Synergistic dispersal of plant pathogen spores by jumping-droplet condensation and wind

Author:

Mukherjee RanitORCID,Gruszewski Hope A.,Bilyeu Landon T.,Schmale David G.,Boreyko Jonathan B.ORCID

Abstract

Plant pathogens are responsible for the annual yield loss of crops worldwide and pose a significant threat to global food security. A necessary prelude to many plant disease epidemics is the short-range dispersal of spores, which may generate several disease foci within a field. New information is needed on the mechanisms of plant pathogen spread within and among susceptible plants. Here, we show that self-propelled jumping dew droplets, working synergistically with low wind flow, can propel spores of a fungal plant pathogen (wheat leaf rust) beyond the quiescent boundary layer and disperse them onto neighboring leaves downwind. An array of horizontal water-sensitive papers was used to mimic healthy wheat leaves and showed that up to 25 spores/h may be deposited on a single leaf downwind of the infected leaf during a single dew cycle. These findings reveal that a single dew cycle can disperse copious numbers of fungal spores to other wheat plants, even in the absence of rain splash or strong gusts of wind.

Funder

USDA | National Institute of Food and Agriculture

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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