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AMF, phylogeny, and succession: specificity of response to mycorrhizal fungi increases for late‐successional plants

机译: AMF ,系统发育和演替:后期成功植物对菌根真菌的响应特异性增加

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摘要

Arbuscular mycorrhizal ( AM ) fungal communities are important to plant community productivity and diversity; however, the importance of AM fungal composition to community dynamics remains largely unknown. Specificity of plant response to different AM fungal species is a prerequisite for AM fungal composition to have an effect on plant community dynamics. We test determinants of specificity of plant response to AM fungi across six early‐ and six late‐successional tallgrass prairie plants by growing them with one of seven different AM fungal species and a non‐inoculated control. We found that late‐successional species were more responsive, and demonstrated greater specificity, toward individual AM fungal taxa than early‐successional species. There was no phylogenetic signal for plant responsiveness or specificity of plant response. Phylogenetic multiple regressions indicated that successional stage, plant growth rate, and overall responsiveness were significant predictors of fungal specificity independent of shared phylogeny. These results suggest that plant response to mycorrhizal fungi is evolutionarily labile and coevolves with plant life history. Our results also suggest that AM fungal community dynamics can be particularly important for the establishment and subsequent dynamics of late‐successional plants.
机译:丛枝菌根真菌群落对植物群落的生产力和多样性很重要。但是,AM真菌成分对群落动态的重要性仍然未知。植物对不同AM真菌物种的反应特异性是AM真菌组成对植物群落动态产生影响的先决条件。我们通过在7种不同的AM真菌物种之一和未接种的对照中生长,测试了6种早期和6种后期成功的高草草原植物对AM真菌的植物反应特异性的决定因素。我们发现,与早期成功种相比,晚期成功种对单个AM真菌类群的反应更强,并且表现出更高的特异性。没有关于植物反应性或植物反应特异性的系统发生信号。系统发育多重回归表明,演替阶段,植物生长速率和总体响应能力是独立于共同系统发育的真菌特异性的重要预测因子。这些结果表明植物对菌根真菌的反应在进化上不稳定,并且与植物生命史一起进化。我们的结果还表明,AM真菌群落动态对于后期成功植物的建立和后续动态特别重要。

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