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Fox, Q. N.

Publications and source records attributed to Fox, Q. N..

2 recordsLinked to original sources

Local adaptation of a fungal pathogen to temperature along a latitudinal gradient

Whether climate warming will increase or decrease prevalence of an infectious disease partly depends on the potential for pathogens to adapt to higher temperatures. This potential can be assessed by investigating regional variation in pathogen thermal performance and testing for local adaptation to current temperature regimes and host populations. We collected seeds of a host plant (Plantago rugelii, a perennial herb) and isolated strains of its specialist fungal pathogen (Golovinomyces sordidus, a powdery mildew) from five locations along a latitudinal transect from southern Mississippi to northern Wisconsin, USA. In a laboratory experiment, we placed sympatric and allopatric host-pathogen pairings into seven temperature treatments from 7 to 33 {degrees}C. We fitted thermal performance curves to pathogen growth data for each strain. Pathogen strains were locally adapted to temperature, with estimated thermal optima ranging from 20.6 {degrees}C (southernmost strain) to 16.7 {degrees}C (second-northernmost strain) and generally decreasing 0.26 {degrees}C for each degree increase in latitude of origin. However, there was no evidence of pathogen local adaptation to sympatric hosts. Given that powdery mildew spores can disperse long distances via wind, our results suggest that northward spread of warm-adapted strains could facilitate pathogen adaptation to warming climates in this and similar systems.

ecology↗

Urbanization alters phenology of plant reproduction, foliar infection, and herbivory

O_LIUrbanization involves numerous environmental changes that may affect the timing of plant reproduction and foliar damage by pathogens, herbivores, and human activities. Yet such relationships have not been examined simultaneously in plant populations across levels of urbanization. C_LIO_LIWe conducted monthly surveys of 22 populations of Plantago lanceolata and P. rugelii in parks spanning an urbanization gradient. We quantified plant reproductive development and prevalence of powdery mildew infection, insect herbivory, and mowing damage. Additionally, we placed potted "sentinel" plants into field populations to directly measure infection and herbivory rates. C_LIO_LIUrbanization was associated with earlier flowering and more seed production for P. rugelii, but less seed maturation for P. lanceolata. Mildew epidemics on P. rugelii started earlier and achieved greater prevalence in more urban sites. Correspondingly, sentinels only became infected in suburban and urban sites. There was less infection on P. lanceolata, including sentinels, suggesting low availability of pathogen genotypes able to infect this species. Early-summer herbivory on both plant species was accelerated in urban sites. C_LIO_LIUrbanization has species-specific associations with reproductive phenology and is associated with increased early-summer herbivory, larger epidemics of a foliar pathogen, and more mowing damage on two weedy herbs C_LI

ecology↗