Repository logo
 

Percolation-based risk index for pathogen invasion: Application to soilborne disease in propagation systems

Published version
Peer-reviewed

Change log

Abstract

Propagation systems for seedling growth play a major role in agriculture, and in notable cases (such as organic systems), are under constant threat from soil and seedborne fungal plant pathogens such as Rhizoctonia solani or Pythium spp. Yet, to date little is known that links the risk of disease invasion to the host density, which is an agronomic characteristic that can be readily controlled. We introduce here, for the first time in an agronomic system, a percolation framework to analyze the link. We set up an experiment to study the spread of the ubiquitous fungus R. solani in replicated propagation systems with different planting densities, and fit a percolation-based epidemiological model to the data using Bayesian inference methods. The estimated probability of pathogen transmission between infected and susceptible plants is used to calculate the risk of invasion. By comparing the transmission probability and the risk values obtained for different planting densities, we are able to give evidence of a nonlinear relationship between disease invasion and the inter-plant spacing, hence to demonstrate the existence of a spatial threshold for epidemic invasion. The implications and potential use of our methods for the evaluation of disease control strategies are discussed. © 2013 The American Phytopathological Society.

Description

Journal Title

Phytopathology

Conference Name

Journal ISSN

0031-949X
1943-7684

Volume Title

103

Publisher

The American Phytopatholgical Society

Rights and licensing

Except where otherwised noted, this item's license is described as http://www.rioxx.net/licenses/all-rights-reserved
Sponsorship
Biotechnology and Biological Sciences Research Council (BB/E017312/1)
This research was supported by the INRA “Plant Health & Environment” Division, and the French Research Agency (ANR) through funding of the SYSBIOTEL project referenced ANR-08_STRA-14. C. A. Gilligan also gratefully acknowledges the support of a BBSRC Professorial Fellowship.