Published March 21, 2024 | Version v1

Data from: Plant-soil interactions during the native and exotic range expansion of an annual plant

  • 1. University of Aberdeen
  • 2. Centre d'Ecologie Fonctionnelle et Evolutive
  • 3. University of California, Santa Cruz
  • 4. Nederlands Instituut voor Ecologie

Description

Range expansions, whether they are biological invasions or climate change-mediated range shifts, may have profound ecological and evolutionary consequences for plant-soil interactions. Range-expanding plants encounter soil biota with which they have a limited coevolutionary history, especially when introduced to a new continent. Past studies have found mixed results on whether plants experience positive or negative soil feedback interactions in their novel range, and these effects often change over time. One important theoretical explanation is that plants locally adapt to the soil pathogens and mutualists in their novel range. We tested this hypothesis in Dittrichia graveolens, an annual plant that is both expanding its European native range, initially coinciding with climate warming, and rapidly invading California, after human introduction. In parallel greenhouse experiments on both continents, we used plant genotypes and soils from five locations at the core and edge of each range to compare plant growth in soil from D. graveolens populations and nearby control microsites as a measure of plant-soil feedback. Plant-soil interactions were highly idiosyncratic across sites in each range. On average, plant-soil feedbacks were more positive in the native range than in the exotic range. In line with the strongly heterogeneous pattern of soil responses along our biogeographic gradients, we found no evidence for evolutionary differentiation between plant genotypes from the core to the edge of either range. Our results suggest that the evolution of plant-soil interactions during range expansion may be more strongly driven by local evolutionary dynamics varying across the range than by large-scale biogeographic shifts.

Notes

Funding provided by: United States Department of Agriculture
Crossref Funder Registry ID: https://ror.org/01na82s61
Award Number: 2020-67013-31856

Funding provided by: Swiss National Science Foundation
Crossref Funder Registry ID: https://ror.org/00yjd3n13
Award Number: P2EZP3_178481

Funding provided by: Natural Environment Research Council
Crossref Funder Registry ID: https://ror.org/02b5d8509
Award Number: NE/W006553/1

Funding provided by: UK Research and Innovation
Crossref Funder Registry ID: https://ror.org/001aqnf71
Award Number: EP/X023362/1

Files

exoticrangedata.csv

Files (51.1 kB)

Name Size Download all
md5:60a775e6f98605e4ab7c09e2a3f4d5ef
20.1 kB Preview Download
md5:c21bf6e48c3d8b100298d5a33ebf48ea
21.2 kB Preview Download
md5:4c0922bdaa89d12f98d355bed4cb74b2
9.9 kB Preview Download