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气候变暖主导着植物基因型,塑造了栎树叶面真菌群落的季节性轨迹。

Climate warming dominates over plant genotype in shaping the seasonal trajectory of foliar fungal communities on oak.

机构信息

Department of Ecology, Environment and Plant Sciences, Stockholm University, Svante Arrhenius väg 20A, Stockholm, SE-106 91, Sweden.

Institute of Environmental Biotechnology, Graz University of Technology, Petersgasse 12, Graz, A-8010, Austria.

出版信息

New Phytol. 2021 Sep;231(5):1770-1783. doi: 10.1111/nph.17434. Epub 2021 Jun 18.

Abstract

Leaves interact with a wealth of microorganisms. Among these, fungi are highly diverse and are known to contribute to plant health, leaf senescence and early decomposition. However, patterns and drivers of the seasonal dynamics of foliar fungal communities are poorly understood. We used a multifactorial experiment to investigate the influence of warming and tree genotype on the foliar fungal community on the pedunculate oak Quercus robur across one growing season. Fungal species richness increased, evenness tended to decrease, and community composition strongly shifted during the growing season. Yeasts increased in relative abundance as the season progressed, while putative fungal pathogens decreased. Warming decreased species richness, reduced evenness and changed community composition, especially at the end of the growing season. Warming also negatively affected putative fungal pathogens. We only detected a minor imprint of tree genotype and warming × genotype interactions on species richness and community composition. Overall, our findings demonstrate that warming plays a larger role than plant genotype in shaping the seasonal dynamics of the foliar fungal community on oak. These warming-induced shifts in the foliar fungal community may have a pronounced impact on plant health, plant-fungal interactions and ecosystem functions.

摘要

叶片与大量微生物相互作用。其中,真菌种类多样,已知真菌会影响植物健康、叶片衰老和早期分解。然而,叶真菌群落季节性动态的模式和驱动因素仍知之甚少。我们使用多因素实验,在一个生长季节内研究了变暖和树种基因型对欧洲山毛榉 Quercus robur 叶片真菌群落的影响。真菌物种丰富度增加,均匀度趋于降低,群落组成在生长季节内发生强烈变化。随着季节的推进,酵母的相对丰度增加,而假定的真菌病原体减少。变暖降低了物种丰富度,降低了均匀度并改变了群落组成,尤其是在生长季节结束时。变暖还对假定的真菌病原体产生负面影响。我们仅检测到树种基因型和变暖与基因型相互作用对物种丰富度和群落组成的微小影响。总的来说,我们的研究结果表明,在塑造橡树叶片真菌群落的季节性动态方面,变暖比植物基因型起着更大的作用。这些由变暖引起的叶片真菌群落的变化可能会对植物健康、植物与真菌的相互作用以及生态系统功能产生显著影响。

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