International audienceThermal ecology studies on the ecophysiological responses of organisms to temperature involve two paradigms: physiological rates are driven by body temperature and not directly by the environmental temperature, and they are largely influenced not only by its mean but also its variance. These paradigms together have been largely applied to macro invertebrates and vertebrates but rarely to microorganisms. According to these paradigms, foliar fungal pathogens are expected to respond directly to the fluctuations in leaf temperature, rather than in air temperature. We determined experimentally the impact of two patterns of leaf temperature variation of equal mean temperature, but differing in their daily amplitude, on the d...
Warmer temperatures associated with climate change are expected to have a direct impact on plant pat...
The dynamics of host-parasite interactions are highly temperature-dependent and may be modified by i...
Under predicted global climate change, species will be gradually exposed to warmer temperatures, and...
International audienceThermal ecology studies on the ecophysiological responses of organisms to temp...
Plant pathogenic fungi and oomycetes (hereafter ‘plant pathogens’) pose serious risks to crop produc...
Air temperature measured by weather stations is commonly used in epidemiological models to forecast ...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
The study of disease ecology aims to understand the complex interactions among hosts, environments, ...
Under predicted global climate change, species will be gradually exposed to warmer temperatures, and...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
Warmer temperatures associated with climate change are expected to have a direct impact on plant pat...
The dynamics of host-parasite interactions are highly temperature-dependent and may be modified by i...
Under predicted global climate change, species will be gradually exposed to warmer temperatures, and...
International audienceThermal ecology studies on the ecophysiological responses of organisms to temp...
Plant pathogenic fungi and oomycetes (hereafter ‘plant pathogens’) pose serious risks to crop produc...
Air temperature measured by weather stations is commonly used in epidemiological models to forecast ...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
The study of disease ecology aims to understand the complex interactions among hosts, environments, ...
Under predicted global climate change, species will be gradually exposed to warmer temperatures, and...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
Warmer temperatures associated with climate change are expected to have a direct impact on plant pat...
The dynamics of host-parasite interactions are highly temperature-dependent and may be modified by i...
Under predicted global climate change, species will be gradually exposed to warmer temperatures, and...