Abstract
AbstractRoot-associated microbes can alleviate plant abiotic stresses, thus potentially supporting adaptation to a changing climate or to novel environments during range expansion. While climate change is extending plant species fundamental niches northward, the distribution and colonization of mutualists (e.g., arbuscular mycorrhizal fungi) and pathogens may constrain plant growth and regeneration. Yet, the degree to which biotic and abiotic factors impact plant performance and associated microbial communities at the edge of their distribution remains unclear. Here, we use root microscopy, coupled with amplicon sequencing, to study bacterial, fungal, and mycorrhizal root-associated microbial communities from sugar maple seedlings distributed across two temperate-to-boreal elevational gradients in southern Québec, Canada. Our findings demonstrate that soil pH, soil Ca, and distance to sugar maple trees are key drivers of root-associated microbial communities, overshadowing the influence of elevation. Interestingly, changes in root fungal community composition mediate an indirect effect of soil pH on seedling growth, a pattern consistent at both sites. Overall, our findings highlight a complex role of biotic and abiotic factors in shaping tree-microbe interactions, which are in turn correlated with seedling growth. These findings have important ramifications for tree range expansion in response to shifting climatic niches.
Funder
Canada Research Chairs
Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada
Fonds de Recherche du Québec - Nature et Technologies
Publisher
Springer Science and Business Media LLC
Reference141 articles.
1. Adler, C. et al. Climate Change 2022: impacts, adaptation and vulnerability. In Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change 2273–2318 (Cambridge Univ. Press, Cambridge, UK, 2022).
2. Grabherr, G., Gottfried, M. & Pauli, H. Climate effects on mountain plants. Nature 369, 448–448 (1994).
3. Walther, G.-R. et al. Ecological responses to recent climate change. Nature 416, 389–395 (2002).
4. Yesson, C. & Culham, A. Plants at risk from climate change. Nat Preced; 1–1 https://doi.org/10.1038/npre.2007.150.1 (2007).
5. Elsen, P. R. & Tingley, M. W. Global mountain topography and the fate of montane species under climate change. Nat. Clim. Change 5, 772–776 (2015).
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