Effects of soil warming history on the performances of congeneric temperate and boreal herbaceous plant species and their associations with soil biota

Madhav P. Thakur, Peter B. Reich, Cameron Wagg, Nicholas A. Fisichelli, Marcel Ciobanu, Sarah E. Hobbie, Roy L. Rich, Artur Stefanski, Nico Eisenhauer

Research output: Contribution to journalArticlepeer-review

5 Scopus citations


Aims: Climate warming raises the probability of range expansions of warmadapted temperate species into areas currently dominated by coldadapted boreal species. Warming-induced plant range expansions could partly depend on how warming modifies relationships with soil biota that promote plant growth, such as by mineralizing nutrients. Here, we grew two pairs of congeneric herbaceous plants species together in soil with a 5-year warming history (ambient, +1.7°C, +3.4°C) and related their performances to plant-beneficial soil biota. Methods: Each plant pair belonged to either the mid-latitude temperate climate or the higher latitude southern boreal climate. Warmed soils were extracted from a chamberless heating experiment at two field sites in the temperate-boreal ecotone of North America. To isolate potential effects of different soil warming histories, air temperature for the greenhouse experiment was identical across soils. We hypothesized that soil with a 5-year warming history in the field would enhance the performance of temperate plant species more than boreal plant species and expected improved plant performances to have positive associations with plant growth-promoting soil biota (microbialfeeding nematodes and arbuscular mycorrhizal fungi). Important Findings: Our main hypothesis was partly confirmed as only one temperate species performed better in soil with warming history than in soil with history of ambient temperature. Further, this effect was restricted to the site with higher soil water content in the growing season of the sampling year (prior to soil collection). One of the boreal species performed consistently worse in previously warmed soil, whereas the other species showed neutral responses to soil warming history. We found a positive correlation between the density of microbial-feeding nematodes and the performance of one of the temperate species in previously wetter soils, but this correlation was negative at the site with previously drier soil. We found no significant correlations between the performance of the other temperate species as well as the two boreal species and any of the studied soil biota. Our results indicate that soil warming can modify the relation between certain plant species and microbialfeeding nematodes in given soil edaphic conditions, which might be important for plant performance in the temperate-boreal ecotone.

Original languageEnglish (US)
Pages (from-to)670-680
Number of pages11
JournalJournal of Plant Ecology
Issue number4
StatePublished - Aug 1 2017

Bibliographical note

Funding Information:
German Research Foundation (DFG) in the frame of the Emmy Noether research group (Ei 862/2); German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, funded by the German Research Foundation (FZT 118); and the US Department of Energy (DE-FG02-07ER64456) and the College of Food, Agricultural and Natural Resource Sciences (CFANS) at the University of Minnesota.

Publisher Copyright:
© The Author 2016. Published by Oxford University Press on behalf of the Institute of Botany, Chinese Academy of Sciences and the Botanical Society of China. All rights reserved.


  • Aster cordifolius
  • Ecotone
  • Range shift
  • Seedling emergence
  • Soil biota


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