Host density has limited effects on pathogen invasion, disease-induced declines and within-host infection dynamics across a landscape of disease

被引:7
作者
Wilber, Mark Q. [1 ]
Knapp, Roland A. [2 ,3 ]
Smith, Thomas C. [2 ,3 ]
Briggs, Cheryl J. [4 ]
机构
[1] Univ Tennessee, Inst Agr, Dept Forestry Wildlife & Fisheries, Knoxville, TN 37996 USA
[2] Univ Calif Santa Barbara, Earth Res Inst, Santa Barbara, CA 93106 USA
[3] Univ Calif Mammoth Lakes, Sierra Nevada Aquat Res Lab, Mammoth Lakes, CA USA
[4] Univ Calif Santa Barbara, Ecol Evolut & Marine Biol, Santa Barbara, CA 93106 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
Batrachochytrium dendrobatidis; chytridiomycosis; density dependent; disease-induced extinction; frequency dependent; Rana muscosa; Rana sierrae; transmission; YELLOW-LEGGED FROG; BATRACHOCHYTRIUM-DENDROBATIDIS; EMERGING DISEASE; NONNATIVE FISH; POPULATION; TRANSMISSION; THRESHOLDS; EXTINCTION; MODELS; CHYTRIDIOMYCOSIS;
D O I
10.1111/1365-2656.13823
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1. Host density is hypothesized to be a major driver of variability in the responses and outcomes of wildlife populations following pathogen invasion. While the effects of host density on pathogen transmission have been extensively studied, these studies are dominated by theoretical analyses and small-scale experiments. This focus leads to an incomplete picture regarding how host density drives observed variability in disease outcomes in the field. 2. Here, we leveraged a dataset of hundreds of replicate amphibian populations that varied by orders of magnitude in host density. We used these data to test the effects of host density on three outcomes following the arrival of the amphibian-killing fungal pathogen Batrachochytrium dendrobatidis (Bd): the probability that Bd successfully invaded a host population and led to a pathogen outbreak, the magnitude of the host population-level decline following an outbreak and within-host infection dynamics that drive population-level outcomes in amphibian-pathogen systems. 3. Based on previous small-scale transmission experiments, we expected that populations with higher densities would be more likely to experience Bd outbreaks and would suffer larger proportional declines following outbreaks. To test these predictions, we developed and fitted a Hidden Markov Model that accounted for imperfectly observed disease outbreak states in the amphibian populations we surveyed. 4. Contrary to our predictions, we found minimal effects of host density on the probability of successful Bd invasion, the magnitude of population decline following Bd invasion and the dynamics of within-host infection intensity. Environmental conditions, such as summer temperature, winter severity and the presence of pathogen reservoirs, were more predictive of variability in disease outcomes. 5. Our results highlight the limitations of extrapolating findings from small-scale transmission experiments to observed disease trajectories in the field and provide strong evidence that variability in host density does not necessarily drive variability in host population responses following pathogen arrival. In an applied context, we show that feedbacks between host density and disease will not necessarily affect the success of reintroduction efforts in amphibian-Bd systems of conservation concern.
引用
收藏
页码:2451 / 2464
页数:14
相关论文
共 58 条
[21]   An assessment of the published results of animal relocations [J].
Fischer, J ;
Lindenmayer, DB .
BIOLOGICAL CONSERVATION, 2000, 96 (01) :1-11
[22]   Emerging fungal threats to animal, plant and ecosystem health [J].
Fisher, Matthew C. ;
Henk, Daniel. A. ;
Briggs, Cheryl J. ;
Brownstein, John S. ;
Madoff, Lawrence C. ;
McCraw, Sarah L. ;
Gurr, Sarah J. .
NATURE, 2012, 484 (7393) :186-194
[23]   Pathogen dynamics during invasion and establishment of white-nose syndrome explain mechanisms of host persistence [J].
Frick, Winifred F. ;
Cheng, Tina L. ;
Langwig, Kate E. ;
Hoyt, Joseph R. ;
Janicki, Amanda F. ;
Parise, Katy L. ;
Foster, Jeffrey T. ;
Kilpatrick, A. Marm .
ECOLOGY, 2017, 98 (03) :624-631
[24]   Rapid decline and extinction of a montane frog population in southern Australia follows detection of the amphibian pathogen Batrachochytrium dendrobatidis [J].
Gillespie, G. R. ;
Hunter, D. ;
Berger, L. ;
Marantelli, G. .
ANIMAL CONSERVATION, 2015, 18 (03) :295-302
[25]   Host adaptation to novel pathogen introduction: Predicting conditions that promote evolutionary rescue [J].
Golas, Benjamin D. ;
Goodell, Brandon ;
Webb, Colleen T. .
ECOLOGY LETTERS, 2021, 24 (10) :2238-2255
[26]  
Haydon DT, 2002, EMERG INFECT DIS, V8, P1468
[27]   Systematic review of modelling assumptions and empirical evidence: Does parasite transmission increase nonlinearly with host density? [J].
Hopkins, Skylar R. ;
Fleming-Davies, Arietta E. ;
Belden, Lisa K. ;
Wojdak, Jeremy M. .
METHODS IN ECOLOGY AND EVOLUTION, 2020, 11 (04) :476-486
[28]   Epidemic and endemic pathogen dynamics correspond to distinct host population microbiomes at a landscape scale [J].
Jani, Andrea J. ;
Knapp, Roland A. ;
Briggs, Cheryl J. .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2017, 284 (1857)
[29]   Disease and climate effects on individuals drive post-reintroduction population dynamics of an endangered amphibian [J].
Joseph, Maxwell B. ;
Knapp, Roland A. .
ECOSPHERE, 2018, 9 (11)
[30]   The ecology and impact of chytridiomycosis: an emerging disease of amphibians [J].
Kilpatrick, A. Marm ;
Briggs, Cheryl J. ;
Daszak, Peter .
TRENDS IN ECOLOGY & EVOLUTION, 2010, 25 (02) :109-118