Contents 1314 I. 1315 II. 1316 III. 1322 IV. 1323 V. 1325 VI. 1326 VII. 1326 VIII. 1327 1328 References 1328 SUMMARY: Invasions of alien plants are typically studied as invasions of individual species, yet interactions between plants and symbiotic fungi (mutualists and potential pathogens) affect plant survival, physiological traits, and reproduction and hence invasion success. Studies show that plant-fungal associations are frequently key drivers of plant invasion success and impact, but clear conceptual frameworks and integration across studies are needed to move beyond a series of case studies towards a more predictive understanding. Here, we consider linked plant-fungal invasions from the perspective of plant and fungal origin, simplified to the least complex representations or 'motifs'. By characterizing these interaction motifs, parallels in invasion processes between pathogen and mutualist fungi become clear, although the outcomes are often opposite in effect. These interaction motifs provide hypotheses for fungal-driven dynamics behind observed plant invasion trajectories. In some situations, the effects of plant-fungal interactions are inconsistent or negligible. Variability in when and where different interaction motifs matter may be driven by specificity in the plant-fungal interaction, the size of the effect of the symbiosis (negative to positive) on plants and the dependence (obligate to facultative) of the plant-fungal interaction. Linked plant-fungal invasions can transform communities and ecosystem function, with potential for persistent legacies preventing ecosystem restoration.

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内容1314 I.1315二.1316三.1322四.1323 V.1325六.1326七.1326八.1327 1328参考文献1328摘要: 外来植物的入侵通常被研究为单个物种的入侵,但是植物与共生真菌 (共生主义者和潜在病原体) 之间的相互作用会影响植物的生存,生理特征和繁殖,从而影响入侵的成功。研究表明,植物与真菌的关联通常是植物入侵成功和影响的关键驱动因素,但是需要明确的概念框架和跨研究的整合才能超越一系列案例研究,从而获得更具预测性的理解。在这里,我们从植物和真菌起源的角度考虑了相关的植物-真菌入侵,简化为最不复杂的表示或 “基序”。通过表征这些相互作用基序,病原体和共生真菌之间的入侵过程中的相似之处变得清晰,尽管结果通常是相反的。这些相互作用基序为观察到的植物入侵轨迹背后的真菌驱动动力学提供了假设。在某些情况下,植物-真菌相互作用的影响是不一致的或可以忽略不计的。不同相互作用基序的时间和地点的变异性可能是由植物-真菌相互作用的特异性,共生对植物的影响 (从负到正) 的大小以及植物-真菌相互作用的依赖性 (专性到兼性) 驱动的。相关的植物真菌入侵可以改变社区和生态系统功能,并有可能导致持久的遗产阻止生态系统恢复。

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