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16 March 2023 Recovery of western black-legged tick and vertebrate populations after a destructive wildfire in an intensively-studied woodland in northern California
Emily L. Pascoe, Charles E. Vaughn, Michael I. Jones, Reginald H. Barrett, Janet E. Foley, Robert S. Lane
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Abstract

Despite increasing severity and frequency of wildfires, knowledge about how fire impacts the ecology of tick-borne pathogens is limited. In 2018, the River Fire burned a forest in the far-western U.S.A. where the ecology of tick-borne pathogens had been studied for decades. Forest structure, avifauna, large and small mammals, lizards, ticks, and tick-borne pathogens (Anaplasma phagocytophilum, Borrelia burgdorferi, Borrelia miyamotoi) were assessed after the wildfire in 2019 and 2020. Burning reduced canopy cover and eliminated the layer of thick leaf litter that hosted free-living ticks, which over time was replaced by forbs and grasses. Tick abundance and the vertebrate host community changed dramatically. Avian species adapted to cavity nesting became most prevalent, while the number of foliage-foraging species increased by 83% as vegetation regenerated. Nine mammalian species were observed on camera traps, including sentinel (black-tailed jackrabbits) and reservoir hosts (western gray squirrels) of B. burgdorferi. One Peromyscus sp. mouse was captured in 2019 but by 2020, numbers were rebounding (n=37), although tick infestations on rodents remained sparse (0.2/rodent). However, western fence lizards (n=19) hosted 8.6 ticks on average in 2020. Assays for pathogens found no B. miyamotoi in either questing or host-feeding ticks, A. phagocytophilum DNA in 4% (1/23) in 2019, and 17% (29/173) in 2020 for questing and host-feeding ticks combined, and B. burgdorferi DNA in just 1% of all ticks collected in 2020 (2/173). We conclude that a moderately severe wildfire can have dramatic impacts on the ecology of tick-borne pathogens, with changes posited to continue for multiple years.

Emily L. Pascoe, Charles E. Vaughn, Michael I. Jones, Reginald H. Barrett, Janet E. Foley, and Robert S. Lane "Recovery of western black-legged tick and vertebrate populations after a destructive wildfire in an intensively-studied woodland in northern California," Journal of Vector Ecology 48(1), 19-36, (16 March 2023). https://doi.org/10.52707/1081-1710-48.1.19
Received: 18 October 2022; Accepted: 13 December 2022; Published: 16 March 2023
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KEYWORDS
biodiversity
fire ecology
Ixodes pacificus
tick ecology
tick-borne pathogens
wildfire
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