The effect of consumer pressure and abiotic stress on positive plant interactions are mediated by extreme climatic events

New Phytol. 2018 Jan;217(1):140-150. doi: 10.1111/nph.14778. Epub 2017 Sep 25.

Abstract

Environmental extremes resulting from a changing climate can have profound implications for plant interactions in desert communities. Positive interactions can buffer plant communities from abiotic stress and consumer pressure caused by climatic extremes, but limited research has explored this empirically. We tested the hypothesis that the mechanism of shrub facilitation on an annual plant community can change with precipitation extremes in deserts. During years of extreme drought and above-average rainfall in a desert, we measured plant interactions and biomass while manipulating a soil moisture gradient and reducing consumer pressure. Shrubs facilitated the annual plant community at all levels of soil moisture through reductions in microclimatic stress in both years and herbivore protection in the wet year only. Shrub facilitation and the high rainfall year contributed to the dominance of a competitive annual species in the plant community. Precipitation patterns in deserts determine the magnitude and type of facilitation mechanisms. Moreover, shrub facilitation mediates the interspecific competition within the associated annual community between years with different rainfall amounts. Examining multiple drivers during extreme climate events is a challenging area of research, but it is a necessary consideration given forecasts predicting that these events will increase in frequency and magnitude.

Keywords: consumer pressure; drought; extreme climatic events; facilitation; nurse plant; plant interactions; stress.

MeSH terms

  • Biomass
  • Bromus / growth & development
  • Bromus / physiology
  • California
  • Climate Change
  • Droughts
  • Environment
  • Herbivory
  • Plant Development
  • Plant Physiological Phenomena*
  • Plants*
  • Rain
  • Soil / chemistry
  • Stress, Physiological*

Substances

  • Soil