Topographic effects on dispersal patterns of Phytophthora cinnamomi at a stand scale in a Spanish heathland

PLoS One. 2018 Mar 30;13(3):e0195060. doi: 10.1371/journal.pone.0195060. eCollection 2018.

Abstract

Phytophthora cinnamomi is one of the most important plant pathogens in the world, causing root rot in more than a thousand plant species. This observational study was carried out on a P. cinnamomi infected heathland of Erica umbellata used as goat pasture. The patterns and shapes of disease foci and their distribution were described in a spatial and temporal context using an aerial photograph record. A set of topographic traits was selected on the basis of a disease dynamic hypothesis and their effects on observed spatial disease patterns were analyzed. Incipient infections situated in flat terrain expanded as compact circular front patterns with a low growth rate. On slopes, disease patches developed more rapidly down slope, forming parabolic shapes. The axis direction of the parabolas was highly correlated with terrain aspect, while the parabolic amplitude was associated with land curvature and slope. New secondary foci appeared over the years producing an accelerated increase of the affected surface. These new foci were observed in sites where disease density was higher or near sites more frequently visited by animals such as the stable or the forage crop. In contrast, a smaller number of disease foci occur in areas which animals are reluctant to visit, such as where they have a short range of vision. Our results suggest that 1) the growth of existing P. cinnamomi foci is controlled by a combination of root-to-root contact and water flows, 2) the increase in the diseased area arises mainly from the multiplication of patches, 3) the formation of new foci is mediated by long-distance transport due to the movement of animals and humans along certain preferential pathways, and 4) geomorphology and topography traits are associated with the epidemiology of this soil-borne pathogen.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Phytophthora / physiology*
  • Plant Diseases / microbiology
  • Spain

Grants and funding

This work was funding by the local Goverment of Extremadura (Junta de Extremadura - Spain) and by MIMECO Grant No FIS2016-76359-P to EA. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.