分更明显。事实上,类黄酮富集部分往往会刺激萌发和共生前根生长。与这些强烈的直接影响相反,大蒜芥提取物对延龄草在共生形成和共生生长阶段的植物生长没有影响。我们还发现大蒜芥提取物对 AMF 对根和土壤的定殖没有抑制作用。我们表明,AMF 实际上可以减轻入侵植物的化感作用,并表明先前观察到的大蒜芥的化感作用可能是由于在共生形成之前对植物和真菌生长的直接抑制。

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